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https://github.com/monero-project/monero.git
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4466f4504e
123fc2a2
i2p: initial support (Jethro Grassie)
282 lines
14 KiB
C++
282 lines
14 KiB
C++
// Copyright (c) 2014-2018, The Monero Project
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without modification, are
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// permitted provided that the following conditions are met:
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//
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// 1. Redistributions of source code must retain the above copyright notice, this list of
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// conditions and the following disclaimer.
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//
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// 2. Redistributions in binary form must reproduce the above copyright notice, this list
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// of conditions and the following disclaimer in the documentation and/or other
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// materials provided with the distribution.
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//
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// 3. Neither the name of the copyright holder nor the names of its contributors may be
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// used to endorse or promote products derived from this software without specific
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// prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY
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// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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// MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
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// THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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// INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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// STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// Parts of this file are originally copyright (c) 2012-2013 The Cryptonote developers
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#pragma once
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#include <stdexcept>
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#include <string>
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#include <boost/uuid/uuid.hpp>
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#define CRYPTONOTE_DNS_TIMEOUT_MS 20000
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#define CRYPTONOTE_MAX_BLOCK_NUMBER 500000000
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#define CRYPTONOTE_MAX_BLOCK_SIZE 500000000 // block header blob limit, never used!
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#define CRYPTONOTE_GETBLOCKTEMPLATE_MAX_BLOCK_SIZE 196608 //size of block (bytes) that is the maximum that miners will produce
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#define CRYPTONOTE_MAX_TX_SIZE 1000000000
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#define CRYPTONOTE_PUBLIC_ADDRESS_TEXTBLOB_VER 0
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#define CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW 60
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#define CURRENT_TRANSACTION_VERSION 2
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#define CURRENT_BLOCK_MAJOR_VERSION 1
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#define CURRENT_BLOCK_MINOR_VERSION 0
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#define CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT 60*60*2
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#define CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE 10
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#define BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW 60
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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_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_V2 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_BLOCK_GRANTED_FULL_REWARD_ZONE_V5 300000 //size of block (bytes) after which reward for block calculated using block size - second change, from v5
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#define CRYPTONOTE_LONG_TERM_BLOCK_WEIGHT_WINDOW_SIZE 100000 // size in blocks of the long term block weight median window
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#define CRYPTONOTE_SHORT_TERM_BLOCK_WEIGHT_SURGE_FACTOR 50
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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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#define COIN ((uint64_t)1000000000000) // pow(10, 12)
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#define FEE_PER_KB_OLD ((uint64_t)10000000000) // pow(10, 10)
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#define FEE_PER_KB ((uint64_t)2000000000) // 2 * pow(10, 9)
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#define FEE_PER_BYTE ((uint64_t)300000)
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#define DYNAMIC_FEE_PER_KB_BASE_FEE ((uint64_t)2000000000) // 2 * pow(10,9)
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#define DYNAMIC_FEE_PER_KB_BASE_BLOCK_REWARD ((uint64_t)10000000000000) // 10 * pow(10,12)
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#define DYNAMIC_FEE_PER_KB_BASE_FEE_V5 ((uint64_t)2000000000 * (uint64_t)CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V2 / CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V5)
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#define DYNAMIC_FEE_REFERENCE_TRANSACTION_WEIGHT ((uint64_t)3000)
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#define ORPHANED_BLOCKS_MAX_COUNT 100
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#define DIFFICULTY_TARGET_V2 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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#define DIFFICULTY_BLOCKS_COUNT DIFFICULTY_WINDOW + DIFFICULTY_LAG
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#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_SECONDS_V1 DIFFICULTY_TARGET_V1 * CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS
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#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_SECONDS_V2 DIFFICULTY_TARGET_V2 * CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS
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#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS 1
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#define DIFFICULTY_BLOCKS_ESTIMATE_TIMESPAN DIFFICULTY_TARGET_V1 //just alias; used by tests
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#define BLOCKS_IDS_SYNCHRONIZING_DEFAULT_COUNT 10000 //by default, blocks ids count in synchronizing
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#define BLOCKS_SYNCHRONIZING_DEFAULT_COUNT_PRE_V4 100 //by default, blocks count in blocks downloading
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#define BLOCKS_SYNCHRONIZING_DEFAULT_COUNT 20 //by default, blocks count in blocks downloading
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#define CRYPTONOTE_MEMPOOL_TX_LIVETIME (86400*3) //seconds, three days
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#define CRYPTONOTE_MEMPOOL_TX_FROM_ALT_BLOCK_LIVETIME 604800 //seconds, one week
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#define COMMAND_RPC_GET_BLOCKS_FAST_MAX_COUNT 1000
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#define P2P_LOCAL_WHITE_PEERLIST_LIMIT 1000
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#define P2P_LOCAL_GRAY_PEERLIST_LIMIT 5000
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#define P2P_DEFAULT_CONNECTIONS_COUNT 8
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#define P2P_DEFAULT_HANDSHAKE_INTERVAL 60 //secondes
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#define P2P_DEFAULT_PACKET_MAX_SIZE 50000000 //50000000 bytes maximum packet size
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#define P2P_DEFAULT_PEERS_IN_HANDSHAKE 250
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#define P2P_DEFAULT_CONNECTION_TIMEOUT 5000 //5 seconds
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#define P2P_DEFAULT_SOCKS_CONNECT_TIMEOUT 45 // seconds
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#define P2P_DEFAULT_PING_CONNECTION_TIMEOUT 2000 //2 seconds
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#define P2P_DEFAULT_INVOKE_TIMEOUT 60*2*1000 //2 minutes
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#define P2P_DEFAULT_HANDSHAKE_INVOKE_TIMEOUT 5000 //5 seconds
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#define P2P_DEFAULT_WHITELIST_CONNECTIONS_PERCENT 70
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#define P2P_DEFAULT_ANCHOR_CONNECTIONS_COUNT 2
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#define P2P_DEFAULT_LIMIT_RATE_UP 2048 // kB/s
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#define P2P_DEFAULT_LIMIT_RATE_DOWN 8192 // kB/s
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#define P2P_FAILED_ADDR_FORGET_SECONDS (60*60) //1 hour
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#define P2P_IP_BLOCKTIME (60*60*24) //24 hour
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#define P2P_IP_FAILS_BEFORE_BLOCK 10
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#define P2P_IDLE_CONNECTION_KILL_INTERVAL (5*60) //5 minutes
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#define P2P_SUPPORT_FLAG_FLUFFY_BLOCKS 0x01
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#define P2P_SUPPORT_FLAGS P2P_SUPPORT_FLAG_FLUFFY_BLOCKS
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#define ALLOW_DEBUG_COMMANDS
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#define CRYPTONOTE_NAME "bitmonero"
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#define CRYPTONOTE_POOLDATA_FILENAME "poolstate.bin"
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#define CRYPTONOTE_BLOCKCHAINDATA_FILENAME "data.mdb"
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#define CRYPTONOTE_BLOCKCHAINDATA_LOCK_FILENAME "lock.mdb"
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#define P2P_NET_DATA_FILENAME "p2pstate.bin"
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#define MINER_CONFIG_FILE_NAME "miner_conf.json"
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#define THREAD_STACK_SIZE 5 * 1024 * 1024
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#define HF_VERSION_DYNAMIC_FEE 4
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#define HF_VERSION_MIN_MIXIN_4 6
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#define HF_VERSION_MIN_MIXIN_6 7
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#define HF_VERSION_MIN_MIXIN_10 8
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#define HF_VERSION_ENFORCE_RCT 6
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#define HF_VERSION_PER_BYTE_FEE 8
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#define HF_VERSION_SMALLER_BP 10
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#define HF_VERSION_LONG_TERM_BLOCK_WEIGHT 10
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#define PER_KB_FEE_QUANTIZATION_DECIMALS 8
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#define HASH_OF_HASHES_STEP 256
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#define DEFAULT_TXPOOL_MAX_WEIGHT 648000000ull // 3 days at 300000, in bytes
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#define BULLETPROOF_MAX_OUTPUTS 16
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#define CRYPTONOTE_PRUNING_STRIPE_SIZE 4096 // the smaller, the smoother the increase
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#define CRYPTONOTE_PRUNING_LOG_STRIPES 3 // the higher, the more space saved
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#define CRYPTONOTE_PRUNING_TIP_BLOCKS 5500 // the smaller, the more space saved
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//#define CRYPTONOTE_PRUNING_DEBUG_SPOOF_SEED
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// New constants are intended to go here
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namespace config
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{
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uint64_t const DEFAULT_FEE_ATOMIC_XMR_PER_KB = 500; // Just a placeholder! Change me!
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uint8_t const FEE_CALCULATION_MAX_RETRIES = 10;
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uint64_t const DEFAULT_DUST_THRESHOLD = ((uint64_t)2000000000); // 2 * pow(10, 9)
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uint64_t const BASE_REWARD_CLAMP_THRESHOLD = ((uint64_t)100000000); // pow(10, 8)
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std::string const P2P_REMOTE_DEBUG_TRUSTED_PUB_KEY = "0000000000000000000000000000000000000000000000000000000000000000";
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uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 18;
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uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 19;
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uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 42;
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uint16_t const P2P_DEFAULT_PORT = 18080;
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uint16_t const RPC_DEFAULT_PORT = 18081;
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uint16_t const ZMQ_RPC_DEFAULT_PORT = 18082;
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boost::uuids::uuid const NETWORK_ID = { {
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0x12 ,0x30, 0xF1, 0x71 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x10
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} }; // Bender's nightmare
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std::string const GENESIS_TX = "013c01ff0001ffffffffffff03029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd08807121017767aafcde9be00dcfd098715ebcf7f410daebc582fda69d24a28e9d0bc890d1";
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uint32_t const GENESIS_NONCE = 10000;
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namespace testnet
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{
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uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 53;
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uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 54;
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uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 63;
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uint16_t const P2P_DEFAULT_PORT = 28080;
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uint16_t const RPC_DEFAULT_PORT = 28081;
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uint16_t const ZMQ_RPC_DEFAULT_PORT = 28082;
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boost::uuids::uuid const NETWORK_ID = { {
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0x12 ,0x30, 0xF1, 0x71 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x11
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} }; // Bender's daydream
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std::string const GENESIS_TX = "013c01ff0001ffffffffffff03029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd08807121017767aafcde9be00dcfd098715ebcf7f410daebc582fda69d24a28e9d0bc890d1";
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uint32_t const GENESIS_NONCE = 10001;
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}
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namespace stagenet
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{
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uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 24;
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uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 25;
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uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 36;
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uint16_t const P2P_DEFAULT_PORT = 38080;
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uint16_t const RPC_DEFAULT_PORT = 38081;
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uint16_t const ZMQ_RPC_DEFAULT_PORT = 38082;
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boost::uuids::uuid const NETWORK_ID = { {
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0x12 ,0x30, 0xF1, 0x71 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x12
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} }; // Bender's daydream
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std::string const GENESIS_TX = "013c01ff0001ffffffffffff0302df5d56da0c7d643ddd1ce61901c7bdc5fb1738bfe39fbe69c28a3a7032729c0f2101168d0c4ca86fb55a4cf6a36d31431be1c53a3bd7411bb24e8832410289fa6f3b";
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uint32_t const GENESIS_NONCE = 10002;
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}
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}
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namespace cryptonote
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{
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enum network_type : uint8_t
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{
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MAINNET = 0,
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TESTNET,
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STAGENET,
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FAKECHAIN,
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UNDEFINED = 255
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};
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struct config_t
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{
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uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX;
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uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX;
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uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX;
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uint16_t const P2P_DEFAULT_PORT;
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uint16_t const RPC_DEFAULT_PORT;
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uint16_t const ZMQ_RPC_DEFAULT_PORT;
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boost::uuids::uuid const NETWORK_ID;
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std::string const GENESIS_TX;
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uint32_t const GENESIS_NONCE;
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};
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inline const config_t& get_config(network_type nettype)
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{
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static const config_t mainnet = {
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::config::CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX,
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::config::CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX,
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::config::CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX,
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::config::P2P_DEFAULT_PORT,
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::config::RPC_DEFAULT_PORT,
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::config::ZMQ_RPC_DEFAULT_PORT,
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::config::NETWORK_ID,
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::config::GENESIS_TX,
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::config::GENESIS_NONCE
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};
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static const config_t testnet = {
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::config::testnet::CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX,
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::config::testnet::CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX,
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::config::testnet::CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX,
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::config::testnet::P2P_DEFAULT_PORT,
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::config::testnet::RPC_DEFAULT_PORT,
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::config::testnet::ZMQ_RPC_DEFAULT_PORT,
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::config::testnet::NETWORK_ID,
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::config::testnet::GENESIS_TX,
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::config::testnet::GENESIS_NONCE
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};
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static const config_t stagenet = {
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::config::stagenet::CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX,
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::config::stagenet::CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX,
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::config::stagenet::CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX,
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::config::stagenet::P2P_DEFAULT_PORT,
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::config::stagenet::RPC_DEFAULT_PORT,
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::config::stagenet::ZMQ_RPC_DEFAULT_PORT,
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::config::stagenet::NETWORK_ID,
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::config::stagenet::GENESIS_TX,
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::config::stagenet::GENESIS_NONCE
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};
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switch (nettype)
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{
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case MAINNET: return mainnet;
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case TESTNET: return testnet;
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case STAGENET: return stagenet;
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case FAKECHAIN: return mainnet;
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default: throw std::runtime_error("Invalid network type");
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}
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};
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}
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