- Restructure docs/ folder (remove numeric prefixes): - 04_USER_GUIDES -> guides/ - 05_API_REFERENCE -> api/ - 06_PHYSICS -> physics/ - 07_DEVELOPMENT -> development/ - 08_ARCHIVE -> archive/ - 09_DIAGRAMS -> diagrams/ - Replace tagline 'Talk, don't click' with 'LLM-driven optimization framework' in 9 files - Create comprehensive docs/GETTING_STARTED.md: - Prerequisites and quick setup - Project structure overview - First study tutorial (Claude or manual) - Dashboard usage guide - Neural acceleration introduction - Rewrite docs/00_INDEX.md with correct paths and modern structure - Archive obsolete files: - 01_PROTOCOLS.md -> archive/historical/01_PROTOCOLS_legacy.md - 03_GETTING_STARTED.md -> archive/historical/ - ATOMIZER_PODCAST_BRIEFING.md -> archive/marketing/ - Update timestamps to 2026-01-20 across all key files - Update .gitignore to exclude docs/generated/ - Version bump: ATOMIZER_CONTEXT v1.8 -> v2.0
677 lines
22 KiB
Markdown
677 lines
22 KiB
Markdown
# Protocol Workflows
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**Last Updated**: 2025-11-21
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**Version**: 1.0
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**Status**: ✅ Complete
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---
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## Overview
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This document provides detailed workflow diagrams for each Atomizer protocol, showing exactly how the system processes optimizations from configuration to completion.
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---
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## Protocol 10: Intelligent Multi-Strategy Optimization (IMSO)
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### Complete IMSO Workflow
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```mermaid
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flowchart TD
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Start([User Starts Optimization]) --> LoadConfig[Load optimization_config.json]
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LoadConfig --> CheckMultiObj{Multi-objective?}
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%% Multi-objective path
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CheckMultiObj -->|Yes| MultiObjPath[Protocol 11 Active]
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MultiObjPath --> SkipChar[Skip Characterization<br/>Protocol 10 Not Used]
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SkipChar --> SetNSGAII[Set Sampler: NSGA-II]
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SetNSGAII --> RunTrialsMulti[Run All Trials<br/>NSGA-II Only]
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%% Single-objective path
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CheckMultiObj -->|No| SingleObjPath[Protocol 10 Active]
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SingleObjPath --> InitChar[Initialize Characterization]
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%% Characterization Phase
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subgraph CharPhase["Characterization Phase (Protocol 10)"]
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InitChar --> RandomSampling[Random/Sobol Sampling]
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RandomSampling --> RunCharTrial[Run Trial]
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RunCharTrial --> CharCount{Trial count ≥ min_trials?}
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CharCount -->|No| RandomSampling
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CharCount -->|Yes| CheckInterval{Check interval<br/>reached?}
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CheckInterval -->|No| RandomSampling
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CheckInterval -->|Yes| CalcConfidence[Calculate Confidence Score]
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CalcConfidence --> ConfCheck{Confidence ≥ 0.85?}
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ConfCheck -->|No| MaxCheck{Reached max_trials?}
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MaxCheck -->|No| RandomSampling
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MaxCheck -->|Yes| ForceAnalysis[Force Landscape Analysis]
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ConfCheck -->|Yes| ReadyForAnalysis[Ready for Analysis]
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ForceAnalysis --> ReadyForAnalysis
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end
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%% Landscape Analysis
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ReadyForAnalysis --> LandscapeAnalysis
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subgraph Analysis["Landscape Analysis"]
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LandscapeAnalysis[Analyze Landscape] --> Smoothness[Compute Smoothness]
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Smoothness --> Multimodal[Detect Multimodality]
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Multimodal --> Separability[Measure Separability]
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Separability --> Noise[Estimate Noise Level]
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Noise --> Classify{Landscape Type}
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Classify -->|Smooth + Unimodal| RecommendTPE[Recommend: TPE]
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Classify -->|Smooth + Multimodal| RecommendCMAES[Recommend: CMA-ES]
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Classify -->|Noisy| RecommendGP[Recommend: GP]
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Classify -->|Complex| RecommendNSGAII[Recommend: NSGA-II]
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Classify -->|Unknown| RecommendRandom[Recommend: Random]
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end
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%% Strategy Selection
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RecommendTPE --> SelectStrategy[Select Strategy]
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RecommendCMAES --> SelectStrategy
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RecommendGP --> SelectStrategy
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RecommendNSGAII --> SelectStrategy
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RecommendRandom --> SelectStrategy
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SelectStrategy --> LogTransition[Log Strategy Transition<br/>Protocol 13]
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LogTransition --> RunOptimization
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%% Optimization Phase
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subgraph OptPhase["Optimization Phase"]
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RunOptimization[Run Optimization] --> RunTrial[Execute Trial]
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RunTrial --> CheckStagnation{Stagnation<br/>detected?}
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CheckStagnation -->|No| MoreTrials{More trials?}
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CheckStagnation -->|Yes| SwitchStrategy[Switch Strategy]
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SwitchStrategy --> LogSwitch[Log Transition]
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LogSwitch --> RunTrial
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MoreTrials -->|Yes| RunTrial
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MoreTrials -->|No| OptComplete[Optimization Complete]
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end
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RunTrialsMulti --> Complete
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OptComplete --> Complete
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Complete[Generate Final Report] --> End([Optimization Complete])
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%% Styling
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classDef phaseClass fill:#E8F5E9,stroke:#2E7D32,stroke-width:3px
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classDef decisionClass fill:#FFF9C4,stroke:#F57F17,stroke-width:2px
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classDef protocolClass fill:#E1BEE7,stroke:#6A1B9A,stroke-width:2px
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class CharPhase,OptPhase,Analysis phaseClass
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class CheckMultiObj,CharCount,CheckInterval,ConfCheck,MaxCheck,Classify,CheckStagnation,MoreTrials decisionClass
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class MultiObjPath,SingleObjPath,LogTransition,LogSwitch protocolClass
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```
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### Confidence Calculation Details
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```mermaid
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graph TB
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subgraph ConfidenceCalc["Confidence Score Calculation"]
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Start[Recent Trials<br/>Last 10-20 trials] --> Convergence[Convergence Score<br/>Improvement rate]
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Start --> Coverage[Exploration Coverage<br/>Design space sampling]
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Start --> Stability[Prediction Stability<br/>Surrogate variance]
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Convergence --> Weight1[× 0.4]
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Coverage --> Weight2[× 0.3]
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Stability --> Weight3[× 0.3]
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Weight1 --> Sum[Σ Weighted Scores]
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Weight2 --> Sum
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Weight3 --> Sum
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Sum --> Overall[Overall Confidence<br/>0.0 - 1.0]
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Overall --> Threshold{≥ 0.85?}
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Threshold -->|Yes| Ready[Ready for Exploitation]
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Threshold -->|No| Continue[Continue Characterization]
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end
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subgraph Metrics["Individual Metrics"]
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Conv[Convergence:<br/>Recent improvement / Initial range]
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Cov[Coverage:<br/>Unique regions explored / Total regions]
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Stab[Stability:<br/>1 - (prediction_std / value_range)]
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end
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Convergence -.-> Conv
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Coverage -.-> Cov
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Stability -.-> Stab
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```
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### Landscape Analysis Algorithm
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```mermaid
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flowchart LR
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subgraph LandscapeFeatures["Landscape Feature Extraction"]
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direction TB
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Trials[Completed Trials] --> BuildSurrogate[Build GP Surrogate]
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BuildSurrogate --> F1[Feature 1:<br/>Smoothness]
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BuildSurrogate --> F2[Feature 2:<br/>Multimodality]
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BuildSurrogate --> F3[Feature 3:<br/>Separability]
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BuildSurrogate --> F4[Feature 4:<br/>Noise Level]
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F1 --> Smooth[Gradient Variance<br/>Low = Smooth]
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F2 --> Modes[Local Optima Count<br/>High = Multimodal]
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F3 --> Sep[Variable Interaction<br/>Low = Separable]
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F4 --> NoiseEst[Residual Variance<br/>High = Noisy]
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end
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subgraph Classification["Strategy Classification"]
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direction TB
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Smooth --> C1{Smoothness<br/>< 0.3?}
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Modes --> C2{Modes > 3?}
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Sep --> C3{Separability<br/>< 0.5?}
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NoiseEst --> C4{Noise > 0.2?}
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C1 -->|Yes| TPEScore[TPE Score +2]
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C1 -->|No| TPEScore
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C2 -->|Yes| CMAScore[CMA-ES Score +2]
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C2 -->|No| CMAScore
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C3 -->|Yes| GPScore[GP Score +1]
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C3 -->|No| GPScore
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C4 -->|Yes| NSGAScore[NSGA-II Score +2]
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C4 -->|No| NSGAScore
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TPEScore --> MaxScore{Max score?}
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CMAScore --> MaxScore
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GPScore --> MaxScore
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NSGAScore --> MaxScore
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MaxScore --> Winner[Winning Strategy]
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end
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LandscapeFeatures --> Classification
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```
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---
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## Protocol 11: Multi-Objective Support
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### Multi-Objective Decision Tree
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```mermaid
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flowchart TD
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Start[Component Initialization] --> CheckObj{Check Study<br/>Objectives}
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CheckObj -->|len == 1| SingleObj[Single-Objective Mode]
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CheckObj -->|len > 1| MultiObj[Multi-Objective Mode]
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%% Single-objective path
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subgraph SinglePath["Single-Objective Operations"]
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SingleObj --> API1[Use Singular API]
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API1 --> UseBestValue[study.best_value]
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API1 --> UseBestTrial[study.best_trial]
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API1 --> UseTrialValue[trial.value]
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API1 --> EnableChar[Enable Characterization]
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API1 --> EnableStag[Enable Stagnation Detection]
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end
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%% Multi-objective path
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subgraph MultiPath["Multi-Objective Operations"]
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MultiObj --> API2[Use Plural API]
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API2 --> UseBestTrials[study.best_trials<br/>Pareto Front]
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API2 --> UseTrialValues[trial.values<br/>List of objectives]
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API2 --> SkipChar[Skip Characterization<br/>Return confidence=1.0]
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API2 --> SkipStag[Skip Stagnation Detection<br/>Return False]
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API2 --> UseSampler[Force NSGA-II Sampler]
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end
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%% Component checks
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subgraph Components["Component-Level Checks"]
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Comp1[adaptive_surrogate.py] --> CompCheck1{Multi-obj?}
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CompCheck1 -->|Yes| Return1[Return max confidence]
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CompCheck1 -->|No| Calc1[Calculate confidence]
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Comp2[strategy_portfolio.py] --> CompCheck2{Multi-obj?}
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CompCheck2 -->|Yes| Return2[Skip stagnation]
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CompCheck2 -->|No| Calc2[Detect stagnation]
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Comp3[realtime_tracking.py] --> CompCheck3{Multi-obj?}
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CompCheck3 -->|Yes| Write1[Write trial.values]
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CompCheck3 -->|No| Write2[Write trial.value]
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end
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SinglePath --> Components
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MultiPath --> Components
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Components --> End[Component Execution]
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%% Styling
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classDef singleClass fill:#C8E6C9,stroke:#2E7D32,stroke-width:2px
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classDef multiClass fill:#BBDEFB,stroke:#1565C0,stroke-width:2px
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classDef checkClass fill:#FFF9C4,stroke:#F57F17,stroke-width:2px
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class SinglePath,API1,UseBestValue,UseBestTrial,UseTrialValue,EnableChar,EnableStag singleClass
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class MultiPath,API2,UseBestTrials,UseTrialValues,SkipChar,SkipStag,UseSampler multiClass
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class CheckObj,CompCheck1,CompCheck2,CompCheck3 checkClass
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```
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### Protocol 11 Compliance Checklist
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```mermaid
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flowchart TD
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subgraph Detection["1. Detect Objective Count"]
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D1[len study.directions] --> D2{Count?}
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D2 -->|1| SetSingle[is_multi_objective = False]
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D2 -->|>1| SetMulti[is_multi_objective = True]
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end
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subgraph APIUsage["2. Use Correct API"]
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SetSingle --> API1[✓ study.best_value<br/>✓ study.best_trial<br/>✓ trial.value]
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SetMulti --> API2[✓ study.best_trials<br/>✓ trial.values<br/>✗ trial.value = ERROR]
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end
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subgraph Features["3. Feature Compatibility"]
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API1 --> F1[✓ Characterization<br/>✓ Landscape Analysis<br/>✓ Stagnation Detection<br/>✓ All Strategies]
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API2 --> F2[✗ Characterization Skipped<br/>✗ Landscape Analysis Skipped<br/>✗ Stagnation Detection Skipped<br/>✓ NSGA-II Only]
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end
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subgraph Tracking["4. Tracking Compliance"]
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F1 --> T1[Write trial.value<br/>Write best_value]
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F2 --> T2[Write trial.values<br/>Write pareto_front_size]
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end
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subgraph Validation["5. Pre-deployment Validation"]
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T1 --> V1{Test both modes}
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T2 --> V1
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V1 --> V2[✓ Single-obj test passes]
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V1 --> V3[✓ Multi-obj test passes]
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V2 --> Pass[Protocol 11 Compliant]
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V3 --> Pass
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end
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classDef errorClass fill:#FFCDD2,stroke:#C62828,stroke-width:2px
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classDef successClass fill:#C8E6C9,stroke:#2E7D32,stroke-width:2px
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class API2 errorClass
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class Pass successClass
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```
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---
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## Protocol 13: Real-Time Dashboard Tracking
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### Tracking Workflow
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```mermaid
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sequenceDiagram
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autonumber
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participant Opt as IntelligentOptimizer
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participant Optuna
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participant Callback as RealtimeTracker<br/>(Optuna Callback)
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participant FS as File System
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participant Dashboard
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%% Study initialization
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Opt->>Callback: Initialize Tracker
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Callback->>FS: Create intelligent_optimizer/<br/>directory
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%% Trial execution
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loop For each trial
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Optuna->>Optuna: Sample Parameters
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Optuna->>Opt: Execute Objective Function
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Opt->>Opt: Run NX Solver
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%% Trial completion
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Optuna->>Callback: after_trial(study, trial)
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activate Callback
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%% Write trial log
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Callback->>Callback: Extract trial data
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Callback->>FS: Append to trial_log.json
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Note over FS: {trial_number, params,<br/>values, state, timestamp}
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%% Write optimizer state
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Callback->>Callback: Get current strategy/phase
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Callback->>FS: Write optimizer_state.json
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Note over FS: {current_strategy,<br/>current_phase, trial_number}
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%% Conditional writes
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alt Characterization Phase
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Callback->>Callback: Calculate progress
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Callback->>FS: Write characterization_progress.json
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Note over FS: {confidence, convergence,<br/>exploration, trials_complete}
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end
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alt Landscape Analysis Complete
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Callback->>Callback: Get analysis results
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Callback->>FS: Write intelligence_report.json
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Note over FS: {landscape_features,<br/>strategy_recommendation,<br/>confidence}
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end
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alt Strategy Transition
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Callback->>Callback: Log transition
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Callback->>FS: Write strategy_transitions.json
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Note over FS: {from_strategy, to_strategy,<br/>reason, trial_number}
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end
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deactivate Callback
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%% Dashboard update
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FS-->>Dashboard: File Watch Event
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Dashboard->>FS: Read JSON Files
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Dashboard->>Dashboard: Parse Data
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Dashboard->>Dashboard: Update UI
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Dashboard->>Dashboard: Render Charts
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end
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%% Finalization
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Opt->>FS: Write optimization_summary.json
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Opt->>FS: Write final_report.md
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Dashboard->>Dashboard: Show Final Results
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```
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### File Write Patterns
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```mermaid
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graph TB
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subgraph FileWrites["Protocol 13 File Writes"]
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direction TB
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subgraph EveryTrial["Every Trial (after_trial)"]
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T1[trial_log.json<br/>APPEND mode]
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T2[optimizer_state.json<br/>OVERWRITE mode]
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end
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subgraph Conditional["Conditional Writes"]
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C1{In characterization?}
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C1 -->|Yes| W1[characterization_progress.json]
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C1 -->|No| Skip1[Skip]
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C2{Landscape analyzed?}
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C2 -->|Yes| W2[intelligence_report.json]
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C2 -->|No| Skip2[Skip]
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C3{Strategy changed?}
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C3 -->|Yes| W3[strategy_transitions.json<br/>APPEND mode]
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C3 -->|No| Skip3[Skip]
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end
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subgraph OnComplete["On Completion"]
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F1[optimization_summary.json]
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F2[final_report.md]
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end
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end
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subgraph Format["JSON Format Examples"]
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direction LR
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Ex1["trial_log.json:<br/>[{trial: 0, ...},<br/> {trial: 1, ...}]"]
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Ex2["optimizer_state.json:<br/>{strategy: 'TPE',<br/> phase: 'optimization'}"]
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Ex3["characterization_progress.json:<br/>{confidence: 0.72,<br/> trials: 15/30}"]
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end
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EveryTrial -.-> Ex1
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EveryTrial -.-> Ex2
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Conditional -.-> Ex3
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```
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---
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## LLM-Assisted Workflow (Hybrid Mode)
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### Complete LLM Workflow
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```mermaid
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flowchart TD
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Start([User Provides Requirements]) --> LLMStart[LLM Receives Request]
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LLMStart --> Parse[Parse Requirements]
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Parse --> Extract[Extract Key Info:<br/>- Objectives<br/>- Design variables<br/>- Constraints<br/>- Preferences]
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Extract --> DesignChoice{Design<br/>Decisions<br/>Needed?}
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%% Interactive clarification
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DesignChoice -->|Yes| AskUser[Ask User for Clarification]
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AskUser --> UserResponse[User Provides Details]
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UserResponse --> Extract
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%% Generate configuration
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DesignChoice -->|No| GenerateConfig[Generate Config]
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subgraph ConfigGen["Configuration Generation"]
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GenerateConfig --> SetObjectives[Define Objectives<br/>with extractors]
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SetObjectives --> SetDesignVars[Define Design Variables<br/>with bounds]
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SetDesignVars --> SetConstraints[Define Constraints]
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SetConstraints --> SetProtocols[Configure Protocols]
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SetProtocols --> P10Config{Enable<br/>Protocol 10?}
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P10Config -->|Yes| CharConfig[Set characterization params]
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P10Config -->|No| SkipP10[Use default sampler]
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CharConfig --> FinalConfig
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SkipP10 --> FinalConfig[Assemble JSON]
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end
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FinalConfig --> ValidateConfig{Valid<br/>Configuration?}
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ValidateConfig -->|No| FixConfig[Fix Issues]
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FixConfig --> FinalConfig
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ValidateConfig -->|Yes| WriteConfig[Write optimization_config.json]
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%% Create extractor if needed
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WriteConfig --> NeedExtractor{Custom<br/>Extractor<br/>Needed?}
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NeedExtractor -->|Yes| CreateExtractor
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subgraph ExtractorGen["Extractor Generation"]
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CreateExtractor[Generate Extractor Code] --> BaseClass[Inherit from BaseExtractor]
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BaseClass --> ExtractMethod[Implement extract method]
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ExtractMethod --> RegisterExt[Register in library]
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end
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RegisterExt --> WriteExtractor[Write extractor.py]
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NeedExtractor -->|No| SkipExtractor[Use built-in extractors]
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WriteExtractor --> SetupStudy
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SkipExtractor --> SetupStudy
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%% Study setup
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subgraph StudySetup["Study Setup"]
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SetupStudy[Create Study Directory] --> CreateFolders[Create 1_setup/ & 2_results/]
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CreateFolders --> CopyModel[Copy CAD model to 1_setup/model/]
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CopyModel --> CopyConfig[Copy config to 1_setup/]
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CopyConfig --> CreateRunner[Create run_optimization.py]
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end
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CreateRunner --> ReadyToRun[Study Ready to Run]
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ReadyToRun --> UserConfirm{User<br/>Approves?}
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UserConfirm -->|No| Revise[User Provides Feedback]
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Revise --> Parse
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UserConfirm -->|Yes| RunOptimization[Execute Optimization]
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%% Optimization execution
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RunOptimization --> Protocol10Flow[Follow Protocol 10 Workflow]
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Protocol10Flow --> Protocol13Track[Protocol 13 Tracking Active]
|
||
Protocol13Track --> Monitor[LLM Can Monitor Progress]
|
||
|
||
Monitor --> Complete{Optimization<br/>Complete?}
|
||
Complete -->|No| Monitor
|
||
Complete -->|Yes| Analyze[Analyze Results]
|
||
|
||
%% Result analysis
|
||
subgraph ResultAnalysis["Result Analysis"]
|
||
Analyze --> ReadDB[Read study.db]
|
||
ReadDB --> ReadReports[Read JSON reports]
|
||
ReadReports --> ExtractInsights[Extract Insights:<br/>- Best solution<br/>- Trade-offs<br/>- Landscape type<br/>- Convergence]
|
||
end
|
||
|
||
ExtractInsights --> PresentResults[Present Results to User]
|
||
PresentResults --> End([Workflow Complete])
|
||
|
||
%% Styling
|
||
classDef llmClass fill:#FFEBEE,stroke:#C62828,stroke-width:2px
|
||
classDef userClass fill:#E3F2FD,stroke:#1976D2,stroke-width:2px
|
||
classDef processClass fill:#E8F5E9,stroke:#2E7D32,stroke-width:2px
|
||
|
||
class LLMStart,Parse,Extract,GenerateConfig,CreateExtractor,Analyze,ExtractInsights,PresentResults llmClass
|
||
class Start,AskUser,UserResponse,UserConfirm,Revise,End userClass
|
||
class ConfigGen,ExtractorGen,StudySetup,ResultAnalysis processClass
|
||
```
|
||
|
||
### LLM Decision Points
|
||
|
||
```mermaid
|
||
flowchart LR
|
||
subgraph Decisions["LLM Decision Points During Setup"]
|
||
direction TB
|
||
|
||
D1[Objective Type]
|
||
D1 --> D1A{Minimize/Maximize?}
|
||
D1A --> D1B{Target value?}
|
||
D1B --> D1C{Single/Multi-objective?}
|
||
|
||
D2[Design Variables]
|
||
D2 --> D2A{Continuous/Integer/Categorical?}
|
||
D2A --> D2B{Physical bounds?}
|
||
D2B --> D2C{Engineering constraints?}
|
||
|
||
D3[Extractor Selection]
|
||
D3 --> D3A{Built-in available?}
|
||
D3A -->|No| D3B[Generate custom]
|
||
D3A -->|Yes| D3C[Use built-in]
|
||
|
||
D4[Protocol Configuration]
|
||
D4 --> D4A{Enable IMSO?}
|
||
D4A -->|Yes| D4B[Set characterization<br/>min/max trials]
|
||
D4A -->|No| D4C[Use default sampler]
|
||
|
||
D5[Constraint Handling]
|
||
D5 --> D5A{Hard constraints?}
|
||
D5A -->|Yes| D5B[Pruning callbacks]
|
||
D5A -->|No| D5C[Soft penalties]
|
||
end
|
||
|
||
subgraph Clarification["When LLM Asks User"]
|
||
Q1[Ambiguous objective<br/>'Optimize performance']
|
||
Q2[Unknown bounds<br/>'What is max thickness?']
|
||
Q3[Missing constraints<br/>'Any mass limits?']
|
||
Q4[Extractor uncertainty<br/>'How to extract stress?']
|
||
end
|
||
|
||
D1C -.->|Unclear| Q1
|
||
D2B -.->|Unknown| Q2
|
||
D2C -.->|Unclear| Q3
|
||
D3A -.->|Unsure| Q4
|
||
```
|
||
|
||
---
|
||
|
||
## Integration: All Protocols Together
|
||
|
||
### Complete Optimization Flow
|
||
|
||
```mermaid
|
||
flowchart TD
|
||
Start([User Starts]) --> Config[Load Configuration]
|
||
|
||
Config --> DetectMode{LLM-assisted?}
|
||
|
||
%% LLM path
|
||
DetectMode -->|Yes| LLMSetup[LLM generates config<br/>and extractors]
|
||
LLMSetup --> InitOpt
|
||
|
||
%% Manual path
|
||
DetectMode -->|No| ManualConfig[User-written config]
|
||
ManualConfig --> InitOpt
|
||
|
||
%% Initialization
|
||
InitOpt[Initialize IntelligentOptimizer] --> P13Init[Protocol 13: Initialize Tracking]
|
||
P13Init --> DetectObj{Multi-objective?}
|
||
|
||
%% Single-objective path
|
||
DetectObj -->|No| P10Start[Protocol 10: Start IMSO]
|
||
|
||
subgraph P10["Protocol 10 Execution"]
|
||
P10Start --> CharPhase[Characterization Phase<br/>Random/Sobol sampling]
|
||
CharPhase --> CharProgress{Confidence ≥ 0.85?}
|
||
CharProgress -->|No| CharPhase
|
||
CharProgress -->|Yes| P13Char[P13: Write characterization_progress.json]
|
||
|
||
P13Char --> Landscape[Landscape Analysis]
|
||
Landscape --> P13Intel[P13: Write intelligence_report.json]
|
||
P13Intel --> SelectStrat[Select Strategy]
|
||
SelectStrat --> P13Trans[P13: Write strategy_transitions.json]
|
||
|
||
P13Trans --> OptPhase[Optimization Phase<br/>Selected strategy]
|
||
OptPhase --> StagnCheck{Stagnation?}
|
||
StagnCheck -->|Yes| SwitchStrat[Switch Strategy]
|
||
SwitchStrat --> P13Trans
|
||
StagnCheck -->|No| OptPhase
|
||
end
|
||
|
||
%% Multi-objective path
|
||
DetectObj -->|Yes| P11Start[Protocol 11: Multi-Obj Mode]
|
||
|
||
subgraph P11["Protocol 11 Execution"]
|
||
P11Start --> SkipChar[Skip Characterization]
|
||
SkipChar --> SetNSGAII[Set NSGA-II Sampler]
|
||
SetNSGAII --> OptPhaseMulti[Optimization Phase<br/>NSGA-II only]
|
||
end
|
||
|
||
%% Trial execution (common)
|
||
OptPhase --> RunTrial
|
||
OptPhaseMulti --> RunTrial
|
||
|
||
subgraph TrialExec["Trial Execution"]
|
||
RunTrial[Execute Trial] --> NXUpdate[Update NX Model]
|
||
NXUpdate --> NXSolve[Run FEA Solver]
|
||
NXSolve --> ExtractResults[Extract Results<br/>Using Extractors]
|
||
ExtractResults --> CalcObj[Calculate Objectives]
|
||
CalcObj --> OptunaUpdate[Update Optuna Study]
|
||
end
|
||
|
||
%% Tracking after trial
|
||
OptunaUpdate --> P13Trial[P13: after_trial callback]
|
||
|
||
subgraph P13Track["Protocol 13 Tracking"]
|
||
P13Trial --> WriteLog[Append trial_log.json]
|
||
WriteLog --> WriteState[Write optimizer_state.json]
|
||
WriteState --> DashUpdate[Dashboard Auto-Updates]
|
||
end
|
||
|
||
DashUpdate --> MoreTrials{More trials?}
|
||
MoreTrials -->|Yes| RunTrial
|
||
MoreTrials -->|No| Finalize
|
||
|
||
%% Finalization
|
||
Finalize[Generate Final Report] --> P13Final[P13: Write optimization_summary.json]
|
||
P13Final --> End([Complete])
|
||
|
||
%% Styling
|
||
classDef p10Class fill:#E8F5E9,stroke:#2E7D32,stroke-width:2px
|
||
classDef p11Class fill:#BBDEFB,stroke:#1565C0,stroke-width:2px
|
||
classDef p13Class fill:#FFE082,stroke:#F57F00,stroke-width:2px
|
||
|
||
class P10,P10Start,CharPhase,CharProgress,Landscape,SelectStrat,OptPhase,StagnCheck,SwitchStrat p10Class
|
||
class P11,P11Start,SkipChar,SetNSGAII,OptPhaseMulti p11Class
|
||
class P13Init,P13Char,P13Intel,P13Trans,P13Trial,P13Track,P13Final,DashUpdate p13Class
|
||
```
|
||
|
||
---
|
||
|
||
## Next Steps
|
||
|
||
For detailed architecture diagrams, see:
|
||
- [Architecture Overview](architecture_overview.md) - System components and data flow
|
||
|
||
For implementation details, see:
|
||
- [Protocol Specifications](../01_PROTOCOLS.md)
|
||
- [Documentation Index](../00_INDEX.md)
|