Davide Barletta 74662cffad feat: update Bob integration to skills-based layout for Bob 2.0 (#3415)
* feat: update Bob integration to skills-based layout for Bob 2.0

Bob 2.0 replaces the command-based workflow (.bob/commands/*.md) with
a skills-based layout (.bob/skills/speckit-<name>/SKILL.md), matching
the pattern used by Claude Code, Codex, and other skills-first agents.

- Switch BobIntegration from MarkdownIntegration to SkillsIntegration
- Update folder/dir from .bob/commands to .bob/skills
- Change extension from .md to /SKILL.md (skills layout)
- Add --skills option (default: True) consistent with Codex pattern
- Update tests to inherit from SkillsIntegrationTests (28 tests pass)
- Bump catalog entry to version 2.0.0 with updated description

Assisted-by: IBM Bob (model: claude-sonnet-4-5, autonomous)

* PR comments fix: keep old Bob 1 commands till next release

* Copilot suggested change

Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>

* feat(bob): address copilot comments, make skills layout default, demote legacy commands to opt-in

* fix(bob): honor legacy_commands in ai_skills persistence and add bob to ALWAYS_SLASH_AGENTS

- init.py: suppress ai_skills=True when --legacy-commands is passed so
  extensions and presets target .bob/commands, not .bob/skills
- _invocation_style.py: add 'bob' to ALWAYS_SLASH_AGENTS so init next-steps
  and hook invocations always show /speckit-<name> (skills is the default
  layout; no ai_skills flag required)

* Copilot suggestion

Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>

* fix(bob): extend IntegrationBase directly to avoid false isinstance(SkillsIntegration)

- bob/__init__.py: switch BobIntegration base from SkillsIntegration to
  IntegrationBase; add _BobSkillsHelper for skills-mode delegation; set
  invoke_separator='-' explicitly; set _skills_mode flag in setup() so
  consumers can derive the effective mode without isinstance checks
- _helpers.py: replace isinstance(integration, SkillsIntegration) guard
  with getattr(_skills_mode) so legacy-commands mode does not persist
  ai_skills=True
- _invocation_style.py: remove 'bob' from ALWAYS_SLASH_AGENTS — Bob 2.0
  skills are invoked via natural language, not /skill-name slash commands
- integrations/catalog.json: advance updated_at to 2026-07-15

* fix(lint): remove unused SkillsIntegration import from _helpers.py

* Copilot suggested change

Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>

* feat(bob): add bob skills integration with registrar-based mode detection

* address 3 comments from copilot

* feat(bob): update registrar config to use legacy commands layout

* fix lint

* Suggested fix from Copilot

Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>

* fix pr comment

* fix pr comment

* fix pr comment

* refactor(bob): resolve skills mode via base-class hooks + fix command-ref separators

Rework the dual-mode handling introduced for Bob 2.0 so an integration's
internal representation never leaks into shared init/install/upgrade code,
and fix the legacy command-reference separator surfaced in review.

Base-class contract:
- Add IntegrationBase.is_skills_mode(parsed_options) — the single hook the
  shared machinery consults to decide whether to persist ai_skills and render
  skill invocations. SkillsIntegration returns True; Copilot honors --skills /
  self._skills_mode; Bob returns `not legacy_commands`.
- Add IntegrationBase.invoke_separator_for_mode(skills_enabled) — resolves the
  command-ref separator from a project's persisted mode for registration paths
  that only have the ai_skills flag (no CLI parsed_options). Default is
  behavior-preserving; Bob maps skills->"-", legacy->".".
- BobIntegration stays on IntegrationBase (mirroring Copilot, the other
  dual-mode agent) and delegates setup() to internal _BobSkillsHelper /
  _BobMarkdownHelper. Removes the _skills_mode method and all
  isinstance(SkillsIntegration) / callable(_skills_mode) probing from
  _helpers.py and init.py.

Fix legacy separator (review feedback): CommandRegistrar.register_commands and
PresetManager._resolve_skill_command_refs previously read the single static
AGENT_CONFIGS[key]["invoke_separator"], so legacy .bob/commands/ extension and
preset command refs rendered /speckit-<cmd> instead of Bob 1.x /speckit.<cmd>.
Both now resolve the separator per project mode via invoke_separator_for_mode.

Tests: add regression coverage for the is_skills_mode / invoke_separator_for_mode
hooks and legacy extension command-ref separators; normalize a width-sensitive
workflow assertion to match its siblings. Full suite green.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob,copilot): address review — preserve legacy layout, dual-mode separators, extension-skill token resolution

Addresses PR review 4716036212 (3 comments):

1. Bob legacy-install regression: `use`/`switch`/`upgrade` on an existing
   Bob 1.x project (only `.bob/commands/` on disk, no stored
   `legacy_commands`) called `is_skills_mode(None)` -> True and rewrote
   `ai_skills=True`, silently switching extension/command-reference handling
   to the skills layout. `is_skills_mode` now takes an optional `project_root`;
   Bob preserves an already-installed legacy layout until an explicit upgrade
   creates `.bob/skills/`. A fresh project still defaults to skills.

2. Copilot dual-mode separator: `invoke_separator_for_mode` was inherited
   from the base (mode-independent) and returned Copilot's static `.`, so
   preset/extension command refs in a Copilot skills project rendered
   `/speckit.<name>` instead of `/speckit-<name>`. Override it on Copilot to
   track the persisted `ai_skills` state, consistent with
   `build_command_invocation` and `effective_invoke_separator`.

3. Bob extension-skill command-ref tokens: verified that merging main's
   generic `_resolve_command_ref_tokens` (#3544) resolves Bob's tokens via
   the `CONDITIONAL_SLASH_AGENTS` path (`/speckit-<name>`); added Bob to the
   command-ref regression parametrize plus dedicated Bob use-path tests.

All tests pass (full suite green; merged with current main incl. #3544).

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): resolve command-ref separator with project-aware mode before shared-infra refresh (review #3415)

The `use`/`switch` paths refresh shared infrastructure via
`_with_integration_setting()` / `_invoke_separator_for_integration()`,
which previously resolved the invoke separator through
`effective_invoke_separator` / `is_skills_mode` WITHOUT a project_root.
For a pre-PR Bob 1.x project (.bob/commands/ on disk, no stored options),
this defaulted to the skills "-" separator and rewrote rendered
shared-template command refs to /speckit-*, even though ai_skills stayed
false. Thread project_root through effective_invoke_separator, the two
runtime helpers, and every call site so Bob's on-disk legacy detection
governs the separator before shared infra is refreshed.

Add a rendered-shared-template regression test covering `use --force`.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): scope persisted ai_skills flag to active agent when resolving command-ref separator (review #3415)

`register_commands` runs once per detected agent, but the persisted
`ai_skills` flag describes only the active integration (`opts["ai"]`).
When another agent (e.g. Copilot) is active in skills mode while a
legacy `.bob/commands` layout is also present, the previous code passed
that global `True` to Bob's `invoke_separator_for_mode`, rewriting Bob
1.x command refs to `/speckit-*` instead of `/speckit.*`.

Only consult the persisted flag for the agent it describes
(`opts["ai"] == agent_name`); otherwise resolve the separator from the
agent's own project-aware `effective_invoke_separator(None, project_root)`.

Add regression tests covering the mismatched-active-agent case and a
control for Bob-active skills mode.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): detect Spec Kit layout from managed artifacts, not any skills dir (review #3415)

Two related mis-detections from review 4723246468:

1. `BobIntegration.is_skills_mode` treated the mere presence of a
   `.bob/skills/` directory as proof the project is skills-based. A legacy
   Spec Kit install (managed `.bob/commands/speckit.*.md`) that also carried
   unrelated Bob 2 skills would be misclassified as skills, so
   `integration use bob` persisted `ai_skills` and rewrote shared refs.
   Now the layout is inferred from managed Spec Kit artifacts: legacy/command
   mode only when managed `speckit.*.md` command files exist and no managed
   `speckit-*` skill dirs do.

2. The `register_commands` separator for an inactive agent used a disk-based
   `effective_invoke_separator(None, project_root)` fallback that could pick
   the skills separator even though the registrar writes the static command
   layout (`.bob/commands/*.md`). Inactive agents now resolve the separator
   from the registrar's actual output layout (`extension == "/SKILL.md"`),
   so command-layout files keep `/speckit.*` refs regardless of sibling dirs.

Update the affected hook/E2E tests to use managed artifacts and add
regression tests for the mixed-layout and inactive-registrar scenarios.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): apply managed-artifact detection on upgrade + consistent skill post-processing (review #3415)

Two issues from review 4723782860:

1. `BobIntegration.setup()` resolved the layout via `is_skills_mode(parsed_options)`
   WITHOUT `project_root`, so `integration upgrade bob` on a Bob 1.x install
   (managed `.bob/commands/speckit.*.md`, no stored options) ignored the
   existing command files, generated skills, and stale-deleted the legacy
   commands — silently migrating the project. Pass `project_root` so the same
   managed-artifact detection used by `use` also governs upgrades.

2. Only `_BobSkillsHelper` overrode `post_process_skill_content` to suppress
   the shared slash-command hook note. Preset/extension skill generators call
   that hook on the registered `BobIntegration`, which inherited
   `IntegrationBase`'s note-injecting default. Repeat the no-op (delegating to
   the skills helper) on the registered class so every Bob skill-generation
   path is consistent with intent-activated core Bob skills.

Add regression tests for the upgrade-preservation and post-processing paths.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* feat(bob): add --skills migration opt-in; fix separator + manifest loss (review #3415)

Address review #3415 (4724160183):

- Comment 1: Add an explicit `--skills` opt-in to BobIntegration. It forces
  the skills layout over on-disk auto-detection, giving legacy Bob 1.x
  installs a supported migration path
  (`integration upgrade bob --integration-options="--skills"`). `--skills`
  and `--legacy-commands` are mutually exclusive (clean exit-1 error).

- Comment 2: In CommandRegistrar.register_commands, derive the command-ref
  separator from the output layout (agent_config["extension"]) for the
  active agent too, not the persisted ai_skills flag. A command-layout file
  (.bob/commands/*.md, .github/agents/*.agent.md) always renders /speckit.*;
  only a /SKILL.md scaffold uses /speckit-*. Dual-layout agents (Bob,
  Copilot) write skills via their own setup()/skills path, so
  register_commands only ever emits their command-layout files.

- Comment 3: Update docs/reference/integrations.md Bob entry to document the
  skills-based default (.bob/skills/), the deprecated --legacy-commands
  opt-out, and the --skills migration path.

Also fix a latent manifest-loss bug surfaced by the migration path: the
upgrade Phase 2 stale-file cleanup built a throwaway manifest sharing the
integration key and called uninstall(), which always deleted
{key}.manifest.json. Any layout-shrinking upgrade (e.g. legacy->skills)
thus wiped the freshly-saved manifest, leaving the project untracked and
un-upgradeable. uninstall() now takes remove_manifest (default True); the
stale-cleanup pass passes False.

Adds regression tests for the --skills opt-in, mutual exclusion, corrected
active-agent separator, remove_manifest=False, and an end-to-end
legacy->skills migration that verifies the manifest survives and the
project remains upgradeable. Full suite: 4555 passed, 5 skipped.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* docs(agents): align token-resolution comment with output-layout separator rule (review #3415)

Address review #3415 (4725516805). The comment above resolve_command_refs
still described the removed state-based behavior ("resolve it from the
integration using the project's persisted skills state"). Update it to
describe the output-layout rule that register_commands now uses: _sep is
derived from the layout this registrar writes (a /SKILL.md scaffold uses the
skills separator; a command-layout file uses the command separator), not the
persisted ai_skills state. Comment-only change; no behavior change.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): reconcile extension artifacts on layout change (review #3415)

When a dual-mode agent (Bob) flips between the legacy commands layout and
the skills layout during `integration upgrade` (via `--skills` /
`--legacy-commands`), the old layout's extension command/skill files were
left orphaned: Phase 2 stale cleanup only removes files tracked by the
*integration* manifest, while extension artifacts are tracked in the
extension registry. Detect the layout flip by comparing whether the old vs
new manifest tracks a `/SKILL.md` scaffold, and when it changed, unregister
the agent's extension artifacts before the existing re-registration so they
are recreated in the new layout (and the per-agent registry is updated).

Preset artifacts are documented as a known, pre-existing cross-cutting gap:
no agent-scoped preset re-registration exists in use/switch/upgrade for any
agent, so reconciling them is out of scope for this Bob migration.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): reject layout migration when preset overrides are installed (review #3415)

A command↔skills layout change during `integration upgrade` cannot reconcile
preset artifacts: presets track their command/skill files in per-preset
`registered_commands`/`registered_skills` metadata, and there is no
agent-scoped preset re-registration anywhere in the CLI. Migrating would
delete a preset's old-layout files without recreating them in the new layout
and leave the preset registry claiming artifacts that no longer exist.

Detect the intended layout via `is_skills_mode` (so a plain same-layout
upgrade is unaffected) and, when it flips while preset overrides are
installed for the agent, reject the upgrade *before any mutation* with an
actionable error pointing at the remove → upgrade → reinstall workaround.
Extension artifacts are still reconciled for the safe (no-preset) case.

Adds a regression test and documents the migration caveat in the Bob
integration reference entry.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): restrict layout reconciliation to the active integration (review #3415)

`integration_upgrade` supports upgrading a secondary (non-active) integration,
but the layout-change extension reconciliation was unsafe there.
`ExtensionManager.unregister_agent_artifacts()` treats the unscoped
per-extension `registered_skills` list as belonging to the passed agent and,
when that agent's skills directory is absent, falls back to scanning every
agent's skills directory — so reconciling a secondary Bob layout flip could
delete or untrack the *active* agent's extension skills. The subsequent
re-registration cannot repair that because extension skill rendering is
intentionally scoped to the active agent (#2948).

Gate the unregister-before-register reconciliation on `installed_key == key`
so it only runs for the active integration. Secondary agents only ever have
extension command files (skills are active-agent-only), which the existing
re-registration rewrites in place, so skipping the unregister orphans nothing
new. Adds a regression test asserting a secondary Bob layout change leaves the
active agent's extension skill intact on disk and in the registry.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): fail closed when preset registry is unreadable (review #3415)

Address review 4744636079:

- _migrate_commands: the preset guard previously failed *open* — a
  registry read/parse error returned an empty "no presets" list, so a
  --force layout-changing upgrade could delete preset-overridden command
  files while their registry state was unknown. Read the registry file
  directly and raise _PresetRegistryUnreadableError on any read/parse
  failure or malformed structure, rejecting the migration before any
  mutation. A genuinely absent registry still returns [] (safe).

- bob: correct the is_skills_mode docstring — upgrade *does* run setup();
  disk detection is needed because legacy Bob 1.x installs never persisted
  a legacy_commands option, so the stored mode is unavailable.

- tests: add fail-closed E2E (corrupted registry rejected, valid-empty
  allowed) plus a unit test for _installed_presets_affecting_agent covering
  absent / corrupted / malformed / valid / affecting-agent cases.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

* fix(bob): fail closed on malformed preset entries too (review #3415)

Address review 4745191015: the preset guard read a parseable registry but
silently skipped malformed per-preset metadata and treated a malformed
registered_commands value as "no matching artifacts". A registry such as
{"presets":{"p1":[]}} therefore allowed a layout migration even though p1's
ownership is unknown, risking deletion of preset-managed files. Now raise
_PresetRegistryUnreadableError for a non-dict preset entry, a non-dict
registered_commands, or a non-list registered_skills. Extend the unit test
to cover these malformed shapes.

Assisted-by: GitHub Copilot (model: Claude Opus 4.8, autonomous)
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
Copilot-Session: 63f93544-a77f-4f01-bf04-c88806a97dbf

---------

Co-authored-by: Copilot Autofix powered by AI <175728472+Copilot@users.noreply.github.com>
Co-authored-by: Manfred Riem <15701806+mnriem@users.noreply.github.com>
Co-authored-by: Copilot App <223556219+Copilot@users.noreply.github.com>
2026-07-21 09:20:20 -05:00
2025-10-17 13:04:27 -07:00
2025-12-04 11:50:36 -08:00

Spec Kit Logo

🌱 Spec Kit

Define what to build before building it — with any AI coding agent.

An open source toolkit for building high-quality software with any AI coding agent — a ready-to-use spec-driven process (or bring your own), endlessly extensible, community-driven, and built for your whole organization.

Latest Release GitHub stars License Documentation


Table of Contents

🤔 What is Spec-Driven Development?

Spec-Driven Development flips the script on traditional software development. For decades, code has been king — specifications were just scaffolding we built and discarded once the "real work" of coding began. Spec-Driven Development changes this: specifications become executable, directly generating working implementations rather than just guiding them.

Get Started

1. Install Specify CLI

Requires uv (install uv). Replace vX.Y.Z with the latest release tag from Releases — keep the leading v (for example, v0.12.11, not 0.12.11):

uv tool install specify-cli --from git+https://github.com/github/spec-kit.git@vX.Y.Z

Prefer installing from PyPI? The specify-cli package is also published there:

uv tool install specify-cli

See the Installation Guide for alternative methods, verification, upgrade, and troubleshooting.

2. Initialize a project

specify init my-project --integration copilot
cd my-project

To check for updates or upgrade the installed CLI, use the self-management commands. See the Upgrade Guide for detailed scenarios and customization options.

# Check whether a newer release is available (read-only — does not modify anything)
specify self check

# Preview what would run, without actually upgrading
specify self upgrade --dry-run

# Upgrade in place to the latest stable release (auto-detects uv tool vs pipx install)
specify self upgrade

# Or pin a specific release tag (replace vX.Y.Z[suffix] with your desired release tag)
specify self upgrade --tag vX.Y.Z[suffix]

Bare specify self upgrade executes immediately, matching the no-prompt behavior of commands like pip install -U and npm update. For uv tool installs, it runs uv tool install specify-cli --force --from <git ref> under the hood so pinned release tags work, including dev, alpha/beta/rc, or build metadata suffixes. uvx (ephemeral) runs and source checkouts are detected and produce path-specific guidance instead of running an installer. Set SPECIFY_UPGRADE_TIMEOUT_SECS to cap how long the installer subprocess may run (default: no timeout — interrupt with Ctrl+C if needed).

3. Establish project principles

Launch your coding agent in the project directory. Most agents expose spec-kit as /speckit.* slash commands; Codex CLI in skills mode uses $speckit-* instead; GitHub Copilot CLI uses /agents to select the agent or address it directly in a prompt.

Use the /speckit.constitution command to create your project's governing principles and development guidelines that will guide all subsequent development.

/speckit.constitution Create principles focused on code quality, testing standards, user experience consistency, and performance requirements

4. Create the spec

Use the /speckit.specify command to describe what you want to build. Focus on the what and why, not the tech stack.

/speckit.specify Build an application that can help me organize my photos in separate photo albums. Albums are grouped by date and can be re-organized by dragging and dropping on the main page. Albums are never in other nested albums. Within each album, photos are previewed in a tile-like interface.

5. Create a technical implementation plan

Use the /speckit.plan command to provide your tech stack and architecture choices.

/speckit.plan The application uses Vite with minimal number of libraries. Use vanilla HTML, CSS, and JavaScript as much as possible. Images are not uploaded anywhere and metadata is stored in a local SQLite database.

6. Break down into tasks

Use /speckit.tasks to create an actionable task list from your implementation plan.

/speckit.tasks

7. Execute implementation

Use /speckit.implement to execute all tasks and build your feature according to the plan.

/speckit.implement

For detailed step-by-step instructions, see our comprehensive guide.

📽️ Video Overview

Want to see Spec Kit in action? Watch our video overview!

Spec Kit video header

🌍 Community

Explore community-contributed resources on the Spec Kit docs site:

  • Extensions — commands, hooks, and capabilities
  • Presets — template and terminology overrides
  • Bundles — role and team stacks composed from existing components
  • Walkthroughs — end-to-end SDD scenarios
  • Friends — projects that extend or build on Spec Kit

Note

Community contributions are independently created and maintained by their respective authors. Review source code before installation and use at your own discretion.

Want to contribute? See the Extension Publishing Guide, the Presets Publishing Guide, or the Community Bundles guide.

🤖 Supported AI Coding Agent Integrations

Spec Kit works with 30+ AI coding agents — both CLI tools and IDE-based assistants. See the full list with notes and usage details in the Supported AI Coding Agent Integrations guide.

Run specify integration list to see all available integrations in your installed version.

Available Slash Commands

After running specify init, your AI coding agent will have access to these slash commands for structured development. For integrations that support skills mode, passing --integration <agent> --integration-options="--skills" installs agent skills instead of slash-command prompt files.

Core Commands

Essential commands for the Spec-Driven Development workflow:

Command Agent Skill Description
/speckit.constitution speckit-constitution Create or update project governing principles and development guidelines
/speckit.specify speckit-specify Define what you want to build (requirements and user stories)
/speckit.plan speckit-plan Create technical implementation plans with your chosen tech stack
/speckit.tasks speckit-tasks Generate actionable task lists for implementation
/speckit.taskstoissues speckit-taskstoissues Convert generated task lists into GitHub issues for tracking and execution
/speckit.implement speckit-implement Execute all tasks to build the feature according to the plan
/speckit.converge speckit-converge Assess the codebase against spec/plan/tasks and append remaining work as new tasks

Optional Commands

Additional commands for enhanced quality and validation:

Command Agent Skill Description
/speckit.clarify speckit-clarify Clarify underspecified areas (recommended before /speckit.plan; formerly /quizme)
/speckit.analyze speckit-analyze Cross-artifact consistency & coverage analysis (run after /speckit.tasks, before /speckit.implement)
/speckit.checklist speckit-checklist Generate custom quality checklists that validate requirements completeness, clarity, and consistency (like "unit tests for English")

🔧 Specify CLI Reference

For full command details, options, and examples, see the CLI Reference.

🧩 Making Spec Kit Your Own: Extensions & Presets

Spec Kit can be tailored to your needs through two complementary systems — extensions and presets — plus project-local overrides for one-off adjustments:

Priority Component Type Location
⬆ 1 Project-Local Overrides .specify/templates/overrides/
2 Presets — Customize core & extensions .specify/presets/templates/
3 Extensions — Add new capabilities .specify/extensions/templates/
⬇ 4 Spec Kit Core — Built-in SDD commands & templates .specify/templates/
  • Templates are resolved at runtime — Spec Kit walks the stack top-down and uses the first match.
  • Project-local overrides (.specify/templates/overrides/) let you make one-off adjustments for a single project without creating a full preset.
  • Extension/preset commands are applied at install time — when you run specify extension add or specify preset add, command files are written into agent directories (e.g., .claude/commands/).
  • If multiple presets or extensions provide the same command, the highest-priority version wins. On removal, the next-highest-priority version is restored automatically.
  • If no overrides or customizations exist, Spec Kit uses its core defaults.

Extensions — Add New Capabilities

Use extensions when you need functionality that goes beyond Spec Kit's core. Extensions introduce new commands and templates — for example, adding domain-specific workflows that are not covered by the built-in SDD commands, integrating with external tools, or adding entirely new development phases. They expand what Spec Kit can do.

# Search available extensions
specify extension search

# Install an extension
specify extension add <extension-name>

For example, extensions could add Jira integration, post-implementation code review, V-Model test traceability, or project health diagnostics.

See the Extensions reference for the full command guide. Browse the community extensions for what's available.

Presets — Customize Existing Workflows

Use presets when you want to change how Spec Kit works without adding new capabilities. Presets override the templates and commands that ship with the core and with installed extensions — for example, enforcing a compliance-oriented spec format, using domain-specific terminology, or applying organizational standards to plans and tasks. They customize the artifacts and instructions that Spec Kit and its extensions produce.

# Search available presets
specify preset search

# Install a preset
specify preset add <preset-name>

For example, presets could restructure spec templates to require regulatory traceability, adapt the workflow to fit the methodology you use (e.g., Agile, Kanban, Waterfall, jobs-to-be-done, or domain-driven design), add mandatory security review gates to plans, enforce test-first task ordering, or localize the entire workflow to a different language. The pirate-speak demo shows just how deep the customization can go. Multiple presets can be stacked with priority ordering.

See the Presets reference for the full command guide, including resolution order and priority stacking.

📦 Bundles: Role-Based Setups

Extensions and presets are individual building blocks. A bundle packages a curated set of them — extensions, presets, steps, and workflows — into a single, versioned, role-oriented setup so a whole team persona (product manager, business analyst, security researcher, developer, …) can be provisioned with one command.

A bundle is described by a hand-written bundle.yml manifest. It pins each component to a version and, optionally, targets a specific integration; a bundle with no integration is agnostic and inherits whatever integration the project already uses.

# Discover bundles in the active catalog stack
specify bundle search [<query>]

# Inspect the exact component set a bundle will add (equals what install does)
specify bundle info <bundle-id>

# Install a bundle's full component set in one operation
specify bundle install <bundle-id>

# See what's installed, then update or remove non-destructively
specify bundle list
specify bundle update <bundle-id>     # or --all
specify bundle remove <bundle-id>     # removes only this bundle's components

Bundles resolve from a priority-ordered catalog stack (project > user > built-in). Each source carries an install policy: install-allowed sources can be installed from, while discovery-only sources are visible in search/info but refuse installation. Manage the stack with specify bundle catalog list|add|remove.

Authors validate and package bundles locally. Distribution is hosting the built artifact and adding a catalog source; community bundle submissions use the Bundle Submission issue template so required component catalogs and install evidence can be reviewed:

specify bundle validate --path ./my-bundle      # structural + reference checks
specify bundle build --path ./my-bundle         # produce a versioned .zip artifact

Four ready-to-read example manifests live under examples/bundles/ (product manager, business analyst, security researcher, developer).

Key guarantees: info shows exactly what install adds (transparency); installs are idempotent and confined to the project root; remove never touches components another installed bundle still needs; and all consume/author commands work offline against local or pinned sources.

When to Use Which

Goal Use
Add a brand-new command or workflow Extension
Customize the format of specs, plans, or tasks Preset
Integrate an external tool or service Extension
Enforce organizational or regulatory standards Preset
Ship reusable domain-specific templates Either — presets for template overrides, extensions for templates bundled with new commands
Provision a complete role-based setup in one command Bundle

📚 Core Philosophy

Spec-Driven Development is a structured process that emphasizes:

  • Intent-driven development where specifications define the "what" before the "how"
  • Rich specification creation using guardrails and organizational principles
  • Multi-step refinement rather than one-shot code generation from prompts
  • Heavy reliance on advanced AI model capabilities for specification interpretation

🌟 Development Phases

Phase Focus Key Activities
0-to-1 Development ("Greenfield") Generate from scratch
  • Start with high-level requirements
  • Generate specifications
  • Plan implementation steps
  • Build production-ready applications
Creative Exploration Parallel implementations
  • Explore diverse solutions
  • Support multiple technology stacks & architectures
  • Experiment with UX patterns
Iterative Enhancement ("Brownfield") Brownfield modernization
  • Add features iteratively
  • Modernize legacy systems
  • Adapt processes

For existing projects, keep Spec Kit tooling updates separate from feature artifact evolution: refresh managed project files when upgrading, and update specs/ artifacts when intended behavior changes. The Evolving Specs guide describes the recommended brownfield loop.

🎯 Experimental Goals

Our research and experimentation focus on:

Technology independence

  • Create applications using diverse technology stacks
  • Validate the hypothesis that Spec-Driven Development is a process not tied to specific technologies, programming languages, or frameworks

Enterprise constraints

  • Demonstrate mission-critical application development
  • Incorporate organizational constraints (cloud providers, tech stacks, engineering practices)
  • Support enterprise design systems and compliance requirements

User-centric development

  • Build applications for different user cohorts and preferences
  • Support various development approaches (from vibe-coding to AI-native development)

Creative & iterative processes

  • Validate the concept of parallel implementation exploration
  • Provide robust iterative feature development workflows
  • Extend processes to handle upgrades and modernization tasks

🔧 Prerequisites

If you encounter issues with an agent, please open an issue so we can refine the integration.

📖 Learn More


💬 Support

For support, please open a GitHub issue. We welcome bug reports, feature requests, and questions about using Spec-Driven Development.

🙏 Acknowledgements

This project is heavily influenced by and based on the work and research of John Lam.

📄 License

This project is licensed under the terms of the MIT open source license. Please refer to the LICENSE file for the full terms.

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