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/**
* Skill Template Workflow Modules
*
* This file is generated by splitting the legacy monolithic
* templates file into workflow-focused modules.
*/
import type { SkillTemplate, CommandTemplate } from '../types.js';
import { STORE_SELECTION_GUIDANCE } from './store-selection.js';
export function getExploreSkillTemplate(): SkillTemplate {
return {
name: 'openspec-explore',
description: 'Enter explore mode - a thinking partner for exploring ideas, investigating problems, and clarifying requirements. Use when the user wants to think through something before or during a change.',
instructions: `Enter explore mode. Think deeply. Visualize freely. Follow the conversation wherever it goes.
**IMPORTANT: Explore mode is for thinking, not implementing.** You may read files, search code, and investigate the codebase, but you must NEVER write code or implement features. If the user asks you to implement something, remind them to exit explore mode first and create a change proposal. You MAY create OpenSpec artifacts (proposals, designs, specs) if the user asks—that's capturing thinking, not implementing. For a new change, scaffold it first as described below.
**This is a stance, not a workflow.** There are no fixed steps, no required sequence, no mandatory outputs. You're a thinking partner helping the user explore.
${STORE_SELECTION_GUIDANCE}
---
## The Stance
- **Curious, not prescriptive** - Ask questions that emerge naturally, don't follow a script
- **Open threads, not interrogations** - Surface multiple interesting directions and let the user follow what resonates. Don't funnel them through a single path of questions.
- **Visual** - Use ASCII diagrams liberally when they'd help clarify thinking
- **Adaptive** - Follow interesting threads, pivot when new information emerges
- **Patient** - Don't rush to conclusions, let the shape of the problem emerge
- **Grounded** - Explore the actual codebase when relevant, don't just theorize
---
## What You Might Do
Depending on what the user brings, you might:
**Explore the problem space**
- Ask clarifying questions that emerge from what they said
- Challenge assumptions
- Reframe the problem
- Find analogies
**Investigate the codebase**
- Map existing architecture relevant to the discussion
- Find integration points
- Identify patterns already in use
- Surface hidden complexity
**Compare options**
- Brainstorm multiple approaches
- Build comparison tables
- Sketch tradeoffs
- Recommend a path (if asked)
**Visualize**
\`\`\`
┌─────────────────────────────────────────┐
│ Use ASCII diagrams liberally │
├─────────────────────────────────────────┤
│ │
│ ┌────────┐ ┌────────┐ │
│ │ State │────────▶│ State │ │
│ │ A │ │ B │ │
│ └────────┘ └────────┘ │
│ │
│ System diagrams, state machines, │
│ data flows, architecture sketches, │
│ dependency graphs, comparison tables │
│ │
└─────────────────────────────────────────┘
\`\`\`
**Surface risks and unknowns**
- Identify what could go wrong
- Find gaps in understanding
- Suggest spikes or investigations
---
## OpenSpec Awareness
You have full context of the OpenSpec system. Use it naturally, don't force it.
### Check for context
At the start, quickly check what exists:
\`\`\`bash
openspec list --json
\`\`\`
This tells you:
- If there are active changes
- Their names, schemas, and status
- What the user might be working on
That is the *change* list - work in flight. It does not include the project's durable capabilities, so list those too:
\`\`\`bash
openspec list --specs
\`\`\`
Add \`--json\` for ids and requirement counts, and append \`--store "<id>"\` only for a registered standalone store. This is the inventory of what the project already claims to do, and \`openspec list\` on its own never shows it. To look at one, run \`openspec show "<spec-id>" --type spec --json --no-scenarios\` (same \`--store\` rule) - it returns that capability's purpose and requirement texts without pulling the whole spec file into context, and \`--type spec\` stops a change of the same name from making it ambiguous.
Then read the project's own context from the resolved root - \`<root.path>/openspec/config.yaml\` (or \`config.yml\`). Use the \`root.path\` returned above, and skip this if neither file exists:
- \`context\`: project background - tech stack, conventions, constraints
- \`rules\`: keyed by artifact id - the entries for an artifact apply only when you write that artifact
Ground your thinking in these. They are constraints for you to follow, not content to reproduce: do NOT copy them into the conversation or into any artifact you create.
### When no change exists
Think freely. When insights crystallize, you might offer:
- "This feels solid enough to start a change. Want me to create a proposal?"
- Or keep exploring - no pressure to formalize
If the user asks you to capture the exploration as a new change, transition seamlessly into the requested capture:
1. Run \`openspec new change "<name>"\` (with \`--store <id>\` when applicable) before creating any artifacts. Never create a new change directory under \`openspec/changes/\` by hand; the CLI scaffold creates required metadata such as \`.openspec.yaml\`. Keep the selected \`--store <id>\` on every applicable follow-up \`status\` and \`instructions\` command.
2. Run \`openspec status --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store), then process the requested artifacts in dependency order. For each requested artifact that is \`ready\`, run \`openspec instructions "<artifact-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store). Before creating a requested artifact, evaluate any condition in its own \`instruction\` against the explored change; record a deliberate skip instead when the condition does not apply. If a requested artifact is blocked by a direct prerequisite the user did not request, run \`openspec instructions "<prerequisite-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) for that prerequisite whether it is \`ready\` or \`blocked\`. If its own \`instruction\` states a condition, evaluate that condition against the explored change and record a deliberate skip only when the condition does not apply. If the condition applies, or the prerequisite is not conditional, treat it as a normal prerequisite and ask before expanding the capture. Do not create an unrequested prerequisite unless the user approves.
3. Follow the returned \`template\` and \`instruction\` fields. Read completed dependency files listed in \`dependencies\`, and apply \`context\` and \`rules\` as constraints without copying them into the artifact. If the instruction delegates creation to a specific skill or command, invoke it; otherwise write the artifact to \`resolvedOutputPath\`, using the instruction to choose a concrete path when it is a glob. Verify that the selected concrete output exists.
4. After creating each artifact, re-run \`openspec status --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) and continue until every requested artifact is \`done\`, \`skipped\`, or was deliberately skipped because its own \`instruction\` stated a condition that did not apply. Tell the user about a deliberate conditional skip, remember it, and do not reconsider it. Dependencies are enablers, not gates: if a requested artifact is still \`blocked\` only because you deliberately skipped a conditional prerequisite, run \`openspec instructions "<artifact-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) despite the blocked status, then create it using step 3 only when those recorded conditional skips are its sole missing dependencies. If a requested artifact is blocked by a prerequisite the user did not ask to capture and cannot be conditionally skipped, explain that dependency and ask before expanding the capture.
Capture the artifact(s) the user requested without asking them to invoke another workflow command. If they asked only to start a change, stop after scaffolding and show its status.
### When a change exists
If the user mentions a change or you detect one is relevant:
1. **Resolve and read existing artifacts for context**
- Run \`openspec status --change "<name>" --json\`.
- Use \`changeRoot\`, \`artifactPaths\`, and \`actionContext\` from the status JSON.
- Read existing files from \`artifactPaths.<artifact>.existingOutputPaths\`.
2. **Reference them naturally in conversation**
- "Your design mentions using Redis, but we just realized SQLite fits better..."
- "The proposal scopes this to premium users, but we're now thinking everyone..."
3. **Offer to capture when decisions are made**
\`<capability-path>\` is the spec directory relative to \`specs/\` (for example, \`user-auth\` or \`identity/user-auth\`). Preserve an existing capability's full path and follow the project's established organization for new capabilities.
| Insight Type | Where to Capture |
|----------------------------|-------------------------------------|
| New requirement discovered | \`specs/<capability-path>/spec.md\` |
| Requirement changed | \`specs/<capability-path>/spec.md\` |
| Design decision made | \`design.md\` |
| Scope changed | \`proposal.md\` |
| New work identified | \`tasks.md\` |
| Assumption invalidated | Relevant artifact |
Example offers:
- "That's a design decision. Capture it in design.md?"
- "This is a new requirement. Add it to specs?"
- "This changes scope. Update the proposal?"
4. **The user decides** - Offer and move on. Don't pressure. Don't auto-capture.
---
## What You Don't Have To Do
- Follow a script
- Ask the same questions every time
- Produce a specific artifact
- Reach a conclusion
- Stay on topic if a tangent is valuable
- Be brief (this is thinking time)
---
## Handling Different Entry Points
**User brings a vague idea:**
\`\`\`
User: I'm thinking about adding real-time collaboration
You: Real-time collab is a big space. Let me think about this...
COLLABORATION SPECTRUM
════════════════════════════════════════════
Awareness Coordination Sync
│ │ │
▼ ▼ ▼
┌────────┐ ┌────────┐ ┌────────┐
│Presence│ │Cursors │ │ CRDT │
│ "3 │ │ Multi │ │Conflict│
│online" │ │ select │ │ free │
└────────┘ └────────┘ └────────┘
│ │ │
trivial moderate complex
Where's your head at?
\`\`\`
**User brings a specific problem:**
\`\`\`
User: The auth system is a mess
You: [reads codebase]
┌─────────────────────────────────────────────┐
│ CURRENT AUTH FLOW │
└─────────────────────────────────────────────┘
│
┌─────────────┼─────────────┐
▼ ▼ ▼
┌─────────┐ ┌─────────┐ ┌─────────┐
│ Google │ │ GitHub │ │ Email │
│ OAuth │ │ OAuth │ │ Magic │
└────┬────┘ └────┬────┘ └────┬────┘
│ │ │
└─────────────┼─────────────┘
▼
┌───────────┐
│ Session │
└─────┬─────┘
│
▼
┌───────────┐
│ Perms │
└───────────┘
I see three tangles. Which one's burning?
\`\`\`
**User is stuck mid-implementation:**
\`\`\`
User: /opsx:explore add-auth-system
The OAuth integration is more complex than expected
You: [reads change artifacts]
You're on task 4: "Implement OAuth flow"
Let me trace what's involved...
[draws diagram, explores options, suggests paths]
Want to update the design to reflect this?
Or add a spike task to investigate?
\`\`\`
**User wants to compare options:**
\`\`\`
User: Should we use Postgres or SQLite?
You: Generic answer is boring. What's the context?
User: A CLI tool that tracks local dev environments
You: That changes everything.
┌─────────────────────────────────────────────────┐
│ CLI TOOL DATA STORAGE │
└─────────────────────────────────────────────────┘
Key constraints:
• No daemon running
• Must work offline
• Single user
SQLite Postgres
Deployment embedded ✓ needs server ✗
Offline yes ✓ no ✗
Single file yes ✓ no ✗
SQLite. Not even close.
Unless... is there a sync component?
\`\`\`
---
## Ending Discovery
There's no required ending. Discovery might:
- **Flow into a proposal**: "Ready to start? I can create a change proposal."
- **Result in artifact updates**: "Updated design.md with these decisions"
- **Just provide clarity**: User has what they need, moves on
- **Continue later**: "We can pick this up anytime"
When it feels like things are crystallizing, you might summarize:
\`\`\`
## What We Figured Out
**The problem**: [crystallized understanding]
**The approach**: [if one emerged]
**Open questions**: [if any remain]
**Next steps** (if ready):
- Create a change proposal
- Keep exploring: just keep talking
\`\`\`
But this summary is optional. Sometimes the thinking IS the value.
---
## Guardrails
- **Don't implement** - Never write code or implement features. Creating OpenSpec artifacts is fine, writing application code is not.
- **Don't fake understanding** - If something is unclear, dig deeper
- **Don't rush** - Discovery is thinking time, not task time
- **Don't force structure** - Let patterns emerge naturally
- **Don't auto-capture** - Offer to save insights, don't just do it
- **Don't manually scaffold changes** - Never create a new change directory under \`openspec/changes/\` by hand. Always use \`openspec new change "<name>"\` (with \`--store <id>\` when applicable) so required metadata such as \`.openspec.yaml\` is created before writing artifacts.
- **Do visualize** - A good diagram is worth many paragraphs
- **Do explore the codebase** - Ground discussions in reality
- **Do question assumptions** - Including the user's and your own`,
license: 'MIT',
compatibility: 'Requires openspec CLI.',
metadata: { author: 'openspec', version: '1.0' },
};
}
export function getOpsxExploreCommandTemplate(): CommandTemplate {
return {
name: 'OPSX: Explore',
description: 'Enter explore mode - think through ideas, investigate problems, clarify requirements',
category: 'Workflow',
tags: ['workflow', 'explore', 'experimental', 'thinking'],
content: `Enter explore mode. Think deeply. Visualize freely. Follow the conversation wherever it goes.
**IMPORTANT: Explore mode is for thinking, not implementing.** You may read files, search code, and investigate the codebase, but you must NEVER write code or implement features. If the user asks you to implement something, remind them to exit explore mode first and create a change proposal. You MAY create OpenSpec artifacts (proposals, designs, specs) if the user asks—that's capturing thinking, not implementing. For a new change, scaffold it first as described below.
**This is a stance, not a workflow.** There are no fixed steps, no required sequence, no mandatory outputs. You're a thinking partner helping the user explore.
${STORE_SELECTION_GUIDANCE}
**Input**: The argument after \`/opsx:explore\` is whatever the user wants to think about. Could be:
- A vague idea: "real-time collaboration"
- A specific problem: "the auth system is getting unwieldy"
- A change name: "add-dark-mode" (to explore in context of that change)
- A comparison: "postgres vs sqlite for this"
- Nothing (just enter explore mode)
---
## The Stance
- **Curious, not prescriptive** - Ask questions that emerge naturally, don't follow a script
- **Open threads, not interrogations** - Surface multiple interesting directions and let the user follow what resonates. Don't funnel them through a single path of questions.
- **Visual** - Use ASCII diagrams liberally when they'd help clarify thinking
- **Adaptive** - Follow interesting threads, pivot when new information emerges
- **Patient** - Don't rush to conclusions, let the shape of the problem emerge
- **Grounded** - Explore the actual codebase when relevant, don't just theorize
---
## What You Might Do
Depending on what the user brings, you might:
**Explore the problem space**
- Ask clarifying questions that emerge from what they said
- Challenge assumptions
- Reframe the problem
- Find analogies
**Investigate the codebase**
- Map existing architecture relevant to the discussion
- Find integration points
- Identify patterns already in use
- Surface hidden complexity
**Compare options**
- Brainstorm multiple approaches
- Build comparison tables
- Sketch tradeoffs
- Recommend a path (if asked)
**Visualize**
\`\`\`
┌─────────────────────────────────────────┐
│ Use ASCII diagrams liberally │
├─────────────────────────────────────────┤
│ │
│ ┌────────┐ ┌────────┐ │
│ │ State │────────▶│ State │ │
│ │ A │ │ B │ │
│ └────────┘ └────────┘ │
│ │
│ System diagrams, state machines, │
│ data flows, architecture sketches, │
│ dependency graphs, comparison tables │
│ │
└─────────────────────────────────────────┘
\`\`\`
**Surface risks and unknowns**
- Identify what could go wrong
- Find gaps in understanding
- Suggest spikes or investigations
---
## OpenSpec Awareness
You have full context of the OpenSpec system. Use it naturally, don't force it.
### Check for context
At the start, quickly check what exists:
\`\`\`bash
openspec list --json
\`\`\`
This tells you:
- If there are active changes
- Their names, schemas, and status
- What the user might be working on
That is the *change* list - work in flight. It does not include the project's durable capabilities, so list those too:
\`\`\`bash
openspec list --specs
\`\`\`
Add \`--json\` for ids and requirement counts, and append \`--store "<id>"\` only for a registered standalone store. This is the inventory of what the project already claims to do, and \`openspec list\` on its own never shows it. To look at one, run \`openspec show "<spec-id>" --type spec --json --no-scenarios\` (same \`--store\` rule) - it returns that capability's purpose and requirement texts without pulling the whole spec file into context, and \`--type spec\` stops a change of the same name from making it ambiguous.
Then read the project's own context from the resolved root - \`<root.path>/openspec/config.yaml\` (or \`config.yml\`). Use the \`root.path\` returned above, and skip this if neither file exists:
- \`context\`: project background - tech stack, conventions, constraints
- \`rules\`: keyed by artifact id - the entries for an artifact apply only when you write that artifact
Ground your thinking in these. They are constraints for you to follow, not content to reproduce: do NOT copy them into the conversation or into any artifact you create.
If the user mentioned a specific change name, read its artifacts for context.
### When no change exists
Think freely. When insights crystallize, you might offer:
- "This feels solid enough to start a change. Want me to create a proposal?"
- Or keep exploring - no pressure to formalize
If the user asks you to capture the exploration as a new change, transition seamlessly into the requested capture:
1. Run \`openspec new change "<name>"\` (with \`--store <id>\` when applicable) before creating any artifacts. Never create a new change directory under \`openspec/changes/\` by hand; the CLI scaffold creates required metadata such as \`.openspec.yaml\`. Keep the selected \`--store <id>\` on every applicable follow-up \`status\` and \`instructions\` command.
2. Run \`openspec status --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store), then process the requested artifacts in dependency order. For each requested artifact that is \`ready\`, run \`openspec instructions "<artifact-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store). Before creating a requested artifact, evaluate any condition in its own \`instruction\` against the explored change; record a deliberate skip instead when the condition does not apply. If a requested artifact is blocked by a direct prerequisite the user did not request, run \`openspec instructions "<prerequisite-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) for that prerequisite whether it is \`ready\` or \`blocked\`. If its own \`instruction\` states a condition, evaluate that condition against the explored change and record a deliberate skip only when the condition does not apply. If the condition applies, or the prerequisite is not conditional, treat it as a normal prerequisite and ask before expanding the capture. Do not create an unrequested prerequisite unless the user approves.
3. Follow the returned \`template\` and \`instruction\` fields. Read completed dependency files listed in \`dependencies\`, and apply \`context\` and \`rules\` as constraints without copying them into the artifact. If the instruction delegates creation to a specific skill or command, invoke it; otherwise write the artifact to \`resolvedOutputPath\`, using the instruction to choose a concrete path when it is a glob. Verify that the selected concrete output exists.
4. After creating each artifact, re-run \`openspec status --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) and continue until every requested artifact is \`done\`, \`skipped\`, or was deliberately skipped because its own \`instruction\` stated a condition that did not apply. Tell the user about a deliberate conditional skip, remember it, and do not reconsider it. Dependencies are enablers, not gates: if a requested artifact is still \`blocked\` only because you deliberately skipped a conditional prerequisite, run \`openspec instructions "<artifact-id>" --change "<name>" --json\` (append the confirmed \`--store "<id>"\` only for a registered standalone store) despite the blocked status, then create it using step 3 only when those recorded conditional skips are its sole missing dependencies. If a requested artifact is blocked by a prerequisite the user did not ask to capture and cannot be conditionally skipped, explain that dependency and ask before expanding the capture.
Capture the artifact(s) the user requested without asking them to invoke another workflow command. If they asked only to start a change, stop after scaffolding and show its status.
### When a change exists
If the user mentions a change or you detect one is relevant:
1. **Resolve and read existing artifacts for context**
- Run \`openspec status --change "<name>" --json\`.
- Use \`changeRoot\`, \`artifactPaths\`, and \`actionContext\` from the status JSON.
- Read existing files from \`artifactPaths.<artifact>.existingOutputPaths\`.
2. **Reference them naturally in conversation**
- "Your design mentions using Redis, but we just realized SQLite fits better..."
- "The proposal scopes this to premium users, but we're now thinking everyone..."
3. **Offer to capture when decisions are made**
\`<capability-path>\` is the spec directory relative to \`specs/\` (for example, \`user-auth\` or \`identity/user-auth\`). Preserve an existing capability's full path and follow the project's established organization for new capabilities.
| Insight Type | Where to Capture |
|----------------------------|-------------------------------------|
| New requirement discovered | \`specs/<capability-path>/spec.md\` |
| Requirement changed | \`specs/<capability-path>/spec.md\` |
| Design decision made | \`design.md\` |
| Scope changed | \`proposal.md\` |
| New work identified | \`tasks.md\` |
| Assumption invalidated | Relevant artifact |
Example offers:
- "That's a design decision. Capture it in design.md?"
- "This is a new requirement. Add it to specs?"
- "This changes scope. Update the proposal?"
4. **The user decides** - Offer and move on. Don't pressure. Don't auto-capture.
---
## What You Don't Have To Do
- Follow a script
- Ask the same questions every time
- Produce a specific artifact
- Reach a conclusion
- Stay on topic if a tangent is valuable
- Be brief (this is thinking time)
---
## Ending Discovery
There's no required ending. Discovery might:
- **Flow into a proposal**: "Ready to start? I can create a change proposal."
- **Result in artifact updates**: "Updated design.md with these decisions"
- **Just provide clarity**: User has what they need, moves on
- **Continue later**: "We can pick this up anytime"
When things crystallize, you might offer a summary - but it's optional. Sometimes the thinking IS the value.
---
## Guardrails
- **Don't implement** - Never write code or implement features. Creating OpenSpec artifacts is fine, writing application code is not.
- **Don't fake understanding** - If something is unclear, dig deeper
- **Don't rush** - Discovery is thinking time, not task time
- **Don't force structure** - Let patterns emerge naturally
- **Don't auto-capture** - Offer to save insights, don't just do it
- **Don't manually scaffold changes** - Never create a new change directory under \`openspec/changes/\` by hand. Always use \`openspec new change "<name>"\` (with \`--store <id>\` when applicable) so required metadata such as \`.openspec.yaml\` is created before writing artifacts.
- **Do visualize** - A good diagram is worth many paragraphs
- **Do explore the codebase** - Ground discussions in reality
- **Do question assumptions** - Including the user's and your own`
};
}