AZ

azure-security-keyvault-keys-dotnet

A .NET SDK for managing keys, secrets, and cryptographic operations within Azure Key Vault.

Install

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Activation

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Azure Key Vault Keys SDK for .NET. Client library for managing cryptographic keys in Azure Key Vault and Managed HSM. Use for key creation, rotation, encryption, decryption, signing, and verification. Triggers: "Key Vault keys", "KeyClient", "CryptographyClient", "RSA key", "EC key", "encrypt decrypt .NET", "key rotation", "HSM".
331 chars✓ has a “when” triggerlonger than Claude Code's old 250-char listing cap (fine on current versions)
Intermediate

Key capabilities

  • Manage cryptographic key lifecycle
  • Perform encryption and decryption
  • Sign and verify data
  • Rotate keys using policies
  • Backup and restore key material

How it works

The SDK provides a KeyClient for management tasks and a CryptographyClient for performing cryptographic operations against keys stored in Azure.

Inputs & outputs

You give it
Key name and cryptographic data
You get back
KeyVaultKey object or cryptographic operation result

When to use azure-security-keyvault-keys-dotnet

  • Rotate cryptographic keys
  • Perform server-side encryption
  • Sign data programmatically

About this skill

Azure.Security.KeyVault.Keys (.NET)

Client library for managing cryptographic keys in Azure Key Vault and Managed HSM.

Installation

dotnet add package Azure.Security.KeyVault.Keys
dotnet add package Azure.Identity

Current Version: 4.7.0 (stable)

Environment Variables

KEY_VAULT_NAME=<your-key-vault-name>  # Required: Key Vault name
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net  # Optional: full Key Vault URL
AZURE_TOKEN_CREDENTIALS=prod  # Required only if DefaultAzureCredential is used in production

Client Hierarchy

KeyClient (key management)
├── CreateKey / CreateRsaKey / CreateEcKey
├── GetKey / GetKeys
├── UpdateKeyProperties
├── DeleteKey / PurgeDeletedKey
├── BackupKey / RestoreKey
└── GetCryptographyClient() → CryptographyClient

CryptographyClient (cryptographic operations)
├── Encrypt / Decrypt
├── WrapKey / UnwrapKey
├── Sign / Verify
└── SignData / VerifyData

KeyResolver (key resolution)
└── Resolve(keyId) → CryptographyClient

Authentication

Microsoft Entra Token Credential

using Azure.Identity;
using Azure.Security.KeyVault.Keys;

var keyVaultName = Environment.GetEnvironmentVariable("KEY_VAULT_NAME");
var kvUri = $"https://{keyVaultName}.vault.azure.net";

// Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=<specific_credential>
var credential = new DefaultAzureCredential(
    DefaultAzureCredential.DefaultEnvironmentVariableName
);
// Or use a specific credential directly in production:
// See https://learn.microsoft.com/dotnet/api/overview/azure/identity-readme?view=azure-dotnet#credential-classes
// var credential = new ManagedIdentityCredential();
var client = new KeyClient(new Uri(kvUri), credential);

Service Principal

var credential = new ClientSecretCredential(
    tenantId: "<tenant-id>",
    clientId: "<client-id>",
    clientSecret: "<client-secret>");

var client = new KeyClient(new Uri(kvUri), credential);

Key Management

Create Keys

// Create RSA key
KeyVaultKey rsaKey = await client.CreateKeyAsync("my-rsa-key", KeyType.Rsa);
Console.WriteLine($"Created key: {rsaKey.Name}, Type: {rsaKey.KeyType}");

// Create RSA key with options
var rsaOptions = new CreateRsaKeyOptions("my-rsa-key-2048")
{
    KeySize = 2048,
    HardwareProtected = false, // true for HSM-backed
    ExpiresOn = DateTimeOffset.UtcNow.AddYears(1),
    NotBefore = DateTimeOffset.UtcNow,
    Enabled = true
};
rsaOptions.KeyOperations.Add(KeyOperation.Encrypt);
rsaOptions.KeyOperations.Add(KeyOperation.Decrypt);

KeyVaultKey rsaKey2 = await client.CreateRsaKeyAsync(rsaOptions);

// Create EC key
var ecOptions = new CreateEcKeyOptions("my-ec-key")
{
    CurveName = KeyCurveName.P256,
    HardwareProtected = true // HSM-backed
};
KeyVaultKey ecKey = await client.CreateEcKeyAsync(ecOptions);

// Create Oct (symmetric) key for wrap/unwrap
var octOptions = new CreateOctKeyOptions("my-oct-key")
{
    KeySize = 256,
    HardwareProtected = true
};
KeyVaultKey octKey = await client.CreateOctKeyAsync(octOptions);

Retrieve Keys

// Get specific key (latest version)
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
Console.WriteLine($"Key ID: {key.Id}");
Console.WriteLine($"Key Type: {key.KeyType}");
Console.WriteLine($"Version: {key.Properties.Version}");

// Get specific version
KeyVaultKey keyVersion = await client.GetKeyAsync("my-rsa-key", "version-id");

// List all keys
await foreach (KeyProperties keyProps in client.GetPropertiesOfKeysAsync())
{
    Console.WriteLine($"Key: {keyProps.Name}, Enabled: {keyProps.Enabled}");
}

// List key versions
await foreach (KeyProperties version in client.GetPropertiesOfKeyVersionsAsync("my-rsa-key"))
{
    Console.WriteLine($"Version: {version.Version}, Created: {version.CreatedOn}");
}

Update Key Properties

KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");

key.Properties.ExpiresOn = DateTimeOffset.UtcNow.AddYears(2);
key.Properties.Tags["environment"] = "production";

KeyVaultKey updatedKey = await client.UpdateKeyPropertiesAsync(key.Properties);

Delete and Purge Keys

// Start delete operation
DeleteKeyOperation operation = await client.StartDeleteKeyAsync("my-rsa-key");

// Wait for deletion to complete (required before purge)
await operation.WaitForCompletionAsync();
Console.WriteLine($"Deleted key scheduled purge date: {operation.Value.ScheduledPurgeDate}");

// Purge immediately (if soft-delete is enabled)
await client.PurgeDeletedKeyAsync("my-rsa-key");

// Or recover deleted key
KeyVaultKey recoveredKey = await client.StartRecoverDeletedKeyAsync("my-rsa-key");

Backup and Restore

// Backup key
byte[] backup = await client.BackupKeyAsync("my-rsa-key");
await File.WriteAllBytesAsync("key-backup.bin", backup);

// Restore key
byte[] backupData = await File.ReadAllBytesAsync("key-backup.bin");
KeyVaultKey restoredKey = await client.RestoreKeyBackupAsync(backupData);

Cryptographic Operations

Get CryptographyClient

// From KeyClient
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
CryptographyClient cryptoClient = client.GetCryptographyClient(
    key.Name, 
    key.Properties.Version);

// Or create directly with key ID
CryptographyClient cryptoClient = new CryptographyClient(
    new Uri("https://myvault.vault.azure.net/keys/my-rsa-key/version"),
    new DefaultAzureCredential());

Encrypt and Decrypt

byte[] plaintext = Encoding.UTF8.GetBytes("Secret message to encrypt");

// Encrypt
EncryptResult encryptResult = await cryptoClient.EncryptAsync(
    EncryptionAlgorithm.RsaOaep256, 
    plaintext);
Console.WriteLine($"Encrypted: {Convert.ToBase64String(encryptResult.Ciphertext)}");

// Decrypt
DecryptResult decryptResult = await cryptoClient.DecryptAsync(
    EncryptionAlgorithm.RsaOaep256, 
    encryptResult.Ciphertext);
string decrypted = Encoding.UTF8.GetString(decryptResult.Plaintext);
Console.WriteLine($"Decrypted: {decrypted}");

Wrap and Unwrap Keys

// Key to wrap (e.g., AES key)
byte[] keyToWrap = new byte[32]; // 256-bit key
RandomNumberGenerator.Fill(keyToWrap);

// Wrap key
WrapResult wrapResult = await cryptoClient.WrapKeyAsync(
    KeyWrapAlgorithm.RsaOaep256, 
    keyToWrap);

// Unwrap key
UnwrapResult unwrapResult = await cryptoClient.UnwrapKeyAsync(
    KeyWrapAlgorithm.RsaOaep256, 
    wrapResult.EncryptedKey);

Sign and Verify

// Data to sign
byte[] data = Encoding.UTF8.GetBytes("Data to sign");

// Sign data (computes hash internally)
SignResult signResult = await cryptoClient.SignDataAsync(
    SignatureAlgorithm.RS256, 
    data);

// Verify signature
VerifyResult verifyResult = await cryptoClient.VerifyDataAsync(
    SignatureAlgorithm.RS256, 
    data, 
    signResult.Signature);
Console.WriteLine($"Signature valid: {verifyResult.IsValid}");

// Or sign pre-computed hash
using var sha256 = SHA256.Create();
byte[] hash = sha256.ComputeHash(data);

SignResult signHashResult = await cryptoClient.SignAsync(
    SignatureAlgorithm.RS256, 
    hash);

Key Resolver

using Azure.Security.KeyVault.Keys.Cryptography;

var resolver = new KeyResolver(new DefaultAzureCredential());

// Resolve key by ID to get CryptographyClient
CryptographyClient cryptoClient = await resolver.ResolveAsync(
    new Uri("https://myvault.vault.azure.net/keys/my-key/version"));

// Use for encryption
EncryptResult result = await cryptoClient.EncryptAsync(
    EncryptionAlgorithm.RsaOaep256, 
    plaintext);

Key Rotation

// Rotate key (creates new version)
KeyVaultKey rotatedKey = await client.RotateKeyAsync("my-rsa-key");
Console.WriteLine($"New version: {rotatedKey.Properties.Version}");

// Get rotation policy
KeyRotationPolicy policy = await client.GetKeyRotationPolicyAsync("my-rsa-key");

// Update rotation policy
policy.ExpiresIn = "P90D"; // 90 days
policy.LifetimeActions.Add(new KeyRotationLifetimeAction
{
    Action = KeyRotationPolicyAction.Rotate,
    TimeBeforeExpiry = "P30D" // Rotate 30 days before expiry
});

await client.UpdateKeyRotationPolicyAsync("my-rsa-key", policy);

Key Types Reference

TypePurpose
KeyClientKey management operations
CryptographyClientCryptographic operations
KeyResolverResolve key ID to CryptographyClient
KeyVaultKeyKey with cryptographic material
KeyPropertiesKey metadata (no crypto material)
CreateRsaKeyOptionsRSA key creation options
CreateEcKeyOptionsEC key creation options
CreateOctKeyOptionsSymmetric key options
EncryptResultEncryption result
DecryptResultDecryption result
SignResultSigning result
VerifyResultVerification result
WrapResultKey wrap result
UnwrapResultKey unwrap result

Algorithms Reference

Encryption Algorithms

AlgorithmKey TypeDescription
RsaOaepRSARSA-OAEP
RsaOaep256RSARSA-OAEP-256
Rsa15RSARSA 1.5 (legacy)
A128GcmOctAES-128-GCM
A256GcmOctAES-256-GCM

Signature Algorithms

AlgorithmKey TypeDescription
RS256RSARSASSA-PKCS1-v1_5 SHA-256
RS384RSARSASSA-PKCS1-v1_5 SHA-384
RS512RSARSASSA-PKCS1-v1_5 SHA-512
PS256RSARSASSA-PSS SHA-256
ES256ECECDSA P-256 SHA-256
ES384ECECDSA P-384 SHA-384
ES512ECECDSA P-521 SHA-512

Key Wrap Algorithms

AlgorithmKey TypeDescription
RsaOaepRSARSA-OAEP
RsaOaep256RSARSA-OAEP-256
A128KWOctAES-128 Key Wrap
A256KWOctAES-256 Key Wrap

Best Practices

  1. Use Managed Identity — Prefer DefaultAzureCredential

Content truncated.

When not to use it

  • Managing secrets or certificates
  • Performing operations without appropriate RBAC roles

Prerequisites

Azure Key Vault or Managed HSMAzure.Security.KeyVault.Keys packageAzure.Identity package

Limitations

  • Requires specific RBAC roles like Crypto Officer or Crypto User
  • Soft-delete must be enabled to recover deleted keys

How it compares

This library provides a programmatic interface for Azure-native key management compared to manual CLI or portal-based operations.

Compared to similar skills

azure-security-keyvault-keys-dotnet side by side with the closest alternatives in the catalog.

SkillInstallsUpdatedSafetyDifficulty
azure-security-keyvault-keys-dotnet (this skill)13moReviewIntermediate
azure-identity-dotnet13moReviewBeginner
quality-ci03moNo flagsAdvanced
dotnet-code-quality01moReviewIntermediate

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