Rendered from the source repository. Headings, examples, code, tables, links, and referenced images are preserved.
Implement tasks from an OpenSpec change.
Input: Optionally specify a change name. If omitted, check if it can be inferred from conversation context. If vague or ambiguous you MUST prompt for available changes.
Steps
- Select the change
If a name is provided, use it. Otherwise:
- Infer from conversation context if the user mentioned a change
- Auto-select if only one active change exists
- If ambiguous, run
openspec list --jsonto get available changes and use the AskUserQuestion tool to let the user select
Always announce: "Using change: <name>" and how to override (e.g., /opsx:apply <other>).
- Check status to understand the schema
openspec status --change "<name>" --jsonParse the JSON to understand:
schemaName: The workflow being used (e.g., "spec-driven")planningHome,changeRoot, andactionContext: planning scope and edit constraints- Which artifact contains the tasks (typically "tasks" for spec-driven, check status for others)
- Get apply instructions
openspec instructions apply --change "<name>" --jsonThis returns:
contextFiles: artifact ID -> array of concrete file paths (varies by schema - could be proposal/specs/design/tasks or spec/tests/implementation/docs)- Progress (total, complete, remaining)
- Task list with status
- Dynamic instruction based on current state
Handle states:
- If
state: "blocked"(missing artifacts): show message, suggest using openspec-continue-change - If
state: "all_done": congratulate, suggest archive - Otherwise: proceed to implementation
Workspace guard: If status JSON reports actionContext.mode: "workspace-planning" and allowedEditRoots is empty, explain that full workspace apply is not supported in this slice. Treat linked repos and folders as read-only context, ask the user to select an affected area through an explicit implementation workflow, and STOP before editing files.
- Baseline health check (fail-fast gate)
Before reading context and exploring, verify the project currently builds. Iterating on a broken baseline wastes time and creates false-positive test failures.
- Gradle wrapper:
./gradlew :app:assembleDebug(or the root module affected). Run only on modules that exist. - Pass → proceed.
- Fail → stop, show the compile errors, and ask the user whether to:
- Fix the baseline first (exit apply, fix, come back), or
- Force-continue knowing the baseline is broken (record this risk in the change).
Skip this gate only if openspec instructions apply --json indicated a docs-only change (e.g., spec updates with no code tasks).
- Read context files
Read every file path listed under contextFiles from the apply instructions output. The files depend on the schema being used:
- spec-driven: proposal, specs, design, tasks
- Other schemas: follow the contextFiles from CLI output
- Explore codebase with CodeGraph
Before implementing, use CodeGraph to understand the codebase areas affected by the change:
a. Extract key terms from the task descriptions and change artifacts (proposal, design, tasks)
b. Run codegraph explore to gather relevant code context:
codegraph explore "<key terms>"- Focus on terms that describe specific features, modules, or components mentioned in tasks
- If tasks span multiple topics, run multiple explore commands
c. Use codegraph findings during implementation:
- Reference discovered symbols, files, and patterns when writing code
- Use call paths to understand integration points before modifying them
- Leverage relationships to avoid introducing inconsistencies
The codegraph context helps ground implementation in the actual codebase structure, reducing the risk of breaking integrations.
- Set up Git branch for reviewability
Changes produced by apply should be reviewable and traceable. Before editing code:
a. Check Git status — ensure working tree is clean (git status). If dirty, warn the user to commit or stash first.
b. Create a feature branch from the current branch (typically main or develop):
git checkout -b "opsx/<change-name>"- Use the change name as the branch suffix (kebab-case)
- If the branch already exists, ask whether to reuse it or create a new one with a timestamp suffix
c. Commit strategy — recommend committing after each task (or group of related tasks) so the PR diff is reviewable:
- Commit message format:
<type>(<scope>): <description>(e.g.,feat(auth): add OAuth token refresh) - Reference the change name in the commit body for traceability:
OpenSpec change: add-user-auth
d. If Git is not available or the user opts out, note this in the change and proceed — but recommend setting up Git before archive.
- Show current progress
Display:
- Schema being used
- Progress: "N/M tasks complete"
- Remaining tasks overview
- Dynamic instruction from CLI
- Implement tasks (loop until done or blocked)
Before the first edit, check parallel-change conflicts: run openspec list --json and, for every other active change, skim its artifact files (proposal.md / tasks.md) to see if any touches the same modules or source files the current change plans to modify. If a conflict is detected, print an overlap table and ask the user to confirm the order before continuing:
⚠️ Module conflict detected
Module / file | This change | Other active change
:feature:login | "add-oauth" | "rework-auth"Then, for each pending task:
- Show which task is being worked on
- Use CodeGraph when task is unclear: If a task's scope or affected areas are ambiguous, run
codegraph explore "<task keywords>"to get immediate code context - Make the code changes required
- Keep changes minimal and focused
- Mark task complete in the tasks file:
- [ ]→- [x] - Continue to next task
Pause if:
- Task is unclear even after codegraph exploration → ask for clarification
- Implementation reveals a design issue → suggest updating artifacts
- Error or blocker encountered → report and wait for guidance
- User interrupts
- On completion or pause, show status
Display:
- Tasks completed this session
- Overall progress: "N/M tasks complete"
- If all done: suggest archive
- If paused: explain why and wait for guidance
Output During Implementation
## Implementing: <change-name> (schema: <schema-name>)
Working on task 3/7: <task description>
[...implementation happening...]
✓ Task complete
Working on task 4/7: <task description>
[...implementation happening...]
✓ Task completeOutput On Completion
## Implementation Complete
**Change:** <change-name>
**Schema:** <schema-name>
**Progress:** 7/7 tasks complete ✓
### Completed This Session
- [x] Task 1
- [x] Task 2
...
All tasks complete! Ready to archive this change.Output On Pause (Issue Encountered)
## Implementation Paused
**Change:** <change-name>
**Schema:** <schema-name>
**Progress:** 4/7 tasks complete
### Issue Encountered
<description of the issue>
**Options:**
1. <option 1>
2. <option 2>
3. Other approach
What would you like to do?Guardrails
- Keep going through tasks until done or blocked
- Always read context files before starting (from the apply instructions output)
- If task is ambiguous, pause and ask before implementing
- If implementation reveals issues, pause and suggest artifact updates
- Use CodeGraph proactively - run
codegraph exploreto understand codebase areas before making changes, and when encountering ambiguous tasks - Keep code changes minimal and scoped to each task
- Add or update tests for behavior changes - when a task adds/changes behavior, add or update the corresponding unit test in the module's
src/test/...source set (or instrumented test for UI/integration). Do not mark a behavior task complete without test coverage unless the task is purely non-functional (e.g., docs, rename). - Update task checkbox immediately after completing each task
- Pause on errors, blockers, or unclear requirements - don't guess
- Use contextFiles from CLI output, don't assume specific file names
- When tasks are done, recommend running
/opsx:verifyto compile, lint, and run affected-module unit tests before archiving - If
codegraph explorereturns no meaningful results, proceed without it — CodeGraph is an enhancement, not a blocker. Fall back torg/grep for manual code search.
Fluid Workflow Integration
This skill supports the "actions on a change" model:
- Can be invoked anytime: Before all artifacts are done (if tasks exist), after partial implementation, interleaved with other actions
- Allows artifact updates: If implementation reveals design issues, suggest updating artifacts - not phase-locked, work fluidly

