Azure.Security.KeyVault.Keys (.NET)
Biblioteca de clientes para gerenciar chaves criptográficas no Azure Key Vault e Managed HSM.
Instalação
dotnet add package Azure.Security.KeyVault.Keys
dotnet add package Azure.Identity
Versão Atual: 4.7.0 (estável)
Variáveis de Ambiente
KEY_VAULT_NAME=<your-key-vault-name> # Obrigatório: Nome do Key Vault
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net # Opcional: URL completa do Key Vault
AZURE_TOKEN_CREDENTIALS=prod # Obrigatório apenas se DefaultAzureCredential for usado em produção
</vault-name></your-key-vault-name>
Hierarquia de Clientes
KeyClient (gerenciamento de chaves)
├── CreateKey / CreateRsaKey / CreateEcKey
├── GetKey / GetKeys
├── UpdateKeyProperties
├── DeleteKey / PurgeDeletedKey
├── BackupKey / RestoreKey
└── GetCryptographyClient() → CryptographyClient
CryptographyClient (operações criptográficas)
├── Encrypt / Decrypt
├── WrapKey / UnwrapKey
├── Sign / Verify
└── SignData / VerifyData
KeyResolver (resolução de chaves)
└── Resolve(keyId) → CryptographyClient
Autenticação
Credencial de Token do Microsoft Entra
using Azure.Identity;
using Azure.Security.KeyVault.Keys;
var keyVaultName = Environment.GetEnvironmentVariable("KEY_VAULT_NAME");
var kvUri = $"https://{keyVaultName}.vault.azure.net";
// Desenvolvimento local: DefaultAzureCredential. Produção: defina AZURE_TOKEN_CREDENTIALS=prod ou AZURE_TOKEN_CREDENTIALS=<specific_credential>
var credential = new DefaultAzureCredential(
DefaultAzureCredential.DefaultEnvironmentVariableName
);
// Ou use uma credencial específica diretamente em produção:
// Consulte https://learn.microsoft.com/dotnet/api/overview/azure/identity-readme?view=azure-dotnet#credential-classes
// var credential = new ManagedIdentityCredential();
var client = new KeyClient(new Uri(kvUri), credential);
</specific_credential>
Principal de Serviço
var credential = new ClientSecretCredential(
tenantId: "<tenant-id>",
clientId: "<client-id>",
clientSecret: "<client-secret>");
var client = new KeyClient(new Uri(kvUri), credential);
</client-secret></client-id></tenant-id>
Gerenciamento de Chaves
Criar Chaves
// Criar chave RSA
KeyVaultKey rsaKey = await client.CreateKeyAsync("my-rsa-key", KeyType.Rsa);
Console.WriteLine($"Chave criada: {rsaKey.Name}, Tipo: {rsaKey.KeyType}");
// Criar chave RSA com opções
var rsaOptions = new CreateRsaKeyOptions("my-rsa-key-2048")
{
KeySize = 2048,
HardwareProtected = false, // true para chaves com suporte de HSM
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);
// Criar chave EC
var ecOptions = new CreateEcKeyOptions("my-ec-key")
{
CurveName = KeyCurveName.P256,
HardwareProtected = true // Com suporte de HSM
};
KeyVaultKey ecKey = await client.CreateEcKeyAsync(ecOptions);
// Criar chave Oct (simétrica) para wrap/unwrap
var octOptions = new CreateOctKeyOptions("my-oct-key")
{
KeySize = 256,
HardwareProtected = true
};
KeyVaultKey octKey = await client.CreateOctKeyAsync(octOptions);
Recuperar Chaves
// Obter chave específica (versão mais recente)
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
Console.WriteLine($"ID da Chave: {key.Id}");
Console.WriteLine($"Tipo de Chave: {key.KeyType}");
Console.WriteLine($"Versão: {key.Properties.Version}");
// Obter versão específica
KeyVaultKey keyVersion = await client.GetKeyAsync("my-rsa-key", "version-id");
// Listar todas as chaves
await foreach (KeyProperties keyProps in client.GetPropertiesOfKeysAsync())
{
Console.WriteLine($"Chave: {keyProps.Name}, Habilitada: {keyProps.Enabled}");
}
// Listar versões de chaves
await foreach (KeyProperties version in client.GetPropertiesOfKeyVersionsAsync("my-rsa-key"))
{
Console.WriteLine($"Versão: {version.Version}, Criada em: {version.CreatedOn}");
}
Atualizar Propriedades da Chave
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
key.Properties.ExpiresOn = DateTimeOffset.UtcNow.AddYears(2);
key.Properties.Tags["environment"] = "production";
KeyVaultKey updatedKey = await client.UpdateKeyPropertiesAsync(key.Properties);
Excluir e Purgar Chaves
// Iniciar operação de exclusão
DeleteKeyOperation operation = await client.StartDeleteKeyAsync("my-rsa-key");
// Aguardar a conclusão da exclusão (obrigatório antes da purga)
await operation.WaitForCompletionAsync();
Console.WriteLine($"Data de purga agendada para chave excluída: {operation.Value.ScheduledPurgeDate}");
// Purgar imediatamente (se a exclusão suave estiver habilitada)
await client.PurgeDeletedKeyAsync("my-rsa-key");
// Ou recuperar chave excluída
KeyVaultKey recoveredKey = await client.StartRecoverDeletedKeyAsync("my-rsa-key");
Backup e Restauração
// Fazer backup da chave
byte[] backup = await client.BackupKeyAsync("my-rsa-key");
await File.WriteAllBytesAsync("key-backup.bin", backup);
// Restaurar chave
byte[] backupData = await File.ReadAllBytesAsync("key-backup.bin");
KeyVaultKey restoredKey = await client.RestoreKeyBackupAsync(backupData);
Operações Criptográficas
Obter CryptographyClient
// A partir do KeyClient
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
CryptographyClient cryptoClient = client.GetCryptographyClient(
key.Name,
key.Properties.Version);
// Ou criar diretamente com o ID da chave
CryptographyClient cryptoClient = new CryptographyClient(
new Uri("https://myvault.vault.azure.net/keys/my-rsa-key/version"),
new DefaultAzureCredential());
Criptografar e Descriptografar
byte[] plaintext = Encoding.UTF8.GetBytes("Mensagem secreta para criptografar");
// Criptografar
EncryptResult encryptResult = await cryptoClient.EncryptAsync(
EncryptionAlgorithm.RsaOaep256,
plaintext);
Console.WriteLine($"Criptografado: {Convert.ToBase64String(encryptResult.Ciphertext)}");
// Descriptografar
DecryptResult decryptResult = await cryptoClient.DecryptAsync(
EncryptionAlgorithm.RsaOaep256,
encryptResult.Ciphertext);
string decrypted = Encoding.UTF8.GetString(decryptResult.Plaintext);
Console.WriteLine($"Descriptografado: {decrypted}");
Embalar e Desembalar Chaves
// Chave a embalar (ex.: chave AES)
byte[] keyToWrap = new byte[32]; // Chave de 256 bits
RandomNumberGenerator.Fill(keyToWrap);
// Embalar chave
WrapResult wrapResult = await cryptoClient.WrapKeyAsync(
KeyWrapAlgorithm.RsaOaep256,
keyToWrap);
// Desembalar chave
UnwrapResult unwrapResult = await cryptoClient.UnwrapKeyAsync(
KeyWrapAlgorithm.RsaOaep256,
wrapResult.EncryptedKey);
Assinar e Verificar
// Dados a assinar
byte[] data = Encoding.UTF8.GetBytes("Dados para assinar");
// Assinar dados (calcula o hash internamente)
SignResult signResult = await cryptoClient.SignDataAsync(
SignatureAlgorithm.RS256,
data);
// Verificar assinatura
VerifyResult verifyResult = await cryptoClient.VerifyDataAsync(
SignatureAlgorithm.RS256,
data,
signResult.Signature);
Console.WriteLine($"Assinatura válida: {verifyResult.IsValid}");
// Ou assinar um hash pré-computado
using var sha256 = SHA256.Create();
byte[] hash = sha256.ComputeHash(data);
SignResult signHashResult = await cryptoClient.SignAsync(
SignatureAlgorithm.RS256,
hash);
Resolvedor de Chaves
using Azure.Security.KeyVault.Keys.Cryptography;
var resolver = new KeyResolver(new DefaultAzureCredential());
// Resolver chave por ID para obter CryptographyClient
CryptographyClient cryptoClient = await resolver.ResolveAsync(
new Uri("https://myvault.vault.azure.net/keys/my-key/version"));
// Usar para criptografia
EncryptResult result = await cryptoClient.EncryptAsync(
EncryptionAlgorithm.RsaOaep256,
plaintext);
Rotação de Chaves
// Rotação de chave (cria nova versão)
KeyVaultKey rotatedKey = await client.RotateKeyAsync("my-rsa-key");
Console.WriteLine($"Nova versão: {rotatedKey.Properties.Version}");
// Obter política de rotação
KeyRotationPolicy policy = await client.GetKeyRotationPolicyAsync("my-rsa-key");
// Atualizar política de rotação
policy.ExpiresIn = "P90D"; // 90 dias
policy.LifetimeActions.Add(new KeyRotationLifetimeAction
{
Action = KeyRotationPolicyAction.Rotate,
TimeBeforeExpiry = "P30D" // Rotação 30 dias antes do vencimento
});
await client.UpdateKeyRotationPolicyAsync("my-rsa-key", policy);
Referência de Tipos de Chaves
| Tipo | Finalidade |
|---|
| `KeyClient` | Operações de gerenciamento de chaves |
| `CryptographyClient` | Operações criptográficas |
| `KeyResolver` | Resolver ID da chave para CryptographyClient |
| `KeyVaultKey` | Chave com material criptográfico |
| `KeyProperties` | Metadados da chave (sem material criptográfico) |
| `CreateRsaKeyOptions` | Opções de criação de chave RSA |
| `CreateEcKeyOptions` | Opções de criação de chave EC |
| `CreateOctKeyOptions` | Opções de chave simétrica |
| `EncryptResult` | Resultado da criptografia |
| `DecryptResult` | Resultado da descriptografia |
| `SignResult` | Resultado da assinatura |
| `VerifyResult` | Resultado da verificação |
| `WrapResult` | Resultado do embalo de chave |
| `UnwrapResult` | Resultado do desembalo de chave |
Referência de Algoritmos
Algoritmos de Criptografia
| Algoritmo | Tipo de Chave | Descrição |
|---|
| `RsaOaep` | RSA | RSA-OAEP |
| `RsaOaep256` | RSA | RSA-OAEP-256 |
| `Rsa15` | RSA | RSA 1.5 (legado) |
| `A128Gcm` | Oct | AES-128-GCM |
| `A256Gcm` | Oct | AES-256-GCM |
Algoritmos de Assinatura
| Algoritmo | Tipo de Chave | Descrição |
|---|
| `RS256` | RSA | RSASSA-PKCS1-v1_5 SHA-256 |
| `RS384` | RSA | RSASSA-PKCS1-v1_5 SHA-384 |
| `RS512` | RSA | RSASSA-PKCS1-v1_5 SHA-512 |
| `PS256` | RSA | RSASSA-PSS SHA-256 |
| `ES256` | EC | ECDSA P-256 SHA-256 |
| `ES384` | EC | ECDSA P-384 SHA-384 |
| `ES512` | EC | ECDSA P-521 SHA-512 |
Algoritmos de Embalo de Chaves
| Algoritmo | Tipo de Chave | Descrição |
|---|
| `RsaOaep` | RSA | RSA-OAEP |
| `RsaOaep256` | RSA | RSA-OAEP-256 |
| `A128KW` | Oct | AES-128 Key Wrap |
| `A256KW` | Oct | AES-256 Key Wrap |
Melhores Práticas
- Use Identidade Gerenciada — Prefira
DefaultAzureCredential a segredos - Habilite exclusão suave — Proteja-se contra exclusão acidental
- Use chaves com suporte de HSM — Defina
HardwareProtected = true para chaves sensíveis - Implemente rotação de chaves — Use políticas de rotação automática
- Limite operações de chave — Habilite apenas
KeyOperations necessárias - Defina datas de expiração — Sempre defina
ExpiresOn para chaves - Use versões específicas — Fixe versões em produção
- Armazene em cache o CryptographyClient — Reutilize para múltiplas operações
Tratamento de Erros
using Azure;
try
{
KeyVaultKey key = await client.GetKeyAsync("my-key");
}
catch (RequestFailedException ex) when (ex.Status == 404)
{
Console.WriteLine("Chave não encontrada");
}
catch (RequestFailedException ex) when (ex.Status == 403)
{
Console.WriteLine("Acesso negado - verifique as permissões de RBAC");
}
catch (RequestFailedException ex)
{
Console.WriteLine($"Erro do Key Vault: {ex.Status} - {ex.Message}");
}
Funções de RBAC Necessárias
| Função | Permissões |
|---|
| Key Vault Crypto Officer | Gerenciamento completo de chaves |
| Key Vault Crypto User | Usar chaves para operações criptográficas |
| Key Vault Reader | Ler metadados da chave |
SDKs Relacionados
| SDK | Finalidade | Instalação |
|---|
| `Azure.Security.KeyVault.Keys` | Chaves (este SDK) | `dotnet add package Azure.Security.KeyVault.Keys` |
| `Azure.Security.KeyVault.Secrets` | Segredos | `dotnet add package Azure.Security.KeyVault.Secrets` |
| `Azure.Security.KeyVault.Certificates` | Certificados | `dotnet add package Azure.Security.KeyVault.Certificates` |
| `Azure.Identity` | Autenticação | `dotnet add package Azure.Identity` |
Links de Referência
| Recurso | URL |
|---|
| Pacote NuGet | https://www.nuget.org/packages/Azure.Security.KeyVault.Keys |
| Referência da API | https://learn.microsoft.com/dotnet/api/azure.security.keyvault.keys |
| Início Rápido | https://learn.microsoft.com/azure/key-vault/keys/quick-create-net |
| Código Fonte no GitHub | https://github.com/Azure/azure-sdk-for-net/tree/main/sdk/keyvault/Azure.Security.KeyVault.Keys |
Ver no GitHub
---
name: azure-security-keyvault-keys-dotnet
description: Manage cryptographic keys in Azure Key Vault and Managed HSM using the .NET SDK. Create, rotate, encrypt, decrypt, sign, and verify keys with KeyClient and CryptographyClient.
license: MIT
---
# Azure.Security.KeyVault.Keys (.NET)
Client library for managing cryptographic keys in Azure Key Vault and Managed HSM.
## Installation
```bash
dotnet add package Azure.Security.KeyVault.Keys
dotnet add package Azure.Identity
```
**Current Version**: 4.7.0 (stable)
## Environment Variables
```bash
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
```csharp
using Azure.Identity;
using Azure.Security.KeyVault.Keys;
var keyVaultName = Environment.GetEnvironmentVariable("KEY_VAULT_NAME");
var kvUri = $"https://{keyVaultName}.vault.azure.net";
// Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=<specific_credential>
var credential = new DefaultAzureCredential(
DefaultAzureCredential.DefaultEnvironmentVariableName
);
// Or use a specific credential directly in production:
// See https://learn.microsoft.com/dotnet/api/overview/azure/identity-readme?view=azure-dotnet#credential-classes
// var credential = new ManagedIdentityCredential();
var client = new KeyClient(new Uri(kvUri), credential);
```
### Service Principal
```csharp
var credential = new ClientSecretCredential(
tenantId: "<tenant-id>",
clientId: "<client-id>",
clientSecret: "<client-secret>");
var client = new KeyClient(new Uri(kvUri), credential);
```
## Key Management
### Create Keys
```csharp
// Create RSA key
KeyVaultKey rsaKey = await client.CreateKeyAsync("my-rsa-key", KeyType.Rsa);
Console.WriteLine($"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
```csharp
// 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($"Version: {version.Version}, Created: {version.CreatedOn}");
}
```
### Update Key Properties
```csharp
KeyVaultKey key = await client.GetKeyAsync("my-rsa-key");
key.Properties.ExpiresOn = DateTimeOffset.UtcNow.AddYears(2);
key.Properties.Tags["environment"] = "production";
KeyVaultKey updatedKey = await client.UpdateKeyPropertiesAsync(key.Properties);
```
### Delete and Purge Keys
```csharp
// Start delete operation
DeleteKeyOperation operation = await client.StartDeleteKeyAsync("my-rsa-key");
// Wait for deletion to complete (required before purge)
await operation.WaitForCompletionAsync();
Console.WriteLine($"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
```csharp
// 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
```csharp
// 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
```csharp
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
```csharp
// 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
```csharp
// 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($"Signature valid: {verifyResult.IsValid}");
// Or sign pre-computed hash
using var sha256 = SHA256.Create();
byte[] hash = sha256.ComputeHash(data);
SignResult signHashResult = await cryptoClient.SignAsync(
SignatureAlgorithm.RS256,
hash);
```
## Key Resolver
```csharp
using Azure.Security.KeyVault.Keys.Cryptography;
var resolver = new KeyResolver(new DefaultAzureCredential());
// Resolve key by ID to get CryptographyClient
CryptographyClient cryptoClient = await resolver.ResolveAsync(
new Uri("https://myvault.vault.azure.net/keys/my-key/version"));
// Use for encryption
EncryptResult result = await cryptoClient.EncryptAsync(
EncryptionAlgorithm.RsaOaep256,
plaintext);
```
## Key Rotation
```csharp
// Rotate key (creates new version)
KeyVaultKey rotatedKey = await client.RotateKeyAsync("my-rsa-key");
Console.WriteLine($"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
| Type | Purpose |
|------|---------|
| `KeyClient` | Key management operations |
| `CryptographyClient` | Cryptographic operations |
| `KeyResolver` | Resolve key ID to CryptographyClient |
| `KeyVaultKey` | Key with cryptographic material |
| `KeyProperties` | Key metadata (no crypto material) |
| `CreateRsaKeyOptions` | RSA key creation options |
| `CreateEcKeyOptions` | EC key creation options |
| `CreateOctKeyOptions` | Symmetric key options |
| `EncryptResult` | Encryption result |
| `DecryptResult` | Decryption result |
| `SignResult` | Signing result |
| `VerifyResult` | Verification result |
| `WrapResult` | Key wrap result |
| `UnwrapResult` | Key unwrap result |
## Algorithms Reference
### Encryption Algorithms
| Algorithm | Key Type | Description |
|-----------|----------|-------------|
| `RsaOaep` | RSA | RSA-OAEP |
| `RsaOaep256` | RSA | RSA-OAEP-256 |
| `Rsa15` | RSA | RSA 1.5 (legacy) |
| `A128Gcm` | Oct | AES-128-GCM |
| `A256Gcm` | Oct | AES-256-GCM |
### Signature Algorithms
| Algorithm | Key Type | Description |
|-----------|----------|-------------|
| `RS256` | RSA | RSASSA-PKCS1-v1_5 SHA-256 |
| `RS384` | RSA | RSASSA-PKCS1-v1_5 SHA-384 |
| `RS512` | RSA | RSASSA-PKCS1-v1_5 SHA-512 |
| `PS256` | RSA | RSASSA-PSS SHA-256 |
| `ES256` | EC | ECDSA P-256 SHA-256 |
| `ES384` | EC | ECDSA P-384 SHA-384 |
| `ES512` | EC | ECDSA P-521 SHA-512 |
### Key Wrap Algorithms
| Algorithm | Key Type | Description |
|-----------|----------|-------------|
| `RsaOaep` | RSA | RSA-OAEP |
| `RsaOaep256` | RSA | RSA-OAEP-256 |
| `A128KW` | Oct | AES-128 Key Wrap |
| `A256KW` | Oct | AES-256 Key Wrap |
## Best Practices
1. **Use Managed Identity** — Prefer `DefaultAzureCredential` over secrets
2. **Enable soft-delete** — Protect against accidental deletion
3. **Use HSM-backed keys** — Set `HardwareProtected = true` for sensitive keys
4. **Implement key rotation** — Use automatic rotation policies
5. **Limit key operations** — Only enable required `KeyOperations`
6. **Set expiration dates** — Always set `ExpiresOn` for keys
7. **Use specific versions** — Pin to versions in production
8. **Cache CryptographyClient** — Reuse for multiple operations
## Error Handling
```csharp
using Azure;
try
{
KeyVaultKey key = await client.GetKeyAsync("my-key");
}
catch (RequestFailedException ex) when (ex.Status == 404)
{
Console.WriteLine("Key not found");
}
catch (RequestFailedException ex) when (ex.Status == 403)
{
Console.WriteLine("Access denied - check RBAC permissions");
}
catch (RequestFailedException ex)
{
Console.WriteLine($"Key Vault error: {ex.Status} - {ex.Message}");
}
```
## Required RBAC Roles
| Role | Permissions |
|------|-------------|
| Key Vault Crypto Officer | Full key management |
| Key Vault Crypto User | Use keys for crypto operations |
| Key Vault Reader | Read key metadata |
## Related SDKs
| SDK | Purpose | Install |
|-----|---------|---------|
| `Azure.Security.KeyVault.Keys` | Keys (this SDK) | `dotnet add package Azure.Security.KeyVault.Keys` |
| `Azure.Security.KeyVault.Secrets` | Secrets | `dotnet add package Azure.Security.KeyVault.Secrets` |
| `Azure.Security.KeyVault.Certificates` | Certificates | `dotnet add package Azure.Security.KeyVault.Certificates` |
| `Azure.Identity` | Authentication | `dotnet add package Azure.Identity` |
## Reference Links
| Resource | URL |
|----------|-----|
| NuGet Package | https://www.nuget.org/packages/Azure.Security.KeyVault.Keys |
| API Reference | https://learn.microsoft.com/dotnet/api/azure.security.keyvault.keys |
| Quickstart | https://learn.microsoft.com/azure/key-vault/keys/quick-create-net |
| GitHub Source | https://github.com/Azure/azure-sdk-for-net/tree/main/sdk/keyvault/Azure.Security.KeyVault.Keys |