Files
aryx/tests/shared/pattern.test.ts
T
David KayaandCopilot bb7e5d4108 fix: preserve editable pattern graphs
Add mode-aware graph mutation helpers for pattern topology so backend
code can add and remove agents without forcing a full graph rebuild.
Also preserve an existing pattern graph in savePattern instead of
re-syncing it from defaults, and cover the new behavior with shared
and main-process tests.

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-03-27 21:50:01 +01:00

539 lines
17 KiB
TypeScript

import { describe, expect, test } from 'bun:test';
import {
addAgentToGraph,
createBuiltinPatterns,
removeAgentFromGraph,
resolvePatternGraph,
syncPatternGraph,
type PatternAgentDefinition,
validatePatternDefinition,
} from '@shared/domain/pattern';
const BUILTIN_TIMESTAMP = '2026-03-22T00:00:00.000Z';
function createAgent(id: string, name = `Agent ${id}`): PatternAgentDefinition {
return {
id,
name,
description: `${name} description`,
instructions: `${name} instructions`,
model: 'gpt-5.4',
reasoningEffort: 'medium',
};
}
describe('pattern validation', () => {
test('builtin patterns are valid except explicitly unavailable modes', () => {
const patterns = createBuiltinPatterns(BUILTIN_TIMESTAMP);
const validPatterns = patterns.filter((pattern) => pattern.availability !== 'unavailable');
for (const pattern of validPatterns) {
expect(validatePatternDefinition(pattern)).toEqual([]);
}
});
test('builtin patterns require tool-call approval by default', () => {
const patterns = createBuiltinPatterns(BUILTIN_TIMESTAMP);
for (const pattern of patterns) {
expect(pattern.approvalPolicy?.rules).toContainEqual({ kind: 'tool-call' });
}
});
test('magentic pattern is marked unavailable', () => {
const magentic = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'magentic',
);
expect(magentic).toBeDefined();
expect(validatePatternDefinition(magentic!)[0]?.message).toContain('unsupported');
});
test('single-agent mode reports agent count, warning, and model issues together', () => {
const singlePattern = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'single',
);
expect(singlePattern).toBeDefined();
const issues = validatePatternDefinition({
...singlePattern!,
agents: [
{
...singlePattern!.agents[0],
instructions: ' ',
},
{
...singlePattern!.agents[0],
id: 'agent-reviewer',
name: 'Reviewer',
model: '',
},
],
});
expect(issues.find((issue) => issue.field === 'agents')?.message).toBe(
'Single-agent chat requires exactly one agent.',
);
expect(issues.find((issue) => issue.field === 'agents.instructions')?.level).toBe('warning');
expect(issues.find((issue) => issue.field === 'agents.instructions')?.message).toBe(
'Agent "Primary Agent" should have instructions.',
);
expect(issues.find((issue) => issue.field === 'agents.model')?.message).toBe(
'Agent "Reviewer" requires a model identifier.',
);
});
test('multi-agent orchestration modes reject single-agent configurations', () => {
const patterns = createBuiltinPatterns(BUILTIN_TIMESTAMP);
const handoff = patterns.find((pattern) => pattern.mode === 'handoff');
const groupChat = patterns.find((pattern) => pattern.mode === 'group-chat');
expect(handoff).toBeDefined();
expect(groupChat).toBeDefined();
expect(
validatePatternDefinition({
...handoff!,
agents: handoff!.agents.slice(0, 1),
}).find((issue) => issue.field === 'agents')?.message,
).toBe('Handoff orchestration requires at least two agents.');
expect(
validatePatternDefinition({
...groupChat!,
agents: groupChat!.agents.slice(0, 1),
}).find((issue) => issue.field === 'agents')?.message,
).toBe('Group chat requires at least two agents.');
});
test('handoff builtin instructions clearly separate triage and specialist ownership', () => {
const handoff = createBuiltinPatterns(BUILTIN_TIMESTAMP).find((pattern) => pattern.mode === 'handoff');
expect(handoff).toBeDefined();
expect(handoff?.agents[0].instructions).toContain('hand off before inspecting files');
expect(handoff?.agents[0].instructions).toContain('Do not claim that you delegated');
expect(handoff?.agents[1].instructions).toContain('own the substantive answer');
expect(handoff?.agents[2].instructions).toContain('own the substantive answer');
});
test('group chat builtin instructions frame iterative drafting and review', () => {
const groupChat = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'group-chat',
);
expect(groupChat).toBeDefined();
expect(groupChat?.agents[0].instructions).toContain('refine your earlier draft');
expect(groupChat?.agents[1].instructions).toContain('specific improvements');
expect(groupChat?.agents[1].instructions).toContain('instead of restarting the conversation');
});
test('approval policy rejects unknown agent references', () => {
const singlePattern = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'single',
);
expect(singlePattern).toBeDefined();
const issues = validatePatternDefinition({
...singlePattern!,
approvalPolicy: {
rules: [
{
kind: 'tool-call',
agentIds: ['agent-missing'],
},
],
},
});
expect(issues.find((issue) => issue.field === 'approvalPolicy')?.message).toBe(
'Approval checkpoint "tool-call" references unknown agent "agent-missing".',
);
});
test('approval policy rejects unknown auto-approved tool references when tool names are provided', () => {
const singlePattern = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'single',
);
expect(singlePattern).toBeDefined();
const issues = validatePatternDefinition({
...singlePattern!,
approvalPolicy: {
rules: [{ kind: 'tool-call' }],
autoApprovedToolNames: ['web_fetch', 'unknown.tool'],
},
}, ['web_fetch']);
expect(issues.find((issue) => issue.field === 'approvalPolicy')?.message).toBe(
'Approval auto-approve references unknown tool "unknown.tool".',
);
});
test('builtin patterns seed graph topology for each orchestration mode', () => {
const patterns = createBuiltinPatterns(BUILTIN_TIMESTAMP);
const single = patterns.find((pattern) => pattern.mode === 'single');
const concurrent = patterns.find((pattern) => pattern.mode === 'concurrent');
const handoff = patterns.find((pattern) => pattern.mode === 'handoff');
const groupChat = patterns.find((pattern) => pattern.mode === 'group-chat');
expect(single).toBeDefined();
expect(concurrent).toBeDefined();
expect(handoff).toBeDefined();
expect(groupChat).toBeDefined();
expect(resolvePatternGraph(single!).nodes.map((node) => node.kind)).toEqual([
'user-input',
'agent',
'user-output',
]);
expect(resolvePatternGraph(concurrent!).nodes.map((node) => node.kind)).toEqual([
'user-input',
'distributor',
'agent',
'agent',
'agent',
'collector',
'user-output',
]);
expect(resolvePatternGraph(handoff!).edges).toContainEqual(
expect.objectContaining({
source: 'system-user-input',
target: 'agent-node-agent-handoff-triage',
}),
);
expect(resolvePatternGraph(handoff!).edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-triage',
target: 'agent-node-agent-handoff-ux',
}),
);
expect(resolvePatternGraph(groupChat!).nodes.map((node) => node.kind)).toContain('orchestrator');
});
test('syncPatternGraph rebuilds sequential topology from the current agent list', () => {
const sequential = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'sequential',
);
expect(sequential).toBeDefined();
const updated = syncPatternGraph({
...sequential!,
agents: [
...sequential!.agents,
{
id: 'agent-sequential-final',
name: 'Final Reviewer',
description: 'Adds a final pass.',
instructions: 'Do a last review.',
model: 'gpt-5.4',
reasoningEffort: 'medium',
},
],
});
const graph = resolvePatternGraph(updated);
expect(graph.nodes.filter((node) => node.kind === 'agent')).toHaveLength(4);
expect(graph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-reviewer',
target: 'agent-node-agent-sequential-final',
}),
);
expect(graph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-final',
target: 'system-user-output',
}),
);
});
test('addAgentToGraph appends a new sequential agent before user output', () => {
const sequential = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'sequential',
);
expect(sequential).toBeDefined();
const updatedGraph = addAgentToGraph(
resolvePatternGraph(sequential!),
sequential!.mode,
createAgent('agent-sequential-final', 'Final Reviewer'),
);
expect(updatedGraph.nodes.filter((node) => node.kind === 'agent')).toHaveLength(4);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-reviewer',
target: 'agent-node-agent-sequential-final',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-final',
target: 'system-user-output',
}),
);
expect(updatedGraph.edges).not.toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-reviewer',
target: 'system-user-output',
}),
);
});
test('addAgentToGraph wires concurrent agents between the distributor and collector', () => {
const concurrent = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'concurrent',
);
expect(concurrent).toBeDefined();
const updatedGraph = addAgentToGraph(
resolvePatternGraph(concurrent!),
concurrent!.mode,
createAgent('agent-concurrent-final', 'Final Implementer'),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'system-distributor',
target: 'agent-node-agent-concurrent-final',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-concurrent-final',
target: 'system-collector',
}),
);
});
test('addAgentToGraph wires handoff specialists to the entry agent and output', () => {
const handoff = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'handoff',
);
expect(handoff).toBeDefined();
const updatedGraph = addAgentToGraph(
resolvePatternGraph(handoff!),
handoff!.mode,
createAgent('agent-handoff-docs', 'Docs Specialist'),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-triage',
target: 'agent-node-agent-handoff-docs',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-docs',
target: 'agent-node-agent-handoff-triage',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-docs',
target: 'system-user-output',
}),
);
});
test('addAgentToGraph wires group-chat agents to the orchestrator', () => {
const groupChat = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'group-chat',
);
expect(groupChat).toBeDefined();
const updatedGraph = addAgentToGraph(
resolvePatternGraph(groupChat!),
groupChat!.mode,
createAgent('agent-group-editor', 'Editor'),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'system-orchestrator',
target: 'agent-node-agent-group-editor',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-group-editor',
target: 'system-orchestrator',
}),
);
});
test('addAgentToGraph rejects additions in single-agent mode', () => {
const single = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'single',
);
expect(single).toBeDefined();
expect(() =>
addAgentToGraph(resolvePatternGraph(single!), single!.mode, createAgent('agent-extra', 'Extra Agent')))
.toThrow('Single-agent chat requires exactly one agent.');
});
test('removeAgentFromGraph stitches linear gaps and re-numbers remaining agent orders', () => {
const sequential = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'sequential',
);
expect(sequential).toBeDefined();
const updatedGraph = removeAgentFromGraph(
resolvePatternGraph(sequential!),
sequential!.mode,
'agent-sequential-builder',
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-analyst',
target: 'agent-node-agent-sequential-reviewer',
}),
);
expect(updatedGraph.edges).not.toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-analyst',
target: 'agent-node-agent-sequential-builder',
}),
);
expect(updatedGraph.edges).not.toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-sequential-builder',
target: 'agent-node-agent-sequential-reviewer',
}),
);
expect(
updatedGraph.nodes
.filter((node) => node.kind === 'agent')
.map((node) => node.order),
).toEqual([0, 1]);
});
test('removeAgentFromGraph cleans up concurrent fan-out and fan-in edges', () => {
const concurrent = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'concurrent',
);
expect(concurrent).toBeDefined();
const updatedGraph = removeAgentFromGraph(
resolvePatternGraph(concurrent!),
concurrent!.mode,
'agent-concurrent-product',
);
expect(updatedGraph.nodes.some((node) => node.agentId === 'agent-concurrent-product')).toBe(false);
expect(updatedGraph.edges.some((edge) => edge.target === 'agent-node-agent-concurrent-product')).toBe(false);
expect(updatedGraph.edges.some((edge) => edge.source === 'agent-node-agent-concurrent-product')).toBe(false);
});
test('removeAgentFromGraph rewires a removed handoff entry agent to the next specialist', () => {
const handoff = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'handoff',
);
expect(handoff).toBeDefined();
const updatedGraph = removeAgentFromGraph(
resolvePatternGraph(handoff!),
handoff!.mode,
'agent-handoff-triage',
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'system-user-input',
target: 'agent-node-agent-handoff-ux',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-ux',
target: 'system-user-output',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-ux',
target: 'agent-node-agent-handoff-runtime',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-handoff-runtime',
target: 'agent-node-agent-handoff-ux',
}),
);
});
test('removeAgentFromGraph preserves orchestrator routes for the remaining group-chat agents', () => {
const groupChat = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'group-chat',
);
expect(groupChat).toBeDefined();
const updatedGraph = removeAgentFromGraph(
resolvePatternGraph(groupChat!),
groupChat!.mode,
'agent-group-reviewer',
);
expect(updatedGraph.nodes.some((node) => node.agentId === 'agent-group-reviewer')).toBe(false);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'system-orchestrator',
target: 'agent-node-agent-group-writer',
}),
);
expect(updatedGraph.edges).toContainEqual(
expect.objectContaining({
source: 'agent-node-agent-group-writer',
target: 'system-orchestrator',
}),
);
});
test('graph validation rejects branched sequential topology', () => {
const sequential = createBuiltinPatterns(BUILTIN_TIMESTAMP).find(
(pattern) => pattern.mode === 'sequential',
);
expect(sequential).toBeDefined();
const issues = validatePatternDefinition({
...sequential!,
graph: {
...resolvePatternGraph(sequential!),
edges: [
...resolvePatternGraph(sequential!).edges,
{
id: 'edge-system-user-input-to-agent-node-agent-sequential-builder-duplicate',
source: 'system-user-input',
target: 'agent-node-agent-sequential-builder',
},
],
},
});
expect(issues.find((issue) => issue.field === 'graph')?.message).toContain('single path');
});
});