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https://github.com/monero-project/monero.git
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Adjust difficulty target (2 min) and full reward zone (60 kbytes) for block version 2
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@ -51,11 +51,12 @@
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// MONEY_SUPPLY - total number coins to be generated
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#define MONEY_SUPPLY ((uint64_t)(-1))
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#define EMISSION_SPEED_FACTOR (20)
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#define EMISSION_SPEED_FACTOR_PER_MINUTE (20)
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#define FINAL_SUBSIDY_PER_MINUTE ((uint64_t)300000000000) // 3 * pow(10, 11)
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#define CRYPTONOTE_REWARD_BLOCKS_WINDOW 100
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#define CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE 20000 //size of block (bytes) after which reward for block calculated using block size
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#define CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE 60000 //size of block (bytes) after which reward for block calculated using block size
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#define CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1 20000 //size of block (bytes) after which reward for block calculated using block size - before first fork
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#define CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE 600
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#define CRYPTONOTE_DISPLAY_DECIMAL_POINT 12
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// COIN - number of smallest units in one coin
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@ -66,7 +67,8 @@
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#define ORPHANED_BLOCKS_MAX_COUNT 100
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#define DIFFICULTY_TARGET 60 // seconds
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#define DIFFICULTY_TARGET 120 // seconds
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#define DIFFICULTY_TARGET_V1 60 // seconds - before first fork
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#define DIFFICULTY_WINDOW 720 // blocks
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#define DIFFICULTY_LAG 15 // !!!
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#define DIFFICULTY_CUT 60 // timestamps to cut after sorting
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@ -910,7 +910,7 @@ bool Blockchain::validate_miner_transaction(const block& b, size_t cumulative_bl
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std::vector<size_t> last_blocks_sizes;
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get_last_n_blocks_sizes(last_blocks_sizes, CRYPTONOTE_REWARD_BLOCKS_WINDOW);
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if (!get_block_reward(epee::misc_utils::median(last_blocks_sizes), cumulative_block_size, already_generated_coins, base_reward))
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if (!get_block_reward(epee::misc_utils::median(last_blocks_sizes), cumulative_block_size, already_generated_coins, base_reward, get_current_hard_fork_version()))
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{
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LOG_PRINT_L1("block size " << cumulative_block_size << " is bigger than allowed for this blockchain");
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return false;
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@ -2604,11 +2604,12 @@ bool Blockchain::handle_block_to_main_chain(const block& bl, const crypto::hash&
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TIME_MEASURE_FINISH(addblock);
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update_next_cumulative_size_limit();
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// this will not fail since check succeeded above
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m_hardfork->add(bl, new_height - 1);
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// do this after updating the hard fork state since the size limit may change due to fork
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update_next_cumulative_size_limit();
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LOG_PRINT_L1("+++++ BLOCK SUCCESSFULLY ADDED" << std::endl << "id:\t" << id << std::endl << "PoW:\t" << proof_of_work << std::endl << "HEIGHT " << new_height << ", difficulty:\t" << current_diffic << std::endl << "block reward: " << print_money(fee_summary + base_reward) << "(" << print_money(base_reward) << " + " << print_money(fee_summary) << "), coinbase_blob_size: " << coinbase_blob_size << ", cumulative size: " << cumulative_block_size << ", " << block_processing_time << "(" << target_calculating_time << "/" << longhash_calculating_time << ")ms");
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if(m_show_time_stats)
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{
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@ -2630,13 +2631,15 @@ bool Blockchain::handle_block_to_main_chain(const block& bl, const crypto::hash&
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//------------------------------------------------------------------
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bool Blockchain::update_next_cumulative_size_limit()
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{
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uint64_t full_reward_zone = get_current_hard_fork_version() < 2 ? CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1 : CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE;
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LOG_PRINT_L3("Blockchain::" << __func__);
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std::vector<size_t> sz;
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get_last_n_blocks_sizes(sz, CRYPTONOTE_REWARD_BLOCKS_WINDOW);
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uint64_t median = epee::misc_utils::median(sz);
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if(median <= CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE)
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median = CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE;
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if(median <= full_reward_zone)
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median = full_reward_zone;
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m_current_block_cumul_sz_limit = median*2;
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return true;
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@ -606,7 +606,7 @@ bool blockchain_storage::validate_miner_transaction(const block& b, size_t cumul
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std::vector<size_t> last_blocks_sizes;
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get_last_n_blocks_sizes(last_blocks_sizes, CRYPTONOTE_REWARD_BLOCKS_WINDOW);
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if (!get_block_reward(epee::misc_utils::median(last_blocks_sizes), cumulative_block_size, already_generated_coins, base_reward)) {
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if (!get_block_reward(epee::misc_utils::median(last_blocks_sizes), cumulative_block_size, already_generated_coins, base_reward,0)) {
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LOG_PRINT_L1("block size " << cumulative_block_size << " is bigger than allowed for this blockchain");
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return false;
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}
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@ -73,16 +73,23 @@ namespace cryptonote {
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return CRYPTONOTE_MAX_TX_SIZE;
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}
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//-----------------------------------------------------------------------------------------------
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bool get_block_reward(size_t median_size, size_t current_block_size, uint64_t already_generated_coins, uint64_t &reward) {
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uint64_t base_reward = (MONEY_SUPPLY - already_generated_coins) >> EMISSION_SPEED_FACTOR;
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if (base_reward < FINAL_SUBSIDY_PER_MINUTE)
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bool get_block_reward(size_t median_size, size_t current_block_size, uint64_t already_generated_coins, uint64_t &reward, uint8_t version) {
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static_assert(DIFFICULTY_TARGET%60==0&&DIFFICULTY_TARGET_V1%60==0,"difficulty targets must be a multiple of 60");
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const int target = version < 2 ? DIFFICULTY_TARGET_V1 : DIFFICULTY_TARGET;
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const int target_minutes = target / 60;
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const int emission_speed_factor = EMISSION_SPEED_FACTOR_PER_MINUTE - (target_minutes-1);
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uint64_t base_reward = (MONEY_SUPPLY - already_generated_coins) >> emission_speed_factor;
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if (base_reward < FINAL_SUBSIDY_PER_MINUTE*target_minutes)
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{
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base_reward = FINAL_SUBSIDY_PER_MINUTE;
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base_reward = FINAL_SUBSIDY_PER_MINUTE*target_minutes;
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}
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uint64_t full_reward_zone = version < 2 ? CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1 : CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE;
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//make it soft
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if (median_size < CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE) {
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median_size = CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE;
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if (median_size < full_reward_zone) {
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median_size = full_reward_zone;
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}
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if (current_block_size <= median_size) {
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@ -71,7 +71,7 @@ namespace cryptonote {
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/************************************************************************/
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size_t get_max_block_size();
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size_t get_max_tx_size();
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bool get_block_reward(size_t median_size, size_t current_block_size, uint64_t already_generated_coins, uint64_t &reward);
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bool get_block_reward(size_t median_size, size_t current_block_size, uint64_t already_generated_coins, uint64_t &reward, uint8_t version);
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uint8_t get_account_address_checksum(const public_address_outer_blob& bl);
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uint8_t get_account_integrated_address_checksum(const public_integrated_address_outer_blob& bl);
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@ -120,7 +120,7 @@ namespace cryptonote
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in.height = height;
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uint64_t block_reward;
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if(!get_block_reward(median_size, current_block_size, already_generated_coins, block_reward))
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if(!get_block_reward(median_size, current_block_size, already_generated_coins, block_reward, hard_fork_version))
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{
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LOG_PRINT_L0("Block is too big");
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return false;
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@ -98,7 +98,7 @@ void test_generator::add_block(const cryptonote::block& blk, size_t tsx_size, st
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{
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const size_t block_size = tsx_size + get_object_blobsize(blk.miner_tx);
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uint64_t block_reward;
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get_block_reward(misc_utils::median(block_sizes), block_size, already_generated_coins, block_reward);
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get_block_reward(misc_utils::median(block_sizes), block_size, already_generated_coins, block_reward, 1);
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m_blocks_info[get_block_hash(blk)] = block_info(blk.prev_id, already_generated_coins + block_reward, block_size);
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}
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@ -526,7 +526,7 @@ bool construct_miner_tx_manually(size_t height, uint64_t already_generated_coins
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// This will work, until size of constructed block is less then CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE
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uint64_t block_reward;
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if (!get_block_reward(0, 0, already_generated_coins, block_reward))
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if (!get_block_reward(0, 0, already_generated_coins, block_reward, 1))
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{
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LOG_PRINT_L0("Block is too big");
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return false;
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@ -46,9 +46,9 @@ namespace
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uint64_t m_block_reward;
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};
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#define TEST_ALREADY_GENERATED_COINS(already_generated_coins, expected_reward) \
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m_block_not_too_big = get_block_reward(0, current_block_size, already_generated_coins, m_block_reward); \
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ASSERT_TRUE(m_block_not_too_big); \
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#define TEST_ALREADY_GENERATED_COINS(already_generated_coins, expected_reward) \
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m_block_not_too_big = get_block_reward(0, current_block_size, already_generated_coins, m_block_reward,1); \
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ASSERT_TRUE(m_block_not_too_big); \
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ASSERT_EQ(m_block_reward, expected_reward);
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TEST_F(block_reward_and_already_generated_coins, handles_first_values)
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@ -79,14 +79,14 @@ namespace
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protected:
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virtual void SetUp()
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{
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m_block_not_too_big = get_block_reward(0, 0, already_generated_coins, m_standard_block_reward);
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m_block_not_too_big = get_block_reward(0, 0, already_generated_coins, m_standard_block_reward, 1);
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ASSERT_TRUE(m_block_not_too_big);
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ASSERT_LT(CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE, m_standard_block_reward);
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}
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void do_test(size_t median_block_size, size_t current_block_size)
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{
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m_block_not_too_big = get_block_reward(median_block_size, current_block_size, already_generated_coins, m_block_reward);
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m_block_not_too_big = get_block_reward(median_block_size, current_block_size, already_generated_coins, m_block_reward, 1);
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}
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static const uint64_t already_generated_coins = 0;
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@ -168,14 +168,14 @@ namespace
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m_last_block_sizes_median = 7 * CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE;
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m_block_not_too_big = get_block_reward(epee::misc_utils::median(m_last_block_sizes), 0, already_generated_coins, m_standard_block_reward);
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m_block_not_too_big = get_block_reward(epee::misc_utils::median(m_last_block_sizes), 0, already_generated_coins, m_standard_block_reward, 1);
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ASSERT_TRUE(m_block_not_too_big);
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ASSERT_LT(CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE, m_standard_block_reward);
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}
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void do_test(size_t current_block_size)
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{
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m_block_not_too_big = get_block_reward(epee::misc_utils::median(m_last_block_sizes), current_block_size, already_generated_coins, m_block_reward);
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m_block_not_too_big = get_block_reward(epee::misc_utils::median(m_last_block_sizes), current_block_size, already_generated_coins, m_block_reward, 1);
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}
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static const uint64_t already_generated_coins = 0;
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