forked from animatedread/Warrior_EA
Three changes, one theme: the trade placed, the trade graded, and the trade computed are now the same trade. 1) GEOMETRY WIRE (correctness, the ranked #1 open issue). The measured barrier pair reached the LABELS only - OpenParams still placed orders at the enum geometry (2*ATR/6*ATR), so the deploy gate certified "reaches 1.62*ATR before 3.33*ATR above break-even" about trades the EA never placed. Published via g_DerivedSlAtrMult/g_DerivedTpAtrMult (ConfidenceBridge, same same-tick contract as the confidence globals, because OpenParams runs on the root signal which has no pointer to the AI filter). Two writers: DeriveBarrierGeometry at era 0, and the .cfg adoption a deployed model takes. Overrides both legs and both Intelligent modes - the certificate is exact or it is nothing. TP is ATR-anchored like the label, NOT risk-relative, so a floor-widened stop cannot reshape the certified target. 2) BATCH NORM RUNS DEVICE-SIDE ON OPENCL. Four kernels in Network.cl - forward, hidden gradient, gamma/beta accumulate, gamma/beta apply - each a line-for-line transcription of the host implementation (NormalizeHost / HiddenGradHost / StepGammaBeta) including every NaN guard, clamp, and the exact moment-write ordering. The host copies remain the runtime for the DLL and pure-MQL5 tiers and the reference the kernels must match. Because this box has no OpenCL platform, the safety story is layered: - shim validation: kernels compiled as C and driven against a fp64 host transcription over NaN-poisoned stats, NaN gamma, over-clamp inputs, the frozen path, both optimizers, 3 batches - ALL PASS, worst normalized diff 0.132 vs tolerance 1.0 - in-situ self-check: each kernel is compared against its host twin ON FIRST USE on the real device (SelfCheckBn*), covering what the shim cannot - arg indices and buffer bindings. Any disagreement resyncs from the good copy, latches all BN kernels off process-wide, and training continues host-side. A transcription bug costs a warning and some speed, never a poisoned .nnw. - sync discipline: BatchOptions is now a CBufferDouble with explicit authority tracking (m_bnDeviceAuthoritative). Checkpoints/saves pull read-only; restores/loads/resets push; a mid-batch handover drains the device gamma/beta accumulator into the host arrays so no sample is lost. 3) SMALL FIXES. Apply-kernel build failure now latches the dispatch path at init (one warning instead of warning + failed Execute). Build tag bumped to win-scoring-gpu-v1 - first tag change since expectancy-stop-v1 despite five binary-changing commits. Both build variants compile 0 errors, 0 warnings. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
64 lines
4.3 KiB
MQL5
64 lines
4.3 KiB
MQL5
//+------------------------------------------------------------------+
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//| Warrior_EA |
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//| AnimateDread |
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//| |
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//+------------------------------------------------------------------+
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// Money management classes (CExpertMoney) are invoked by the standard library's
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// CExpert with a fixed (price, sl) signature - they have no pointer back to the
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// signal filter that computed those levels. CExpertSignalCustom::OpenParams()
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// refreshes these globals right before Money.CheckOpenLong/Short() is called for
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// the same trade, so Money classes can read a same-tick confidence value without
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// requiring an intrusive change to the wizard framework's call chain.
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double g_AISignedConfidence = 0.0; // -1..1, sign = direction, magnitude = AI confidence; 0 if no AI filter
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double g_DBConfidence = 0.0; // 0..1, historical time-based win rate of the active pattern set
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// source takes CONFIDENCE_SOURCE's underlying int values (0=CONF_AI, 1=CONF_DB, 2=CONF_BLENDED).
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// Declared as int rather than the enum type so this header has no dependency on the include
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// order of Enumerations\InputEnums.mqh (this file is pulled in from class headers that are
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// included before Inputs.mqh in Warrior_EA.mq5).
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// reward:risk ratio of the specific trade OpenParams() just sized (b in the Kelly-criterion
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// formula CMoneyIntelligent::AdjustRiskAmount() uses) - refreshed on the same same-tick
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// contract as the two confidence globals above; always > 0 when populated, since OpenParams()
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// no longer rejects on reward:risk at all (the filter was removed 2026-08-09), so g_TradeRewardRiskRatio
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// reaches Money as a SIZING input rather than as the survivor of a veto.
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double g_TradeRewardRiskRatio = 0.0;
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// Live per-tick signed AI confidence (-1..1, sign = predicted direction, magnitude = confidence),
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// refreshed every tick/timer from the active AI signal's SignedAIConfidence() in
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// CExpertSignalAIBase::ScheduleTrainingIfNeeded() - independent of the OpenParams() same-tick
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// contract above, because an ALREADY-OPEN position generates no OpenParams() calls yet the
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// intelligent trailing (Trailing\TrailingIntelligent.mqh) still needs a current read while holding.
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// This is written by the active AI signal once per tick; 0.0 means no AI filter is active/converged yet.
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double g_LiveAISignedConfidence = 0.0;
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// MEASURED barrier geometry, in ATR multiples, published by the AI signal for the LIVE order path.
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// Written from exactly two places: DeriveBarrierGeometry() when the geometry is measured at era 0, and
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// the .cfg adoption in Persistence.mqh when a trained model is loaded with its pinned pair. 0.0 = not
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// derived (fresh start before era 0, or no AI filter) - OpenParams() then falls back to the SL_Mode/
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// TP_Mode enum multiples exactly as before.
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//
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// This bridge exists because of a real incident, not tidiness: the deploy gate certifies "this model's
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// trades reach the MEASURED target before the MEASURED stop at a win rate beating break-even" - and
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// until 2026-08-09 the live EA then placed trades with the ENUM geometry (2*ATR stop, 6*ATR target on
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// the shipped SP500 config) that the certificate says nothing about. The model was graded on one game
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// and paid on another. Same one-way, same-tick contract as the confidence globals above; OpenParams()
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// runs on the aggregate/root signal, which has no pointer to the AI filter that measured these.
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double g_DerivedSlAtrMult = 0.0;
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double g_DerivedTpAtrMult = 0.0;
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//+------------------------------------------------------------------+
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//| Combine AI/DB confidence into a single 0..1 magnitude |
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//+------------------------------------------------------------------+
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double CombinedConfidence(int source)
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{
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double aiMag = MathIsValidNumber(g_AISignedConfidence) ? MathAbs(g_AISignedConfidence) : 0.0;
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double dbMag = MathIsValidNumber(g_DBConfidence) ? g_DBConfidence : 0.0;
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aiMag = MathMax(0.0, MathMin(aiMag, 1.0));
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dbMag = MathMax(0.0, MathMin(dbMag, 1.0));
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switch(source)
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{
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case 1: // CONF_DB
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return dbMag;
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case 2: // CONF_BLENDED
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return (aiMag + dbMag) / 2.0;
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default: // CONF_AI
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return aiMag;
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}
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}
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//+------------------------------------------------------------------+
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