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azure-security-keyvault-keys-dotnetAzure 安全 keyvault keys dotnet

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安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

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来源可访问

安装方式

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复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:azure-security-keyvault-keys-dotnet(Azure 安全 keyvault keys dotnet)
来源仓库:https://github.com/sickn33/antigravity-awesome-skills
仓库路径:skills/azure-security-keyvault-keys-dotnet
安装命令:
npx skills add https://github.com/sickn33/antigravity-awesome-skills --skill azure-security-keyvault-keys-dotnet
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/sickn33/antigravity-awesome-skills --skill azure-security-keyvault-keys-dotnet

简介

用于在 .NET 应用中管理 Azure Key Vault 中的加密密钥和签名操作。

  • 适用于需要安全存储 RSA/ECC 密钥或对数据进行数字签名的后端服务。
  • 通过 KeyClient 创建、备份密钥,并使用 CryptographyClient 执行加解密运算。
  • 需配置 Key Vault URI 并授予应用“密钥操作员”角色,推荐使用托管身份认证。
  • azure-security-keyvault-keys-dotnet 属于云服务类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

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>
# Or full URI
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net

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

DefaultAzureCredential (Recommended)

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

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

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

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 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

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

RolePermissions
Key Vault Crypto OfficerFull key management
Key Vault Crypto UserUse keys for crypto operations
Key Vault ReaderRead key metadata

Related SDKs

SDKPurposeInstall
Azure.Security.KeyVault.KeysKeys (this SDK)dotnet add package Azure.Security.KeyVault.Keys
Azure.Security.KeyVault.SecretsSecretsdotnet add package Azure.Security.KeyVault.Secrets
Azure.Security.KeyVault.CertificatesCertificatesdotnet add package Azure.Security.KeyVault.Certificates
Azure.IdentityAuthenticationdotnet add package Azure.Identity

Reference Links

When to Use

This skill is applicable to execute the workflow or actions described in the overview.

Limitations

  • Use this skill only when the task clearly matches the scope described above.
  • Do not treat the output as a substitute for environment-specific validation, testing, or expert review.
  • Stop and ask for clarification if required inputs, permissions, safety boundaries, or success criteria are missing.

适合场景

01

Azure 资源规划

02

云服务升级

03

基础设施检查

04

企业云环境自动化

能力概览

能力 1

整理 Azure 服务操作流程

能力 2

提示 CLI/MCP 前置条件

能力 3

辅助云资源检查和规划

能力 4

保留官方服务来源线索

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

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