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Add signing key modules
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190
lib/pleroma/user/signing_key.ex
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190
lib/pleroma/user/signing_key.ex
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defmodule Pleroma.User.SigningKey do
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use Ecto.Schema
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import Ecto.Query
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import Ecto.Changeset
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alias Pleroma.User
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alias Pleroma.Repo
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alias Pleroma.HTTP
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require Logger
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@primary_key false
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schema "signing_keys" do
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belongs_to(:user, Pleroma.User, type: FlakeId.Ecto.CompatType)
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field :public_key, :string
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field :private_key, :string
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# This is an arbitrary field given by the remote instance
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field :key_id, :string, primary_key: true
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timestamps()
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end
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def key_id_of_local_user(%User{local: true, signing_key: %__MODULE__{key_id: key_id}}),
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do: key_id
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@spec remote_changeset(__MODULE__, map) :: Changeset.t()
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def remote_changeset(%__MODULE__{} = signing_key, attrs) do
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signing_key
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|> cast(attrs, [:public_key, :key_id])
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|> validate_required([:public_key, :key_id])
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end
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@spec key_id_to_user_id(String.t()) :: String.t() | nil
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@doc """
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Given a key ID, return the user ID associated with that key.
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Returns nil if the key ID is not found.
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"""
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def key_id_to_user_id(key_id) do
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from(sk in __MODULE__, where: sk.key_id == ^key_id)
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|> select([sk], sk.user_id)
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|> Repo.one()
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end
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@spec key_id_to_ap_id(String.t()) :: String.t() | nil
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@doc """
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Given a key ID, return the AP ID associated with that key.
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Returns nil if the key ID is not found.
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"""
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def key_id_to_ap_id(key_id) do
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Logger.debug("Looking up key ID: #{key_id}")
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result =
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from(sk in __MODULE__, where: sk.key_id == ^key_id)
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|> join(:inner, [sk], u in User, on: sk.user_id == u.id)
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|> select([sk, u], %{user: u})
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|> Repo.one()
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case result do
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%{user: %User{ap_id: ap_id}} -> ap_id
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_ -> nil
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end
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end
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@spec generate_rsa_pem() :: {:ok, binary()}
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@doc """
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Generate a new RSA private key and return it as a PEM-encoded string.
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"""
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def generate_rsa_pem do
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key = :public_key.generate_key({:rsa, 2048, 65_537})
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entry = :public_key.pem_entry_encode(:RSAPrivateKey, key)
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pem = :public_key.pem_encode([entry]) |> String.trim_trailing()
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{:ok, pem}
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end
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@spec generate_local_keys(String.t()) :: {:ok, Changeset.t()} | {:error, String.t()}
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@doc """
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Generate a new RSA key pair and create a changeset for it
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"""
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def generate_local_keys(ap_id) do
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{:ok, private_pem} = generate_rsa_pem()
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{:ok, local_pem} = private_pem_to_public_pem(private_pem)
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%__MODULE__{}
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|> change()
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|> put_change(:public_key, local_pem)
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|> put_change(:private_key, private_pem)
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|> put_change(:key_id, ap_id <> "#main-key")
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end
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@spec private_pem_to_public_pem(binary) :: {:ok, binary()} | {:error, String.t()}
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@doc """
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Given a private key in PEM format, return the corresponding public key in PEM format.
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"""
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def private_pem_to_public_pem(private_pem) do
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[private_key_code] = :public_key.pem_decode(private_pem)
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private_key = :public_key.pem_entry_decode(private_key_code)
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{:RSAPrivateKey, _, modulus, exponent, _, _, _, _, _, _, _} = private_key
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public_key = {:RSAPublicKey, modulus, exponent}
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public_key = :public_key.pem_entry_encode(:SubjectPublicKeyInfo, public_key)
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{:ok, :public_key.pem_encode([public_key])}
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end
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@spec public_key(User.t()) :: {:ok, binary()} | {:error, String.t()}
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@doc """
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Given a user, return the public key for that user in binary format.
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"""
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def public_key(%User{signing_key: %__MODULE__{public_key: public_key_pem}}) do
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key =
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public_key_pem
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|> :public_key.pem_decode()
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|> hd()
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|> :public_key.pem_entry_decode()
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{:ok, key}
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end
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def public_key(_), do: {:error, "key not found"}
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def public_key_pem(%User{signing_key: %__MODULE__{public_key: public_key_pem}}),
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do: public_key_pem
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@spec private_key(User.t()) :: {:ok, binary()} | {:error, String.t()}
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@doc """
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Given a user, return the private key for that user in binary format.
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"""
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def private_key(%User{signing_key: %__MODULE__{private_key: private_key_pem}}) do
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key =
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private_key_pem
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|> :public_key.pem_decode()
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|> hd()
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|> :public_key.pem_entry_decode()
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{:ok, key}
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end
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@spec fetch_remote_key(String.t()) :: {:ok, __MODULE__} | {:error, String.t()}
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@doc """
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Fetch a remote key by key ID.
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Will send a request to the remote instance to get the key ID.
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This request should, at the very least, return a user ID and a public key object.
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Though bear in mind that some implementations (looking at you, pleroma) may require a signature for this request.
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This has the potential to create an infinite loop if the remote instance requires a signature to fetch the key...
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So if we're rejected, we should probably just give up.
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"""
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def fetch_remote_key(key_id) do
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resp = HTTP.Backoff.get(key_id)
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case handle_signature_response(resp) do
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{:ok, ap_id, public_key_pem} ->
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# fetch the user
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user = User.get_or_fetch_by_ap_id(ap_id)
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# store the key
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key = %__MODULE__{
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user_id: user.id,
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public_key: public_key_pem,
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key_id: key_id
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}
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Repo.insert(key)
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_ ->
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{:error, "Could not fetch key"}
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end
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end
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# Take the response from the remote instance and extract the key details
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# will check if the key ID matches the owner of the key, if not, error
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defp extract_key_details(%{"id" => ap_id, "publicKey" => public_key}) do
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if ap_id !== public_key["owner"] do
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{:error, "Key ID does not match owner"}
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else
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%{"publicKeyPem" => public_key_pem} = public_key
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{:ok, ap_id, public_key_pem}
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end
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end
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defp handle_signature_response({:ok, %{status: status, body: body}}) when status in 200..299 do
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case Jason.decode(body) do
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{:ok, %{"id" => _user_id, "publicKey" => _public_key} = body} ->
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extract_key_details(body)
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{:ok, %{"error" => error}} ->
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{:error, error}
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{:error, _} ->
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{:error, "Could not parse key"}
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end
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end
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defp handle_signature_response({:error, e}), do: {:error, e}
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defp handle_signature_response(other), do: {:error, "Could not fetch key: #{inspect(other)}"}
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end
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defmodule Pleroma.Repo.Migrations.CreateSigningKeyTable do
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use Ecto.Migration
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def change do
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create table(:signing_keys, primary_key: false) do
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add :user_id, references(:users, type: :uuid, on_delete: :delete_all)
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add :key_id, :text, primary_key: true
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add :public_key, :text
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add :private_key, :text
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timestamps()
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end
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create index(:signing_keys, [:key_id])
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end
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end
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35
priv/repo/migrations/20240625220752_move_signing_keys.exs
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35
priv/repo/migrations/20240625220752_move_signing_keys.exs
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defmodule Pleroma.Repo.Migrations.MoveSigningKeys do
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use Ecto.Migration
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alias Pleroma.User
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alias Pleroma.Repo
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import Ecto.Query
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def up do
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# we do not handle remote users here!
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# because we want to store a key id -> user id mapping, and we don't
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# currently store key ids for remote users...
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query =
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from(u in User)
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|> where(local: true)
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Repo.stream(query, timeout: :infinity)
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|> Enum.each(fn
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%User{id: user_id, keys: private_key, local: true} ->
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# we can precompute the public key here...
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# we do use it on every user view which makes it a bit of a dos attack vector
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# so we should probably cache it
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{:ok, public_key} = User.SigningKey.private_pem_to_public_pem(private_key)
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key = %User.SigningKey{
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user_id: user_id,
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public_key: public_key,
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private_key: private_key
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}
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{:ok, _} = Repo.insert(key)
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end)
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end
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# no need to rollback
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def down, do: :ok
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end
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