923 lines
41 KiB
C#
923 lines
41 KiB
C#
using System;
|
|
using System.Collections.Generic;
|
|
using System.Linq;
|
|
using System.Threading;
|
|
using System.Threading.Tasks;
|
|
using FinlyticCore.Dtos;
|
|
using FinlyticCore.Dtos.Fundamentals;
|
|
using FinlyticCore.Dtos.Sentiment;
|
|
using FinlyticCore.Dtos.TechnicalAnalysis;
|
|
using FinlyticCore.Dtos.Trading;
|
|
using FinlyticCore.Services;
|
|
using FinlyticCore.Util;
|
|
using FinlyticEngine.Database;
|
|
using FinlyticEngine.Database.Entities;
|
|
using FinlyticEngine.Services.Ai;
|
|
using FinlyticEngine.Services.Derivatives;
|
|
using FinlyticEngine.Services.Mqtt;
|
|
using FinlyticEngine.Services.Scoring;
|
|
using FinlyticEngine.Settings;
|
|
using Microsoft.EntityFrameworkCore;
|
|
using Microsoft.Extensions.DependencyInjection;
|
|
|
|
namespace FinlyticEngine.Services.Trading;
|
|
|
|
public class TradeLifecycleService : ITradeLifecycleService
|
|
{
|
|
private readonly IServiceScopeFactory _scopeFactory;
|
|
private readonly ICompositeOpportunityScorer _scorer;
|
|
private readonly IAiReasoningGateService _aiGate;
|
|
private readonly IKnockOutDerivativeResolver _derivativeResolver;
|
|
private readonly IEngineRpcClient _rpcClient;
|
|
private readonly ISettingsService _settingsService;
|
|
private readonly IFinlyticLogger<TradeLifecycleService> _logger;
|
|
|
|
public TradeLifecycleService(
|
|
IServiceScopeFactory scopeFactory,
|
|
ICompositeOpportunityScorer scorer,
|
|
IAiReasoningGateService aiGate,
|
|
IKnockOutDerivativeResolver derivativeResolver,
|
|
IEngineRpcClient rpcClient,
|
|
ISettingsService settingsService,
|
|
IFinlyticLogger<TradeLifecycleService> logger)
|
|
{
|
|
_scopeFactory = scopeFactory;
|
|
_scorer = scorer;
|
|
_aiGate = aiGate;
|
|
_derivativeResolver = derivativeResolver;
|
|
_rpcClient = rpcClient;
|
|
_settingsService = settingsService;
|
|
_logger = logger;
|
|
}
|
|
|
|
public async Task<List<TradeProposalDto>> GetProposalsAsync(bool onlyActive = true, int limit = 50, CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var query = db.TradeProposals.AsNoTracking();
|
|
if (onlyActive)
|
|
{
|
|
var now = DateTime.UtcNow;
|
|
query = query.Where(p => p.IsActive && p.ExpiresAtUtc > now);
|
|
}
|
|
|
|
var list = await query
|
|
.OrderByDescending(p => p.CompositeScore)
|
|
.Take(limit)
|
|
.ToListAsync(cancellationToken);
|
|
|
|
return list.Select(MapProposalEntityToDto).ToList();
|
|
}
|
|
|
|
public async Task<List<ActiveTradeDto>> GetActiveTradesAsync(Guid userId, ExecutionMode? mode = null, CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
// Tenant boundary: applied before any other predicate so another user's rows are never materialised.
|
|
var query = db.Trades
|
|
.Include(t => t.Fills)
|
|
.AsNoTracking()
|
|
.Where(t => t.UserId == userId)
|
|
.Where(t => t.Status != TradeStatus.Closed && t.Status != TradeStatus.StoppedOut && t.Status != TradeStatus.Invalidated && t.Status != TradeStatus.Expired);
|
|
|
|
if (mode.HasValue)
|
|
{
|
|
query = query.Where(t => t.ExecutionMode == mode.Value);
|
|
}
|
|
|
|
var list = await query
|
|
.OrderByDescending(t => t.OpenedAtUtc)
|
|
.ToListAsync(cancellationToken);
|
|
|
|
return list.Select(MapTradeEntityToDto).ToList();
|
|
}
|
|
|
|
/// <summary>
|
|
/// Builds an honest "nothing to evaluate" <see cref="AssetEvaluationResultDto"/> for the cases where the
|
|
/// pipeline could not even produce a real score (blank ISIN, or no technical setups found). All score
|
|
/// fields are <c>0</c>/<c>null</c> rather than fabricated, and <paramref name="reason"/> is prefixed with
|
|
/// the same "<c>[Regelbasiert]</c>" marker <see cref="AiValidationResultDto"/> uses for its
|
|
/// <see cref="ValidationSource.RuleBased"/> fallback, so a caller/UI never mistakes this for a real AI
|
|
/// verdict (Rules.md §4).
|
|
/// </summary>
|
|
private static AssetEvaluationResultDto BuildNoEvaluationResult(string reason)
|
|
{
|
|
return new AssetEvaluationResultDto(
|
|
Proposal: null,
|
|
CompositeScore: 0m,
|
|
TechnicalScore: 0m,
|
|
SentimentScore: 0m,
|
|
FundamentalScore: 0m,
|
|
PassedEarningsLockout: true,
|
|
DaysToNextEarnings: null,
|
|
PassedDividendGate: true,
|
|
DaysToNextExDividend: null,
|
|
AiApproved: false,
|
|
AiThesisSummary: $"[Regelbasiert] {reason}",
|
|
AiIdentifiedRisks: new List<string>()
|
|
);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Persists an <see cref="EngineEvaluationSnapshotEntity"/> row for the two early-return cases in
|
|
/// <see cref="EvaluateAssetAsync"/> (blank ISIN, no technical setups) and returns the same
|
|
/// <see cref="BuildNoEvaluationResult"/> DTO the caller would have received before these rows existed.
|
|
/// All score fields are recorded as <c>0</c>/default - identical to <see cref="BuildNoEvaluationResult"/>'s
|
|
/// own honesty guarantee - since the pipeline never reached scoring for these two cases (Rules.md §4).
|
|
/// </summary>
|
|
/// <param name="isinForRecord">The (possibly blank) ISIN to record on the snapshot row.</param>
|
|
/// <param name="reason">Human-readable reason, reused verbatim from <see cref="BuildNoEvaluationResult"/>.</param>
|
|
/// <param name="triggerSource">Whether this evaluation was automatic or manual.</param>
|
|
/// <param name="triggeredByUserId">The manual caller's identity, or <see langword="null"/> for automatic runs.</param>
|
|
/// <param name="cancellationToken">Propagated to the snapshot insert.</param>
|
|
private async Task<AssetEvaluationResultDto> PersistNoEvaluationSnapshotAsync(
|
|
string isinForRecord,
|
|
string reason,
|
|
TriggerSource triggerSource,
|
|
Guid? triggeredByUserId,
|
|
CancellationToken cancellationToken)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
db.Snapshots.Add(new EngineEvaluationSnapshotEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
Isin = isinForRecord,
|
|
Symbol = string.Empty,
|
|
TechnicalScore = 0m,
|
|
SentimentScore = 0m,
|
|
FundamentalScore = 0m,
|
|
CompositeOpportunityScore = 0m,
|
|
ReliabilityBonus = 0m,
|
|
PassedEarningsLockout = true,
|
|
DaysToNextEarnings = null,
|
|
PassedDividendGate = true,
|
|
DaysToNextExDividend = null,
|
|
UniverseSource = null,
|
|
UniverseEnteredAtUtc = null,
|
|
PassedSimulationVeto = true,
|
|
PassedAiValidation = false,
|
|
AiThesisSummary = $"[Regelbasiert] {reason}",
|
|
TriggerSource = triggerSource,
|
|
TriggeredByUserId = triggerSource == TriggerSource.Manual ? triggeredByUserId : null,
|
|
OutcomeReason = OutcomeReason.NoTechnicalSetups,
|
|
ProposalId = null,
|
|
EvaluatedAtUtc = DateTime.UtcNow
|
|
});
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
return BuildNoEvaluationResult(reason);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Derives which <see cref="OutcomeReason"/> best explains a completed evaluation (i.e. one that reached
|
|
/// scoring - the earlier "no technical setup" case always short-circuits to
|
|
/// <see cref="OutcomeReason.NoTechnicalSetups"/> and never reaches this method). Note that a result of
|
|
/// <see cref="OutcomeReason.Approved"/> from this method is provisional: <see cref="EvaluateAssetAsync"/>
|
|
/// downgrades it to <see cref="OutcomeReason.DuplicateActiveProposal"/> immediately afterwards if an
|
|
/// active, non-expired proposal already exists for the same ISIN, since no second proposal row is created
|
|
/// in that case.
|
|
/// <para>
|
|
/// Priority order when more than one gate failed simultaneously (first match wins):
|
|
/// </para>
|
|
/// <list type="number">
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.Approved"/> - the AI reasoning gate approved the opportunity.
|
|
/// </description></item>
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.EarningsLockout"/> - <paramref name="passedEarningsLockout"/> is
|
|
/// <see langword="false"/>. Checked before the score threshold even though the score gate is evaluated
|
|
/// later in the pipeline, because the lockout's suppression multiplier
|
|
/// (<c>CompositeOpportunityScorer</c>'s <c>mEarnings = 0.15</c>) is usually *why* the score ended up below
|
|
/// threshold in the first place - reporting only "score too low" would hide the actual, actionable cause.
|
|
/// </description></item>
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.SimulationVeto"/> - <paramref name="passedSimulationVeto"/> is
|
|
/// <see langword="false"/>, for the same reason as the lockout case above (its own suppression multiplier,
|
|
/// <c>mVeto = 0.20</c>, likewise drives the score down).
|
|
/// </description></item>
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.DividendGate"/> - <paramref name="passedDividendGate"/> is
|
|
/// <see langword="false"/>. Checked last among the three suppression gates since it is the mildest
|
|
/// (<c>mDividend = 0.5</c> vs. earnings' 0.15 and the simulation veto's 0.20) - a predictable, mechanical
|
|
/// ex-dividend price adjustment rather than a fundamental surprise or a failed backtest.
|
|
/// </description></item>
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.BelowScoreThreshold"/> - none of the three hard gates above fired, but
|
|
/// <paramref name="scoreGateOpened"/> is <see langword="false"/>, meaning the composite score never reached
|
|
/// <c>Engine.MinCompositeScore</c> and the evaluation was not forced, so the AI reasoning gate was never
|
|
/// even consulted (a synthetic rule-based rejection was recorded instead).
|
|
/// </description></item>
|
|
/// <item><description>
|
|
/// <see cref="OutcomeReason.AiRejected"/> - everything upstream cleared (<paramref name="scoreGateOpened"/>
|
|
/// is <see langword="true"/>, both hard gates passed) but the AI reasoning gate itself - whether a real AI
|
|
/// call or one of its own internal rule-based fallbacks (gate disabled, webhook unreachable) - still
|
|
/// declined. This is deliberately the last, most specific fallback: everything else has already been
|
|
/// ruled out by the time this is reached.
|
|
/// </description></item>
|
|
/// </list>
|
|
/// </summary>
|
|
/// <param name="aiApproved"><c>AiValidationResultDto.IsApproved</c> from the (possibly rule-based) AI gate result.</param>
|
|
/// <param name="passedEarningsLockout"><c>ScoringResult.PassedEarningsLockout</c>.</param>
|
|
/// <param name="passedSimulationVeto"><c>ScoringResult.PassedSimulationVeto</c>.</param>
|
|
/// <param name="scoreGateOpened">
|
|
/// Whether the composite score cleared <c>Engine.MinCompositeScore</c> or the evaluation was forced - i.e.
|
|
/// the exact condition under which the AI reasoning gate was actually consulted rather than synthetically
|
|
/// rejected.
|
|
/// </param>
|
|
/// <returns>The single best-matching <see cref="OutcomeReason"/> for this evaluation.</returns>
|
|
private static OutcomeReason DetermineOutcomeReason(
|
|
bool aiApproved,
|
|
bool passedEarningsLockout,
|
|
bool passedSimulationVeto,
|
|
bool passedDividendGate,
|
|
bool scoreGateOpened)
|
|
{
|
|
if (aiApproved) return OutcomeReason.Approved;
|
|
if (!passedEarningsLockout) return OutcomeReason.EarningsLockout;
|
|
if (!passedSimulationVeto) return OutcomeReason.SimulationVeto;
|
|
if (!passedDividendGate) return OutcomeReason.DividendGate;
|
|
if (!scoreGateOpened) return OutcomeReason.BelowScoreThreshold;
|
|
return OutcomeReason.AiRejected;
|
|
}
|
|
|
|
/// <inheritdoc />
|
|
public async Task<AssetEvaluationResultDto> EvaluateAssetAsync(
|
|
string isin,
|
|
string? ticker = null,
|
|
bool forceAiEvaluation = false,
|
|
TriggerSource triggerSource = TriggerSource.Automatic,
|
|
Guid? triggeredByUserId = null,
|
|
CancellationToken cancellationToken = default)
|
|
{
|
|
// Automatic runs never carry a user identity, enforced here regardless of what a caller passed in, so
|
|
// a programming mistake upstream can never leak a stale/wrong UserId onto an automatic snapshot row.
|
|
var effectiveTriggeredByUserId = triggerSource == TriggerSource.Manual ? triggeredByUserId : null;
|
|
|
|
if (string.IsNullOrWhiteSpace(isin))
|
|
{
|
|
return await PersistNoEvaluationSnapshotAsync(
|
|
string.Empty, "Keine gültige ISIN angegeben.", triggerSource, effectiveTriggeredByUserId, cancellationToken);
|
|
}
|
|
var cleanIsin = isin.Trim().ToUpperInvariant();
|
|
|
|
await _logger.LogInfoAsync(EngineSettingKeys.EngineChannel,
|
|
"[TradeLifecycle] Starting on-demand evaluation for ISIN {Isin} (Ticker: {Ticker})", cleanIsin, ticker ?? "N/A");
|
|
|
|
|
|
// 1. Fetch Technical Analysis Setups from FinlyticTechnicals
|
|
var taSetups = await _rpcClient.SendRpcRequestAsync<List<StrategyResultDto>, IsinRequest>(
|
|
MqttTopics.Channels.TaGetSetupsForIsin,
|
|
new IsinRequest(cleanIsin, ticker, ForceRefresh: false),
|
|
TimeSpan.FromSeconds(5)
|
|
);
|
|
|
|
if (taSetups == null || taSetups.Count == 0)
|
|
{
|
|
await _logger.LogWarningAsync(EngineSettingKeys.EngineChannel,
|
|
"[TradeLifecycle] No technical setups returned for {Isin}", cleanIsin);
|
|
return await PersistNoEvaluationSnapshotAsync(
|
|
cleanIsin, $"Keine technischen Setups für {cleanIsin} verfügbar.", triggerSource, effectiveTriggeredByUserId, cancellationToken);
|
|
}
|
|
|
|
// Pick top technical setup
|
|
var bestSetup = taSetups.OrderByDescending(s => s.QualityScore).First();
|
|
|
|
// 2. Parallel Fetch: Sentiment, Fundamentals & Simulation Matrix
|
|
var sentTask = _rpcClient.SendRpcRequestAsync<IsinSentimentSummaryDto, GetSentimentByIsinRequest>(
|
|
MqttTopics.Channels.SentimentGetIsin,
|
|
new GetSentimentByIsinRequest(cleanIsin),
|
|
TimeSpan.FromSeconds(3)
|
|
);
|
|
|
|
var fundTask = _rpcClient.SendRpcRequestAsync<AssetFundamentalsDto, IsinRequest>(
|
|
MqttTopics.Channels.FundamentalsGet,
|
|
new IsinRequest(cleanIsin, ticker, ForceRefresh: false),
|
|
TimeSpan.FromSeconds(4)
|
|
);
|
|
|
|
var matrixTask = _rpcClient.SendRpcRequestAsync<FinlyticCore.Dtos.Simulation.StrategyAssetReliabilityDto, FinlyticCore.Dtos.Simulation.GetReliabilityRequest>(
|
|
MqttTopics.Channels.SimGetReliability,
|
|
new FinlyticCore.Dtos.Simulation.GetReliabilityRequest(cleanIsin, bestSetup.StrategyKey),
|
|
TimeSpan.FromSeconds(3)
|
|
);
|
|
|
|
await Task.WhenAll(sentTask, fundTask, matrixTask);
|
|
|
|
var sentiment = await sentTask;
|
|
var fundamentals = await fundTask;
|
|
var reliability = await matrixTask;
|
|
|
|
// 3. Multi-Faktor Composite Opportunity Scoring (COS) with Simulation Feedback
|
|
var scoringResult = await _scorer.CalculateCompositeScoreAsync(bestSetup, sentiment, fundamentals, reliability, cancellationToken);
|
|
var minScore = await _settingsService.GetSettingAsync(EngineSettingKeys.MinCompositeScore, cancellationToken);
|
|
|
|
|
|
// 4. AI Reasoning Gate
|
|
// Captured explicitly (rather than re-evaluating the same expression later) because
|
|
// DetermineOutcomeReason needs to know precisely whether the AI gate was ever consulted, to tell
|
|
// apart OutcomeReason.BelowScoreThreshold (never consulted) from OutcomeReason.AiRejected (consulted,
|
|
// declined) below.
|
|
bool scoreGateOpened = scoringResult.CompositeScore >= minScore || forceAiEvaluation;
|
|
|
|
AiValidationResultDto aiValidation;
|
|
if (scoreGateOpened)
|
|
{
|
|
aiValidation = await _aiGate.ValidateOpportunityAsync(bestSetup, sentiment, fundamentals, scoringResult, reliability, cancellationToken);
|
|
}
|
|
else
|
|
{
|
|
aiValidation = new AiValidationResultDto(
|
|
IsApproved: false,
|
|
Confidence: null,
|
|
Source: ValidationSource.RuleBased,
|
|
ThesisSummary: $"[Regelbasiert] Score {scoringResult.CompositeScore:F1} liegt unter Mindestwert ({minScore:F1}).",
|
|
InvalidationReason: "Unzureichende Multi-Faktor Confluence.",
|
|
KeyCatalysts: new List<string>(),
|
|
IdentifiedRisks: new List<string> { "Niedriger Gesamtscore" }
|
|
);
|
|
}
|
|
|
|
// 5. Knock-Out Derivative Selection
|
|
DerivativeSelectionDto? selectedDerivative = null;
|
|
if (aiValidation.IsApproved || forceAiEvaluation)
|
|
{
|
|
selectedDerivative = await _derivativeResolver.ResolveOptimalTurboAsync(
|
|
cleanIsin,
|
|
bestSetup.Direction,
|
|
bestSetup.InvalidationPrice,
|
|
bestSetup.CurrentPrice,
|
|
cancellationToken
|
|
);
|
|
}
|
|
|
|
// 6. Persist Evaluation Snapshot & Proposal
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var outcomeReason = DetermineOutcomeReason(
|
|
aiValidation.IsApproved, scoringResult.PassedEarningsLockout, scoringResult.PassedSimulationVeto,
|
|
scoringResult.PassedDividendGate, scoreGateOpened);
|
|
|
|
var snapshot = new EngineEvaluationSnapshotEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
Isin = cleanIsin,
|
|
Symbol = bestSetup.Symbol,
|
|
TechnicalScore = scoringResult.TechnicalScore,
|
|
SentimentScore = scoringResult.SentimentScore,
|
|
FundamentalScore = scoringResult.FundamentalScore,
|
|
CompositeOpportunityScore = scoringResult.CompositeScore,
|
|
ReliabilityBonus = scoringResult.ReliabilityBonus,
|
|
PassedEarningsLockout = scoringResult.PassedEarningsLockout,
|
|
DaysToNextEarnings = scoringResult.DaysToNextEarnings,
|
|
PassedDividendGate = scoringResult.PassedDividendGate,
|
|
DaysToNextExDividend = scoringResult.DaysToNextExDividend,
|
|
UniverseSource = bestSetup.UniverseSource,
|
|
UniverseEnteredAtUtc = bestSetup.UniverseEnteredAtUtc,
|
|
PassedSimulationVeto = scoringResult.PassedSimulationVeto,
|
|
PassedAiValidation = aiValidation.IsApproved,
|
|
AiThesisSummary = aiValidation.ThesisSummary,
|
|
TriggerSource = triggerSource,
|
|
TriggeredByUserId = effectiveTriggeredByUserId,
|
|
OutcomeReason = outcomeReason,
|
|
ProposalId = null,
|
|
EvaluatedAtUtc = DateTime.UtcNow
|
|
};
|
|
db.Snapshots.Add(snapshot);
|
|
|
|
TradeProposalDto? proposalDto = null;
|
|
|
|
if (aiValidation.IsApproved)
|
|
{
|
|
// Dedup guard: OpportunityPollerBackgroundService re-evaluates the same technical top-picks on
|
|
// every scan cycle. Without this check, an asset that stays above the approval threshold for hours
|
|
// gets a brand-new, near-identical EngineTradeProposalEntity - and a fresh
|
|
// finlytic/engine/proposals/created broadcast to every connected client - every single cycle. This
|
|
// was confirmed in production as the root cause of a single ISIN generating 1,310 proposal rows in
|
|
// roughly two hours. An active, non-expired proposal already covering the same UnderlyingIsin means
|
|
// the opportunity is already on offer, so no second row/broadcast is created for it.
|
|
var existingActiveProposal = await db.TradeProposals
|
|
.AsNoTracking()
|
|
.Where(p => p.UnderlyingIsin == cleanIsin && p.IsActive && p.ExpiresAtUtc > DateTime.UtcNow)
|
|
.OrderByDescending(p => p.CreatedAtUtc)
|
|
.FirstOrDefaultAsync(cancellationToken);
|
|
|
|
if (existingActiveProposal != null)
|
|
{
|
|
// The evaluation itself genuinely cleared every gate (PassedAiValidation on this snapshot row
|
|
// stays true), but OutcomeReason records the real business outcome: no new proposal was made.
|
|
outcomeReason = OutcomeReason.DuplicateActiveProposal;
|
|
snapshot.OutcomeReason = outcomeReason;
|
|
snapshot.ProposalId = existingActiveProposal.Id;
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
// A manual "Analyze now" call for an asset that already has an open proposal should still
|
|
// surface that proposal, not falsely report "no proposal" (Rules.md §4).
|
|
proposalDto = MapProposalEntityToDto(existingActiveProposal);
|
|
}
|
|
else
|
|
{
|
|
var proposalValidityHours = await _settingsService.GetSettingAsync(EngineSettingKeys.ProposalValidityHours, cancellationToken);
|
|
|
|
decimal takeProfit1 = bestSetup.ExitPlan.TakeProfitStages.Count > 0
|
|
? bestSetup.ExitPlan.TakeProfitStages[0].TargetPrice
|
|
: (bestSetup.Direction == SignalDirection.Buy ? bestSetup.EntryPrice * 1.05m : bestSetup.EntryPrice * 0.95m);
|
|
|
|
var proposalEntity = new EngineTradeProposalEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
UnderlyingIsin = cleanIsin,
|
|
Symbol = bestSetup.Symbol,
|
|
StrategyKey = bestSetup.StrategyKey,
|
|
Direction = bestSetup.Direction,
|
|
QualityScore = bestSetup.QualityScore,
|
|
CompositeScore = scoringResult.CompositeScore,
|
|
CurrentPrice = bestSetup.CurrentPrice,
|
|
EntryPrice = bestSetup.EntryPrice,
|
|
StopLoss = bestSetup.InvalidationPrice,
|
|
TakeProfit1 = takeProfit1,
|
|
RiskRewardRatio = bestSetup.EstimatedRiskRewardRatio,
|
|
ExitPlan = bestSetup.ExitPlan,
|
|
SelectedDerivative = selectedDerivative,
|
|
AiValidation = aiValidation,
|
|
IsActive = true,
|
|
CreatedAtUtc = DateTime.UtcNow,
|
|
ExpiresAtUtc = DateTime.UtcNow.AddHours(proposalValidityHours)
|
|
};
|
|
|
|
// Link the snapshot row to the proposal it produced (both are still unsaved/tracked here, so
|
|
// this just needs to happen before the single SaveChangesAsync below persists both).
|
|
snapshot.ProposalId = proposalEntity.Id;
|
|
|
|
db.TradeProposals.Add(proposalEntity);
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
proposalDto = MapProposalEntityToDto(proposalEntity);
|
|
|
|
// Broadcast MQTT Push Event for new proposal
|
|
await _rpcClient.PublishAsync("finlytic/engine/proposals/created", proposalDto);
|
|
}
|
|
}
|
|
else
|
|
{
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
}
|
|
|
|
// Whether approved or rejected, the caller always receives the real, already-computed scores and AI
|
|
// reasoning — never bare silence for a rejection (Rules.md §4).
|
|
return new AssetEvaluationResultDto(
|
|
Proposal: proposalDto,
|
|
CompositeScore: scoringResult.CompositeScore,
|
|
TechnicalScore: scoringResult.TechnicalScore,
|
|
SentimentScore: scoringResult.SentimentScore,
|
|
FundamentalScore: scoringResult.FundamentalScore,
|
|
PassedEarningsLockout: scoringResult.PassedEarningsLockout,
|
|
DaysToNextEarnings: scoringResult.DaysToNextEarnings,
|
|
PassedDividendGate: scoringResult.PassedDividendGate,
|
|
DaysToNextExDividend: scoringResult.DaysToNextExDividend,
|
|
AiApproved: aiValidation.IsApproved,
|
|
AiThesisSummary: aiValidation.ThesisSummary,
|
|
AiIdentifiedRisks: aiValidation.IdentifiedRisks
|
|
);
|
|
}
|
|
|
|
public async Task<ActiveTradeDto?> CreateTradeFromProposalAsync(
|
|
Guid userId,
|
|
Guid proposalId,
|
|
ExecutionMode mode,
|
|
decimal? initialFillPrice = null,
|
|
decimal? initialQuantity = null,
|
|
CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
// Only a still-active, non-expired proposal may be accepted. Proposals invalidate themselves purely
|
|
// via ExpiresAtUtc (see EvaluateAssetAsync) — there is no separate "reject" path that deactivates them.
|
|
var now = DateTime.UtcNow;
|
|
var proposal = await db.TradeProposals
|
|
.FirstOrDefaultAsync(p => p.Id == proposalId && p.IsActive && p.ExpiresAtUtc > now, cancellationToken);
|
|
if (proposal == null) return null;
|
|
|
|
// A proposal is a system-wide opportunity, not a per-user resource: it is deliberately NOT consumed or
|
|
// deactivated here so other users may still accept it independently. What must be prevented is the same
|
|
// user accepting the same proposal twice, which would otherwise silently create a second, redundant trade.
|
|
var alreadyAccepted = await db.Trades
|
|
.AnyAsync(t => t.UserId == userId && t.ProposalId == proposalId, cancellationToken);
|
|
if (alreadyAccepted)
|
|
{
|
|
throw new InvalidOperationException(
|
|
$"User {userId} has already accepted proposal {proposalId}; a duplicate trade was not created.");
|
|
}
|
|
|
|
var fillPrice = initialFillPrice ?? proposal.EntryPrice;
|
|
var fillQty = initialQuantity ?? 1m;
|
|
|
|
var trade = new EngineTradeEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
UserId = userId,
|
|
ProposalId = proposal.Id,
|
|
UnderlyingIsin = proposal.UnderlyingIsin,
|
|
Symbol = proposal.Symbol,
|
|
DerivativeIsin = proposal.SelectedDerivative?.DerivativeIsin,
|
|
DerivativeWkn = proposal.SelectedDerivative?.DerivativeWkn,
|
|
ExecutionMode = mode,
|
|
InstrumentType = proposal.SelectedDerivative != null
|
|
? (proposal.Direction == SignalDirection.Buy ? InstrumentCategoryType.TurboLong : InstrumentCategoryType.TurboShort)
|
|
: InstrumentCategoryType.Stock,
|
|
Direction = proposal.Direction,
|
|
Status = TradeStatus.Active,
|
|
AverageBuyIn = fillPrice,
|
|
TotalQuantity = fillQty,
|
|
InitialStopLoss = proposal.StopLoss,
|
|
CurrentStopLoss = proposal.StopLoss,
|
|
CurrentPrice = fillPrice,
|
|
TakeProfit1 = proposal.TakeProfit1,
|
|
TakeProfit2 = proposal.ExitPlan.TakeProfitStages.Count > 1 ? proposal.ExitPlan.TakeProfitStages[1].TargetPrice : proposal.TakeProfit1 * 1.05m,
|
|
ExitPlan = proposal.ExitPlan,
|
|
OpenedAtUtc = DateTime.UtcNow,
|
|
LastUpdatedAtUtc = DateTime.UtcNow
|
|
};
|
|
|
|
var initialFill = new EngineTradeFillEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
TradeId = trade.Id,
|
|
Trade = trade,
|
|
ExecutedAtUtc = DateTime.UtcNow,
|
|
Price = fillPrice,
|
|
Quantity = fillQty,
|
|
Fee = 1.0m,
|
|
Note = "Initial Entry Fill"
|
|
};
|
|
|
|
// trade is a brand-new root here, so db.Trades.Add(trade) cascades Added through the whole graph
|
|
// (including Fills) on its own — the explicit db.TradeFills.Add is redundant but keeps this call site
|
|
// consistent with AddTradeFillAsync, where it is NOT redundant (see the comment there).
|
|
trade.Fills.Add(initialFill);
|
|
db.Trades.Add(trade);
|
|
db.TradeFills.Add(initialFill);
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
var tradeDto = MapTradeEntityToDto(trade);
|
|
await _rpcClient.PublishAsync("finlytic/engine/trades/status_changed", tradeDto);
|
|
|
|
return tradeDto;
|
|
}
|
|
|
|
public async Task<ActiveTradeDto> AcceptProposalAsync(AcceptTradeProposalRequest request, CancellationToken cancellationToken = default)
|
|
{
|
|
// ExecutionMode.ManualTradeRepublic is hardcoded here (rather than taken from the request) because this
|
|
// RPC channel exists specifically for the human-driven Web/App acceptance flow, where a user reviews a
|
|
// proposal in Trade Republic and confirms a manual fill. The autonomous paper-trading bot never calls
|
|
// this endpoint — it executes proposals itself via FinlyticBot, which uses its own dedicated code path
|
|
// instead of AcceptProposalAsync.
|
|
var trade = await CreateTradeFromProposalAsync(
|
|
request.UserId,
|
|
request.ProposalId,
|
|
ExecutionMode.ManualTradeRepublic,
|
|
request.ExecutedPrice,
|
|
request.Quantity,
|
|
cancellationToken);
|
|
|
|
if (trade == null)
|
|
{
|
|
throw new InvalidOperationException(
|
|
$"Proposal {request.ProposalId} does not exist, is no longer active, or has expired.");
|
|
}
|
|
|
|
return trade;
|
|
}
|
|
|
|
public async Task<ActiveTradeDto> CreateManualTradeAsync(CreateManualTradeRequest request, CancellationToken cancellationToken = default)
|
|
{
|
|
if (string.IsNullOrWhiteSpace(request.UnderlyingIsin))
|
|
{
|
|
throw new ArgumentException("UnderlyingIsin must not be blank.", nameof(request));
|
|
}
|
|
|
|
if (string.IsNullOrWhiteSpace(request.Symbol))
|
|
{
|
|
throw new ArgumentException("Symbol must not be blank.", nameof(request));
|
|
}
|
|
|
|
if (request.EntryPrice <= 0m)
|
|
{
|
|
throw new ArgumentException("EntryPrice must be positive.", nameof(request));
|
|
}
|
|
|
|
if (request.Quantity <= 0m)
|
|
{
|
|
throw new ArgumentException("Quantity must be positive.", nameof(request));
|
|
}
|
|
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var takeProfit1 = request.TakeProfit1;
|
|
var takeProfit2 = request.TakeProfit2 ?? takeProfit1;
|
|
|
|
var exitPlan = new ExitPlan(
|
|
StrategyType: ExitStrategyType.FixedSingleTarget,
|
|
InitialStopLoss: request.InitialStopLoss,
|
|
TakeProfitStages: new List<TakeProfitStage>
|
|
{
|
|
new(StageNumber: 1, TargetPrice: takeProfit1, PercentToClose: 100m, RMultiple: 1m, Description: "Manuelles Kursziel (kein Proposal)")
|
|
});
|
|
|
|
var trade = new EngineTradeEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
UserId = request.UserId,
|
|
// No backing proposal: Guid.Empty signals "manually opened" (see doc comment on
|
|
// CreateManualTradeRequest / ITradeLifecycleService.CreateManualTradeAsync).
|
|
ProposalId = Guid.Empty,
|
|
UnderlyingIsin = request.UnderlyingIsin.Trim().ToUpperInvariant(),
|
|
Symbol = request.Symbol,
|
|
DerivativeIsin = request.DerivativeIsin,
|
|
DerivativeWkn = request.DerivativeWkn,
|
|
ExecutionMode = ExecutionMode.ManualTradeRepublic,
|
|
InstrumentType = request.InstrumentType,
|
|
Direction = request.Direction,
|
|
Status = TradeStatus.Active,
|
|
AverageBuyIn = request.EntryPrice,
|
|
TotalQuantity = request.Quantity,
|
|
InitialStopLoss = request.InitialStopLoss,
|
|
CurrentStopLoss = request.InitialStopLoss,
|
|
CurrentPrice = request.EntryPrice,
|
|
TakeProfit1 = takeProfit1,
|
|
TakeProfit2 = takeProfit2,
|
|
TotalFeesEur = request.Fee,
|
|
ExitPlan = exitPlan,
|
|
OpenedAtUtc = DateTime.UtcNow,
|
|
LastUpdatedAtUtc = DateTime.UtcNow
|
|
};
|
|
|
|
var initialFill = new EngineTradeFillEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
TradeId = trade.Id,
|
|
Trade = trade,
|
|
ExecutedAtUtc = DateTime.UtcNow,
|
|
Price = request.EntryPrice,
|
|
Quantity = request.Quantity,
|
|
Fee = request.Fee,
|
|
Note = "Manual Entry (no proposal)"
|
|
};
|
|
|
|
// trade is a brand-new root here, so db.Trades.Add(trade) cascades Added through the whole graph
|
|
// (including Fills) on its own — the explicit db.TradeFills.Add is redundant but keeps this call site
|
|
// consistent with AddTradeFillAsync, where it is NOT redundant (see the comment there).
|
|
trade.Fills.Add(initialFill);
|
|
db.Trades.Add(trade);
|
|
db.TradeFills.Add(initialFill);
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
var dto = MapTradeEntityToDto(trade);
|
|
await _rpcClient.PublishAsync("finlytic/engine/trades/status_changed", dto);
|
|
|
|
return dto;
|
|
}
|
|
|
|
public async Task<ActiveTradeDto> AddTradeFillAsync(
|
|
Guid userId,
|
|
Guid tradeId,
|
|
decimal executedPrice,
|
|
decimal quantity,
|
|
decimal fee = 0m,
|
|
string? note = null,
|
|
CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var trade = await db.Trades
|
|
.Include(t => t.Fills)
|
|
.FirstOrDefaultAsync(t => t.Id == tradeId && t.UserId == userId, cancellationToken);
|
|
|
|
if (trade == null) throw new InvalidOperationException($"Trade with ID {tradeId} not found.");
|
|
|
|
var fill = new EngineTradeFillEntity
|
|
{
|
|
Id = Guid.NewGuid(),
|
|
TradeId = trade.Id,
|
|
Trade = trade,
|
|
ExecutedAtUtc = DateTime.UtcNow,
|
|
Price = executedPrice,
|
|
Quantity = quantity,
|
|
Fee = fee,
|
|
Note = note
|
|
};
|
|
|
|
// Explicitly track the new fill as Added via the DbSet, not just via collection-navigation fixup.
|
|
// A fill's Id is a client-generated Guid (set above), so if this entity only entered the change
|
|
// tracker through `trade.Fills.Add(fill)` on an already-tracked trade, EF Core cannot use "default
|
|
// key value => Added" as its heuristic (the key is never default) and instead discovers the object as
|
|
// Unchanged, then promotes it to Modified once DetectChanges sees its properties differ from nothing —
|
|
// producing an UPDATE for a row that was never inserted (DbUpdateConcurrencyException: 0 rows
|
|
// affected). db.TradeFills.Add(fill) marks it Added unambiguously; trade.Fills.Add(fill) is still
|
|
// needed so the in-memory graph/DTO mapping below sees the new fill.
|
|
db.TradeFills.Add(fill);
|
|
trade.Fills.Add(fill);
|
|
|
|
// Recalculate Dynamic Average Buy-In: Sum(P * Q) / Sum(Q)
|
|
decimal totalValue = trade.Fills.Sum(f => f.Price * f.Quantity);
|
|
decimal totalQty = trade.Fills.Sum(f => f.Quantity);
|
|
|
|
if (totalQty > 0)
|
|
{
|
|
trade.AverageBuyIn = Math.Round(totalValue / totalQty, 4);
|
|
trade.TotalQuantity = totalQty;
|
|
}
|
|
|
|
trade.TotalFeesEur = trade.Fills.Sum(f => f.Fee);
|
|
trade.Status = TradeStatus.Active;
|
|
trade.LastUpdatedAtUtc = DateTime.UtcNow;
|
|
|
|
// Recalculate Dynamic R-Levels & Take-Profits based on new AverageBuyIn
|
|
decimal unitRisk = Math.Abs(trade.AverageBuyIn - trade.InitialStopLoss);
|
|
if (unitRisk > 0)
|
|
{
|
|
if (trade.Direction == SignalDirection.Buy)
|
|
{
|
|
trade.TakeProfit1 = trade.AverageBuyIn + (1.0m * unitRisk);
|
|
trade.TakeProfit2 = trade.AverageBuyIn + (2.0m * unitRisk);
|
|
}
|
|
else
|
|
{
|
|
trade.TakeProfit1 = trade.AverageBuyIn - (1.0m * unitRisk);
|
|
trade.TakeProfit2 = trade.AverageBuyIn - (2.0m * unitRisk);
|
|
}
|
|
}
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
await _logger.LogInfoAsync(EngineSettingKeys.TradeLifecycleChannel,
|
|
"[TradeLifecycle] Fill added to trade {TradeId}: Qty={Qty}, Price={Price:F2}, New AverageBuyIn={BuyIn:F4}, TotalQty={TotalQty}",
|
|
trade.Id, quantity, executedPrice, trade.AverageBuyIn, trade.TotalQuantity);
|
|
|
|
var dto = MapTradeEntityToDto(trade);
|
|
await _rpcClient.PublishAsync("finlytic/engine/trades/status_changed", dto);
|
|
|
|
return dto;
|
|
}
|
|
|
|
public async Task<ActiveTradeDto> UpdateStopLossAsync(
|
|
Guid userId,
|
|
Guid tradeId,
|
|
decimal newStopLoss,
|
|
string reason,
|
|
CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var trade = await db.Trades
|
|
.Include(t => t.Fills)
|
|
.FirstOrDefaultAsync(t => t.Id == tradeId && t.UserId == userId, cancellationToken);
|
|
|
|
if (trade == null) throw new InvalidOperationException($"Trade with ID {tradeId} not found.");
|
|
|
|
decimal oldSl = trade.CurrentStopLoss;
|
|
trade.CurrentStopLoss = newStopLoss;
|
|
trade.LastUpdatedAtUtc = DateTime.UtcNow;
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
await _logger.LogInfoAsync(EngineSettingKeys.TradeLifecycleChannel,
|
|
"[TradeLifecycle] Stop Loss updated for trade {TradeId} from {OldSl:F2} to {NewSl:F2}. Reason: {Reason}",
|
|
trade.Id, oldSl, newStopLoss, reason);
|
|
|
|
var dto = MapTradeEntityToDto(trade);
|
|
await _rpcClient.PublishAsync("finlytic/engine/trades/status_changed", dto);
|
|
|
|
return dto;
|
|
}
|
|
|
|
public async Task<ActiveTradeDto> CloseTradeAsync(
|
|
Guid userId,
|
|
Guid tradeId,
|
|
decimal closePrice,
|
|
string reason,
|
|
CancellationToken cancellationToken = default)
|
|
{
|
|
using var scope = _scopeFactory.CreateScope();
|
|
var db = scope.ServiceProvider.GetRequiredService<EngineDbContext>();
|
|
|
|
var trade = await db.Trades
|
|
.Include(t => t.Fills)
|
|
.FirstOrDefaultAsync(t => t.Id == tradeId && t.UserId == userId, cancellationToken);
|
|
|
|
if (trade == null) throw new InvalidOperationException($"Trade with ID {tradeId} not found.");
|
|
|
|
trade.Status = TradeStatus.Closed;
|
|
trade.ClosedAtUtc = DateTime.UtcNow;
|
|
trade.CurrentPrice = closePrice;
|
|
trade.LastUpdatedAtUtc = DateTime.UtcNow;
|
|
|
|
// Realized PnL Calculation
|
|
if (trade.Direction == SignalDirection.Buy)
|
|
{
|
|
trade.RealizedPnlEur = ((closePrice - trade.AverageBuyIn) * trade.TotalQuantity) - trade.TotalFeesEur;
|
|
}
|
|
else
|
|
{
|
|
trade.RealizedPnlEur = ((trade.AverageBuyIn - closePrice) * trade.TotalQuantity) - trade.TotalFeesEur;
|
|
}
|
|
|
|
await db.SaveChangesAsync(cancellationToken);
|
|
|
|
await _logger.LogInfoAsync(EngineSettingKeys.TradeLifecycleChannel,
|
|
"[TradeLifecycle] Trade {TradeId} closed at {Price:F2} (PnL: {PnL:F2} €). Reason: {Reason}",
|
|
trade.Id, closePrice, trade.RealizedPnlEur, reason);
|
|
|
|
var dto = MapTradeEntityToDto(trade);
|
|
await _rpcClient.PublishAsync("finlytic/engine/trades/status_changed", dto);
|
|
|
|
return dto;
|
|
}
|
|
|
|
private static TradeProposalDto MapProposalEntityToDto(EngineTradeProposalEntity e)
|
|
{
|
|
return new TradeProposalDto(
|
|
ProposalId: e.Id,
|
|
UnderlyingIsin: e.UnderlyingIsin,
|
|
Symbol: e.Symbol,
|
|
StrategyKey: e.StrategyKey,
|
|
Direction: e.Direction,
|
|
QualityScore: e.QualityScore,
|
|
CompositeScore: e.CompositeScore,
|
|
CurrentPrice: e.CurrentPrice,
|
|
EntryPrice: e.EntryPrice,
|
|
InvalidationPrice: e.StopLoss,
|
|
ExitPlan: e.ExitPlan,
|
|
SelectedDerivative: e.SelectedDerivative,
|
|
AiValidation: e.AiValidation,
|
|
CreatedAtUtc: e.CreatedAtUtc,
|
|
ExpiresAtUtc: e.ExpiresAtUtc
|
|
);
|
|
}
|
|
|
|
private static ActiveTradeDto MapTradeEntityToDto(EngineTradeEntity e)
|
|
{
|
|
decimal unrealizedPnlEur = 0m;
|
|
decimal unrealizedPnlPercent = 0m;
|
|
|
|
if (e.AverageBuyIn > 0 && e.TotalQuantity > 0 && e.CurrentPrice > 0)
|
|
{
|
|
if (e.Direction == SignalDirection.Buy)
|
|
{
|
|
unrealizedPnlEur = (e.CurrentPrice - e.AverageBuyIn) * e.TotalQuantity;
|
|
unrealizedPnlPercent = ((e.CurrentPrice - e.AverageBuyIn) / e.AverageBuyIn) * 100m;
|
|
}
|
|
else
|
|
{
|
|
unrealizedPnlEur = (e.AverageBuyIn - e.CurrentPrice) * e.TotalQuantity;
|
|
unrealizedPnlPercent = ((e.AverageBuyIn - e.CurrentPrice) / e.AverageBuyIn) * 100m;
|
|
}
|
|
}
|
|
|
|
return new ActiveTradeDto(
|
|
TradeId: e.Id,
|
|
ProposalId: e.ProposalId,
|
|
UserId: e.UserId,
|
|
UnderlyingIsin: e.UnderlyingIsin,
|
|
Symbol: e.Symbol,
|
|
DerivativeIsin: e.DerivativeIsin,
|
|
DerivativeWkn: e.DerivativeWkn,
|
|
ExecutionMode: e.ExecutionMode,
|
|
InstrumentType: e.InstrumentType,
|
|
Direction: e.Direction,
|
|
Status: e.Status,
|
|
AverageBuyIn: e.AverageBuyIn,
|
|
TotalQuantity: e.TotalQuantity,
|
|
InitialStopLoss: e.InitialStopLoss,
|
|
CurrentStopLoss: e.CurrentStopLoss,
|
|
CurrentPrice: e.CurrentPrice,
|
|
UnrealizedPnlEur: Math.Round(unrealizedPnlEur, 2),
|
|
UnrealizedPnlPercent: Math.Round(unrealizedPnlPercent, 2),
|
|
RealizedPnlEur: Math.Round(e.RealizedPnlEur, 2),
|
|
ExitPlan: e.ExitPlan,
|
|
Fills: e.Fills.Select(f => new TradeFillDto(
|
|
FillId: f.Id,
|
|
ExecutedAtUtc: f.ExecutedAtUtc,
|
|
Price: f.Price,
|
|
Quantity: f.Quantity,
|
|
Fee: f.Fee,
|
|
Note: f.Note
|
|
)).ToList(),
|
|
OpenedAtUtc: e.OpenedAtUtc,
|
|
ClosedAtUtc: e.ClosedAtUtc
|
|
);
|
|
}
|
|
}
|