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https://codeberg.org/anoncontributorxmr/monero.git
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blockchain: speed up getting N blocks weights/long term weights
This commit is contained in:
parent
49afbd0c53
commit
4b21d38dfd
8 changed files with 142 additions and 15 deletions
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@ -946,6 +946,17 @@ public:
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*/
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*/
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virtual size_t get_block_weight(const uint64_t& height) const = 0;
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virtual size_t get_block_weight(const uint64_t& height) const = 0;
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/**
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* @brief fetch the last N blocks' weights
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*
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* If there are fewer than N blocks, the returned array will be smaller than N
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*
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* @param count the number of blocks requested
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*
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* @return the weights
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*/
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virtual std::vector<uint64_t> get_block_weights(uint64_t start_height, size_t count) const = 0;
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/**
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/**
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* @brief fetch a block's cumulative difficulty
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* @brief fetch a block's cumulative difficulty
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*
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*
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@ -999,6 +1010,17 @@ public:
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*/
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*/
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const = 0;
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const = 0;
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/**
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* @brief fetch the last N blocks' long term weights
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*
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* If there are fewer than N blocks, the returned array will be smaller than N
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*
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* @param count the number of blocks requested
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*
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* @return the weights
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*/
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virtual std::vector<uint64_t> get_long_term_block_weights(uint64_t start_height, size_t count) const = 0;
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/**
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/**
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* @brief fetch a block's hash
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* @brief fetch a block's hash
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*
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*
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@ -2445,6 +2445,70 @@ size_t BlockchainLMDB::get_block_weight(const uint64_t& height) const
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return ret;
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return ret;
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}
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}
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std::vector<uint64_t> BlockchainLMDB::get_block_info_64bit_fields(uint64_t start_height, size_t count, off_t offset) const
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{
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LOG_PRINT_L3("BlockchainLMDB::" << __func__);
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check_open();
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TXN_PREFIX_RDONLY();
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RCURSOR(block_info);
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const uint64_t h = height();
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if (start_height >= h)
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throw0(DB_ERROR(("Height " + std::to_string(start_height) + " not in blockchain").c_str()));
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std::vector<uint64_t> ret;
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ret.reserve(count);
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MDB_val v;
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uint64_t range_begin = 0, range_end = 0;
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for (uint64_t height = start_height; height < h && count--; ++height)
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{
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if (height >= range_begin && height < range_end)
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{
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// nothing to do
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}
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else
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{
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int result = 0;
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if (range_end > 0)
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{
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MDB_val k2;
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result = mdb_cursor_get(m_cur_block_info, &k2, &v, MDB_NEXT_MULTIPLE);
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range_begin = ((const mdb_block_info*)v.mv_data)->bi_height;
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range_end = range_begin + v.mv_size / sizeof(mdb_block_info); // whole records please
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if (height < range_begin || height >= range_end)
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throw0(DB_ERROR(("Height " + std::to_string(height) + " not included in multiple record range: " + std::to_string(range_begin) + "-" + std::to_string(range_end)).c_str()));
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}
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else
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{
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v.mv_size = sizeof(uint64_t);
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v.mv_data = (void*)&height;
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result = mdb_cursor_get(m_cur_block_info, (MDB_val *)&zerokval, &v, MDB_GET_BOTH);
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range_begin = height;
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range_end = range_begin + 1;
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}
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if (result)
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throw0(DB_ERROR(lmdb_error("Error attempting to retrieve block_info from the db: ", result).c_str()));
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}
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const mdb_block_info *bi = ((const mdb_block_info *)v.mv_data) + (height - range_begin);
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ret.push_back(*(const uint64_t*)(((const char*)bi) + offset));
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}
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TXN_POSTFIX_RDONLY();
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return ret;
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}
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std::vector<uint64_t> BlockchainLMDB::get_block_weights(uint64_t start_height, size_t count) const
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{
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return get_block_info_64bit_fields(start_height, count, offsetof(mdb_block_info, bi_weight));
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}
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std::vector<uint64_t> BlockchainLMDB::get_long_term_block_weights(uint64_t start_height, size_t count) const
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{
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return get_block_info_64bit_fields(start_height, count, offsetof(mdb_block_info, bi_long_term_block_weight));
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}
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difficulty_type BlockchainLMDB::get_block_cumulative_difficulty(const uint64_t& height) const
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difficulty_type BlockchainLMDB::get_block_cumulative_difficulty(const uint64_t& height) const
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{
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{
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LOG_PRINT_L3("BlockchainLMDB::" << __func__ << " height: " << height);
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LOG_PRINT_L3("BlockchainLMDB::" << __func__ << " height: " << height);
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@ -219,6 +219,8 @@ public:
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virtual size_t get_block_weight(const uint64_t& height) const;
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virtual size_t get_block_weight(const uint64_t& height) const;
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virtual std::vector<uint64_t> get_block_weights(uint64_t start_height, size_t count) const;
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virtual difficulty_type get_block_cumulative_difficulty(const uint64_t& height) const;
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virtual difficulty_type get_block_cumulative_difficulty(const uint64_t& height) const;
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virtual difficulty_type get_block_difficulty(const uint64_t& height) const;
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virtual difficulty_type get_block_difficulty(const uint64_t& height) const;
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@ -227,6 +229,8 @@ public:
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const;
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const;
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virtual std::vector<uint64_t> get_long_term_block_weights(uint64_t start_height, size_t count) const;
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virtual crypto::hash get_block_hash_from_height(const uint64_t& height) const;
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virtual crypto::hash get_block_hash_from_height(const uint64_t& height) const;
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virtual std::vector<block> get_blocks_range(const uint64_t& h1, const uint64_t& h2) const;
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virtual std::vector<block> get_blocks_range(const uint64_t& h1, const uint64_t& h2) const;
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@ -394,6 +398,8 @@ private:
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virtual uint64_t get_database_size() const;
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virtual uint64_t get_database_size() const;
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std::vector<uint64_t> get_block_info_64bit_fields(uint64_t start_height, size_t count, off_t offset) const;
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// fix up anything that may be wrong due to past bugs
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// fix up anything that may be wrong due to past bugs
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virtual void fixup();
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virtual void fixup();
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@ -72,10 +72,12 @@ public:
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virtual std::vector<uint64_t> get_block_cumulative_rct_outputs(const std::vector<uint64_t> &heights) const { return {}; }
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virtual std::vector<uint64_t> get_block_cumulative_rct_outputs(const std::vector<uint64_t> &heights) const { return {}; }
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virtual uint64_t get_top_block_timestamp() const { return 0; }
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virtual uint64_t get_top_block_timestamp() const { return 0; }
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virtual size_t get_block_weight(const uint64_t& height) const { return 128; }
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virtual size_t get_block_weight(const uint64_t& height) const { return 128; }
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virtual std::vector<uint64_t> get_block_weights(uint64_t start_height, size_t count) const { return {}; }
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virtual cryptonote::difficulty_type get_block_cumulative_difficulty(const uint64_t& height) const { return 10; }
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virtual cryptonote::difficulty_type get_block_cumulative_difficulty(const uint64_t& height) const { return 10; }
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virtual cryptonote::difficulty_type get_block_difficulty(const uint64_t& height) const { return 0; }
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virtual cryptonote::difficulty_type get_block_difficulty(const uint64_t& height) const { return 0; }
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virtual uint64_t get_block_already_generated_coins(const uint64_t& height) const { return 10000000000; }
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virtual uint64_t get_block_already_generated_coins(const uint64_t& height) const { return 10000000000; }
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const { return 128; }
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virtual uint64_t get_block_long_term_weight(const uint64_t& height) const { return 128; }
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virtual std::vector<uint64_t> get_long_term_block_weights(uint64_t start_height, size_t count) const { return {}; }
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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 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<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 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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@ -1269,15 +1269,17 @@ void Blockchain::get_last_n_blocks_weights(std::vector<uint64_t>& weights, size_
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if(h == 0)
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if(h == 0)
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return;
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return;
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m_db->block_txn_start(true);
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// add weight of last <count> blocks to vector <weights> (or less, if blockchain size < count)
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// add weight of last <count> blocks to vector <weights> (or less, if blockchain size < count)
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size_t start_offset = h - std::min<size_t>(h, count);
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size_t start_offset = h - std::min<size_t>(h, count);
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weights.reserve(weights.size() + h - start_offset);
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weights = m_db->get_block_weights(start_offset, count);
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for(size_t i = start_offset; i < h; i++)
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}
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{
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//------------------------------------------------------------------
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weights.push_back(m_db->get_block_weight(i));
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void Blockchain::get_long_term_block_weights(std::vector<uint64_t>& weights, uint64_t start_height, size_t count) const
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}
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{
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m_db->block_txn_stop();
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LOG_PRINT_L3("Blockchain::" << __func__);
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CRITICAL_REGION_LOCAL(m_blockchain_lock);
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weights = m_db->get_long_term_block_weights(start_height, count);
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}
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}
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//------------------------------------------------------------------
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//------------------------------------------------------------------
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uint64_t Blockchain::get_current_cumulative_block_weight_limit() const
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uint64_t Blockchain::get_current_cumulative_block_weight_limit() const
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@ -3804,9 +3806,7 @@ uint64_t Blockchain::get_next_long_term_block_weight(uint64_t block_weight) cons
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return block_weight;
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return block_weight;
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std::vector<uint64_t> weights;
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std::vector<uint64_t> weights;
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weights.resize(nblocks);
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get_long_term_block_weights(weights, db_height - nblocks, nblocks);
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for (uint64_t h = 0; h < nblocks; ++h)
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weights[h] = m_db->get_block_long_term_weight(db_height - nblocks + h);
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uint64_t long_term_median = epee::misc_utils::median(weights);
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uint64_t long_term_median = epee::misc_utils::median(weights);
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uint64_t long_term_effective_median_block_weight = std::max<uint64_t>(CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V5, long_term_median);
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uint64_t long_term_effective_median_block_weight = std::max<uint64_t>(CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V5, long_term_median);
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@ -3850,9 +3850,7 @@ bool Blockchain::update_next_cumulative_weight_limit(uint64_t *long_term_effecti
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uint64_t nblocks = std::min<uint64_t>(m_long_term_block_weights_window, db_height);
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uint64_t nblocks = std::min<uint64_t>(m_long_term_block_weights_window, db_height);
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if (nblocks == db_height)
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if (nblocks == db_height)
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--nblocks;
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--nblocks;
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weights.resize(nblocks);
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get_long_term_block_weights(weights, db_height - nblocks - 1, nblocks);
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for (uint64_t h = 0; h < nblocks; ++h)
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weights[h] = m_db->get_block_long_term_weight(db_height - nblocks + h - 1);
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new_weights = weights;
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new_weights = weights;
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long_term_median = epee::misc_utils::median(weights);
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long_term_median = epee::misc_utils::median(weights);
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}
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}
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@ -1288,13 +1288,24 @@ namespace cryptonote
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/**
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/**
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* @brief gets recent block weights for median calculation
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* @brief gets recent block weights for median calculation
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*
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*
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* get the block weights of the last <count> blocks, and return by reference <sz>.
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* get the block weights of the last <count> blocks, and return by reference <weights>.
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*
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*
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* @param sz return-by-reference the list of weights
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* @param weights return-by-reference the list of weights
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* @param count the number of blocks to get weights for
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* @param count the number of blocks to get weights for
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*/
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*/
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void get_last_n_blocks_weights(std::vector<uint64_t>& weights, size_t count) const;
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void get_last_n_blocks_weights(std::vector<uint64_t>& weights, size_t count) const;
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/**
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* @brief gets recent block long term weights for median calculation
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*
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* get the block long term weights of the last <count> blocks, and return by reference <weights>.
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*
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* @param weights return-by-reference the list of weights
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* @param start_height the block height of the first block to query
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* @param count the number of blocks to get weights for
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*/
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void get_long_term_block_weights(std::vector<uint64_t>& weights, uint64_t start_height, size_t count) const;
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/**
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/**
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* @brief checks if a transaction is unlocked (its outputs spendable)
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* @brief checks if a transaction is unlocked (its outputs spendable)
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*
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*
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@ -72,6 +72,18 @@ public:
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virtual uint64_t height() const override { return blocks.size(); }
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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 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 uint64_t get_block_long_term_weight(const uint64_t &h) const override { return blocks[h].long_term_weight; }
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virtual std::vector<uint64_t> get_block_weights(uint64_t start_height, size_t count) const override {
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std::vector<uint64_t> ret;
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ret.reserve(count);
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while (count-- && start_height < blocks.size()) ret.push_back(blocks[start_height++].weight);
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return ret;
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}
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virtual std::vector<uint64_t> get_long_term_block_weights(uint64_t start_height, size_t count) const override {
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std::vector<uint64_t> ret;
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ret.reserve(count);
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while (count-- && start_height < blocks.size()) ret.push_back(blocks[start_height++].long_term_weight);
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return ret;
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}
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) 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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uint64_t h = height();
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crypto::hash top = crypto::null_hash;
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crypto::hash top = crypto::null_hash;
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virtual uint64_t height() const override { return blocks.size(); }
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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 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 uint64_t get_block_long_term_weight(const uint64_t &h) const override { return blocks[h].long_term_weight; }
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virtual std::vector<uint64_t> get_block_weights(uint64_t start_height, size_t count) const override {
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std::vector<uint64_t> ret;
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ret.reserve(count);
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while (count-- && start_height < blocks.size()) ret.push_back(blocks[start_height++].weight);
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return ret;
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}
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virtual std::vector<uint64_t> get_long_term_block_weights(uint64_t start_height, size_t count) const override {
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std::vector<uint64_t> ret;
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ret.reserve(count);
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while (count-- && start_height < blocks.size()) ret.push_back(blocks[start_height++].long_term_weight);
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return ret;
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}
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) 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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uint64_t h = height();
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crypto::hash top = crypto::null_hash;
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crypto::hash top = crypto::null_hash;
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