使用克隆复制磁盘


本文档介绍了磁盘克隆的工作原理以及如何创建磁盘克隆。通过磁盘克隆,您可以立即使用现有磁盘的副本。如果您要创建可立即挂接到虚拟机的现有磁盘的相同副本,请创建磁盘克隆,具体如下:

  • 通过复制生产数据来创建预演环境,以便在不干扰生产环境的情况下进行调试
  • 创建副本以进行数据库备份验证
  • 将非启动磁盘数据移动到新项目
  • 在扩容虚拟机时复制磁盘

为了防止灾难恢复,请使用标准快照备份磁盘,而不是使用磁盘克隆。如需定期捕获磁盘内容而不创建新磁盘,请使用即时快照,因为它们比克隆的存储效率更高。如需了解其他磁盘保护选项,请参阅数据保护选项

准备工作

  • 设置身份验证(如果尚未设置)。身份验证是通过其进行身份验证以访问 Google Cloud 服务和 API 的过程。如需从本地开发环境运行代码或示例,您可以按如下方式向 Compute Engine 进行身份验证。

    Select the tab for how you plan to use the samples on this page:

    Console

    When you use the Google Cloud console to access Google Cloud services and APIs, you don't need to set up authentication.

    gcloud

    1. Install the Google Cloud CLI, then initialize it by running the following command:

      gcloud init
    2. Set a default region and zone.
    3. Terraform

      如需在本地开发环境中使用本页面上的 Terraform 示例,请安装并初始化 gcloud CLI,然后使用您的用户凭据设置应用默认凭据。

      1. Install the Google Cloud CLI.
      2. To initialize the gcloud CLI, run the following command:

        gcloud init
      3. If you're using a local shell, then create local authentication credentials for your user account:

        gcloud auth application-default login

        You don't need to do this if you're using Cloud Shell.

      如需了解详情,请参阅 Set up authentication for a local development environment

      Go

      如需在本地开发环境中使用本页面上的 Go 示例,请安装并初始化 gcloud CLI,然后使用您的用户凭据设置应用默认凭据。

      1. Install the Google Cloud CLI.
      2. To initialize the gcloud CLI, run the following command:

        gcloud init
      3. If you're using a local shell, then create local authentication credentials for your user account:

        gcloud auth application-default login

        You don't need to do this if you're using Cloud Shell.

      如需了解详情,请参阅 Set up authentication for a local development environment

      Java

      如需在本地开发环境中使用本页面上的 Java 示例,请安装并初始化 gcloud CLI,然后使用您的用户凭据设置应用默认凭据。

      1. Install the Google Cloud CLI.
      2. To initialize the gcloud CLI, run the following command:

        gcloud init
      3. If you're using a local shell, then create local authentication credentials for your user account:

        gcloud auth application-default login

        You don't need to do this if you're using Cloud Shell.

      如需了解详情,请参阅 Set up authentication for a local development environment

      Python

      如需在本地开发环境中使用本页面上的 Python 示例,请安装并初始化 gcloud CLI,然后使用您的用户凭据设置应用默认凭据。

      1. Install the Google Cloud CLI.
      2. To initialize the gcloud CLI, run the following command:

        gcloud init
      3. If you're using a local shell, then create local authentication credentials for your user account:

        gcloud auth application-default login

        You don't need to do this if you're using Cloud Shell.

      如需了解详情,请参阅 Set up authentication for a local development environment

      REST

      如需在本地开发环境中使用本页面上的 REST API 示例,请使用您提供给 gcloud CLI 的凭据。

        Install the Google Cloud CLI, then initialize it by running the following command:

        gcloud init

      如需了解详情,请参阅 Google Cloud 身份验证文档中的使用 REST 时进行身份验证

磁盘克隆的工作原理

克隆磁盘时,您会新建一个磁盘,其中包含来源磁盘上的所有数据。即使现有磁盘已挂接到虚拟机实例,您也可以创建磁盘克隆。

克隆的磁盘类型必须与来源磁盘的类型相同。但是,您可以修改克隆的属性,例如磁盘大小。您还可以删除来源磁盘,而不会造成删除克隆的任何风险。

支持的磁盘类型

您只能为以下磁盘类型创建磁盘克隆:

  • Persistent Disk:所有类型的 Persistent Disk
  • Google Cloud Hyperdisk:Hyperdisk Balanced、Hyperdisk Extreme 和 Hyperdisk Throughput

限制

根据磁盘类型,磁盘克隆具有以下限制:

一般限制

以下限制适用于所有磁盘类型的克隆:

  • 克隆的磁盘类型必须与来源磁盘的相同。
  • 您不能在其他可用区中创建现有可用区磁盘的可用区磁盘克隆。
  • 克隆的大小必须至少为来源磁盘的大小。如果您使用 Google Cloud 控制台创建克隆,则不能指定磁盘大小,并且克隆的大小与来源磁盘的大小相同。
  • 如果您使用 CSEK(客户提供的加密密钥)CMEK(客户管理的加密密钥)对来源磁盘进行加密,则必须使用同一密钥对克隆进行加密。如需了解详情,请参阅创建加密来源磁盘的克隆
  • 您无法在创建来源磁盘的克隆时删除来源磁盘。
  • 在创建克隆时,来源磁盘挂接到的计算实例将无法启动。
  • 如果来源磁盘及其挂接到的虚拟机已标记为删除,则您无法在创建克隆时删除虚拟机。
  • 您每 30 秒最多可以创建给定来源磁盘或其克隆的一个克隆。
  • 您最多可以为给定来源磁盘或其克隆创建 1000 个同时磁盘克隆。如果超出此限制,则系统会返回 internalError。但是,如果您创建磁盘克隆并在稍后将其删除,则所删除的磁盘克隆不会计入此限制。
  • 克隆磁盘后,该磁盘或其克隆的任何后续克隆都会计入原始来源磁盘的 1,000 个同时磁盘克隆的限制,并计入每 30 秒最多创建一个克隆的限制。
  • 克隆磁盘时您可以使用的空间量有限。您每 15 分钟最多可以创建 1 TB 的克隆磁盘,且突发请求限制为 257 TB。

Persistent Disk 克隆的限制

Persistent Disk 的磁盘克隆具有以下限制:

  • 您不能通过区域磁盘创建可用区磁盘克隆。
  • 如需通过可用区级来源磁盘创建区域级磁盘克隆,该区域级磁盘克隆的副本可用区必须与来源磁盘的可用区匹配。
  • 创建后,区域级磁盘克隆平均在 3 分钟内可用。但是,磁盘可能需要几十分钟才能完全复制,并达到恢复点目标 (RPO) 接近零的状态。

Google Cloud Hyperdisk 克隆的限制

您只能为 Hyperdisk Balanced、Hyperdisk Extreme 和 Hyperdisk Throughput 卷创建磁盘克隆。

错误消息

如果超出克隆频率限制,请求会失败,并显示以下错误:

RATE LIMIT: ERROR: (gcloud.compute.disks.create) Could not fetch resource:
 - Operation rate exceeded for resource RESOURCE. Too frequent operations from the source resource.

创建磁盘克隆

本部分介绍如何复制现有磁盘并创建磁盘克隆。

如需了解详细步骤(具体取决于磁盘克隆的创建类型),请参阅本文档中的以下部分之一:

创建可用区级磁盘克隆

您可以使用 Google Cloud 控制台、Google Cloud CLI 或 REST 在来源磁盘所在的可用区中创建现有磁盘的可用区级磁盘克隆。

控制台

  1. 在 Google Cloud 控制台中,转到磁盘页面。

    转到“磁盘”

  2. 在磁盘列表中,找到到要克隆的磁盘。

  3. 操作列中,点击 菜单按钮,然后选择克隆磁盘

    创建克隆。

    在显示的克隆磁盘面板中,执行以下操作:

    1. 名称字段中,指定克隆的磁盘的名称。
    2. 位置字段中,验证是否已选中单个可用区
    3. 属性下,查看克隆的磁盘的其他详细信息。
    4. 如需完成克隆的磁盘的创建,请点击创建

gcloud

如需克隆可用区级来源磁盘并创建新的可用区级磁盘,请运行 disks create 命令并指定 --source-disk 标志:

gcloud compute disks create TARGET_DISK_NAME \
    --description="cloned disk" \
    --source-disk=projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME

替换以下内容:

  • TARGET_DISK_NAME:新磁盘的名称。
  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • SOURCE_DISK_NAME:来源磁盘的名称。

Terraform

如需创建磁盘克隆,请使用 google_compute_disk 资源

resource "google_compute_disk" "default" {
  name  = "disk-name1"
  type  = "pd-ssd"
  zone  = "us-central1-a"
  image = "debian-11-bullseye-v20220719"
  labels = {
    environment = "dev"
  }
  physical_block_size_bytes = 4096
}

如需了解如何应用或移除 Terraform 配置,请参阅基本 Terraform 命令

Go

Go

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Go 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Go API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

import (
	"context"
	"fmt"
	"io"

	compute "cloud.google.com/go/compute/apiv1"
	computepb "cloud.google.com/go/compute/apiv1/computepb"
	"google.golang.org/protobuf/proto"
)

// createDiskFromDisk creates a new disk with the contents of
// an already existitng disk. Type, and size and zone may differ.
func createDiskFromDisk(
	w io.Writer,
	projectID, zone, diskName, diskType, sourceDiskLink string,
	diskSizeGb int64,
) error {
	// projectID := "your_project_id"
	// zone := "us-west3-b" // should match diskType below
	// diskName := "your_disk_name"
	// diskType := "zones/us-west3-b/diskTypes/pd-ssd"
	// sourceDiskLink := "projects/your_project_id/global/disks/disk_name"
	// diskSizeGb := 120

	ctx := context.Background()
	disksClient, err := compute.NewDisksRESTClient(ctx)
	if err != nil {
		return fmt.Errorf("NewDisksRESTClient: %w", err)
	}
	defer disksClient.Close()

	req := &computepb.InsertDiskRequest{
		Project: projectID,
		Zone:    zone,
		DiskResource: &computepb.Disk{
			Name:       proto.String(diskName),
			Zone:       proto.String(zone),
			Type:       proto.String(diskType),
			SourceDisk: proto.String(sourceDiskLink),
			SizeGb:     proto.Int64(diskSizeGb),
		},
	}

	op, err := disksClient.Insert(ctx, req)
	if err != nil {
		return fmt.Errorf("unable to create disk: %w", err)
	}

	if err = op.Wait(ctx); err != nil {
		return fmt.Errorf("unable to wait for the operation: %w", err)
	}

	fmt.Fprintf(w, "Disk created\n")

	return nil
}

Java

Java

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Java 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Java API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证


import com.google.cloud.compute.v1.Disk;
import com.google.cloud.compute.v1.DisksClient;
import com.google.cloud.compute.v1.Operation;
import java.io.IOException;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;

public class CreateFromSource {

  public static void main(String[] args)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // TODO(developer): Replace these variables before running the sample.
    // Project ID or project number of the Cloud project you want to use.
    String project = "YOUR_PROJECT_ID";

    // Name of the zone in which you want to create the disk.
    String zone = "europe-central2-b";

    // Name of the disk you want to create.
    String diskName = "YOUR_DISK_NAME";

    // The type of disk you want to create. This value uses the following format:
    // "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
    // For example: "zones/us-west3-b/diskTypes/pd-ssd"
    String diskType = String.format("zones/%s/diskTypes/pd-ssd", zone);

    // Size of the new disk in gigabytes.
    int diskSizeGb = 10;

    // A link to the disk you want to use as a source for the new disk.
    // This value uses the following format:
    // "projects/{project_name}/zones/{zone}/disks/{disk_name}"
    String diskLink = String.format("projects/%s/zones/%s/disks/%s", "PROJECT_NAME", "ZONE",
        "DISK_NAME");

    createDiskFromDisk(project, zone, diskName, diskType, diskSizeGb, diskLink);
  }

  // Creates a disk in a project in a given zone.
  public static void createDiskFromDisk(String project, String zone, String diskName,
      String diskType, int diskSizeGb, String diskLink)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // Initialize client that will be used to send requests. This client only needs to be created
    // once, and can be reused for multiple requests. After completing all of your requests, call
    // the `disksClient.close()` method on the client to safely
    // clean up any remaining background resources.
    try (DisksClient disksClient = DisksClient.create()) {

      // Create the disk.
      Disk disk = Disk.newBuilder()
          .setZone(zone)
          .setSizeGb(diskSizeGb)
          .setSourceDisk(diskLink)
          .setType(diskType)
          .setName(diskName)
          .build();

      // Wait for the insert instance operation to complete.
      Operation operation = disksClient.insertAsync(project, zone, disk)
          .get(3, TimeUnit.MINUTES);

      if (operation.hasError()) {
        System.out.println("Disk creation failed!");
        throw new Error(operation.getError().toString());
      }
      System.out.println(
          "Disk created from source. Operation Status: " + operation.getStatus());
    }
  }
}

Python

Python

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Python 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Python API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

from __future__ import annotations

import sys
from typing import Any

from google.api_core.extended_operation import ExtendedOperation
from google.cloud import compute_v1


def wait_for_extended_operation(
    operation: ExtendedOperation, verbose_name: str = "operation", timeout: int = 300
) -> Any:
    """
    Waits for the extended (long-running) operation to complete.

    If the operation is successful, it will return its result.
    If the operation ends with an error, an exception will be raised.
    If there were any warnings during the execution of the operation
    they will be printed to sys.stderr.

    Args:
        operation: a long-running operation you want to wait on.
        verbose_name: (optional) a more verbose name of the operation,
            used only during error and warning reporting.
        timeout: how long (in seconds) to wait for operation to finish.
            If None, wait indefinitely.

    Returns:
        Whatever the operation.result() returns.

    Raises:
        This method will raise the exception received from `operation.exception()`
        or RuntimeError if there is no exception set, but there is an `error_code`
        set for the `operation`.

        In case of an operation taking longer than `timeout` seconds to complete,
        a `concurrent.futures.TimeoutError` will be raised.
    """
    result = operation.result(timeout=timeout)

    if operation.error_code:
        print(
            f"Error during {verbose_name}: [Code: {operation.error_code}]: {operation.error_message}",
            file=sys.stderr,
            flush=True,
        )
        print(f"Operation ID: {operation.name}", file=sys.stderr, flush=True)
        raise operation.exception() or RuntimeError(operation.error_message)

    if operation.warnings:
        print(f"Warnings during {verbose_name}:\n", file=sys.stderr, flush=True)
        for warning in operation.warnings:
            print(f" - {warning.code}: {warning.message}", file=sys.stderr, flush=True)

    return result


def create_disk_from_disk(
    project_id: str,
    zone: str,
    disk_name: str,
    disk_type: str,
    disk_size_gb: int,
    disk_link: str,
) -> compute_v1.Disk:
    """
    Creates a disk in a project in a given zone.

    Args:
        project_id: project ID or project number of the Cloud project you want to use.
        zone: name of the zone in which you want to create the disk.
        disk_name: name of the disk you want to create.
        disk_type: the type of disk you want to create. This value uses the following format:
            "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
            For example: "zones/us-west3-b/diskTypes/pd-ssd"
        disk_size_gb: size of the new disk in gigabytes
        disk_link: a link to the disk you want to use as a source for the new disk.
            This value uses the following format: "projects/{project_name}/zones/{zone}/disks/{disk_name}"

    Returns:
        An attachable disk.
    """
    disk_client = compute_v1.DisksClient()
    disk = compute_v1.Disk()
    disk.zone = zone
    disk.size_gb = disk_size_gb
    disk.source_disk = disk_link
    disk.type_ = disk_type
    disk.name = disk_name
    operation = disk_client.insert(project=project_id, zone=zone, disk_resource=disk)

    wait_for_extended_operation(operation, "disk creation")

    return disk_client.get(project=project_id, zone=zone, disk=disk_name)

REST

如需克隆可用区级来源磁盘并创建新的可用区级磁盘,请向 compute.disks.insert 方法发出 POST 请求。在请求正文中,指定 namesourceDisk 参数。 磁盘克隆会从来源磁盘继承所有省略的属性。

POST https://compute.googleapis.com/compute/v1/projects/PROJECT_ID/zones/ZONE/disks

{
  "name": "TARGET_DISK_NAME"
  "sourceDisk": "projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME"
}

替换以下内容:

  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • TARGET_DISK_NAME:新磁盘的名称。
  • SOURCE_DISK_NAME:来源磁盘的名称

通过可用区磁盘创建区域磁盘克隆

您可以通过克隆现有的可用区级 Persistent Disk 卷来创建新的区域级 Persistent Disk 磁盘。如需将可用区级磁盘迁移到区域级磁盘,Google 建议使用此选项,而不是创建可用区级磁盘的快照并将快照恢复到新的区域级磁盘。

控制台

  1. 在 Google Cloud 控制台中,转到磁盘页面。

    转到“磁盘”

  2. 在磁盘列表中,找到要克隆的可用区级 Persistent Disk 卷。

  3. 操作列中,点击 菜单按钮,然后选择克隆磁盘

    创建克隆。

    在显示的克隆磁盘面板中,执行以下操作:

    1. 名称字段中,指定克隆的磁盘的名称。
    2. 位置字段中,选择区域级,然后为新的区域级克隆磁盘选择次要副本可用区。
    3. 属性下,查看克隆的磁盘的其他详细信息。
    4. 如需完成克隆的磁盘的创建,请点击创建

gcloud

如需通过可用区磁级盘创建区域级磁盘克隆,请运行 gcloud compute disks create 命令并指定 --region--replica-zones 参数。

gcloud compute disks create TARGET_DISK_NAME \
  --description="zonal to regional cloned disk" \
  --region=CLONED_REGION \
  --source-disk=SOURCE_DISK_NAME \
  --source-disk-zone=SOURCE_DISK_ZONE \
  --replica-zones=SOURCE_DISK_ZONE,REPLICA_ZONE_2 \
  --project=PROJECT_ID

替换以下内容:

  • TARGET_DISK_NAME:新的区域级磁盘克隆的名称。
  • CLONED_REGION:来源磁盘和克隆磁盘的区域。
  • SOURCE_DISK_NAME:要克隆的可用区级磁盘的名称
  • SOURCE_DISK_ZONE:来源磁盘的可用区。这也是区域级磁盘克隆的第一个副本可用区。
  • REPLICA_ZONE_2:新的区域级磁盘克隆的第二个副本可用区。
  • PROJECT_ID:要在其中克隆磁盘的项目的 ID

Terraform

如需从可用区磁盘创建区域磁盘克隆,您可以选择创建可用区磁盘的快照,然后克隆快照。为此,请使用以下资源:

resource "google_compute_region_disk" "regiondisk" {
  name                      = "region-disk-name"
  snapshot                  = google_compute_snapshot.snapdisk.id
  type                      = "pd-ssd"
  region                    = "us-central1"
  physical_block_size_bytes = 4096
  size                      = 11

  replica_zones = ["us-central1-a", "us-central1-f"]
}

如需了解如何应用或移除 Terraform 配置,请参阅基本 Terraform 命令

Go

Go

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Go 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Go API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

import (
	"context"
	"fmt"
	"io"

	compute "cloud.google.com/go/compute/apiv1"
	computepb "cloud.google.com/go/compute/apiv1/computepb"
	"google.golang.org/protobuf/proto"
)

// createRegionalDiskFromDisk creates a new regional disk with the contents of
// an already existitng zonal disk. Disk type and size may differ.
func createRegionalDiskFromDisk(
	w io.Writer,
	projectID, region string, replicaZones []string,
	diskName, diskType, sourceDiskLink string,
	diskSizeGb int64,
) error {
	// projectID := "your_project_id"
	// region := "us-west3" // should match diskType below
	// diskName := "your_disk_name"
	// diskType := "regions/us-west3/diskTypes/pd-ssd"
	// sourceDiskLink := "projects/your_project_id/global/disks/disk_name"
	// diskSizeGb := 120

	// Exactly two replica zones must be specified
	replicaZoneURLs := []string{
		fmt.Sprintf("projects/%s/zones/%s", projectID, replicaZones[0]),
		fmt.Sprintf("projects/%s/zones/%s", projectID, replicaZones[1]),
	}

	ctx := context.Background()
	disksClient, err := compute.NewRegionDisksRESTClient(ctx)
	if err != nil {
		return fmt.Errorf("NewRegionDisksRESTClient: %w", err)
	}
	defer disksClient.Close()

	req := &computepb.InsertRegionDiskRequest{
		Project: projectID,
		Region:  region,
		DiskResource: &computepb.Disk{
			Name:         proto.String(diskName),
			Region:       proto.String(region),
			Type:         proto.String(diskType),
			SourceDisk:   proto.String(sourceDiskLink),
			SizeGb:       proto.Int64(diskSizeGb),
			ReplicaZones: replicaZoneURLs,
		},
	}

	op, err := disksClient.Insert(ctx, req)
	if err != nil {
		return fmt.Errorf("unable to create disk: %w", err)
	}

	if err = op.Wait(ctx); err != nil {
		return fmt.Errorf("unable to wait for the operation: %w", err)
	}

	fmt.Fprintf(w, "Disk created\n")

	return nil
}

Java

Java

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Java 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Java API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证


import com.google.cloud.compute.v1.Disk;
import com.google.cloud.compute.v1.Operation;
import com.google.cloud.compute.v1.RegionDisksClient;
import java.io.IOException;
import java.util.ArrayList;
import java.util.List;
import java.util.Optional;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;

public class RegionalCreateFromSource {

  public static void main(String[] args)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // TODO(developer): Replace these variables before running the sample.
    // Project ID or project number of the Cloud project you want to use.
    String project = "YOUR_PROJECT_ID";

    // Name of the zone in which you want to create the disk.
    String region = "europe-central2";

    // An iterable collection of zone names in which you want to keep
    // the new disks' replicas. One of the replica zones of the clone must match
    // the zone of the source disk.
    List<String> replicaZones = new ArrayList<>();

    // Name of the disk you want to create.
    String diskName = "YOUR_DISK_NAME";

    // The type of disk you want to create. This value uses the following format:
    // "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
    // For example: "zones/us-west3-b/diskTypes/pd-ssd"
    String diskType = String.format("zones/%s/diskTypes/pd-ssd", "ZONE_NAME");

    // Size of the new disk in gigabytes.
    int diskSizeGb = 10;

    // A link to the disk you want to use as a source for the new disk.
    // This value uses the following format:
    // "projects/{project_name}/zones/{zone}/disks/{disk_name}"
    String diskLink = String.format("projects/%s/zones/%s/disks/%s", "PROJECT_NAME", "ZONE",
        "DISK_NAME");

    // A link to the snapshot you want to use as a source for the new disk.
    // This value uses the following format:
    // "projects/{project_name}/global/snapshots/{snapshot_name}"
    String snapshotLink = String.format("projects/%s/global/snapshots/%s", "PROJECT_NAME",
        "SNAPSHOT_NAME");

    createRegionalDisk(project, region, replicaZones, diskName, diskType, diskSizeGb,
        Optional.ofNullable(diskLink), Optional.ofNullable(snapshotLink));
  }

  // Creates a regional disk from an existing zonal disk in a given project.
  public static void createRegionalDisk(
      String project, String region, List<String> replicaZones, String diskName, String diskType,
      int diskSizeGb, Optional<String> diskLink, Optional<String> snapshotLink)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // Initialize client that will be used to send requests. This client only needs to be created
    // once, and can be reused for multiple requests. After completing all of your requests, call
    // the `regionDisksClient.close()` method on the client to safely
    // clean up any remaining background resources.
    try (RegionDisksClient regionDisksClient = RegionDisksClient.create()) {

      Disk.Builder diskBuilder = Disk.newBuilder()
          .addAllReplicaZones(replicaZones)
          .setName(diskName)
          .setType(diskType)
          .setSizeGb(diskSizeGb)
          .setRegion(region);

      // Set source disk if diskLink is not empty.
      diskLink.ifPresent(diskBuilder::setSourceDisk);

      // Set source snapshot if the snapshot link is not empty.
      snapshotLink.ifPresent(diskBuilder::setSourceSnapshot);

      // Wait for the operation to complete.
      Operation operation = regionDisksClient.insertAsync(project, region, diskBuilder.build())
          .get(3, TimeUnit.MINUTES);

      if (operation.hasError()) {
        System.out.println("Disk creation failed!");
        throw new Error(operation.getError().toString());
      }
      System.out.println(
          "Regional disk created. Operation Status: " + operation.getStatus());
    }
  }
}

Python

Python

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Python 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Python API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

from __future__ import annotations

from collections.abc import Iterable
import sys
from typing import Any

from google.api_core.extended_operation import ExtendedOperation
from google.cloud import compute_v1


def wait_for_extended_operation(
    operation: ExtendedOperation, verbose_name: str = "operation", timeout: int = 300
) -> Any:
    """
    Waits for the extended (long-running) operation to complete.

    If the operation is successful, it will return its result.
    If the operation ends with an error, an exception will be raised.
    If there were any warnings during the execution of the operation
    they will be printed to sys.stderr.

    Args:
        operation: a long-running operation you want to wait on.
        verbose_name: (optional) a more verbose name of the operation,
            used only during error and warning reporting.
        timeout: how long (in seconds) to wait for operation to finish.
            If None, wait indefinitely.

    Returns:
        Whatever the operation.result() returns.

    Raises:
        This method will raise the exception received from `operation.exception()`
        or RuntimeError if there is no exception set, but there is an `error_code`
        set for the `operation`.

        In case of an operation taking longer than `timeout` seconds to complete,
        a `concurrent.futures.TimeoutError` will be raised.
    """
    result = operation.result(timeout=timeout)

    if operation.error_code:
        print(
            f"Error during {verbose_name}: [Code: {operation.error_code}]: {operation.error_message}",
            file=sys.stderr,
            flush=True,
        )
        print(f"Operation ID: {operation.name}", file=sys.stderr, flush=True)
        raise operation.exception() or RuntimeError(operation.error_message)

    if operation.warnings:
        print(f"Warnings during {verbose_name}:\n", file=sys.stderr, flush=True)
        for warning in operation.warnings:
            print(f" - {warning.code}: {warning.message}", file=sys.stderr, flush=True)

    return result


def create_regional_disk(
    project_id: str,
    region: str,
    replica_zones: Iterable[str],
    disk_name: str,
    disk_type: str,
    disk_size_gb: int,
    disk_link: str | None = None,
    snapshot_link: str | None = None,
) -> compute_v1.Disk:
    """
    Creates a regional disk from an existing zonal disk in a given project.

    Args:
        project_id: project ID or project number of the Cloud project you want to use.
        region: name of the region in which you want to create the disk.
        replica_zones: an iterable collection of zone names in which you want to keep
            the new disks' replicas. One of the replica zones of the clone must match
            the zone of the source disk.
        disk_name: name of the disk you want to create.
        disk_type: the type of disk you want to create. This value uses the following format:
            "regions/{region}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
            For example: "regions/us-west3/diskTypes/pd-ssd"
        disk_size_gb: size of the new disk in gigabytes
        disk_link: a link to the disk you want to use as a source for the new disk.
            This value uses the following format: "projects/{project_name}/zones/{zone}/disks/{disk_name}"
        snapshot_link: a link to the snapshot you want to use as a source for the new disk.
            This value uses the following format: "projects/{project_name}/global/snapshots/{snapshot_name}"

    Returns:
        An attachable regional disk.
    """
    disk_client = compute_v1.RegionDisksClient()
    disk = compute_v1.Disk()
    disk.replica_zones = replica_zones
    disk.size_gb = disk_size_gb
    if disk_link:
        disk.source_disk = disk_link
    if snapshot_link:
        disk.source_snapshot = snapshot_link
    disk.type_ = disk_type
    disk.region = region
    disk.name = disk_name
    operation = disk_client.insert(
        project=project_id, region=region, disk_resource=disk
    )

    wait_for_extended_operation(operation, "disk creation")

    return disk_client.get(project=project_id, region=region, disk=disk_name)

REST

如需通过可用区级磁盘创建区域级磁盘克隆,请向 compute.disks.insert 方法发出 POST 请求并指定 sourceDiskreplicaZone 参数。

POST https://compute.googleapis.com/compute/v1/projects/PROJECT_ID/regions/CLONED_REGION/disks

{
  "name": "TARGET_DISK_NAME"
  "sourceDisk": "projects/PROJECT_ID/zones/SOURCE_DISK_ZONE/disks/SOURCE_DISK_NAME"
  "replicaZone": "SOURCE_DISK_ZONE,REPLICA_ZONE_2"
}

替换以下内容:

  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • TARGET_DISK_NAME:新的区域级磁盘克隆的名称。
  • CLONED_REGION:来源磁盘和克隆磁盘的区域。
  • SOURCE_DISK_NAME:要克隆的可用区级磁盘的名称
  • SOURCE_DISK_ZONE:来源磁盘的可用区。这也是区域级磁盘克隆的第一个副本可用区。
  • REPLICA_ZONE_2:新的区域级磁盘克隆的第二个副本可用区。

创建加密来源磁盘的磁盘克隆

您可以使用客户提供的加密密钥 (CSEK)客户管理的加密密钥来加密磁盘。

为 CSEK 加密的磁盘创建磁盘克隆

如果您使用 CSEK 来加密来源磁盘,则还必须使用同一密钥对克隆进行加密。

控制台

  1. 在 Google Cloud 控制台中,转到磁盘页面。

    转到“磁盘”

  2. 在可用区级永久性磁盘列表中,找到要克隆的磁盘。

  3. 操作列中,点击 菜单按钮,然后选择克隆磁盘

    创建克隆。

    在显示的克隆磁盘面板中,执行以下操作:

    1. 名称字段中,指定克隆的磁盘的名称。
    2. 解密和加密字段中,提供来源磁盘加密密钥。
    3. 属性下,查看克隆的磁盘的其他详细信息。
    4. 如需完成克隆的磁盘的创建,请点击创建

gcloud

如需为 CSEK 加密的来源磁盘创建磁盘克隆,请运行 gcloud compute disks create 命令,并使用 --csek-key-file 标志提供来源磁盘加密密钥。如果您使用的是 RSA 封装密钥,请使用 gcloud beta compute disks create 命令

gcloud compute disks create TARGET_DISK_NAME \
  --description="cloned disk" \
  --source-disk=projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME \
  --csek-key-file example-key-file.json

替换以下内容:

  • TARGET_DISK_NAME:新磁盘的名称。
  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • SOURCE_DISK_NAME:来源磁盘的名称

Go

Go

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Go 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Go API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

import (
	"context"
	"fmt"
	"io"

	compute "cloud.google.com/go/compute/apiv1"
	computepb "cloud.google.com/go/compute/apiv1/computepb"
	"google.golang.org/protobuf/proto"
)

// Creates a zonal non-boot persistent disk in a project with the copy of data from an existing disk.
// The encryption key must be the same for the source disk and the new disk.
// The disk type and size may differ.
func createDiskFromCustomerEncryptedDisk(
	w io.Writer,
	projectID, zone, diskName, diskType string,
	diskSizeGb int64,
	diskLink, encryptionKey string,
) error {
	// projectID := "your_project_id"
	// zone := "us-west3-b" // should match diskType below
	// diskName := "your_disk_name"
	// diskType := "zones/us-west3/diskTypes/pd-ssd"
	// diskSizeGb := 120
	// diskLink := "projects/your_project_id/global/disks/disk_name"
	// encryptionKey := "SGVsbG8gZnJvbSBHb29nbGUgQ2xvdWQgUGxhdGZvcm0=" // in base64

	ctx := context.Background()
	disksClient, err := compute.NewDisksRESTClient(ctx)
	if err != nil {
		return fmt.Errorf("NewDisksRESTClient: %w", err)
	}
	defer disksClient.Close()

	req := &computepb.InsertDiskRequest{
		Project: projectID,
		Zone:    zone,
		DiskResource: &computepb.Disk{
			Name:       proto.String(diskName),
			Zone:       proto.String(zone),
			Type:       proto.String(diskType),
			SizeGb:     proto.Int64(diskSizeGb),
			SourceDisk: proto.String(diskLink),
			DiskEncryptionKey: &computepb.CustomerEncryptionKey{
				RawKey: &encryptionKey,
			},
		},
	}

	op, err := disksClient.Insert(ctx, req)
	if err != nil {
		return fmt.Errorf("unable to create disk: %w", err)
	}

	if err = op.Wait(ctx); err != nil {
		return fmt.Errorf("unable to wait for the operation: %w", err)
	}

	fmt.Fprintf(w, "Disk created\n")

	return nil
}

Java

Java

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Java 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Java API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证


import com.google.cloud.compute.v1.CustomerEncryptionKey;
import com.google.cloud.compute.v1.Disk;
import com.google.cloud.compute.v1.DisksClient;
import com.google.cloud.compute.v1.InsertDiskRequest;
import com.google.cloud.compute.v1.Operation;
import com.google.protobuf.ByteString;
import java.io.IOException;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;

public class CloneEncryptedDisk {

  public static void main(String[] args)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // TODO(developer): Replace these variables before running the sample.
    // Project ID or project number of the Cloud project you want to use.
    String project = "YOUR_PROJECT_ID";

    // Name of the zone in which you want to create the disk.
    String zone = "europe-central2-b";

    // Name of the disk you want to create.
    String diskName = "YOUR_DISK_NAME";

    // The type of disk you want to create. This value uses the following format:
    // "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
    // For example: "zones/us-west3-b/diskTypes/pd-ssd"
    String diskType = String.format("zones/%s/diskTypes/pd-ssd", zone);

    // Size of the new disk in gigabytes.
    int diskSizeGb = 10;

    // A link to the disk you want to use as a source for the new disk.
    // This value uses the following format:
    // "projects/{project_name}/zones/{zone}/disks/{disk_name}"
    String diskLink = String.format("projects/%s/zones/%s/disks/%s", "PROJECT_NAME", "ZONE",
        "DISK_NAME");

    // Customer-supplied encryption key used for encrypting data in the source disk.
    // The data will be encrypted with the same key in the new disk.
    byte[] encryptionKey = null;

    createDiskFromCustomerEncryptedKey(project, zone, diskName, diskType, diskSizeGb, diskLink,
        encryptionKey);
  }

  // Creates a zonal non-boot persistent disk in a project with the copy of data
  // from an existing disk.
  // The encryption key must be the same for the source disk and the new disk.
  public static void createDiskFromCustomerEncryptedKey(String project, String zone,
      String diskName, String diskType, int diskSizeGb, String diskLink, byte[] encryptionKey)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // Initialize client that will be used to send requests. This client only needs to be created
    // once, and can be reused for multiple requests. After completing all of your requests, call
    // the `disksClient.close()` method on the client to safely
    // clean up any remaining background resources.
    try (DisksClient disksClient = DisksClient.create()) {

      // Create a disk and set the encryption key.
      Disk disk = Disk.newBuilder()
          .setZone(zone)
          .setName(diskName)
          .setType(diskType)
          .setSizeGb(diskSizeGb)
          .setSourceDisk(diskLink)
          .setDiskEncryptionKey(CustomerEncryptionKey
              .newBuilder()
              .setRawKeyBytes(ByteString.copyFrom(encryptionKey))
              .build())
          .build();

      // Wait for the insert disk operation to complete.
      Operation operation = disksClient.insertAsync(
          InsertDiskRequest.newBuilder()
              .setProject(project)
              .setZone(zone)
              .setDiskResource(disk)
              .build()).get(3, TimeUnit.MINUTES);

      if (operation.hasError()) {
        System.out.println("Disk creation failed!");
        throw new Error(operation.getError().toString());
      }
      System.out.println(
          "Disk cloned with customer encryption key. Operation Status: " + operation.getStatus());
    }
  }
}

Python

Python

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Python 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Python API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

from __future__ import annotations

import sys
from typing import Any

from google.api_core.extended_operation import ExtendedOperation
from google.cloud import compute_v1


def wait_for_extended_operation(
    operation: ExtendedOperation, verbose_name: str = "operation", timeout: int = 300
) -> Any:
    """
    Waits for the extended (long-running) operation to complete.

    If the operation is successful, it will return its result.
    If the operation ends with an error, an exception will be raised.
    If there were any warnings during the execution of the operation
    they will be printed to sys.stderr.

    Args:
        operation: a long-running operation you want to wait on.
        verbose_name: (optional) a more verbose name of the operation,
            used only during error and warning reporting.
        timeout: how long (in seconds) to wait for operation to finish.
            If None, wait indefinitely.

    Returns:
        Whatever the operation.result() returns.

    Raises:
        This method will raise the exception received from `operation.exception()`
        or RuntimeError if there is no exception set, but there is an `error_code`
        set for the `operation`.

        In case of an operation taking longer than `timeout` seconds to complete,
        a `concurrent.futures.TimeoutError` will be raised.
    """
    result = operation.result(timeout=timeout)

    if operation.error_code:
        print(
            f"Error during {verbose_name}: [Code: {operation.error_code}]: {operation.error_message}",
            file=sys.stderr,
            flush=True,
        )
        print(f"Operation ID: {operation.name}", file=sys.stderr, flush=True)
        raise operation.exception() or RuntimeError(operation.error_message)

    if operation.warnings:
        print(f"Warnings during {verbose_name}:\n", file=sys.stderr, flush=True)
        for warning in operation.warnings:
            print(f" - {warning.code}: {warning.message}", file=sys.stderr, flush=True)

    return result


def create_disk_from_customer_encrypted_disk(
    project_id: str,
    zone: str,
    disk_name: str,
    disk_type: str,
    disk_size_gb: int,
    disk_link: str,
    encryption_key: bytes,
) -> compute_v1.Disk:
    """
    Creates a zonal non-boot persistent disk in a project with the copy of data from an existing disk.

    The encryption key must be the same for the source disk and the new disk.

    Args:
        project_id: project ID or project number of the Cloud project you want to use.
        zone: name of the zone in which you want to create the disk.
        disk_name: name of the disk you want to create.
        disk_type: the type of disk you want to create. This value uses the following format:
            "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
            For example: "zones/us-west3-b/diskTypes/pd-ssd"
        disk_size_gb: size of the new disk in gigabytes
        disk_link: a link to the disk you want to use as a source for the new disk.
            This value uses the following format: "projects/{project_name}/zones/{zone}/disks/{disk_name}"
        encryption_key: customer-supplied encryption key used for encrypting
            data in the source disk. The data will be encrypted with the same key
            in the new disk.

    Returns:
        An attachable copy of an existing disk.
    """
    disk_client = compute_v1.DisksClient()
    disk = compute_v1.Disk()
    disk.zone = zone
    disk.size_gb = disk_size_gb
    disk.source_disk = disk_link
    disk.type_ = disk_type
    disk.name = disk_name
    disk.disk_encryption_key = compute_v1.CustomerEncryptionKey()
    disk.disk_encryption_key.raw_key = encryption_key
    operation = disk_client.insert(project=project_id, zone=zone, disk_resource=disk)

    wait_for_extended_operation(operation, "disk creation")

    return disk_client.get(project=project_id, zone=zone, disk=disk_name)

REST

如需为 CSEK 加密的来源磁盘创建磁盘克隆,请向 compute.disks.insert 方法发出 POST 请求,并使用 diskEncryptionKey 属性提供来源磁盘加密密钥。如果您使用的是 RSA 封装密钥,请使用该方法的 beta 版本

POST https://compute.googleapis.com/compute/v1/projects/PROJECT_ID/zones/ZONE/disks

{
  "name": "TARGET_DISK_NAME"
  "sourceDisk": "projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME"
  "diskEncryptionKey": {
    "rsaEncryptedKey": "ieCx/NcW06PcT7Ep1X6LUTc/hLvUDYyzSZPPVCVPTVEohpeHASqC8uw5TzyO9U+Fka9JFHz0mBibXUInrC/jEk014kCK/NPjYgEMOyssZ4ZINPKxlUh2zn1bV+MCaTICrdmuSBTWlUUiFoDD6PYznLwh8ZNdaheCeZ8ewEXgFQ8V+sDroLaN3Xs3MDTXQEMMoNUXMCZEIpg9Vtp9x2oeQ5lAbtt7bYAAHf5l+gJWw3sUfs0/Glw5fpdjT8Uggrr+RMZezGrltJEF293rvTIjWOEB3z5OHyHwQkvdrPDFcTqsLfh+8Hr8g+mf+7zVPEC8nEbqpdl3GPv3A7AwpFp7MA=="
  },
}

替换以下内容:

  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • TARGET_DISK_NAME:新磁盘的名称。
  • SOURCE_DISK_NAME:来源磁盘的名称

为 CMEK 加密的磁盘创建磁盘克隆

如果您使用 CMEK 加密来源磁盘,则还必须使用同一密钥对克隆进行加密。

控制台

Compute Engine 会使用来源磁盘加密密钥自动对克隆进行加密。

gcloud

如需为 CMEK 加密的来源磁盘创建磁盘克隆,请运行 gcloud compute disks create 命令,并使用 --kms-key 标志提供来源磁盘加密密钥。如果您使用的是 RSA 封装密钥,请使用 gcloud beta compute disks create 命令

gcloud compute disks create TARGET_DISK_NAME \
  --description="cloned disk" \
  --source-disk=projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME \
  --kms-key projects/KMS_PROJECT_ID/locations/REGION/keyRings/KEY_RING/cryptoKeys/KEY

替换以下内容:

  • TARGET_DISK_NAME:新磁盘的名称。
  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • SOURCE_DISK_NAME:来源磁盘的名称。
  • KMS_PROJECT_ID:加密密钥的项目 ID
  • REGION:加密密钥的区域。
  • KEY_RING:加密密钥的密钥环
  • KEY:加密密钥的名称。

Go

Go

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Go 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Go API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

import (
	"context"
	"fmt"
	"io"

	compute "cloud.google.com/go/compute/apiv1"
	computepb "cloud.google.com/go/compute/apiv1/computepb"
	"google.golang.org/protobuf/proto"
)

// Creates a zonal non-boot persistent disk in a project with the copy of data from an existing disk.
// The encryption key must be the same for the source disk and the new disk.
// The disk type and size may differ.
func createDiskFromKmsEncryptedDisk(
	w io.Writer,
	projectID, zone, diskName, diskType string,
	diskSizeGb int64,
	diskLink, kmsKeyLink string,
) error {
	// projectID := "your_project_id"
	// zone := "us-west3-b" // should match diskType below
	// diskName := "your_disk_name"
	// diskType := "zones/us-west3/diskTypes/pd-ssd"
	// diskSizeGb := 120
	// diskLink := "projects/your_project_id/global/disks/disk_name"
	// kmsKeyLink := "projects/your_kms_project_id/locations/us-central1/keyRings/your_key_ring/cryptoKeys/your_key"

	ctx := context.Background()
	disksClient, err := compute.NewDisksRESTClient(ctx)
	if err != nil {
		return fmt.Errorf("NewDisksRESTClient: %w", err)
	}
	defer disksClient.Close()

	req := &computepb.InsertDiskRequest{
		Project: projectID,
		Zone:    zone,
		DiskResource: &computepb.Disk{
			Name:       proto.String(diskName),
			Zone:       proto.String(zone),
			Type:       proto.String(diskType),
			SizeGb:     proto.Int64(diskSizeGb),
			SourceDisk: proto.String(diskLink),
			DiskEncryptionKey: &computepb.CustomerEncryptionKey{
				KmsKeyName: &kmsKeyLink,
			},
		},
	}

	op, err := disksClient.Insert(ctx, req)
	if err != nil {
		return fmt.Errorf("unable to create disk: %w", err)
	}

	if err = op.Wait(ctx); err != nil {
		return fmt.Errorf("unable to wait for the operation: %w", err)
	}

	fmt.Fprintf(w, "Disk created\n")

	return nil
}

Java

Java

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Java 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Java API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证


import com.google.cloud.compute.v1.CustomerEncryptionKey;
import com.google.cloud.compute.v1.Disk;
import com.google.cloud.compute.v1.DisksClient;
import com.google.cloud.compute.v1.InsertDiskRequest;
import com.google.cloud.compute.v1.Operation;
import java.io.IOException;
import java.util.concurrent.ExecutionException;
import java.util.concurrent.TimeUnit;
import java.util.concurrent.TimeoutException;

public class CloneEncryptedDiskManagedKey {

  public static void main(String[] args)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // TODO(developer): Replace these variables before running the sample.
    // Project ID or project number of the Cloud project you want to use.
    String project = "YOUR_PROJECT_ID";

    // Name of the zone in which you want to create the disk.
    String zone = "europe-central2-b";

    // Name of the disk you want to create.
    String diskName = "YOUR_DISK_NAME";

    // The type of disk you want to create. This value uses the following format:
    // "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
    // For example: "zones/us-west3-b/diskTypes/pd-ssd"
    String diskType = String.format("zones/%s/diskTypes/pd-ssd", zone);

    // Size of the new disk in gigabytes.
    int diskSizeGb = 10;

    // A link to the disk you want to use as a source for the new disk.
    // This value uses the following format:
    // "projects/{project_name}/zones/{zone}/disks/{disk_name}"
    String diskLink = String.format("projects/%s/zones/%s/disks/%s", "PROJECT_NAME", "ZONE",
        "DISK_NAME");

    // URL of the key from KMS. The key might be from another project, as
    // long as you have access to it. The data will be encrypted with the same key
    // in the new disk. This value uses following format:
    // "projects/{kms_project_id}/locations/{region}/keyRings/{key_ring}/cryptoKeys/{key}"
    String kmsKeyName = "kms-key-name";

    createDiskFromKmsEncryptedDisk(project, zone, diskName, diskType, diskSizeGb, diskLink,
        kmsKeyName);
  }

  // Creates a zonal non-boot disk in a project with the copy of data from an existing disk.
  // The encryption key must be the same for the source disk and the new disk.
  public static void createDiskFromKmsEncryptedDisk(String project, String zone, String diskName,
      String diskType, int diskSizeGb, String diskLink, String kmsKeyName)
      throws IOException, ExecutionException, InterruptedException, TimeoutException {
    // Initialize client that will be used to send requests. This client only needs to be created
    // once, and can be reused for multiple requests. After completing all of your requests, call
    // the `disksClient.close()` method on the client to safely
    // clean up any remaining background resources.
    try (DisksClient disksClient = DisksClient.create()) {

      // Create a disk and set the KMS encryption key name.
      Disk disk = Disk.newBuilder()
          .setZone(zone)
          .setName(diskName)
          .setType(diskType)
          .setSizeGb(diskSizeGb)
          .setSourceDisk(diskLink)
          .setDiskEncryptionKey(CustomerEncryptionKey.newBuilder()
              .setKmsKeyName(kmsKeyName)
              .build())
          .build();

      // Wait for the insert disk operation to complete.
      Operation operation = disksClient.insertAsync(
          InsertDiskRequest.newBuilder()
              .setProject(project)
              .setZone(zone)
              .setDiskResource(disk)
              .build()).get(3, TimeUnit.MINUTES);

      if (operation.hasError()) {
        System.out.println("Disk creation failed!");
        throw new Error(operation.getError().toString());
      }
      System.out.println(
          "Disk cloned with KMS encryption key. Operation Status: " + operation.getStatus());
    }
  }
}

Python

Python

试用此示例之前,请按照《Compute Engine 快速入门:使用客户端库》中的 Python 设置说明进行操作。 如需了解详情,请参阅 Compute Engine Python API 参考文档

如需向 Compute Engine 进行身份验证,请设置应用默认凭据。 如需了解详情,请参阅为本地开发环境设置身份验证

from __future__ import annotations

import sys
from typing import Any

from google.api_core.exceptions import BadRequest
from google.api_core.extended_operation import ExtendedOperation
from google.cloud import compute_v1


def wait_for_extended_operation(
    operation: ExtendedOperation, verbose_name: str = "operation", timeout: int = 300
) -> Any:
    """
    Waits for the extended (long-running) operation to complete.

    If the operation is successful, it will return its result.
    If the operation ends with an error, an exception will be raised.
    If there were any warnings during the execution of the operation
    they will be printed to sys.stderr.

    Args:
        operation: a long-running operation you want to wait on.
        verbose_name: (optional) a more verbose name of the operation,
            used only during error and warning reporting.
        timeout: how long (in seconds) to wait for operation to finish.
            If None, wait indefinitely.

    Returns:
        Whatever the operation.result() returns.

    Raises:
        This method will raise the exception received from `operation.exception()`
        or RuntimeError if there is no exception set, but there is an `error_code`
        set for the `operation`.

        In case of an operation taking longer than `timeout` seconds to complete,
        a `concurrent.futures.TimeoutError` will be raised.
    """
    result = operation.result(timeout=timeout)

    if operation.error_code:
        print(
            f"Error during {verbose_name}: [Code: {operation.error_code}]: {operation.error_message}",
            file=sys.stderr,
            flush=True,
        )
        print(f"Operation ID: {operation.name}", file=sys.stderr, flush=True)
        raise operation.exception() or RuntimeError(operation.error_message)

    if operation.warnings:
        print(f"Warnings during {verbose_name}:\n", file=sys.stderr, flush=True)
        for warning in operation.warnings:
            print(f" - {warning.code}: {warning.message}", file=sys.stderr, flush=True)

    return result


def create_disk_from_kms_encrypted_disk(
    project_id: str,
    zone: str,
    disk_name: str,
    disk_type: str,
    disk_size_gb: int,
    disk_link: str,
    kms_key_name: str,
) -> compute_v1.Disk:
    """
    Creates a zonal non-boot disk in a project with the copy of data from an existing disk.

    The encryption key must be the same for the source disk and the new disk.

    To run this method, the service-<project_id>@compute-system.iam.gserviceaccount.com
    service account needs to have the cloudkms.cryptoKeyEncrypterDecrypter role,
    as described in documentation:
    https://cloud.google.com/compute/docs/disks/customer-managed-encryption#before_you_begin

    Args:
        project_id: project ID or project number of the Cloud project you want to use.
        zone: name of the zone in which you want to create the disk.
        disk_name: name of the disk you want to create.
        disk_type: the type of disk you want to create. This value uses the following format:
            "zones/{zone}/diskTypes/(pd-standard|pd-ssd|pd-balanced|pd-extreme)".
            For example: "zones/us-west3-b/diskTypes/pd-ssd"
        disk_size_gb: size of the new disk in gigabytes
        disk_link: a link to the disk you want to use as a source for the new disk.
            This value uses the following format: "projects/{project_name}/zones/{zone}/disks/{disk_name}"
        kms_key_name: URL of the key from KMS. The key might be from another project, as
            long as you have access to it. The data will be encrypted with the same key
            in the new disk. This value uses following format:
            "projects/{kms_project_id}/locations/{region}/keyRings/{key_ring}/cryptoKeys/{key}"

    Returns:
        An attachable copy of an existing disk.
    """
    disk_client = compute_v1.DisksClient()
    disk = compute_v1.Disk()
    disk.zone = zone
    disk.size_gb = disk_size_gb
    disk.source_disk = disk_link
    disk.type_ = disk_type
    disk.name = disk_name
    disk.disk_encryption_key = compute_v1.CustomerEncryptionKey()
    disk.disk_encryption_key.kms_key_name = kms_key_name
    try:
        operation = disk_client.insert(
            project=project_id, zone=zone, disk_resource=disk
        )
    except BadRequest as err:
        if "Permission 'cloudkms.cryptoKeyVersions.useToEncrypt' denied" in err.message:
            print(
                f"Please provide the cloudkms.cryptoKeyEncrypterDecrypter role to"
                f"service-{project_id}@compute-system.iam.gserviceaccount.com"
            )
        raise err

    wait_for_extended_operation(operation, "disk creation")

    return disk_client.get(project=project_id, zone=zone, disk=disk_name)

REST

如需为 CMEK 加密的来源磁盘创建磁盘克隆,请向 compute.disks.insert 方法发出 POST 请求,并使用 kmsKeyName 属性提供来源磁盘加密密钥。如果您使用的是 RSA 封装密钥,请使用该方法的 beta 版本

POST https://compute.googleapis.com/compute/v1/projects/PROJECT_ID/zones/ZONE/disks

{
  "name": "TARGET_DISK_NAME"
  "sourceDisk": "projects/PROJECT_ID/zones/ZONE/disks/SOURCE_DISK_NAME"
  "diskEncryptionKey": {
    "kmsKeyName": "projects/KMS_PROJECT_ID/locations/REGION/keyRings/KEY_RING/cryptoKeys/KEY"
  },
}

替换以下内容:

  • PROJECT_ID:要在其中克隆磁盘的项目的 ID
  • ZONE:来源磁盘和新磁盘的可用区。
  • TARGET_DISK_NAME:新磁盘的名称。
  • SOURCE_DISK_NAME:来源磁盘的名称。
  • KMS_PROJECT_ID:加密密钥的项目 ID
  • REGION:加密密钥的区域。
  • KEY_RING:加密密钥的密钥环
  • KEY:加密密钥的名称。

后续步骤