using PolyTrader.Modules.CopyTrading.Logic; using Xunit; using static PolyTrader.Modules.CopyTrading.Logic.DemoModel; namespace PolyTrader.Tests { /// /// Sicherheitsnetz für den realistischeren Demo-Modus (Phase 4.2): Exit-Slippage + Fees. /// public class DemoModelTests { [Fact] public void ExitFillPrice_is_below_signal_by_half_spread() { Assert.Equal(0.495m, ExitFillPrice(0.50m, 0.005m)); } [Theory] [InlineData(0.011, 0.005, 0.01)] // Clamp Untergrenze [InlineData(0.20, 0.30, 0.01)] // stark negativ -> Untergrenze [InlineData(0.90, 0.005, 0.895)] // normal im Band [InlineData(0.999, 0.005, 0.99)] // Clamp Obergrenze (0.994 -> 0.99) public void ExitFillPrice_clamps_to_valid_range(double signal, double half, double expected) { Assert.Equal((decimal)expected, ExitFillPrice((decimal)signal, (decimal)half)); } [Fact] public void CloseWithFees_subtracts_slippage_and_roundtrip_fee() { // size 100, signal 0.60 -> exit 0.595, exitUsd 59.5 // fees = 1% von 50 (Entry) + 1% von 59.5 (Exit) = 0.5 + 0.595 = 1.095 // pnl = 59.5 - 50 - 1.095 = 8.405 var (exitUsd, pnl, fees) = CloseWithFees(size: 100m, signalPrice: 0.60m, entryAmountUsd: 50m, feeBps: 100, halfSpread: 0.005m); Assert.Equal(59.5m, exitUsd); Assert.Equal(1.095m, fees); Assert.Equal(8.405m, pnl); } [Fact] public void CloseWithFees_zero_fee_only_slippage() { var (exitUsd, pnl, fees) = CloseWithFees(100m, 0.60m, 50m, feeBps: 0, halfSpread: 0.005m); Assert.Equal(0m, fees); Assert.Equal(exitUsd - 50m, pnl); } } }