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158
lib/test_phoenix_live_view/accounts/user.ex
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158
lib/test_phoenix_live_view/accounts/user.ex
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defmodule TestPhoenixLiveView.Accounts.User do
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use Ecto.Schema
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import Ecto.Changeset
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schema "users" do
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field :email, :string
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field :password, :string, virtual: true, redact: true
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field :hashed_password, :string, redact: true
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field :confirmed_at, :naive_datetime
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timestamps(type: :utc_datetime)
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end
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@doc """
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A user changeset for registration.
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It is important to validate the length of both email and password.
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Otherwise databases may truncate the email without warnings, which
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could lead to unpredictable or insecure behaviour. Long passwords may
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also be very expensive to hash for certain algorithms.
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## Options
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* `:hash_password` - Hashes the password so it can be stored securely
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in the database and ensures the password field is cleared to prevent
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leaks in the logs. If password hashing is not needed and clearing the
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password field is not desired (like when using this changeset for
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validations on a LiveView form), this option can be set to `false`.
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Defaults to `true`.
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* `:validate_email` - Validates the uniqueness of the email, in case
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you don't want to validate the uniqueness of the email (like when
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using this changeset for validations on a LiveView form before
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submitting the form), this option can be set to `false`.
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Defaults to `true`.
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"""
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def registration_changeset(user, attrs, opts \\ []) do
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user
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|> cast(attrs, [:email, :password])
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|> validate_email(opts)
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|> validate_password(opts)
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end
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defp validate_email(changeset, opts) do
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changeset
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|> validate_required([:email])
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|> validate_format(:email, ~r/^[^\s]+@[^\s]+$/, message: "must have the @ sign and no spaces")
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|> validate_length(:email, max: 160)
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|> maybe_validate_unique_email(opts)
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end
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defp validate_password(changeset, opts) do
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changeset
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|> validate_required([:password])
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|> validate_length(:password, min: 12, max: 72)
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# Examples of additional password validation:
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# |> validate_format(:password, ~r/[a-z]/, message: "at least one lower case character")
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# |> validate_format(:password, ~r/[A-Z]/, message: "at least one upper case character")
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# |> validate_format(:password, ~r/[!?@#$%^&*_0-9]/, message: "at least one digit or punctuation character")
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|> maybe_hash_password(opts)
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end
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defp maybe_hash_password(changeset, opts) do
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hash_password? = Keyword.get(opts, :hash_password, true)
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password = get_change(changeset, :password)
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if hash_password? && password && changeset.valid? do
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changeset
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# If using Bcrypt, then further validate it is at most 72 bytes long
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|> validate_length(:password, max: 72, count: :bytes)
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# Hashing could be done with `Ecto.Changeset.prepare_changes/2`, but that
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# would keep the database transaction open longer and hurt performance.
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|> put_change(:hashed_password, Bcrypt.hash_pwd_salt(password))
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|> delete_change(:password)
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else
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changeset
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end
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end
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defp maybe_validate_unique_email(changeset, opts) do
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if Keyword.get(opts, :validate_email, true) do
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changeset
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|> unsafe_validate_unique(:email, TestPhoenixLiveView.Repo)
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|> unique_constraint(:email)
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else
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changeset
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end
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end
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@doc """
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A user changeset for changing the email.
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It requires the email to change otherwise an error is added.
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"""
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def email_changeset(user, attrs, opts \\ []) do
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user
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|> cast(attrs, [:email])
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|> validate_email(opts)
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|> case do
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%{changes: %{email: _}} = changeset -> changeset
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%{} = changeset -> add_error(changeset, :email, "did not change")
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end
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end
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@doc """
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A user changeset for changing the password.
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## Options
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* `:hash_password` - Hashes the password so it can be stored securely
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in the database and ensures the password field is cleared to prevent
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leaks in the logs. If password hashing is not needed and clearing the
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password field is not desired (like when using this changeset for
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validations on a LiveView form), this option can be set to `false`.
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Defaults to `true`.
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"""
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def password_changeset(user, attrs, opts \\ []) do
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user
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|> cast(attrs, [:password])
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|> validate_confirmation(:password, message: "does not match password")
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|> validate_password(opts)
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end
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@doc """
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Confirms the account by setting `confirmed_at`.
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"""
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def confirm_changeset(user) do
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now = NaiveDateTime.utc_now() |> NaiveDateTime.truncate(:second)
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change(user, confirmed_at: now)
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end
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@doc """
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Verifies the password.
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If there is no user or the user doesn't have a password, we call
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`Bcrypt.no_user_verify/0` to avoid timing attacks.
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"""
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def valid_password?(%TestPhoenixLiveView.Accounts.User{hashed_password: hashed_password}, password)
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when is_binary(hashed_password) and byte_size(password) > 0 do
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Bcrypt.verify_pass(password, hashed_password)
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end
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def valid_password?(_, _) do
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Bcrypt.no_user_verify()
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false
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end
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@doc """
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Validates the current password otherwise adds an error to the changeset.
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"""
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def validate_current_password(changeset, password) do
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if valid_password?(changeset.data, password) do
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changeset
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else
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add_error(changeset, :current_password, "is not valid")
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end
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end
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end
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79
lib/test_phoenix_live_view/accounts/user_notifier.ex
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79
lib/test_phoenix_live_view/accounts/user_notifier.ex
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defmodule TestPhoenixLiveView.Accounts.UserNotifier do
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import Swoosh.Email
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alias TestPhoenixLiveView.Mailer
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# Delivers the email using the application mailer.
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defp deliver(recipient, subject, body) do
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email =
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new()
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|> to(recipient)
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|> from({"TestPhoenixLiveView", "contact@example.com"})
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|> subject(subject)
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|> text_body(body)
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with {:ok, _metadata} <- Mailer.deliver(email) do
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{:ok, email}
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end
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end
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@doc """
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Deliver instructions to confirm account.
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"""
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def deliver_confirmation_instructions(user, url) do
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deliver(user.email, "Confirmation instructions", """
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==============================
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Hi #{user.email},
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You can confirm your account by visiting the URL below:
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#{url}
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If you didn't create an account with us, please ignore this.
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==============================
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""")
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end
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@doc """
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Deliver instructions to reset a user password.
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"""
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def deliver_reset_password_instructions(user, url) do
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deliver(user.email, "Reset password instructions", """
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==============================
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Hi #{user.email},
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You can reset your password by visiting the URL below:
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#{url}
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If you didn't request this change, please ignore this.
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==============================
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""")
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end
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@doc """
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Deliver instructions to update a user email.
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"""
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def deliver_update_email_instructions(user, url) do
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deliver(user.email, "Update email instructions", """
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==============================
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Hi #{user.email},
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You can change your email by visiting the URL below:
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#{url}
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If you didn't request this change, please ignore this.
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==============================
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""")
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end
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end
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179
lib/test_phoenix_live_view/accounts/user_token.ex
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179
lib/test_phoenix_live_view/accounts/user_token.ex
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defmodule TestPhoenixLiveView.Accounts.UserToken do
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use Ecto.Schema
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import Ecto.Query
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alias TestPhoenixLiveView.Accounts.UserToken
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@hash_algorithm :sha256
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@rand_size 32
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# It is very important to keep the reset password token expiry short,
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# since someone with access to the email may take over the account.
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@reset_password_validity_in_days 1
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@confirm_validity_in_days 7
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@change_email_validity_in_days 7
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@session_validity_in_days 60
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schema "users_tokens" do
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field :token, :binary
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field :context, :string
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field :sent_to, :string
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belongs_to :user, TestPhoenixLiveView.Accounts.User
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timestamps(updated_at: false)
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end
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@doc """
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Generates a token that will be stored in a signed place,
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such as session or cookie. As they are signed, those
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tokens do not need to be hashed.
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The reason why we store session tokens in the database, even
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though Phoenix already provides a session cookie, is because
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Phoenix' default session cookies are not persisted, they are
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simply signed and potentially encrypted. This means they are
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valid indefinitely, unless you change the signing/encryption
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salt.
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Therefore, storing them allows individual user
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sessions to be expired. The token system can also be extended
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to store additional data, such as the device used for logging in.
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You could then use this information to display all valid sessions
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and devices in the UI and allow users to explicitly expire any
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session they deem invalid.
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"""
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def build_session_token(user) do
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token = :crypto.strong_rand_bytes(@rand_size)
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{token, %UserToken{token: token, context: "session", user_id: user.id}}
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end
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@doc """
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Checks if the token is valid and returns its underlying lookup query.
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The query returns the user found by the token, if any.
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The token is valid if it matches the value in the database and it has
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not expired (after @session_validity_in_days).
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"""
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def verify_session_token_query(token) do
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query =
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from token in by_token_and_context_query(token, "session"),
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join: user in assoc(token, :user),
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where: token.inserted_at > ago(@session_validity_in_days, "day"),
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select: user
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{:ok, query}
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end
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@doc """
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Builds a token and its hash to be delivered to the user's email.
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The non-hashed token is sent to the user email while the
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hashed part is stored in the database. The original token cannot be reconstructed,
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which means anyone with read-only access to the database cannot directly use
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the token in the application to gain access. Furthermore, if the user changes
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their email in the system, the tokens sent to the previous email are no longer
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valid.
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Users can easily adapt the existing code to provide other types of delivery methods,
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for example, by phone numbers.
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"""
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def build_email_token(user, context) do
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build_hashed_token(user, context, user.email)
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end
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defp build_hashed_token(user, context, sent_to) do
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token = :crypto.strong_rand_bytes(@rand_size)
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hashed_token = :crypto.hash(@hash_algorithm, token)
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{Base.url_encode64(token, padding: false),
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%UserToken{
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token: hashed_token,
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context: context,
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sent_to: sent_to,
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user_id: user.id
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}}
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end
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@doc """
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Checks if the token is valid and returns its underlying lookup query.
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The query returns the user found by the token, if any.
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The given token is valid if it matches its hashed counterpart in the
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database and the user email has not changed. This function also checks
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if the token is being used within a certain period, depending on the
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context. The default contexts supported by this function are either
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"confirm", for account confirmation emails, and "reset_password",
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for resetting the password. For verifying requests to change the email,
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see `verify_change_email_token_query/2`.
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"""
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def verify_email_token_query(token, context) do
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case Base.url_decode64(token, padding: false) do
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{:ok, decoded_token} ->
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hashed_token = :crypto.hash(@hash_algorithm, decoded_token)
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days = days_for_context(context)
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query =
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from token in by_token_and_context_query(hashed_token, context),
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join: user in assoc(token, :user),
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where: token.inserted_at > ago(^days, "day") and token.sent_to == user.email,
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select: user
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{:ok, query}
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:error ->
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:error
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end
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end
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defp days_for_context("confirm"), do: @confirm_validity_in_days
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defp days_for_context("reset_password"), do: @reset_password_validity_in_days
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@doc """
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Checks if the token is valid and returns its underlying lookup query.
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The query returns the user found by the token, if any.
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This is used to validate requests to change the user
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email. It is different from `verify_email_token_query/2` precisely because
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`verify_email_token_query/2` validates the email has not changed, which is
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the starting point by this function.
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The given token is valid if it matches its hashed counterpart in the
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database and if it has not expired (after @change_email_validity_in_days).
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The context must always start with "change:".
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"""
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def verify_change_email_token_query(token, "change:" <> _ = context) do
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case Base.url_decode64(token, padding: false) do
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{:ok, decoded_token} ->
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hashed_token = :crypto.hash(@hash_algorithm, decoded_token)
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query =
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from token in by_token_and_context_query(hashed_token, context),
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where: token.inserted_at > ago(@change_email_validity_in_days, "day")
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{:ok, query}
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:error ->
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:error
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end
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end
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@doc """
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Returns the token struct for the given token value and context.
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"""
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def by_token_and_context_query(token, context) do
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from UserToken, where: [token: ^token, context: ^context]
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end
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@doc """
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Gets all tokens for the given user for the given contexts.
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"""
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def by_user_and_contexts_query(user, :all) do
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from t in UserToken, where: t.user_id == ^user.id
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end
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def by_user_and_contexts_query(user, [_ | _] = contexts) do
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from t in UserToken, where: t.user_id == ^user.id and t.context in ^contexts
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end
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end
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