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wallet: do not try to use rct txes a few blocks before the fork
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1bf069825b
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c27194a444
@ -3254,7 +3254,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_2(std::vector<cryp
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bool adding_fee; // true if new outputs go towards fee, rather than destinations
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uint64_t needed_fee, available_for_fee = 0;
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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const bool use_rct = use_fork_rules(4);
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const bool use_rct = use_fork_rules(4, 0);
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fee_multiplier = sanitize_fee_multiplier(fee_multiplier);
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@ -3503,7 +3503,7 @@ std::vector<wallet2::pending_tx> wallet2::create_transactions_all(const cryptono
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std::vector<TX> txes;
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uint64_t needed_fee, available_for_fee = 0;
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uint64_t upper_transaction_size_limit = get_upper_tranaction_size_limit();
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const bool use_rct = use_fork_rules(4);
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const bool use_rct = use_fork_rules(4, 0);
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// gather all our dust and non dust outputs
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for (size_t i = 0; i < m_transfers.size(); ++i)
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@ -3754,12 +3754,29 @@ void wallet2::transfer_from(const std::vector<size_t> &outs, size_t num_outputs,
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}
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//----------------------------------------------------------------------------------------------------
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bool wallet2::use_fork_rules(uint8_t version)
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void wallet2::get_hard_fork_info(uint8_t version, uint64_t &earliest_height)
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{
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epee::json_rpc::request<cryptonote::COMMAND_RPC_HARD_FORK_INFO::request> req_t = AUTO_VAL_INIT(req_t);
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epee::json_rpc::response<cryptonote::COMMAND_RPC_HARD_FORK_INFO::response, std::string> resp_t = AUTO_VAL_INIT(resp_t);
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m_daemon_rpc_mutex.lock();
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req_t.jsonrpc = "2.0";
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req_t.id = epee::serialization::storage_entry(0);
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req_t.method = "hard_fork_info";
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req_t.params.version = version;
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bool r = net_utils::invoke_http_json_remote_command2(m_daemon_address + "/json_rpc", req_t, resp_t, m_http_client);
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m_daemon_rpc_mutex.unlock();
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CHECK_AND_ASSERT_THROW_MES(r, "Failed to connect to daemon");
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CHECK_AND_ASSERT_THROW_MES(resp_t.result.status != CORE_RPC_STATUS_BUSY, "Failed to connect to daemon");
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CHECK_AND_ASSERT_THROW_MES(resp_t.result.status == CORE_RPC_STATUS_OK, "Failed to get hard fork status");
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earliest_height = resp_t.result.earliest_height;
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}
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//----------------------------------------------------------------------------------------------------
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bool wallet2::use_fork_rules(uint8_t version, uint64_t early_blocks)
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{
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cryptonote::COMMAND_RPC_GET_HEIGHT::request req = AUTO_VAL_INIT(req);
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cryptonote::COMMAND_RPC_GET_HEIGHT::response res = AUTO_VAL_INIT(res);
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epee::json_rpc::request<cryptonote::COMMAND_RPC_HARD_FORK_INFO::request> req_t = AUTO_VAL_INIT(req_t);
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epee::json_rpc::response<cryptonote::COMMAND_RPC_HARD_FORK_INFO::response, std::string> resp_t = AUTO_VAL_INIT(resp_t);
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m_daemon_rpc_mutex.lock();
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bool r = net_utils::invoke_http_json_remote_command2(m_daemon_address + "/getheight", req, res, m_http_client);
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@ -3768,18 +3785,10 @@ bool wallet2::use_fork_rules(uint8_t version)
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CHECK_AND_ASSERT_MES(res.status != CORE_RPC_STATUS_BUSY, false, "Failed to connect to daemon");
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CHECK_AND_ASSERT_MES(res.status == CORE_RPC_STATUS_OK, false, "Failed to get current blockchain height");
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m_daemon_rpc_mutex.lock();
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req_t.jsonrpc = "2.0";
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req_t.id = epee::serialization::storage_entry(0);
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req_t.method = "hard_fork_info";
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req_t.params.version = version;
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r = net_utils::invoke_http_json_remote_command2(m_daemon_address + "/json_rpc", req_t, resp_t, m_http_client);
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m_daemon_rpc_mutex.unlock();
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CHECK_AND_ASSERT_MES(r, false, "Failed to connect to daemon");
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CHECK_AND_ASSERT_MES(resp_t.result.status != CORE_RPC_STATUS_BUSY, false, "Failed to connect to daemon");
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CHECK_AND_ASSERT_MES(resp_t.result.status == CORE_RPC_STATUS_OK, false, "Failed to get hard fork status");
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uint64_t earliest_height;
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get_hard_fork_info(version, earliest_height); // can throw
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bool close_enough = res.height >= resp_t.result.earliest_height - 10; // start using the rules a bit beforehand
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bool close_enough = res.height >= earliest_height - early_blocks; // start using the rules that many blocks beforehand
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if (close_enough)
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LOG_PRINT_L2("Using v" << (unsigned)version << " rules");
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else
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@ -3791,7 +3800,7 @@ uint64_t wallet2::get_upper_tranaction_size_limit()
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{
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if (m_upper_transaction_size_limit > 0)
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return m_upper_transaction_size_limit;
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uint64_t full_reward_zone = use_fork_rules(2) ? CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V2 : CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1;
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uint64_t full_reward_zone = use_fork_rules(2, 10) ? CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V2 : CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V1;
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return ((full_reward_zone * 125) / 100) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
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}
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//----------------------------------------------------------------------------------------------------
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@ -3884,7 +3893,7 @@ std::vector<size_t> wallet2::select_available_mixable_outputs(bool trusted_daemo
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std::vector<wallet2::pending_tx> wallet2::create_unmixable_sweep_transactions(bool trusted_daemon)
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{
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// From hard fork 1, we don't consider small amounts to be dust anymore
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const bool hf1_rules = use_fork_rules(2); // first hard fork has version 2
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const bool hf1_rules = use_fork_rules(2, 10); // first hard fork has version 2
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tx_dust_policy dust_policy(hf1_rules ? 0 : ::config::DEFAULT_DUST_THRESHOLD);
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// may throw
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@ -391,8 +391,8 @@ namespace tools
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bool get_tx_key(const crypto::hash &txid, crypto::secret_key &tx_key) const;
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bool use_fork_rules(uint8_t version);
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void get_hard_fork_info(uint8_t version, uint64_t &earliest_height);
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bool use_fork_rules(uint8_t version, uint64_t early_blocks = 0);
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std::string get_wallet_file() const;
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std::string get_keys_file() const;
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@ -235,7 +235,7 @@ namespace tools
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try
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{
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uint64_t mixin = req.mixin;
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if (mixin < 2 && m_wallet.use_fork_rules(2)) {
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if (mixin < 2 && m_wallet.use_fork_rules(2, 10)) {
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LOG_PRINT_L1("Requested mixin " << req.mixin << " too low for hard fork 2, using 2");
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mixin = 2;
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}
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@ -309,7 +309,7 @@ namespace tools
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try
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{
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uint64_t mixin = req.mixin;
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if (mixin < 2 && m_wallet.use_fork_rules(2)) {
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if (mixin < 2 && m_wallet.use_fork_rules(2, 10)) {
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LOG_PRINT_L1("Requested mixin " << req.mixin << " too low for hard fork 2, using 2");
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mixin = 2;
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}
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