| name | fix-bug |
| description | Diagnoses and fixes bugs using a test-first workflow (reproduce, diagnose, fix). Use this skill whenever the user reports a bug, describes unexpected behavior, or asks to investigate or fix a defect. Even if the user says "something's broken", "this isn't working", "fix this bug", or "why does X happen", load this skill to guide the full reproduce → diagnose → fix cycle. |
| argument-hint | [incident or failing-test-name] |
| license | Unlicense |
| metadata | {"author":"Koji Hasegawa"} |
Guide for diagnosing and fixing bugs. This skill defines a test-first debugging workflow:
reproduce the bug with a failing test, diagnose the root cause, then fix it.
Mode Check
This skill must be used outside plan mode. Before doing anything else, check the current mode:
ExitPlanMode is NOT in the deferred tools list (i.e., directly callable) → in plan mode → stop immediately and tell the user:
"This skill (/fix-bug) must be used outside plan mode. Please exit plan mode first."
ExitPlanMode is in the deferred tools list → not in plan mode → proceed.
Workflow
Step 1: Clarify the Bug Report
Do not read code files during this step. You may only read specs and design docs.
Extract the following from the user's prompt:
- Condition: the setup or scenario that triggers the bug
- Expected: the expected behavior
- Actual: the observed behavior
If any of the three cannot be determined from the prompt, use AskUserQuestion to ask
the user before proceeding. All three must be known before moving to Step 2.
Also determine the report type:
- Existing test failure — the user reports that an existing test is failing. The specific failing test method need not be known at this stage; note the scope (class name, scene name, or test assembly) from the prompt. Step 2 is skipped — proceed directly to Step 3.
- Behavioral bug — the user describes unexpected runtime behavior with no mention of a failing test. Proceed normally through Step 2.
Also check the relevant documentation (specs, design docs) for consistency with the
user's bug report. If the documentation and the report conflict, use AskUserQuestion
to clarify with the user which is correct. If the docs contain errors or are missing
relevant information, add them to the list of files to be modified in this bug fix.
Step 2: Write the Reproduction Test
Skip this step if Step 1 identified this as an existing test failure case. Proceed directly to Step 3.
Search the project's test code for existing tests closest to the bug scenario. These serve two purposes:
- Placement anchor — add the reproduction test nearby
- Style reference — follow the same test conventions
When the bug condition involves on-screen display or a user-facing UI operation, search for integration tests with UI operations or visual verification tests — the reproduction test must be at that layer, so the placement anchor and style reference must be too.
Use Explore agents to locate relevant test files and test cases.
Launch the test-designer agent to design the reproduction test case — do not design it in the main context; the agent is pinned to Opus so test design stays on the stronger model even when the implementation model is faster. Use the following prompt structure:
## Requirements
[Bug report from Step 1: Condition / Expected / Actual.
Task type: bug-fix — design a reproduction test and regression tests per the reproduction-tests section of the guide.]
## Implementation Design
[Existing class/method structure of the affected production code, from the Explore results — this is the design; there is no new design for a bug fix]
## Existing Code Context
[Nearby test files, test classes, and conventions found above]
## Language Convention
[Project language resolved from CLAUDE.md; default English]
From the agent's output, take the test case marked (reproduction test). Keep any regression test cases for Step 6 — do not implement them yet.
Then load the test-writing-guide skill and implement the reproduction test. Place it near the similar tests found above.
If an existing test is testing the wrong behavior (i.e., the test itself is buggy), rewrite
that test to correctly reproduce the bug rather than adding a new one.
Step 3: Verify the Reproduction Test Fails
Run tests using the /run-tests skill and verify that the reproduction test fails:
- If a test was added in Step 2: run that specific test.
- If Step 2 was skipped (existing test failure): narrow down the test to run using the scope identified in Step 1 (e.g., a specific test class or assembly). If narrowing down is not possible, run all tests.
If multiple tests fail and it is unclear which one corresponds to the reported bug, use
AskUserQuestion to ask the user which test to focus on.
If the test does not fail (Step 2 path only)
- Delete the reproduction test
- Return to Step 2 and search more broadly
If reproduction has been attempted 3 times without success, return to Step 1 and
use AskUserQuestion to re-clarify the bug report with the user.
Step 4: Confirm Reproduction with User
Present the reproduction evidence to the user via AskUserQuestion before proceeding.
Include:
- Reproduction test: file path and method name
- Test failure message (actual output from the test run)
Once the user confirms the reproduction is as expected:
- Commit the reproduction test — if test code is modified in a later step, the integrity of Test First is compromised; commit here without fail so the diff remains verifiable
- Proceed to Step 5
Step 5: Diagnose & Formulate Fix
With the reproduction confirmed, investigate the root cause:
- Trace through the code path triggered by the reproduction test
- Identify the specific line(s) or logic responsible for the bug
- Formulate a fix
Step 6: Regression Test Coverage
Before applying the fix, check whether the affected area has adequate coverage for adjacent behavior:
- Start from the regression test cases the
test-designer agent produced in Step 2 (if Step 2 ran)
- Read the test files for the affected production code
- Identify behaviors that could regress from the change but are not currently tested
- If gaps exist, add regression tests (per
test-writing-guide) and run them — they must pass
(they test existing correct behavior, not the bug itself)
Step 7: Apply Fix & Verify
- Load the
code-writing-guide skill — do not rely on automatic skill triggering
- Apply the fix formulated in Step 5 to the production code
- Run all affected tests using
/run-tests
- Confirm:
- The reproduction test now passes (bug is fixed)
- All regression tests still pass
- Commit production code fix to git (includes regression tests from Step 6 and any unavoidable changes to the reproduction test)
Step 8: Refactoring
-
Launch test-deduplicator agent with: list of test files added or modified in this iteration
-
Resolve diagnostics at the warning or higher severity level using the following procedure,
one file at a time — mcp__ide__getDiagnostics only returns results for files currently open
in editor tabs, and opening all files at once exceeds the tab limit:
open_file_in_editor — open the file in the editor
mcp__ide__getDiagnostics — collect all diagnostics for that file
- Fix all reported issues as a single set before moving to the next file
Use mcp__ide__getDiagnostics instead of get_file_problems (unstable) or
the Unity compiler output (does not reflect .editorconfig severity settings).
-
Re-run tests using /run-tests command to confirm they still pass
-
Run the Claude Code built-in /simplify skill (Skill({skill: "simplify"}) — not a plugin skill) to apply quality improvements to the modified code
-
Re-run tests using /run-tests command to confirm they still pass
-
Commit all remaining changes to git