core: new /getrandom_rctouts.bin binary RPC call
to get random ringct outputs to mix with
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@ -1597,6 +1597,104 @@ bool Blockchain::get_random_outs_for_amounts(const COMMAND_RPC_GET_RANDOM_OUTPUT
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return true;
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}
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//------------------------------------------------------------------
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// This function adds the ringct output at index i to the list
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// unlocked and other such checks should be done by here.
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void Blockchain::add_out_to_get_rct_random_outs(std::list<COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::out_entry>& outs, size_t i) 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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COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::out_entry& oen = *outs.insert(outs.end(), COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::out_entry());
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oen.global_amount_index = i;
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output_data_t data = m_db->get_output_key(0, i);
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oen.out_key = data.pubkey;
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oen.commitment = m_db->get_rct_commitment(i);
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}
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//------------------------------------------------------------------
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// This function takes an RPC request for mixins and creates an RPC response
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// with the requested mixins.
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// TODO: figure out why this returns boolean / if we should be returning false
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// in some cases
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bool Blockchain::get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res) 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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// for each amount that we need to get mixins for, get <n> random outputs
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// from BlockchainDB where <n> is req.outs_count (number of mixins).
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auto num_outs = m_db->get_num_outputs(0);
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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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while (num_outs > 0)
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{
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const tx_out_index toi = m_db->get_output_tx_and_index(0, 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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break;
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--num_outs;
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}
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std::unordered_set<uint64_t> seen_indices;
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// if there aren't enough outputs to mix with (or just enough),
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// use all of them. Eventually this should become impossible.
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if (num_outs <= req.outs_count)
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{
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for (uint64_t i = 0; i < num_outs; i++)
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{
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// get tx_hash, tx_out_index from DB
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tx_out_index toi = m_db->get_output_tx_and_index(0, i);
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// if tx is unlocked, add output to result_outs
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if (is_tx_spendtime_unlocked(m_db->get_tx_unlock_time(toi.first)))
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{
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add_out_to_get_rct_random_outs(res.outs, i);
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}
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}
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}
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else
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{
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// while we still need more mixins
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while (res.outs.size() < req.outs_count)
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{
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// if we've gone through every possible output, we've gotten all we can
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if (seen_indices.size() == num_outs)
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{
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break;
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}
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// get a random output index from the DB. If we've already seen it,
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// return to the top of the loop and try again, otherwise add it to the
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// list of output indices we've seen.
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// triangular distribution over [a,b) with a=0, mode c=b=up_index_limit
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uint64_t r = crypto::rand<uint64_t>() % ((uint64_t)1 << 53);
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double frac = std::sqrt((double)r / ((uint64_t)1 << 53));
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uint64_t i = (uint64_t)(frac*num_outs);
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// just in case rounding up to 1 occurs after sqrt
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if (i == num_outs)
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--i;
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if (seen_indices.count(i))
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{
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continue;
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}
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seen_indices.emplace(i);
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// get tx_hash, tx_out_index from DB
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tx_out_index toi = m_db->get_output_tx_and_index(0, i);
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// if the output's transaction is unlocked, add the output's index to
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// our list.
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if (is_tx_spendtime_unlocked(m_db->get_tx_unlock_time(toi.first)))
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{
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add_out_to_get_rct_random_outs(res.outs, i);
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}
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}
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}
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return true;
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}
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//------------------------------------------------------------------
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bool Blockchain::get_outs(const COMMAND_RPC_GET_OUTPUTS::request& req, COMMAND_RPC_GET_OUTPUTS::response& res) const
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{
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LOG_PRINT_L3("Blockchain::" << __func__);
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@ -454,6 +454,23 @@ namespace cryptonote
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*/
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bool get_outs(const COMMAND_RPC_GET_OUTPUTS::request& req, COMMAND_RPC_GET_OUTPUTS::response& res) const;
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/**
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* @brief gets random ringct outputs to mix with
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*
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* This function takes an RPC request for outputs to mix with
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* and creates an RPC response with the resultant output indices
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* and the matching keys.
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*
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* Outputs to mix with are randomly selected from the utxo set
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* for each output amount in the request.
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*
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* @param req the output amounts and number of mixins to select
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* @param res return-by-reference the resultant output indices
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*
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* @return true
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*/
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bool get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res) const;
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/**
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* @brief gets the global indices for outputs from a given transaction
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*
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@ -1053,6 +1070,14 @@ namespace cryptonote
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*/
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void add_out_to_get_random_outs(COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::outs_for_amount& result_outs, uint64_t amount, size_t i) const;
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/**
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* @brief adds the given output to the requested set of random ringct outputs
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*
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* @param outs return-by-reference the set the output is to be added to
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* @param i the rct output index
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*/
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void add_out_to_get_rct_random_outs(std::list<COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::out_entry>& outs, size_t i) const;
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/**
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* @brief checks if a transaction is unlocked (its outputs spendable)
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*
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@ -706,6 +706,11 @@ namespace cryptonote
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return m_blockchain_storage.get_outs(req, res);
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}
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//-----------------------------------------------------------------------------------------------
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bool core::get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res) const
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{
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return m_blockchain_storage.get_random_rct_outs(req, res);
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}
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//-----------------------------------------------------------------------------------------------
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bool core::get_tx_outputs_gindexs(const crypto::hash& tx_id, std::vector<uint64_t>& indexs) const
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{
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return m_blockchain_storage.get_tx_outputs_gindexs(tx_id, indexs);
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@ -479,6 +479,14 @@ namespace cryptonote
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*/
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bool get_outs(const COMMAND_RPC_GET_OUTPUTS::request& req, COMMAND_RPC_GET_OUTPUTS::response& res) const;
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/**
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*
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* @copydoc Blockchain::get_random_rct_outs
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*
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* @note see Blockchain::get_random_rct_outs
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*/
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bool get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res) const;
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/**
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* @copydoc miner::pause
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@ -250,6 +250,30 @@ namespace cryptonote
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return true;
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}
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//------------------------------------------------------------------------------------------------------------------------------
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bool core_rpc_server::on_get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res)
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{
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CHECK_CORE_BUSY();
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res.status = "Failed";
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if(!m_core.get_random_rct_outs(req, res))
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{
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return true;
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}
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res.status = CORE_RPC_STATUS_OK;
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std::stringstream ss;
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typedef COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::out_entry out_entry;
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CHECK_AND_ASSERT_MES(res.outs.size(), true, "internal error: res.outs.size() is empty");
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std::for_each(res.outs.begin(), res.outs.end(), [&](out_entry& oe)
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{
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ss << oe.global_amount_index << " ";
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});
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ss << ENDL;
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std::string s = ss.str();
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LOG_PRINT_L2("COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS: " << ENDL << s);
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res.status = CORE_RPC_STATUS_OK;
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return true;
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}
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//------------------------------------------------------------------------------------------------------------------------------
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bool core_rpc_server::on_get_indexes(const COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES::request& req, COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES::response& res)
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{
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CHECK_CORE_BUSY();
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@ -79,6 +79,7 @@ namespace cryptonote
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MAP_URI_AUTO_BIN2("/get_o_indexes.bin", on_get_indexes, COMMAND_RPC_GET_TX_GLOBAL_OUTPUTS_INDEXES)
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MAP_URI_AUTO_BIN2("/getrandom_outs.bin", on_get_random_outs, COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS)
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MAP_URI_AUTO_BIN2("/get_outs.bin", on_get_outs, COMMAND_RPC_GET_OUTPUTS)
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MAP_URI_AUTO_BIN2("/getrandom_rctouts.bin", on_get_random_rct_outs, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS)
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MAP_URI_AUTO_JON2("/gettransactions", on_get_transactions, COMMAND_RPC_GET_TRANSACTIONS)
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MAP_URI_AUTO_JON2("/is_key_image_spent", on_is_key_image_spent, COMMAND_RPC_IS_KEY_IMAGE_SPENT)
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MAP_URI_AUTO_JON2("/sendrawtransaction", on_send_raw_tx, COMMAND_RPC_SEND_RAW_TX)
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@ -128,6 +129,7 @@ namespace cryptonote
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bool on_mining_status(const COMMAND_RPC_MINING_STATUS::request& req, COMMAND_RPC_MINING_STATUS::response& res);
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bool on_get_random_outs(const COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::request& req, COMMAND_RPC_GET_RANDOM_OUTPUTS_FOR_AMOUNTS::response& res);
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bool on_get_outs(const COMMAND_RPC_GET_OUTPUTS::request& req, COMMAND_RPC_GET_OUTPUTS::response& res);
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bool on_get_random_rct_outs(const COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::request& req, COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS::response& res);
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bool on_get_info(const COMMAND_RPC_GET_INFO::request& req, COMMAND_RPC_GET_INFO::response& res);
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bool on_save_bc(const COMMAND_RPC_SAVE_BC::request& req, COMMAND_RPC_SAVE_BC::response& res);
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bool on_get_peer_list(const COMMAND_RPC_GET_PEER_LIST::request& req, COMMAND_RPC_GET_PEER_LIST::response& res);
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@ -315,6 +315,36 @@ namespace cryptonote
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END_KV_SERIALIZE_MAP()
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};
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};
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struct COMMAND_RPC_GET_RANDOM_RCT_OUTPUTS
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{
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struct request
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{
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uint64_t outs_count;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE(outs_count)
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END_KV_SERIALIZE_MAP()
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};
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#pragma pack (push, 1)
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struct out_entry
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{
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uint64_t global_amount_index;
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crypto::public_key out_key;
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rct::key commitment;
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};
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#pragma pack(pop)
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struct response
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{
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std::list<out_entry> outs;
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std::string status;
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BEGIN_KV_SERIALIZE_MAP()
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KV_SERIALIZE_CONTAINER_POD_AS_BLOB(outs)
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KV_SERIALIZE(status)
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END_KV_SERIALIZE_MAP()
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};
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};
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//-----------------------------------------------
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struct COMMAND_RPC_SEND_RAW_TX
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{
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