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Paddyosmani on GitHub

Planning and Task Breakdown

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Decompose work into actionable tasks for better project management.

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What Planning and Task Breakdown does

The Planning and Task Breakdown skill is designed to help developers and teams systematically decompose larger projects into smaller, manageable tasks. By following a structured approach, this skill ensures that each task is small enough to be implemented, tested, and verified in a focused session. This is particularly useful when faced with a complex specification or when a task seems too daunting to begin. The skill emphasizes the importance of clear acceptance criteria and a well-defined task structure, which are essential for maintaining project clarity and progress.

The skill operates through a multi-step planning process. Initially, users enter a planning mode where they analyze the project specifications and codebase without writing any code. This read-only phase allows for the identification of existing patterns, dependencies, and potential risks. Once the groundwork is laid, users can create a dependency graph that outlines the relationships between various components, ensuring that foundational elements are built first.

The approach encourages vertical slicing of tasks, meaning that users should aim to deliver complete features rather than working on separate layers (like database, API, and UI) in isolation. This method not only enhances productivity but also ensures that each completed task contributes to a functional product incrementally. Tasks are then documented with clear descriptions, acceptance criteria, and verification steps, which help in tracking progress and ensuring quality.

This skill is particularly beneficial for teams working on complex projects that require collaboration and parallel workstreams. It provides a clear framework for communication and task management, making it easier to estimate scope and manage dependencies effectively. However, it is less suited for simple changes where the scope is already well-defined, as the overhead of planning may not be justified in those scenarios.

When to use it

Use this skill when you have a detailed specification and need to create implementable tasks or when a task feels overwhelming and needs to be clarified.

When not to use it

Avoid using this skill for straightforward tasks with clear scope or when the specification already includes well-defined tasks.

What you can build with it

Breaking Down a New Feature

When tasked with developing a new feature, use this skill to decompose it into smaller tasks that can be tackled individually.

Managing Parallel Workstreams

In a team setting, use this skill to create tasks that can be worked on simultaneously by different team members, ensuring efficient progress.

Clarifying Vague Requirements

When facing unclear project specifications, employ this skill to define tasks and acceptance criteria, making the work more manageable.

How to install Planning and Task Breakdown

View source

1. Install with the skills CLI

npx skills add addyosmani/agent-skills/planning-and-task-breakdown --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by addyosmani

Planning and Task Breakdown

Overview

Decompose work into small, verifiable tasks with explicit acceptance criteria. Good task breakdown is the difference between an agent that completes work reliably and one that produces a tangled mess. Every task should be small enough to implement, test, and verify in a single focused session.

When to Use

  • You have a spec and need to break it into implementable units
  • A task feels too large or vague to start
  • Work needs to be parallelized across multiple agents or sessions
  • You need to communicate scope to a human
  • The implementation order isn't obvious

When NOT to use: Single-file changes with obvious scope, or when the spec already contains well-defined tasks.

The Planning Process

Step 1: Enter Plan Mode

Before writing any code, operate in read-only mode:

  • Read the spec and relevant codebase sections
  • Identify existing patterns and conventions
  • Map dependencies between components
  • Note risks and unknowns

Do NOT write code during planning. The output is a plan document saved to tasks/plan.md and a task list saved to tasks/todo.md, not implementation.

Step 2: Identify the Dependency Graph

Map what depends on what:

Database schema
    │
    ├── API models/types
    │       │
    │       ├── API endpoints
    │       │       │
    │       │       └── Frontend API client
    │       │               │
    │       │               └── UI components
    │       │
    │       └── Validation logic
    │
    └── Seed data / migrations

Implementation order follows the dependency graph bottom-up: build foundations first.

Step 3: Slice Vertically

Instead of building all the database, then all the API, then all the UI — build one complete feature path at a time:

Bad (horizontal slicing):

Task 1: Build entire database schema
Task 2: Build all API endpoints
Task 3: Build all UI components
Task 4: Connect everything

Good (vertical slicing):

Task 1: User can create an account (schema + API + UI for registration)
Task 2: User can log in (auth schema + API + UI for login)
Task 3: User can create a task (task schema + API + UI for creation)
Task 4: User can view task list (query + API + UI for list view)

Each vertical slice delivers working, testable functionality.

Step 4: Write Tasks

Each task follows this structure:

## Task [N]: [Short descriptive title]

**Description:** One paragraph explaining what this task accomplishes.

**Acceptance criteria:**
- [ ] [Specific, testable condition]
- [ ] [Specific, testable condition]

**Verification:**
- [ ] Tests pass: [the repository's focused-test command]
- [ ] Build succeeds: [the repository's build command]
- [ ] Manual check: [description of what to verify]

**Dependencies:** [Task numbers this depends on, or "None"]

**Files likely touched:**
- `src/path/to/file.ts`
- `tests/path/to/test.ts`

**Estimated scope:** [Small: 1-2 files | Medium: 3-5 files | Large: 5+ files]

Step 5: Order and Checkpoint

Arrange tasks so that:

  1. Dependencies are satisfied (build foundation first)
  2. Each task leaves the system in a working state
  3. Verification checkpoints occur after every 2-3 tasks
  4. High-risk tasks are early (fail fast)

Add explicit checkpoints:

## Checkpoint: After Tasks 1-3
- [ ] All tests pass
- [ ] Application builds without errors
- [ ] Core user flow works end-to-end
- [ ] Review with human before proceeding

Task Sizing Guidelines

SizeFilesScopeExample
XS1Single function or config changeAdd a validation rule
S1-2One component or endpointAdd a new API endpoint
M3-5One feature sliceUser registration flow
L5-8Multi-component featureSearch with filtering and pagination
XL8+Too large — break it down further

If a task is L or larger, it should be broken into smaller tasks. An agent performs best on S and M tasks.

When to break a task down further:

  • It would take more than one focused session (roughly 2+ hours of agent work)
  • You cannot describe the acceptance criteria in 3 or fewer bullet points
  • It touches two or more independent subsystems (e.g., auth and billing)
  • You find yourself writing "and" in the task title (a sign it is two tasks)

Output Files

  • Plan document: Save the implementation plan to tasks/plan.md.
  • Task list: Save the checklist-style task list to tasks/todo.md.

Create the tasks/ directory if it does not exist. These paths are the convention expected by the /build command and other downstream tooling.

Plan Document Template

# Implementation Plan: [Feature/Project Name]

## Overview
[One paragraph summary of what we're building]

## Architecture Decisions
- [Key decision 1 and rationale]
- [Key decision 2 and rationale]

## Task List

### Phase 1: Foundation
- [ ] Task 1: ...
- [ ] Task 2: ...

### Checkpoint: Foundation
- [ ] Tests pass, builds clean

### Phase 2: Core Features
- [ ] Task 3: ...
- [ ] Task 4: ...

### Checkpoint: Core Features
- [ ] End-to-end flow works

### Phase 3: Polish
- [ ] Task 5: ...
- [ ] Task 6: ...

### Checkpoint: Complete
- [ ] All acceptance criteria met
- [ ] Ready for review

## Risks and Mitigations
| Risk | Impact | Mitigation |
|------|--------|------------|
| [Risk] | [High/Med/Low] | [Strategy] |

## Open Questions
- [Question needing human input]

Parallelization Opportunities

When multiple agents or sessions are available:

  • Safe to parallelize: Independent feature slices, tests for already-implemented features, documentation
  • Must be sequential: Database migrations, shared state changes, dependency chains
  • Needs coordination: Features that share an API contract (define the contract first, then parallelize)

Common Rationalizations

RationalizationReality
"I'll figure it out as I go"That's how you end up with a tangled mess and rework. 10 minutes of planning saves hours.
"The tasks are obvious"Write them down anyway. Explicit tasks surface hidden dependencies and forgotten edge cases.
"Planning is overhead"Planning is the task. Implementation without a plan is just typing.
"I can hold it all in my head"Context windows are finite. Written plans survive session boundaries and compaction.

Red Flags

  • Starting implementation without a written task list
  • Tasks that say "implement the feature" without acceptance criteria
  • No verification steps in the plan
  • All tasks are XL-sized
  • No checkpoints between tasks
  • Dependency order isn't considered

Verification

Before starting implementation, confirm:

  • Every task has acceptance criteria
  • Every task has a verification step
  • Task dependencies are identified and ordered correctly
  • No task touches more than ~5 files
  • Checkpoints exist between major phases
  • The human has reviewed and approved the plan

See Also

Acceptance criteria are per-task and answer "did we build the right thing?". They sit on top of the project-wide Definition of Done, the standing bar every task clears before it counts as done. See ../../references/definition-of-done.md.

Frequently asked questions about Planning and Task Breakdown

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