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https://git.wownero.com/wownero/wownero.git
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core: sort ins and outs key key image and public key, respectively
This avoids leaking some small amount of information
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parent
0c36b9f931
commit
16afab900d
@ -31,6 +31,7 @@
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#include "include_base_utils.h"
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using namespace epee;
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#include "common/apply_permutation.h"
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#include "cryptonote_tx_utils.h"
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#include "cryptonote_config.h"
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#include "cryptonote_basic/miner.h"
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@ -156,7 +157,7 @@ namespace cryptonote
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return destinations[0].addr.m_view_public_key;
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}
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//---------------------------------------------------------------
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, bool rct)
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, std::vector<tx_source_entry> sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, bool rct)
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{
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std::vector<rct::key> amount_keys;
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tx.set_null();
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@ -263,14 +264,25 @@ namespace cryptonote
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tx.vin.push_back(input_to_key);
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}
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// "Shuffle" outs
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std::vector<tx_destination_entry> shuffled_dsts(destinations);
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std::random_shuffle(shuffled_dsts.begin(), shuffled_dsts.end(), [](unsigned int i) { return crypto::rand<unsigned int>() % i; });
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// sort ins by their key image
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std::vector<size_t> ins_order(sources.size());
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for (size_t n = 0; n < sources.size(); ++n)
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ins_order[n] = n;
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std::sort(ins_order.begin(), ins_order.end(), [&](const size_t i0, const size_t i1) {
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const txin_to_key &tk0 = boost::get<txin_to_key>(tx.vin[i0]);
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const txin_to_key &tk1 = boost::get<txin_to_key>(tx.vin[i1]);
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return memcmp(&tk0.k_image, &tk1.k_image, sizeof(tk0.k_image)) < 0;
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});
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tools::apply_permutation(ins_order, [&] (size_t i0, size_t i1) {
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std::swap(tx.vin[i0], tx.vin[i1]);
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std::swap(in_contexts[i0], in_contexts[i1]);
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std::swap(sources[i0], sources[i1]);
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});
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uint64_t summary_outs_money = 0;
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//fill outputs
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size_t output_index = 0;
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for(const tx_destination_entry& dst_entr: shuffled_dsts)
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for(const tx_destination_entry& dst_entr: destinations)
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{
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CHECK_AND_ASSERT_MES(dst_entr.amount > 0 || tx.version > 1, false, "Destination with wrong amount: " << dst_entr.amount);
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crypto::key_derivation derivation;
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@ -297,6 +309,20 @@ namespace cryptonote
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summary_outs_money += dst_entr.amount;
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}
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// sort outs by their public key
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std::vector<size_t> outs_order(tx.vout.size());
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for (size_t n = 0; n < tx.vout.size(); ++n)
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outs_order[n] = n;
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std::sort(outs_order.begin(), outs_order.end(), [&](size_t i0, size_t i1) {
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const txout_to_key &tk0 = boost::get<txout_to_key>(tx.vout[i0].target);
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const txout_to_key &tk1 = boost::get<txout_to_key>(tx.vout[i1].target);
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return memcmp(&tk0.key, &tk1.key, sizeof(tk0.key)) < 0;
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});
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tools::apply_permutation(outs_order, [&] (size_t i0, size_t i1) {
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std::swap(tx.vout[i0], tx.vout[i1]);
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std::swap(amount_keys[i0], amount_keys[i1]);
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});
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//check money
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if(summary_outs_money > summary_inputs_money )
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{
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@ -71,7 +71,7 @@ namespace cryptonote
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//---------------------------------------------------------------
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crypto::public_key get_destination_view_key_pub(const std::vector<tx_destination_entry> &destinations, const account_keys &sender_keys);
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bool construct_tx(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time);
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, const std::vector<tx_source_entry>& sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, bool rct = false);
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bool construct_tx_and_get_tx_key(const account_keys& sender_account_keys, std::vector<tx_source_entry> sources, const std::vector<tx_destination_entry>& destinations, std::vector<uint8_t> extra, transaction& tx, uint64_t unlock_time, crypto::secret_key &tx_key, bool rct = false);
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bool generate_genesis_block(
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block& bl
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