从现有应用迁移用户

本文档介绍如何将用户从现有应用迁移到 Identity Platform。

准备工作

使用 Admin SDK

通过 Admin SDK,您可以导入用户,而无需将用户数据导出到 CSV 或 JSON。您可以将用户导入到 Identity Platform 支持的所有身份提供商,包括 OAuth、SAML 和 OIDC。

一次 API 调用最多可以导入 1000 名用户。导入操作针对速度进行了优化,不会检查是否存在重复字段。导入与现有 uid 冲突的用户将会替换这个现有用户。使用任何其他重复字段(例如 email)导入用户会导致其他用户具有相同的值。

即使发生与特定用户相关的错误,Admin SDK 也会尽量上传所提供的全部用户。此操作会返回一个结果,其中对导入成功和导入失败的情况进行了总结。每次用户导入失败都会返回错误详情。

导入密码经过 HMAC 哈希处理的用户

HMAC 哈希算法包括 HMAC_MD5HMAC_SHA1HMAC_SHA256HMAC_SHA512。您需要提供哈希签名者密钥。

Node.js

getAuth()
  .importUsers(
    [
      {
        uid: 'some-uid',
        email: 'user@example.com',
        // Must be provided in a byte buffer.
        passwordHash: Buffer.from('password-hash'),
        // Must be provided in a byte buffer.
        passwordSalt: Buffer.from('salt'),
      },
    ],
    {
      hash: {
        algorithm: 'HMAC_SHA256',
        // Must be provided in a byte buffer.
        key: Buffer.from('secret'),
      },
    }
  )
  .then((results) => {
    results.errors.forEach((indexedError) => {
      console.log(`Error importing user ${indexedError.index}`);
    });
  })
  .catch((error) => {
    console.log('Error importing users :', error);
  });

Java

try {
  List<ImportUserRecord> users = Collections.singletonList(ImportUserRecord.builder()
      .setUid("some-uid")
      .setEmail("user@example.com")
      .setPasswordHash("password-hash".getBytes())
      .setPasswordSalt("salt".getBytes())
      .build());
  UserImportOptions options = UserImportOptions.withHash(
      HmacSha256.builder()
          .setKey("secret".getBytes())
          .build());
  UserImportResult result = FirebaseAuth.getInstance().importUsers(users, options);
  for (ErrorInfo indexedError : result.getErrors()) {
    System.out.println("Failed to import user: " + indexedError.getReason());
  }
} catch (FirebaseAuthException e) {
  System.out.println("Error importing users: " + e.getMessage());
}

Python

users = [
    auth.ImportUserRecord(
        uid='some-uid',
        email='user@example.com',
        password_hash=b'password_hash',
        password_salt=b'salt'
    ),
]

hash_alg = auth.UserImportHash.hmac_sha256(key=b'secret')
try:
    result = auth.import_users(users, hash_alg=hash_alg)
    for err in result.errors:
        print('Failed to import user:', err.reason)
except exceptions.FirebaseError as error:
    print('Error importing users:', error)

Go

users := []*auth.UserToImport{
	(&auth.UserToImport{}).
		UID("some-uid").
		Email("user@example.com").
		PasswordHash([]byte("password-hash")).
		PasswordSalt([]byte("salt")),
}
h := hash.HMACSHA256{
	Key: []byte("secret"),
}
result, err := client.ImportUsers(ctx, users, auth.WithHash(h))
if err != nil {
	log.Fatalln("Error importing users", err)
}
for _, e := range result.Errors {
	log.Println("Failed to import user", e.Reason)
}

导入密码经过 MD5、SHA 和 PBKDF 哈希处理的用户

MD5、SHA 和 PBKDF 哈希算法包括 MD5SHA1SHA256SHA512PBKDF_SHA1PBKDF2_SHA256。您需要提供对密码进行哈希处理的轮数(MD5 的范围介于 0 到 8192 之间,SHA1SHA256SHA512 的范围介于 1 到 8192 之间,PBKDF_SHA1PBKDF2_SHA256 的范围介于 0 到 120000 之间)。

Node.js

getAuth()
  .importUsers(
    [
      {
        uid: 'some-uid',
        email: 'user@example.com',
        // Must be provided in a byte buffer.
        passwordHash: Buffer.from('password-hash'),
        // Must be provided in a byte buffer.
        passwordSalt: Buffer.from('salt'),
      },
    ],
    {
      hash: {
        algorithm: 'PBKDF2_SHA256',
        rounds: 100000,
      },
    }
  )
  .then((results) => {
    results.errors.forEach((indexedError) => {
      console.log(`Error importing user ${indexedError.index}`);
    });
  })
  .catch((error) => {
    console.log('Error importing users :', error);
  });

Java

try {
  List<ImportUserRecord> users = Collections.singletonList(ImportUserRecord.builder()
      .setUid("some-uid")
      .setEmail("user@example.com")
      .setPasswordHash("password-hash".getBytes())
      .setPasswordSalt("salt".getBytes())
      .build());
  UserImportOptions options = UserImportOptions.withHash(
      Pbkdf2Sha256.builder()
          .setRounds(100000)
          .build());
  UserImportResult result = FirebaseAuth.getInstance().importUsers(users, options);
  for (ErrorInfo indexedError : result.getErrors()) {
    System.out.println("Failed to import user: " + indexedError.getReason());
  }
} catch (FirebaseAuthException e) {
  System.out.println("Error importing users: " + e.getMessage());
}

Python

users = [
    auth.ImportUserRecord(
        uid='some-uid',
        email='user@example.com',
        password_hash=b'password_hash',
        password_salt=b'salt'
    ),
]

hash_alg = auth.UserImportHash.pbkdf2_sha256(rounds=100000)
try:
    result = auth.import_users(users, hash_alg=hash_alg)
    for err in result.errors:
        print('Failed to import user:', err.reason)
except exceptions.FirebaseError as error:
    print('Error importing users:', error)

Go

users := []*auth.UserToImport{
	(&auth.UserToImport{}).
		UID("some-uid").
		Email("user@example.com").
		PasswordHash([]byte("password-hash")).
		PasswordSalt([]byte("salt")),
}
h := hash.PBKDF2SHA256{
	Rounds: 100000,
}
result, err := client.ImportUsers(ctx, users, auth.WithHash(h))
if err != nil {
	log.Fatalln("Error importing users", err)
}
for _, e := range result.Errors {
	log.Println("Failed to import user", e.Reason)
}

导入密码经过标准 SCRYPT 哈希处理的用户

Admin SDK 支持 SCRYPT 算法的标准版本以及内部修订版本。以下是必填参数:

  • memoryCost:哈希算法的 CPU/内存消耗。
  • parallelization:哈希算法的并行化。
  • blockSize:哈希算法的块大小(通常为 8)。
  • derivedKeyLength:哈希算法的派生密钥长度。

Node.js

getAuth()
  .importUsers(
    [
      {
        uid: 'some-uid',
        email: 'user@example.com',
        // Must be provided in a byte buffer.
        passwordHash: Buffer.from('password-hash'),
        // Must be provided in a byte buffer.
        passwordSalt: Buffer.from('salt'),
      },
    ],
    {
      hash: {
        algorithm: 'STANDARD_SCRYPT',
        memoryCost: 1024,
        parallelization: 16,
        blockSize: 8,
        derivedKeyLength: 64,
      },
    }
  )
  .then((results) => {
    results.errors.forEach((indexedError) => {
      console.log(`Error importing user ${indexedError.index}`);
    });
  })
  .catch((error) => {
    console.log('Error importing users :', error);
  });

Java

try {
  List<ImportUserRecord> users = Collections.singletonList(ImportUserRecord.builder()
      .setUid("some-uid")
      .setEmail("user@example.com")
      .setPasswordHash("password-hash".getBytes())
      .setPasswordSalt("salt".getBytes())
      .build());
  UserImportOptions options = UserImportOptions.withHash(
      StandardScrypt.builder()
          .setMemoryCost(1024)
          .setParallelization(16)
          .setBlockSize(8)
          .setDerivedKeyLength(64)
          .build());
  UserImportResult result = FirebaseAuth.getInstance().importUsers(users, options);
  for (ErrorInfo indexedError : result.getErrors()) {
    System.out.println("Failed to import user: " + indexedError.getReason());
  }
} catch (FirebaseAuthException e) {
  System.out.println("Error importing users: " + e.getMessage());
}

Python

users = [
    auth.ImportUserRecord(
        uid='some-uid',
        email='user@example.com',
        password_hash=b'password_hash',
        password_salt=b'salt'
    ),
]

hash_alg = auth.UserImportHash.standard_scrypt(
    memory_cost=1024, parallelization=16, block_size=8, derived_key_length=64)
try:
    result = auth.import_users(users, hash_alg=hash_alg)
    for err in result.errors:
        print('Failed to import user:', err.reason)
except exceptions.FirebaseError as error:
    print('Error importing users:', error)

Go

users := []*auth.UserToImport{
	(&auth.UserToImport{}).
		UID("some-uid").
		Email("user@example.com").
		PasswordHash([]byte("password-hash")).
		PasswordSalt([]byte("salt")),
}
h := hash.StandardScrypt{
	MemoryCost:       1024,
	Parallelization:  16,
	BlockSize:        8,
	DerivedKeyLength: 64,
}
result, err := client.ImportUsers(ctx, users, auth.WithHash(h))
if err != nil {
	log.Fatalln("Error importing users", err)
}
for _, e := range result.Errors {
	log.Println("Failed to import user", e.Reason)
}

导入密码经过 Identity Platform SCRYPT 哈希处理的用户

Identity Platform 和 Firebase 使用 SCRYPT 算法的修订版。如果您需要将用户从 Firebase 迁移到 Identity Platform,或者从一个 Identity Platform 项目迁移到另一个 Identity Platform 项目,您将需要内部哈希参数。

要在 Identity Platform 中访问这些参数,请执行以下操作:

  1. 在 Google Cloud 控制台中打开用户 页面。
  2. 点击导入用户 。此时会显示密码哈希参数。

要在 Firebase 中访问这些参数,请执行以下操作:

  1. 在 Firebase 控制台中打开用户标签页。

  2. 从用户列表右上角的下拉列表中选择密码哈希参数。此时会显示密码哈希参数。

在代码中,您需要提供以下内容:

  • key:通常以 base64 编码形式提供的签名者密钥。
  • saltSeparator:(可选)通常以 base64 编码形式提供的盐分隔符。
  • rounds:对密码进行哈希处理的轮数。
  • memoryCost:此算法所需的内存消耗。

Node.js

getAuth()
  .importUsers(
    [
      {
        uid: 'some-uid',
        email: 'user@example.com',
        // Must be provided in a byte buffer.
        passwordHash: Buffer.from('base64-password-hash', 'base64'),
        // Must be provided in a byte buffer.
        passwordSalt: Buffer.from('base64-salt', 'base64'),
      },
    ],
    {
      hash: {
        algorithm: 'SCRYPT',
        // All the parameters below can be obtained from the Firebase Console's users section.
        // Must be provided in a byte buffer.
        key: Buffer.from('base64-secret', 'base64'),
        saltSeparator: Buffer.from('base64SaltSeparator', 'base64'),
        rounds: 8,
        memoryCost: 14,
      },
    }
  )
  .then((results) => {
    results.errors.forEach((indexedError) => {
      console.log(`Error importing user ${indexedError.index}`);
    });
  })
  .catch((error) => {
    console.log('Error importing users :', error);
  });

Java

try {
  List<ImportUserRecord> users = Collections.singletonList(ImportUserRecord.builder()
      .setUid("some-uid")
      .setEmail("user@example.com")
      .setPasswordHash(BaseEncoding.base64().decode("password-hash"))
      .setPasswordSalt(BaseEncoding.base64().decode("salt"))
      .build());
  UserImportOptions options = UserImportOptions.withHash(
      Scrypt.builder()
          // All the parameters below can be obtained from the Firebase Console's "Users"
          // section. Base64 encoded parameters must be decoded into raw bytes.
          .setKey(BaseEncoding.base64().decode("base64-secret"))
          .setSaltSeparator(BaseEncoding.base64().decode("base64-salt-separator"))
          .setRounds(8)
          .setMemoryCost(14)
          .build());
  UserImportResult result = FirebaseAuth.getInstance().importUsers(users, options);
  for (ErrorInfo indexedError : result.getErrors()) {
    System.out.println("Failed to import user: " + indexedError.getReason());
  }
} catch (FirebaseAuthException e) {
  System.out.println("Error importing users: " + e.getMessage());
}

Python

users = [
    auth.ImportUserRecord(
        uid='some-uid',
        email='user@example.com',
        password_hash=base64.urlsafe_b64decode('password_hash'),
        password_salt=base64.urlsafe_b64decode('salt')
    ),
]

# All the parameters below can be obtained from the Firebase Console's "Users"
# section. Base64 encoded parameters must be decoded into raw bytes.
hash_alg = auth.UserImportHash.scrypt(
    key=base64.b64decode('base64_secret'),
    salt_separator=base64.b64decode('base64_salt_separator'),
    rounds=8,
    memory_cost=14
)
try:
    result = auth.import_users(users, hash_alg=hash_alg)
    for err in result.errors:
        print('Failed to import user:', err.reason)
except exceptions.FirebaseError as error:
    print('Error importing users:', error)

Go

b64URLdecode := func(s string) []byte {
	b, err := base64.URLEncoding.DecodeString(s)
	if err != nil {
		log.Fatalln("Failed to decode string", err)
	}

	return b
}
b64Stddecode := func(s string) []byte {
	b, err := base64.StdEncoding.DecodeString(s)
	if err != nil {
		log.Fatalln("Failed to decode string", err)
	}
	return b
}
// Users retrieved from Firebase Auth's backend need to be base64URL decoded
users := []*auth.UserToImport{
	(&auth.UserToImport{}).
		UID("some-uid").
		Email("user@example.com").
		PasswordHash(b64URLdecode("password-hash")).
		PasswordSalt(b64URLdecode("salt")),
}

// All the parameters below can be obtained from the Firebase Console's "Users"
// section. Base64 encoded parameters must be decoded into raw bytes.
h := hash.Scrypt{
	Key:           b64Stddecode("base64-secret"),
	SaltSeparator: b64Stddecode("base64-salt-separator"),
	Rounds:        8,
	MemoryCost: