Restores the entire .claude/ infrastructure that was accidentally deleted
in commit 1df208d ('feat(timeline): add pulse animation for in-flight drag
mutations'). Recovered via git checkout 1df208d^.
Restored:
- .claude/commands/ (gitlooper, sparc/, github/, automation/, monitoring/,
optimization/, hooks/, plan, implement, research, review, perf, visualaudit)
- .claude/agents/ (core/, github/, sparc/, v3/, swarm/, templates/, ...)
- .claude/helpers/ (41 scripts incl. hook-handler.cjs, statusline.cjs)
- .claude/skills/ (20 skills incl. sparc-methodology, github-*, v3-*)
- .claude/settings.json (hooks configuration)
Also updated all CapaKraken → Nexus references in affected command files.
Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
191 lines
4.2 KiB
Markdown
191 lines
4.2 KiB
Markdown
---
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name: "Swarm Orchestration"
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description: "Orchestrate multi-agent swarms with agentic-flow for parallel task execution, dynamic topology, and intelligent coordination. Use when scaling beyond single agents, implementing complex workflows, or building distributed AI systems."
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---
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# Swarm Orchestration
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## What This Skill Does
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Orchestrates multi-agent swarms using agentic-flow's advanced coordination system. Supports mesh, hierarchical, and adaptive topologies with automatic task distribution, load balancing, and fault tolerance.
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## Prerequisites
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- agentic-flow v3.0.0-alpha.1+
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- Node.js 18+
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- Understanding of distributed systems (helpful)
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## Quick Start
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```bash
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# Initialize swarm
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npx agentic-flow hooks swarm-init --topology mesh --max-agents 5
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# Spawn agents
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npx agentic-flow hooks agent-spawn --type coder
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npx agentic-flow hooks agent-spawn --type tester
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npx agentic-flow hooks agent-spawn --type reviewer
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# Orchestrate task
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npx agentic-flow hooks task-orchestrate \
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--task "Build REST API with tests" \
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--mode parallel
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```
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## Topology Patterns
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### 1. Mesh (Peer-to-Peer)
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```typescript
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// Equal peers, distributed decision-making
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await swarm.init({
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topology: "mesh",
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agents: ["coder", "tester", "reviewer"],
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communication: "broadcast",
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});
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```
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### 2. Hierarchical (Queen-Worker)
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```typescript
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// Centralized coordination, specialized workers
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await swarm.init({
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topology: "hierarchical",
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queen: "architect",
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workers: ["backend-dev", "frontend-dev", "db-designer"],
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});
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```
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### 3. Adaptive (Dynamic)
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```typescript
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// Automatically switches topology based on task
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await swarm.init({
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topology: "adaptive",
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optimization: "task-complexity",
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});
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```
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## Task Orchestration
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### Parallel Execution
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```typescript
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// Execute tasks concurrently
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const results = await swarm.execute({
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tasks: [
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{ agent: "coder", task: "Implement API endpoints" },
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{ agent: "frontend", task: "Build UI components" },
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{ agent: "tester", task: "Write test suite" },
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],
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mode: "parallel",
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timeout: 300000, // 5 minutes
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});
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```
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### Pipeline Execution
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```typescript
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// Sequential pipeline with dependencies
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await swarm.pipeline([
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{ stage: "design", agent: "architect" },
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{ stage: "implement", agent: "coder", after: "design" },
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{ stage: "test", agent: "tester", after: "implement" },
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{ stage: "review", agent: "reviewer", after: "test" },
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]);
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```
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### Adaptive Execution
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```typescript
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// Let swarm decide execution strategy
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await swarm.autoOrchestrate({
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goal: "Build production-ready API",
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constraints: {
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maxTime: 3600,
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maxAgents: 8,
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quality: "high",
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},
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});
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```
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## Memory Coordination
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```typescript
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// Share state across swarm
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await swarm.memory.store('api-schema', {
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endpoints: [...],
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models: [...]
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});
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// Agents read shared memory
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const schema = await swarm.memory.retrieve('api-schema');
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```
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## Advanced Features
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### Load Balancing
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```typescript
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// Automatic work distribution
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await swarm.enableLoadBalancing({
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strategy: "dynamic",
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metrics: ["cpu", "memory", "task-queue"],
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});
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```
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### Fault Tolerance
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```typescript
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// Handle agent failures
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await swarm.setResiliency({
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retry: { maxAttempts: 3, backoff: "exponential" },
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fallback: "reassign-task",
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});
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```
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### Performance Monitoring
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```typescript
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// Track swarm metrics
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const metrics = await swarm.getMetrics();
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// { throughput, latency, success_rate, agent_utilization }
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```
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## Integration with Hooks
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```bash
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# Pre-task coordination
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npx agentic-flow hooks pre-task --description "Build API"
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# Post-task synchronization
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npx agentic-flow hooks post-task --task-id "task-123"
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# Session restore
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npx agentic-flow hooks session-restore --session-id "swarm-001"
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```
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## Best Practices
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1. **Start small**: Begin with 2-3 agents, scale up
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2. **Use memory**: Share context through swarm memory
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3. **Monitor metrics**: Track performance and bottlenecks
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4. **Enable hooks**: Automatic coordination and sync
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5. **Set timeouts**: Prevent hung tasks
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## Troubleshooting
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### Issue: Agents not coordinating
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**Solution**: Verify memory access and enable hooks
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### Issue: Poor performance
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**Solution**: Check topology (use adaptive) and enable load balancing
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## Learn More
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- Swarm Guide: docs/swarm/orchestration.md
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- Topology Patterns: docs/swarm/topologies.md
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- Hooks Integration: docs/hooks/coordination.md
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