224 lines
6.5 KiB
TypeScript
224 lines
6.5 KiB
TypeScript
/**
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* Duplicate Relationship Check Optimization Tests
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*
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* Tests for v5.8.0 optimization that uses GraphAdjacencyIndex
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* for O(log n) duplicate detection instead of O(n) storage scan.
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*/
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import { describe, it, expect, beforeEach, afterEach } from 'vitest'
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import { Brainy } from '../../../src/brainy.js'
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import { NounType, VerbType } from '../../../src/types/graphTypes.js'
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describe('Duplicate Check Optimization', () => {
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let brain: Brainy
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beforeEach(async () => {
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brain = new Brainy({ requireSubtype: false })
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await brain.init()
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})
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afterEach(async () => {
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// Cleanup is automatic with memory storage
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})
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it('should detect duplicate relationships using GraphAdjacencyIndex', async () => {
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// Create two entities
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const personId = await brain.add({
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data: { name: 'Alice' },
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type: NounType.Person
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})
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const orgId = await brain.add({
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data: { name: 'Acme Corp' },
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type: NounType.Organization
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})
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// Create first relationship
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const relationId1 = await brain.relate({
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from: personId,
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to: orgId,
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type: VerbType.ParticipatesIn
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})
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// Attempt to create duplicate relationship
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const relationId2 = await brain.relate({
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from: personId,
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to: orgId,
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type: VerbType.ParticipatesIn
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})
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// Should return the same ID (duplicate detected)
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expect(relationId2).toBe(relationId1)
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// Verify only one relationship exists
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const relations = await brain.related({ from: personId })
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expect(relations).toHaveLength(1)
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expect(relations[0].id).toBe(relationId1)
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})
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it('should allow different relationship types between same entities', async () => {
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const personId = await brain.add({
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data: { name: 'Bob' },
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type: NounType.Person
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})
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const projectId = await brain.add({
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data: { name: 'Project X' },
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type: NounType.Thing
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})
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// Create first relationship
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const relationId1 = await brain.relate({
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from: personId,
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to: projectId,
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type: VerbType.Creates
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})
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// Create second relationship with different type (not a duplicate)
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const relationId2 = await brain.relate({
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from: personId,
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to: projectId,
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type: VerbType.Modifies
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})
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// Should be different IDs (different verb types)
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expect(relationId2).not.toBe(relationId1)
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// Verify both relationships exist
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const relations = await brain.related({ from: personId })
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expect(relations).toHaveLength(2)
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// Both relations should exist with different IDs
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const relationIds = relations.map(r => r.id)
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expect(relationIds).toContain(relationId1)
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expect(relationIds).toContain(relationId2)
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})
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it('should handle duplicate check with many relationships (performance)', async () => {
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// Create source entity
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const sourceId = await brain.add({
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data: { name: 'Hub Entity' },
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type: NounType.Thing
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})
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// Create 50 target entities and relationships
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const targetIds: string[] = []
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for (let i = 0; i < 50; i++) {
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const targetId = await brain.add({
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data: { name: `Target ${i}` },
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type: NounType.Thing
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})
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targetIds.push(targetId)
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await brain.relate({
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from: sourceId,
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to: targetId,
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type: VerbType.RelatesTo
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})
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}
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// Now attempt to create duplicate with first target (should be fast with GraphIndex)
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const startTime = performance.now()
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const duplicateId = await brain.relate({
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from: sourceId,
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to: targetIds[0],
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type: VerbType.RelatesTo
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})
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const elapsed = performance.now() - startTime
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// Should be fast with O(log n) GraphIndex lookup (< 10ms even with 50 relationships)
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expect(elapsed).toBeLessThan(10)
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// Verify duplicate was detected
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const relations = await brain.related({ from: sourceId })
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expect(relations).toHaveLength(50) // No duplicate created
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})
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it('should use cached verb data for duplicate check', async () => {
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const entityA = await brain.add({
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data: { name: 'Entity A' },
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type: NounType.Thing
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})
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const entityB = await brain.add({
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data: { name: 'Entity B' },
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type: NounType.Thing
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})
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// Create relationship
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const relationId1 = await brain.relate({
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from: entityA,
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to: entityB,
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type: VerbType.RelatesTo
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})
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// Access GraphIndex to ensure verb is cached (8.0 BigInt boundary:
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// UUID → entity int in, verb ints out, resolved back via verbIntsToIds)
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const idMapper = (brain as any).metadataIndex.getIdMapper()
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const sourceInt = BigInt(idMapper.getInt(entityA)!)
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const verbInts: bigint[] = await (brain as any).graphIndex.getVerbIdsBySource(sourceInt)
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const verbIds = await (brain as any).graphIndex.verbIntsToIds(verbInts)
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expect(verbIds).toContain(relationId1)
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// Attempt duplicate (should use cached verb)
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const startTime = performance.now()
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const relationId2 = await brain.relate({
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from: entityA,
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to: entityB,
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type: VerbType.RelatesTo
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})
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const elapsed = performance.now() - startTime
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// Should be very fast with cached verb (< 5ms)
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expect(elapsed).toBeLessThan(5)
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expect(relationId2).toBe(relationId1)
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})
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it('should handle duplicate check across multiple verb types efficiently', async () => {
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const person = await brain.add({
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data: { name: 'Charlie' },
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type: NounType.Person
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})
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const org = await brain.add({
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data: { name: 'BigCorp' },
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type: NounType.Organization
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})
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// Create different relationship types
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const rel1 = await brain.relate({
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from: person,
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to: org,
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type: VerbType.Affects
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})
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const rel2 = await brain.relate({
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from: person,
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to: org,
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type: VerbType.Owns
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})
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// Verify both relationships exist
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let relations = await brain.related({ from: person })
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expect(relations).toHaveLength(2)
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const relationIds = relations.map(r => r.id)
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expect(relationIds).toContain(rel1)
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expect(relationIds).toContain(rel2)
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// Attempt duplicate of first relationship type
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const startTime = performance.now()
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const duplicate = await brain.relate({
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from: person,
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to: org,
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type: VerbType.Affects
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})
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const elapsed = performance.now() - startTime
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// Should detect duplicate efficiently (< 20ms)
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expect(elapsed).toBeLessThan(20)
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expect(duplicate).toBe(rel1)
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// Verify still same number of relationships (no duplicate added)
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const finalRelations = await brain.related({ from: person })
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expect(finalRelations.length).toBe(relations.length)
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})
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})
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