| NLotSizingDataModel | |
| NInstance | |
| NAnalysis | |
| CParallelRoutingTopologyDescriptor | |
| CParallelSchedulingTopologyAnalyzer | |
| CProductStructureAnalysis | Represents the detailed result of an automatic analysis of a product bill-of-materials graph |
| CProductStructureAnalyzer | Analyzes the bill-of-materials graph of a supply-chain instance and determines its product-structure type |
| NBenchmark | |
| CBenchmarkBestKnownResultSelection | |
| CBenchmarkBestKnownResultSelectionService | Selects an eligible benchmark reference objective from native KnownResult records |
| CBenchmarkDatasetLayout | Canonical repository layout for benchmark artifacts |
| CBenchmarkHistoricalAuditSnapshot | |
| CBenchmarkKnownResultAuditRecord | |
| CBenchmarkKnownResultAuditService | Audits native KnownResult metadata for benchmark/BKS use. No parallel verification-status enum is introduced |
| CBenchmarkRunProvenance | Reproducibility metadata for one benchmark run |
| NClassification | |
| NHistorical | |
| CWolseyHistoricalDescriptor | Lossless detected/source-preserved Wolsey descriptor |
| CWolseyHistoricalSemanticsAnalyzer | Projects generic LotSizingDataModel semantics onto Wolsey's historical dimensions |
| CClassificationEvidence | Represents one factual element used to evaluate whether a lot-sizing instance matches a known problem family |
| CKnownProblemRuleDefinition | Defines one reusable condition used to classify lot-sizing problem instances |
| CKnownProblemRuleEvaluator | Evaluates known-problem classification rules against extracted lot-sizing problem features |
| CKnownProblemTypeCatalog | Stores known lot-sizing problem-family definitions and the reusable rules used to recognize them |
| CKnownProblemTypeCatalogFactory | Creates predefined catalogs of known lot-sizing problem-family definitions |
| CKnownProblemTypeDefinition | Defines one known lot-sizing problem family in the problem-type catalog |
| CKnownProblemTypeMatch | Represents a detected correspondence between a lot-sizing instance and a known problem family |
| CLotSizingProblemClassification | Stores the persistent result of the automatic classification of a lot-sizing problem instance |
| CLotSizingProblemClassifier | Classifies lot-sizing supply-chain instances using a catalog of known problem-family definitions |
| CLotSizingProblemFeatureExtractor | Extracts factual lot-sizing problem features from a supply-chain instance |
| CLotSizingProblemFeatures | Describes the factual structural and modeling features detected in a lot-sizing supply-chain instance |
| NClosedLoop | |
| CClosedLoopReturnStream | Describes one exogenous stream of returned units and its recovery/disposal alternatives |
| CClosedLoopTimeSeriesParameter | Non-negative period-dependent quantity or unit-cost series used by the closed-loop instance extension |
| NCreation | |
| CLotSizingInstanceFactory | Creates lot-sizing problem instances and initializes their automatically derived metadata |
| CLotSizingInstanceRecommendationFactory | Creates, applies and refreshes solution-method recommendation reports for lot-sizing instances |
| NDescriptors | |
| NClassical | |
| CNonSpeculativeCostConditionAnalysis | Result of the generic adjacent non-speculative production/holding-cost condition analysis |
| CNonSpeculativeCostConditionAnalyzer | Tests the generic adjacent non-speculative cost condition h_t + p_t - p_(t+1) >= 0 |
| CZeroOrFullCapacityProductionAnalysis | Result of testing whether positive production is forced to equal the period production capacity |
| CZeroOrFullCapacityProductionAnalyzer | Detects the zero-or-full-capacity production regime from already modeled minimum-lot-size and production-capacity series |
| NNetwork | |
| CDirectedSupplyNetworkDescriptor | Immutable analysis result for one directed physical supply network |
| CSupplyNetworkAnalyzer | Extracts the physical forward supply-flow graph encoded by Core |
| CSupplyNetworkArcDescriptor | Describes one aggregated physical forward-flow relationship |
| CSupplyNetworkDescriptor | Describes the physical supply-flow network independently from the BOM and independently from any planning paradigm such as MRP or DRP |
| CSupplyNetworkNodeDescriptor | Describes one node of the physical supply-flow graph |
| NTemporal | |
| CBitranYanasseProfileAnalyzer | Builds the historical Bitran-Yanasse temporal profile from four explicit period series |
| CBitranYanasseTemporalProfile | Represents the historical Bitran-Yanasse temporal structure alpha/beta/gamma/delta for single-item capacitated lot sizing |
| CTemporalPatternAnalysis | Represents the deterministic analysis of one finite, non-empty time series |
| CTemporalPatternAnalyzer | Classifies a numerical time series as Zero, Constant, NonIncreasing, NonDecreasing or General |
| CTemporalPatternTolerance | Defines the numerical tolerance policy used for temporal-pattern analysis |
| CTemporalPatternTypeExtensions | Provides stable historical codes for temporal-pattern categories |
| CCapacityDescriptor | Describes represented capacity families and extensions |
| CDemandDescriptor | Describes demand semantics already represented by the model |
| CInventoryServiceDescriptor | Describes inventory and unmet-demand semantics |
| CLotSizingProblemDescriptor | Typed structured description of the factual lot-sizing problem characteristics currently represented by an instance |
| CObjectiveFinanceDescriptor | Describes factual finance and objective semantics |
| CProcurementDescriptor | Describes procurement semantics represented by the current model |
| CProductionDescriptor | Describes production and lot-size semantics |
| CSchedulingDescriptor | Factual integrated lot-sizing/scheduling characteristics |
| CSetupDescriptor | Describes setup semantics exposed by the current model |
| CStructureDescriptor | Describes structural dimensions of a lot-sizing problem |
| CTimeDescriptor | Describes planning-time dimensions |
| CTransportationDistributionDescriptor | Describes transportation and distribution semantics |
| NHistorical | |
| NBitranYanasse | |
| CBitranYanasseApplicabilityAssessment | Structured assessment of Bitran-Yanasse historical-domain applicability |
| CBitranYanasseHistoricalMapper | Maps the historical Bitran-Yanasse temporal classification to the portion of the LotSizingDataModel universal specification that can be represented exactly by notation scheme v1 |
| CBitranYanasseHistoricalMapping | Represents a lossless historical Bitran-Yanasse profile together with the lossless projection to universal notation scheme v1 |
| NWolsey | |
| CWolseyExtendedClassification | Preserves Wolsey's optional multi-item/machine/level extension around the single-item PROB-CAP-VAR classification |
| CWolseyHistoricalMapper | Projects Wolsey's 2002 classification onto the generic universal notation without changing the meaning of unsupported historical dimensions |
| CWolseyHistoricalMapping | Represents a Wolsey historical classification and the portion currently expressible as a universal problem specification |
| CWolseyMachineClassification | Typed representation of the machine block {NK=#,[IM,VM],[LT]*,[SB1,SB2,BB],[SET,ST,SQT,SQC]*} |
| CWolseyMultiLevelClassification | Typed representation of Wolsey's multi-level block {NL=#,[G,A,S]} |
| CWolseySingleItemClassification | Lossless typed representation of Wolsey's PROB-CAP-VAR single-item classification |
| CHistoricalClassificationMappingRegistry | |
| CHistoricalClassificationMappingRegistryFactory | |
| CHistoricalInverseResolution | |
| CHistoricalMappingAuditResult | |
| CHistoricalMappingAuditService | |
| CHistoricalMappingRule | |
| CHistoricalSemanticsMetadata | Source-declared historical classification metadata |
| NMetadata | |
| CProductStructureDescriptor | Describes the declared and automatically detected structure of the product bill-of-materials graph of an instance |
| NNotation | |
| NLsi | |
| CLsi10Projection | Immutable scientific compatibility projection for the LSI/1.0 notation |
| CLsi10ScientificProjectionService | End-to-end LSI/1.0 projection service using the stable 1.2.x semantic path |
| CLsi10ScientificProjector | Projects the stable 1.2.x descriptor / Universal Notation model to LSI/1.0 |
| NMatching | |
| CUniversalNotationMatcher | Matches a typed lot-sizing descriptor against a universal-notation problem specification |
| CUniversalNotationMatchIssue | Represents one structured explanation emitted by the notation matcher |
| CUniversalNotationMatchResult | Represents the complete result of matching a typed descriptor against a universal problem specification |
| CUniversalProblemSpecification | Represents a universal notation interpreted as a problem specification |
| CUniversalDerivedSemantics | Carries explicit derived analyses that cannot be inferred from the coarse typed descriptor alone |
| CUniversalLotSizingNotation | Typed abstract syntax tree for the versioned alpha | beta | gamma scheme |
| CUniversalNetworkNotation | Typed alpha-field representation of the physical network |
| CUniversalNotationAlpha | Alpha field: structural/environment characteristics |
| CUniversalNotationBeta | Beta field: constraints and modeled extensions |
| CUniversalNotationGamma | Gamma field: objective family |
| CUniversalNotationGenerator | Generates notation scheme version 1 from typed problem descriptors |
| CUniversalNotationParser | Parses and canonicalizes notation scheme version 1 |
| CUniversalNotationRenderer | Renders the canonical text form of notation scheme version 1 |
| CUniversalNotationScheme | Identifies the versioned LotSizingDataModel universal notation scheme |
| CUniversalNotationTokenCatalog | Stable canonical token mapping for notation scheme version 1 |
| NProblemClasses | |
| CLotSizingProblemClassAliasResolution | Result of resolving a literature/project acronym or canonical code |
| CLotSizingProblemClassAliasResolver | Resolves canonical codes and historical/literature aliases without arbitrarily collapsing ambiguous acronyms |
| CLotSizingProblemClassAnalyzer | Assesses one descriptor against one canonical problem-class core |
| CLotSizingProblemClassCatalog | Canonical lot-sizing problem-class catalog |
| CLotSizingProblemClassDefinition | One canonical scientific problem-class definition |
| CLotSizingProblemClassDetector | Detects all executable canonical problem classes compatible with one descriptor |
| CLotSizingProblemClassExtensionAnalyzer | Identifies modeled extensions outside the six currently executable canonical lot-sizing core signatures |
| CLotSizingProblemClassMatchResult | Complete canonical problem-class membership assessment |
| CMacroMicroSchedulingProblemClassAnalyzer | |
| CSmallBucketSchedulingProblemClassAnalyzer | Canonical membership analyzer for the DLSP, CSLP and PLSP small-bucket scheduling families independently of their current solver support state |
| NRecommendation | |
| CMethodCompatibilityEvidence | Represents one piece of evidence used to evaluate the compatibility between a solution method and a lot-sizing problem instance |
| CSolutionMethodAdvisor | Evaluates and ranks solution methods for lot-sizing problem instances |
| CSolutionMethodCatalog | Represents an extensible catalog of solution methods that may be evaluated for lot-sizing problem instances |
| CSolutionMethodCatalogFactory | Creates predefined catalogs of solution methods for lot-sizing problem instances |
| CSolutionMethodDefinition | Describes the applicability, capabilities and limitations of a solution method for lot-sizing problem instances |
| CSolutionMethodRecommendation | Represents the evaluated compatibility of one solution method with a specific lot-sizing problem instance |
| CSolutionMethodRecommendationReport | Stores the solution-method recommendations generated for one lot-sizing problem instance |
| NResults | |
| CKnownResult | Represents a known result associated with a lot-sizing problem instance |
| NScientific | |
| CHistoricalClassificationCapability | Describes what the current engine can safely do with one historical classification scheme |
| CHistoricalClassificationCapabilityAnalyzer | Reports historical mapping/detection capability without inventing a historical code that cannot be derived safely |
| CScientificClassificationCoverage | Declares exactly which scientific axes this engine infers |
| CScientificClassificationDiagnostic | One structured diagnostic emitted by the scientific classification engine |
| CScientificClassificationEngine | Single entry point for current scientific classification capabilities |
| CScientificClassificationRequest | Optional inputs to one scientific-classification run |
| CScientificClassificationResult | Consolidated, UI-independent scientific classification result |
| CScientificNotationComparison | Keeps declared notation and its comparison with detected notation separate |
| NSerialization | |
| CLotSizingInstanceXmlSerializer | Serializes and deserializes complete lot-sizing problem instances using XML |
| NTaxonomy | |
| CScientificConceptCatalog | Provides a small canonical concept catalog used to keep scientific categories separated before historical mappings are introduced |
| CScientificConceptReference | Identifies one named scientific concept together with its taxonomic category |
| NValidation | |
| CInstanceDiagnostic | Represents one structured diagnostic produced while checking the semantic validity of a lot-sizing instance |
| CInstanceModelChecker | Checks whether a LotSizingInstance represents a structurally valid and semantically meaningful lot-sizing model |
| CInstanceModelCheckResult | Represents the complete result of semantic instance validation |
| CInstanceValidationCapabilities | Describes which downstream operations are permitted after instance-model validation |
| CLotSizingInstanceValidator | Validates the structural and referential consistency of a complete lot-sizing problem instance |
| CLotSizingInstance | Adds explicit closed-loop return streams to a lot-sizing instance without changing the historical SupplyChain schema |