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evidence-dsl/tests/EvidenceComposition.test.js
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/**
* tests/EvidenceComposition.test.js — referencing a derived evidence as a
* sub-rule of another evidence (WHEN can_read(user, doc) where can_read is
* itself an evidence).
*
* Composition is resolved at COMPILE time: the generator inlines each
* evidence reference with the referenced evidence's own config (a linker
* pass that handles forward references and rejects cycles), so the engine
* evaluates a fully-resolved, acyclic config tree.
*/
import { describe, it } from 'node:test';
import assert from 'node:assert/strict';
import { Arbiter } from '@arbiter/core';
import { DSLCompiler } from '../src/DSLCompiler.js';
import { DSLRuntime } from '../src/runtime/DSLRuntime.js';
import { DSLValueGraph } from '../src/value-graph/DSLValueGraph.js';
const DEFS = `
definition Employee { id: string }
definition Group { id: string }
definition Doc { id: string }
fact owns(user: Employee, doc: Doc)
fact *trusted(user: Employee)
fact member_of(user: Employee, group: Group)
fact can_access(group: Group, doc: Doc)
`;
function compile(dsl, name = 'compose') {
const arb = new Arbiter();
const compiler = new DSLCompiler(arb);
const result = compiler.compile(dsl, name);
return { arb, result };
}
describe('Evidence composition', () => {
it('composes a direct evidence into another evidence', () => {
const { arb, result } = compile(`
${DEFS}
evidence can_read(user: Employee, doc: Doc) { owns(user, doc) }
evidence can_browse(user: Employee, doc: Doc) { can_read(user, doc) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'owns', 'doc:9', { possibility: 0.8 });
const res = arb.check('u:1', 'can_browse', 'doc:9');
assert.equal(res.possibility, 0.8);
// The reference is inlined to the underlying fact config.
assert.equal(arb.relationConfigs.get('can_browse').type, 'direct');
assert.equal(arb.relationConfigs.get('can_browse').relation, 'owns');
});
it('composes an evidence inside a defeasible WHEN/UNLESS', () => {
const { arb, result } = compile(`
${DEFS}
evidence can_read(user: Employee, doc: Doc) { owns(user, doc) }
evidence can_open(user: Employee, doc: Doc) { WHEN can_read(user, doc) UNLESS trusted(user) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'owns', 'doc:9', { possibility: 0.9 });
assert.equal(arb.check('u:1', 'can_open', 'doc:9').possibility, 0.9);
arb.addRelation('u:1', 'trusted', 'u:1', { possibility: 1.0 });
const denied = arb.check('u:1', 'can_open', 'doc:9');
assert.equal(denied.possibility, 0);
assert.equal(denied.reason, 'defeated_by_unless');
});
it('composes a chain evidence into another evidence', () => {
const { arb, result } = compile(`
${DEFS}
evidence can_enter(user: Employee, doc: Doc) { member_of(user, *g) { can_access(g, doc) } }
evidence can_work(user: Employee, doc: Doc) { can_enter(user, doc) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('g:1', 'Group'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'member_of', 'g:1', { possibility: 1.0 });
arb.addRelation('g:1', 'can_access', 'doc:9', { possibility: 0.7 });
const res = arb.check('u:1', 'can_work', 'doc:9');
assert.equal(res.possibility, 0.7);
assert.equal(arb.relationConfigs.get('can_work').type, 'chain');
});
it('composes transitively (A → B → fact) and re-derives dependencies', () => {
const { arb, result } = compile(`
${DEFS}
evidence can_read(user: Employee, doc: Doc) { owns(user, doc) }
evidence can_browse(user: Employee, doc: Doc) { can_read(user, doc) }
evidence can_open(user: Employee, doc: Doc) { can_browse(user, doc) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'owns', 'doc:9', { possibility: 0.6 });
assert.equal(arb.check('u:1', 'can_open', 'doc:9').possibility, 0.6);
assert.deepEqual(arb.relationConfigs.get('can_open').dependsOn, ['owns']);
});
it('composes a value-carrying evidence and preserves subject-as-object scope', () => {
const { arb, result } = compile(`
${DEFS}
fact *user_risk(user: Employee, value: number)
evidence risk_ok(user: Employee, doc: Doc) { user_risk(user, 1) }
evidence can_proceed(user: Employee, doc: Doc) { risk_ok(user, doc) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'user_risk', 'u:1', { possibility: 1.0, value: 1 });
const res = arb.check('u:1', 'can_proceed', 'doc:9');
assert.equal(res.possibility, 1);
});
it('composes evidence inside a comparator operand', () => {
const { arb, result } = compile(`
${DEFS}
fact *user_risk(user: Employee, value: number)
fact *risk_limit(doc: Doc, value: number)
evidence user_risk_ok(user: Employee, doc: Doc) { user_risk(user, 1) }
evidence can_proceed(user: Employee, doc: Doc) { user_risk_ok(user, doc) }
`);
assert.ok(result.success, JSON.stringify(result.errors));
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'user_risk', 'u:1', { possibility: 1.0, value: 1 });
assert.equal(arb.check('u:1', 'can_proceed', 'doc:9').possibility, 1);
});
it('rejects cyclic evidence references at compile time', () => {
const { result } = compile(`
${DEFS}
evidence a(user: Employee, doc: Doc) { b(user, doc) }
evidence b(user: Employee, doc: Doc) { a(user, doc) }
`);
assert.equal(result.success, false);
assert.ok(result.errors.some(e => /[Cc]yclic/.test(e)), JSON.stringify(result.errors));
});
it('rejects self-referencing evidence at compile time', () => {
const { result } = compile(`
${DEFS}
evidence a(user: Employee, doc: Doc) { a(user, doc) }
`);
assert.equal(result.success, false);
assert.ok(result.errors.some(e => /[Cc]yclic/.test(e)), JSON.stringify(result.errors));
});
it('keeps the referenced evidence checkable in its own right', () => {
const { arb, result } = compile(`
${DEFS}
evidence can_read(user: Employee, doc: Doc) { owns(user, doc) }
evidence can_browse(user: Employee, doc: Doc) { can_read(user, doc) }
`);
assert.ok(result.success);
arb.addNode('u:1', 'Employee'); arb.addNode('doc:9', 'Doc');
arb.addRelation('u:1', 'owns', 'doc:9', { possibility: 0.5 });
assert.equal(arb.check('u:1', 'can_read', 'doc:9').possibility, 0.5);
assert.equal(arb.check('u:1', 'can_browse', 'doc:9').possibility, 0.5);
});
describe('measure + evidence composition', () => {
const M_DEFS = `
definition Employee { id: string }
measure budget_used(user: Employee) { } PROVIDES number
measure budget_limit(user: Employee) { } PROVIDES number
evidence can_use(user: Employee, doc: string) { budget_used(user) <= budget_limit(user) }
`;
it('compiles an evidence comparator over measure valueRelations', () => {
const { arb, result } = compile(M_DEFS, 'm+e-compile');
assert.ok(result.success, JSON.stringify(result.errors));
const cfg = arb.relationConfigs.get('can_use');
assert.equal(cfg.type, 'relational_comparator');
assert.equal(cfg.left.valueRelation, 'budget_used');
assert.equal(cfg.right.valueRelation, 'budget_limit');
assert.deepEqual(cfg.dependsOn, ['budget_used', 'budget_limit']);
assert.equal(cfg._needsValues, true);
});
it('evaluates with measure values from registered providers (measure → evidence)', async () => {
const rt = new DSLRuntime(new Arbiter()).compile(M_DEFS, 'm+e-provider');
const dvg = new DSLValueGraph(rt);
dvg.attach(); // wires runtime.measure through the value-graph
rt.registerMeasure('budget_used', async () => ({ value: 900 }));
rt.registerMeasure('budget_limit', async () => ({ value: 1000 }));
rt.arbiter.addNode('u:1', 'Employee');
// Both systems live: the measure resolves standalone...
assert.equal((await rt.measure('budget_used', { user: 'u:1' })).value, 900);
// ...and composes into the evidence comparator.
const allow = await rt.check('u:1', 'can_use', 'doc:9');
assert.equal(allow.possibility, 1);
assert.equal(allow.reason, 'allow_rule_matched');
assert.ok(allow.providedFacts.includes('budget_used'), 'measure injected as a partial-graph edge');
});
it('evaluates with measure values stored in the value-graph (setValue)', async () => {
const rt = new DSLRuntime(new Arbiter()).compile(M_DEFS, 'm+e-vg');
const dvg = new DSLValueGraph(rt);
dvg.attach();
dvg.setValue('budget_used', { __subject: 'u:1', user: 'u:1' }, 900);
dvg.setValue('budget_limit', { __subject: 'u:1', user: 'u:1' }, 1000);
rt.arbiter.addNode('u:1', 'Employee');
const allow = await rt.check('u:1', 'can_use', 'doc:9');
assert.equal(allow.possibility, 1, 'in-budget evidence allowed from graph-sourced measures');
// Over budget → the comparator denies.
const rt2 = new DSLRuntime(new Arbiter()).compile(M_DEFS, 'm+e-vg2');
const dvg2 = new DSLValueGraph(rt2);
dvg2.attach();
dvg2.setValue('budget_used', { __subject: 'u:1', user: 'u:1' }, 1200);
dvg2.setValue('budget_limit', { __subject: 'u:1', user: 'u:1' }, 1000);
rt2.arbiter.addNode('u:1', 'Employee');
const deny = await rt2.check('u:1', 'can_use', 'doc:9');
assert.equal(deny.possibility, 0);
assert.equal(deny.reason, 'values_compared_comparison_false');
});
});
});