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@ -101,7 +101,7 @@ BOOST_FIXTURE_TEST_CASE(tx_mempool_block_doublespend, TestChain100Setup)
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// should fail.
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// should fail.
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// Capture this interaction with the upgraded_nop argument: set it when evaluating
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// Capture this interaction with the upgraded_nop argument: set it when evaluating
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// any script flag that is implemented as an upgraded NOP code.
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// any script flag that is implemented as an upgraded NOP code.
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void ValidateCheckInputsForAllFlags(CMutableTransaction &tx, uint32_t failing_flags, bool add_to_cache, bool upgraded_nop)
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void ValidateCheckInputsForAllFlags(CMutableTransaction &tx, uint32_t failing_flags, bool add_to_cache)
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{
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{
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PrecomputedTransactionData txdata(tx);
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PrecomputedTransactionData txdata(tx);
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// If we add many more flags, this loop can get too expensive, but we can
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// If we add many more flags, this loop can get too expensive, but we can
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@ -122,12 +122,6 @@ void ValidateCheckInputsForAllFlags(CMutableTransaction &tx, uint32_t failing_fl
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// CheckInputs should succeed iff test_flags doesn't intersect with
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// CheckInputs should succeed iff test_flags doesn't intersect with
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// failing_flags
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// failing_flags
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bool expected_return_value = !(test_flags & failing_flags);
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bool expected_return_value = !(test_flags & failing_flags);
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if (expected_return_value && upgraded_nop) {
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// If the script flag being tested corresponds to an upgraded NOP,
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// then script execution should fail if DISCOURAGE_UPGRADABLE_NOPS
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// is set.
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expected_return_value = !(test_flags & SCRIPT_VERIFY_DISCOURAGE_UPGRADABLE_NOPS);
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}
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BOOST_CHECK_EQUAL(ret, expected_return_value);
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BOOST_CHECK_EQUAL(ret, expected_return_value);
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// Test the caching
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// Test the caching
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@ -213,7 +207,7 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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// not present. Don't add these checks to the cache, so that we can
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// not present. Don't add these checks to the cache, so that we can
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// test later that block validation works fine in the absence of cached
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// test later that block validation works fine in the absence of cached
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// successes.
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// successes.
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ValidateCheckInputsForAllFlags(spend_tx, SCRIPT_VERIFY_DERSIG | SCRIPT_VERIFY_LOW_S | SCRIPT_VERIFY_STRICTENC, false, false);
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ValidateCheckInputsForAllFlags(spend_tx, SCRIPT_VERIFY_DERSIG | SCRIPT_VERIFY_LOW_S | SCRIPT_VERIFY_STRICTENC, false);
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// And if we produce a block with this tx, it should be valid (DERSIG not
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// And if we produce a block with this tx, it should be valid (DERSIG not
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// enabled yet), even though there's no cache entry.
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// enabled yet), even though there's no cache entry.
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@ -238,7 +232,7 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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std::vector<unsigned char> vchSig2(p2pk_scriptPubKey.begin(), p2pk_scriptPubKey.end());
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std::vector<unsigned char> vchSig2(p2pk_scriptPubKey.begin(), p2pk_scriptPubKey.end());
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invalid_under_p2sh_tx.vin[0].scriptSig << vchSig2;
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invalid_under_p2sh_tx.vin[0].scriptSig << vchSig2;
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ValidateCheckInputsForAllFlags(invalid_under_p2sh_tx, SCRIPT_VERIFY_P2SH, true, false);
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ValidateCheckInputsForAllFlags(invalid_under_p2sh_tx, SCRIPT_VERIFY_P2SH, true);
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}
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}
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// Test CHECKLOCKTIMEVERIFY
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// Test CHECKLOCKTIMEVERIFY
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@ -261,7 +255,7 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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vchSig.push_back((unsigned char)SIGHASH_ALL);
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vchSig.push_back((unsigned char)SIGHASH_ALL);
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invalid_with_cltv_tx.vin[0].scriptSig = CScript() << vchSig << 101;
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invalid_with_cltv_tx.vin[0].scriptSig = CScript() << vchSig << 101;
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ValidateCheckInputsForAllFlags(invalid_with_cltv_tx, SCRIPT_VERIFY_CHECKLOCKTIMEVERIFY, true, true);
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ValidateCheckInputsForAllFlags(invalid_with_cltv_tx, SCRIPT_VERIFY_CHECKLOCKTIMEVERIFY, true);
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// Make it valid, and check again
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// Make it valid, and check again
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invalid_with_cltv_tx.vin[0].scriptSig = CScript() << vchSig << 100;
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invalid_with_cltv_tx.vin[0].scriptSig = CScript() << vchSig << 100;
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@ -289,7 +283,7 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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vchSig.push_back((unsigned char)SIGHASH_ALL);
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vchSig.push_back((unsigned char)SIGHASH_ALL);
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invalid_with_csv_tx.vin[0].scriptSig = CScript() << vchSig << 101;
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invalid_with_csv_tx.vin[0].scriptSig = CScript() << vchSig << 101;
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ValidateCheckInputsForAllFlags(invalid_with_csv_tx, SCRIPT_VERIFY_CHECKSEQUENCEVERIFY, true, true);
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ValidateCheckInputsForAllFlags(invalid_with_csv_tx, SCRIPT_VERIFY_CHECKSEQUENCEVERIFY, true);
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// Make it valid, and check again
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// Make it valid, and check again
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invalid_with_csv_tx.vin[0].scriptSig = CScript() << vchSig << 100;
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invalid_with_csv_tx.vin[0].scriptSig = CScript() << vchSig << 100;
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@ -318,11 +312,11 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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UpdateTransaction(valid_with_witness_tx, 0, sigdata);
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UpdateTransaction(valid_with_witness_tx, 0, sigdata);
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// This should be valid under all script flags.
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// This should be valid under all script flags.
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ValidateCheckInputsForAllFlags(valid_with_witness_tx, 0, true, false);
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ValidateCheckInputsForAllFlags(valid_with_witness_tx, 0, true);
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// Remove the witness, and check that it is now invalid.
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// Remove the witness, and check that it is now invalid.
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valid_with_witness_tx.vin[0].scriptWitness.SetNull();
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valid_with_witness_tx.vin[0].scriptWitness.SetNull();
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ValidateCheckInputsForAllFlags(valid_with_witness_tx, SCRIPT_VERIFY_WITNESS, true, false);
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ValidateCheckInputsForAllFlags(valid_with_witness_tx, SCRIPT_VERIFY_WITNESS, true);
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}
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}
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{
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{
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@ -347,7 +341,7 @@ BOOST_FIXTURE_TEST_CASE(checkinputs_test, TestChain100Setup)
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}
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}
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// This should be valid under all script flags
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// This should be valid under all script flags
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ValidateCheckInputsForAllFlags(tx, 0, true, false);
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ValidateCheckInputsForAllFlags(tx, 0, true);
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// Check that if the second input is invalid, but the first input is
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// Check that if the second input is invalid, but the first input is
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// valid, the transaction is not cached.
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// valid, the transaction is not cached.
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