rover

作成者: apollographql

Apollo Rover CLIは、GraphQLスキーマ、フェデレーション、ローカルスーパーグラフ開発を管理するためのツールです。サブグラフスキーマの公開、取得、検証、フェデレーテッドスーパーグラフのローカルまたはGraphOS経由での構成を行います。スキーマチェック(デプロイ前検証)、リンティング、実行中のサーバーからのイントロスペクションを含みます。rover devコマンドは、開発ワークフロー向けに自動スキーマ構成を備えたローカルRouterを起動します。公開前チェック検証とスクリプト用のJSON出力を備えたCI/CDパターンをサポートします。必須条件...

npx skills add https://github.com/apollographql/skills --skill rover

Apollo Rover CLI Guide

Rover is the official CLI for Apollo GraphOS. It helps you manage schemas, run composition locally, publish to GraphOS, and develop supergraphs on your local machine.

Quick Start

Step 1: Install

# macOS/Linux
curl -sSL https://rover.apollo.dev/nix/latest | sh

# npm (cross-platform)
npm install -g @apollo/rover

# Windows PowerShell
iwr 'https://rover.apollo.dev/win/latest' | iex

Step 2: Authenticate

# Interactive authentication (opens browser)
rover config auth

# Or set environment variable
export APOLLO_KEY=your-api-key

Step 3: Verify Installation

rover --version
rover config whoami

Explore a Graph's Schema (start here for schema questions)

To answer "what's in this graph?", find a field, or write a query against a GraphOS graph, fetch the API schema and pipe it into rover schema — this keeps the SDL out of your context and returns only what you need:

# What can I query? (compact overview)
rover graph fetch <graph@variant> | rover schema describe -

# Find a field by concept/keyword (returns the path from a root operation)
rover graph fetch <graph@variant> | rover schema search - "<keyword>"

# Zoom into one type or field
rover graph fetch <graph@variant> | rover schema describe - --coord <Type.field> --depth 1

Three rules that keep this correct:

  • Use rover graph fetch (the API schema) — not rover supergraph fetch (that returns composition SDL with federation internals like join__/link__).
  • Pipe it in — never run rover graph fetch alone and read the raw SDL (a large schema floods your context; that's exactly what rover schema avoids).
  • The schema commands read piped SDL, not a graph ref — rover schema describe <graph@variant> fails; you must fetch first and pipe.

Full reference, ranking rules, and the save-once pattern: Schema Exploration and references/schema.md.

Core Commands Overview

CommandDescriptionUse Case
rover subgraph publishPublish subgraph schema to GraphOSCI/CD, schema updates
rover subgraph checkValidate schema changesPR checks, pre-deploy
rover subgraph fetchDownload subgraph schemaLocal development
rover supergraph composeCompose supergraph locallyLocal testing
rover devLocal supergraph developmentDevelopment workflow
rover graph publishPublish monograph schemaNon-federated graphs
rover schema describeExplore a schema by coordinate; takes SDL via stdin/file, not a graph ref — pipe from rover graph fetchAgent schema discovery
rover schema searchSearch a schema by keyword; takes SDL via stdin/file, not a graph ref — pipe from rover graph fetchAgent schema discovery

Graph Reference Format

Most commands require a graph reference in the format:

<GRAPH_ID>@<VARIANT>

Examples:

  • my-graph@production
  • my-graph@staging
  • my-graph@current (default variant)

Set as environment variable:

export APOLLO_GRAPH_REF=my-graph@production

Subgraph Workflow

Publishing a Subgraph

# From schema file
rover subgraph publish my-graph@production \
  --name products \
  --schema ./schema.graphql \
  --routing-url https://products.example.com/graphql

# From running server (introspection)
rover subgraph publish my-graph@production \
  --name products \
  --schema <(rover subgraph introspect http://localhost:4001/graphql) \
  --routing-url https://products.example.com/graphql

Checking Schema Changes

# Check against production traffic
rover subgraph check my-graph@production \
  --name products \
  --schema ./schema.graphql

Fetching Schema

# Fetch from GraphOS
rover subgraph fetch my-graph@production --name products

# Introspect running server
rover subgraph introspect http://localhost:4001/graphql

Supergraph Composition

Local Composition

Create supergraph.yaml:

federation_version: =2.9.0
subgraphs:
  products:
    routing_url: http://localhost:4001/graphql
    schema:
      file: ./products/schema.graphql
  reviews:
    routing_url: http://localhost:4002/graphql
    schema:
      subgraph_url: http://localhost:4002/graphql

federation_version here is the composition version — it only needs to be ≥ each subgraph's @link floor, so subgraphs pinned to a lower version compose fine. If a subgraph server throws UNKNOWN_FEDERATION_LINK_VERSION at startup, that's a client-library lag, not a composition problem. See the apollo-federation skill's Federation versions.

Compose:

rover supergraph compose --config supergraph.yaml > supergraph.graphql

Fetch Composed Supergraph

rover supergraph fetch my-graph@production

This returns the supergraph SDL (federation directives + join__/link__ internals) — use it for composition/router work. To explore what you can query or write an operation, use rover graph fetch (the API schema) instead — see Explore a Graph's Schema.

Local Development with rover dev

Start a local Router with automatic schema composition:

# Start with supergraph config
rover dev --supergraph-config supergraph.yaml

# Start with GraphOS variant as base
rover dev --graph-ref my-graph@staging --supergraph-config local.yaml

With MCP Integration

# Start with MCP server enabled
rover dev --supergraph-config supergraph.yaml --mcp

Schema Exploration (for Agents)

rover schema describe and rover schema search let an agent explore a schema without loading the full SDL into context — that is the entire point of these commands.

⚠️ Never read the raw SDL into context. Running rover graph fetch <ref> (or rover graph introspect <url>) on its own prints the entire schema — hundreds to tens of thousands of lines — straight into your context, which defeats the purpose of these commands. Always pipe fetch output into rover schema describe/search: the SDL flows through stdin and only the compact overview/results reach you. (Fetching to a file is fine when the user actually wants the SDL.)

These commands also take SDL on stdin or a file, NOT a graph ref — you can't pass graph@variant to them. Fetch first, then pipe:

❌ rover schema describe my-graph@current             # error: looks for a file named that
❌ rover graph fetch my-graph@current                 # dumps the full SDL into your context
✅ rover graph fetch my-graph@current | rover schema describe -

To explore a graph in GraphOS, fetch its schema and pipe it in. Use rover graph fetch (the API schema) for "what can I query?" exploration — it omits federation internals. Reach for rover supergraph fetch only when you need composition details (join__/link__ types, subgraph structure):

# Overview of a GraphOS graph
rover graph fetch my-graph@current | rover schema describe -

# Find fields by keyword (results include paths from root operations)
rover graph fetch my-graph@current | rover schema search - "playback"

# Zoom into a coordinate, expanding referenced types one level
rover graph fetch my-graph@current | rover schema describe - --coord <Type.field> --depth 1

Coordinate forms: --coord accepts a type (User), a field (User.posts), a field argument (Type.field(arg:)), or a directive (@deprecated) — omit it for the overview.

search vs describe: reach for rover schema search first when matching a concept or keyword and you don't yet know the field name — it finds nested fields and shows the path from a root operation. The describe overview lists only root fields, so search is how you locate fields buried deeper. Use describe for the overview or once you know the type/field coordinate.

This enables a closed-loop workflow — search → describe → write a query — with no MCP server setup. See Schema Exploration for the full command reference, ranking rules, and the save-once pattern for large schemas.

Running the generated operation: Rover does not execute queries — it only manages and inspects schemas. To actually run a generated query you need the graph's endpoint:

  • Single-subgraph graph: rover subgraph list <graph@variant> prints the Routing Url — send the query there with curl.
  • Multi-subgraph / federated: the client endpoint is the router URL (find it in GraphOS Studio; for a GraphOS cloud router, rover cloud config fetch <graph@variant>), not the per-subgraph routing URLs.
  • Don't try to discover the endpoint via the GraphOS Platform API — Rover keeps the API key in its profile/keychain, not $APOLLO_KEY, so ad-hoc API calls will come back unauthenticated.

Reference Files

Detailed documentation for specific topics:

  • Subgraphs - fetch, publish, check, lint, introspect, delete
  • Graphs - monograph commands (non-federated)
  • Supergraphs - compose, fetch, config format
  • Dev - rover dev for local development
  • Schema Exploration - describe, search, agent schema discovery workflows
  • Configuration - install, auth, env vars, profiles

Common Patterns

CI/CD Pipeline

# 1. Check schema changes
rover subgraph check $APOLLO_GRAPH_REF \
  --name $SUBGRAPH_NAME \
  --schema ./schema.graphql

# 2. If check passes, publish
rover subgraph publish $APOLLO_GRAPH_REF \
  --name $SUBGRAPH_NAME \
  --schema ./schema.graphql \
  --routing-url $ROUTING_URL

Schema Linting

# Lint against GraphOS rules
rover subgraph lint --name products ./schema.graphql

# Lint monograph
rover graph lint my-graph@production ./schema.graphql

Output Formats

# JSON output for scripting
rover subgraph fetch my-graph@production --name products --format json

# Plain output (default)
rover subgraph fetch my-graph@production --name products --format plain

Ground Rules

  • ALWAYS authenticate before using GraphOS commands (rover config auth or APOLLO_KEY)
  • ALWAYS use the correct graph reference format: graph@variant
  • PREFER rover subgraph check before rover subgraph publish in CI/CD
  • USE rover dev for local supergraph development instead of running Router manually
  • NEVER commit APOLLO_KEY to version control; use environment variables
  • USE --format json when parsing output programmatically
  • SPECIFY federation_version explicitly in supergraph.yaml for reproducibility
  • USE rover subgraph introspect to extract schemas from running services
  • USE rover schema search / rover schema describe (piped from a fetch) to explore large schemas instead of loading the full SDL into context
  • NEVER fetch a full schema into context just to explore it — pipe rover graph fetch/introspect into rover schema describe/search (a bare fetch is only for when the user wants the SDL file itself)

apollographqlのその他のスキル

apollo-federation
apollographql
Apollo Federationは、複数のGraphQL API(サブグラフ)を統合されたスーパーグラフに構成することを可能にします。
apollo-ios
apollographql
Apollo iOSは、Appleプラットフォーム向けの強く型付けされたGraphQLクライアントです。GraphQLの操作とスキーマからSwiftの型を生成し、async/awaitクライアント、正規化キャッシュ(インメモリまたはSQLite対応)、クエリ、ミューテーション、マルチパートサブスクリプションを処理するプラグ可能なインターセプターベースのHTTPトランスポート、および任意の操作タイプを伝送可能なオプションのWebSocketトランスポート(graphql-transport-ws)を搭載しています。
apollo-router
apollographql
Apollo Routerは、Apollo Federation 2のスーパーグラフを実行するためにRustで書かれた高性能なグラフルーターです。サブグラフの前に配置され、クエリの計画、実行、レスポンスの合成を処理します。
apollo-router-plugin-creator
apollographql
Apollo Router用のネイティブRustプラグインを作成します。
apollo-server
apollographql
Apollo Server 5.xを使用してフレームワーク間でGraphQLサーバーを構築するための完全ガイド。スキーマ定義、リゾルバ、コンテキスト設定、TypeScriptサポートによるエラーハンドリングを網羅。プロトタイピング用のスタンドアロンモードと、Express、Fastify、Koa、サーバーレス環境との統合をサポート。リゾルバパターン、認証/認可、プラグイン、N+1問題防止のためのDataLoader、パフォーマンス最適化手法を含む。データソース、エラー...のリファレンスドキュメントを提供。
graphql-operations
apollographql
効率的で型安全なGraphQLオペレーションを作成し、フラグメントで整理するためのベストプラクティスガイド。クエリ、ミューテーション、サブスクリプション、フラグメントについて、命名規則、変数構文、ディレクティブの使用法を網羅。必要なフィールドのみをリクエストする、すべてのオペレーションに名前を付ける、ハードコードされた値の代わりに変数を使用する、キャッシュ可能性のためにIDフィールドを含めるといった基本原則を強調。フラグメントをコンポーネントと併置し、条件付きフィールドには@include/@skipディレクティブを使用することを推奨...
graphql-schema
apollographql
直感的で高性能かつ保守可能なGraphQLスキーマを設計するための業界ベストプラクティスガイド。クライアント中心の型構成、明示的なnull許容パターン、後方互換性のある進化戦略を含む中核設計原則を網羅。型、命名規則、カーソルベースのページネーション、エラーモデリング、セキュリティ考慮事項に関するリファレンスドキュメントを提供。インターフェース、ユニオン、入力型、ミューテーション、ID戦略に関する実践的なパターンをコード例とともに収録...
rust-best-practices
apollographql
Apollo GraphQLのベストプラクティスハンドブックに基づく慣用的なRustコーディング標準。9つの主要領域をカバー:コーディングスタイルとイディオム、clippyリンティング、パフォーマンス最適化、エラーハンドリング、テストパターン、ジェネリクスとディスパッチ、タイプステートパターン、ドキュメンテーション、ポインタ安全性。クローンよりも借用を重視し、thiserror/anyhowを用いたResultベースのエラーハンドリング、リリースビルドでのパフォーマンスプロファイリングを強調。所有権パターン、パニック回避に関するクイックリファレンスガイダンスを含む...