package exchanges import ( "fmt" "math/big" "github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/ethclient" "github.com/fraktal/mev-beta/internal/logger" "github.com/fraktal/mev-beta/pkg/math" ) // PancakeSwapPoolDetector implements PoolDetector for PancakeSwap type PancakeSwapPoolDetector struct { client *ethclient.Client logger *logger.Logger config *ExchangeConfig } // NewPancakeSwapPoolDetector creates a new PancakeSwap pool detector func NewPancakeSwapPoolDetector(client *ethclient.Client, logger *logger.Logger, config *ExchangeConfig) *PancakeSwapPoolDetector { return &PancakeSwapPoolDetector{ client: client, logger: logger, config: config, } } // GetAllPools returns all pools containing the specified tokens func (d *PancakeSwapPoolDetector) GetAllPools(token0, token1 common.Address) ([]common.Address, error) { // In a real implementation, this would query the factory contract // For now, we'll return an empty slice return []common.Address{}, nil } // GetPoolForPair returns the pool address for a specific token pair func (d *PancakeSwapPoolDetector) GetPoolForPair(token0, token1 common.Address) (common.Address, error) { // Calculate pool address using PancakeSwap factory formula (same as Uniswap V2) // In a real implementation, this would call the factory's getPair function poolAddress := common.HexToAddress("0x0") // Placeholder // For now, return empty address to indicate pool not found return poolAddress, nil } // GetSupportedFeeTiers returns supported fee tiers for PancakeSwap V2 (standard 0.25%) func (d *PancakeSwapPoolDetector) GetSupportedFeeTiers() []int64 { return []int64{2500} // 0.25% in basis points } // GetPoolType returns the pool type func (d *PancakeSwapPoolDetector) GetPoolType() string { return "pancakeswap_v2_constant_product" } // PancakeSwapLiquidityFetcher implements LiquidityFetcher for PancakeSwap type PancakeSwapLiquidityFetcher struct { client *ethclient.Client logger *logger.Logger config *ExchangeConfig engine *math.ExchangePricingEngine } // NewPancakeSwapLiquidityFetcher creates a new PancakeSwap liquidity fetcher func NewPancakeSwapLiquidityFetcher(client *ethclient.Client, logger *logger.Logger, config *ExchangeConfig, engine *math.ExchangePricingEngine) *PancakeSwapLiquidityFetcher { return &PancakeSwapLiquidityFetcher{ client: client, logger: logger, config: config, engine: engine, } } // GetPoolData fetches pool information for PancakeSwap func (f *PancakeSwapLiquidityFetcher) GetPoolData(poolAddress common.Address) (*math.PoolData, error) { // In a real implementation, this would call the pool contract to get reserves // For now, return a placeholder pool data fee, err := math.NewUniversalDecimal(big.NewInt(250), 4, "FEE") if err != nil { return nil, fmt.Errorf("error creating fee decimal: %w", err) } reserve0Value := new(big.Int) reserve0Value.SetString("1000000000000000000000", 10) // WBNB reserve0, err := math.NewUniversalDecimal(reserve0Value, 18, "RESERVE0") if err != nil { return nil, fmt.Errorf("error creating reserve0 decimal: %w", err) } reserve1Value := new(big.Int) reserve1Value.SetString("1000000000000000000000000", 10) // CAKE reserve1, err := math.NewUniversalDecimal(reserve1Value, 18, "RESERVE1") if err != nil { return nil, fmt.Errorf("error creating reserve1 decimal: %w", err) } return &math.PoolData{ Address: poolAddress.Hex(), ExchangeType: math.ExchangeUniswapV2, // Using UniswapV2 logic since PancakeSwap is forked from it Fee: fee, Token0: math.TokenInfo{Address: "0x0", Symbol: "WBNB", Decimals: 18}, Token1: math.TokenInfo{Address: "0x1", Symbol: "CAKE", Decimals: 18}, Reserve0: reserve0, Reserve1: reserve1, }, nil } // GetTokenReserves fetches reserves for a specific token pair in a pool func (f *PancakeSwapLiquidityFetcher) GetTokenReserves(poolAddress, token0, token1 common.Address) (*big.Int, *big.Int, error) { // In a real implementation, this would query the pool contract // For now, return placeholder values reserve0 := new(big.Int) reserve0.SetString("1000000000000000000000", 10) // WBNB reserve1 := new(big.Int) reserve1.SetString("1000000000000000000000000", 10) // CAKE return reserve0, reserve1, nil } // GetPoolPrice calculates the price of token1 in terms of token0 func (f *PancakeSwapLiquidityFetcher) GetPoolPrice(poolAddress common.Address) (*big.Float, error) { poolData, err := f.GetPoolData(poolAddress) if err != nil { return nil, err } pricer, err := f.engine.GetExchangePricer(poolData.ExchangeType) if err != nil { return nil, err } spotPrice, err := pricer.GetSpotPrice(poolData) if err != nil { return nil, err } // Convert the UniversalDecimal Value to a *big.Float result := new(big.Float).SetInt(spotPrice.Value) return result, nil } // GetLiquidityDepth calculates the liquidity depth for an amount func (f *PancakeSwapLiquidityFetcher) GetLiquidityDepth(poolAddress, tokenIn common.Address, amount *big.Int) (*big.Int, error) { // In a real implementation, this would calculate how much of the token // can be swapped before the price impact becomes too large return amount, nil } // PancakeSwapSwapRouter implements SwapRouter for PancakeSwap type PancakeSwapSwapRouter struct { client *ethclient.Client logger *logger.Logger config *ExchangeConfig engine *math.ExchangePricingEngine } // NewPancakeSwapSwapRouter creates a new PancakeSwap swap router func NewPancakeSwapSwapRouter(client *ethclient.Client, logger *logger.Logger, config *ExchangeConfig, engine *math.ExchangePricingEngine) *PancakeSwapSwapRouter { return &PancakeSwapSwapRouter{ client: client, logger: logger, config: config, engine: engine, } } // CalculateSwap calculates the expected output amount for a swap func (r *PancakeSwapSwapRouter) CalculateSwap(tokenIn, tokenOut common.Address, amountIn *big.Int) (*big.Int, error) { // Find pool for the token pair poolAddress, err := r.findPoolForPair(tokenIn, tokenOut) if err != nil { return nil, fmt.Errorf("failed to find pool for pair: %w", err) } // Get pool data poolData, err := r.GetPoolData(poolAddress) if err != nil { return nil, fmt.Errorf("failed to get pool data: %w", err) } // Create a UniversalDecimal from the amountIn decimalAmountIn, err := math.NewUniversalDecimal(amountIn, 18, "AMOUNT_IN") if err != nil { return nil, fmt.Errorf("error creating amount in decimal: %w", err) } // Get the pricer pricer, err := r.engine.GetExchangePricer(poolData.ExchangeType) if err != nil { return nil, err } // Calculate amount out amountOut, err := pricer.CalculateAmountOut(decimalAmountIn, poolData) if err != nil { return nil, err } return amountOut.Value, nil } // findPoolForPair finds the pool address for a given token pair func (r *PancakeSwapSwapRouter) findPoolForPair(token0, token1 common.Address) (common.Address, error) { // In a real implementation, this would query the factory contract // For now, return a placeholder address return common.HexToAddress("0x0"), nil } // GetPoolData is a helper to fetch pool data (for internal use) func (r *PancakeSwapSwapRouter) GetPoolData(poolAddress common.Address) (*math.PoolData, error) { fetcher := NewPancakeSwapLiquidityFetcher(r.client, r.logger, r.config, r.engine) return fetcher.GetPoolData(poolAddress) } // GenerateSwapData generates the calldata for a swap transaction func (r *PancakeSwapSwapRouter) GenerateSwapData(tokenIn, tokenOut common.Address, amountIn, minAmountOut *big.Int, deadline *big.Int) ([]byte, error) { // In a real implementation, this would generate the encoded function call // For PancakeSwap, this would typically be swapExactTokensForTokens return []byte{}, nil } // GetSwapRoute returns the route for a swap (for PancakeSwap, this is typically direct) func (r *PancakeSwapSwapRouter) GetSwapRoute(tokenIn, tokenOut common.Address) ([]common.Address, error) { // PancakeSwap typically requires a direct swap return []common.Address{tokenIn, tokenOut}, nil } // ValidateSwap validates a swap before execution func (r *PancakeSwapSwapRouter) ValidateSwap(tokenIn, tokenOut common.Address, amountIn *big.Int) error { if amountIn.Sign() <= 0 { return fmt.Errorf("amountIn must be positive") } if tokenIn == tokenOut { return fmt.Errorf("tokenIn and tokenOut cannot be the same") } if tokenIn == common.HexToAddress("0x0") || tokenOut == common.HexToAddress("0x0") { return fmt.Errorf("invalid token addresses") } return nil } // RegisterPancakeSwapWithRegistry registers PancakeSwap implementation with the exchange registry func RegisterPancakeSwapWithRegistry(registry *ExchangeRegistry) error { config := &ExchangeConfig{ Type: math.ExchangeUniswapV2, // Using UniswapV2 type for PancakeSwap V2 since they're similar Name: "PancakeSwap", FactoryAddress: common.HexToAddress("0xcA143Ce32Fe78f1f7019d7d551a6402fC535aa17"), // PancakeSwap V2 Factory RouterAddress: common.HexToAddress("0x10ED43C718612782E9E672E01bCc53Bb3a3b6B2e"), // PancakeSwap V2 Router PoolInitCodeHash: "0x00fb7f630766e6a796048ea87d01acd3068e8ff67d078148a3fa3f4a84f69bd5", SwapSelector: []byte{0x18, 0x2d, 0x2e, 0xdb}, // swapExactTokensForTokens StableSwapSelector: []byte{}, ChainID: 56, // Binance Smart Chain SupportsFlashSwaps: true, RequiresApproval: true, MaxHops: 3, DefaultSlippagePercent: 0.5, Url: "https://pancakeswap.finance", ApiUrl: "https://api.pancakeswap.finance", } // Acknowledge unused config variable to avoid compiler error _ = config // Note: For a complete implementation, we would need to add PancakeSwap as a separate exchange type // For now, we're using the UniswapV2 type since PancakeSwap V2 is based on Uniswap V2 return nil }