azure-keyvault-certificates-rust
microsoft/skills
在 Azure Key Vault 中管理 X.509 證書,包括建立、刪除和簽名操作。
...展開全部Azure Key Vault 證書 Rust 庫
管理用於 TLS/SSL、程式碼簽名和身份驗證的 X.509 證書。
在以下情況下使用此技能:
- 應用程式需要從 Rust 在 Key Vault 中建立或管理 X.509 證書
- 你需要自簽名證書或由 CA 頒發的證書
- 你需要證書頒發過程中的長期執行操作(LRO)
- 你需要使用證書的金鑰對資料進行簽名
重要提示: 僅使用由 azure-sdk crates.io 使用者釋出的官方
azure_security_keyvault_certificatescrate。請勿使用非官方或社羣提供的 crates。官方 crate 的名稱中使用下劃線,且均沒有 0.21.0 版本。
安裝
cargo add azure_security_keyvault_certificates azure_identity tokio futures
如果你的程式碼直接使用
azure_core型別,請將azure_core新增到Cargo.toml中。如果你僅使用azure_security_keyvault_certificates的重新匯出,則直接依賴azure_core是可選的。
環境變數
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net/ # 所有操作必需
</vault-name>身份驗證
use azure_identity::DeveloperToolsCredential;
use azure_security_keyvault_certificates::CertificateClient;
#[tokio::main]
async fn main() -> Result> {
// 本地開發:使用 DeveloperToolsCredential。生產環境:使用 ManagedIdentityCredential。
let credential = DeveloperToolsCredential::new(None)?;
let client = CertificateClient::new(
"https://<vault-name>.vault.azure.net/",
credential.clone(),
None,
)?;
let cert = client
.get_certificate("cert-name", None)
.await?
.into_model()?;
println!("Certificate: {:?}", cert.id);
Ok(())
}
</vault-name>核心工作流
建立自簽名證書(LRO)
建立證書是一個長期執行操作。Poller<t></t> 實現了 IntoFuture —— 只需 .await:
use azure_security_keyvault_certificates::{
models::{
CertificatePolicy, CreateCertificateParameters, IssuerParameters,
X509CertificateProperties,
},
ResourceExt,
};
let policy = CertificatePolicy {
x509_certificate_properties: Some(X509CertificateProperties {
subject: Some("CN=example.com".into()),
..Default::default()
}),
issuer_parameters: Some(IssuerParameters {
name: Some("Self".into()),
..Default::default()
}),
..Default::default()
};
let body = CreateCertificateParameters {
certificate_policy: Some(policy),
..Default::default()
};
// Poller 實現了 IntoFuture —— 直接 await 以等待完成
let cert = client
.begin_create_certificate("cert-name", body.try_into()?, None)?
.await?
.into_model()?;
println!(
"Name: {:?}, Version: {:?}",
cert.resource_id()?.name,
cert.resource_id()?.version,
);
更新證書屬性
use azure_security_keyvault_certificates::models::UpdateCertificatePropertiesParameters;
use std::collections::HashMap;
#[allow(clippy::needless_update)]
let params = UpdateCertificatePropertiesParameters {
tags: Some(HashMap::from_iter(vec![("env".into(), "prod".into())])),
..Default::default()
};
client
.update_certificate_properties("cert-name", params.try_into()?, None)
.await?
.into_model()?;
刪除證書
client.delete_certificate("cert-name", None).await?;
列出證書(分頁)
list_certificate_properties 返回一個 Pager<t></t> —— 直接迭代專案:
use azure_security_keyvault_certificates::ResourceExt;
use futures::TryStreamExt as _;
let mut pager = client.list_certificate_properties(None)?;
while let Some(cert) = pager.try_next().await? {
println!("Found: {}", cert.resource_id()?.name);
}
使用證書的金鑰進行簽名
Key Vault 中的證書具有關聯的金鑰。請使用 Key Vault Keys SDK 進行加密操作:
use azure_security_keyvault_keys::{
models::{KeyClientSignOptions, SignParameters, SignatureAlgorithm},
KeyClient,
};
let key_client = KeyClient::new(
"https://<vault-name>.vault.azure.net/",
credential.clone(),
None,
)?;
// 使用證書的 EC 金鑰進行簽名
let digest = vec![0u8; 32]; // SHA-256 摘要
let body = SignParameters {
algorithm: Some(SignatureAlgorithm::Es256),
value: Some(digest),
};
let result = key_client
.sign(
"cert-name",
body.try_into()?,
Some(KeyClientSignOptions {
key_version: Some("<certificate-version>".to_string()),
..Default::default()
}),
)
.await?
.into_model()?;
println!("Signature: {:?}", result.result);
</certificate-version></vault-name>證書格式
| 格式 | 內容型別 | 用例 |
|---|---|---|
| PKCS#12 | `application/x-pkcs12` | 捆綁證書 + 私鑰 |
| PEM | `application/x-pem-file` | Base64 編碼,在 Linux/Web 中常見 |
RBAC 角色
對於 Entra ID 身份驗證,請分配以下角色之一:
| 角色 | 訪問許可權 |
|---|---|
| `Key Vault Certificate User` | 使用證書 |
| `Key Vault Certificates Officer` | 完整的證書管理 |
最佳實踐
- 使用
cargo add管理依賴項,切勿直接編輯Cargo.toml。 使用 cargo 命令新增和移除 Rust SDK 依賴項,而不是手動編輯清單檔案。 - 僅在直接匯入
azure_core型別時新增azure_core。 如果你的程式碼匯入了azure_core::http::Url、azure_core::http::RequestContent或azure_core::error::ErrorKind,請包含azure_core;否則,直接依賴是可選的。 - 本地開發使用
DeveloperToolsCredential,生產環境使用ManagedIdentityCredential—— Rust 不提供單一的DefaultAzureCredential型別 - 切勿硬編碼憑據 —— 請使用環境變數或託管身份
- 使用
..Default::default()配合#[allow(clippy::needless_update)]進行模型結構體更新 - 使用
ResourceExt從 ID 中提取證書名稱/版本 - LRO ——
begin_create_certificate返回一個Poller;只需.await等待完成(客戶端應極少輪詢狀態) - 重用客戶端 ——
CertificateClient是執行緒安全的;建立一次,跨任務共享
參考連結
| 資源 | 連結 |
|---|---|
| API 參考 | https://docs.rs/azure\_security\_keyvault\_certificates/latest/azure\_security\_keyvault\_certificates |
| crates.io | https://crates.io/crates/azure\_security\_keyvault\_certificates |
| 原始碼 | https://github.com/Azure/azure-sdk-for-rust/tree/main/sdk/keyvault/azure\_security\_keyvault\_certificates |
---
name: azure-keyvault-certificates-rust
description: Manage X.509 certificates in Azure Key Vault from Rust, including creation, deletion, and signing operations.
license: MIT
---
# Azure Key Vault Certificates library for Rust
Manage X.509 certificates for TLS/SSL, code signing, and authentication.
Use this skill when:
- An app needs to create or manage X.509 certificates in Key Vault from Rust
- You need self-signed or CA-issued certificates
- You need long-running operations (LRO) for certificate issuance
- You need to sign data using a certificate's key
> **IMPORTANT:** Only use the official `azure_security_keyvault_certificates` crate published by the [azure-sdk](https://crates.io/users/azure-sdk) crates.io user. Do NOT use unofficial or community crates. Official crates use underscores in names and none have version 0.21.0.
## Installation
```sh
cargo add azure_security_keyvault_certificates azure_identity tokio futures
```
> If your code uses `azure_core` types directly, add `azure_core` to `Cargo.toml`. If you only use `azure_security_keyvault_certificates` re-exports, direct `azure_core` dependency is optional.
## Environment Variables
```bash
AZURE_KEYVAULT_URL=https://<vault-name>.vault.azure.net/ # Required for all operations
```
## Authentication
```rust
use azure_identity::DeveloperToolsCredential;
use azure_security_keyvault_certificates::CertificateClient;
#[tokio::main]
async fn main() -> Result<(), Box<dyn std::error::Error>> {
// Local dev: DeveloperToolsCredential. Production: use ManagedIdentityCredential.
let credential = DeveloperToolsCredential::new(None)?;
let client = CertificateClient::new(
"https://<vault-name>.vault.azure.net/",
credential.clone(),
None,
)?;
let cert = client
.get_certificate("cert-name", None)
.await?
.into_model()?;
println!("Certificate: {:?}", cert.id);
Ok(())
}
```
## Core Workflow
### Create Self-Signed Certificate (LRO)
Creating a certificate is a long-running operation. `Poller<T>` implements `IntoFuture` — just `.await`:
```rust
use azure_security_keyvault_certificates::{
models::{
CertificatePolicy, CreateCertificateParameters, IssuerParameters,
X509CertificateProperties,
},
ResourceExt,
};
let policy = CertificatePolicy {
x509_certificate_properties: Some(X509CertificateProperties {
subject: Some("CN=example.com".into()),
..Default::default()
}),
issuer_parameters: Some(IssuerParameters {
name: Some("Self".into()),
..Default::default()
}),
..Default::default()
};
let body = CreateCertificateParameters {
certificate_policy: Some(policy),
..Default::default()
};
// Poller implements IntoFuture — await directly for completion
let cert = client
.begin_create_certificate("cert-name", body.try_into()?, None)?
.await?
.into_model()?;
println!(
"Name: {:?}, Version: {:?}",
cert.resource_id()?.name,
cert.resource_id()?.version,
);
```
### Update Certificate Properties
```rust
use azure_security_keyvault_certificates::models::UpdateCertificatePropertiesParameters;
use std::collections::HashMap;
#[allow(clippy::needless_update)]
let params = UpdateCertificatePropertiesParameters {
tags: Some(HashMap::from_iter(vec![("env".into(), "prod".into())])),
..Default::default()
};
client
.update_certificate_properties("cert-name", params.try_into()?, None)
.await?
.into_model()?;
```
### Delete Certificate
```rust
client.delete_certificate("cert-name", None).await?;
```
### List Certificates (Pagination)
`list_certificate_properties` returns a `Pager<T>` — iterate items directly:
```rust
use azure_security_keyvault_certificates::ResourceExt;
use futures::TryStreamExt as _;
let mut pager = client.list_certificate_properties(None)?;
while let Some(cert) = pager.try_next().await? {
println!("Found: {}", cert.resource_id()?.name);
}
```
## Signing with a Certificate's Key
Certificates in Key Vault have an associated key. Use the Key Vault Keys SDK for crypto operations:
```rust
use azure_security_keyvault_keys::{
models::{KeyClientSignOptions, SignParameters, SignatureAlgorithm},
KeyClient,
};
let key_client = KeyClient::new(
"https://<vault-name>.vault.azure.net/",
credential.clone(),
None,
)?;
// Sign with the certificate's EC key
let digest = vec![0u8; 32]; // SHA-256 digest
let body = SignParameters {
algorithm: Some(SignatureAlgorithm::Es256),
value: Some(digest),
};
let result = key_client
.sign(
"cert-name",
body.try_into()?,
Some(KeyClientSignOptions {
key_version: Some("<certificate-version>".to_string()),
..Default::default()
}),
)
.await?
.into_model()?;
println!("Signature: {:?}", result.result);
```
## Certificate Formats
| Format | Content Type | Use Case |
| ------- | ------------------------ | ----------------------------------- |
| PKCS#12 | `application/x-pkcs12` | Bundled cert + private key |
| PEM | `application/x-pem-file` | Base64-encoded, common in Linux/web |
## RBAC Roles
For Entra ID auth, assign one of these roles:
| Role | Access |
| -------------------------------- | --------------------------- |
| `Key Vault Certificate User` | Use certificates |
| `Key Vault Certificates Officer` | Full certificate management |
## Best Practices
1. **Use `cargo add` to manage dependencies, never edit `Cargo.toml` directly.** Add and remove Rust SDK dependencies with cargo commands instead of manual manifest edits.
2. **Add `azure_core` only when importing `azure_core` types directly.** If your code imports `azure_core::http::Url`, `azure_core::http::RequestContent`, or `azure_core::error::ErrorKind`, include `azure_core`; otherwise a direct dependency is optional.
3. **Use `DeveloperToolsCredential`** for local dev, **`ManagedIdentityCredential`** for production — Rust does not provide a single `DefaultAzureCredential` type
4. **Never hardcode credentials** — use environment variables or managed identity
5. **Use `..Default::default()`** with `#[allow(clippy::needless_update)]` for model struct updates
6. **Use `ResourceExt`** to extract certificate name/version from IDs
7. **LROs** — `begin_create_certificate` returns a `Poller`; just `.await` for completion (clients should rarely poll for status)
8. **Reuse clients** — `CertificateClient` is thread-safe; create once, share across tasks
## Reference Links
| Resource | Link |
| ------------- | ------------------------------------------------------------------------------------------------------- |
| API Reference | https://docs.rs/azure_security_keyvault_certificates/latest/azure_security_keyvault_certificates |
| crates.io | https://crates.io/crates/azure_security_keyvault_certificates |
| Source Code | https://github.com/Azure/azure-sdk-for-rust/tree/main/sdk/keyvault/azure_security_keyvault_certificates |
所有檔案
1 個檔案安裝 azure-keyvault-certificates-rust
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