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rct: add the tx prefix hash into the MLSAG
to protect the non-signatures parts of the tx from tampering.
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parent
35dce5c70c
commit
6d0e47148b
@ -685,9 +685,6 @@ namespace cryptonote
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if (amount_in > amount_out)
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amounts.push_back(amount_in - amount_out);
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LOG_PRINT_L1("Signing tx: " << obj_to_json_str(tx));
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tx.rct_signatures = rct::genRct(inSk, destinations, amounts, mixRing, sources[0].real_output); // same index assumption
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// zero out all amounts to mask rct outputs, real amounts are now encrypted
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for (size_t i = 0; i < tx.vin.size(); ++i)
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{
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@ -697,6 +694,10 @@ namespace cryptonote
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for (size_t i = 0; i < tx.vout.size(); ++i)
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tx.vout[i].amount = 0;
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crypto::hash tx_prefix_hash;
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get_transaction_prefix_hash(tx, tx_prefix_hash);
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tx.rct_signatures = rct::genRct(inSk, destinations, amounts, mixRing, rct::hash2rct(tx_prefix_hash), sources[0].real_output); // same index assumption
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LOG_PRINT2("construct_tx.log", "transaction_created: " << get_transaction_hash(tx) << ENDL << obj_to_json_str(tx) << ENDL, LOG_LEVEL_3);
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}
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@ -199,6 +199,8 @@ int main(int argc, char* argv[])
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GENERATE_AND_PLAY(gen_rct_tx_pre_rct_add_vout);
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GENERATE_AND_PLAY(gen_rct_tx_rct_add_vout);
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GENERATE_AND_PLAY(gen_rct_tx_pre_rct_increase_vin_and_fee);
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GENERATE_AND_PLAY(gen_rct_tx_pre_rct_altered_extra);
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GENERATE_AND_PLAY(gen_rct_tx_rct_altered_extra);
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std::cout << (failed_tests.empty() ? concolor::green : concolor::magenta);
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std::cout << "\nREPORT:\n";
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@ -467,3 +467,21 @@ bool gen_rct_tx_rct_add_vout::generate(std::vector<test_event_entry>& events) co
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NULL, [](transaction &tx) {tx.vout.push_back(tx.vout.back());});
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}
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bool gen_rct_tx_pre_rct_altered_extra::generate(std::vector<test_event_entry>& events) const
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{
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const int mixin = 2;
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const int out_idx[] = {0, -1};
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const uint64_t amount_paid = 10000;
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return generate_with(events, out_idx, mixin, amount_paid, false,
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NULL, [](transaction &tx) {std::string extra_nonce; crypto::hash pid = cryptonote::null_hash; set_payment_id_to_tx_extra_nonce(extra_nonce, pid); add_extra_nonce_to_tx_extra(tx.extra, extra_nonce);});
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}
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bool gen_rct_tx_rct_altered_extra::generate(std::vector<test_event_entry>& events) const
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{
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const int mixin = 2;
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const int out_idx[] = {1, -1};
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const uint64_t amount_paid = 10000;
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return generate_with(events, out_idx, mixin, amount_paid, false,
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NULL, [](transaction &tx) {std::string extra_nonce; crypto::hash pid = cryptonote::null_hash; set_payment_id_to_tx_extra_nonce(extra_nonce, pid); add_extra_nonce_to_tx_extra(tx.extra, extra_nonce);});
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}
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@ -249,3 +249,16 @@ struct gen_rct_tx_rct_add_vout : public gen_rct_tx_validation_base
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};
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template<> struct get_test_options<gen_rct_tx_rct_add_vout>: public get_test_options<gen_rct_tx_validation_base> {};
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// extra
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struct gen_rct_tx_pre_rct_altered_extra : public gen_rct_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_rct_tx_pre_rct_altered_extra>: public get_test_options<gen_rct_tx_validation_base> {};
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struct gen_rct_tx_rct_altered_extra : public gen_rct_tx_validation_base
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{
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bool generate(std::vector<test_event_entry>& events) const;
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};
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template<> struct get_test_options<gen_rct_tx_rct_altered_extra>: public get_test_options<gen_rct_tx_validation_base> {};
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@ -187,7 +187,7 @@ TEST(ringct, range_proofs)
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destinations.push_back(Pk);
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//compute rct data with mixin 500
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rctSig s = genRct(sc, pc, destinations, amounts, 3);
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rctSig s = genRct(sc, pc, destinations, amounts, rct::zero(), 3);
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//verify rct data
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ASSERT_TRUE(verRct(s));
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@ -204,7 +204,7 @@ TEST(ringct, range_proofs)
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//compute rct data with mixin 500
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s = genRct(sc, pc, destinations, amounts, 3);
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s = genRct(sc, pc, destinations, amounts, rct::zero(), 3);
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//verify rct data
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ASSERT_FALSE(verRct(s));
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@ -248,7 +248,7 @@ TEST(ringct, range_proofs_with_fee)
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destinations.push_back(Pk);
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//compute rct data with mixin 500
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rctSig s = genRct(sc, pc, destinations, amounts, 3);
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rctSig s = genRct(sc, pc, destinations, amounts, rct::zero(), 3);
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//verify rct data
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ASSERT_TRUE(verRct(s));
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@ -265,7 +265,7 @@ TEST(ringct, range_proofs_with_fee)
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//compute rct data with mixin 500
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s = genRct(sc, pc, destinations, amounts, 3);
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s = genRct(sc, pc, destinations, amounts, rct::zero(), 3);
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//verify rct data
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ASSERT_FALSE(verRct(s));
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@ -295,7 +295,7 @@ static rct::rctSig make_sample_rct_sig(int n_inputs, const uint64_t input_amount
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destinations.push_back(Pk);
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}
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return genRct(sc, pc, destinations, amounts, 3);;
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return genRct(sc, pc, destinations, amounts, rct::zero(), 3);;
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}
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static bool range_proof_test(bool expected_valid,
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@ -565,7 +565,7 @@ TEST(Serialization, serializes_ringct_types)
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rct::skpkGen(Sk, Pk);
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destinations.push_back(Pk);
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//compute rct data with mixin 500
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s0 = rct::genRct(sc, pc, destinations, amounts, 3);
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s0 = rct::genRct(sc, pc, destinations, amounts, rct::zero(), 3);
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mg0 = s0.MG;
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ASSERT_TRUE(serialization::dump_binary(mg0, blob));
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