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tests: test for ringct rctSig data sizes
ie, more data or less data than expected in various fields
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@ -274,8 +274,7 @@ TEST(ringct, range_proofs_with_fee)
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ASSERT_TRUE(decodeRct(s, Sk, 1));
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}
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static bool range_proof_test(bool expected_valid,
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int n_inputs, const uint64_t input_amounts[], int n_outputs, const uint64_t output_amounts[], bool last_is_fee)
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static rct::rctSig make_sample_rct_sig(int n_inputs, const uint64_t input_amounts[], int n_outputs, const uint64_t output_amounts[], bool last_is_fee)
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{
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ctkeyV sc, pc;
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ctkey sctmp, pctmp;
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@ -296,10 +295,16 @@ static bool range_proof_test(bool expected_valid,
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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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}
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static bool range_proof_test(bool expected_valid,
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int n_inputs, const uint64_t input_amounts[], int n_outputs, const uint64_t output_amounts[], bool last_is_fee)
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{
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//compute rct data
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bool valid;
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try {
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rctSig s = genRct(sc, pc, destinations, amounts, 3);
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rctSig s = make_sample_rct_sig(n_inputs, input_amounts, n_outputs, output_amounts, last_is_fee);
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valid = verRct(s);
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}
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catch (const std::exception &e) {
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@ -623,3 +628,39 @@ TEST(ringct, fee_burn_valid_zero_out)
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EXPECT_TRUE(range_proof_test(true, NELTS(inputs), inputs, NELTS(outputs), outputs, true));
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}
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#define TEST_rctSig_elements(name, op) \
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TEST(ringct, rctSig_##name) \
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{ \
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const uint64_t inputs[] = {1000, 1000}; \
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const uint64_t outputs[] = {1000, 1000}; \
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rct::rctSig sig = make_sample_rct_sig(NELTS(inputs), inputs, NELTS(outputs), outputs, true); \
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ASSERT_TRUE(rct::verRct(sig)); \
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op; \
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ASSERT_FALSE(rct::verRct(sig)); \
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}
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TEST_rctSig_elements(rangeSigs_empty, sig.rangeSigs.resize(0));
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TEST_rctSig_elements(rangeSigs_too_many, sig.rangeSigs.push_back(sig.rangeSigs.back()));
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TEST_rctSig_elements(rangeSigs_too_few, sig.rangeSigs.pop_back());
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TEST_rctSig_elements(mgSig_ss_empty, sig.MG.ss.resize(0));
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TEST_rctSig_elements(mgSig_ss_too_many, sig.MG.ss.push_back(sig.MG.ss.back()));
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TEST_rctSig_elements(mgSig_ss_too_few, sig.MG.ss.pop_back());
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TEST_rctSig_elements(mgSig_ss0_empty, sig.MG.ss[0].resize(0));
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TEST_rctSig_elements(mgSig_ss0_too_many, sig.MG.ss[0].push_back(sig.MG.ss[0].back()));
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TEST_rctSig_elements(mgSig_ss0_too_few, sig.MG.ss[0].pop_back());
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TEST_rctSig_elements(mgSig_II_empty, sig.MG.II.resize(0));
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TEST_rctSig_elements(mgSig_II_too_many, sig.MG.II.push_back(sig.MG.II.back()));
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TEST_rctSig_elements(mgSig_II_too_few, sig.MG.II.pop_back());
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TEST_rctSig_elements(mgSig_mixRing_empty, sig.mixRing.resize(0));
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TEST_rctSig_elements(mgSig_mixRing_too_many, sig.mixRing.push_back(sig.mixRing.back()));
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TEST_rctSig_elements(mgSig_mixRing_too_few, sig.mixRing.pop_back());
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TEST_rctSig_elements(mgSig_mixRing0_empty, sig.mixRing[0].resize(0));
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TEST_rctSig_elements(mgSig_mixRing0_too_many, sig.mixRing[0].push_back(sig.mixRing[0].back()));
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TEST_rctSig_elements(mgSig_mixRing0_too_few, sig.mixRing[0].pop_back());
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TEST_rctSig_elements(ecdhInfo_empty, sig.ecdhInfo.resize(0));
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TEST_rctSig_elements(ecdhInfo_too_many, sig.ecdhInfo.push_back(sig.ecdhInfo.back()));
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TEST_rctSig_elements(ecdhInfo_too_few, sig.ecdhInfo.pop_back());
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TEST_rctSig_elements(outPk_empty, sig.outPk.resize(0));
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TEST_rctSig_elements(outPk_too_many, sig.outPk.push_back(sig.outPk.back()));
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TEST_rctSig_elements(outPk_too_few, sig.outPk.pop_back());
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