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Revert "Reject existing claimed blocks in sync mode"
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b42d08995e
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e42bb297b8
@ -2309,16 +2309,30 @@ skip:
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return true;
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return true;
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}
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}
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// we can do nothing, so drop this peer to make room for others unless we think we've downloaded all we need
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// if we're still around, we might be at a point where the peer is pruned, so we could either
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const uint64_t blockchain_height = m_core.get_current_blockchain_height();
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// drop it to make space for other peers, or ask for a span further down the line
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if (std::max(blockchain_height, m_block_queue.get_next_needed_height(blockchain_height)) >= m_core.get_target_blockchain_height())
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const uint32_t next_stripe = get_next_needed_pruning_stripe().first;
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const uint32_t peer_stripe = tools::get_pruning_stripe(context.m_pruning_seed);
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const uint32_t local_stripe = tools::get_pruning_stripe(m_core.get_blockchain_pruning_seed());
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if (!(m_sync_pruned_blocks && peer_stripe == local_stripe) && next_stripe && peer_stripe && next_stripe != peer_stripe)
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{
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{
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// at this point, we have to either close the connection, or start getting blocks past the
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// current point, or become dormant
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MDEBUG(context << "this peer is pruned at seed " << epee::string_tools::to_string_hex(context.m_pruning_seed) <<
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", next stripe needed is " << next_stripe);
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if (!context.m_is_income)
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{
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if (should_drop_connection(context, next_stripe))
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{
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m_p2p->add_used_stripe_peer(context);
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return false; // drop outgoing connections
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}
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}
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// we'll get back stuck waiting for the go ahead
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context.m_state = cryptonote_connection_context::state_normal;
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context.m_state = cryptonote_connection_context::state_normal;
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MLOG_PEER_STATE("Nothing to do for now, switching to normal state");
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MLOG_PEER_STATE("Nothing to do for now, switching to normal state");
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return true;
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return true;
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}
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}
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MLOG_PEER_STATE("We can download nothing from this peer, dropping");
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return false;
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}
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}
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skip:
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skip:
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@ -2559,8 +2573,6 @@ skip:
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}
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}
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std::unordered_set<crypto::hash> hashes;
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std::unordered_set<crypto::hash> hashes;
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uint64_t height = arg.start_height;
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const uint64_t blockchain_height = m_core.get_current_blockchain_height();
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for (const auto &h: arg.m_block_ids)
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for (const auto &h: arg.m_block_ids)
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{
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{
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if (!hashes.insert(h).second)
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if (!hashes.insert(h).second)
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@ -2569,17 +2581,6 @@ skip:
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drop_connection(context, true, false);
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drop_connection(context, true, false);
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return 1;
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return 1;
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}
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}
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if (height < blockchain_height)
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{
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const crypto::hash block_in_chain = m_core.get_block_id_by_height(height);
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if ((height < context.m_expect_height - 1 && block_in_chain == h) || (height == context.m_expect_height - 1 && block_in_chain != h))
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{
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LOG_ERROR_CCONTEXT("sent existing block " << h << " at height " << height << ", expected height was " << context.m_expect_height << ", dropping connection");
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drop_connection(context, true, false);
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return 1;
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}
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}
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++height;
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}
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}
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uint64_t n_use_blocks = m_core.prevalidate_block_hashes(arg.start_height, arg.m_block_ids, arg.m_block_weights);
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uint64_t n_use_blocks = m_core.prevalidate_block_hashes(arg.start_height, arg.m_block_ids, arg.m_block_weights);
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@ -112,6 +112,5 @@ namespace tests
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bool prune_blockchain(uint32_t pruning_seed) const { return true; }
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bool prune_blockchain(uint32_t pruning_seed) const { return true; }
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bool get_txpool_complement(const std::vector<crypto::hash> &hashes, std::vector<cryptonote::blobdata> &txes) { return false; }
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bool get_txpool_complement(const std::vector<crypto::hash> &hashes, std::vector<cryptonote::blobdata> &txes) { return false; }
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bool get_pool_transaction_hashes(std::vector<crypto::hash>& txs, bool include_unrelayed_txes = true) const { return false; }
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bool get_pool_transaction_hashes(std::vector<crypto::hash>& txs, bool include_unrelayed_txes = true) const { return false; }
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crypto::hash get_block_id_by_height(uint64_t height) const { return crypto::null_hash; }
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};
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};
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}
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}
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@ -93,7 +93,6 @@ public:
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bool has_block_weights(uint64_t height, uint64_t nblocks) const { return false; }
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bool has_block_weights(uint64_t height, uint64_t nblocks) const { return false; }
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bool get_txpool_complement(const std::vector<crypto::hash> &hashes, std::vector<cryptonote::blobdata> &txes) { return false; }
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bool get_txpool_complement(const std::vector<crypto::hash> &hashes, std::vector<cryptonote::blobdata> &txes) { return false; }
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bool get_pool_transaction_hashes(std::vector<crypto::hash>& txs, bool include_unrelayed_txes = true) const { return false; }
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bool get_pool_transaction_hashes(std::vector<crypto::hash>& txs, bool include_unrelayed_txes = true) const { return false; }
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crypto::hash get_block_id_by_height(uint64_t height) const { return crypto::null_hash; }
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void stop() {}
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void stop() {}
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};
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};
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