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使用 Java SDK 在 Azure Key Vault 和託管 HSM 中管理加密金鑰並執行加密操作。

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更新時間 2026-09-16

Azure Key Vault 金鑰 (Java)

在 Azure Key Vault 和託管 HSM 中管理加密金鑰並執行加密操作。

安裝

<dependency><groupid>com.azure</groupid><artifactid>azure-security-keyvault-keys</artifactid><version>4.9.0</version></dependency>

客戶端建立

import com.azure.core.credential.TokenCredential;
import com.azure.identity.AzureIdentityEnvVars;
import com.azure.identity.DefaultAzureCredentialBuilder;
import com.azure.identity.ManagedIdentityCredentialBuilder;
import com.azure.security.keyvault.keys.KeyClient;
import com.azure.security.keyvault.keys.KeyClientBuilder;
import com.azure.security.keyvault.keys.cryptography.CryptographyClient;
import com.azure.security.keyvault.keys.cryptography.CryptographyClientBuilder;

// 本地開發:DefaultAzureCredential。生產環境:設定 AZURE_TOKEN_CREDENTIALS=prod 或 AZURE_TOKEN_CREDENTIALS=<specific_credential>
TokenCredential credential = new DefaultAzureCredentialBuilder()
    .requireEnvVars(AzureIdentityEnvVars.AZURE_TOKEN_CREDENTIALS)
    .build();
// 或者在生產環境中直接使用特定的憑據:
// 請參閱 https://learn.microsoft.com/java/api/overview/azure/identity-readme?view=azure-java-stable#credential-classes
// TokenCredential credential = new ManagedIdentityCredentialBuilder().build();

// 金鑰管理客戶端
KeyClient keyClient = new KeyClientBuilder()
    .vaultUrl("https://<vault-name>.vault.azure.net")
    .credential(credential)
    .buildClient();

// 非同步客戶端
KeyAsyncClient keyAsyncClient = new KeyClientBuilder()
    .vaultUrl("https://<vault-name>.vault.azure.net")
    .credential(credential)
    .buildAsyncClient();

// 加密客戶端(用於加密/解密/簽名/驗證)
CryptographyClient cryptoClient = new CryptographyClientBuilder()
    .keyIdentifier("https://<vault-name>.vault.azure.net/keys/<key-name>/<key-version>")
    .credential(credential)
    .buildClient();
</key-version></key-name></vault-name></vault-name></vault-name></specific_credential>

金鑰型別

型別描述
`RSA`RSA 金鑰(2048、3072、4096 位)
`RSA_HSM`HSM 中的 RSA 金鑰
`EC`橢圓曲線金鑰
`EC_HSM`HSM 中的橢圓曲線金鑰
`OCT`對稱金鑰(僅限託管 HSM)
`OCT_HSM`HSM 中的對稱金鑰

建立金鑰

建立 RSA 金鑰

import com.azure.security.keyvault.keys.models.*;

// 簡單 RSA 金鑰
KeyVaultKey rsaKey = keyClient.createRsaKey(new CreateRsaKeyOptions("my-rsa-key")
    .setKeySize(2048));

System.out.println("金鑰名稱: " + rsaKey.getName());
System.out.println("金鑰 ID: " + rsaKey.getId());
System.out.println("金鑰型別: " + rsaKey.getKeyType());

// 帶有選項的 RSA 金鑰
KeyVaultKey rsaKeyWithOptions = keyClient.createRsaKey(new CreateRsaKeyOptions("my-rsa-key-2")
    .setKeySize(4096)
    .setExpiresOn(OffsetDateTime.now().plusYears(1))
    .setNotBefore(OffsetDateTime.now())
    .setEnabled(true)
    .setKeyOperations(KeyOperation.ENCRYPT, KeyOperation.DECRYPT, 
                       KeyOperation.WRAP_KEY, KeyOperation.UNWRAP_KEY)
    .setTags(Map.of("environment", "production")));

// 基於 HSM 的 RSA 金鑰
KeyVaultKey hsmKey = keyClient.createRsaKey(new CreateRsaKeyOptions("my-hsm-key")
    .setKeySize(2048)
    .setHardwareProtected(true));

建立 EC 金鑰

// 使用 P-256 曲線的 EC 金鑰
KeyVaultKey ecKey = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key")
    .setCurveName(KeyCurveName.P_256));

// 使用其他曲線的 EC 金鑰
KeyVaultKey ecKey384 = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key-384")
    .setCurveName(KeyCurveName.P_384));

KeyVaultKey ecKey521 = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key-521")
    .setCurveName(KeyCurveName.P_521));

// 基於 HSM 的 EC 金鑰
KeyVaultKey ecHsmKey = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-hsm-key")
    .setCurveName(KeyCurveName.P_256)
    .setHardwareProtected(true));

建立對稱金鑰(僅限託管 HSM)

KeyVaultKey octKey = keyClient.createOctKey(new CreateOctKeyOptions("my-symmetric-key")
    .setKeySize(256)
    .setHardwareProtected(true));

獲取金鑰

// 獲取最新版本
KeyVaultKey key = keyClient.getKey("my-key");

// 獲取特定版本
KeyVaultKey keyVersion = keyClient.getKey("my-key", "<version-id>");

// 僅獲取金鑰屬性(不包含金鑰材料)
KeyProperties keyProps = keyClient.getKey("my-key").getProperties();
</version-id>

更新金鑰屬性

KeyVaultKey key = keyClient.getKey("my-key");

// 更新屬性
key.getProperties()
    .setEnabled(false)
    .setExpiresOn(OffsetDateTime.now().plusMonths(6))
    .setTags(Map.of("status", "archived"));

KeyVaultKey updatedKey = keyClient.updateKeyProperties(key.getProperties(),
    KeyOperation.ENCRYPT, KeyOperation.DECRYPT);

列出金鑰

import com.azure.core.util.paging.PagedIterable;

// 列出所有金鑰
for (KeyProperties keyProps : keyClient.listPropertiesOfKeys()) {
    System.out.println("金鑰: " + keyProps.getName());
    System.out.println("  已啟用: " + keyProps.isEnabled());
    System.out.println("  建立時間: " + keyProps.getCreatedOn());
}

// 列出金鑰版本
for (KeyProperties version : keyClient.listPropertiesOfKeyVersions("my-key")) {
    System.out.println("版本: " + version.getVersion());
    System.out.println("建立時間: " + version.getCreatedOn());
}

刪除金鑰

import com.azure.core.util.polling.SyncPoller;

// 開始刪除(啟用軟刪除的保管庫)
SyncPoller<deletedkey> deletePoller = keyClient.beginDeleteKey("my-key");

// 等待刪除完成
DeletedKey deletedKey = deletePoller.poll().getValue();
System.out.println("已刪除: " + deletedKey.getDeletedOn());

deletePoller.waitForCompletion();

// 清除已刪除的金鑰(永久刪除)
keyClient.purgeDeletedKey("my-key");

// 恢復已刪除的金鑰
SyncPoller<keyvaultkey> recoverPoller = keyClient.beginRecoverDeletedKey("my-key");
recoverPoller.waitForCompletion();
</keyvaultkey></deletedkey>

加密操作

加密/解密

import com.azure.security.keyvault.keys.cryptography.models.*;

CryptographyClient cryptoClient = new CryptographyClientBuilder()
    .keyIdentifier("https://<vault>.vault.azure.net/keys/<key-name>")
    .credential(new DefaultAzureCredentialBuilder().build())
    .buildClient();

byte[] plaintext = "Hello, World!".getBytes(StandardCharsets.UTF_8);

// 加密
EncryptResult encryptResult = cryptoClient.encrypt(EncryptionAlgorithm.RSA_OAEP, plaintext);
byte[] ciphertext = encryptResult.getCipherText();
System.out.println("密文長度: " + ciphertext.length);

// 解密
DecryptResult decryptResult = cryptoClient.decrypt(EncryptionAlgorithm.RSA_OAEP, ciphertext);
String decrypted = new String(decryptResult.getPlainText(), StandardCharsets.UTF_8);
System.out.println("已解密: " + decrypted);
</key-name></vault>

簽名/驗證

import java.security.MessageDigest;

// 建立資料摘要
byte[] data = "Data to sign".getBytes(StandardCharsets.UTF_8);
MessageDigest md = MessageDigest.getInstance("SHA-256");
byte[] digest = md.digest(data);

// 簽名
SignResult signResult = cryptoClient.sign(SignatureAlgorithm.RS256, digest);
byte[] signature = signResult.getSignature();

// 驗證
VerifyResult verifyResult = cryptoClient.verify(SignatureAlgorithm.RS256, digest, signature);
System.out.println("有效簽名: " + verifyResult.isValid());

包裝/解包金鑰

// 要包裝的金鑰(例如 AES 金鑰)
byte[] keyToWrap = new byte[32];  // 256 位金鑰
new SecureRandom().nextBytes(keyToWrap);

// 包裝
WrapResult wrapResult = cryptoClient.wrapKey(KeyWrapAlgorithm.RSA_OAEP, keyToWrap);
byte[] wrappedKey = wrapResult.getEncryptedKey();

// 解包
UnwrapResult unwrapResult = cryptoClient.unwrapKey(KeyWrapAlgorithm.RSA_OAEP, wrappedKey);
byte[] unwrappedKey = unwrapResult.getKey();

備份與恢復

// 備份
byte[] backup = keyClient.backupKey("my-key");

// 將備份儲存到檔案
Files.write(Paths.get("key-backup.blob"), backup);

// 恢復
byte[] backupData = Files.readAllBytes(Paths.get("key-backup.blob"));
KeyVaultKey restoredKey = keyClient.restoreKeyBackup(backupData);

金鑰輪換

// 輪換到新版本
KeyVaultKey rotatedKey = keyClient.rotateKey("my-key");
System.out.println("新版本: " + rotatedKey.getProperties().getVersion());

// 設定輪換策略
KeyRotationPolicy policy = new KeyRotationPolicy()
    .setExpiresIn("P90D")  // 90 天后過期
    .setLifetimeActions(Arrays.asList(
        new KeyRotationLifetimeAction(KeyRotationPolicyAction.ROTATE)
            .setTimeBeforeExpiry("P30D")));  // 過期前 30 天輪換

keyClient.updateKeyRotationPolicy("my-key", policy);

// 獲取輪換策略
KeyRotationPolicy currentPolicy = keyClient.getKeyRotationPolicy("my-key");

匯入金鑰

import com.azure.security.keyvault.keys.models.ImportKeyOptions;
import com.azure.security.keyvault.keys.models.JsonWebKey;

// 匯入現有金鑰材料
JsonWebKey jsonWebKey = new JsonWebKey()
    .setKeyType(KeyType.RSA)
    .setN(modulus)
    .setE(exponent)
    .setD(privateExponent)
    // ... 其他 RSA 元件
    ;

ImportKeyOptions importOptions = new ImportKeyOptions("imported-key", jsonWebKey)
    .setHardwareProtected(false);

KeyVaultKey importedKey = keyClient.importKey(importOptions);

加密演算法

演算法金鑰型別描述
`RSA1_5`RSARSAES-PKCS1-v1\_5
`RSA_OAEP`RSA使用 OAEP 的 RSAES(推薦)
`RSA_OAEP_256`RSA使用 SHA-256 的 RSAES with OAEP
`A128GCM`OCTAES-GCM 128 位
`A256GCM`OCTAES-GCM 256 位
`A128CBC`OCTAES-CBC 128 位
`A256CBC`OCTAES-CBC 256 位

簽名演算法

演算法金鑰型別雜湊
`RS256`RSASHA-256
`RS384`RSASHA-384
`RS512`RSASHA-512
`PS256`RSASHA-256 (PSS)
`ES256`EC P-256SHA-256
`ES384`EC P-384SHA-384
`ES512`EC P-521SHA-512

錯誤處理

import com.azure.core.exception.HttpResponseException;
import com.azure.core.exception.ResourceNotFoundException;

try {
    KeyVaultKey key = keyClient.getKey("non-existent-key");
} catch (ResourceNotFoundException e) {
    System.out.println("未找到金鑰: " + e.getMessage());
} catch (HttpResponseException e) {
    System.out.println("HTTP 錯誤 " + e.getResponse().getStatusCode());
    System.out.println("訊息: " + e.getMessage());
}

環境變數

AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net  # 保管庫 URL 必需
AZURE_TOKEN_CREDENTIALS=prod  # 僅在生產環境使用 DefaultAzureCredential 時必需
</vault-name>

最佳實踐

  1. 生產環境使用 HSM 金鑰 - 對敏感金鑰設定 setHardwareProtected(true)
  2. 啟用軟刪除 - 防止意外刪除
  3. 金鑰輪換 - 設定自動輪換策略
  4. 最小許可權 - 為不同的操作使用單獨的金鑰
  5. 儘可能使用本地加密 - 使用帶有本地金鑰材料的 CryptographyClient 以減少往返次數

觸發短語

  • "Key Vault keys Java", "cryptographic keys Java"
  • "encrypt decrypt Java", "sign verify Java"
  • "RSA key", "EC key", "HSM key"
  • "key rotation", "wrap unwrap key"
在 GitHub 上查看
---
name: azure-security-keyvault-keys-java
description: Manage cryptographic keys and perform cryptographic operations in Azure Key Vault and Managed HSM using the Java SDK.
license: MIT
---

# Azure Key Vault Keys (Java)

Manage cryptographic keys and perform cryptographic operations in Azure Key Vault and Managed HSM.

## Installation

```xml
<dependency>
    <groupId>com.azure</groupId>
    <artifactId>azure-security-keyvault-keys</artifactId>
    <version>4.9.0</version>
</dependency>
```

## Client Creation

```java
import com.azure.core.credential.TokenCredential;
import com.azure.identity.AzureIdentityEnvVars;
import com.azure.identity.DefaultAzureCredentialBuilder;
import com.azure.identity.ManagedIdentityCredentialBuilder;
import com.azure.security.keyvault.keys.KeyClient;
import com.azure.security.keyvault.keys.KeyClientBuilder;
import com.azure.security.keyvault.keys.cryptography.CryptographyClient;
import com.azure.security.keyvault.keys.cryptography.CryptographyClientBuilder;

// Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=<specific_credential>
TokenCredential credential = new DefaultAzureCredentialBuilder()
    .requireEnvVars(AzureIdentityEnvVars.AZURE_TOKEN_CREDENTIALS)
    .build();
// Or use a specific credential directly in production:
// See https://learn.microsoft.com/java/api/overview/azure/identity-readme?view=azure-java-stable#credential-classes
// TokenCredential credential = new ManagedIdentityCredentialBuilder().build();

// Key management client
KeyClient keyClient = new KeyClientBuilder()
    .vaultUrl("https://<vault-name>.vault.azure.net")
    .credential(credential)
    .buildClient();

// Async client
KeyAsyncClient keyAsyncClient = new KeyClientBuilder()
    .vaultUrl("https://<vault-name>.vault.azure.net")
    .credential(credential)
    .buildAsyncClient();

// Cryptography client (for encrypt/decrypt/sign/verify)
CryptographyClient cryptoClient = new CryptographyClientBuilder()
    .keyIdentifier("https://<vault-name>.vault.azure.net/keys/<key-name>/<key-version>")
    .credential(credential)
    .buildClient();
```

## Key Types

| Type | Description |
|------|-------------|
| `RSA` | RSA key (2048, 3072, 4096 bits) |
| `RSA_HSM` | RSA key in HSM |
| `EC` | Elliptic Curve key |
| `EC_HSM` | Elliptic Curve key in HSM |
| `OCT` | Symmetric key (Managed HSM only) |
| `OCT_HSM` | Symmetric key in HSM |

## Create Keys

### Create RSA Key

```java
import com.azure.security.keyvault.keys.models.*;

// Simple RSA key
KeyVaultKey rsaKey = keyClient.createRsaKey(new CreateRsaKeyOptions("my-rsa-key")
    .setKeySize(2048));

System.out.println("Key name: " + rsaKey.getName());
System.out.println("Key ID: " + rsaKey.getId());
System.out.println("Key type: " + rsaKey.getKeyType());

// RSA key with options
KeyVaultKey rsaKeyWithOptions = keyClient.createRsaKey(new CreateRsaKeyOptions("my-rsa-key-2")
    .setKeySize(4096)
    .setExpiresOn(OffsetDateTime.now().plusYears(1))
    .setNotBefore(OffsetDateTime.now())
    .setEnabled(true)
    .setKeyOperations(KeyOperation.ENCRYPT, KeyOperation.DECRYPT, 
                       KeyOperation.WRAP_KEY, KeyOperation.UNWRAP_KEY)
    .setTags(Map.of("environment", "production")));

// HSM-backed RSA key
KeyVaultKey hsmKey = keyClient.createRsaKey(new CreateRsaKeyOptions("my-hsm-key")
    .setKeySize(2048)
    .setHardwareProtected(true));
```

### Create EC Key

```java
// EC key with P-256 curve
KeyVaultKey ecKey = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key")
    .setCurveName(KeyCurveName.P_256));

// EC key with other curves
KeyVaultKey ecKey384 = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key-384")
    .setCurveName(KeyCurveName.P_384));

KeyVaultKey ecKey521 = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-key-521")
    .setCurveName(KeyCurveName.P_521));

// HSM-backed EC key
KeyVaultKey ecHsmKey = keyClient.createEcKey(new CreateEcKeyOptions("my-ec-hsm-key")
    .setCurveName(KeyCurveName.P_256)
    .setHardwareProtected(true));
```

### Create Symmetric Key (Managed HSM only)

```java
KeyVaultKey octKey = keyClient.createOctKey(new CreateOctKeyOptions("my-symmetric-key")
    .setKeySize(256)
    .setHardwareProtected(true));
```

## Get Key

```java
// Get latest version
KeyVaultKey key = keyClient.getKey("my-key");

// Get specific version
KeyVaultKey keyVersion = keyClient.getKey("my-key", "<version-id>");

// Get only key properties (no key material)
KeyProperties keyProps = keyClient.getKey("my-key").getProperties();
```

## Update Key Properties

```java
KeyVaultKey key = keyClient.getKey("my-key");

// Update properties
key.getProperties()
    .setEnabled(false)
    .setExpiresOn(OffsetDateTime.now().plusMonths(6))
    .setTags(Map.of("status", "archived"));

KeyVaultKey updatedKey = keyClient.updateKeyProperties(key.getProperties(),
    KeyOperation.ENCRYPT, KeyOperation.DECRYPT);
```

## List Keys

```java
import com.azure.core.util.paging.PagedIterable;

// List all keys
for (KeyProperties keyProps : keyClient.listPropertiesOfKeys()) {
    System.out.println("Key: " + keyProps.getName());
    System.out.println("  Enabled: " + keyProps.isEnabled());
    System.out.println("  Created: " + keyProps.getCreatedOn());
}

// List key versions
for (KeyProperties version : keyClient.listPropertiesOfKeyVersions("my-key")) {
    System.out.println("Version: " + version.getVersion());
    System.out.println("Created: " + version.getCreatedOn());
}
```

## Delete Key

```java
import com.azure.core.util.polling.SyncPoller;

// Begin delete (soft-delete enabled vaults)
SyncPoller<DeletedKey, Void> deletePoller = keyClient.beginDeleteKey("my-key");

// Wait for deletion
DeletedKey deletedKey = deletePoller.poll().getValue();
System.out.println("Deleted: " + deletedKey.getDeletedOn());

deletePoller.waitForCompletion();

// Purge deleted key (permanent deletion)
keyClient.purgeDeletedKey("my-key");

// Recover deleted key
SyncPoller<KeyVaultKey, Void> recoverPoller = keyClient.beginRecoverDeletedKey("my-key");
recoverPoller.waitForCompletion();
```

## Cryptographic Operations

### Encrypt/Decrypt

```java
import com.azure.security.keyvault.keys.cryptography.models.*;

CryptographyClient cryptoClient = new CryptographyClientBuilder()
    .keyIdentifier("https://<vault>.vault.azure.net/keys/<key-name>")
    .credential(new DefaultAzureCredentialBuilder().build())
    .buildClient();

byte[] plaintext = "Hello, World!".getBytes(StandardCharsets.UTF_8);

// Encrypt
EncryptResult encryptResult = cryptoClient.encrypt(EncryptionAlgorithm.RSA_OAEP, plaintext);
byte[] ciphertext = encryptResult.getCipherText();
System.out.println("Ciphertext length: " + ciphertext.length);

// Decrypt
DecryptResult decryptResult = cryptoClient.decrypt(EncryptionAlgorithm.RSA_OAEP, ciphertext);
String decrypted = new String(decryptResult.getPlainText(), StandardCharsets.UTF_8);
System.out.println("Decrypted: " + decrypted);
```

### Sign/Verify

```java
import java.security.MessageDigest;

// Create digest of data
byte[] data = "Data to sign".getBytes(StandardCharsets.UTF_8);
MessageDigest md = MessageDigest.getInstance("SHA-256");
byte[] digest = md.digest(data);

// Sign
SignResult signResult = cryptoClient.sign(SignatureAlgorithm.RS256, digest);
byte[] signature = signResult.getSignature();

// Verify
VerifyResult verifyResult = cryptoClient.verify(SignatureAlgorithm.RS256, digest, signature);
System.out.println("Valid signature: " + verifyResult.isValid());
```

### Wrap/Unwrap Key

```java
// Key to wrap (e.g., AES key)
byte[] keyToWrap = new byte[32];  // 256-bit key
new SecureRandom().nextBytes(keyToWrap);

// Wrap
WrapResult wrapResult = cryptoClient.wrapKey(KeyWrapAlgorithm.RSA_OAEP, keyToWrap);
byte[] wrappedKey = wrapResult.getEncryptedKey();

// Unwrap
UnwrapResult unwrapResult = cryptoClient.unwrapKey(KeyWrapAlgorithm.RSA_OAEP, wrappedKey);
byte[] unwrappedKey = unwrapResult.getKey();
```

## Backup and Restore

```java
// Backup
byte[] backup = keyClient.backupKey("my-key");

// Save backup to file
Files.write(Paths.get("key-backup.blob"), backup);

// Restore
byte[] backupData = Files.readAllBytes(Paths.get("key-backup.blob"));
KeyVaultKey restoredKey = keyClient.restoreKeyBackup(backupData);
```

## Key Rotation

```java
// Rotate to new version
KeyVaultKey rotatedKey = keyClient.rotateKey("my-key");
System.out.println("New version: " + rotatedKey.getProperties().getVersion());

// Set rotation policy
KeyRotationPolicy policy = new KeyRotationPolicy()
    .setExpiresIn("P90D")  // Expire after 90 days
    .setLifetimeActions(Arrays.asList(
        new KeyRotationLifetimeAction(KeyRotationPolicyAction.ROTATE)
            .setTimeBeforeExpiry("P30D")));  // Rotate 30 days before expiry

keyClient.updateKeyRotationPolicy("my-key", policy);

// Get rotation policy
KeyRotationPolicy currentPolicy = keyClient.getKeyRotationPolicy("my-key");
```

## Import Key

```java
import com.azure.security.keyvault.keys.models.ImportKeyOptions;
import com.azure.security.keyvault.keys.models.JsonWebKey;

// Import existing key material
JsonWebKey jsonWebKey = new JsonWebKey()
    .setKeyType(KeyType.RSA)
    .setN(modulus)
    .setE(exponent)
    .setD(privateExponent)
    // ... other RSA components
    ;

ImportKeyOptions importOptions = new ImportKeyOptions("imported-key", jsonWebKey)
    .setHardwareProtected(false);

KeyVaultKey importedKey = keyClient.importKey(importOptions);
```

## Encryption Algorithms

| Algorithm | Key Type | Description |
|-----------|----------|-------------|
| `RSA1_5` | RSA | RSAES-PKCS1-v1_5 |
| `RSA_OAEP` | RSA | RSAES with OAEP (recommended) |
| `RSA_OAEP_256` | RSA | RSAES with OAEP using SHA-256 |
| `A128GCM` | OCT | AES-GCM 128-bit |
| `A256GCM` | OCT | AES-GCM 256-bit |
| `A128CBC` | OCT | AES-CBC 128-bit |
| `A256CBC` | OCT | AES-CBC 256-bit |

## Signature Algorithms

| Algorithm | Key Type | Hash |
|-----------|----------|------|
| `RS256` | RSA | SHA-256 |
| `RS384` | RSA | SHA-384 |
| `RS512` | RSA | SHA-512 |
| `PS256` | RSA | SHA-256 (PSS) |
| `ES256` | EC P-256 | SHA-256 |
| `ES384` | EC P-384 | SHA-384 |
| `ES512` | EC P-521 | SHA-512 |

## Error Handling

```java
import com.azure.core.exception.HttpResponseException;
import com.azure.core.exception.ResourceNotFoundException;

try {
    KeyVaultKey key = keyClient.getKey("non-existent-key");
} catch (ResourceNotFoundException e) {
    System.out.println("Key not found: " + e.getMessage());
} catch (HttpResponseException e) {
    System.out.println("HTTP error " + e.getResponse().getStatusCode());
    System.out.println("Message: " + e.getMessage());
}
```

## Environment Variables

```bash
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net  # Required for vault URL
AZURE_TOKEN_CREDENTIALS=prod  # Required only if DefaultAzureCredential is used in production
```

## Best Practices

1. **Use HSM Keys for Production** - Set `setHardwareProtected(true)` for sensitive keys
2. **Enable Soft Delete** - Protects against accidental deletion
3. **Key Rotation** - Set up automatic rotation policies
4. **Least Privilege** - Use separate keys for different operations
5. **Local Crypto When Possible** - Use `CryptographyClient` with local key material to reduce round-trips

## Trigger Phrases

- "Key Vault keys Java", "cryptographic keys Java"
- "encrypt decrypt Java", "sign verify Java"
- "RSA key", "EC key", "HSM key"
- "key rotation", "wrap unwrap key"

所有檔案

2 個檔案

安裝 azure-security-keyvault-keys-java

將技能檔案下載並解壓至你的 .claude/skills/ 目錄。

下載 ZIP

複製儲存庫並將技能檔案複製到您的專案中。

git clone https://github.com/microsoft/skills/tree/main/.github/plugins/azure-sdk-java/skills/azure-security-keyvault-keys-java # Copy SKILL.md to your .claude/skills/ directory

複製 複製
快速設定: 將技能資料夾複製到 .claude/skills/ 目錄。Claude 將自動檢測並使用該技能。
儲存庫 microsoft/skills

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