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https://codeberg.org/anoncontributorxmr/monero.git
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a98e976f9e
Early DB versions did not store key images for inputs if the
transaction spending them had no outputs (ie, all fee). This
is not correct, as this would allow these outputs to be double
spent. This was fixed in 533acc30ed
a few months ago, but databases having synced blocks 2021612 and
685498 with a faulty version will be missing those key images
in the spent keys database. This code checks for this, and adds
those key images if they are missing.
519 lines
18 KiB
C++
519 lines
18 KiB
C++
// 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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#ifndef BLOCKCHAIN_DB_H
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#define BLOCKCHAIN_DB_H
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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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* is_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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* vector<str> get_filenames()
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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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* uint64_t get_num_outputs(amount)
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* pub_key get_output_key(amount, index)
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* hash,index get_output_tx_and_index_from_global(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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* OUTPUT_EXISTS
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* KEY_IMAGE_EXISTS
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*/
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namespace cryptonote
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{
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// typedef for convenience
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typedef std::pair<crypto::hash, uint64_t> tx_out_index;
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#pragma pack(push, 1)
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struct output_data_t
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{
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crypto::public_key pubkey;
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uint64_t unlock_time;
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uint64_t height;
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};
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#pragma pack(pop)
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/***********************************
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* Exception Definitions
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***********************************/
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class DB_EXCEPTION : public std::exception
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{
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private:
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std::string m;
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protected:
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DB_EXCEPTION(const char *s) : m(s) { }
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public:
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virtual ~DB_EXCEPTION() { }
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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_ERROR : public DB_EXCEPTION
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{
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public:
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DB_ERROR() : DB_EXCEPTION("Generic DB Error") { }
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DB_ERROR(const char* s) : DB_EXCEPTION(s) { }
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};
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class DB_OPEN_FAILURE : public DB_EXCEPTION
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{
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public:
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DB_OPEN_FAILURE() : DB_EXCEPTION("Failed to open the db") { }
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DB_OPEN_FAILURE(const char* s) : DB_EXCEPTION(s) { }
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};
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class DB_CREATE_FAILURE : public DB_EXCEPTION
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{
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public:
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DB_CREATE_FAILURE() : DB_EXCEPTION("Failed to create the db") { }
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DB_CREATE_FAILURE(const char* s) : DB_EXCEPTION(s) { }
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};
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class DB_SYNC_FAILURE : public DB_EXCEPTION
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{
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public:
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DB_SYNC_FAILURE() : DB_EXCEPTION("Failed to sync the db") { }
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DB_SYNC_FAILURE(const char* s) : DB_EXCEPTION(s) { }
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};
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class BLOCK_DNE : public DB_EXCEPTION
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{
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public:
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BLOCK_DNE() : DB_EXCEPTION("The block requested does not exist") { }
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BLOCK_DNE(const char* s) : DB_EXCEPTION(s) { }
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};
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class BLOCK_PARENT_DNE : public DB_EXCEPTION
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{
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public:
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BLOCK_PARENT_DNE() : DB_EXCEPTION("The parent of the block does not exist") { }
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BLOCK_PARENT_DNE(const char* s) : DB_EXCEPTION(s) { }
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};
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class BLOCK_EXISTS : public DB_EXCEPTION
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{
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public:
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BLOCK_EXISTS() : DB_EXCEPTION("The block to be added already exists!") { }
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BLOCK_EXISTS(const char* s) : DB_EXCEPTION(s) { }
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};
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class BLOCK_INVALID : public DB_EXCEPTION
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{
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public:
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BLOCK_INVALID() : DB_EXCEPTION("The block to be added did not pass validation!") { }
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BLOCK_INVALID(const char* s) : DB_EXCEPTION(s) { }
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};
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class TX_DNE : public DB_EXCEPTION
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{
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public:
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TX_DNE() : DB_EXCEPTION("The transaction requested does not exist") { }
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TX_DNE(const char* s) : DB_EXCEPTION(s) { }
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};
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class TX_EXISTS : public DB_EXCEPTION
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{
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public:
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TX_EXISTS() : DB_EXCEPTION("The transaction to be added already exists!") { }
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TX_EXISTS(const char* s) : DB_EXCEPTION(s) { }
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};
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class OUTPUT_DNE : public DB_EXCEPTION
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{
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public:
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OUTPUT_DNE() : DB_EXCEPTION("The output requested does not exist!") { }
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OUTPUT_DNE(const char* s) : DB_EXCEPTION(s) { }
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};
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class OUTPUT_EXISTS : public DB_EXCEPTION
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{
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public:
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OUTPUT_EXISTS() : DB_EXCEPTION("The output to be added already exists!") { }
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OUTPUT_EXISTS(const char* s) : DB_EXCEPTION(s) { }
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};
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class KEY_IMAGE_EXISTS : public DB_EXCEPTION
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{
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public:
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KEY_IMAGE_EXISTS() : DB_EXCEPTION("The spent key image to be added already exists!") { }
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KEY_IMAGE_EXISTS(const char* s) : DB_EXCEPTION(s) { }
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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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, const crypto::hash& blk_hash
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) = 0;
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// tells the subclass to remove data about the top block
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virtual void remove_block() = 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, const crypto::hash& tx_hash) = 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, const transaction& tx) = 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, const uint64_t unlock_time) = 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, const crypto::hash* tx_hash_ptr = NULL);
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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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uint64_t num_calls = 0;
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uint64_t time_blk_hash = 0;
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uint64_t time_add_block1 = 0;
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uint64_t time_add_transaction = 0;
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protected:
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mutable uint64_t time_tx_exists = 0;
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uint64_t time_commit1 = 0;
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bool m_auto_remove_logs = true;
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public:
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// virtual dtor
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virtual ~BlockchainDB() { };
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// reset profiling stats
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void reset_stats();
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// show profiling stats
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void show_stats();
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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, const int db_flags = 0) = 0;
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// returns true of the db is open/ready, else false
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bool is_open() const;
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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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// get all files used by this db (if any)
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virtual std::vector<std::string> get_filenames() const = 0;
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// return the name of the folder the db's file(s) should reside in
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virtual std::string get_db_name() const = 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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virtual void batch_start(uint64_t batch_num_blocks=0) = 0;
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virtual void batch_stop() = 0;
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virtual void set_batch_transactions(bool) = 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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// NOTE: subclass implementations of this (or the functions it calls) need
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// to handle undoing any partially-added blocks in the event of a failure.
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virtual 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) const = 0;
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// return block with hash <h>
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virtual block get_block(const crypto::hash& h) const = 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) const = 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) const = 0;
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// return block at height <height>
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virtual block get_block_from_height(const uint64_t& height) const = 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) const = 0;
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// return timestamp of most recent block
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virtual uint64_t get_top_block_timestamp() const = 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) const = 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) const = 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) const = 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) const = 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) const = 0;
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// return vector of blocks in range <h1,h2> of height (inclusively)
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virtual std::vector<block> get_blocks_range(const uint64_t& h1, const uint64_t& h2) const = 0;
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// return vector of block hashes in range <h1, h2> of height (inclusively)
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virtual std::vector<crypto::hash> get_hashes_range(const uint64_t& h1, const uint64_t& h2) const = 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() const = 0;
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// return the block at the top of the blockchain
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virtual block get_top_block() const = 0;
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// return the height of the chain
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virtual uint64_t height() const = 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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virtual 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) const = 0;
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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) const = 0;
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// return tx with hash <h>
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// throw if no such tx exists
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virtual transaction get_tx(const crypto::hash& h) const = 0;
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// returns the total number of transactions in all blocks
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virtual uint64_t get_tx_count() const = 0;
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// return list of tx with hashes <hlist>.
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// TODO: decide if a missing hash means return empty list
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// or just skip that hash
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virtual std::vector<transaction> get_tx_list(const std::vector<crypto::hash>& hlist) const = 0;
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// returns height of block that contains transaction with hash <h>
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virtual uint64_t get_tx_block_height(const crypto::hash& h) const = 0;
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// returns the total number of outputs of amount <amount>
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virtual uint64_t get_num_outputs(const uint64_t& amount) const = 0;
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// return index of the first element (should be hidden, but isn't)
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virtual uint64_t get_indexing_base() const { return 0; }
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// return public key for output with global output amount <amount> and index <index>
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virtual output_data_t get_output_key(const uint64_t& amount, const uint64_t& index) = 0;
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virtual output_data_t get_output_key(const uint64_t& global_index) const = 0;
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// returns the tx hash associated with an output, referenced by global output index
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virtual tx_out_index get_output_tx_and_index_from_global(const uint64_t& index) const = 0;
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// returns the transaction-local reference for the output with <amount> at <index>
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// return type is pair of tx hash and index
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virtual tx_out_index get_output_tx_and_index(const uint64_t& amount, const uint64_t& index) = 0;
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virtual void get_output_tx_and_index(const uint64_t& amount, const std::vector<uint64_t> &offsets, std::vector<tx_out_index> &indices) = 0;
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virtual void get_output_key(const uint64_t &amount, const std::vector<uint64_t> &offsets, std::vector<output_data_t> &outputs) = 0;
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virtual bool can_thread_bulk_indices() const = 0;
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// return a vector of indices corresponding to the global output index for
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// each output in the transaction with hash <h>
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virtual std::vector<uint64_t> get_tx_output_indices(const crypto::hash& h) const = 0;
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// return a vector of indices corresponding to the amount output index for
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// each output in the transaction with hash <h>
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virtual std::vector<uint64_t> get_tx_amount_output_indices(const crypto::hash& h) const = 0;
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// returns true if key image <img> is present in spent key images storage
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virtual bool has_key_image(const crypto::key_image& img) const = 0;
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virtual bool for_all_key_images(std::function<bool(const crypto::key_image&)>) const = 0;
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virtual bool for_all_blocks(std::function<bool(uint64_t, const crypto::hash&, const cryptonote::block&)>) const = 0;
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virtual bool for_all_transactions(std::function<bool(const crypto::hash&, const cryptonote::transaction&)>) const = 0;
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virtual bool for_all_outputs(std::function<bool(uint64_t amount, const crypto::hash &tx_hash, size_t tx_idx)> f) const = 0;
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// Hard fork related storage
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virtual void set_hard_fork_starting_height(uint8_t version, uint64_t height) = 0;
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virtual uint64_t get_hard_fork_starting_height(uint8_t version) const = 0;
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virtual void set_hard_fork_version(uint64_t height, uint8_t version) = 0;
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virtual uint8_t get_hard_fork_version(uint64_t height) const = 0;
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// fix up anything that may be wrong due to past bugs
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virtual void fixup();
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void set_auto_remove_logs(bool auto_remove) { m_auto_remove_logs = auto_remove; }
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bool m_open;
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mutable epee::critical_section m_synchronization_lock;
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}; // class BlockchainDB
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} // namespace cryptonote
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#endif // BLOCKCHAIN_DB_H
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