mirror of
https://github.com/ethereum/solidity
synced 2023-10-03 13:03:40 +00:00
Rename dev::sha3 to dev::keccak256
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d5cfb17b32
commit
aefb6e5fcf
@ -63,7 +63,7 @@ template <class T, class ... U> bytes abiInAux(T const& _t, U const& ... _u)
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template <class ... T> bytes abiIn(std::string _id, T const& ... _t)
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{
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return sha3(_id).ref().cropped(0, 4).toBytes() + abiInAux(_t ...);
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return keccak256(_id).ref().cropped(0, 4).toBytes() + abiInAux(_t ...);
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}
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template <class T> struct ABIDeserialiser {};
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@ -207,14 +207,14 @@ defsha3(512)
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}
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unsigned g_sha3Counter = 0;
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unsigned g_keccak256Counter = 0;
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bool sha3(bytesConstRef _input, bytesRef o_output)
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bool keccak256(bytesConstRef _input, bytesRef o_output)
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{
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// FIXME: What with unaligned memory?
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if (o_output.size() != 32)
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return false;
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++g_sha3Counter;
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++g_keccak256Counter;
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keccak::sha3_256(o_output.data(), 32, _input.data(), _input.size());
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// keccak::keccak(ret.data(), 32, (uint64_t const*)_input.data(), _input.size());
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return true;
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@ -34,26 +34,26 @@ namespace dev
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/// Calculate SHA3-256 hash of the given input and load it into the given output.
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/// @returns false if o_output.size() != 32.
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bool sha3(bytesConstRef _input, bytesRef o_output);
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bool keccak256(bytesConstRef _input, bytesRef o_output);
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/// Calculate SHA3-256 hash of the given input, returning as a 256-bit hash.
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inline h256 sha3(bytesConstRef _input) { h256 ret; sha3(_input, ret.ref()); return ret; }
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inline h256 keccak256(bytesConstRef _input) { h256 ret; keccak256(_input, ret.ref()); return ret; }
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/// Calculate SHA3-256 hash of the given input, returning as a 256-bit hash.
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inline h256 sha3(bytes const& _input) { return sha3(bytesConstRef(&_input)); }
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inline h256 keccak256(bytes const& _input) { return keccak256(bytesConstRef(&_input)); }
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/// Calculate SHA3-256 hash of the given input (presented as a binary-filled string), returning as a 256-bit hash.
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inline h256 sha3(std::string const& _input) { return sha3(bytesConstRef(_input)); }
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inline h256 keccak256(std::string const& _input) { return keccak256(bytesConstRef(_input)); }
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/// Calculate SHA3-256 hash of the given input (presented as a FixedHash), returns a 256-bit hash.
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template<unsigned N> inline h256 sha3(FixedHash<N> const& _input) { return sha3(_input.ref()); }
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template<unsigned N> inline h256 keccak256(FixedHash<N> const& _input) { return keccak256(_input.ref()); }
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/// Calculate SHA3-256 hash of the given input, possibly interpreting it as nibbles, and return the hash as a string filled with binary data.
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inline std::string sha3(std::string const& _input, bool _isNibbles) { return asString((_isNibbles ? sha3(fromHex(_input)) : sha3(bytesConstRef(&_input))).asBytes()); }
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inline std::string keccak256(std::string const& _input, bool _isNibbles) { return asString((_isNibbles ? keccak256(fromHex(_input)) : keccak256(bytesConstRef(&_input))).asBytes()); }
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/// Calculate SHA3-256 MAC
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inline void sha3mac(bytesConstRef _secret, bytesConstRef _plain, bytesRef _output) { sha3(_secret.toBytes() + _plain.toBytes()).ref().populate(_output); }
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inline void keccak256mac(bytesConstRef _secret, bytesConstRef _plain, bytesRef _output) { keccak256(_secret.toBytes() + _plain.toBytes()).ref().populate(_output); }
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extern unsigned g_sha3Counter;
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extern unsigned g_keccak256Counter;
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}
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@ -296,7 +296,7 @@ AssemblyItem const& Assembly::append(AssemblyItem const& _i)
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AssemblyItem Assembly::newPushLibraryAddress(string const& _identifier)
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{
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h256 h(dev::sha3(_identifier));
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h256 h(dev::keccak256(_identifier));
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m_libraries[h] = _identifier;
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return AssemblyItem(PushLibraryAddress, h);
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}
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@ -45,11 +45,11 @@ public:
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AssemblyItem newTag() { return AssemblyItem(Tag, m_usedTags++); }
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AssemblyItem newPushTag() { return AssemblyItem(PushTag, m_usedTags++); }
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AssemblyItem newData(bytes const& _data) { h256 h(sha3(asString(_data))); m_data[h] = _data; return AssemblyItem(PushData, h); }
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AssemblyItem newData(bytes const& _data) { h256 h(dev::keccak256(asString(_data))); m_data[h] = _data; return AssemblyItem(PushData, h); }
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AssemblyItem newSub(Assembly const& _sub) { m_subs.push_back(_sub); return AssemblyItem(PushSub, m_subs.size() - 1); }
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Assembly const& sub(size_t _sub) const { return m_subs.at(_sub); }
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Assembly& sub(size_t _sub) { return m_subs.at(_sub); }
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AssemblyItem newPushString(std::string const& _data) { h256 h(sha3(_data)); m_strings[h] = _data; return AssemblyItem(PushString, h); }
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AssemblyItem newPushString(std::string const& _data) { h256 h(dev::keccak256(_data)); m_strings[h] = _data; return AssemblyItem(PushString, h); }
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AssemblyItem newPushSubSize(u256 const& _subId) { return AssemblyItem(PushSubSize, _subId); }
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AssemblyItem newPushLibraryAddress(std::string const& _identifier);
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@ -378,7 +378,7 @@ KnownState::Id KnownState::applySha3(
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for (Id a: arguments)
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data += toBigEndian(*m_expressionClasses->knownConstant(a));
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data.resize(size_t(*l));
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v = m_expressionClasses->find(AssemblyItem(u256(sha3(data)), _location));
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v = m_expressionClasses->find(AssemblyItem(u256(dev::keccak256(data)), _location));
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}
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else
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v = m_expressionClasses->find(sha3Item, {_start, _length}, true, m_sequenceNumber);
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@ -151,7 +151,7 @@ vector<pair<FixedHash<4>, FunctionTypePointer>> const& ContractDefinition::inter
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if (signaturesSeen.count(functionSignature) == 0)
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{
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signaturesSeen.insert(functionSignature);
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FixedHash<4> hash(dev::sha3(functionSignature));
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FixedHash<4> hash(dev::keccak256(functionSignature));
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m_interfaceFunctionList->push_back(make_pair(hash, fun));
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}
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}
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@ -2033,7 +2033,7 @@ string FunctionType::externalSignature() const
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u256 FunctionType::externalIdentifier() const
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{
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return FixedHash<4>::Arith(FixedHash<4>(dev::sha3(externalSignature())));
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return FixedHash<4>::Arith(FixedHash<4>(dev::keccak256(externalSignature())));
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}
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TypePointers FunctionType::parseElementaryTypeVector(strings const& _types)
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@ -670,7 +670,7 @@ bool ExpressionCompiler::visit(FunctionCall const& _functionCall)
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}
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if (!event.isAnonymous())
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{
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m_context << u256(h256::Arith(dev::sha3(function.externalSignature())));
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m_context << u256(h256::Arith(dev::keccak256(function.externalSignature())));
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++numIndexed;
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}
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solAssert(numIndexed <= 4, "Too many indexed arguments.");
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@ -302,7 +302,7 @@ dev::h256 CompilerStack::contractCodeHash(string const& _contractName) const
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if (obj.bytecode.empty() || !obj.linkReferences.empty())
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return dev::h256();
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else
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return dev::sha3(obj.bytecode);
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return dev::keccak256(obj.bytecode);
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}
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Json::Value CompilerStack::streamAssembly(ostream& _outStream, string const& _contractName, StringMap _sourceCodes, bool _inJsonFormat) const
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@ -136,7 +136,7 @@ GasEstimator::GasConsumption GasEstimator::functionalEstimation(
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ExpressionClasses& classes = state->expressionClasses();
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using Id = ExpressionClasses::Id;
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using Ids = vector<Id>;
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Id hashValue = classes.find(u256(FixedHash<4>::Arith(FixedHash<4>(dev::sha3(_signature)))));
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Id hashValue = classes.find(u256(FixedHash<4>::Arith(FixedHash<4>(dev::keccak256(_signature)))));
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Id calldata = classes.find(Instruction::CALLDATALOAD, Ids{classes.find(u256(0))});
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classes.forceEqual(hashValue, Instruction::DIV, Ids{
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calldata,
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@ -588,7 +588,7 @@ BOOST_AUTO_TEST_CASE(revoke_addOwner)
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BOOST_REQUIRE(callContractFunction("changeRequirement(uint256)", u256(3)) == encodeArgs());
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// add a new owner
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Address deployer = m_sender;
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h256 opHash = sha3(FixedHash<4>(dev::sha3("addOwner(address)")).asBytes() + h256(0x33).asBytes());
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h256 opHash = dev::keccak256(FixedHash<4>(dev::keccak256("addOwner(address)")).asBytes() + h256(0x33).asBytes());
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BOOST_REQUIRE(callContractFunction("addOwner(address)", h256(0x33)) == encodeArgs());
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BOOST_REQUIRE(callContractFunction("isOwner(address)", h256(0x33)) == encodeArgs(false));
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m_sender = account(0);
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@ -82,7 +82,7 @@ public:
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{
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u256 gasUsed = 0;
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GasMeter::GasConsumption gas;
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FixedHash<4> hash(dev::sha3(_sig));
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FixedHash<4> hash(dev::keccak256(_sig));
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for (bytes const& arguments: _argumentVariants)
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{
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sendMessage(hash.asBytes() + arguments, false, 0);
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@ -1260,7 +1260,7 @@ BOOST_AUTO_TEST_CASE(multiple_elementary_accessors)
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("data()") == encodeArgs(8));
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BOOST_CHECK(callContractFunction("name()") == encodeArgs("Celina"));
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BOOST_CHECK(callContractFunction("a_hash()") == encodeArgs(dev::sha3(bytes(1, 0x7b))));
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BOOST_CHECK(callContractFunction("a_hash()") == encodeArgs(dev::keccak256(bytes(1, 0x7b))));
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BOOST_CHECK(callContractFunction("an_address()") == encodeArgs(toBigEndian(u160(0x1337))));
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BOOST_CHECK(callContractFunction("super_secret_data()") == bytes());
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}
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@ -1342,7 +1342,7 @@ BOOST_AUTO_TEST_CASE(msg_sig)
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}
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)";
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo(uint256)") == encodeArgs(asString(FixedHash<4>(dev::sha3("foo(uint256)")).asBytes())));
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BOOST_CHECK(callContractFunction("foo(uint256)") == encodeArgs(asString(FixedHash<4>(dev::keccak256("foo(uint256)")).asBytes())));
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}
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BOOST_AUTO_TEST_CASE(msg_sig_after_internal_call_is_same)
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@ -1358,7 +1358,7 @@ BOOST_AUTO_TEST_CASE(msg_sig_after_internal_call_is_same)
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}
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)";
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo(uint256)") == encodeArgs(asString(FixedHash<4>(dev::sha3("foo(uint256)")).asBytes())));
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BOOST_CHECK(callContractFunction("foo(uint256)") == encodeArgs(asString(FixedHash<4>(dev::keccak256("foo(uint256)")).asBytes())));
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}
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BOOST_AUTO_TEST_CASE(now)
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@ -1686,7 +1686,7 @@ BOOST_AUTO_TEST_CASE(sha3)
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compileAndRun(sourceCode);
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auto f = [&](u256 const& _x) -> u256
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{
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return dev::sha3(toBigEndian(_x));
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return dev::keccak256(toBigEndian(_x));
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};
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testSolidityAgainstCpp("a(bytes32)", f, u256(4));
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testSolidityAgainstCpp("a(bytes32)", f, u256(5));
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@ -2582,7 +2582,7 @@ BOOST_AUTO_TEST_CASE(event)
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BOOST_CHECK_EQUAL(m_logs[0].address, m_contractAddress);
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BOOST_CHECK_EQUAL(h256(m_logs[0].data), h256(u256(value)));
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 3);
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("Deposit(address,bytes32,uint256)")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("Deposit(address,bytes32,uint256)")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[1], h256(m_sender, h256::AlignRight));
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BOOST_CHECK_EQUAL(m_logs[0].topics[2], h256(id));
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}
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@ -2604,7 +2604,7 @@ BOOST_AUTO_TEST_CASE(event_no_arguments)
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BOOST_CHECK_EQUAL(m_logs[0].address, m_contractAddress);
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BOOST_CHECK(m_logs[0].data.empty());
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 1);
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("Deposit()")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("Deposit()")));
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}
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BOOST_AUTO_TEST_CASE(event_anonymous)
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@ -2664,7 +2664,7 @@ BOOST_AUTO_TEST_CASE(event_lots_of_data)
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BOOST_CHECK_EQUAL(m_logs[0].address, m_contractAddress);
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BOOST_CHECK(m_logs[0].data == encodeArgs((u160)m_sender, id, value, true));
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 1);
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("Deposit(address,bytes32,uint256,bool)")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("Deposit(address,bytes32,uint256,bool)")));
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}
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BOOST_AUTO_TEST_CASE(event_really_lots_of_data)
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@ -2681,9 +2681,9 @@ BOOST_AUTO_TEST_CASE(event_really_lots_of_data)
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callContractFunction("deposit()");
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BOOST_REQUIRE_EQUAL(m_logs.size(), 1);
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BOOST_CHECK_EQUAL(m_logs[0].address, m_contractAddress);
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BOOST_CHECK(m_logs[0].data == encodeArgs(10, 0x60, 15, 4) + FixedHash<4>(dev::sha3("deposit()")).asBytes());
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BOOST_CHECK(m_logs[0].data == encodeArgs(10, 0x60, 15, 4) + FixedHash<4>(dev::keccak256("deposit()")).asBytes());
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 1);
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("Deposit(uint256,bytes,uint256)")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("Deposit(uint256,bytes,uint256)")));
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}
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BOOST_AUTO_TEST_CASE(event_really_lots_of_data_from_storage)
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@ -2707,7 +2707,7 @@ BOOST_AUTO_TEST_CASE(event_really_lots_of_data_from_storage)
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BOOST_CHECK_EQUAL(m_logs[0].address, m_contractAddress);
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BOOST_CHECK(m_logs[0].data == encodeArgs(10, 0x60, 15, 3, string("ABC")));
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 1);
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("Deposit(uint256,bytes,uint256)")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("Deposit(uint256,bytes,uint256)")));
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}
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BOOST_AUTO_TEST_CASE(event_indexed_string)
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@ -2738,11 +2738,11 @@ BOOST_AUTO_TEST_CASE(event_indexed_string)
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dynx[i] = i;
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BOOST_CHECK(m_logs[0].data == bytes());
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BOOST_REQUIRE_EQUAL(m_logs[0].topics.size(), 3);
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BOOST_CHECK_EQUAL(m_logs[0].topics[1], dev::sha3(dynx));
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BOOST_CHECK_EQUAL(m_logs[0].topics[2], dev::sha3(
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BOOST_CHECK_EQUAL(m_logs[0].topics[1], dev::keccak256(dynx));
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BOOST_CHECK_EQUAL(m_logs[0].topics[2], dev::keccak256(
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encodeArgs(u256(4), u256(5), u256(6), u256(7))
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));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::sha3(string("E(string,uint256[4])")));
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BOOST_CHECK_EQUAL(m_logs[0].topics[0], dev::keccak256(string("E(string,uint256[4])")));
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}
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BOOST_AUTO_TEST_CASE(empty_name_input_parameter_with_named_one)
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@ -2784,7 +2784,7 @@ BOOST_AUTO_TEST_CASE(sha3_multiple_arguments)
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo(uint256,uint256,uint256)", 10, 12, 13) == encodeArgs(
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dev::sha3(
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dev::keccak256(
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toBigEndian(u256(10)) +
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toBigEndian(u256(12)) +
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toBigEndian(u256(13)))));
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@ -2802,7 +2802,7 @@ BOOST_AUTO_TEST_CASE(sha3_multiple_arguments_with_numeric_literals)
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo(uint256,uint16)", 10, 12) == encodeArgs(
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dev::sha3(
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dev::keccak256(
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toBigEndian(u256(10)) +
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bytes{0x0, 0xc} +
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bytes(1, 0x91))));
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@ -2823,10 +2823,10 @@ BOOST_AUTO_TEST_CASE(sha3_multiple_arguments_with_string_literals)
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})";
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo()") == encodeArgs(dev::sha3("foo")));
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BOOST_CHECK(callContractFunction("foo()") == encodeArgs(dev::keccak256("foo")));
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BOOST_CHECK(callContractFunction("bar(uint256,uint16)", 10, 12) == encodeArgs(
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dev::sha3(
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dev::keccak256(
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toBigEndian(u256(10)) +
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bytes{0x0, 0xc} +
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bytes(1, 0x91) +
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@ -2868,7 +2868,7 @@ BOOST_AUTO_TEST_CASE(iterated_sha3_with_bytes)
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)";
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compileAndRun(sourceCode);
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BOOST_CHECK(callContractFunction("foo()") == encodeArgs(
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u256(dev::sha3(bytes{'b'} + dev::sha3("xyz").asBytes() + bytes{'a'}))
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u256(dev::keccak256(bytes{'b'} + dev::keccak256("xyz").asBytes() + bytes{'a'}))
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));
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}
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@ -3013,9 +3013,9 @@ BOOST_AUTO_TEST_CASE(bytes_from_calldata_to_memory)
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}
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)";
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compileAndRun(sourceCode);
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bytes calldata1 = FixedHash<4>(dev::sha3("f()")).asBytes() + bytes(61, 0x22) + bytes(12, 0x12);
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bytes calldata1 = FixedHash<4>(dev::keccak256("f()")).asBytes() + bytes(61, 0x22) + bytes(12, 0x12);
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sendMessage(calldata1, false);
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BOOST_CHECK(m_output == encodeArgs(dev::sha3(bytes{'a', 'b', 'c'} + calldata1)));
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BOOST_CHECK(m_output == encodeArgs(dev::keccak256(bytes{'a', 'b', 'c'} + calldata1)));
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}
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BOOST_AUTO_TEST_CASE(call_forward_bytes)
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@ -3389,8 +3389,8 @@ BOOST_AUTO_TEST_CASE(bytes_in_arguments)
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)";
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compileAndRun(sourceCode);
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string innercalldata1 = asString(FixedHash<4>(dev::sha3("f(uint256,uint256)")).asBytes() + encodeArgs(8, 9));
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string innercalldata2 = asString(FixedHash<4>(dev::sha3("g(uint256)")).asBytes() + encodeArgs(3));
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string innercalldata1 = asString(FixedHash<4>(dev::keccak256("f(uint256,uint256)")).asBytes() + encodeArgs(8, 9));
|
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string innercalldata2 = asString(FixedHash<4>(dev::keccak256("g(uint256)")).asBytes() + encodeArgs(3));
|
||||
bytes calldata = encodeArgs(
|
||||
12, 32 * 4, u256(32 * 4 + 32 + (innercalldata1.length() + 31) / 32 * 32), 13,
|
||||
u256(innercalldata1.length()), innercalldata1,
|
||||
@ -4668,7 +4668,7 @@ BOOST_AUTO_TEST_CASE(reusing_memory)
|
||||
}
|
||||
)";
|
||||
compileAndRun(sourceCode, 0, "Main");
|
||||
BOOST_REQUIRE(callContractFunction("f(uint256)", 0x34) == encodeArgs(dev::sha3(dev::toBigEndian(u256(0x34)))));
|
||||
BOOST_REQUIRE(callContractFunction("f(uint256)", 0x34) == encodeArgs(dev::keccak256(dev::toBigEndian(u256(0x34)))));
|
||||
}
|
||||
|
||||
BOOST_AUTO_TEST_CASE(return_string)
|
||||
|
@ -105,7 +105,7 @@ public:
|
||||
template <class... Args>
|
||||
bytes const& callContractFunctionWithValue(std::string _sig, u256 const& _value, Args const&... _arguments)
|
||||
{
|
||||
FixedHash<4> hash(dev::sha3(_sig));
|
||||
FixedHash<4> hash(dev::keccak256(_sig));
|
||||
sendMessage(hash.asBytes() + encodeArgs(_arguments...), false, _value);
|
||||
return m_output;
|
||||
}
|
||||
|
@ -154,7 +154,7 @@ static FunctionTypePointer retrieveFunctionBySignature(
|
||||
std::string const& _signature
|
||||
)
|
||||
{
|
||||
FixedHash<4> hash(dev::sha3(_signature));
|
||||
FixedHash<4> hash(dev::keccak256(_signature));
|
||||
return _contract->interfaceFunctions()[hash];
|
||||
}
|
||||
|
||||
|
@ -805,7 +805,7 @@ BOOST_AUTO_TEST_CASE(cse_empty_sha3)
|
||||
Instruction::SHA3
|
||||
};
|
||||
checkCSE(input, {
|
||||
u256(sha3(bytesConstRef()))
|
||||
u256(dev::keccak256(bytesConstRef()))
|
||||
});
|
||||
}
|
||||
|
||||
@ -823,7 +823,7 @@ BOOST_AUTO_TEST_CASE(cse_partial_sha3)
|
||||
u256(0xabcd) << (256 - 16),
|
||||
u256(0),
|
||||
Instruction::MSTORE,
|
||||
u256(sha3(bytes{0xab, 0xcd}))
|
||||
u256(dev::keccak256(bytes{0xab, 0xcd}))
|
||||
});
|
||||
}
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user