solidity/test/libsolidity/GasCosts.cpp

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/*
This file is part of solidity.
solidity is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
solidity is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with solidity. If not, see <http://www.gnu.org/licenses/>.
*/
/**
* Tests that check that the cost of certain operations stay within range.
*/
#include <test/libsolidity/SolidityExecutionFramework.h>
#include <liblangutil/EVMVersion.h>
#include <libsolutil/IpfsHash.h>
#include <libevmasm/GasMeter.h>
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#include <cmath>
using namespace std;
using namespace solidity::langutil;
using namespace solidity::langutil;
using namespace solidity::evmasm;
using namespace solidity::frontend;
using namespace solidity::test;
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namespace solidity::frontend::test
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{
#define CHECK_DEPLOY_GAS(_gasNoOpt, _gasOpt, _evmVersion) \
do \
{ \
u256 ipfsCost = GasMeter::dataGas(util::ipfsHash(m_compiler.metadata(m_compiler.lastContractName())), true, _evmVersion); \
u256 gasOpt{_gasOpt}; \
u256 gasNoOpt{_gasNoOpt}; \
u256 gas = m_optimiserSettings == OptimiserSettings::minimal() ? gasNoOpt : gasOpt; \
BOOST_CHECK_MESSAGE( \
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m_gasUsed >= ipfsCost, \
"Gas used: " + \
m_gasUsed.str() + \
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" is less than the data cost for the IPFS hash: " + \
u256(ipfsCost).str() \
); \
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u256 gasUsed = m_gasUsed - ipfsCost; \
BOOST_CHECK_MESSAGE( \
gas == gasUsed, \
"Gas used: " + \
gasUsed.str() + \
" - expected: " + \
gas.str() \
); \
} while(0)
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#define CHECK_GAS(_gasNoOpt, _gasOpt, _tolerance) \
do \
{ \
u256 gasOpt{_gasOpt}; \
u256 gasNoOpt{_gasNoOpt}; \
u256 tolerance{_tolerance}; \
u256 gas = m_optimiserSettings == OptimiserSettings::minimal() ? gasNoOpt : gasOpt; \
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u256 diff = gas < m_gasUsed ? m_gasUsed - gas : gas - m_gasUsed; \
BOOST_CHECK_MESSAGE( \
diff <= tolerance, \
"Gas used: " + \
m_gasUsed.str() + \
" - expected: " + \
gas.str() + \
" (tolerance: " + \
tolerance.str() + \
")" \
); \
} while(0)
BOOST_FIXTURE_TEST_SUITE(GasCostTests, SolidityExecutionFramework)
BOOST_AUTO_TEST_CASE(string_storage)
{
char const* sourceCode = R"(
contract C {
function f() pure public {
require(false, "Not Authorized. This function can only be called by the custodian or owner of this contract");
}
}
)";
m_compiler.overwriteReleaseFlag(true);
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compileAndRun(sourceCode);
auto evmVersion = solidity::test::Options::get().evmVersion();
if (evmVersion <= EVMVersion::byzantium())
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CHECK_DEPLOY_GAS(134209, 130895, evmVersion);
// This is only correct on >=Constantinople.
else if (Options::get().useABIEncoderV2)
{
if (Options::get().optimizeYul)
{
// Costs with 0 are cases which cannot be triggered in tests.
if (evmVersion < EVMVersion::istanbul())
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CHECK_DEPLOY_GAS(0, 124033, evmVersion);
else
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CHECK_DEPLOY_GAS(0, 110981, evmVersion);
}
else
{
if (evmVersion < EVMVersion::istanbul())
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CHECK_DEPLOY_GAS(147835, 131687, evmVersion);
else
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CHECK_DEPLOY_GAS(131871, 117231, evmVersion);
}
}
else if (evmVersion < EVMVersion::istanbul())
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CHECK_DEPLOY_GAS(126993, 119723, evmVersion);
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else
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CHECK_DEPLOY_GAS(114357, 107347, evmVersion);
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if (evmVersion >= EVMVersion::byzantium())
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{
callContractFunction("f()");
if (evmVersion == EVMVersion::byzantium())
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CHECK_GAS(21545, 21526, 20);
// This is only correct on >=Constantinople.
else if (Options::get().useABIEncoderV2)
{
if (Options::get().optimizeYul)
{
if (evmVersion < EVMVersion::istanbul())
CHECK_GAS(0, 21567, 20);
else
CHECK_GAS(0, 21351, 20);
}
else
{
if (evmVersion < EVMVersion::istanbul())
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CHECK_GAS(21707, 21635, 20);
else
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CHECK_GAS(21499, 21431, 20);
}
}
else if (evmVersion < EVMVersion::istanbul())
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CHECK_GAS(21546, 21526, 20);
else
CHECK_GAS(21332, 21322, 20);
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}
}
BOOST_AUTO_TEST_CASE(single_callvaluecheck)
{
string sourceCode = R"(
// All functions nonpayable, we can check callvalue at the beginning
contract Nonpayable {
address a;
function f(address b) public {
a = b;
}
function f1(address b) public pure returns (uint c) {
return uint(b) + 2;
}
function f2(address b) public pure returns (uint) {
return uint(b) + 8;
}
function f3(address, uint c) pure public returns (uint) {
return c - 5;
}
}
// At least on payable function, we cannot do the optimization.
contract Payable {
address a;
function f(address b) public {
a = b;
}
function f1(address b) public pure returns (uint c) {
return uint(b) + 2;
}
function f2(address b) public pure returns (uint) {
return uint(b) + 8;
}
function f3(address, uint c) payable public returns (uint) {
return c - 5;
}
}
)";
compileAndRun(sourceCode);
size_t bytecodeSizeNonpayable = m_compiler.object("Nonpayable").bytecode.size();
size_t bytecodeSizePayable = m_compiler.object("Payable").bytecode.size();
BOOST_CHECK_EQUAL(bytecodeSizePayable - bytecodeSizeNonpayable, 26);
}
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BOOST_AUTO_TEST_SUITE_END()
}