Files
aryx/tests/shared/workflow.test.ts
T
David KayaandCopilot 778c3b4a5b fix: synchronize workflow iteration settings across edges, mode settings, and scaffold
For builder-based orchestration modes (group-chat, handoff), the loop edge
maxIterations, workflow settings.maxIterations, and mode-specific settings
(e.g. groupChat.maxRounds) were independently editable but only the mode
settings controlled runtime behavior. This caused confusion when changing
one did not update the others.

Changes:
- Add syncBuilderModeEdgeIterations() to keep loop edge maxIterations in
  sync with the authoritative mode settings for builder-based modes
- Wire sync into normalizeWorkflowDefinition so edges are consistent on
  load/normalization
- Update scaffoldGraphForMode to accept optional settings instead of
  hardcoded iteration values (4 for handoff, 5 for group-chat)
- Sync settings.maxIterations <-> groupChat.maxRounds bidirectionally
  when either changes in the UI
- Make loop edge controls read-only in the graph inspector for
  builder-based modes with explanatory text
- Add 8 consistency tests validating built-in workflows, scaffold
  behavior, and normalization sync

Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com>
2026-04-07 11:04:38 +02:00

750 lines
27 KiB
TypeScript

import { describe, expect, test } from 'bun:test';
import {
buildWorkflowExecutionDefinition,
createBuiltinWorkflows,
createDefaultModeSettings,
isBuilderBasedMode,
isGraphBasedMode,
normalizeWorkflowDefinition,
scaffoldGraphForMode,
validateWorkflowDefinition,
type WorkflowDefinition,
type WorkflowNode,
} from '@shared/domain/workflow';
const TIMESTAMP = '2026-04-05T00:00:00.000Z';
function createWorkflow(): WorkflowDefinition {
return {
id: 'workflow-1',
name: 'Agent Workflow',
description: 'A simple workflow.',
createdAt: TIMESTAMP,
updatedAt: TIMESTAMP,
graph: {
nodes: [
{
id: 'start',
kind: 'start',
label: 'Start',
position: { x: 0, y: 0 },
config: { kind: 'start' },
},
{
id: 'agent-primary',
kind: 'agent',
label: 'Primary Agent',
position: { x: 200, y: 0 },
order: 0,
config: {
kind: 'agent',
id: 'agent-primary',
name: 'Primary Agent',
description: 'Handles the task.',
instructions: 'Do the work.',
model: 'gpt-5.4',
reasoningEffort: 'medium',
},
},
{
id: 'end',
kind: 'end',
label: 'End',
position: { x: 400, y: 0 },
config: { kind: 'end' },
},
],
edges: [
{ id: 'edge-start-agent', source: 'start', target: 'agent-primary', kind: 'direct' },
{ id: 'edge-agent-end', source: 'agent-primary', target: 'end', kind: 'direct' },
],
},
settings: {
checkpointing: { enabled: false },
executionMode: 'off-thread',
},
};
}
function createReferencedSubWorkflow(): WorkflowDefinition {
return {
id: 'child-workflow',
name: 'Child Workflow',
description: 'Nested child workflow.',
createdAt: TIMESTAMP,
updatedAt: TIMESTAMP,
graph: {
nodes: [
{
id: 'start',
kind: 'start',
label: 'Start',
position: { x: 0, y: 0 },
config: { kind: 'start' },
},
{
id: 'agent-reviewer',
kind: 'agent',
label: 'Reviewer Agent',
position: { x: 200, y: 0 },
order: 0,
config: {
kind: 'agent',
id: 'agent-reviewer',
name: 'Reviewer Agent',
description: 'Reviews the task.',
instructions: 'Review the task.',
model: 'gpt-5.4',
},
},
{
id: 'end',
kind: 'end',
label: 'End',
position: { x: 400, y: 0 },
config: { kind: 'end' },
},
],
edges: [
{ id: 'edge-start-reviewer', source: 'start', target: 'agent-reviewer', kind: 'direct' },
{ id: 'edge-reviewer-end', source: 'agent-reviewer', target: 'end', kind: 'direct' },
],
},
settings: {
checkpointing: { enabled: false },
executionMode: 'off-thread',
},
};
}
describe('workflow validation', () => {
test('accepts a simple start-agent-end workflow', () => {
expect(validateWorkflowDefinition(createWorkflow())).toEqual([]);
});
test('accepts phase 4 executor node kinds as executable work', () => {
const workflow = createWorkflow();
workflow.graph.nodes[1] = {
id: 'invoke-function',
kind: 'invoke-function',
label: 'Function Tool',
position: { x: 100, y: 0 },
config: {
kind: 'invoke-function',
functionName: 'GetUserData',
},
};
workflow.graph.edges[0] = { id: 'edge-start-fn', source: 'start', target: 'invoke-function', kind: 'direct' };
workflow.graph.edges[1] = { id: 'edge-fn-end', source: 'invoke-function', target: 'end', kind: 'direct' };
expect(validateWorkflowDefinition(workflow)).toEqual([]);
});
test('counts function and request port nodes as executable work', () => {
const functionWorkflow = createWorkflow();
functionWorkflow.graph.nodes[1] = {
id: 'invoke-function',
kind: 'invoke-function',
label: 'Function Tool',
position: { x: 200, y: 0 },
config: {
kind: 'invoke-function',
functionName: 'identity',
},
};
functionWorkflow.graph.edges[0] = { id: 'edge-start-function', source: 'start', target: 'invoke-function', kind: 'direct' };
functionWorkflow.graph.edges[1] = { id: 'edge-function-end', source: 'invoke-function', target: 'end', kind: 'direct' };
const requestPortWorkflow = createWorkflow();
requestPortWorkflow.graph.nodes[1] = {
id: 'request-port',
kind: 'request-port',
label: 'Approval',
position: { x: 200, y: 0 },
config: {
kind: 'request-port',
portId: 'approval',
requestType: 'Question',
responseType: 'string',
},
};
requestPortWorkflow.graph.edges[0] = { id: 'edge-start-port', source: 'start', target: 'request-port', kind: 'direct' };
requestPortWorkflow.graph.edges[1] = { id: 'edge-port-end', source: 'request-port', target: 'end', kind: 'direct' };
expect(validateWorkflowDefinition(functionWorkflow)).toEqual([]);
expect(validateWorkflowDefinition(requestPortWorkflow)).toEqual([]);
});
test('rejects invalid phase 4 executor configs', () => {
const functionWorkflow = createWorkflow();
functionWorkflow.graph.nodes[1] = {
id: 'invoke-function',
kind: 'invoke-function',
label: 'Function Tool',
position: { x: 200, y: 0 },
config: {
kind: 'invoke-function',
functionName: ' ',
},
};
functionWorkflow.graph.edges[0] = { id: 'edge-start-function', source: 'start', target: 'invoke-function', kind: 'direct' };
functionWorkflow.graph.edges[1] = { id: 'edge-function-end', source: 'invoke-function', target: 'end', kind: 'direct' };
const requestPortWorkflow = createWorkflow();
requestPortWorkflow.graph.nodes[1] = {
id: 'request-port',
kind: 'request-port',
label: 'Approval',
position: { x: 200, y: 0 },
config: {
kind: 'request-port',
portId: ' ',
requestType: '',
responseType: ' ',
},
};
requestPortWorkflow.graph.edges[0] = { id: 'edge-start-port', source: 'start', target: 'request-port', kind: 'direct' };
requestPortWorkflow.graph.edges[1] = { id: 'edge-port-end', source: 'request-port', target: 'end', kind: 'direct' };
expect(validateWorkflowDefinition(functionWorkflow).some((issue) => issue.field === 'graph.nodes.config.functionName')).toBe(true);
const requestPortIssues = validateWorkflowDefinition(requestPortWorkflow);
expect(requestPortIssues.some((issue) => issue.field === 'graph.nodes.config.portId')).toBe(true);
expect(requestPortIssues.some((issue) => issue.field === 'graph.nodes.config.requestType')).toBe(true);
expect(requestPortIssues.some((issue) => issue.field === 'graph.nodes.config.responseType')).toBe(true);
});
test('accepts sub-workflow nodes with inline workflows', () => {
const inlineWorkflow = createReferencedSubWorkflow();
const workflow = createWorkflow();
workflow.graph.nodes[1] = {
id: 'sub-workflow',
kind: 'sub-workflow',
label: 'Nested Workflow',
position: { x: 200, y: 0 },
config: {
kind: 'sub-workflow',
inlineWorkflow,
},
};
workflow.graph.edges[0] = { id: 'edge-start-sub', source: 'start', target: 'sub-workflow', kind: 'direct' };
workflow.graph.edges[1] = { id: 'edge-sub-end', source: 'sub-workflow', target: 'end', kind: 'direct' };
expect(validateWorkflowDefinition(workflow)).toEqual([]);
});
test('rejects sub-workflow nodes without exactly one workflow source', () => {
const workflow = createWorkflow();
workflow.graph.nodes[1] = {
id: 'sub-workflow',
kind: 'sub-workflow',
label: 'Nested Workflow',
position: { x: 200, y: 0 },
config: {
kind: 'sub-workflow',
},
};
workflow.graph.edges[0] = { id: 'edge-start-sub', source: 'start', target: 'sub-workflow', kind: 'direct' };
workflow.graph.edges[1] = { id: 'edge-sub-end', source: 'sub-workflow', target: 'end', kind: 'direct' };
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.message.includes('exactly one of workflowId or inlineWorkflow'))).toBe(true);
});
test('builds an execution definition from workflow agents', () => {
const execution = buildWorkflowExecutionDefinition(createWorkflow());
expect(execution.id).toBe('workflow-1');
expect(execution.agents).toHaveLength(1);
expect(execution.agents[0]?.name).toBe('Primary Agent');
expect(execution.orchestrationMode).toBe('single');
});
test('includes referenced sub-workflow agents when building execution definitions', () => {
const childWorkflow = createReferencedSubWorkflow();
const workflow = createWorkflow();
workflow.graph.nodes[1] = {
id: 'sub-workflow',
kind: 'sub-workflow',
label: 'Nested Workflow',
position: { x: 200, y: 0 },
config: {
kind: 'sub-workflow',
workflowId: childWorkflow.id,
},
};
workflow.graph.edges[0] = { id: 'edge-start-sub', source: 'start', target: 'sub-workflow', kind: 'direct' };
workflow.graph.edges[1] = { id: 'edge-sub-end', source: 'sub-workflow', target: 'end', kind: 'direct' };
const execution = buildWorkflowExecutionDefinition(workflow, {
resolveWorkflow: (workflowId: string) => workflowId === childWorkflow.id ? childWorkflow : undefined,
});
expect(execution.orchestrationMode).toBe('single');
expect(execution.agents.map((agent) => agent.id)).toEqual(['agent-reviewer']);
});
test('accepts simple property and expression conditions', () => {
const workflow = createWorkflow();
workflow.graph.edges[0] = {
...workflow.graph.edges[0]!,
condition: {
type: 'property',
combinator: 'and',
rules: [
{
propertyPath: 'role',
operator: 'equals',
value: 'user',
},
],
},
};
workflow.graph.edges[1] = {
...workflow.graph.edges[1]!,
condition: {
type: 'expression',
expression: 'role == "assistant" || role == "user"',
},
};
expect(validateWorkflowDefinition(workflow)).toEqual([]);
});
test('rejects invalid condition operators and expressions', () => {
const workflow = createWorkflow();
workflow.graph.edges[0] = {
...workflow.graph.edges[0]!,
condition: {
type: 'property',
rules: [
{
propertyPath: 'role',
operator: 'bad-op' as 'equals',
value: 'user',
},
],
},
};
workflow.graph.edges[1] = {
...workflow.graph.edges[1]!,
condition: {
type: 'expression',
expression: 'role ~= "user"',
},
};
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.field === 'graph.edges.condition.rules.operator')).toBe(true);
expect(issues.some((issue) => issue.field === 'graph.edges.condition.expression')).toBe(true);
});
test('rejects unmarked loop edges and requires termination metadata', () => {
const workflow = createWorkflow();
workflow.graph.edges.push({
id: 'edge-agent-loop',
source: 'agent-primary',
target: 'agent-primary',
kind: 'direct',
});
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.field === 'graph.edges.isLoop')).toBe(true);
expect(issues.some((issue) => issue.field === 'graph.edges.condition')).toBe(true);
expect(issues.some((issue) => issue.field === 'graph.edges.maxIterations')).toBe(true);
});
test('accepts loop edges with condition, cap, and exit path', () => {
const workflow = createWorkflow();
workflow.graph.edges.push({
id: 'edge-agent-loop',
source: 'agent-primary',
target: 'agent-primary',
kind: 'direct',
isLoop: true,
maxIterations: 3,
condition: {
type: 'property',
rules: [
{
propertyPath: 'iteration',
operator: 'lt',
value: '3',
},
],
},
});
expect(validateWorkflowDefinition(workflow)).toEqual([]);
});
test('creates default mode settings for builder-based modes', () => {
expect(createDefaultModeSettings()).toBeUndefined();
expect(createDefaultModeSettings('single')).toBeUndefined();
expect(createDefaultModeSettings('handoff')).toEqual({
handoff: {
toolCallFiltering: 'handoff-only',
returnToPrevious: false,
},
});
expect(createDefaultModeSettings('group-chat')).toEqual({
groupChat: {
selectionStrategy: 'round-robin',
maxRounds: 5,
},
});
});
test('identifies graph-based and builder-based orchestration modes', () => {
expect(isGraphBasedMode('single')).toBe(true);
expect(isGraphBasedMode('sequential')).toBe(true);
expect(isGraphBasedMode('concurrent')).toBe(true);
expect(isGraphBasedMode('handoff')).toBe(false);
expect(isBuilderBasedMode('handoff')).toBe(true);
expect(isBuilderBasedMode('group-chat')).toBe(true);
expect(isBuilderBasedMode('single')).toBe(false);
});
test('scaffolds single mode while preserving the provided agent node', () => {
const agentNode = createWorkflow().graph.nodes[1] as WorkflowNode;
const graph = scaffoldGraphForMode('single', [agentNode]);
expect(graph.nodes.map((node) => node.id)).toEqual(['start', 'agent-primary', 'end']);
expect(graph.edges.map((edge) => edge.kind)).toEqual(['direct', 'direct']);
expect(graph.nodes[1]?.config.kind).toBe('agent');
expect(graph.nodes[1]?.config.kind === 'agent' ? graph.nodes[1].config.name : '').toBe('Primary Agent');
});
test('scaffolds concurrent mode with fan-out and fan-in edges', () => {
const graph = scaffoldGraphForMode('concurrent');
expect(graph.nodes[0]?.id).toBe('start');
expect(graph.nodes.at(-1)?.id).toBe('end');
expect(graph.edges.filter((edge) => edge.kind === 'fan-out')).toHaveLength(2);
expect(graph.edges.filter((edge) => edge.kind === 'fan-in')).toHaveLength(2);
});
test('scaffolds handoff mode with triage and specialist return loops', () => {
const graph = scaffoldGraphForMode('handoff');
const loopEdges = graph.edges.filter((edge) => edge.isLoop);
expect(graph.nodes.map((node) => node.id)).toContain('agent-handoff-triage');
// Both forward (triage→specialist) and return (specialist→triage) edges are loops
expect(loopEdges).toHaveLength(2);
expect(loopEdges.every((edge) => edge.maxIterations === 4)).toBe(true);
expect(loopEdges.every((edge) => edge.condition?.type === 'always')).toBe(true);
});
test('scaffolds group-chat mode with loop edges between agent nodes', () => {
const graph = scaffoldGraphForMode('group-chat');
const loopEdges = graph.edges.filter((edge) => edge.isLoop);
expect(loopEdges.length).toBeGreaterThanOrEqual(2);
expect(loopEdges.every((edge) => edge.condition?.type === 'always')).toBe(true);
});
test('normalizes mode settings for builder-based workflows', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'handoff';
workflow.settings.modeSettings = {
handoff: {
toolCallFiltering: 'all',
returnToPrevious: true,
handoffInstructions: ' Delegate carefully. ',
triageAgentNodeId: ' agent-primary ',
},
};
const normalized = normalizeWorkflowDefinition(workflow);
expect(normalized.settings.modeSettings).toEqual({
handoff: {
toolCallFiltering: 'all',
returnToPrevious: true,
handoffInstructions: 'Delegate carefully.',
triageAgentNodeId: 'agent-primary',
},
});
});
test('rejects single mode graphs that use multiple agents or fan edges', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'single';
workflow.graph.nodes.splice(2, 0, {
id: 'agent-secondary',
kind: 'agent',
label: 'Secondary Agent',
position: { x: 320, y: 120 },
order: 1,
config: {
kind: 'agent',
id: 'agent-secondary',
name: 'Secondary Agent',
description: 'Handles backup work.',
instructions: 'Assist the primary agent.',
model: 'gpt-5.4',
},
});
workflow.graph.edges = [
{ id: 'edge-start-primary', source: 'start', target: 'agent-primary', kind: 'fan-out', fanOutConfig: { strategy: 'broadcast' } },
{ id: 'edge-start-secondary', source: 'start', target: 'agent-secondary', kind: 'fan-out', fanOutConfig: { strategy: 'broadcast' } },
{ id: 'edge-primary-end', source: 'agent-primary', target: 'end', kind: 'fan-in' },
{ id: 'edge-secondary-end', source: 'agent-secondary', target: 'end', kind: 'fan-in' },
];
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.message.includes('Single mode requires exactly one agent node'))).toBe(true);
expect(issues.some((issue) => issue.message.includes('Single mode does not support fan-out or fan-in edges'))).toBe(true);
});
test('warns when sequential mode is not shaped like a linear graph', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'sequential';
workflow.graph.nodes.splice(2, 0, {
id: 'agent-secondary',
kind: 'agent',
label: 'Secondary Agent',
position: { x: 220, y: 120 },
order: 1,
config: {
kind: 'agent',
id: 'agent-secondary',
name: 'Secondary Agent',
description: 'Handles follow-up work.',
instructions: 'Follow up.',
model: 'gpt-5.4',
},
});
workflow.graph.edges = [
{ id: 'edge-start-primary', source: 'start', target: 'agent-primary', kind: 'direct' },
{ id: 'edge-start-secondary', source: 'start', target: 'agent-secondary', kind: 'direct' },
{ id: 'edge-primary-end', source: 'agent-primary', target: 'end', kind: 'direct' },
{ id: 'edge-secondary-end', source: 'agent-secondary', target: 'end', kind: 'direct' },
];
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.level === 'warning' && issue.message.includes('Sequential mode works best with a linear'))).toBe(true);
});
test('requires concurrent mode fan edges and warns when branches do not rejoin', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'concurrent';
workflow.graph.nodes.splice(2, 0, {
id: 'agent-secondary',
kind: 'agent',
label: 'Secondary Agent',
position: { x: 220, y: 120 },
order: 1,
config: {
kind: 'agent',
id: 'agent-secondary',
name: 'Secondary Agent',
description: 'Handles alternate work.',
instructions: 'Assist in parallel.',
model: 'gpt-5.4',
},
});
workflow.graph.edges = [
{ id: 'edge-start-primary', source: 'start', target: 'agent-primary', kind: 'fan-out', fanOutConfig: { strategy: 'broadcast' } },
{ id: 'edge-start-secondary', source: 'start', target: 'agent-secondary', kind: 'fan-out', fanOutConfig: { strategy: 'broadcast' } },
{ id: 'edge-primary-end', source: 'agent-primary', target: 'end', kind: 'fan-in' },
{ id: 'edge-secondary-primary', source: 'agent-secondary', target: 'agent-primary', kind: 'direct' },
];
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.level === 'warning' && issue.message.includes('rejoins through a matching fan-in edge'))).toBe(true);
});
test('validates handoff triage settings and specialist return paths', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'handoff';
workflow.settings.modeSettings = {
handoff: {
toolCallFiltering: 'handoff-only',
returnToPrevious: false,
triageAgentNodeId: 'missing-triage',
},
};
workflow.graph.nodes.splice(2, 0, {
id: 'agent-specialist',
kind: 'agent',
label: 'Specialist',
position: { x: 420, y: 120 },
order: 1,
config: {
kind: 'agent',
id: 'agent-specialist',
name: 'Specialist',
description: 'Handles specialist work.',
instructions: 'Own the specialist response.',
model: 'gpt-5.4',
},
});
workflow.graph.edges = [
{ id: 'edge-start-triage', source: 'start', target: 'agent-primary', kind: 'direct' },
{ id: 'edge-specialist-end', source: 'agent-specialist', target: 'end', kind: 'direct' },
{ id: 'edge-triage-end', source: 'agent-primary', target: 'end', kind: 'direct' },
];
const invalidTriageIssues = validateWorkflowDefinition(workflow);
expect(invalidTriageIssues.some((issue) => issue.field === 'settings.modeSettings.handoff.triageAgentNodeId')).toBe(true);
workflow.settings.modeSettings = {
handoff: {
toolCallFiltering: 'handoff-only',
returnToPrevious: false,
triageAgentNodeId: 'agent-primary',
},
};
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.level === 'warning' && issue.message.includes('triage agent has outgoing edges to specialist agents'))).toBe(true);
expect(issues.some((issue) => issue.level === 'warning' && issue.message.includes('should have a return path back to the triage agent'))).toBe(true);
});
test('warns when group-chat mode does not create a loop among agents', () => {
const workflow = createWorkflow();
workflow.settings.orchestrationMode = 'group-chat';
workflow.graph.nodes.splice(2, 0, {
id: 'agent-reviewer',
kind: 'agent',
label: 'Reviewer',
position: { x: 420, y: 0 },
order: 1,
config: {
kind: 'agent',
id: 'agent-reviewer',
name: 'Reviewer',
description: 'Reviews drafts.',
instructions: 'Review and refine.',
model: 'gpt-5.4',
},
});
workflow.graph.edges = [
{ id: 'edge-start-writer', source: 'start', target: 'agent-primary', kind: 'direct' },
{ id: 'edge-writer-reviewer', source: 'agent-primary', target: 'agent-reviewer', kind: 'direct' },
{ id: 'edge-reviewer-end', source: 'agent-reviewer', target: 'end', kind: 'direct' },
];
const issues = validateWorkflowDefinition(workflow);
expect(issues.some((issue) => issue.level === 'warning' && issue.message.includes('form a loop for repeated turns'))).toBe(true);
});
test('builtin handoff and group-chat workflows include mode settings defaults', () => {
const builtinWorkflows = createBuiltinWorkflows(TIMESTAMP);
const handoffWorkflow = builtinWorkflows.find((workflow) => workflow.settings.orchestrationMode === 'handoff');
const groupChatWorkflow = builtinWorkflows.find((workflow) => workflow.settings.orchestrationMode === 'group-chat');
expect(handoffWorkflow?.settings.modeSettings).toEqual(createDefaultModeSettings('handoff'));
expect(groupChatWorkflow?.settings.modeSettings).toEqual(createDefaultModeSettings('group-chat'));
});
});
describe('built-in workflow consistency', () => {
const builtinWorkflows = createBuiltinWorkflows(TIMESTAMP);
test('all built-in workflows pass validation without errors', () => {
for (const workflow of builtinWorkflows) {
const issues = validateWorkflowDefinition(workflow);
const errors = issues.filter((i) => i.level === 'error');
expect(errors).toEqual([]);
}
});
test('all built-in workflows are stable under normalization', () => {
for (const workflow of builtinWorkflows) {
const normalized = normalizeWorkflowDefinition(workflow);
expect(normalized.graph.edges).toEqual(workflow.graph.edges);
expect(normalized.settings).toEqual(workflow.settings);
}
});
test('group-chat workflow has consistent maxIterations across settings and edges', () => {
const workflow = builtinWorkflows.find((w) => w.settings.orchestrationMode === 'group-chat')!;
const maxRounds = workflow.settings.modeSettings!.groupChat!.maxRounds;
const maxIterations = workflow.settings.maxIterations;
expect(maxIterations).toBeDefined();
expect(maxRounds).toBe(maxIterations!);
const loopEdges = workflow.graph.edges.filter((e) => e.isLoop);
expect(loopEdges.length).toBeGreaterThan(0);
for (const edge of loopEdges) {
expect(edge.maxIterations).toBe(maxRounds);
}
});
test('handoff workflow has consistent maxIterations across settings and edges', () => {
const workflow = builtinWorkflows.find((w) => w.settings.orchestrationMode === 'handoff')!;
const maxIterations = workflow.settings.maxIterations;
const loopEdges = workflow.graph.edges.filter((e) => e.isLoop);
expect(loopEdges.length).toBeGreaterThan(0);
for (const edge of loopEdges) {
expect(edge.maxIterations).toBe(maxIterations);
}
});
test('scaffoldGraphForMode respects provided settings for group-chat', () => {
const graph = scaffoldGraphForMode('group-chat', {
settings: {
checkpointing: { enabled: false },
executionMode: 'off-thread',
orchestrationMode: 'group-chat',
modeSettings: { groupChat: { selectionStrategy: 'round-robin', maxRounds: 12 } },
maxIterations: 12,
},
});
const loopEdges = graph.edges.filter((e) => e.isLoop);
expect(loopEdges.length).toBeGreaterThan(0);
for (const edge of loopEdges) {
expect(edge.maxIterations).toBe(12);
}
});
test('scaffoldGraphForMode respects provided settings for handoff', () => {
const graph = scaffoldGraphForMode('handoff', {
settings: {
checkpointing: { enabled: false },
executionMode: 'off-thread',
orchestrationMode: 'handoff',
maxIterations: 8,
},
});
const loopEdges = graph.edges.filter((e) => e.isLoop);
expect(loopEdges.length).toBeGreaterThan(0);
for (const edge of loopEdges) {
expect(edge.maxIterations).toBe(8);
}
});
test('normalizeWorkflowDefinition syncs loop edge maxIterations for group-chat', () => {
const workflow = createBuiltinWorkflows(TIMESTAMP).find((w) => w.settings.orchestrationMode === 'group-chat')!;
const modified: WorkflowDefinition = {
...workflow,
settings: {
...workflow.settings,
maxIterations: 10,
modeSettings: {
groupChat: { selectionStrategy: 'round-robin', maxRounds: 10 },
},
},
};
const normalized = normalizeWorkflowDefinition(modified);
const loopEdges = normalized.graph.edges.filter((e) => e.isLoop);
for (const edge of loopEdges) {
expect(edge.maxIterations).toBe(10);
}
});
test('normalizeWorkflowDefinition does not modify loop edges for graph-based modes', () => {
const workflow = createBuiltinWorkflows(TIMESTAMP).find((w) => w.settings.orchestrationMode === 'sequential')!;
const normalized = normalizeWorkflowDefinition(workflow);
expect(normalized.graph.edges).toEqual(workflow.graph.edges);
});
});