feat: Implemented price
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@@ -11,13 +11,26 @@ contract IntegralSwapAdapter is ISwapAdapter {
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relayer = ITwapRelayer(relayer_);
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relayer = ITwapRelayer(relayer_);
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}
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}
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/// @inheritdoc ISwapAdapter
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function price(
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function price(
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bytes32 _poolId,
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bytes32 _poolId,
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IERC20 _sellToken,
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IERC20 _sellToken,
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IERC20 _buyToken,
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IERC20 _buyToken,
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uint256[] memory _specifiedAmounts
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uint256[] memory _specifiedAmounts
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) external view override returns (Fraction[] memory _prices) {
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) external view override returns (Fraction[] memory _prices) {
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revert NotImplemented("IntegralSwapAdapter.price");
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_prices = new Fraction[](_specifiedAmounts.length);
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ITwapPair pair = ITwapPair(address(bytes20(_poolId)));
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uint112 r0;
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uint112 r1;
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if (address(_sellToken) == pair.token0()) { // sell
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(r0, r1) = pair.getReserves();
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} else { // buy
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(r1, r0) = pair.getReserves();
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}
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for (uint256 i = 0; i < _specifiedAmounts.length; i++) {
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_prices[i] = getPriceAt(_specifiedAmounts[i], r0, r1, pair);
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}
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}
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}
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function swap(
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function swap(
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@@ -94,6 +107,38 @@ contract IntegralSwapAdapter is ISwapAdapter {
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ids[i] = bytes20(factory.allPairs(offset + i));
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ids[i] = bytes20(factory.allPairs(offset + i));
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}
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}
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}
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}
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/// @notice Calculates pool prices after trade for specified amounts
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/// @param amountIn The amount of the token being sold.
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/// @param reserveIn The reserve of the token being sold.
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/// @param reserveOut The reserve of the token being bought.
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/// @param pair (ITwapPair) The pair where to execute the swap in.
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/// @dev Although Integral declares in its Docs that the fee is 1 BP(0.01%, 0.0001 multiplier),
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/// it can be changed at any time by calling a function of the contract by its owner or operator,
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/// therefore it is obtained dynamically to ensure this function output remains reliable over time
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/// @return The price as a fraction corresponding to the provided amount.
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function getPriceAt(uint256 amountIn, uint256 reserveIn, uint256 reserveOut, ITwapPair pair)
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internal
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view
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returns (Fraction memory)
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{
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if (reserveIn == 0 || reserveOut == 0) {
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revert Unavailable("At least one reserve is zero!");
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}
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uint256 feeBP = relayer.swapFee(address(pair));
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uint256 amountInWithFee = amountIn - ( (amountIn * feeBP) / 10**18 );
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uint256 numerator = amountInWithFee * reserveOut;
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uint256 denominator = (reserveIn * 1000) + amountInWithFee;
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uint256 amountOut = numerator / denominator;
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uint256 newReserveOut = reserveOut - amountOut;
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uint256 newReserveIn = reserveIn + amountIn;
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return Fraction(
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newReserveOut * 1000,
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newReserveIn - ( (newReserveIn * feeBP) / 10**18 )
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);
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}
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}
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}
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interface ITwapRelayer {
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interface ITwapRelayer {
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