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7c9c9f90de
...
fe9cf0a00c
@ -4,14 +4,10 @@ pragma solidity ^0.8.20;
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import "@openzeppelin-contracts/token/ERC20/IERC20.sol";
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import "@openzeppelin-contracts/token/ERC20/IERC20.sol";
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import "@openzeppelin-contracts/token/ERC20/extensions/IERC20Metadata.sol";
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import "@openzeppelin-contracts/token/ERC20/extensions/IERC20Metadata.sol";
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import "@openzeppelin-contracts/token/ERC20/utils/SafeERC20.sol";
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import "@openzeppelin-contracts/token/ERC20/utils/SafeERC20.sol";
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import "@uniswap-v2-core-1.0.1/interfaces/IUniswapV2Factory.sol";
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import "@uniswap-v2-core-1.0.1/interfaces/IUniswapV2Pair.sol";
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import "@uniswap-v2-periphery-1.1.0-beta.0/interfaces/IUniswapV2Router02.sol";
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import "@uniswap-v2-periphery-1.1.0-beta.0/interfaces/IUniswapV2Router02.sol";
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import "@uniswap-v2-periphery-1.1.0-beta.0/interfaces/IUniswapV2Router01.sol";
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import "@uniswap-v2-periphery-1.1.0-beta.0/interfaces/IUniswapV2Router01.sol";
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import "./types/GhostAccessControlled.sol";
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import "./types/GhostAccessControlled.sol";
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import "./libraries/FixedPoint.sol";
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import "./interfaces/IFTSO.sol";
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import "./interfaces/IFTSO.sol";
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import "./interfaces/ISTNK.sol";
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import "./interfaces/ISTNK.sol";
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@ -215,58 +211,58 @@ contract GhostTreasury is GhostAccessControlled, ITreasury {
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emit Permissioned(toDisable, status, false);
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emit Permissioned(toDisable, status, false);
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}
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}
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function _quantityToBeSwapped(uint256 xa, uint256 x1) internal pure returns (uint256) {
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uint256 y1 = x1 * 1994 / 1000;
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uint256 y2 = Babylonian.sqrt(y1**2 + 4 * xa * x1 * 997 / 1000);
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return (y2 - y1) * 1000 / 1994;
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}
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function redeemReserve(
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function redeemReserve(
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address router, // could be an issue
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address router, // could be an issue
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uint256 amount,
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address token,
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uint256 slippage
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uint256 swapAmount,
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uint256 liquidityAmount
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) external onlyGovernor {
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) external onlyGovernor {
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uint256 deadline = block.timestamp; // No delays in timestamp
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address weth = IUniswapV2Router01(router).WETH();
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address weth = IUniswapV2Router01(router).WETH();
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address pair = IUniswapV2Factory(IUniswapV2Router01(router).factory()).getPair(ftso, weth);
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IERC20(weth).approve(router, amount + 1);
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// Reconstruct path based on token address.
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// Avoid user's input error.
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(uint256 reserve0, uint256 reserve1,) = IUniswapV2Pair(pair).getReserves();
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address[] memory path;
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address[] memory path;
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if (ftso < weth) {
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if (token < weth) {
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path[0] = ftso;
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path[0] = token;
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path[1] = weth;
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path[1] = weth;
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reserve0 = reserve1 ^ reserve0;
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reserve1 = reserve1 ^ reserve0;
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reserve0 = reserve1 ^ reserve0;
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} else {
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} else {
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path[0] = weth;
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path[0] = weth;
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path[1] = ftso;
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path[1] = token;
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}
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uint256 totalAmount = swapAmount + liquidityAmount;
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if (IERC20(token).allowance(address(this), router) <= totalAmount) {
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IERC20(token).approve(router, totalAmount + 1);
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}
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uint256[] memory amounts = IUniswapV2Router02(router).getAmountsOut(swapAmount, path);
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uint256 amountOut = amounts[0];
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if (token < weth) {
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amountOut = amounts[1];
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}
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}
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uint256 amountIn = _quantityToBeSwapped(amount, reserve0);
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uint256[] memory amounts = IUniswapV2Router02(router).getAmountsOut(amountIn, path);
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IUniswapV2Router02(router).swapExactTokensForTokens(
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IUniswapV2Router02(router).swapExactTokensForTokens(
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amountIn,
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swapAmount,
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amounts[0],
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amountOut,
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path,
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path,
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address(this),
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address(this),
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block.timestamp
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deadline
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);
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);
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amountIn = amount - amountIn;
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if (IERC20(weth).allowance(address(this), router) <= amountOut) {
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IERC20(ftso).approve(router, amountIn + 1);
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IERC20(token).approve(router, amountOut + 1);
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}
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IUniswapV2Router02(router).addLiquidity(
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IUniswapV2Router02(router).addLiquidity(
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path[0],
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path[0],
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path[1],
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path[1],
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amountIn,
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liquidityAmount,
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amounts[0],
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amountOut,
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amountIn * (1e7 - slippage) / 1e7,
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liquidityAmount,
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amounts[0] * (1e7 - slippage) / 1e7,
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amountOut,
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address(this),
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address(this),
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block.timestamp
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deadline
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);
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);
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}
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}
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@ -349,11 +345,6 @@ contract GhostTreasury is GhostAccessControlled, ITreasury {
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}
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}
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}
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}
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function originalCoefficient() external view returns (uint256) {
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address[] memory reserveTokens = registry[STATUS.RESERVETOKEN];
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return IBondingCalculator(bondCalculator[reserveTokens[0]]).fraction();
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}
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function excessReserves() public view override returns (uint256) {
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function excessReserves() public view override returns (uint256) {
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return totalReserves - (IFTSO(ftso).totalSupply() - totalDebt);
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return totalReserves - (IFTSO(ftso).totalSupply() - totalDebt);
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}
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}
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@ -364,7 +355,7 @@ contract GhostTreasury is GhostAccessControlled, ITreasury {
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) public view override returns (uint256 value) {
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) public view override returns (uint256 value) {
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if (permissions[STATUS.LIQUIDITYTOKEN][token]) {
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if (permissions[STATUS.LIQUIDITYTOKEN][token]) {
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value = IBondingCalculator(bondCalculator[token]).valuation(token, amount);
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value = IBondingCalculator(bondCalculator[token]).valuation(token, amount);
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} else if (permissions[STATUS.RESERVETOKEN][token]) {
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} else {
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value = amount * 1e9 / (10**IERC20Metadata(token).decimals());
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value = amount * 1e9 / (10**IERC20Metadata(token).decimals());
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value = value * IBondingCalculator(bondCalculator[token]).fraction() / 1e18;
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value = value * IBondingCalculator(bondCalculator[token]).fraction() / 1e18;
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}
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}
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@ -239,7 +239,7 @@ contract GhostTreasuryTest is Test {
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assertEq(treasury.permissions(ITreasury.STATUS.RESERVEDEPOSITOR, msg.sender), false);
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assertEq(treasury.permissions(ITreasury.STATUS.RESERVEDEPOSITOR, msg.sender), false);
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}
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}
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function test_mainnet_disableReserveAndLiquidity() public {
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function test_tokenValueIsCorret() public {
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address realDexPair = 0xB20bd5D04BE54f870D5C0d3cA85d82b34B836405;
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address realDexPair = 0xB20bd5D04BE54f870D5C0d3cA85d82b34B836405;
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vm.startPrank(governor);
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vm.startPrank(governor);
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@ -247,40 +247,12 @@ contract GhostTreasuryTest is Test {
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treasury.enable(ITreasury.STATUS.LIQUIDITYTOKEN, realDexPair, address(calculator));
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treasury.enable(ITreasury.STATUS.LIQUIDITYTOKEN, realDexPair, address(calculator));
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vm.stopPrank();
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vm.stopPrank();
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uint256 totalSupply = IUniswapV2Pair(realDexPair).totalSupply();
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assertEq(treasury.tokenValue(address(reserve), 1e18), 1e9);
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assertEq(treasury.tokenValue(address(reserve), 1e18), 1e9);
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(uint256 reserve0, uint256 reserve1,) = IUniswapV2Pair(realDexPair).getReserves();
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(uint256 reserve0, uint256 reserve1,) = IUniswapV2Pair(realDexPair).getReserves();
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uint256 reserves = reserve0 * reserve1 / 1e6;
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uint256 reserves = reserve0 * reserve1 / 1e6;
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uint256 reserveEps = reserves * 1e5 / 1e7; // 1%
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uint256 reserveEps = reserves * 1e5 / 1e7; // 1%
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uint256 totalSupply = IUniswapV2Pair(realDexPair).totalSupply();
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uint256 liquidityValue = (treasury.tokenValue(realDexPair, totalSupply) / 2)**2;
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assertEq(liquidityValue + reserveEps >= reserves, true);
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assertEq(liquidityValue - reserveEps <= reserves, true);
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vm.startPrank(governor);
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treasury.disable(ITreasury.STATUS.RESERVETOKEN, address(reserve));
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treasury.disable(ITreasury.STATUS.LIQUIDITYTOKEN, realDexPair);
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vm.stopPrank();
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assertEq(treasury.tokenValue(address(reserve), 1e18), 0);
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assertEq(treasury.tokenValue(realDexPair, 1e18), 0);
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}
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function test_mainnet_tokenValueIsCorret() public {
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address realDexPair = 0xB20bd5D04BE54f870D5C0d3cA85d82b34B836405;
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vm.startPrank(governor);
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treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
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treasury.enable(ITreasury.STATUS.LIQUIDITYTOKEN, realDexPair, address(calculator));
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vm.stopPrank();
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assertEq(treasury.tokenValue(address(reserve), 1e18), 1e9);
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(uint256 reserve0, uint256 reserve1,) = IUniswapV2Pair(realDexPair).getReserves();
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uint256 reserves = reserve0 * reserve1 / 1e6;
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uint256 reserveEps = reserves * 1e5 / 1e7; // 1%
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uint256 totalSupply = IUniswapV2Pair(realDexPair).totalSupply();
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uint256 liquidityValue = (treasury.tokenValue(realDexPair, totalSupply) / 2)**2;
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uint256 liquidityValue = (treasury.tokenValue(realDexPair, totalSupply) / 2)**2;
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assertEq(liquidityValue + reserveEps >= reserves, true);
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assertEq(liquidityValue + reserveEps >= reserves, true);
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@ -1,95 +0,0 @@
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pragma solidity 0.8.20;
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import {Test} from "forge-std/Test.sol";
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import {StdChains} from "forge-std/StdChains.sol";
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import "../../src/FatsoERC20.sol";
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import "../../src/GhostAuthority.sol";
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import "../../src/Treasury.sol";
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import "../../src/StandardBondingCalculator.sol";
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import "../../src/mocks/ERC20Mock.sol";
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contract GhostTreasuryCoefficienBiggerTest is Test {
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address public constant owner = 0x0000000000000000000000000000000000000001;
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address public constant governor = 0x0000000000000000000000000000000000000002;
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address public constant guardian = 0x0000000000000000000000000000000000000003;
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address public constant other = 0x0000000000000000000000000000000000000004;
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address public constant alice = 0x0000000000000000000000000000000000000005;
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address public constant bob = 0x0000000000000000000000000000000000000006;
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uint256 public constant amount = 69 * 1e18;
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Fatso ftso;
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ERC20Mock reserve;
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ERC20Mock liquidity;
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GhostTreasury treasury;
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GhostAuthority authority;
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GhostBondingCalculator calculator;
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function setUp() public {
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vm.startPrank(owner);
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authority = new GhostAuthority(
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governor,
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guardian,
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owner,
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owner
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);
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reserve = new ERC20Mock("Reserve Token", "RET");
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liquidity = new ERC20Mock("Liquidity Token", "LDT");
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ftso = new Fatso(address(authority), "Fatso", "FTSO");
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treasury = new GhostTreasury(address(ftso), 69, address(authority));
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calculator = new GhostBondingCalculator(address(ftso), 20, 1);
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vm.stopPrank();
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vm.prank(governor);
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authority.pushVault(address(treasury));
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vm.startPrank(alice);
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reserve.mint(alice, amount);
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reserve.approve(address(treasury), type(uint256).max);
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ftso.approve(address(treasury), type(uint256).max);
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vm.stopPrank();
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}
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function test_auditTreasuryReservesWithCoefficient() public {
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vm.startPrank(governor);
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treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
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treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
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vm.stopPrank();
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assertEq(treasury.totalReserves(), 0);
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uint256 tokenValue = treasury.tokenValue(address(reserve), amount);
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vm.prank(alice);
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IERC20(reserve).transfer(address(treasury), amount);
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assertEq(treasury.totalReserves(), 0);
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vm.prank(governor);
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treasury.auditReserves();
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assertEq(treasury.totalReserves(), tokenValue);
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uint256 coefficient = treasury.originalCoefficient();
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uint256 decimals = IERC20Metadata(address(reserve)).decimals() + 9;
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uint256 convertedReserves = treasury.totalReserves() * 10**decimals / coefficient;
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uint256 convertedEps = convertedReserves * 1e5 / 1e12; // .000001%
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assertEq(convertedReserves + convertedEps >= convertedReserves, true);
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assertEq(convertedReserves - convertedEps <= convertedReserves, true);
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assertEq(treasury.excessReserves(), tokenValue);
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}
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function test_originalCoefficientCorrect() public {
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vm.startPrank(governor);
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treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
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treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
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vm.stopPrank();
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uint256 estimation = 20 * 1e18;
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uint256 estimationEps = estimation * 1e5 / 1e12; // .000001%
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assertEq(estimation + estimationEps >= treasury.originalCoefficient(), true);
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assertEq(estimation - estimationEps <= treasury.originalCoefficient(), true);
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}
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}
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@ -1,121 +0,0 @@
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pragma solidity 0.8.20;
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import {Test} from "forge-std/Test.sol";
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|
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import {StdChains} from "forge-std/StdChains.sol";
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import "../../src/FatsoERC20.sol";
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import "../../src/GhostAuthority.sol";
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import "../../src/Treasury.sol";
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import "../../src/StandardBondingCalculator.sol";
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import "../../src/mocks/ERC20Mock.sol";
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contract GhostTreasuryCoefficientLesserTest is Test {
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address public constant owner = 0x0000000000000000000000000000000000000001;
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address public constant governor = 0x0000000000000000000000000000000000000002;
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address public constant guardian = 0x0000000000000000000000000000000000000003;
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address public constant other = 0x0000000000000000000000000000000000000004;
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address public constant alice = 0x0000000000000000000000000000000000000005;
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address public constant bob = 0x0000000000000000000000000000000000000006;
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uint256 public constant amount = 69 * 1e18;
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Fatso ftso;
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ERC20Mock reserve;
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||||||
ERC20Mock liquidity;
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GhostTreasury treasury;
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GhostAuthority authority;
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||||||
GhostBondingCalculator calculator;
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function setUp() public {
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|
||||||
vm.startPrank(owner);
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||||||
authority = new GhostAuthority(
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||||||
governor,
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||||||
guardian,
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||||||
owner,
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||||||
owner
|
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||||||
);
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||||||
reserve = new ERC20Mock("Reserve Token", "RET");
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liquidity = new ERC20Mock("Liquidity Token", "LDT");
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||||||
ftso = new Fatso(address(authority), "Fatso", "FTSO");
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||||||
treasury = new GhostTreasury(address(ftso), 69, address(authority));
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||||||
calculator = new GhostBondingCalculator(address(ftso), 1, 20);
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||||||
vm.stopPrank();
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||||||
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|
||||||
vm.prank(governor);
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||||||
authority.pushVault(address(treasury));
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||||||
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|
||||||
vm.startPrank(alice);
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||||||
reserve.mint(alice, amount);
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|
||||||
reserve.approve(address(treasury), type(uint256).max);
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||||||
ftso.approve(address(treasury), type(uint256).max);
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|
||||||
vm.stopPrank();
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|
||||||
}
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|
||||||
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|
||||||
function test_deposit_onlyIfApprovedTokenAndApprovedAddress() public {
|
|
||||||
vm.expectRevert();
|
|
||||||
vm.prank(alice);
|
|
||||||
treasury.deposit(address(reserve), amount, 0);
|
|
||||||
|
|
||||||
vm.prank(governor);
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
|
|
||||||
|
|
||||||
vm.expectRevert();
|
|
||||||
vm.prank(alice);
|
|
||||||
treasury.deposit(address(reserve), amount, 0);
|
|
||||||
|
|
||||||
vm.prank(governor);
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
|
|
||||||
vm.prank(alice);
|
|
||||||
uint256 send = treasury.deposit(address(reserve), amount, 0);
|
|
||||||
|
|
||||||
assertEq(ftso.balanceOf(alice), send);
|
|
||||||
assertEq(reserve.balanceOf(address(treasury)), amount);
|
|
||||||
|
|
||||||
vm.startPrank(governor);
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
|
|
||||||
vm.stopPrank();
|
|
||||||
}
|
|
||||||
|
|
||||||
function test_auditTreasuryReservesWithCoefficient() public {
|
|
||||||
vm.startPrank(governor);
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
|
|
||||||
vm.stopPrank();
|
|
||||||
|
|
||||||
assertEq(treasury.totalReserves(), 0);
|
|
||||||
|
|
||||||
uint256 tokenValue = treasury.tokenValue(address(reserve), amount);
|
|
||||||
vm.prank(alice);
|
|
||||||
IERC20(reserve).transfer(address(treasury), amount);
|
|
||||||
|
|
||||||
assertEq(treasury.totalReserves(), 0);
|
|
||||||
|
|
||||||
vm.prank(governor);
|
|
||||||
treasury.auditReserves();
|
|
||||||
assertEq(treasury.totalReserves(), tokenValue);
|
|
||||||
|
|
||||||
uint256 coefficient = treasury.originalCoefficient();
|
|
||||||
uint256 decimals = IERC20Metadata(address(reserve)).decimals() + 9;
|
|
||||||
uint256 convertedReserves = treasury.totalReserves() * 10**decimals / coefficient;
|
|
||||||
uint256 convertedEps = convertedReserves * 1e5 / 1e12; // .000001%
|
|
||||||
|
|
||||||
assertEq(convertedReserves + convertedEps >= convertedReserves, true);
|
|
||||||
assertEq(convertedReserves - convertedEps <= convertedReserves, true);
|
|
||||||
|
|
||||||
assertEq(treasury.excessReserves(), tokenValue);
|
|
||||||
}
|
|
||||||
|
|
||||||
function test_originalCoefficientCorrect() public {
|
|
||||||
vm.startPrank(governor);
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVEDEPOSITOR, alice, address(0));
|
|
||||||
treasury.enable(ITreasury.STATUS.RESERVETOKEN, address(reserve), address(calculator));
|
|
||||||
vm.stopPrank();
|
|
||||||
|
|
||||||
uint256 estimation = 1e18 / 20;
|
|
||||||
uint256 estimationEps = estimation * 1e5 / 1e12; // .000001%
|
|
||||||
|
|
||||||
assertEq(estimation + estimationEps >= treasury.originalCoefficient(), true);
|
|
||||||
assertEq(estimation - estimationEps <= treasury.originalCoefficient(), true);
|
|
||||||
}
|
|
||||||
}
|
|
||||||
@ -1,5 +1,5 @@
|
|||||||
# exclude all tests dependant on rpc
|
# exclude all tests dependant on rpc
|
||||||
forge test --no-match-test test_mainnet_
|
forge test --no-match-test test_tokenValueIsCorret
|
||||||
|
|
||||||
echo ""
|
echo ""
|
||||||
echo "#####################################"
|
echo "#####################################"
|
||||||
@ -11,4 +11,4 @@ echo ""
|
|||||||
FORK_URL="${1:-https://eth-mainnet.alchemyapi.io/v2/pwc5rmJhrdoaSEfimoKEmsvOjKSmPDrP}"
|
FORK_URL="${1:-https://eth-mainnet.alchemyapi.io/v2/pwc5rmJhrdoaSEfimoKEmsvOjKSmPDrP}"
|
||||||
|
|
||||||
# run tests where rpc to the mainnet is needed
|
# run tests where rpc to the mainnet is needed
|
||||||
forge test --match-test test_mainnet_ --fork-url $FORK_URL
|
forge test --match-test test_tokenValueIsCorret --fork-url $FORK_URL
|
||||||
|
|||||||
Loading…
Reference in New Issue
Block a user