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511 lines
16 KiB
C
511 lines
16 KiB
C
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// Copyright (c) 2014, 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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#include <list>
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#include <string>
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#include <exception>
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#include "crypto/hash.h"
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#include "cryptonote_core/cryptonote_basic.h"
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#include "cryptonote_core/difficulty.h"
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/* DB Driver Interface
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*
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* The DB interface is a store for the canonical block chain.
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* It serves as a persistent storage for the blockchain.
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*
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* For the sake of efficiency, the reference implementation will also
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* store some blockchain data outside of the blocks, such as spent
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* transfer key images, unspent transaction outputs, etc.
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*
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* Transactions are duplicated so that we don't have to fetch a whole block
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* in order to fetch a transaction from that block. If this is deemed
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* unnecessary later, this can change.
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*
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* Spent key images are duplicated outside of the blocks so it is quick
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* to verify an output hasn't already been spent
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*
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* Unspent transaction outputs are duplicated to quickly gather random
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* outputs to use for mixins
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*
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* IMPORTANT:
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* A concrete implementation of this interface should populate these
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* duplicated members! It is possible to have a partial implementation
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* of this interface call to private members of the interface to be added
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* later that will then populate as needed.
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*
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* General:
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* open()
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* close()
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* sync()
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* reset()
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*
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* Lock and unlock provided for reorg externally, and for block
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* additions internally, this way threaded reads are completely fine
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* unless the blockchain is changing.
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* bool lock()
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* unlock()
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*
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* Blocks:
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* bool block_exists(hash)
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* height add_block(block, block_size, cumulative_difficulty, coins_generated, transactions)
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* block get_block(hash)
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* height get_block_height(hash)
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* header get_block_header(hash)
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* block get_block_from_height(height)
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* size_t get_block_size(height)
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* difficulty get_block_cumulative_difficulty(height)
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* uint64_t get_block_already_generated_coins(height)
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* uint64_t get_block_timestamp(height)
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* uint64_t get_top_block_timestamp()
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* hash get_block_hash_from_height(height)
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* blocks get_blocks_range(height1, height2)
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* hashes get_hashes_range(height1, height2)
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* hash top_block_hash()
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* block get_top_block()
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* height height()
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* void pop_block(block&, tx_list&)
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*
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* Transactions:
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* bool tx_exists(hash)
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* uint64_t get_tx_unlock_time(hash)
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* tx get_tx(hash)
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* uint64_t get_tx_count()
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* tx_list get_tx_list(hash_list)
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* height get_tx_block_height(hash)
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*
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* Outputs:
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* index get_random_output(amount)
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* uint64_t get_num_outputs(amount)
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* pub_key get_output_key(amount, index)
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* tx_out get_output(tx_hash, index)
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* hash,index get_output_tx_and_index(amount, index)
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* vec<uint64> get_tx_output_indices(tx_hash)
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*
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*
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* Spent Output Key Images:
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* bool has_key_image(key_image)
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*
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* Exceptions:
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* DB_ERROR -- generic
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* DB_OPEN_FAILURE
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* DB_CREATE_FAILURE
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* DB_SYNC_FAILURE
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* BLOCK_DNE
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* BLOCK_PARENT_DNE
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* BLOCK_EXISTS
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* BLOCK_INVALID -- considering making this multiple errors
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* TX_DNE
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* TX_EXISTS
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* OUTPUT_DNE
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*/
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namespace cryptonote
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{
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/***********************************
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* Exception Definitions
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***********************************/
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class DB_ERROR : public std::exception
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{
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private:
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std::string m;
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public:
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DB_ERROR() : m("Generic DB Error") { }
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DB_ERROR(const char* s) : m(s) { }
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virtual ~DB_ERROR() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class DB_OPEN_FAILURE : public std::exception
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{
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private:
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std::string m;
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public:
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DB_OPEN_FAILURE() : m("Failed to open the db") { }
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DB_OPEN_FAILURE(const char* s) : m(s) { }
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virtual ~DB_OPEN_FAILURE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class DB_CREATE_FAILURE : public std::exception
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{
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private:
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std::string m;
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public:
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DB_CREATE_FAILURE() : m("Failed to create the db") { }
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DB_CREATE_FAILURE(const char* s) : m(s) { }
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virtual ~DB_CREATE_FAILURE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class DB_SYNC_FAILURE : public std::exception
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{
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private:
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std::string m;
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public:
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DB_SYNC_FAILURE() : m("Failed to sync the db") { }
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DB_SYNC_FAILURE(const char* s) : m(s) { }
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virtual ~DB_SYNC_FAILURE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class BLOCK_DNE : public std::exception
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{
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private:
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std::string m;
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public:
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BLOCK_DNE() : m("The block requested does not exist") { }
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BLOCK_DNE(const char* s) : m(s) { }
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virtual ~BLOCK_DNE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class BLOCK_PARENT_DNE : public std::exception
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{
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private:
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std::string m;
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public:
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BLOCK_PARENT_DNE() : m("The parent of the block does not exist") { }
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BLOCK_PARENT_DNE(const char* s) : m(s) { }
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virtual ~BLOCK_PARENT_DNE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class BLOCK_EXISTS : public std::exception
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{
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private:
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std::string m;
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public:
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BLOCK_EXISTS() : m("The block to be added already exists!") { }
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BLOCK_EXISTS(const char* s) : m(s) { }
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virtual ~BLOCK_EXISTS() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class BLOCK_INVALID : public std::exception
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{
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private:
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std::string m;
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public:
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BLOCK_INVALID() : m("The block to be added did not pass validation!") { }
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BLOCK_INVALID(const char* s) : m(s) { }
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virtual ~BLOCK_INVALID() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class TX_DNE : public std::exception
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{
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private:
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std::string m;
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public:
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TX_DNE() : m("The transaction requested does not exist") { }
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TX_DNE(const char* s) : m(s) { }
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virtual ~TX_DNE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class TX_EXISTS : public std::exception
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{
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private:
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std::string m;
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public:
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TX_EXISTS() : m("The transaction to be added already exists!") { }
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TX_EXISTS(const char* s) : m(s) { }
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virtual ~TX_EXISTS() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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class OUTPUT_DNE : public std::exception
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{
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private:
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std::string m;
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public:
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OUTPUT_DNE() : m("The transaction requested does not exist") { }
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OUTPUT_DNE(const char* s) : m(s) { }
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virtual ~OUTPUT_DNE() { }
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const char* what() const throw()
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{
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return m.c_str();
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}
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};
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/***********************************
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* End of Exception Definitions
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***********************************/
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class BlockchainDB
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{
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private:
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/*********************************************************************
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* private virtual members
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*********************************************************************/
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// tells the subclass to add the block and metadata to storage
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virtual void add_block( const block& blk
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, const size_t& block_size
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, const difficulty_type& cumulative_difficulty
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, const uint64_t& coins_generated
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) = 0;
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// tells the subclass to remove data about a block
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virtual void remove_block(const crypto::hash& blk_hash) = 0;
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// tells the subclass to store the transaction and its metadata
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virtual void add_transaction_data(const crypto::hash& blk_hash, const transaction& tx) = 0;
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// tells the subclass to remove data about a transaction
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virtual void remove_transaction_data(const crypto::hash& tx_hash) = 0;
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// tells the subclass to store an output
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virtual void add_output(const crypto::hash& tx_hash, const tx_out& tx_output, const uint64_t& local_index) = 0;
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// tells the subclass to remove an output
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virtual void remove_output(const tx_out& tx_output) = 0;
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// tells the subclass to store a spent key
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virtual void add_spent_key(const crypto::key_image& k_image) = 0;
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// tells the subclass to remove a spent key
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virtual void remove_spent_key(const crypto::key_image& k_image) = 0;
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/*********************************************************************
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* private concrete members
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*********************************************************************/
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// private version of pop_block, for undoing if an add_block goes tits up
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void pop_block();
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// helper function for add_transactions, to add each individual tx
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void add_transaction(const crypto::hash& blk_hash, const transaction& tx);
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// helper function to remove transaction from blockchain
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void remove_transaction(const crypto::hash& tx_hash);
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public:
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// open the db at location <filename>, or create it if there isn't one.
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virtual void open(const std::string& filename) = 0;
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// make sure implementation has a create function as well
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virtual void create(const std::string& filename) = 0;
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// close and sync the db
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virtual void close() = 0;
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// sync the db
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virtual void sync() = 0;
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// reset the db -- USE WITH CARE
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virtual void reset() = 0;
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// FIXME: these are just for functionality mocking, need to implement
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// RAII-friendly and multi-read one-write friendly locking mechanism
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//
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// acquire db lock
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virtual bool lock() = 0;
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// release db lock
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virtual void unlock() = 0;
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// adds a block with the given metadata to the top of the blockchain, returns the new height
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uint64_t add_block( const block& blk
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, const size_t& block_size
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, const difficulty_type& cumulative_difficulty
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, const uint64_t& coins_generated
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, const std::vector<transaction>& txs
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);
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// return true if a block with hash <h> exists in the blockchain
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virtual bool block_exists(const crypto::hash& h) = 0;
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// return block with hash <h>
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virtual block get_block(const crypto::hash& h) = 0;
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// return the height of the block with hash <h> on the blockchain,
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// throw if it doesn't exist
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virtual uint64_t get_block_height(const crypto::hash& h) = 0;
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// return header for block with hash <h>
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virtual block_header get_block_header(const crypto::hash& h) = 0;
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// return block at height <height>
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virtual block get_block_from_height(const uint64_t& height) = 0;
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// return timestamp of block at height <height>
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virtual uint64_t get_block_timestamp(const uint64_t& height) = 0;
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// return timestamp of most recent block
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virtual uint64_t get_top_block_timestamp() = 0;
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// return block size of block at height <height>
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virtual size_t get_block_size(const uint64_t& height) = 0;
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// return cumulative difficulty up to and including block at height <height>
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virtual difficulty_type get_block_cumulative_difficulty(const uint64_t& height) = 0;
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// return difficulty of block at height <height>
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virtual difficulty_type get_block_difficulty(const uint64_t& height) = 0;
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// return number of coins generated up to and including block at height <height>
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virtual uint64_t get_block_already_generated_coins(const uint64_t& height) = 0;
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// return hash of block at height <height>
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virtual crypto::hash get_block_hash_from_height(const uint64_t& height) = 0;
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// return list of blocks in range <h1,h2> of height.
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virtual std::list<block> get_blocks_range(const uint64_t& h1, const uint64_t& h2) = 0;
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// return list of block hashes in range <h1, h2> of height
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virtual std::list<crypto::hash> get_hashes_range(const uint64_t& h1, const uint64_t& h2) = 0;
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// return the hash of the top block on the chain
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virtual crypto::hash top_block_hash() = 0;
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// return the block at the top of the blockchain
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virtual block get_top_block() = 0;
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// return the index of the top block on the chain
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// NOTE: for convenience using heights as indices, this is not the total
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// size of the blockchain, but rather the index of the top block. As the
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// chain is 0-indexed, the total size will be height() + 1.
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virtual uint64_t height() = 0;
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// pops the top block off the blockchain.
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// Returns by reference the popped block and its associated transactions
|
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//
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// IMPORTANT:
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|
// When a block is popped, the transactions associated with it need to be
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// removed, as well as outputs and spent key images associated with
|
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// those transactions.
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void pop_block(block& blk, std::vector<transaction>& txs);
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// return true if a transaction with hash <h> exists
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virtual bool tx_exists(const crypto::hash& h) = 0;
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||
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// return unlock time of tx with hash <h>
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virtual uint64_t get_tx_unlock_time(const crypto::hash& h) = 0;
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||
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// return tx with hash <h>
|
||
|
// throw if no such tx exists
|
||
|
virtual transaction get_tx(const crypto::hash& h) = 0;
|
||
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|
||
|
// returns the total number of transactions in all blocks
|
||
|
virtual uint64_t get_tx_count() = 0;
|
||
|
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||
|
// return list of tx with hashes <hlist>.
|
||
|
// TODO: decide if a missing hash means return empty list
|
||
|
// or just skip that hash
|
||
|
virtual std::list<transaction> get_tx_list(const std::vector<crypto::hash>& hlist) = 0;
|
||
|
|
||
|
// returns height of block that contains transaction with hash <h>
|
||
|
virtual uint64_t get_tx_block_height(const crypto::hash& h) = 0;
|
||
|
|
||
|
// return global output index of a random output of amount <amount>
|
||
|
virtual uint64_t get_random_output(const uint64_t& amount) = 0;
|
||
|
|
||
|
// returns the total number of outputs of amount <amount>
|
||
|
virtual uint64_t get_num_outputs(const uint64_t& amount) = 0;
|
||
|
|
||
|
// return public key for output with global output amount <amount> and index <index>
|
||
|
virtual crypto::public_key get_output_key(const uint64_t& amount, const uint64_t& index) = 0;
|
||
|
|
||
|
// returns the output indexed by <index> in the transaction with hash <h>
|
||
|
virtual tx_out get_output(const crypto::hash& h, const uint64_t& index) = 0;
|
||
|
|
||
|
// returns the transaction-local reference for the output with <amount> at <index>
|
||
|
// return type is pair of tx hash and index
|
||
|
virtual tx_out_index get_output_tx_and_index(const uint64_t& amount, const uint64_t& index) = 0;
|
||
|
|
||
|
// return a vector of indices corresponding to the global output index for
|
||
|
// each output in the transaction with hash <h>
|
||
|
virtual std::vector<uint64_t> get_tx_output_indices(const crypto::hash& h) = 0;
|
||
|
|
||
|
// returns true if key image <img> is present in spent key images storage
|
||
|
virtual bool has_key_image(const crypto::key_image& img) = 0;
|
||
|
|
||
|
}; // class BlockchainDB
|
||
|
|
||
|
|
||
|
} // namespace cryptonote
|