chore: forge fmt
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@@ -72,8 +72,7 @@ contract AngleAdapter is ISwapAdapter {
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uint8 decimals = side == OrderSide.Sell
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? IERC20Metadata(sellToken).decimals()
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: IERC20Metadata(buyToken).decimals();
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trade.price =
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getPriceAt(sellToken, buyToken, side, decimals);
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trade.price = getPriceAt(sellToken, buyToken, side, decimals);
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}
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/// @inheritdoc ISwapAdapter
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@@ -103,8 +102,7 @@ contract AngleAdapter is ISwapAdapter {
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} else {
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limits[0] = IERC20(sellToken).balanceOf(transmuterAddress);
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}
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limits[1] =
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transmuter.quoteIn(limits[0], sellToken, buyToken);
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limits[1] = transmuter.quoteIn(limits[0], sellToken, buyToken);
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limits[1] = limits[1] / RESERVE_LIMIT_FACTOR;
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limits[0] = limits[0] / RESERVE_LIMIT_FACTOR;
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} else {
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@@ -117,8 +115,7 @@ contract AngleAdapter is ISwapAdapter {
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} else {
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limits[1] = IERC20(buyToken).balanceOf(transmuterAddress);
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}
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limits[0] =
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transmuter.quoteIn(limits[1], buyToken, sellToken);
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limits[0] = transmuter.quoteIn(limits[1], buyToken, sellToken);
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limits[1] = limits[1] / RESERVE_LIMIT_FACTOR;
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limits[0] = limits[0] / RESERVE_LIMIT_FACTOR;
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}
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@@ -212,18 +209,14 @@ contract AngleAdapter is ISwapAdapter {
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internal
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returns (uint256 calculatedAmount)
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{
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calculatedAmount =
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transmuter.quoteOut(amountOut, sellToken, buyToken);
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calculatedAmount = transmuter.quoteOut(amountOut, sellToken, buyToken);
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IERC20(sellToken).safeTransferFrom(msg.sender, address(this), calculatedAmount);
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IERC20(sellToken).safeTransferFrom(
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msg.sender, address(this), calculatedAmount
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);
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IERC20(sellToken).approve(address(transmuter), calculatedAmount);
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transmuter.swapExactOutput(
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amountOut,
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type(uint256).max,
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sellToken,
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buyToken,
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msg.sender,
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0
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amountOut, type(uint256).max, sellToken, buyToken, msg.sender, 0
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);
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}
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}
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@@ -150,10 +150,7 @@ contract EtherfiAdapter is ISwapAdapter {
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/// @dev Limits are underestimated to 90% of totalSupply as both weEth
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/// and eEth have no limits but revert in some cases
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if (
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sellToken == address(weEth)
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|| buyToken == address(weEth)
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) {
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if (sellToken == address(weEth) || buyToken == address(weEth)) {
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limits[0] = IERC20(address(weEth)).totalSupply() * 90 / 100;
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} else {
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limits[0] = IERC20(address(eEth)).totalSupply() * 90 / 100;
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@@ -36,7 +36,8 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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OrderSide side = isBuy ? OrderSide.Buy : OrderSide.Sell;
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(pair, address(EURC), address(agEUR));
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uint256[] memory limits =
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adapter.getLimits(pair, address(EURC), address(agEUR));
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if (side == OrderSide.Buy) {
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vm.assume(specifiedAmount < limits[1] && specifiedAmount > 0);
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@@ -53,8 +54,9 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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uint256 eurc_balance = EURC.balanceOf(address(this));
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uint256 agEUR_balance = agEUR.balanceOf(address(this));
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Trade memory trade =
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adapter.swap(pair, address(EURC), address(agEUR), side, specifiedAmount);
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Trade memory trade = adapter.swap(
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pair, address(EURC), address(agEUR), side, specifiedAmount
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);
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if (trade.calculatedAmount > 0) {
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if (side == OrderSide.Buy) {
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@@ -85,7 +87,8 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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OrderSide side = isBuy ? OrderSide.Buy : OrderSide.Sell;
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(pair, address(agEUR), address(EURC));
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uint256[] memory limits =
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adapter.getLimits(pair, address(agEUR), address(EURC));
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if (side == OrderSide.Buy) {
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vm.assume(specifiedAmount < limits[1] && specifiedAmount > 0);
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@@ -102,8 +105,9 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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uint256 eurc_balance = EURC.balanceOf(address(this));
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uint256 agEUR_balance = agEUR.balanceOf(address(this));
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Trade memory trade =
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adapter.swap(pair, address(agEUR), address(EURC), side, specifiedAmount);
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Trade memory trade = adapter.swap(
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pair, address(agEUR), address(EURC), side, specifiedAmount
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);
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if (trade.calculatedAmount > 0) {
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if (side == OrderSide.Buy) {
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@@ -154,7 +158,9 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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deal(address(agEUR), address(this), type(uint256).max);
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agEUR.approve(address(adapter), type(uint256).max);
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}
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trades[i] = adapter.swap(pair, address(agEUR), address(EURC), side, amounts[i]);
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trades[i] = adapter.swap(
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pair, address(agEUR), address(EURC), side, amounts[i]
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);
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vm.revertTo(beforeSwap);
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}
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@@ -173,8 +179,7 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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function testGetCapabilitiesAngle(bytes32 pair, address t0, address t1)
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public
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{
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Capability[] memory res =
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adapter.getCapabilities(pair, t0, t1);
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Capability[] memory res = adapter.getCapabilities(pair, t0, t1);
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assertEq(res.length, 2);
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}
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@@ -187,7 +192,8 @@ contract AngleAdapterTest is Test, ISwapAdapterTypes {
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function testGetLimitsAngle() public {
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(pair, address(agEUR), address(EURC));
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uint256[] memory limits =
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adapter.getLimits(pair, address(agEUR), address(EURC));
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assertEq(limits.length, 2);
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}
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@@ -58,7 +58,8 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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IERC20 eEth_ = IERC20(address(eEth));
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IERC20 weEth_ = IERC20(address(weEth));
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(pair, address(eEth_), address(weEth_));
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uint256[] memory limits =
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adapter.getLimits(pair, address(eEth_), address(weEth_));
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if (side == OrderSide.Buy) {
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vm.assume(specifiedAmount < limits[1] && specifiedAmount > 100);
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@@ -67,7 +68,11 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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/// work(balance is shares)
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deal(address(adapter), type(uint256).max);
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adapter.swap(
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pair, address(address(0)), address(eEth_), OrderSide.Buy, limits[0]
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pair,
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address(address(0)),
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address(eEth_),
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OrderSide.Buy,
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limits[0]
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);
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eEth_.approve(address(adapter), type(uint256).max);
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@@ -78,7 +83,11 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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/// work(balance is shares)
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deal(address(adapter), type(uint128).max);
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adapter.swap(
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pair, address(address(0)), address(eEth_), OrderSide.Buy, specifiedAmount
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pair,
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address(address(0)),
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address(eEth_),
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OrderSide.Buy,
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specifiedAmount
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);
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eEth_.approve(address(adapter), specifiedAmount);
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@@ -87,8 +96,9 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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uint256 eEth_balance = eEth_.balanceOf(address(this));
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uint256 weEth_balance = weEth_.balanceOf(address(this));
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Trade memory trade =
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adapter.swap(pair, address(eEth_), address(weEth_), side, specifiedAmount);
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Trade memory trade = adapter.swap(
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pair, address(eEth_), address(weEth_), side, specifiedAmount
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);
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if (trade.calculatedAmount > 0) {
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if (side == OrderSide.Buy) {
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@@ -140,7 +150,8 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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IERC20 weEth_ = IERC20(address(weEth));
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uint256 weEth_bal_before = weEth_.balanceOf(address(this));
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(pair, address(weEth_), address(eEth_));
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uint256[] memory limits =
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adapter.getLimits(pair, address(weEth_), address(eEth_));
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if (side == OrderSide.Buy) {
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vm.assume(specifiedAmount < limits[1] && specifiedAmount > 100);
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@@ -149,7 +160,11 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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/// work(balance is shares)
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deal(address(adapter), type(uint256).max);
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adapter.swap(
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pair, address(address(0)), address(weEth_), OrderSide.Buy, limits[0]
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pair,
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address(address(0)),
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address(weEth_),
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OrderSide.Buy,
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limits[0]
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);
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weEth_.approve(address(adapter), type(uint256).max);
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@@ -160,7 +175,11 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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/// work(balance is shares)
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deal(address(adapter), type(uint128).max);
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adapter.swap(
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pair, address(address(0)), address(weEth_), OrderSide.Buy, specifiedAmount
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pair,
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address(address(0)),
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address(weEth_),
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OrderSide.Buy,
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specifiedAmount
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);
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weEth_.approve(address(adapter), specifiedAmount);
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@@ -174,8 +193,9 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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/// therefore we use weEth_balance - weEth_bal_before as specifiedAmount
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uint256 realAmountWeEth_ = weEth_balance - weEth_bal_before;
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Trade memory trade =
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adapter.swap(pair, address(weEth_), address(eEth_), side, realAmountWeEth_);
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Trade memory trade = adapter.swap(
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pair, address(weEth_), address(eEth_), side, realAmountWeEth_
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);
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if (trade.calculatedAmount > 0) {
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if (side == OrderSide.Buy) {
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@@ -386,9 +406,8 @@ contract EtherfiAdapterTest is Test, ISwapAdapterTypes {
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function testGetLimitsEtherfi() public {
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bytes32 pair = bytes32(0);
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uint256[] memory limits = adapter.getLimits(
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pair, address(eEth), address(weEth)
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);
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uint256[] memory limits =
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adapter.getLimits(pair, address(eEth), address(weEth));
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assertEq(limits.length, 2);
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}
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