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Robust, Ubiquitous and Massively Scalable Messaging Platform (XMPP, MQTT, SIP Server)
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src/ejabberd_auth_mnesia.erl
%%%----------------------------------------------------------------------
%%% File : ejabberd_auth_mnesia.erl
%%% Author : Alexey Shchepin <alexey@process-one.net>
%%% Purpose : Authentication via mnesia
%%% Created : 12 Dec 2004 by Alexey Shchepin <alexey@process-one.net>
%%%
%%%
%%% ejabberd, Copyright (C) 2002-2026 ProcessOne
%%%
%%% This program is free software; you can redistribute it and/or
%%% modify it under the terms of the GNU General Public License as
%%% published by the Free Software Foundation; either version 2 of the
%%% License, or (at your option) any later version.
%%%
%%% This program is distributed in the hope that it will be useful,
%%% but WITHOUT ANY WARRANTY; without even the implied warranty of
%%% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
%%% General Public License for more details.
%%%
%%% You should have received a copy of the GNU General Public License along
%%% with this program; if not, write to the Free Software Foundation, Inc.,
%%% 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
%%%
%%%----------------------------------------------------------------------
-module(ejabberd_auth_mnesia).
-author('alexey@process-one.net').
-behaviour(ejabberd_auth).
-behaviour(ejabberd_db_serialize).
-export([start/1, stop/1, set_password_multiple/3, try_register_multiple/3,
get_users/2, init_db/0,
count_users/2, get_password/2,
remove_user/2, store_type/1, import/2,
plain_password_required/1, use_cache/1, drop_password_type/2, set_password_instance/3]).
-export([need_transform/1, transform/1]).
-export([serialize/3, deserialize_start/1, deserialize/2]).
-include_lib("stdlib/include/ms_transform.hrl").
-include("logger.hrl").
-include_lib("xmpp/include/scram.hrl").
-include("ejabberd_auth.hrl").
-include("ejabberd_db_serialize.hrl").
-record(reg_users_counter, {vhost = <<"">> :: binary(),
count = 0 :: integer() | '$1'}).
%%%----------------------------------------------------------------------
%%% API
%%%----------------------------------------------------------------------
start(Host) ->
init_db(),
update_reg_users_counter_table(Host),
ok.
stop(_Host) ->
ok.
init_db() ->
ejabberd_mnesia:create(?MODULE, passwd,
[{disc_only_copies, [node()]},
{attributes, record_info(fields, passwd)}]),
ejabberd_mnesia:create(?MODULE, reg_users_counter,
[{ram_copies, [node()]},
{attributes, record_info(fields, reg_users_counter)}]).
update_reg_users_counter_table(Server) ->
Set = get_users(Server, []),
Size = length(Set),
LServer = jid:nameprep(Server),
F = fun () ->
mnesia:write(#reg_users_counter{vhost = LServer,
count = Size})
end,
mnesia:sync_dirty(F).
use_cache(Host) ->
case mnesia:table_info(passwd, storage_type) of
disc_only_copies ->
ejabberd_option:auth_use_cache(Host);
_ ->
false
end.
plain_password_required(Server) ->
store_type(Server) == scram.
store_type(Server) ->
ejabberd_auth:password_format(Server).
set_password_multiple(User, Server, Passwords) ->
F = fun() ->
lists:foreach(
fun(#scram{hash = Hash} = Password) ->
mnesia:write(#passwd{us = {User, Server, Hash}, password = Password});
(Plain) ->
mnesia:write(#passwd{us = {User, Server, plain}, password = Plain})
end, Passwords)
end,
case mnesia:transaction(F) of
{atomic, ok} ->
{cache, {ok, Passwords}};
{aborted, Reason} ->
?ERROR_MSG("Mnesia transaction failed: ~p", [Reason]),
{nocache, {error, db_failure}}
end.
set_password_instance(User, Server, Password) ->
F = fun() ->
case Password of
#scram{hash = Hash} = Password ->
mnesia:write(#passwd{us = {User, Server, Hash}, password = Password});
Plain ->
mnesia:write(#passwd{us = {User, Server, plain}, password = Plain})
end
end,
case mnesia:transaction(F) of
{atomic, ok} ->
ok;
{aborted, Reason} ->
?ERROR_MSG("Mnesia transaction failed: ~p", [Reason]),
{error, db_failure}
end.
try_register_multiple(User, Server, Passwords) ->
F = fun() ->
case mnesia:select(passwd, [{{'_', {'$1', '$2', '_'}, '$3'},
[{'==', '$1', User},
{'==', '$2', Server}],
['$3']}]) of
[] ->
lists:foreach(
fun(#scram{hash = Hash} = Password) ->
mnesia:write(#passwd{us = {User, Server, Hash}, password = Password});
(Plain) ->
mnesia:write(#passwd{us = {User, Server, plain}, password = Plain})
end, Passwords),
mnesia:dirty_update_counter(reg_users_counter, Server, 1),
{ok, Passwords};
[_] ->
{error, exists}
end
end,
case mnesia:transaction(F) of
{atomic, Res} ->
{cache, Res};
{aborted, Reason} ->
?ERROR_MSG("Mnesia transaction failed: ~p", [Reason]),
{nocache, {error, db_failure}}
end.
get_users(Server, []) ->
Users = mnesia:dirty_select(passwd,
[{#passwd{us = '$1', _ = '_'},
[{'==', {element, 2, '$1'}, Server}], ['$1']}]),
lists:uniq([{U, S} || {U, S, _} <- Users]);
get_users(Server, [{from, Start}, {to, End}])
when is_integer(Start) and is_integer(End) ->
get_users(Server, [{limit, End - Start + 1}, {offset, Start}]);
get_users(Server, [{limit, Limit}, {offset, Offset}])
when is_integer(Limit) and is_integer(Offset) ->
case get_users(Server, []) of
[] ->
[];
Users ->
Set = lists:keysort(1, Users),
L = length(Set),
Start = if Offset < 1 -> 1;
Offset > L -> L;
true -> Offset
end,
lists:sublist(Set, Start, Limit)
end;
get_users(Server, [{prefix, Prefix}]) when is_binary(Prefix) ->
Set = [{U, S} || {U, S} <- get_users(Server, []), str:prefix(Prefix, U)],
lists:keysort(1, Set);
get_users(Server, [{prefix, Prefix}, {from, Start}, {to, End}])
when is_binary(Prefix) and is_integer(Start) and is_integer(End) ->
get_users(Server, [{prefix, Prefix}, {limit, End - Start + 1},
{offset, Start}]);
get_users(Server, [{prefix, Prefix}, {limit, Limit}, {offset, Offset}])
when is_binary(Prefix) and is_integer(Limit) and is_integer(Offset) ->
case [{U, S} || {U, S} <- get_users(Server, []), str:prefix(Prefix, U)] of
[] ->
[];
Users ->
Set = lists:keysort(1, Users),
L = length(Set),
Start = if Offset < 1 -> 1;
Offset > L -> L;
true -> Offset
end,
lists:sublist(Set, Start, Limit)
end;
get_users(Server, _) ->
get_users(Server, []).
count_users(Server, []) ->
case mnesia:dirty_select(
reg_users_counter,
[{#reg_users_counter{vhost = Server, count = '$1'},
[], ['$1']}]) of
[Count] -> Count;
_ -> 0
end;
count_users(Server, [{prefix, Prefix}]) when is_binary(Prefix) ->
Set = [{U, S} || {U, S} <- get_users(Server, []), str:prefix(Prefix, U)],
length(Set);
count_users(Server, _) ->
count_users(Server, []).
get_password(User, Server) ->
case mnesia:dirty_select(passwd, [{{'_', {'$1', '$2', '_'}, '$3'},
[{'==', '$1', User},
{'==', '$2', Server}],
['$3']}]) of
[_|_] = List ->
List2 = lists:map(
fun({scram, SK, SEK, Salt, IC}) ->
#scram{storedkey = SK, serverkey = SEK,
salt = Salt, hash = sha, iterationcount = IC};
(Other) -> Other
end, List),
{cache, {ok, List2}};
_ ->
{cache, error}
end.
drop_password_type(Server, Hash) ->
F = fun() ->
Keys = mnesia:select(passwd, [{{'_', '$1', '_'},
[{'==', {element, 3, '$1'}, Hash},
{'==', {element, 2, '$1'}, Server}],
['$1']}]),
lists:foreach(fun(Key) -> mnesia:delete({passwd, Key}) end, Keys),
ok
end,
case mnesia:transaction(F) of
{atomic, ok} ->
ok;
{aborted, Reason} ->
?ERROR_MSG("Mnesia transaction failed: ~p", [Reason]),
{error, db_failure}
end.
remove_user(User, Server) ->
F = fun () ->
Keys = mnesia:select(passwd, [{{'_', '$1', '_'},
[{'==', {element, 1, '$1'}, User},
{'==', {element, 2, '$1'}, Server}],
['$1']}]),
lists:foreach(fun(Key) -> mnesia:delete({passwd, Key}) end, Keys),
mnesia:dirty_update_counter(reg_users_counter, Server, -1),
ok
end,
case mnesia:transaction(F) of
{atomic, ok} ->
ok;
{aborted, Reason} ->
?ERROR_MSG("Mnesia transaction failed: ~p", [Reason]),
{error, db_failure}
end.
need_transform(#reg_users_counter{}) ->
false;
need_transform({passwd, {_U, _S, _T}, _Pass}) ->
false;
need_transform({passwd, {_U, _S}, _Pass}) ->
true.
transform({passwd, {U, S}, Pass})
when is_list(U) orelse is_list(S) orelse is_list(Pass) ->
NewUS = {iolist_to_binary(U), iolist_to_binary(S)},
NewPass = case Pass of
#scram{storedkey = StoredKey,
serverkey = ServerKey,
salt = Salt} ->
Pass#scram{
storedkey = iolist_to_binary(StoredKey),
serverkey = iolist_to_binary(ServerKey),
salt = iolist_to_binary(Salt)};
_ ->
iolist_to_binary(Pass)
end,
transform(#passwd{us = NewUS, password = NewPass});
transform(#passwd{us = {U, S}, password = Password} = P)
when is_binary(Password) ->
P#passwd{us = {U, S, plain}, password = Password};
transform({passwd, {U, S}, {scram, SK, SEK, Salt, IC}}) ->
#passwd{us = {U, S, sha},
password = #scram{storedkey = SK, serverkey = SEK,
salt = Salt, hash = sha, iterationcount = IC}};
transform(#passwd{us = {U, S}, password = #scram{hash = Hash}} = P) ->
P#passwd{us = {U, S, Hash}};
transform(Other) -> Other.
import(LServer, [LUser, Password, _TimeStamp]) ->
mnesia:dirty_write(
#passwd{us = {LUser, LServer}, password = Password}).
serialize(LServer, BatchSize, undefined) ->
Users = lists:uniq(lists:sort(mnesia:dirty_select(passwd, ets:fun2ms(
fun(#passwd{us = {U, S, _}}) when S == LServer -> U end)))),
ReadPass =
fun(U) ->
Passwords = mnesia:dirty_select(passwd, ets:fun2ms(
fun(#passwd{us = {U2, S, _}, password = Pass}) when S == LServer, U2 == U ->
Pass
end)),
P = lists:map(
fun(#scram{hash = Hash, salt = Salt, storedkey = SK, serverkey = SEK, iterationcount = IC}) ->
{Hash, SK, SEK, Salt, IC};
(Plain) -> Plain
end, Passwords),
{ok, #serialize_auth_v1{serverhost = LServer, username = U, passwords = P}}
end,
ejabberd_db_serialize:iter_records([{
fun() ->
case Users of
[H | T] -> {ok, H, T};
_ -> fin
end
end,
fun([]) -> fin;
([H | T]) -> {ok, H, T}
end, ReadPass}], [], BatchSize);
serialize(_LServer, BatchSize, Key) ->
ejabberd_db_serialize:iter_records(Key, [], BatchSize).
deserialize_start(LServer) ->
mnesia:transaction(
fun() ->
Keys = mnesia:select(passwd,
ets:fun2ms(
fun(#passwd{us = US}) when element(2, US) == LServer -> US end)),
lists:foreach(fun(Key) -> mnesia:delete(passwd, Key, write) end, Keys)
end),
ok.
deserialize(LServer, Batch) ->
F = fun() ->
lists:foreach(
fun(#serialize_auth_v1{username = U, passwords = P}) ->
lists:foreach(
fun({Hash, SK, SEK, Salt, IC}) ->
mnesia:write(#passwd{us = {U, LServer, Hash},
password = #scram{hash = Hash, serverkey = SEK, storedkey = SK,
salt = Salt, iterationcount = IC}});
(Plain) ->
mnesia:write(#passwd{us = {U, LServer, plain}, password = Plain})
end, P)
end, Batch)
end,
case mnesia:transaction(F) of
{atomic, _} -> ok;
{aborted, Reason} ->
{error, io_lib:format("Error when writing passwords data: ~p", [Reason])}
end.