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tests: fix HF12 chaingen - construct bc object from events
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@ -47,6 +47,12 @@
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#include "cryptonote_basic/cryptonote_format_utils.h"
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#include "cryptonote_basic/miner.h"
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#include "blockchain_db/blockchain_db.h"
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#include "cryptonote_core/cryptonote_core.h"
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#include "cryptonote_core/tx_pool.h"
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#include "cryptonote_core/blockchain.h"
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#include "blockchain_db/testdb.h"
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#include "chaingen.h"
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#include "device/device.hpp"
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using namespace std;
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@ -55,6 +61,126 @@ using namespace epee;
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using namespace crypto;
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using namespace cryptonote;
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namespace
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{
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/**
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* Dummy TestDB to store height -> (block, hash) information
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* for the use only in the test_generator::fill_nonce() function,
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* which requires blockchain object to correctly compute PoW on HF12+ blocks
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* as the mining function requires it to obtain a valid seedhash.
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*/
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class TestDB: public cryptonote::BaseTestDB
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{
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private:
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struct block_t
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{
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cryptonote::block bl;
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crypto::hash hash;
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};
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public:
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TestDB() { m_open = true; }
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virtual void add_block( const cryptonote::block& blk
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, size_t block_weight
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, uint64_t long_term_block_weight
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, const cryptonote::difficulty_type& cumulative_difficulty
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, const uint64_t& coins_generated
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, uint64_t num_rct_outs
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, const crypto::hash& blk_hash
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) override
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{
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blocks.push_back({blk, blk_hash});
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}
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virtual uint64_t height() const override { return blocks.empty() ? 0 : blocks.size() - 1; }
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// Required for randomx
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virtual crypto::hash get_block_hash_from_height(const uint64_t &height) const override
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{
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if (height < blocks.size())
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{
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MDEBUG("Get hash for block height: " << height << " hash: " << blocks[height].hash);
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return blocks[height].hash;
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}
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MDEBUG("Get hash for block height: " << height << " zero-hash");
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crypto::hash hash = crypto::null_hash;
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*(uint64_t*)&hash = height;
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return hash;
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}
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virtual crypto::hash top_block_hash(uint64_t *block_height = NULL) const override
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{
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const uint64_t h = height();
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if (block_height != nullptr)
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{
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*block_height = h;
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}
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return get_block_hash_from_height(h);
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}
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virtual cryptonote::block get_top_block() const override
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{
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if (blocks.empty())
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{
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cryptonote::block b;
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return b;
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}
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return blocks[blocks.size()-1].bl;
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}
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virtual void pop_block(cryptonote::block &blk, std::vector<cryptonote::transaction> &txs) override { if (!blocks.empty()) blocks.pop_back(); }
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virtual void set_hard_fork_version(uint64_t height, uint8_t version) override { if (height >= hf.size()) hf.resize(height + 1); hf[height] = version; }
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virtual uint8_t get_hard_fork_version(uint64_t height) const override { if (height >= hf.size()) return 255; return hf[height]; }
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private:
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std::vector<block_t> blocks;
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std::vector<uint8_t> hf;
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};
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}
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static std::unique_ptr<cryptonote::Blockchain> init_blockchain(const std::vector<test_event_entry> & events, cryptonote::network_type nettype)
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{
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std::unique_ptr<cryptonote::Blockchain> bc;
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v_hardforks_t hardforks;
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cryptonote::test_options test_options_tmp{nullptr, 0};
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const cryptonote::test_options * test_options = &test_options_tmp;
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if (!extract_hard_forks(events, hardforks))
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{
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MDEBUG("Extracting hard-forks from blocks");
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extract_hard_forks_from_blocks(events, hardforks);
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}
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hardforks.push_back(std::make_pair((uint8_t)0, (uint64_t)0)); // terminator
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test_options_tmp.hard_forks = hardforks.data();
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test_options = &test_options_tmp;
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cryptonote::tx_memory_pool txpool(*bc);
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bc.reset(new cryptonote::Blockchain(txpool));
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cryptonote::Blockchain *blockchain = bc.get();
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auto bdb = new TestDB();
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BOOST_FOREACH(const test_event_entry &ev, events)
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{
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if (typeid(block) != ev.type())
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{
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continue;
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}
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const block *blk = &boost::get<block>(ev);
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auto blk_hash = get_block_hash(*blk);
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bdb->add_block(*blk, 1, 1, 1, 0, 0, blk_hash);
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}
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bool r = blockchain->init(bdb, nettype, true, test_options, 2, nullptr);
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CHECK_AND_ASSERT_THROW_MES(r, "could not init blockchain from events");
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return bc;
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}
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void test_generator::get_block_chain(std::vector<block_info>& blockchain, const crypto::hash& head, size_t n) const
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{
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@ -184,13 +310,7 @@ bool test_generator::construct_block(cryptonote::block& blk, uint64_t height, co
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//blk.tree_root_hash = get_tx_tree_hash(blk);
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// Nonce search...
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blk.nonce = 0;
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while (!miner::find_nonce_for_given_block([](const cryptonote::block &b, uint64_t height, unsigned int threads, crypto::hash &hash){
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return cryptonote::get_block_longhash(NULL, b, hash, height, threads);
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}, blk, get_test_difficulty(hf_ver), height))
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blk.timestamp++;
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fill_nonce(blk, get_test_difficulty(hf_ver), height);
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add_block(blk, txs_weight, block_weights, already_generated_coins, hf_ver ? hf_ver.get() : 1);
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return true;
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@ -268,6 +388,26 @@ bool test_generator::construct_block_manually_tx(cryptonote::block& blk, const c
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return construct_block_manually(blk, prev_block, miner_acc, bf_tx_hashes, 0, 0, 0, crypto::hash(), 0, transaction(), tx_hashes, txs_weight);
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}
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void test_generator::fill_nonce(cryptonote::block& blk, const difficulty_type& diffic, uint64_t height)
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{
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const cryptonote::Blockchain *blockchain = nullptr;
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std::unique_ptr<cryptonote::Blockchain> bc;
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if (blk.major_version >= RX_BLOCK_VERSION)
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{
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CHECK_AND_ASSERT_THROW_MES(m_events != nullptr, "events not set, cannot compute valid RandomX PoW");
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bc = init_blockchain(*m_events, m_nettype);
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blockchain = bc.get();
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}
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blk.nonce = 0;
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while (!miner::find_nonce_for_given_block([blockchain](const cryptonote::block &b, uint64_t height, unsigned int threads, crypto::hash &hash){
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return cryptonote::get_block_longhash(blockchain, b, hash, height, threads);
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}, blk, diffic, height)) {
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blk.timestamp++;
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}
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}
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namespace
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{
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uint64_t get_inputs_amount(const vector<tx_source_entry> &s)
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@ -796,15 +936,6 @@ void fill_tx_sources_and_destinations(const std::vector<test_event_entry>& event
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fill_tx_sources_and_destinations(events, blk_head, from, to.get_keys().m_account_address, amount, fee, nmix, sources, destinations);
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}
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void fill_nonce(cryptonote::block& blk, const difficulty_type& diffic, uint64_t height)
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{
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blk.nonce = 0;
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while (!miner::find_nonce_for_given_block([](const cryptonote::block &b, uint64_t height, unsigned int threads, crypto::hash &hash){
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return cryptonote::get_block_longhash(NULL, b, hash, height, threads);
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}, blk, diffic, height))
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blk.timestamp++;
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}
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cryptonote::tx_destination_entry build_dst(const var_addr_t& to, bool is_subaddr, uint64_t amount)
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{
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tx_destination_entry de;
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@ -983,6 +1114,31 @@ bool extract_hard_forks(const std::vector<test_event_entry>& events, v_hardforks
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return !hard_forks.empty();
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}
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bool extract_hard_forks_from_blocks(const std::vector<test_event_entry>& events, v_hardforks_t& hard_forks)
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{
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int hf = -1;
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int64_t height = 0;
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for(auto & ev : events)
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{
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if (typeid(block) != ev.type())
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{
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continue;
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}
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const block *blk = &boost::get<block>(ev);
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if (blk->major_version != hf)
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{
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hf = blk->major_version;
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hard_forks.push_back(std::make_pair(blk->major_version, (uint64_t)height));
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}
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height += 1;
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}
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return !hard_forks.empty();
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}
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void get_confirmed_txs(const std::vector<cryptonote::block>& blockchain, const map_hash2tx_t& mtx, map_hash2tx_t& confirmed_txs)
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{
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std::unordered_set<crypto::hash> confirmed_hashes;
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@ -227,8 +227,8 @@ public:
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bf_hf_version= 1 << 8
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};
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test_generator() {}
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test_generator(const test_generator &other): m_blocks_info(other.m_blocks_info) {}
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test_generator(): m_events(nullptr) {}
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test_generator(const test_generator &other): m_blocks_info(other.m_blocks_info), m_events(other.m_events), m_nettype(other.m_nettype) {}
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void get_block_chain(std::vector<block_info>& blockchain, const crypto::hash& head, size_t n) const;
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void get_last_n_block_weights(std::vector<size_t>& block_weights, const crypto::hash& head, size_t n) const;
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uint64_t get_already_generated_coins(const crypto::hash& blk_id) const;
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@ -253,9 +253,14 @@ public:
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uint8_t hf_version = 1);
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bool construct_block_manually_tx(cryptonote::block& blk, const cryptonote::block& prev_block,
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const cryptonote::account_base& miner_acc, const std::vector<crypto::hash>& tx_hashes, size_t txs_size);
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void fill_nonce(cryptonote::block& blk, const cryptonote::difficulty_type& diffic, uint64_t height);
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void set_events(const std::vector<test_event_entry> * events) { m_events = events; }
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void set_network_type(const cryptonote::network_type nettype) { m_nettype = nettype; }
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private:
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std::unordered_map<crypto::hash, block_info> m_blocks_info;
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const std::vector<test_event_entry> * m_events;
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cryptonote::network_type m_nettype;
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friend class boost::serialization::access;
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@ -407,7 +412,6 @@ cryptonote::account_public_address get_address(const cryptonote::tx_destination_
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inline cryptonote::difficulty_type get_test_difficulty(const boost::optional<uint8_t>& hf_ver=boost::none) {return !hf_ver || hf_ver.get() <= 1 ? 1 : 2;}
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inline uint64_t current_difficulty_window(const boost::optional<uint8_t>& hf_ver=boost::none){ return !hf_ver || hf_ver.get() <= 1 ? DIFFICULTY_TARGET_V1 : DIFFICULTY_TARGET_V2; }
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void fill_nonce(cryptonote::block& blk, const cryptonote::difficulty_type& diffic, uint64_t height);
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cryptonote::tx_destination_entry build_dst(const var_addr_t& to, bool is_subaddr=false, uint64_t amount=0);
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std::vector<cryptonote::tx_destination_entry> build_dsts(const var_addr_t& to1, bool sub1=false, uint64_t am1=0);
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@ -490,6 +494,7 @@ void fill_tx_sources_and_destinations(const std::vector<test_event_entry>& event
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uint64_t get_balance(const cryptonote::account_base& addr, const std::vector<cryptonote::block>& blockchain, const map_hash2tx_t& mtx);
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bool extract_hard_forks(const std::vector<test_event_entry>& events, v_hardforks_t& hard_forks);
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bool extract_hard_forks_from_blocks(const std::vector<test_event_entry>& events, v_hardforks_t& hard_forks);
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/************************************************************************/
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/* */
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@ -10,9 +10,6 @@ using namespace epee;
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using namespace crypto;
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using namespace cryptonote;
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// Shared random generator
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static std::default_random_engine RND(crypto::rand<unsigned>());
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void wallet_accessor_test::set_account(tools::wallet2 * wallet, cryptonote::account_base& account)
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{
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wallet->clear();
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