github/awesome-copilot/skills/typespec-create-api-plugin/SKILL.md
typespec-create-api-plugin
Generate a TypeSpec API plugin with REST operations, authentication, and Adaptive Cards for Microsoft 365 Copilot
- Source repository stars
- 37,126
- Declared platforms
- 0
- Static risk flags
- 1
- Last source update
- 2026-07-28
- Source checked
- 2026-07-28
Decision brief
What it does—and where it fits
Create a complete TypeSpec API plugin for Microsoft 365 Copilot that integrates with external REST APIs.
Not for
- Tasks that require unconfirmed production actions or broad system permissions.
- Environments where the pinned source and install steps cannot be inspected.
Compatibility matrix
Platform support, with evidence labels
| Platform | Status | Evidence | What to check |
|---|---|---|---|
| Codex | Not declared | No explicit evidence | Portability before use |
| Claude Code | Not declared | No explicit evidence | Portability before use |
| Cursor | Not declared | No explicit evidence | Portability before use |
| Gemini CLI | Not declared | No explicit evidence | Portability before use |
Installation
Inspect first. Install second.
The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.
npx skills add https://github.com/github/awesome-copilot --skill "skills/typespec-create-api-plugin"Inspect the Agent Skill "typespec-create-api-plugin" from https://github.com/github/awesome-copilot/blob/9933dcad5be5caeb288cebcd370eeeb2fc2f1685/skills/typespec-create-api-plugin/SKILL.md at commit 9933dcad5be5caeb288cebcd370eeeb2fc2f1685. List every install step, command, network request, credential, file read/write, external action, and rollback step. Explain whether it fits my task. Do not install or execute anything until I approve.
Workflow
What the source asks the agent to do
- 01
Reasoning & Response Instructions
Review the “Reasoning & Response Instructions” section in the pinned source before continuing.
Review and apply the “Reasoning & Response Instructions” source section. - 02
Workflow
Ask the user: 1. What is the API base URL and purpose? 2. What operations are needed (CRUD operations)? 3. What authentication method does the API use? 4. Should confirmations be required for any operations? 5. Do responses need Adaptive Cards?
What is the API base URL and purpose?What operations are needed (CRUD operations)?What authentication method does the API use? - 03
Requirements
Generate TypeSpec files with:
Generate TypeSpec files with: - 04
main.tsp - Agent Definition
Review the “main.tsp - Agent Definition” section in the pinned source before continuing.
Review and apply the “main.tsp - Agent Definition” source section.
Permission review
Static risk signals and limitations
Network access
The documentation includes network, browsing, or remote request actions.
authorizationUrl: "https://oauth.example.com/authorize";Network access
The documentation includes network, browsing, or remote request actions.
tokenUrl: "https://oauth.example.com/token";Evidence record
Why each signal appears
| Signal | Value | Evidence type | Meaning |
|---|---|---|---|
| Quality score | 69/100 | Computed | Documentation, specificity, maintenance, and trust rules |
| Repository stars | 37,126 | Source | Repository attention, not individual Skill quality |
| Compatibility | 0 platforms | Source | Declared in the catalog source record |
| Usage guide | automated source guide | Editorial | Generated or reviewed according to the visible evidence level |
Pinned source
Provenance and original SKILL.md
- Repository
- github/awesome-copilot
- Skill path
- skills/typespec-create-api-plugin/SKILL.md
- Commit
- 9933dcad5be5caeb288cebcd370eeeb2fc2f1685
- License
- MIT
- Collected
- 2026-07-28
- Default branch
- main
View the original SKILL.md
Create TypeSpec API Plugin
Create a complete TypeSpec API plugin for Microsoft 365 Copilot that integrates with external REST APIs.
Requirements
Generate TypeSpec files with:
main.tsp - Agent Definition
import "@typespec/http";
import "@typespec/openapi3";
import "@microsoft/typespec-m365-copilot";
import "./actions.tsp";
using TypeSpec.Http;
using TypeSpec.M365.Copilot.Agents;
using TypeSpec.M365.Copilot.Actions;
@agent({
name: "[Agent Name]",
description: "[Description]"
})
@instructions("""
[Instructions for using the API operations]
""")
namespace [AgentName] {
// Reference operations from actions.tsp
op operation1 is [APINamespace].operationName;
}
actions.tsp - API Operations
import "@typespec/http";
import "@microsoft/typespec-m365-copilot";
using TypeSpec.Http;
using TypeSpec.M365.Copilot.Actions;
@service
@actions(#{
nameForHuman: "[API Display Name]",
descriptionForModel: "[Model description]",
descriptionForHuman: "[User description]"
})
@server("[API_BASE_URL]", "[API Name]")
@useAuth([AuthType]) // Optional
namespace [APINamespace] {
@route("[/path]")
@get
@action
op operationName(
@path param1: string,
@query param2?: string
): ResponseModel;
model ResponseModel {
// Response structure
}
}
Authentication Options
Choose based on API requirements:
-
No Authentication (Public APIs)
// No @useAuth decorator needed -
API Key
@useAuth(ApiKeyAuth<ApiKeyLocation.header, "X-API-Key">) -
OAuth2
@useAuth(OAuth2Auth<[{ type: OAuth2FlowType.authorizationCode; authorizationUrl: "https://oauth.example.com/authorize"; tokenUrl: "https://oauth.example.com/token"; refreshUrl: "https://oauth.example.com/token"; scopes: ["read", "write"]; }]>) -
Registered Auth Reference
@useAuth(Auth) @authReferenceId("registration-id-here") model Auth is ApiKeyAuth<ApiKeyLocation.header, "X-API-Key">
Function Capabilities
Confirmation Dialog
@capabilities(#{
confirmation: #{
type: "AdaptiveCard",
title: "Confirm Action",
body: """
Are you sure you want to perform this action?
* **Parameter**: {{ function.parameters.paramName }}
"""
}
})
Adaptive Card Response
@card(#{
dataPath: "$.items",
title: "$.title",
url: "$.link",
file: "cards/card.json"
})
Reasoning & Response Instructions
@reasoning("""
Consider user's context when calling this operation.
Prioritize recent items over older ones.
""")
@responding("""
Present results in a clear table format with columns: ID, Title, Status.
Include a summary count at the end.
""")
Best Practices
- Operation Names: Use clear, action-oriented names (listProjects, createTicket)
- Models: Define TypeScript-like models for requests and responses
- HTTP Methods: Use appropriate verbs (@get, @post, @patch, @delete)
- Paths: Use RESTful path conventions with @route
- Parameters: Use @path, @query, @header, @body appropriately
- Descriptions: Provide clear descriptions for model understanding
- Confirmations: Add for destructive operations (delete, update critical data)
- Cards: Use for rich visual responses with multiple data items
Workflow
Ask the user:
- What is the API base URL and purpose?
- What operations are needed (CRUD operations)?
- What authentication method does the API use?
- Should confirmations be required for any operations?
- Do responses need Adaptive Cards?
Then generate:
- Complete
main.tspwith agent definition - Complete
actions.tspwith API operations and models - Optional
cards/card.jsonif Adaptive Cards are needed
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