H4 – Rundungs-Dust-Reject-Schleife: - SellLogic.RoundToTick (0.001, AwayFromZero, wie CalculateExactOrderAmounts). Die Leiter platziert Preise gerundet -> usdc = size × Preis geht exakt auf (kein Dust). - ProcessLadderAsync bricht ab, wenn pos.Size < MinShares (Dust-Rest gehalten, ExitPending=false), statt endlos Sub-Minimum-Orders zu schicken. M1 – GlobalPnl-Doppelzaehlung: in beiden Live-Close-Bloecken jetzt NUR innerhalb des _processedClosures-Dedup-Guards gebucht (API-Lag zaehlte sonst doppelt). M2 – TokenId in beiden Live-Close-Records gesetzt (sonst greift die Dedup nach Neustart nicht). M3 (Minimum) – TradeId-Init: serverseitiges GetMaxTradeId() statt Full-Table-Find(_=>true).Max(); Fehlschlag wird laut geloggt statt still geschluckt. (Autoincrement-Migration bewusst als Follow-up aufgeschoben – Schema-Aenderung an der Trade-Persistenz erst im Zielland live verifizieren.) M4 – MongoExportParser ProfitTarget-Default 50 -> 9999 (Take-Profit bleibt dormant). M6 – Fee-Satz (real oder Kategorie-Fallback, FeeModel.ResolveBps) in alle signierten Orders: Engine-BUY, SELL-Leiter (Start/Step/Floor), PreRedeem (WSS + REST). API-gated, im Zielland verifizieren. Doku – stale [Description]: ProfitTarget/SellFloorPct als IMPLEMENTIERT markiert. Tests: +10 (RoundToTick, Dust-Abbruch, ResolveBps). Build 0 Fehler, 233 gruen, --smoke-ui ok. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
204 lines
7.0 KiB
C#
204 lines
7.0 KiB
C#
using PolyTrader.Modules.CopyTrading.Logic;
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using Xunit;
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using static PolyTrader.Modules.CopyTrading.Logic.SellLogic;
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namespace PolyTrader.Tests
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{
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/// <summary>
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/// Sicherheitsnetz für die SELL-Logik: Proportionalität (aktuelles Verhalten, Phase-2-Umbau)
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/// und die Eskalationsleiter (Phase 0.1 – Preis-Stufen, Floor-Clamping).
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/// </summary>
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public class SellLogicTests
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{
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// ---------------- SellProportion ----------------
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[Fact]
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public void SellProportion_is_share_over_total_before_sell()
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{
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// Master hält noch 300, verkauft 200 -> 200/500 = 0.40
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Assert.Equal(0.40m, SellProportion(masterSharesRemaining: 300m, signalSize: 200m));
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}
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[Fact]
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public void SellProportion_small_partial_is_below_threshold()
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{
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// 498 Rest, 2 verkauft -> 0.004 < 0.30
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var ratio = SellProportion(498m, 2m);
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Assert.True(ratio < MinSignificantSellRatio);
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}
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[Fact]
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public void SellProportion_full_exit_is_one()
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{
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Assert.Equal(1.0m, SellProportion(0m, 10m));
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}
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[Theory]
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[InlineData(0, 0)] // gar nichts
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[InlineData(-5, 5)] // Denominator 0
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[InlineData(-10, 5)] // Denominator negativ
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public void SellProportion_guards_non_positive_denominator(double remaining, double signal)
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{
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Assert.Equal(0m, SellProportion((decimal)remaining, (decimal)signal));
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}
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// ---------------- Eskalationsleiter ----------------
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[Fact]
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public void FirstLimit_normal_trader_applies_percentage_discount()
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{
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// 0.99 * (1 - 2%) = 0.9702
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Assert.Equal(0.9702m, FirstLimit(0.99m, isHf: false, maxPriceDifferencePct: 2m));
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}
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[Fact]
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public void FirstLimit_hf_trader_applies_fixed_half_cent_discount()
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{
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Assert.Equal(0.985m, FirstLimit(0.99m, isHf: true, maxPriceDifferencePct: 99m));
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}
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[Fact]
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public void Floor_is_reference_minus_floor_pct()
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{
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// 0.99 * (1 - 15%) = 0.8415
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Assert.Equal(0.8415m, Floor(0.99m, 15m));
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}
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[Fact]
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public void NextPrice_steps_down_relative_when_above_floor()
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{
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// 0.90 * (1 - 3%) = 0.873, über Floor 0.80
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Assert.Equal(0.873m, NextPrice(0.90m, stepPct: 3m, floor: 0.80m));
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}
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[Fact]
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public void NextPrice_clamps_to_floor()
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{
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// 0.82 * 0.97 = 0.7954 -> unter Floor -> 0.80
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Assert.Equal(0.80m, NextPrice(0.82m, 3m, 0.80m));
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}
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[Fact]
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public void IsAtFloor_is_inclusive()
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{
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Assert.True(IsAtFloor(0.80m, 0.80m));
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Assert.True(IsAtFloor(0.79m, 0.80m));
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Assert.False(IsAtFloor(0.81m, 0.80m));
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}
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[Theory]
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[InlineData(true, 20)] // HF-Trader: schnelles Nachpreisen
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[InlineData(false, 120)] // Standard
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public void LadderIntervalSeconds_hf_is_faster(bool isHf, int expected)
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{
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Assert.Equal(expected, LadderIntervalSeconds(isHf));
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}
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[Theory]
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[InlineData(0.50, 0.55, 10, true)] // genau an der Schwelle (entry*1.10)
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[InlineData(0.50, 0.60, 10, true)] // darüber
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[InlineData(0.50, 0.54, 10, false)] // darunter
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[InlineData(0.50, 0.99, 9999, false)] // Default 9999 -> nie erreicht (inaktiv)
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[InlineData(0.50, 0.99, 0, false)] // 0 -> deaktiviert
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public void IsProfitTargetReached_threshold(double entry, double current, double pct, bool expected)
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{
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Assert.Equal(expected, IsProfitTargetReached((decimal)current, (decimal)entry, (decimal)pct));
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}
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[Fact]
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public void IsProfitTargetReached_zero_entry_is_false()
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{
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Assert.False(IsProfitTargetReached(0.9m, 0m, 10m));
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}
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// ---------------- SharesToSell (Phase 2) ----------------
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[Fact]
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public void SharesToSell_mirrors_partial_ratio()
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{
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// 40 % von 100, Rest 60 -> Teilverkauf 40
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Assert.Equal(40m, SharesToSell(ourShares: 100m, sellRatio: 0.40m, minShares: 5.5m, minSellRatioPct: 10m));
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}
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[Fact]
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public void SharesToSell_ignores_noise_below_min_ratio()
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{
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Assert.Equal(0m, SharesToSell(100m, 0.05m, 5.5m, 10m));
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}
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[Fact]
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public void SharesToSell_full_exit_when_master_fully_out()
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{
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Assert.Equal(100m, SharesToSell(100m, 1.0m, 5.5m, 10m));
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}
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[Fact]
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public void SharesToSell_full_exit_when_partial_would_be_dust()
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{
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// 30 % von 10 = 3 Shares < Minimum -> Voll-Exit
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Assert.Equal(10m, SharesToSell(10m, 0.30m, 5.5m, 10m));
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}
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[Fact]
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public void SharesToSell_full_exit_when_remainder_would_be_dust()
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{
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// 98 % von 100 -> Rest 2 < Minimum -> Voll-Exit
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Assert.Equal(100m, SharesToSell(100m, 0.98m, 5.5m, 10m));
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}
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[Fact]
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public void SharesToSell_zero_position_is_zero()
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{
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Assert.Equal(0m, SharesToSell(0m, 0.5m, 5.5m, 10m));
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}
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[Fact]
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public void SharesToSell_exactly_at_min_ratio_is_not_ignored()
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{
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Assert.Equal(10m, SharesToSell(100m, 0.10m, 5.5m, 10m));
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}
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[Fact]
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public void Ladder_walks_down_in_steps_until_floor()
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{
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// Simuliert den Service: von Startlimit in 3%-Schritten bis zum Floor, dann Stopp.
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decimal reference = 0.99m;
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decimal price = FirstLimit(reference, isHf: false, maxPriceDifferencePct: 2m); // 0.9702
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decimal floor = Floor(reference, 15m); // 0.8415
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int steps = 0;
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while (!IsAtFloor(price, floor) && steps < 100)
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{
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price = NextPrice(price, LadderStepPct, floor);
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steps++;
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}
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Assert.True(IsAtFloor(price, floor));
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Assert.Equal(floor, price); // endet exakt auf dem Floor (geclamped)
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Assert.InRange(steps, 1, 20); // terminiert in wenigen Schritten
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}
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// ----- RoundToTick (H4) -----
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[Theory]
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[InlineData(0.9702, 0.970)] // typischer Startlimit-Wert -> 3 Dezimalen
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[InlineData(0.84150, 0.842)] // AwayFromZero an der Hälfte
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[InlineData(0.5, 0.500)]
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[InlineData(0.123456, 0.123)]
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public void RoundToTick_rounds_to_three_decimals(double input, double expected)
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{
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Assert.Equal((decimal)expected, RoundToTick((decimal)input));
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}
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[Fact]
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public void RoundToTick_makes_usdc_over_price_yield_exact_size()
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{
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// Kern von H4: mit gerundetem Preis geht size = usdc / price exakt auf.
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decimal size = 100m;
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decimal price = RoundToTick(NextPrice(0.9702m, LadderStepPct, 0.80m));
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decimal usdc = size * price;
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Assert.Equal(size, usdc / price);
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}
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}
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}
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