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Get Started Free →Provides expert guidance on authenticating and authorizing to Google Cloud services and APIs, covering human users, service identities, Application Default Credentials (ADC), and best practices for secure access.
| Test case | Without → With | Effect | Δ tokens | Δ turns |
|---|---|---|---|---|
| case-11 | ✗→✓ | ▲ Improved | 150% | 0% |
| case-12 | ✗→✓ | ▲ Improved | 133% | 0% |
| case-03 | ✓→✓ | = Same ✓ | 193% | 0% |
| case-04 | ✓→✓ | = Same ✓ | 117% | 0% |
| case-05 | ✓→✓ | = Same ✓ | 99% | 0% |
Authentication is the process of proving who you are. In Google Cloud, you represent a Principal (an identity like a user or a service). This is the first step before Authorization (determining what you can do).
Before providing a specific solution, clarify the following with the user:
application running in production?)
Engine](https://docs.cloud.google.com/compute/docs), GKE, Cloud Run, or another cloud like AWS/Azure?)
custom application you built?)
libraries usually handle ADC automatically.)
For users to access Google Cloud, they need an identity that Google Cloud can recognize.
Google Cloud supports several ways to configure identities for your internal workforce (developers, administrators, employees):
Accounts](https://docs.cloud.google.com/iam/docs/user-identities#google-accounts): You can use Cloud Identity or Google Workspace to create managed user accounts. These are called managed accounts because your organization controls their lifecycle and configuration.
Workspace](https://docs.cloud.google.com/iam/docs/user-identities#synced-federation): You can federate identities to allow users to use their existing identity and credentials to sign in to Google services. Users authenticate against an external identity provider (IdP), but you must keep accounts synchronized into Google Cloud using tools like Google Cloud Directory Sync (GCDS) or an external authoritative source like Active Directory or Microsoft Entra ID.
Federation](https://docs.cloud.google.com/iam/docs/user-identities#workforce): This lets you use an external IdP to authenticate and authorize a workforce using IAM directly. Unlike standard federation, you do not need to synchronize user identities from your existing IdP to Google Cloud identities. It supports syncless, attribute-based single sign-on.
Used for interacting with Google Cloud resources and APIs during development and management.
web interface. You authenticate using your Google Account (Gmail or Google Workspace).
auth login)**: Used to authenticate the CLI itself so you can run management commands (e.g., gcloud compute instances list). It uses a Credential (like an OAuth 2.0 refresh token) stored locally.
(ADC)](https://docs.cloud.google.com/docs/authentication/application-default-credentials) (gcloud auth application-default login): This is different from CLI auth. It creates a local JSON file that Google Cloud Client Libraries (Python, Java, etc.) use to act as "you" when you run code on your laptop.
Impersonation](https://docs.cloud.google.com/docs/authentication/use-service-account-impersonation): For security reasons, developers should avoid downloading Service Account keys entirely. Instead, they should authenticate as humans (gcloud auth login) and use Service Account Impersonation to run CLI commands or generate short-lived credentials. This is a critical best practice for local development and troubleshooting.
Used when a human (who is not a developer) needs to access a web application you've deployed on Google Cloud. Note: These are distinct from workforce identities.
Acts as a central authorization layer for web applications. It intercepts web requests and verifies the user's identity (via Google Workspace, Cloud Identity, or external providers) before letting them reach the application. It's often used to protect internal apps without a VPN, or secure customer portals.
Platform](https://docs.cloud.google.com/identity-platform/docs): A Customer Identity and Access Management (CIAM) solution for adding consumer sign-in (email/password, phone, social) directly into the code of your custom-built applications.
When code runs in production, it should use a Service Account rather than a human user account.
Account](https://docs.cloud.google.com/iam/docs/service-account-overview): A special identity intended for non-human users. It's like a "robot identity" with its own email address.
A service account managed by Google that allows a service (like Pub/Sub) to access your resources on your behalf.
Instead of using Service Account Keys (dangerous JSON files), you should attach a custom service account to the Google Cloud resource. The resource's environment then provides a Token (a short-lived digital object) via a local metadata server.
Engine](https://docs.cloud.google.com/compute/docs/access/create-enable-service-accounts-for-instances): Assign a service account during VM creation.
Run](https://docs.cloud.google.com/run/docs/securing/service-identity): Assign a service account in the service configuration.
Use Workload Identity Federation for GKE to map Kubernetes identities to IAM principal identifiers. This grants specific Kubernetes workloads access to specific Google Cloud APIs. Learn more here.
For code running outside Google Cloud (e.g., AWS, Azure, or on-prem), do not use keys. Instead, use Workload Identity Federation to exchange an external token (like an AWS IAM role) for a short-lived Google Cloud access token.
API keys are encrypted strings used for public data (e.g., Google Maps) or simplified access like Vertex AI Express Mode, which allows fast testing of Gemini models without complex setup. Both humans and services (e.g., Cloud Run-based AI agent) can use API keys, for the services that support it.
Note: API keys should be restricted to specific APIs and projects to minimize security risks. Store API keys in a secrets manager like Secret Manager to prevent accidental exposure.
While IAM is the modern way to handle authorization, legacy Compute Engine VMs and GKE node pools still rely on Access Scopes alongside IAM. If a VM's scope is restricted, the attached service account will fail to make API calls even if it has the correct IAM permissions. Check this first if attached service accounts are failing unexpectedly.
The underlying mechanism for impersonation and secure service-to-service communication is the IAM Service Account Credentials API. This API generates short-lived access tokens, OpenID Connect (OIDC) ID tokens, or self-signed JSON Web Tokens (JWTs) dynamically, removing the need for static credentials.
After Authentication, Google Cloud uses Identity and Access Management (IAM) to determine what the authenticated principal can do.
Resource.
Roles](https://docs.cloud.google.com/iam/docs/understanding-roles): Prebuilt roles like roles/storage.objectViewer or roles/bigquery.dataEditor. Always try to use these first.
Roles](https://docs.cloud.google.com/iam/docs/creating-custom-roles): User-defined collections of specific permissions if predefined roles are too broad.
gcloud auth application-default login to create localcredentials (ADC).
roles/storage.objectViewer role on abucket.
storage.Client(). It automatically finds yourlocal credentials via ADC. Note: ADC searches in a specific order—first checking the `GOOGLE_APPLICATION_CREDENTIALS` environment variable, then the local gcloud JSON file, and finally the attached service account metadata server.
roles/cloudsql.client role onthe project.
connection driver.
When calling a private Cloud Run service from another service, the caller generates a Google-signed OpenID Connect (OIDC) ID Token and passes it in the Authorization: Bearer <TOKEN> header.
application-default login or Service Account Impersonation.
discourage this and recommend impersonation.
least-privilege service account, NOT using keys.
Recommend creating a custom service account instead.
Federation.
Restrictions](https://docs.cloud.google.com/docs/authentication/api-keys#adding-application-restrictions).
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