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azure-developer-cli

Design, create, review, migrate, or troubleshoot Azure Developer CLI (azd) projects using current Microsoft guidance. Use for azd, azure.yaml, AZD templates, Bicep or Terraform under infra, AZD environments and secrets, hooks, deployment workflows, and azd-managed CI/CD.

v1.0Latest
New~1.9kUpdated Aug 6, 2026

Azure Developer CLI best practices

Use this skill to produce maintainable, secure, environment-aware azd projects. Prefer repository conventions when they are already coherent, and make the smallest complete change that improves the project.

Start with repository discovery

Before editing:

  1. Find azure.yaml, the configured infra.path, source projects, deployment scripts, .gitignore, and pipeline definitions.
  2. Read azure.yaml before inferring services or the IaC provider.
  3. Identify whether the task is to create, migrate, review, deploy, or troubleshoot.
  4. Identify the active environment only when an environment-specific operation is required.
  5. Read the relevant reference:

Do not assume the default infra path, the default Bicep provider, or a single service when azure.yaml says otherwise.

Apply safety guardrails

  • Never commit .azure, environment .env files, credentials, deployment outputs containing secrets, local Terraform state, or generated deployment artifacts.
  • Never put literal secrets in azure.yaml, IaC parameter files, hooks, source control, command arguments that will be logged, or IaC outputs.
  • Prefer managed identities and RBAC. Use Key Vault references and azd env set-secret when a secret is unavoidable.
  • Before a command that can create, modify, or delete Azure resources, confirm the target environment, subscription, tenant, region, and expected scope.
  • Treat an explicit user request to deploy, provision, destroy, or configure a pipeline as approval for that named action. Otherwise, ask before running azd up, azd provision, azd deploy, azd down, or azd pipeline config.
  • Do not replace Bicep with Terraform, Terraform with Bicep, or an established hosting service unless the user requests that architectural change.
  • Preserve resources and state owned outside the current azd project.

Use these defaults

Concern Preferred default
Project manifest One azure.yaml at the repository root
Application code src/<service-name> per independently deployable service
Infrastructure infra with a thin entry point and reusable modules
IaC provider Bicep unless the repository or user chooses Terraform
Deployment environments Separate named environments for dev, test, staging, and production
Local AZD state .azure/<environment-name> and excluded from source control
Shared environment state AZD remote environments backed by Azure Blob Storage
Secrets Managed identity/RBAC first, then Key Vault references
Automation scripts Short, idempotent scripts under scripts/azd
CI authentication Workload identity federation/OIDC where supported
Routine development azd up for simple workflows; separate phases for controlled workflows

Implementation workflow

1. Model the application

  • Define one services entry for each independently deployable component.
  • Keep service keys stable because they participate in resource discovery and deployment.
  • Map each service to its actual project, language, and host.
  • Keep shared infrastructure in IaC rather than inventing a fake deployable service.
  • Declare dependencies with supported azure.yaml fields instead of relying on file order.

2. Model infrastructure

  • Keep main.bicep or main.tf as the orchestration entry point.
  • Split reusable or independently understandable infrastructure into modules.
  • Parameterize environment-specific values; do not fork the IaC tree per environment.
  • Output only stable, nonsecret values required by deployment or application configuration.
  • Use deterministic naming and consistent tags that include the project and environment.
  • Add role assignments to identities rather than distributing service keys.
  • Use infrastructure layers only when separate scopes or lifecycle dependencies justify them.

3. Model environments

  • Use predictable names such as <project>-dev for shared environments and <alias>-dev for personal environments.
  • Use azd env set, azd env unset, and azd env set-secret rather than editing .env directly.
  • Use -e or --environment in scripts and automation so the target is explicit.
  • Use azd env refresh to synchronize deployment outputs after another actor changes an environment.
  • Configure AZD remote state when a team shares environment state.

4. Add hooks only for lifecycle gaps

  • Prefer declarative IaC and native service configuration over hooks.
  • Use root hooks for project-wide behavior and service hooks for service-specific behavior.
  • Keep nontrivial hook logic in versioned scripts under scripts/azd.
  • Set shell explicitly. Provide windows and posix variants when necessary.
  • Make hooks idempotent, noninteractive in CI, and fail on errors unless failure is intentionally nonblocking.
  • Test a hook independently with azd hooks run <hook-name>.

5. Build CI/CD deliberately

  • Keep the pipeline definition with the template and review generated changes from azd pipeline config.
  • Use short-lived federated credentials where the provider supports them.
  • Run tests and IaC validation before provisioning.
  • Use explicit environments and --no-prompt in automation.
  • Add protected production environments and approval gates.
  • For Terraform, configure protected remote state before pipeline setup and account for current AZD authentication limitations.

Validate before finishing

Run only checks applicable to the repository:

Application: existing formatter, linter, type-check, build, and tests
Bicep:      az bicep build --file infra/main.bicep
Terraform:  terraform fmt -check -recursive
            terraform init -backend=false
            terraform validate
AZD hooks:  azd hooks run <hook-name>
Packaging:  azd package

For a Bicep what-if or Terraform plan, choose the correct deployment scope and environment. These checks can authenticate to Azure or read remote state, so follow the safety guardrails.

Verify that:

  • azure.yaml paths exist and service settings match the source projects.
  • The IaC entry point and provider agree with azure.yaml.
  • Required deployment outputs match the variables consumed by services, hooks, and pipelines.
  • .gitignore excludes .azure, secrets, local state, and generated artifacts.
  • No secret appears in tracked content or command output.
  • Documentation explains prerequisites, environment creation, deployment, verification, and cleanup.

Report the result

State:

  • The files and behavior changed.
  • The IaC provider and environment assumptions.
  • The checks performed.
  • Any cloud-changing command deliberately not run.
  • Any beta or preview feature the solution relies on.

Do not claim deployment success unless the target environment was actually deployed and verified.

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Overall Score

88/100

Grade

A

Excellent

Safety

90

Quality

87

Clarity

88

Completeness

85

Summary

This skill teaches Azure Developer CLI (azd) best practices for designing, creating, and maintaining azd projects. It provides structured guidance on repository conventions, infrastructure-as-code patterns, environment management, security boundaries, and CI/CD workflows. The skill covers Bicep and Terraform approaches, secrets handling via Key Vault and managed identities, hook implementations, and validation strategies. It is comprehensive and well-documented with four detailed reference files covering project structure, infrastructure/environments, security/CI/CD, and official product documentation.

Static Analysis Findings

1 finding

Patterns detected by deterministic static analysis before AI scoring. Hover over any finding code for detailed information and remediation guidance.

Credential Exposure
SEC-020Direct .env File Access5x in 3 files

Direct .env file access

SKILL.md.env2x
references/security-cicd-operations.md.env
references/iac-and-environments.md.env2x

Detected Capabilities

file readIaC review and validationarchitecture guidancesecret/credential handling consultationCI/CD pipeline guidanceshell command documentation (no execution)reference to external tools and commands

Trigger Keywords

Phrases that MCP clients use to match this skill to user intent.

azd project setupazure developer clibicep infrastructureterraform on azureenvironment managementazd secretsazd pipelineazd hooksazure deployment workflow

Risk Signals

INFO

SEC-020: Direct .env file access mentioned as something to avoid

SKILL.md | Apply safety guardrails section
INFO

SEC-020: Direct .env file access in reference documentation about environment management

references/security-cicd-operations.md | Identity and secret handling
INFO

SEC-020: Direct .env file access mentioned in context of .gitignore rules

references/iac-and-environments.md | Environment strategy section

Referenced Domains

External domains referenced in skill content, detected by static analysis.

aka.msazure.github.iodocs.github.comlearn.microsoft.comraw.githubusercontent.comschema.management.azure.com

Use Cases

  • Design and structure an azd project with Bicep or Terraform infrastructure
  • Migrate existing Azure projects to use azd workflows and conventions
  • Implement secure secret and identity management in azd environments
  • Set up CI/CD pipelines and hooks for azd-based deployments
  • Review and troubleshoot azd projects for correctness and Azure best practices
  • Configure remote environments and shared state for team-based deployments
  • Validate infrastructure code and deployment workflows before running cloud-changing commands

Quality Notes

  • Clear, structured guidance with explicit safety guardrails for secrets and credentials
  • Well-organized reference files that cover all major azd domains (structure, IaC, environments, security, CI/CD)
  • Practical examples including azure.yaml baseline and script patterns
  • Validation checklist provides concrete steps to verify before deployment
  • Limitations and constraints clearly documented (beta features, Terraform support status, OIDC limitations)
  • Edge cases addressed: circular dependencies, multi-service scenarios, ephemeral environments, Terraform state protection
  • Strong emphasis on idempotency, noninteractive CI behavior, and explicit environment targeting in automation
  • Excellent security posture documentation: managed identity preference, Key Vault references, federated credentials guidance
Model: claude-haiku-4-5-20251001Analyzed: Aug 6, 2026

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