Parallel development workflow using git worktrees. Prepare isolated worktree directories and execute tasks across multiple workspaces for concurrent feature development.
Scanned 2/12/2026
Install via CLI
openskills install henkisdabro/wookstar-claude-plugins---
name: git-worktrees
description: "Parallel development workflow using git worktrees. Prepare isolated worktree directories and execute tasks across multiple workspaces for concurrent feature development."
---
# Git Worktrees - Parallel Development Workflow
Enable parallel feature development by creating isolated git worktree directories, then executing the same plan across multiple workspaces simultaneously.
## Workflow Overview
### Phase 1: Prepare Worktrees
Create N isolated worktrees for parallel development:
```bash
# Create worktree directory
mkdir -p trees
# Create worktrees (example: 3 parallel workspaces)
git worktree add -b feature-1 ./trees/feature-1
git worktree add -b feature-2 ./trees/feature-2
git worktree add -b feature-3 ./trees/feature-3
# Verify worktrees
git worktree list
```
Each worktree is a complete, isolated copy of the codebase. All worktrees share git history but have independent working directories.
### Phase 2: Execute Tasks in Parallel
Launch N subagents (one per worktree) using the Task tool:
1. Each agent independently implements the plan in their workspace
2. Agents produce RESULTS.md summarising their changes
3. Compare results and cherry-pick the best implementation
**Example Task invocation:**
```
Use the Task tool to launch a general-purpose agent with:
- prompt: "Working in trees/feature-1, implement [plan]. Write a RESULTS.md summarising changes."
- run_in_background: true (for parallel execution)
```
## When to Use
- **Experimental implementations** - Compare different approaches
- **A/B testing code changes** - Try multiple solutions simultaneously
- **Reducing iteration time** - Run multiple attempts in parallel
- **Complex refactoring** - Test different strategies concurrently
## Best Practices
1. **Keep worktree count reasonable** (2-4) to manage cognitive load
2. **Focus on code changes only** - No tests during parallel execution
3. **Clean up worktrees** after selecting the winning implementation:
```bash
git worktree remove ./trees/feature-1
git worktree prune
```
4. **Cherry-pick the winner** to your main branch:
```bash
git cherry-pick feature-2
# or merge the branch
git merge feature-2
```
## Directory Structure
```
project/
├── trees/
│ ├── feature-1/ # Worktree 1 (full codebase copy)
│ │ └── RESULTS.md
│ ├── feature-2/ # Worktree 2 (full codebase copy)
│ │ └── RESULTS.md
│ └── feature-3/ # Worktree 3 (full codebase copy)
│ └── RESULTS.md
└── (main working directory)
```
## RESULTS.md Template
Each agent should produce a summary in this format:
```markdown
# Results - [Feature Name]
## Changes Made
- List of files modified/created
- Summary of approach taken
## Key Decisions
- Design choices made
- Trade-offs considered
## Testing Notes
- How to verify the implementation
- Known limitations
```
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