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https://github.com/monero-project/monero.git
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save some database calls when getting top block hash and height
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parent
9827880877
commit
79b4e9f377
@ -1052,9 +1052,11 @@ public:
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*
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* The subclass should return the hash of the most recent block
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*
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* @param block_height if non NULL, returns the height of that block (ie, the blockchain height minus 1)
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*
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* @return the top block's hash
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*/
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virtual crypto::hash top_block_hash() const = 0;
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const = 0;
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/**
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* @brief fetch the top block
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@ -2582,11 +2582,13 @@ std::vector<crypto::hash> BlockchainLMDB::get_hashes_range(const uint64_t& h1, c
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return v;
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}
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crypto::hash BlockchainLMDB::top_block_hash() const
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crypto::hash BlockchainLMDB::top_block_hash(uint64_t *block_height) const
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{
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LOG_PRINT_L3("BlockchainLMDB::" << __func__);
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check_open();
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uint64_t m_height = height();
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if (block_height)
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*block_height = m_height - 1;
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if (m_height != 0)
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{
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return get_block_hash_from_height(m_height - 1);
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@ -233,7 +233,7 @@ public:
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virtual std::vector<crypto::hash> get_hashes_range(const uint64_t& h1, const uint64_t& h2) const;
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virtual crypto::hash top_block_hash() const;
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const;
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virtual block get_top_block() const;
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@ -79,7 +79,7 @@ public:
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virtual crypto::hash get_block_hash_from_height(const uint64_t& height) const { return crypto::hash(); }
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virtual std::vector<cryptonote::block> get_blocks_range(const uint64_t& h1, const uint64_t& h2) const { return std::vector<cryptonote::block>(); }
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virtual std::vector<crypto::hash> get_hashes_range(const uint64_t& h1, const uint64_t& h2) const { return std::vector<crypto::hash>(); }
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virtual crypto::hash top_block_hash() const { return crypto::hash(); }
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const { if (block_height) *block_height = 0; return crypto::hash(); }
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virtual cryptonote::block get_top_block() const { return cryptonote::block(); }
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virtual uint64_t height() const { return 1; }
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virtual bool tx_exists(const crypto::hash& h) const { return false; }
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@ -468,8 +468,8 @@ bool Blockchain::init(BlockchainDB* db, const network_type nettype, bool offline
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uint64_t num_popped_blocks = 0;
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while (!m_db->is_read_only())
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{
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const uint64_t top_height = m_db->height() - 1;
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const crypto::hash top_id = m_db->top_block_hash();
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uint64_t top_height;
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const crypto::hash top_id = m_db->top_block_hash(&top_height);
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const block top_block = m_db->get_top_block();
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const uint8_t ideal_hf_version = get_ideal_hard_fork_version(top_height);
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if (ideal_hf_version <= 1 || ideal_hf_version == top_block.major_version)
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@ -509,7 +509,9 @@ bool Blockchain::init(BlockchainDB* db, const network_type nettype, bool offline
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{
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m_timestamps_and_difficulties_height = 0;
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m_hardfork->reorganize_from_chain_height(get_current_blockchain_height());
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m_tx_pool.on_blockchain_dec(m_db->height()-1, get_tail_id());
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uint64_t top_block_height;
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crypto::hash top_block_hash = get_tail_id(top_block_height);
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m_tx_pool.on_blockchain_dec(top_block_height, top_block_hash);
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}
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if (test_options && test_options->long_term_block_weight_window)
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@ -702,7 +704,9 @@ block Blockchain::pop_block_from_blockchain()
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m_check_txin_table.clear();
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CHECK_AND_ASSERT_THROW_MES(update_next_cumulative_weight_limit(), "Error updating next cumulative weight limit");
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m_tx_pool.on_blockchain_dec(m_db->height()-1, get_tail_id());
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uint64_t top_block_height;
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crypto::hash top_block_hash = get_tail_id(top_block_height);
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m_tx_pool.on_blockchain_dec(top_block_height, top_block_hash);
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invalidate_block_template_cache();
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return popped_block;
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@ -729,8 +733,7 @@ crypto::hash Blockchain::get_tail_id(uint64_t& height) const
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{
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LOG_PRINT_L3("Blockchain::" << __func__);
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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height = m_db->height() - 1;
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return get_tail_id();
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return m_db->top_block_hash(&height);
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}
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//------------------------------------------------------------------
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crypto::hash Blockchain::get_tail_id() const
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@ -891,8 +894,9 @@ difficulty_type Blockchain::get_difficulty_for_next_block()
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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std::vector<uint64_t> timestamps;
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std::vector<difficulty_type> difficulties;
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auto height = m_db->height();
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top_hash = get_tail_id(); // get it again now that we have the lock
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uint64_t height;
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top_hash = get_tail_id(height); // get it again now that we have the lock
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++height; // top block height to blockchain height
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// ND: Speedup
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// 1. Keep a list of the last 735 (or less) blocks that is used to compute difficulty,
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// then when the next block difficulty is queried, push the latest height data and
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@ -1806,11 +1810,12 @@ uint64_t Blockchain::get_num_mature_outputs(uint64_t amount) const
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uint64_t num_outs = m_db->get_num_outputs(amount);
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// ensure we don't include outputs that aren't yet eligible to be used
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// outpouts are sorted by height
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const uint64_t blockchain_height = m_db->height();
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while (num_outs > 0)
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{
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const tx_out_index toi = m_db->get_output_tx_and_index(amount, num_outs - 1);
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const uint64_t height = m_db->get_tx_block_height(toi.first);
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if (height + CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE <= m_db->height())
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if (height + CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE <= blockchain_height)
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break;
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--num_outs;
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}
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@ -3325,14 +3330,15 @@ bool Blockchain::check_block_timestamp(const block& b, uint64_t& median_ts) cons
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return false;
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}
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const auto h = m_db->height();
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// if not enough blocks, no proper median yet, return true
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if(m_db->height() < BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW)
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if(h < BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW)
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{
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return true;
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}
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std::vector<uint64_t> timestamps;
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auto h = m_db->height();
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// need most recent 60 blocks, get index of first of those
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size_t offset = h - BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
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@ -3401,9 +3407,12 @@ bool Blockchain::handle_block_to_main_chain(const block& bl, const crypto::hash&
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static bool seen_future_version = false;
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m_db->block_txn_start(true);
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if(bl.prev_id != get_tail_id())
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uint64_t blockchain_height;
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const crypto::hash top_hash = get_tail_id(blockchain_height);
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++blockchain_height; // block height to chain height
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if(bl.prev_id != top_hash)
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{
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MERROR_VER("Block with id: " << id << std::endl << "has wrong prev_id: " << bl.prev_id << std::endl << "expected: " << get_tail_id());
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MERROR_VER("Block with id: " << id << std::endl << "has wrong prev_id: " << bl.prev_id << std::endl << "expected: " << top_hash);
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bvc.m_verifivation_failed = true;
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leave:
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m_db->block_txn_stop();
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@ -3472,9 +3481,9 @@ leave:
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bool precomputed = false;
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bool fast_check = false;
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#if defined(PER_BLOCK_CHECKPOINT)
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if (m_db->height() < m_blocks_hash_check.size())
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if (blockchain_height < m_blocks_hash_check.size())
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{
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const auto &expected_hash = m_blocks_hash_check[m_db->height()];
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const auto &expected_hash = m_blocks_hash_check[blockchain_height];
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if (expected_hash != crypto::null_hash)
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{
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if (memcmp(&id, &expected_hash, sizeof(hash)) != 0)
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@ -3487,7 +3496,7 @@ leave:
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}
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else
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{
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MCINFO("verify", "No pre-validated hash at height " << m_db->height() << ", verifying fully");
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MCINFO("verify", "No pre-validated hash at height " << blockchain_height << ", verifying fully");
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}
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}
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else
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@ -3500,7 +3509,7 @@ leave:
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proof_of_work = it->second;
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}
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else
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proof_of_work = get_block_longhash(bl, m_db->height());
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proof_of_work = get_block_longhash(bl, blockchain_height);
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// validate proof_of_work versus difficulty target
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if(!check_hash(proof_of_work, current_diffic))
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@ -3513,9 +3522,9 @@ leave:
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// If we're at a checkpoint, ensure that our hardcoded checkpoint hash
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// is correct.
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if(m_checkpoints.is_in_checkpoint_zone(get_current_blockchain_height()))
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if(m_checkpoints.is_in_checkpoint_zone(blockchain_height))
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{
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if(!m_checkpoints.check_block(get_current_blockchain_height(), id))
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if(!m_checkpoints.check_block(blockchain_height, id))
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{
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LOG_ERROR("CHECKPOINT VALIDATION FAILED");
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bvc.m_verifivation_failed = true;
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@ -3530,7 +3539,7 @@ leave:
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TIME_MEASURE_START(t3);
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// sanity check basic miner tx properties;
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if(!prevalidate_miner_transaction(bl, m_db->height()))
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if(!prevalidate_miner_transaction(bl, blockchain_height))
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{
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MERROR_VER("Block with id: " << id << " failed to pass prevalidation");
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bvc.m_verifivation_failed = true;
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@ -3659,7 +3668,7 @@ leave:
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TIME_MEASURE_START(vmt);
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uint64_t base_reward = 0;
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uint64_t already_generated_coins = m_db->height() ? m_db->get_block_already_generated_coins(m_db->height() - 1) : 0;
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uint64_t already_generated_coins = blockchain_height ? m_db->get_block_already_generated_coins(blockchain_height - 1) : 0;
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if(!validate_miner_transaction(bl, cumulative_block_weight, fee_summary, base_reward, already_generated_coins, bvc.m_partial_block_reward, m_hardfork->get_current_version()))
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{
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MERROR_VER("Block with id: " << id << " has incorrect miner transaction");
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@ -3680,8 +3689,8 @@ leave:
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// at MONEY_SUPPLY. already_generated_coins is only used to compute the block subsidy and MONEY_SUPPLY yields a
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// subsidy of 0 under the base formula and therefore the minimum subsidy >0 in the tail state.
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already_generated_coins = base_reward < (MONEY_SUPPLY-already_generated_coins) ? already_generated_coins + base_reward : MONEY_SUPPLY;
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if(m_db->height())
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cumulative_difficulty += m_db->get_block_cumulative_difficulty(m_db->height() - 1);
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if(blockchain_height)
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cumulative_difficulty += m_db->get_block_cumulative_difficulty(blockchain_height - 1);
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TIME_MEASURE_FINISH(block_processing_time);
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if(precomputed)
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@ -3922,10 +3931,11 @@ void Blockchain::check_against_checkpoints(const checkpoints& points, bool enfor
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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stop_batch = m_db->batch_start();
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const uint64_t blockchain_height = m_db->height();
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for (const auto& pt : pts)
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{
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// if the checkpoint is for a block we don't have yet, move on
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if (pt.first >= m_db->height())
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if (pt.first >= blockchain_height)
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{
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continue;
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}
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@ -4269,6 +4279,7 @@ bool Blockchain::prepare_handle_incoming_blocks(const std::vector<block_complete
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auto it = blocks_entry.begin();
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unsigned blockidx = 0;
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const crypto::hash tophash = m_db->top_block_hash();
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for (unsigned i = 0; i < threads; i++)
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{
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for (unsigned int j = 0; j < batches; j++, ++blockidx)
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@ -4281,7 +4292,6 @@ bool Blockchain::prepare_handle_incoming_blocks(const std::vector<block_complete
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// check first block and skip all blocks if its not chained properly
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if (blockidx == 0)
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{
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crypto::hash tophash = m_db->top_block_hash();
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if (block.prev_id != tophash)
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{
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MDEBUG("Skipping prepare blocks. New blocks don't belong to chain.");
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@ -72,11 +72,13 @@ public:
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virtual uint64_t height() const override { return blocks.size(); }
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virtual size_t get_block_weight(const uint64_t &h) const override { return blocks[h].weight; }
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virtual uint64_t get_block_long_term_weight(const uint64_t &h) const override { return blocks[h].long_term_weight; }
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virtual crypto::hash top_block_hash() const override {
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const override {
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uint64_t h = height();
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crypto::hash top = crypto::null_hash;
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if (h)
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*(uint64_t*)&top = h - 1;
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if (block_height)
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*block_height = h - 1;
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return top;
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}
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virtual void pop_block(cryptonote::block &blk, std::vector<cryptonote::transaction> &txs) override { blocks.pop_back(); }
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@ -64,11 +64,13 @@ public:
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virtual uint64_t height() const override { return blocks.size(); }
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virtual size_t get_block_weight(const uint64_t &h) const override { return blocks[h].weight; }
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virtual uint64_t get_block_long_term_weight(const uint64_t &h) const override { return blocks[h].long_term_weight; }
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virtual crypto::hash top_block_hash() const override {
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const override {
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uint64_t h = height();
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crypto::hash top = crypto::null_hash;
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if (h)
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*(uint64_t*)&top = h - 1;
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if (block_height)
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*block_height = h - 1;
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return top;
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}
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virtual void pop_block(cryptonote::block &blk, std::vector<cryptonote::transaction> &txs) override { blocks.pop_back(); }
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