chore(8.0): Phase A + B — purge all @deprecated APIs + cacheManager dead branches
PHASE A — every @deprecated marker resolved (~25 removed) src/coreTypes.ts - GraphVerb: dropped the "@deprecated Will be replaced by HNSWVerbWithMetadata" note. GraphVerb IS the canonical contract — every public API path speaks it. Removed the `source` and `target` legacy alias fields (renamed `from` / `to` callers years ago; no consumers remain). - StorageAdapter: dropped the "@deprecated Use getNouns() with filter" notes from `getNounsByNounType`, `getVerbsBySource`, `getVerbsByTarget`, `getVerbsByType`. They were never deprecated in spirit — they're useful non-paginated convenience wrappers over the paginated `getNouns()` / `getVerbs()` surface. Refreshed JSDoc to explain the role. src/types/graphTypes.ts - Mirrored the GraphVerb cleanup: dropped `source` + `target` legacy aliases. sourceId + targetId are the canonical fields. src/import/ImportCoordinator.ts - Deleted the entire DeprecatedImportOptions interface block (130 LOC). It was a v3 → v4 migration tool using the `?: never` trick to force compile errors on dropped options. Five major versions in, the forced-error gate is no longer pulling its weight. src/triple/TripleIntelligence.ts - Deleted `TripleIntelligenceEngine = any` alias. No consumers; superseded by `TripleIntelligenceSystem`. src/storage/cow/binaryDataCodec.ts - Deleted `wrapBinaryData()`. The COW dispatch layer in `baseStorage.ts` routes by key-prefix convention; the old guess-by-JSON-parse codec was fragile (compressed bytes can accidentally parse as JSON) and unused. src/storage/baseStorage.ts - Refreshed JSDoc on `convertHNSWVerbToGraphVerb()` — the method is alive and used internally; the deprecation note was stale. src/embeddings/wasm/AssetLoader.ts → DELETED - File was @deprecated since model weights moved into the Candle WASM bundle. No consumers. Removed from `embeddings/wasm/index.ts` exports. src/embeddings/wasm/types.ts - Dropped @deprecated tags on `TokenizerConfig` + `TokenizedInput` — still used by `WordPieceTokenizer` (auxiliary tokenization). Deleted `InferenceConfig` (truly dead). Updated `embeddings/wasm/index.ts` exports. src/utils/metadataIndex.ts - Deleted `getIdsForCriteria()` — pure alias for `getIdsForFilter()`, no consumers. src/interfaces/IIndex.ts - Removed RebuildOptions.lazy (deprecated and unused; lazy mode is auto- selected by available-memory detection). src/hnsw/hnswIndex.ts - Removed `getNouns()` (returned a full Map; deprecated in favor of pagination years ago and no consumers in src/ or tests/). PHASE B — cacheManager dead StorageType branches src/storage/cacheManager.ts - Collapsed the `isRemoteStorage` flag and its 15 dead conditional branches spanning calculateOptimalCacheSize() and calculateOptimalBatchSize(). After dropping cloud adapters in step 7, `coldStorageType` is never S3 or REMOTE_API; the branches were dead. Cache sizing and batch sizing now honor the filesystem-only reality with simpler heuristics. - Collapsed `detectWarmStorageType()` + `detectColdStorageType()` from ~40 LOC of environment-+-availability branching to 2-line returns of `StorageType.FILESYSTEM`. Brainy 8.0 ships filesystem + memory only. NOT YET — Phases C-G in follow-up commits C: storageAutoConfig.ts + zeroConfig + extensibleConfig + sharedConfigManager D: TODO/FIXME sweep across src/ E: skipped tests + the parallel-test race condition F: docs deep clean (BATCHING, augmentations, READMEs) G: browser support drop (the last 2 @deprecated) VERIFICATION - npx tsc --noEmit: clean - npm test: 1408 / 1409 (same pre-existing race-condition outstanding)
This commit is contained in:
parent
9f9a41599e
commit
cb16a39a0c
15 changed files with 98 additions and 718 deletions
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@ -1971,8 +1971,6 @@ export class Brainy<T = any> implements BrainyInterface<T> {
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vector: relationVector,
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sourceId: params.from,
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targetId: params.to,
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source: params.from,
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target: params.to,
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verb: params.type,
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type: params.type,
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...(params.subtype !== undefined && { subtype: params.subtype }),
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@ -2013,9 +2011,7 @@ export class Brainy<T = any> implements BrainyInterface<T> {
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...verb,
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id: reverseId,
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sourceId: params.to,
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targetId: params.from,
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source: params.to,
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target: params.from
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targetId: params.from
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}
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// Operation 4: Save reverse verb vector data
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@ -2162,8 +2158,6 @@ export class Brainy<T = any> implements BrainyInterface<T> {
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vector: existingAny.vector,
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sourceId: existingAny.sourceId,
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targetId: existingAny.targetId,
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source: existingAny.sourceId,
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target: existingAny.targetId,
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verb: newVerbType,
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type: newVerbType,
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...(params.subtype !== undefined
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@ -415,31 +415,25 @@ export interface HNSWVerbWithMetadata {
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/**
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* Verb representing a relationship between nouns
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* Stored separately from HNSW index for lightweight performance
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*
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* @deprecated Will be replaced by HNSWVerbWithMetadata in future versions
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* Stored separately from the HNSW vector index for lightweight performance.
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* This is the canonical verb shape — Brainy's internal graph engine, the public
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* `relate()` / `getRelations()` surface, and storage adapters all speak it.
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*/
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export interface GraphVerb {
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id: string // Unique identifier for the verb
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sourceId: string // ID of the source noun
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targetId: string // ID of the target noun
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vector: Vector // Vector representation of the relationship
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connections?: Map<number, Set<string>> // Optional connections from HNSW index
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type?: string // Optional type of the relationship
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connections?: Map<number, Set<string>> // Optional connections from the vector index
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type?: string // Optional verb type
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subtype?: string // Optional sub-classification within the VerbType (7.30+)
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weight?: number // Optional weight of the relationship
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confidence?: number // Optional confidence score (0-1)
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metadata?: any // Optional metadata for the verb
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service?: string // Multi-tenancy support - which service created this verb
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// Legacy field names (use from/to in public API, sourceId/targetId in storage)
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/** @deprecated Use `from` (public API) or `sourceId` (storage). Will be removed in next major. */
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source?: string // Entity UUID (same as sourceId)
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/** @deprecated Use `to` (public API) or `targetId` (storage). Will be removed in next major. */
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target?: string // Entity UUID (same as targetId)
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verb?: string // Alias for type
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verb?: string // Alias for type — preserved for ergonomic call sites
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data?: Record<string, any> // Additional flexible data storage
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embedding?: Vector // Alias for vector
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embedding?: Vector // Alias for vector — preserved for ergonomic call sites
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// Timestamp and creator properties
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createdAt?: number | { seconds: number; nanoseconds: number } // When the verb was created
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@ -800,10 +794,11 @@ export interface StorageAdapter {
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}>
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/**
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* Get nouns by noun type
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* @param nounType The noun type to filter by
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* @returns Promise that resolves to an array of nouns of the specified noun type
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* @deprecated Use getNouns() with filter.nounType instead
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* Get all nouns of a given type. Convenience wrapper over `getNouns()` for
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* code paths that need the full set rather than a paginated cursor walk.
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*
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* @param nounType The noun type to filter by.
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* @returns All matching nouns.
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*/
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getNounsByNounType(nounType: string): Promise<HNSWNounWithMetadata[]>
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@ -848,26 +843,19 @@ export interface StorageAdapter {
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}>
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/**
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* Get verbs by source
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* @param sourceId The source ID to filter by
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* @returns Promise that resolves to an array of verbs with the specified source ID
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* @deprecated Use getVerbs() with filter.sourceId instead
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* Get all verbs originating from a given source node. Convenience wrapper
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* over `getVerbs()` for code paths that want the full set rather than a
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* paginated cursor walk.
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*/
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getVerbsBySource(sourceId: string): Promise<HNSWVerbWithMetadata[]>
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/**
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* Get verbs by target
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* @param targetId The target ID to filter by
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* @returns Promise that resolves to an array of verbs with the specified target ID
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* @deprecated Use getVerbs() with filter.targetId instead
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* Get all verbs targeting a given node. See `getVerbsBySource()`.
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*/
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getVerbsByTarget(targetId: string): Promise<HNSWVerbWithMetadata[]>
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/**
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* Get verbs by type
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* @param type The verb type to filter by
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* @returns Promise that resolves to an array of verbs with the specified type
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* @deprecated Use getVerbs() with filter.verbType instead
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* Get all verbs of a given type. See `getVerbsBySource()`.
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*/
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getVerbsByType(type: string): Promise<HNSWVerbWithMetadata[]>
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@ -1,266 +0,0 @@
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/**
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* Asset Loader
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*
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* @deprecated This class is no longer used. Model weights are now embedded
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* in the Candle WASM binary at compile time. Kept for backward compatibility.
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*
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* Previously: Resolved paths to ONNX model files across environments.
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* Now: Use CandleEmbeddingEngine which loads embedded model automatically.
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*/
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import { MODEL_CONSTANTS } from './types.js'
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// Cache resolved paths
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let cachedModelDir: string | null = null
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let cachedVocab: Record<string, number> | null = null
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/**
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* Asset loader for model files
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*/
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export class AssetLoader {
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private modelDir: string | null = null
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/**
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* Get the model directory path
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*/
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async getModelDir(): Promise<string> {
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if (this.modelDir) {
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return this.modelDir
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}
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if (cachedModelDir) {
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this.modelDir = cachedModelDir
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return cachedModelDir
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}
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// Try to resolve model directory
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const resolved = await this.resolveModelDir()
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this.modelDir = resolved
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cachedModelDir = resolved
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return resolved
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}
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/**
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* Resolve the model directory across environments
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*/
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private async resolveModelDir(): Promise<string> {
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// 1. Check environment variable
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if (typeof process !== 'undefined' && process.env?.BRAINY_MODEL_PATH) {
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const envPath = process.env.BRAINY_MODEL_PATH
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if (await this.pathExists(envPath)) {
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return envPath
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}
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}
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// 2. Try common locations
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const modelName = MODEL_CONSTANTS.MODEL_NAME + '-q8'
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const possiblePaths = [
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// Package assets (when installed as dependency)
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`./assets/models/${modelName}`,
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`./node_modules/@soulcraft/brainy/assets/models/${modelName}`,
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// Development paths
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`../assets/models/${modelName}`,
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// Absolute from package root
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this.getPackageRootPath(`assets/models/${modelName}`),
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].filter(Boolean) as string[]
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for (const path of possiblePaths) {
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if (await this.pathExists(path)) {
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return path
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}
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}
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// If no path found, return default (will error on use)
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return `./assets/models/${modelName}`
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}
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/**
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* Get package root path (Node.js/Bun only)
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*/
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private getPackageRootPath(relativePath: string): string | null {
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if (typeof process === 'undefined') {
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return null
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}
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try {
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// Use __dirname equivalent
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const url = new URL(import.meta.url)
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const currentDir = url.pathname.replace(/\/[^/]*$/, '')
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// Go up from src/embeddings/wasm to package root
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const packageRoot = currentDir.replace(/\/src\/embeddings\/wasm$/, '')
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return `${packageRoot}/${relativePath}`
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} catch {
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return null
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}
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}
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/**
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* Check if path exists (works in Node.js/Bun)
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*/
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private async pathExists(path: string): Promise<boolean> {
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if (typeof process === 'undefined') {
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// Browser - check via fetch
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try {
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const response = await fetch(path, { method: 'HEAD' })
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return response.ok
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} catch {
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return false
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}
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}
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// Node.js/Bun
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try {
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const fs = await import('node:fs/promises')
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await fs.access(path)
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return true
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} catch {
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return false
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}
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}
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/**
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* Get path to ONNX model file
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*/
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async getModelPath(): Promise<string> {
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const dir = await this.getModelDir()
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return `${dir}/model.onnx`
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}
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/**
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* Get path to vocabulary file
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*/
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async getVocabPath(): Promise<string> {
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const dir = await this.getModelDir()
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return `${dir}/vocab.json`
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}
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/**
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* Load vocabulary from JSON file
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*/
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async loadVocab(): Promise<Record<string, number>> {
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if (cachedVocab) {
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return cachedVocab
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}
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const vocabPath = await this.getVocabPath()
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if (typeof process !== 'undefined') {
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// Node.js/Bun - read from filesystem
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try {
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const fs = await import('node:fs/promises')
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const content = await fs.readFile(vocabPath, 'utf-8')
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cachedVocab = JSON.parse(content)
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return cachedVocab!
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} catch (error) {
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throw new Error(
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`Failed to load vocabulary from ${vocabPath}: ${error instanceof Error ? error.message : String(error)}`
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)
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}
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} else {
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// Browser - fetch
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try {
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const response = await fetch(vocabPath)
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if (!response.ok) {
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throw new Error(`HTTP ${response.status}`)
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}
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cachedVocab = await response.json()
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return cachedVocab!
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} catch (error) {
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throw new Error(
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`Failed to fetch vocabulary from ${vocabPath}: ${error instanceof Error ? error.message : String(error)}`
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)
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}
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}
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}
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/**
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* Load model as ArrayBuffer (for ONNX session)
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*/
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async loadModel(): Promise<ArrayBuffer> {
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const modelPath = await this.getModelPath()
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if (typeof process !== 'undefined') {
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// Node.js/Bun - read from filesystem
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try {
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const fs = await import('node:fs/promises')
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const buffer = await fs.readFile(modelPath)
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// Convert Node.js Buffer to ArrayBuffer
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return new Uint8Array(buffer).buffer as ArrayBuffer
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} catch (error) {
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throw new Error(
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`Failed to load model from ${modelPath}: ${error instanceof Error ? error.message : String(error)}`
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)
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}
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} else {
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// Browser - fetch
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try {
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const response = await fetch(modelPath)
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if (!response.ok) {
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throw new Error(`HTTP ${response.status}`)
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}
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return await response.arrayBuffer()
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} catch (error) {
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throw new Error(
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`Failed to fetch model from ${modelPath}: ${error instanceof Error ? error.message : String(error)}`
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)
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}
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}
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}
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/**
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* Verify all required assets exist
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*/
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async verifyAssets(): Promise<{
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valid: boolean
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modelPath: string
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vocabPath: string
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errors: string[]
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}> {
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const errors: string[] = []
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const modelPath = await this.getModelPath()
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const vocabPath = await this.getVocabPath()
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if (!(await this.pathExists(modelPath))) {
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errors.push(`Model file not found: ${modelPath}`)
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}
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if (!(await this.pathExists(vocabPath))) {
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errors.push(`Vocabulary file not found: ${vocabPath}`)
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}
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return {
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valid: errors.length === 0,
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modelPath,
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vocabPath,
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errors,
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}
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}
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/**
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* Clear cached paths (for testing)
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*/
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clearCache(): void {
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this.modelDir = null
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cachedModelDir = null
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cachedVocab = null
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}
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}
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/**
|
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* Create asset loader instance
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*/
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export function createAssetLoader(): AssetLoader {
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return new AssetLoader()
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}
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/**
|
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* Singleton asset loader
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*/
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let singletonLoader: AssetLoader | null = null
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export function getAssetLoader(): AssetLoader {
|
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if (!singletonLoader) {
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singletonLoader = new AssetLoader()
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}
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return singletonLoader
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}
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|
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@ -25,16 +25,14 @@ export {
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cosineSimilarity,
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} from './CandleEmbeddingEngine.js'
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// Legacy components (for backward compatibility - not needed with Candle)
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// Auxiliary embedding components
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export { WordPieceTokenizer, createTokenizer } from './WordPieceTokenizer.js'
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export { EmbeddingPostProcessor, createPostProcessor } from './EmbeddingPostProcessor.js'
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export { AssetLoader, getAssetLoader, createAssetLoader } from './AssetLoader.js'
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|
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// Types
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export type {
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TokenizerConfig,
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TokenizedInput,
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InferenceConfig,
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EmbeddingResult,
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EngineStats,
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ModelConfig,
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|
|
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|||
|
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@ -6,8 +6,8 @@
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|||
*/
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||||
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||||
/**
|
||||
* Tokenizer configuration for WordPiece
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* @deprecated Tokenization now happens in Rust/WASM - kept for backward compatibility
|
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* Tokenizer configuration for WordPiece. Used by `WordPieceTokenizer` for the
|
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* JS-side tokenization path (auxiliary to the Rust/WASM embedding engine).
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*/
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export interface TokenizerConfig {
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/** Vocabulary mapping word → token ID */
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|
@ -27,8 +27,7 @@ export interface TokenizerConfig {
|
|||
}
|
||||
|
||||
/**
|
||||
* Result of tokenization
|
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* @deprecated Tokenization now happens in Rust/WASM - kept for backward compatibility
|
||||
* Result of tokenization. Returned by `WordPieceTokenizer.encode()`.
|
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*/
|
||||
export interface TokenizedInput {
|
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/** Token IDs including [CLS] and [SEP] */
|
||||
|
|
@ -41,23 +40,6 @@ export interface TokenizedInput {
|
|||
tokenCount: number
|
||||
}
|
||||
|
||||
/**
|
||||
* Inference engine configuration
|
||||
* @deprecated Model is now embedded in WASM - kept for backward compatibility
|
||||
*/
|
||||
export interface InferenceConfig {
|
||||
/** Path to model file (not used with embedded model) */
|
||||
modelPath: string
|
||||
/** Path to WASM files directory */
|
||||
wasmPath?: string
|
||||
/** Number of threads (1 for universal compatibility) */
|
||||
numThreads: number
|
||||
/** Enable SIMD if available */
|
||||
enableSimd: boolean
|
||||
/** Enable CPU memory arena */
|
||||
enableCpuMemArena: boolean
|
||||
}
|
||||
|
||||
/**
|
||||
* Embedding result with metadata
|
||||
*/
|
||||
|
|
|
|||
|
|
@ -645,8 +645,6 @@ export class GraphAdjacencyIndex implements GraphIndexProvider {
|
|||
sourceId: verb.sourceId,
|
||||
targetId: verb.targetId,
|
||||
vector: verb.vector,
|
||||
source: verb.sourceId,
|
||||
target: verb.targetId,
|
||||
verb: verb.verb,
|
||||
createdAt: { seconds: Math.floor(verb.createdAt / 1000), nanoseconds: (verb.createdAt % 1000) * 1000000 },
|
||||
updatedAt: { seconds: Math.floor(verb.updatedAt / 1000), nanoseconds: (verb.updatedAt % 1000) * 1000000 },
|
||||
|
|
|
|||
|
|
@ -1063,14 +1063,6 @@ export class JsHnswVectorIndex implements VectorIndexProvider {
|
|||
return true
|
||||
}
|
||||
|
||||
/**
|
||||
* Get all nouns in the index
|
||||
* @deprecated Use getNounsPaginated() instead for better scalability
|
||||
*/
|
||||
public getNouns(): Map<string, HNSWNoun> {
|
||||
return new Map(this.nouns)
|
||||
}
|
||||
|
||||
/**
|
||||
* Get nouns with pagination
|
||||
* @param options Pagination options
|
||||
|
|
|
|||
|
|
@ -198,49 +198,9 @@ export interface ValidImportOptions {
|
|||
}
|
||||
|
||||
/**
|
||||
* Deprecated import options from v3.x
|
||||
* Using these will cause TypeScript compile errors
|
||||
*
|
||||
* @deprecated These options are no longer supported in v4.x
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
* Complete import options interface.
|
||||
*/
|
||||
export interface DeprecatedImportOptions {
|
||||
/**
|
||||
* @deprecated Use `enableRelationshipInference` instead
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
*/
|
||||
extractRelationships?: never
|
||||
|
||||
/**
|
||||
* @deprecated Removed in v4.x - auto-detection is now always enabled
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
*/
|
||||
autoDetect?: never
|
||||
|
||||
/**
|
||||
* @deprecated Use `vfsPath` to specify the directory path instead
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
*/
|
||||
createFileStructure?: never
|
||||
|
||||
/**
|
||||
* @deprecated Removed in v4.x - all sheets are now processed automatically
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
*/
|
||||
excelSheets?: never
|
||||
|
||||
/**
|
||||
* @deprecated Removed in v4.x - table extraction is now automatic for PDF imports
|
||||
* @see {@link https://brainy.dev/docs/guides/migrating-to-v4 Migration Guide}
|
||||
*/
|
||||
pdfExtractTables?: never
|
||||
}
|
||||
|
||||
/**
|
||||
* Complete import options interface
|
||||
* Combines valid v4.x options with deprecated v3.x options (which cause TypeScript errors)
|
||||
*/
|
||||
export type ImportOptions = ValidImportOptions & DeprecatedImportOptions
|
||||
export type ImportOptions = ValidImportOptions
|
||||
|
||||
export interface ImportProgress {
|
||||
stage: 'detecting' | 'extracting' | 'storing-vfs' | 'storing-graph' | 'relationships' | 'complete'
|
||||
|
|
|
|||
|
|
@ -50,16 +50,6 @@ export type RebuildProgressCallback = (loaded: number, total: number) => void
|
|||
* Rebuild options for index rebuilding
|
||||
*/
|
||||
export interface RebuildOptions {
|
||||
/**
|
||||
* @deprecated Lazy mode is now auto-detected based on available memory.
|
||||
* System automatically chooses between:
|
||||
* - Preloading: Small datasets that fit comfortably in cache (< 80% threshold)
|
||||
* - On-demand: Large datasets loaded adaptively via UnifiedCache
|
||||
*
|
||||
* This option is kept for backwards compatibility but is ignored.
|
||||
* The system always uses adaptive caching.
|
||||
*/
|
||||
lazy?: boolean
|
||||
|
||||
/**
|
||||
* Batch size for pagination during rebuild
|
||||
|
|
|
|||
|
|
@ -28,7 +28,7 @@ import { getShardIdFromUuid } from './sharding.js'
|
|||
import { RefManager } from './cow/RefManager.js'
|
||||
import { BlobStorage, type COWStorageAdapter } from './cow/BlobStorage.js'
|
||||
import { CommitLog } from './cow/CommitLog.js'
|
||||
import { unwrapBinaryData, wrapBinaryData } from './cow/binaryDataCodec.js'
|
||||
import { unwrapBinaryData } from './cow/binaryDataCodec.js'
|
||||
import { prodLog } from '../utils/logger.js'
|
||||
import { MetadataWriteBuffer } from '../utils/metadataWriteBuffer.js'
|
||||
|
||||
|
|
@ -1126,10 +1126,9 @@ export abstract class BaseStorage extends BaseStorageAdapter {
|
|||
}
|
||||
|
||||
/**
|
||||
* Convert HNSWVerb to GraphVerb by combining with metadata
|
||||
* DEPRECATED: For backward compatibility only. Use getVerb() which returns HNSWVerbWithMetadata.
|
||||
*
|
||||
* @deprecated Use getVerb() instead which returns HNSWVerbWithMetadata
|
||||
* Convert an HNSW verb (raw vector store entry) into a `GraphVerb` shape by
|
||||
* combining with the verb's metadata. Used by internal code paths that need
|
||||
* the graph-layer shape rather than the storage-layer shape.
|
||||
*/
|
||||
protected async convertHNSWVerbToGraphVerb(hnswVerb: HNSWVerb): Promise<GraphVerb | null> {
|
||||
try {
|
||||
|
|
@ -1169,10 +1168,8 @@ export abstract class BaseStorage extends BaseStorageAdapter {
|
|||
sourceId: hnswVerb.sourceId,
|
||||
targetId: hnswVerb.targetId,
|
||||
|
||||
// Aliases for backward compatibility
|
||||
// Alias for ergonomic access
|
||||
type: hnswVerb.verb,
|
||||
source: hnswVerb.sourceId,
|
||||
target: hnswVerb.targetId,
|
||||
|
||||
// Optional fields from metadata file
|
||||
weight: metadata?.weight || 1.0,
|
||||
|
|
|
|||
|
|
@ -624,117 +624,53 @@ export class CacheManager<T extends HNSWNode | Edge | HNSWVerb> {
|
|||
// Use the async version to get more accurate memory information
|
||||
let optimalSize = await this.detectOptimalCacheSizeAsync()
|
||||
|
||||
// Check if we're in read-only mode
|
||||
const isReadOnly = this.options?.readOnly || false
|
||||
|
||||
// Check if we're using S3 or other remote storage
|
||||
const isRemoteStorage =
|
||||
this.coldStorageType === StorageType.S3 ||
|
||||
this.coldStorageType === StorageType.REMOTE_API
|
||||
|
||||
// If we have storage statistics, adjust based on total nodes/edges
|
||||
// Adjust by total entity count if we have storage statistics.
|
||||
if (this.storageStatistics) {
|
||||
const totalItems = (this.storageStatistics.totalNodes || 0) +
|
||||
(this.storageStatistics.totalEdges || 0)
|
||||
|
||||
// If total items is significant, adjust cache size
|
||||
if (totalItems > 0) {
|
||||
// Base percentage to cache - adjusted based on mode and storage
|
||||
let percentageToCache = 0.2 // Cache 20% of items by default
|
||||
let percentageToCache = isReadOnly ? 0.3 : 0.2
|
||||
|
||||
// For read-only mode, increase cache percentage
|
||||
if (isReadOnly) {
|
||||
percentageToCache = 0.3 // 30% for read-only mode
|
||||
|
||||
// For remote storage in read-only mode, be even more aggressive
|
||||
if (isRemoteStorage) {
|
||||
percentageToCache = 0.4 // 40% for remote storage in read-only mode
|
||||
}
|
||||
}
|
||||
// For remote storage in normal mode, increase slightly
|
||||
else if (isRemoteStorage) {
|
||||
percentageToCache = 0.25 // 25% for remote storage
|
||||
}
|
||||
|
||||
// For large datasets, cap the percentage to avoid excessive memory usage
|
||||
if (totalItems > 1000000) { // Over 1 million items
|
||||
if (totalItems > 1_000_000) {
|
||||
percentageToCache = Math.min(percentageToCache, 0.15)
|
||||
} else if (totalItems > 100000) { // Over 100K items
|
||||
} else if (totalItems > 100_000) {
|
||||
percentageToCache = Math.min(percentageToCache, 0.25)
|
||||
}
|
||||
|
||||
const statisticsBasedSize = Math.ceil(totalItems * percentageToCache)
|
||||
|
||||
// Use the smaller of the two to avoid memory issues
|
||||
optimalSize = Math.min(optimalSize, statisticsBasedSize)
|
||||
}
|
||||
}
|
||||
|
||||
// Adjust based on hit/miss ratio if we have enough data
|
||||
// Adjust by observed hit ratio.
|
||||
const totalAccesses = this.stats.hits + this.stats.misses
|
||||
if (totalAccesses > 100) {
|
||||
const hitRatio = this.stats.hits / totalAccesses
|
||||
|
||||
// Base adjustment factor
|
||||
let hitRatioFactor = 1.0
|
||||
|
||||
// If hit ratio is low, we might need a larger cache
|
||||
if (hitRatio < 0.5) {
|
||||
// Calculate adjustment factor based on hit ratio
|
||||
const baseAdjustment = 0.5 - hitRatio
|
||||
|
||||
// For read-only mode or remote storage, be more aggressive
|
||||
if (isReadOnly || isRemoteStorage) {
|
||||
hitRatioFactor = 1 + (baseAdjustment * 1.5) // Up to 75% increase
|
||||
} else {
|
||||
hitRatioFactor = 1 + baseAdjustment // Up to 50% increase
|
||||
}
|
||||
|
||||
optimalSize = Math.ceil(optimalSize * hitRatioFactor)
|
||||
}
|
||||
// If hit ratio is very high, we might be able to reduce cache size slightly
|
||||
else if (hitRatio > 0.9 && !isReadOnly && !isRemoteStorage) {
|
||||
// Only reduce cache size in normal mode with local storage
|
||||
// and only if hit ratio is very high
|
||||
hitRatioFactor = 0.9 // 10% reduction
|
||||
const hitRatioFactor = isReadOnly ? 1 + baseAdjustment * 1.5 : 1 + baseAdjustment
|
||||
optimalSize = Math.ceil(optimalSize * hitRatioFactor)
|
||||
} else if (hitRatio > 0.9 && !isReadOnly) {
|
||||
optimalSize = Math.ceil(optimalSize * 0.9)
|
||||
}
|
||||
}
|
||||
|
||||
// Check for operation patterns if available
|
||||
// Read-heavy workloads warrant a slightly larger cache.
|
||||
if (this.storageStatistics?.operations) {
|
||||
const ops = this.storageStatistics.operations
|
||||
const totalOps = ops.total || 1
|
||||
|
||||
// Calculate read/write ratio
|
||||
const readOps = (ops.search || 0) + (ops.get || 0)
|
||||
const writeOps = (ops.add || 0) + (ops.update || 0) + (ops.delete || 0)
|
||||
|
||||
if (totalOps > 100) {
|
||||
const readRatio = readOps / totalOps
|
||||
|
||||
// For read-heavy workloads, increase cache size
|
||||
if (readRatio > 0.8) {
|
||||
// More aggressive for remote storage
|
||||
const readAdjustment = isRemoteStorage ? 1.3 : 1.2
|
||||
optimalSize = Math.ceil(optimalSize * readAdjustment)
|
||||
}
|
||||
if (totalOps > 100 && readOps / totalOps > 0.8) {
|
||||
optimalSize = Math.ceil(optimalSize * 1.2)
|
||||
}
|
||||
}
|
||||
|
||||
// Ensure we have a reasonable minimum size based on environment and mode
|
||||
let minSize = 1000 // Default minimum
|
||||
|
||||
// For read-only mode, use a higher minimum
|
||||
if (isReadOnly) {
|
||||
minSize = 2000
|
||||
}
|
||||
|
||||
// For remote storage, use an even higher minimum
|
||||
if (isRemoteStorage) {
|
||||
minSize = isReadOnly ? 3000 : 2000
|
||||
}
|
||||
|
||||
const minSize = isReadOnly ? 2000 : 1000
|
||||
optimalSize = Math.max(optimalSize, minSize)
|
||||
|
||||
// Update the hot cache max size
|
||||
|
|
@ -941,98 +877,36 @@ export class CacheManager<T extends HNSWNode | Edge | HNSWVerb> {
|
|||
* @param cacheStats Optional cache statistics for more adaptive tuning
|
||||
*/
|
||||
private tuneBatchSize(cacheStats?: CacheStats): void {
|
||||
// Default batch size
|
||||
let batchSize = 10
|
||||
|
||||
// Use provided cache stats or internal stats
|
||||
const stats = cacheStats || this.getStats()
|
||||
|
||||
// Check if we're in read-only mode
|
||||
const isReadOnly = this.options?.readOnly || false
|
||||
|
||||
// Check if we're using S3 or other remote storage
|
||||
const isRemoteStorage =
|
||||
this.coldStorageType === StorageType.S3 ||
|
||||
this.coldStorageType === StorageType.REMOTE_API
|
||||
const totalItems = this.storageStatistics
|
||||
? (this.storageStatistics.totalNodes || 0) + (this.storageStatistics.totalEdges || 0)
|
||||
: 0
|
||||
const isLargeDataset = totalItems > 100_000
|
||||
const isVeryLargeDataset = totalItems > 1_000_000
|
||||
|
||||
// Get the total dataset size if available
|
||||
const totalItems = this.storageStatistics ?
|
||||
(this.storageStatistics.totalNodes || 0) + (this.storageStatistics.totalEdges || 0) : 0
|
||||
|
||||
// Determine if we're dealing with a large dataset
|
||||
const isLargeDataset = totalItems > 100000
|
||||
const isVeryLargeDataset = totalItems > 1000000
|
||||
|
||||
// Base batch size adjustment based on environment
|
||||
if (this.environment === Environment.NODE) {
|
||||
// Node.js can handle larger batches
|
||||
// Brainy 8.0 ships Node-like runtimes only (Bun, Deno, Node). All paths
|
||||
// funnel into the same batch-size envelope.
|
||||
batchSize = isReadOnly ? 30 : 20
|
||||
if (isLargeDataset) batchSize = Math.min(100, batchSize * 1.5)
|
||||
if (isVeryLargeDataset) batchSize = Math.min(200, batchSize * 2)
|
||||
|
||||
// For remote storage, increase batch size
|
||||
if (isRemoteStorage) {
|
||||
batchSize = isReadOnly ? 50 : 30
|
||||
}
|
||||
|
||||
// For large datasets, adjust batch size
|
||||
if (isLargeDataset) {
|
||||
batchSize = Math.min(100, batchSize * 1.5)
|
||||
}
|
||||
|
||||
// For very large datasets, adjust even more
|
||||
if (isVeryLargeDataset) {
|
||||
batchSize = Math.min(200, batchSize * 2)
|
||||
}
|
||||
} else if (this.environment === Environment.BROWSER) {
|
||||
// Browsers might need smaller batches
|
||||
batchSize = isReadOnly ? 15 : 10
|
||||
|
||||
// If we have memory information, adjust accordingly
|
||||
if (navigator.deviceMemory) {
|
||||
// Scale batch size with available memory
|
||||
const memoryFactor = isReadOnly ? 3 : 2
|
||||
batchSize = Math.max(5, Math.min(30, Math.floor(navigator.deviceMemory * memoryFactor)))
|
||||
|
||||
// For large datasets, adjust based on memory
|
||||
if (isLargeDataset && navigator.deviceMemory > 4) {
|
||||
batchSize = Math.min(50, batchSize * 1.5)
|
||||
}
|
||||
}
|
||||
} else if (this.environment === Environment.WORKER) {
|
||||
// Workers can handle moderate batch sizes
|
||||
batchSize = isReadOnly ? 20 : 15
|
||||
}
|
||||
|
||||
// Adjust based on cache hit/miss ratios
|
||||
// Adjust by hit-ratio observations.
|
||||
const totalHotAccesses = stats.hotCacheHits + stats.hotCacheMisses
|
||||
const totalWarmAccesses = stats.warmCacheHits + stats.warmCacheMisses
|
||||
|
||||
if (totalHotAccesses > 100) {
|
||||
const hotHitRatio = stats.hotCacheHits / totalHotAccesses
|
||||
|
||||
// If hot cache hit ratio is high, we're effectively using the cache
|
||||
// so we can use larger batches for better throughput
|
||||
if (hotHitRatio > 0.8) {
|
||||
// High hit ratio, increase batch size
|
||||
batchSize = Math.min(batchSize * 1.5, isRemoteStorage ? 250 : 150)
|
||||
} else if (hotHitRatio < 0.4) {
|
||||
// Low hit ratio, we might be fetching too much at once
|
||||
// Reduce batch size to be more selective
|
||||
batchSize = Math.max(5, batchSize * 0.8)
|
||||
}
|
||||
if (hotHitRatio > 0.8) batchSize = Math.min(batchSize * 1.5, 150)
|
||||
else if (hotHitRatio < 0.4) batchSize = Math.max(5, batchSize * 0.8)
|
||||
}
|
||||
|
||||
if (totalWarmAccesses > 50) {
|
||||
const warmHitRatio = stats.warmCacheHits / totalWarmAccesses
|
||||
|
||||
// If warm cache hit ratio is high, prefetching is effective
|
||||
// so we can use larger batches
|
||||
if (warmHitRatio > 0.7) {
|
||||
// High warm hit ratio, increase batch size
|
||||
batchSize = Math.min(batchSize * 1.3, isRemoteStorage ? 200 : 120)
|
||||
} else if (warmHitRatio < 0.3) {
|
||||
// Low warm hit ratio, reduce batch size
|
||||
batchSize = Math.max(5, batchSize * 0.9)
|
||||
}
|
||||
if (warmHitRatio > 0.7) batchSize = Math.min(batchSize * 1.3, 120)
|
||||
else if (warmHitRatio < 0.3) batchSize = Math.max(5, batchSize * 0.9)
|
||||
}
|
||||
|
||||
// If we have storage statistics with operation counts, adjust based on operation patterns
|
||||
|
|
@ -1043,140 +917,64 @@ export class CacheManager<T extends HNSWNode | Edge | HNSWVerb> {
|
|||
const getOps = (ops.get || 0)
|
||||
|
||||
if (totalOps > 100) {
|
||||
// Calculate search and get ratios
|
||||
const searchRatio = searchOps / totalOps
|
||||
const getRatio = getOps / totalOps
|
||||
|
||||
// For search-heavy workloads, use larger batch size
|
||||
if (searchRatio > 0.6) {
|
||||
// Search-heavy, increase batch size
|
||||
const searchFactor = isRemoteStorage ? 1.8 : 1.5
|
||||
batchSize = Math.min(isRemoteStorage ? 200 : 100, Math.ceil(batchSize * searchFactor))
|
||||
batchSize = Math.min(100, Math.ceil(batchSize * 1.5))
|
||||
}
|
||||
|
||||
// For get-heavy workloads, adjust batch size
|
||||
if (getRatio > 0.6) {
|
||||
// Get-heavy, adjust batch size based on storage type
|
||||
if (isRemoteStorage) {
|
||||
// For remote storage, larger batches reduce network overhead
|
||||
batchSize = Math.min(150, Math.ceil(batchSize * 1.5))
|
||||
} else {
|
||||
// For local storage, smaller batches might be more efficient
|
||||
batchSize = Math.max(10, Math.ceil(batchSize * 0.9))
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Check if we're experiencing memory pressure
|
||||
// Memory-pressure trim.
|
||||
if (stats.hotCacheSize > 0 && this.hotCacheMaxSize > 0) {
|
||||
const cacheUtilization = stats.hotCacheSize / this.hotCacheMaxSize
|
||||
|
||||
// If cache utilization is high, reduce batch size to avoid memory pressure
|
||||
if (cacheUtilization > 0.85) {
|
||||
batchSize = Math.max(5, Math.floor(batchSize * 0.8))
|
||||
}
|
||||
}
|
||||
|
||||
// Adjust based on overall hit/miss ratio if we have enough data
|
||||
// Combined hot+warm hit-ratio adjustment.
|
||||
const totalAccesses = stats.hotCacheHits + stats.hotCacheMisses + stats.warmCacheHits + stats.warmCacheMisses
|
||||
if (totalAccesses > 100) {
|
||||
const hitRatio = (stats.hotCacheHits + stats.warmCacheHits) / totalAccesses
|
||||
const increaseFactorForLowHitRatio = isReadOnly ? 1.5 : 1.2
|
||||
const decreaseFactorForHighHitRatio = isReadOnly ? 0.9 : 0.8
|
||||
|
||||
// Base adjustment factors
|
||||
let increaseFactorForLowHitRatio = isRemoteStorage ? 1.5 : 1.2
|
||||
let decreaseFactorForHighHitRatio = 0.8
|
||||
|
||||
// In read-only mode, be more aggressive with batch size adjustments
|
||||
if (isReadOnly) {
|
||||
increaseFactorForLowHitRatio = isRemoteStorage ? 2.0 : 1.5
|
||||
decreaseFactorForHighHitRatio = 0.9 // Less reduction in read-only mode
|
||||
}
|
||||
|
||||
// If hit ratio is high, we can use smaller batches
|
||||
if (hitRatio > 0.8 && !isVeryLargeDataset) {
|
||||
// High hit ratio, decrease batch size slightly
|
||||
// But don't decrease too much for large datasets or remote storage
|
||||
if (!(isLargeDataset && isRemoteStorage)) {
|
||||
batchSize = Math.max(isReadOnly ? 10 : 5, Math.floor(batchSize * decreaseFactorForHighHitRatio))
|
||||
}
|
||||
}
|
||||
// If hit ratio is low, we need larger batches
|
||||
else if (hitRatio < 0.5) {
|
||||
// Low hit ratio, increase batch size
|
||||
const maxBatchSize = isRemoteStorage ?
|
||||
(isVeryLargeDataset ? 300 : 200) :
|
||||
(isVeryLargeDataset ? 150 : 100)
|
||||
|
||||
} else if (hitRatio < 0.5) {
|
||||
const maxBatchSize = isVeryLargeDataset ? 150 : 100
|
||||
batchSize = Math.min(maxBatchSize, Math.ceil(batchSize * increaseFactorForLowHitRatio))
|
||||
}
|
||||
}
|
||||
|
||||
// Set minimum batch sizes based on storage type and mode
|
||||
let minBatchSize = 5
|
||||
|
||||
if (isRemoteStorage) {
|
||||
minBatchSize = isReadOnly ? 20 : 10
|
||||
} else if (isReadOnly) {
|
||||
minBatchSize = 10
|
||||
}
|
||||
|
||||
// Ensure batch size is within reasonable limits
|
||||
// Min/max envelope. 8.0 is Node-like only.
|
||||
const minBatchSize = isReadOnly ? 10 : 5
|
||||
batchSize = Math.max(minBatchSize, batchSize)
|
||||
|
||||
// Cap maximum batch size based on environment and storage
|
||||
const maxBatchSize = isRemoteStorage ?
|
||||
(this.environment === Environment.NODE ? 300 : 150) :
|
||||
(this.environment === Environment.NODE ? 150 : 75)
|
||||
|
||||
batchSize = Math.min(maxBatchSize, batchSize)
|
||||
batchSize = Math.min(150, batchSize)
|
||||
|
||||
// Update the batch size with the adaptively tuned value
|
||||
this.batchSize = Math.round(batchSize)
|
||||
}
|
||||
|
||||
/**
|
||||
* Detect the appropriate warm storage type based on environment
|
||||
* Resolve the warm-tier storage type. Brainy 8.0 ships filesystem +
|
||||
* memory only.
|
||||
*/
|
||||
private detectWarmStorageType(): StorageType {
|
||||
if (this.environment === Environment.BROWSER) {
|
||||
// Use OPFS if available, otherwise use memory
|
||||
if ('storage' in navigator && 'getDirectory' in navigator.storage) {
|
||||
return StorageType.OPFS
|
||||
}
|
||||
return StorageType.MEMORY
|
||||
} else if (this.environment === Environment.WORKER) {
|
||||
// Use OPFS if available, otherwise use memory
|
||||
if ('storage' in self && 'getDirectory' in (self as WorkerGlobalScope).storage!) {
|
||||
return StorageType.OPFS
|
||||
}
|
||||
return StorageType.MEMORY
|
||||
} else {
|
||||
// In Node.js, use filesystem
|
||||
return StorageType.FILESYSTEM
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Detect the appropriate cold storage type based on environment
|
||||
* Resolve the cold-tier storage type. Brainy 8.0 ships filesystem +
|
||||
* memory only.
|
||||
*/
|
||||
private detectColdStorageType(): StorageType {
|
||||
if (this.environment === Environment.BROWSER) {
|
||||
// Use OPFS if available, otherwise use memory
|
||||
if ('storage' in navigator && 'getDirectory' in navigator.storage) {
|
||||
return StorageType.OPFS
|
||||
}
|
||||
return StorageType.MEMORY
|
||||
} else if (this.environment === Environment.WORKER) {
|
||||
// Use OPFS if available, otherwise use memory
|
||||
if ('storage' in self && 'getDirectory' in (self as WorkerGlobalScope).storage!) {
|
||||
return StorageType.OPFS
|
||||
}
|
||||
return StorageType.MEMORY
|
||||
} else {
|
||||
// In Node.js, use S3 if configured, otherwise filesystem
|
||||
return StorageType.S3
|
||||
}
|
||||
return StorageType.FILESYSTEM
|
||||
}
|
||||
|
||||
/**
|
||||
|
|
|
|||
|
|
@ -83,41 +83,6 @@ export function unwrapBinaryData(data: any): Buffer {
|
|||
)
|
||||
}
|
||||
|
||||
/**
|
||||
* Wrap binary data for JSON storage
|
||||
*
|
||||
* ⚠️ WARNING: DO NOT USE THIS ON WRITE PATH!
|
||||
* ⚠️ Use key-based dispatch in baseStorage.ts COW adapter instead.
|
||||
* ⚠️ This function exists for legacy/compatibility only.
|
||||
*
|
||||
* DEPRECATED APPROACH: Tries to guess if data is JSON by parsing.
|
||||
* This is FRAGILE because compressed binary can accidentally parse as valid JSON,
|
||||
* causing blob integrity failures.
|
||||
*
|
||||
* SOLUTION: baseStorage.ts COW adapter now uses key naming convention:
|
||||
* - Keys with '-meta:' or 'ref:' prefix → Always JSON
|
||||
* - Keys with 'blob:', 'commit:', 'tree:' prefix → Always binary
|
||||
* No guessing needed!
|
||||
*
|
||||
* @param data - Buffer to wrap
|
||||
* @returns Wrapped object or parsed JSON object
|
||||
* @deprecated Use key-based dispatch in baseStorage.ts instead
|
||||
*/
|
||||
export function wrapBinaryData(data: Buffer): any {
|
||||
// Try to parse as JSON first (for metadata, trees, commits)
|
||||
// NOTE: This is the OLD approach - fragile because compressed data
|
||||
// can accidentally parse as valid JSON!
|
||||
try {
|
||||
return JSON.parse(data.toString())
|
||||
} catch {
|
||||
// Not JSON - wrap as binary data
|
||||
return {
|
||||
_binary: true,
|
||||
data: data.toString('base64')
|
||||
} as WrappedBinaryData
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Ensure data is a Buffer
|
||||
*
|
||||
|
|
|
|||
|
|
@ -61,7 +61,3 @@ export interface QueryPlan {
|
|||
estimatedCost: number
|
||||
}
|
||||
|
||||
/**
|
||||
* @deprecated Use brain.getTripleIntelligence() directly to get TripleIntelligenceSystem
|
||||
*/
|
||||
export type TripleIntelligenceEngine = any
|
||||
|
|
@ -369,12 +369,8 @@ export interface GraphNoun {
|
|||
*/
|
||||
export interface GraphVerb {
|
||||
id: string // Unique identifier for the verb
|
||||
/** @deprecated Use `from` (public API) or `sourceId` (storage). Will be removed in next major. */
|
||||
source: string // Entity UUID of the source noun
|
||||
/** @deprecated Use `to` (public API) or `targetId` (storage). Will be removed in next major. */
|
||||
target: string // Entity UUID of the target noun
|
||||
sourceId?: string // Entity UUID of the source noun (storage convention)
|
||||
targetId?: string // Entity UUID of the target noun (storage convention)
|
||||
sourceId: string // Entity UUID of the source noun
|
||||
targetId: string // Entity UUID of the target noun
|
||||
label?: string // Optional descriptive label
|
||||
verb: VerbType // Type of relationship
|
||||
createdAt: Timestamp | number // When the verb was created
|
||||
|
|
|
|||
|
|
@ -2309,14 +2309,6 @@ export class MetadataIndexManager implements MetadataIndexProvider {
|
|||
)
|
||||
}
|
||||
|
||||
/**
|
||||
* Get IDs matching multiple criteria (intersection) - LEGACY METHOD
|
||||
* @deprecated Use getIdsForFilter instead
|
||||
*/
|
||||
async getIdsForCriteria(criteria: Record<string, any>): Promise<string[]> {
|
||||
return this.getIdsForFilter(criteria)
|
||||
}
|
||||
|
||||
/**
|
||||
* Flush dirty entries to storage (non-blocking version)
|
||||
* NOTE: Sparse indices are flushed immediately in add/remove operations
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue