Django 中的自定义验证Link to this heading
Django自带的验证机制足以应对一般情况,但是你可能不满足于默认的可立即使用的配置。在你的项目中自定义验证机制,需要了解在已有验证系统中哪些地方是可以扩展的,哪些地方是可以代替的。这个文档提供了如何自定义验证系统的一些细节。
<authentication-backends>当用户模型中存储的用户名和密码需要不同于Django默认服务的验证时,提供了一个可扩展系统。
你可以给你的模型 定制权限 并且可以被Django的授权系统通过检查。
你可以 :ref:` 扩展 <extending-user> ` 默认的 User 模型,或者完全自定义一个模型进行 :ref:` 替换 <auth-custom-user>`
其它认证资源Link to this heading
有时候你需要连接到其他认证源——一个包含用户名及密码的源或者认证方法。
例如,你的公司可能已经存在一套存储所有员工用户名及密码的 LDAP 配置。如果用户在LDAP和基于Django的应用程序中都有独立账号,那对用户自己或者网络管理员都会造成麻烦。
所以,为了处理这样的情况,Django认证系统可以让你插入其他认证源。您可以重写Django的默认基于数据库的方案,或者可以与其他系统一起使用默认系统。
请参阅<authentication-backends-reference>身份验证后端引用,有关Django中包含的身份验证后端的信息。
指定授权后端Link to this heading
在幕后,Django维护一个“身份验证后端”列表,用于检查身份验证。当有人调用:func:django.contrib.auth.authenticate() - 如下所示:ref:如何在`用户登录<how-to-log-a-user-in> - Django尝试所有身份验证后端进行身份验证。如果第一个验证方法失败,Django会尝试第二个验证方法,依此类推,直到所有后端都被尝试。
在设置:`AUTHENTICATION_BACKENDS`设置中指定要使用的身份验证后端列表。这应该是一个Python路径名列表,指向知道如何进行身份验证的Python类。这些类可以在你的Python路径上的任何地方。
默认, :setting:`AUTHENTICATION_BACKENDS`设定为:
['django.contrib.auth.backends.ModelBackend']
Django 的默认后台只检查其数据库和内置权限,并不提供任何登录限制机制来防止暴力登录攻击。如果需要抵制暴力登录攻击,需要自己在后台实现登录限制机制,或者使用 Web 服务器提供的保护机制。
:setting:`AUTHENTICATION_BACKENDS`是有序的,如果相同的用户名和密码对于多个后端都是合法的,那么 Django 会优先使用其中的第一个后端,而不会再处理后面的后端。
如果一个后端抛出 PermissionDenied 异常,则验证流程立马终止,Django 不会继续检查其后的后端。
编写一个验证后端Link to this heading
一个验证后端其实就是一个 class,它实现了两个必要的方法:get_user(user_id) 和 authenticate(request, **credentials),以及其它一系列可选的权限相关的方法:ref:`authorization methods<authorization_methods> `.
get_user 方法只接受一个参数``user_id``,user_id 有可能是 用户名、数据库 ID 或者其它任何值(该值必须是用户对象的主键),该方法返回一个用户对象。
authenticate``方法接受 ``request 参数和 credentials 关键字参数,大多数情况下,该方法类似于下面的代码:
class MyBackend:
def authenticate(self, request, username=None, password=None):
# Check the username/password and return a user.
...
但它也可能验证一个Token,就像这样:
class MyBackend:
def authenticate(self, request, token=None):
# Check the token and return a user.
...
无论是哪一种方式,authenticate()``都应该检查所获得的凭证,并当凭证有效时返回一个用户对象。当凭证无效时,应该返回``None。
request 是 HttpRequest ,默认为 None 如果没有被提供给 authenticate() (它把request传给后端).
Django admin 和 Django User object. 紧密结合。最好的处理方式是为你后端的每一个用户都创建一个 Django User 。(例如, 你的 LDAP 目录、你的外部 SQL 数据库等等。) 你能写一个脚本来提前做这件事情,或者让你的 authenticate 方法在一个用户第一次登录时做这件事。
下面是一段验证后端的示例代码,它通过在 ``settings.py``文件中定义的用户名和密码变量进行身份验证,并且当用户第一次验证时,创建一个Django的``User``对象。
from django.conf import settings
from django.contrib.auth.hashers import check_password
from django.contrib.auth.models import User
class SettingsBackend:
"""
Authenticate against the settings ADMIN_LOGIN and ADMIN_PASSWORD.
Use the login name and a hash of the password. For example:
ADMIN_LOGIN = 'admin'
ADMIN_PASSWORD = 'pbkdf2_sha256$30000$Vo0VlMnkR4Bk$qEvtdyZRWTcOsCnI/oQ7fVOu1XAURIZYoOZ3iq8Dr4M='
"""
def authenticate(self, request, username=None, password=None):
login_valid = (settings.ADMIN_LOGIN == username)
pwd_valid = check_password(password, settings.ADMIN_PASSWORD)
if login_valid and pwd_valid:
try:
user = User.objects.get(username=username)
except User.DoesNotExist:
# Create a new user. There's no need to set a password
# because only the password from settings.py is checked.
user = User(username=username)
user.is_staff = True
user.is_superuser = True
user.save()
return user
return None
def get_user(self, user_id):
try:
return User.objects.get(pk=user_id)
except User.DoesNotExist:
return None
自定义权限Link to this heading
为给定的模型对象创建自定权限,使用 permission , 参考: model Meta attribute<meta-options>
这个 Task 模型创建了三个用户自定权限,即:用户能不能使用 Task 实例执行操作,取决于你的应用程序。
class Task(models.Model):
...
class Meta:
permissions = (
("view_task", "Can see available tasks"),
("change_task_status", "Can change the status of tasks"),
("close_task", "Can remove a task by setting its status as closed"),
)
当你运行:djadmin:manage.py migrate <migrate> 时,它只创建那些额外的权限。(创建权限的函数连接到:data:~django.db.models.signals.post_migrate 信号)。 你的代码负责在用户试图访问由应用程序提供的功能(查看任务(task),改变任务状态,关闭任务)时检查这些权限的值。继续上面的例子, 下面的语句检查是否一个用户能查看任务:
user.has_perm('app.view_task')
扩展现有的用户(User)模型Link to this heading
There are two ways to extend the default
User model without substituting your own
model. If the changes you need are purely behavioral, and don't require any
change to what is stored in the database, you can create a proxy model based on User. This
allows for any of the features offered by proxy models including default
ordering, custom managers, or custom model methods.
If you wish to store information related to User, you can use a
OneToOneField to a model containing the fields for
additional information. This one-to-one model is often called a profile model,
as it might store non-auth related information about a site user. For example
you might create an Employee model:
from django.contrib.auth.models import User
class Employee(models.Model):
user = models.OneToOneField(User, on_delete=models.CASCADE)
department = models.CharField(max_length=100)
假设一个既有用户又有雇员模型的现有雇员Fred Smith,您可以使用Django的标准相关模型约定访问相关信息:
>>> u = User.objects.get(username='fsmith')
>>> freds_department = u.employee.department
To add a profile model's fields to the user page in the admin, define an
InlineModelAdmin (for this example, we'll use a
StackedInline) in your app's admin.py and
add it to a UserAdmin class which is registered with the
User class:
from django.contrib import admin
from django.contrib.auth.admin import UserAdmin as BaseUserAdmin
from django.contrib.auth.models import User
from my_user_profile_app.models import Employee
# Define an inline admin descriptor for Employee model
# which acts a bit like a singleton
class EmployeeInline(admin.StackedInline):
model = Employee
can_delete = False
verbose_name_plural = 'employee'
# Define a new User admin
class UserAdmin(BaseUserAdmin):
inlines = (EmployeeInline, )
# Re-register UserAdmin
admin.site.unregister(User)
admin.site.register(User, UserAdmin)
These profile models are not special in any way - they are just Django models
that happen to have a one-to-one link with a user model. As such, they aren't
auto created when a user is created, but
a django.db.models.signals.post_save could be used to create or update
related models as appropriate.
Using related models results in additional queries or joins to retrieve the related data. Depending on your needs, a custom user model that includes the related fields may be your better option, however, existing relations to the default user model within your project's apps may justify the extra database load.
取代了一个用户 User 模型。Link to this heading
Some kinds of projects may have authentication requirements for which Django's
built-in User model is not always
appropriate. For instance, on some sites it makes more sense to use an email
address as your identification token instead of a username.
Django 允许你为引用了自定模型的:setting: AUTH_USER_MODEL 设置一个值来重写默认的用户表。
AUTH_USER_MODEL = 'myapp.MyUser'
This dotted pair describes the name of the Django app (which must be in your
INSTALLED_APPS), and the name of the Django model that you wish to
use as your user model.
启动一个项目的时候使用一个自定的用户模型Link to this heading
If you're starting a new project, it's highly recommended to set up a custom
user model, even if the default User model
is sufficient for you. This model behaves identically to the default user
model, but you'll be able to customize it in the future if the need arises:
from django.contrib.auth.models import AbstractUser
class User(AbstractUser):
pass
Don't forget to point AUTH_USER_MODEL to it. Do this before creating
any migrations or running manage.py migrate for the first time.
同样的,在 app 中的 admin.py 中注册模型。
from django.contrib import admin
from django.contrib.auth.admin import UserAdmin
from .models import User
admin.site.register(User, UserAdmin)
在项目中更改为自定义用户模型。Link to this heading
Changing AUTH_USER_MODEL after you've created database tables is
significantly more difficult since it affects foreign keys and many-to-many
relationships, for example.
This change can't be done automatically and requires manually fixing your schema, moving your data from the old user table, and possibly manually reapplying some migrations. See #25313 for an outline of the steps.
Due to limitations of Django's dynamic dependency feature for swappable
models, the model referenced by AUTH_USER_MODEL must be created in
the first migration of its app (usually called 0001_initial); otherwise,
you'll have dependency issues.
In addition, you may run into a CircularDependencyError when running your
migrations as Django won't be able to automatically break the dependency loop
due to the dynamic dependency. If you see this error, you should break the loop
by moving the models depended on by your user model into a second migration.
(You can try making two normal models that have a ForeignKey to each other
and seeing how makemigrations resolves that circular dependency if you want
to see how it's usually done.)
应用复用和 AUTH_USER_MODELLink to this heading
Reusable apps shouldn't implement a custom user model. A project may use many
apps, and two reusable apps that implemented a custom user model couldn't be
used together. If you need to store per user information in your app, use
a ForeignKey or
OneToOneField to settings.AUTH_USER_MODEL
as described below.
Referencing the User modelLink to this heading
If you reference User directly (for
example, by referring to it in a foreign key), your code will not work in
projects where the AUTH_USER_MODEL setting has been changed to a
different user model.
- get_user_model()Link to this definition
Instead of referring to
Userdirectly, you should reference the user model usingdjango.contrib.auth.get_user_model(). This method will return the currently active user model -- the custom user model if one is specified, orUserotherwise.When you define a foreign key or many-to-many relations to the user model, you should specify the custom model using the
AUTH_USER_MODELsetting. For example:from django.conf import settings from django.db import models class Article(models.Model): author = models.ForeignKey( settings.AUTH_USER_MODEL, on_delete=models.CASCADE, )When connecting to signals sent by the user model, you should specify the custom model using the
AUTH_USER_MODELsetting. For example:from django.conf import settings from django.db.models.signals import post_save def post_save_receiver(sender, instance, created, **kwargs): pass post_save.connect(post_save_receiver, sender=settings.AUTH_USER_MODEL)Generally speaking, it's easiest to refer to the user model with the
AUTH_USER_MODELsetting in code that's executed at import time, however, it's also possible to callget_user_model()while Django is importing models, so you could usemodels.ForeignKey(get_user_model(), ...).If your app is tested with multiple user models, using
@override_settings(AUTH_USER_MODEL=...)for example, and you cache the result ofget_user_model()in a module-level variable, you may need to listen to thesetting_changedsignal to clear the cache. For example:from django.apps import apps from django.contrib.auth import get_user_model from django.core.signals import setting_changed from django.dispatch import receiver @receiver(setting_changed) def user_model_swapped(**kwargs): if kwargs['setting'] == 'AUTH_USER_MODEL': apps.clear_cache() from myapp import some_module some_module.UserModel = get_user_model()
指定自定义用户模型Link to this heading
Django 希望你自定义的用户模型能够满足一些最低需求。
如果使用默认身份验证后端,那么您的模型必须具有用于标识目的的唯一字段。这可以是用户名、电子邮件地址或任何其他唯一属性。如果使用可以支持它的自定义身份验证后端,则允许使用非唯一用户名字段。
构造一个兼容的自定义用户模型的最简单方法是继承:class:~django.contrib.auth.models.AbstractBaseUser。:class:`~django.contrib.auth.models.AbstractBaseUser`提供用户模型的核心实现,包括散列密码和标记化的密码重置。然后必须提供一些关键实现细节:
- class models.CustomUserLink to this definition
- USERNAME_FIELDLink to this definition
作为唯一标识符的描述用户模型字段名的字符串,通常是一个用户名,但也可以是一个电子邮件地址,或任何其他唯一标识符。该字段*必须*是唯一的(即定义了
unique=True),除非你使用自定义身份验证后端,可以支持非唯一的用户名。接下来的样例中,
identifier字段将被用作识别字段。class MyUser(AbstractBaseUser): identifier = models.CharField(max_length=40, unique=True) ... USERNAME_FIELD = 'identifier'USERNAME_FIELDnow supportsForeignKeys. Since there is no way to pass model instances during thecreatesuperuserprompt, expect the user to enter the value ofto_fieldvalue (theprimary_keyby default) of an existing instance.
- EMAIL_FIELDLink to this definition
-
A string describing the name of the email field on the
Usermodel. This value is returned byget_email_field_name().
- REQUIRED_FIELDSLink to this definition
A list of the field names that will be prompted for when creating a user via the
createsuperusermanagement command. The user will be prompted to supply a value for each of these fields. It must include any field for whichblankisFalseor undefined and may include additional fields you want prompted for when a user is created interactively.REQUIRED_FIELDShas no effect in other parts of Django, like creating a user in the admin.比如说,这里是一个局部的用户模型,定义了两个必须的字段——生日和身高。
class MyUser(AbstractBaseUser): ... date_of_birth = models.DateField() height = models.FloatField() ... REQUIRED_FIELDS = ['date_of_birth', 'height']REQUIRED_FIELDSnow supportsForeignKeys. Since there is no way to pass model instances during thecreatesuperuserprompt, expect the user to enter the value ofto_fieldvalue (theprimary_keyby default) of an existing instance.
- is_activeLink to this definition
A boolean attribute that indicates whether the user is considered "active". This attribute is provided as an attribute on
AbstractBaseUserdefaulting toTrue. How you choose to implement it will depend on the details of your chosen auth backends. See the documentation of theis_active attribute on the built-in user modelfor details.
- get_full_name()Link to this definition
Optional. A longer formal identifier for the user such as their full name. If implemented, this appears alongside the username in an object's history in
django.contrib.admin.
- get_short_name()Link to this definition
Optional. A short, informal identifier for the user such as their first name. If implemented, this replaces the username in the greeting to the user in the header of
django.contrib.admin.
The following attributes and methods are available on any subclass of
AbstractBaseUser:
- class models.AbstractBaseUserLink to this definition
- get_username()Link to this definition
Returns the value of the field nominated by
USERNAME_FIELD.
- clean()Link to this definition
Normalizes the username by calling
normalize_username(). If you override this method, be sure to callsuper()to retain the normalization.
- classmethod get_email_field_name()Link to this definition
-
Returns the name of the email field specified by the
EMAIL_FIELDattribute. Defaults to'email'ifEMAIL_FIELDisn't specified.
- classmethod normalize_username(username)Link to this definition
Applies NFKC Unicode normalization to usernames so that visually identical characters with different Unicode code points are considered identical.
- is_authenticatedLink to this definition
Read-only attribute which is always
True(as opposed toAnonymousUser.is_authenticatedwhich is alwaysFalse). This is a way to tell if the user has been authenticated. This does not imply any permissions and doesn't check if the user is active or has a valid session. Even though normally you will check this attribute onrequest.userto find out whether it has been populated by theAuthenticationMiddleware(representing the currently logged-in user), you should know this attribute isTruefor anyUserinstance.
- is_anonymousLink to this definition
Read-only attribute which is always
False. This is a way of differentiatingUserandAnonymousUserobjects. Generally, you should prefer usingis_authenticatedto this attribute.
- set_password(raw_password)Link to this definition
Sets the user's password to the given raw string, taking care of the password hashing. Doesn't save the
AbstractBaseUserobject.When the raw_password is
None, the password will be set to an unusable password, as ifset_unusable_password()were used.
- check_password(raw_password)Link to this definition
Returns
Trueif the given raw string is the correct password for the user. (This takes care of the password hashing in making the comparison.)
- set_unusable_password()Link to this definition
Marks the user as having no password set. This isn't the same as having a blank string for a password.
check_password()for this user will never returnTrue. Doesn't save theAbstractBaseUserobject.You may need this if authentication for your application takes place against an existing external source such as an LDAP directory.
- has_usable_password()Link to this definition
Returns
Falseifset_unusable_password()has been called for this user.
- get_session_auth_hash()Link to this definition
Returns an HMAC of the password field. Used for Session invalidation on password change.
AbstractUser subclasses AbstractBaseUser:
- class models.AbstractUserLink to this definition
- clean()Link to this definition
-
Normalizes the email by calling
BaseUserManager.normalize_email(). If you override this method, be sure to callsuper()to retain the normalization.
You should also define a custom manager for your user model. If your user model
defines username, email, is_staff, is_active, is_superuser,
last_login, and date_joined fields the same as Django's default user,
you can just install Django's UserManager;
however, if your user model defines different fields, you'll need to define a
custom manager that extends BaseUserManager
providing two additional methods:
- class models.CustomUserManagerLink to this definition
- create_user(*username_field*, password=None, \**other_fields)Link to this definition
The prototype of
create_user()should accept the username field, plus all required fields as arguments. For example, if your user model usesemailas the username field, and hasdate_of_birthas a required field, thencreate_usershould be defined as:def create_user(self, email, date_of_birth, password=None): # create user here ...
- create_superuser(*username_field*, password, \**other_fields)Link to this definition
The prototype of
create_superuser()should accept the username field, plus all required fields as arguments. For example, if your user model usesemailas the username field, and hasdate_of_birthas a required field, thencreate_superusershould be defined as:def create_superuser(self, email, date_of_birth, password): # create superuser here ...Unlike
create_user(),create_superuser()must require the caller to provide a password.
BaseUserManager provides the following
utility methods:
- class models.BaseUserManagerLink to this definition
- classmethod normalize_email(email)Link to this definition
Normalizes email addresses by lowercasing the domain portion of the email address.
- get_by_natural_key(username)Link to this definition
Retrieves a user instance using the contents of the field nominated by
USERNAME_FIELD.
- make_random_password(length=10, allowed_chars='abcdefghjkmnpqrstuvwxyzABCDEFGHJKLMNPQRSTUVWXYZ23456789')Link to this definition
Returns a random password with the given length and given string of allowed characters. Note that the default value of
allowed_charsdoesn't contain letters that can cause user confusion, including:i,l,I, and1(lowercase letter i, lowercase letter L, uppercase letter i, and the number one)o,O, and0(lowercase letter o, uppercase letter o, and zero)
Extending Django's default UserLink to this heading
If you're entirely happy with Django's User
model and you just want to add some additional profile information, you could
simply subclass django.contrib.auth.models.AbstractUser and add your
custom profile fields, although we'd recommend a separate model as described in
the "Model design considerations" note of 指定自定义用户模型.
AbstractUser provides the full implementation of the default
User as an abstract model.
自定义用户和内建的auth表单Link to this heading
Django's built-in forms and views make certain assumptions about the user model that they are working with.
The following forms are compatible with any subclass of
AbstractBaseUser:
AuthenticationForm: Uses the username field specified byUSERNAME_FIELD.
The following forms make assumptions about the user model and can be used as-is if those assumptions are met:
PasswordResetForm: Assumes that the user model has a field that stores the user's email address with the name returned byget_email_field_name()(emailby default) that can be used to identify the user and a boolean field namedis_activeto prevent password resets for inactive users.
Finally, the following forms are tied to
User and need to be rewritten or extended
to work with a custom user model:
If your custom user model is a simple subclass of AbstractUser, then you
can extend these forms in this manner:
from django.contrib.auth.forms import UserCreationForm
from myapp.models import CustomUser
class CustomUserCreationForm(UserCreationForm):
class Meta(UserCreationForm.Meta):
model = CustomUser
fields = UserCreationForm.Meta.fields + ('custom_field',)
Custom users and django.contrib.adminLink to this heading
If you want your custom user model to also work with the admin, your user model must define some additional attributes and methods. These methods allow the admin to control access of the user to admin content:
- class models.CustomUserLink to this definition
- is_staffLink to this definition
如果允许用户有访问 admin 页面就返回
True。
- is_activeLink to this definition
返回``True``,如果该用户的账号当前是激活状态
- has_perm(perm, obj=None):
Returns
Trueif the user has the named permission. Ifobjis provided, the permission needs to be checked against a specific object instance.
- has_module_perms(app_label):
Returns
Trueif the user has permission to access models in the given app.
You will also need to register your custom user model with the admin. If
your custom user model extends django.contrib.auth.models.AbstractUser,
you can use Django's existing django.contrib.auth.admin.UserAdmin
class. However, if your user model extends
AbstractBaseUser, you'll need to define
a custom ModelAdmin class. It may be possible to subclass the default
django.contrib.auth.admin.UserAdmin; however, you'll need to
override any of the definitions that refer to fields on
django.contrib.auth.models.AbstractUser that aren't on your
custom user class.
自定义用户和权限。Link to this heading
To make it easy to include Django's permission framework into your own user
class, Django provides PermissionsMixin.
This is an abstract model you can include in the class hierarchy for your user
model, giving you all the methods and database fields necessary to support
Django's permission model.
PermissionsMixin provides the following
methods and attributes:
- class models.PermissionsMixinLink to this definition
- is_superuserLink to this definition
Boolean. Designates that this user has all permissions without explicitly assigning them.
- get_group_permissions(obj=None)Link to this definition
Returns a set of permission strings that the user has, through their groups.
If
objis passed in, only returns the group permissions for this specific object.
- get_all_permissions(obj=None)Link to this definition
Returns a set of permission strings that the user has, both through group and user permissions.
If
objis passed in, only returns the permissions for this specific object.
- has_perm(perm, obj=None)Link to this definition
Returns
Trueif the user has the specified permission, wherepermis in the format"<app label>.<permission codename>"(see permissions). If the user is inactive, this method will always returnFalse.If
objis passed in, this method won't check for a permission for the model, but for this specific object.
- has_perms(perm_list, obj=None)Link to this definition
Returns
Trueif the user has each of the specified permissions, where each perm is in the format"<app label>.<permission codename>". If the user is inactive, this method will always returnFalse.If
objis passed in, this method won't check for permissions for the model, but for the specific object.
- has_module_perms(package_name)Link to this definition
Returns
Trueif the user has any permissions in the given package (the Django app label). If the user is inactive, this method will always returnFalse.
自定义用户和代理模型Link to this heading
One limitation of custom user models is that installing a custom user model
will break any proxy model extending User.
Proxy models must be based on a concrete base class; by defining a custom user
model, you remove the ability of Django to reliably identify the base class.
If your project uses proxy models, you must either modify the proxy to extend
the user model that's in use in your project, or merge your proxy's behavior
into your User subclass.
一个完整的例子Link to this heading
Here is an example of an admin-compliant custom user app. This user model uses
an email address as the username, and has a required date of birth; it
provides no permission checking, beyond a simple admin flag on the user
account. This model would be compatible with all the built-in auth forms and
views, except for the user creation forms. This example illustrates how most of
the components work together, but is not intended to be copied directly into
projects for production use.
This code would all live in a models.py file for a custom
authentication app:
from django.db import models
from django.contrib.auth.models import (
BaseUserManager, AbstractBaseUser
)
class MyUserManager(BaseUserManager):
def create_user(self, email, date_of_birth, password=None):
"""
Creates and saves a User with the given email, date of
birth and password.
"""
if not email:
raise ValueError('Users must have an email address')
user = self.model(
email=self.normalize_email(email),
date_of_birth=date_of_birth,
)
user.set_password(password)
user.save(using=self._db)
return user
def create_superuser(self, email, date_of_birth, password):
"""
Creates and saves a superuser with the given email, date of
birth and password.
"""
user = self.create_user(
email,
password=password,
date_of_birth=date_of_birth,
)
user.is_admin = True
user.save(using=self._db)
return user
class MyUser(AbstractBaseUser):
email = models.EmailField(
verbose_name='email address',
max_length=255,
unique=True,
)
date_of_birth = models.DateField()
is_active = models.BooleanField(default=True)
is_admin = models.BooleanField(default=False)
objects = MyUserManager()
USERNAME_FIELD = 'email'
REQUIRED_FIELDS = ['date_of_birth']
def __str__(self):
return self.email
def has_perm(self, perm, obj=None):
"Does the user have a specific permission?"
# Simplest possible answer: Yes, always
return True
def has_module_perms(self, app_label):
"Does the user have permissions to view the app `app_label`?"
# Simplest possible answer: Yes, always
return True
@property
def is_staff(self):
"Is the user a member of staff?"
# Simplest possible answer: All admins are staff
return self.is_admin
Then, to register this custom user model with Django's admin, the following
code would be required in the app's admin.py file:
from django import forms
from django.contrib import admin
from django.contrib.auth.models import Group
from django.contrib.auth.admin import UserAdmin as BaseUserAdmin
from django.contrib.auth.forms import ReadOnlyPasswordHashField
from customauth.models import MyUser
class UserCreationForm(forms.ModelForm):
"""A form for creating new users. Includes all the required
fields, plus a repeated password."""
password1 = forms.CharField(label='Password', widget=forms.PasswordInput)
password2 = forms.CharField(label='Password confirmation', widget=forms.PasswordInput)
class Meta:
model = MyUser
fields = ('email', 'date_of_birth')
def clean_password2(self):
# Check that the two password entries match
password1 = self.cleaned_data.get("password1")
password2 = self.cleaned_data.get("password2")
if password1 and password2 and password1 != password2:
raise forms.ValidationError("Passwords don't match")
return password2
def save(self, commit=True):
# Save the provided password in hashed format
user = super().save(commit=False)
user.set_password(self.cleaned_data["password1"])
if commit:
user.save()
return user
class UserChangeForm(forms.ModelForm):
"""A form for updating users. Includes all the fields on
the user, but replaces the password field with admin's
password hash display field.
"""
password = ReadOnlyPasswordHashField()
class Meta:
model = MyUser
fields = ('email', 'password', 'date_of_birth', 'is_active', 'is_admin')
def clean_password(self):
# Regardless of what the user provides, return the initial value.
# This is done here, rather than on the field, because the
# field does not have access to the initial value
return self.initial["password"]
class UserAdmin(BaseUserAdmin):
# The forms to add and change user instances
form = UserChangeForm
add_form = UserCreationForm
# The fields to be used in displaying the User model.
# These override the definitions on the base UserAdmin
# that reference specific fields on auth.User.
list_display = ('email', 'date_of_birth', 'is_admin')
list_filter = ('is_admin',)
fieldsets = (
(None, {'fields': ('email', 'password')}),
('Personal info', {'fields': ('date_of_birth',)}),
('Permissions', {'fields': ('is_admin',)}),
)
# add_fieldsets is not a standard ModelAdmin attribute. UserAdmin
# overrides get_fieldsets to use this attribute when creating a user.
add_fieldsets = (
(None, {
'classes': ('wide',),
'fields': ('email', 'date_of_birth', 'password1', 'password2')}
),
)
search_fields = ('email',)
ordering = ('email',)
filter_horizontal = ()
# Now register the new UserAdmin...
admin.site.register(MyUser, UserAdmin)
# ... and, since we're not using Django's built-in permissions,
# unregister the Group model from admin.
admin.site.unregister(Group)
Finally, specify the custom model as the default user model for your project
using the AUTH_USER_MODEL setting in your settings.py:
AUTH_USER_MODEL = 'customauth.MyUser'