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xmpp.chapril.org-ejabberd/src/ejabberd_hooks.erl

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%%%----------------------------------------------------------------------
%%% File : ejabberd_hooks.erl
%%% Author : Alexey Shchepin <alexey@process-one.net>
%%% Purpose : Manage hooks
%%% Created : 8 Aug 2004 by Alexey Shchepin <alexey@process-one.net>
%%%
%%%
%%% ejabberd, Copyright (C) 2002-2015 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.
%%%
2014-02-22 11:27:40 +01:00
%%% 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_hooks).
-author('alexey@process-one.net').
-behaviour(gen_server).
%% External exports
-export([start_link/0,
add/3,
add/4,
add/5,
add_dist/5,
add_dist/6,
delete/3,
delete/4,
delete/5,
delete_dist/5,
delete_dist/6,
run/2,
run/3,
run_fold/3,
run_fold/4,
get_handlers/2]).
-export([delete_all_hooks/0]).
%% gen_server callbacks
-export([init/1,
handle_call/3,
handle_cast/2,
code_change/3,
handle_info/2,
terminate/2]).
-include("logger.hrl").
%% Timeout of 5 seconds in calls to distributed hooks
-define(TIMEOUT_DISTRIBUTED_HOOK, 5000).
-record(state, {}).
-type local_hook() :: { Seq :: integer(), Module :: atom(), Function :: atom()}.
-type distributed_hook() :: { Seq :: integer(), Node :: atom(), Module :: atom(), Function :: atom()}.
%%%----------------------------------------------------------------------
%%% API
%%%----------------------------------------------------------------------
start_link() ->
gen_server:start_link({local, ejabberd_hooks}, ejabberd_hooks, [], []).
-spec add(atom(), fun(), number()) -> ok.
%% @doc See add/4.
add(Hook, Function, Seq) when is_function(Function) ->
add(Hook, global, undefined, Function, Seq).
-spec add(atom(), HostOrModule :: binary() | atom(), fun() | atom() , number()) -> ok.
add(Hook, Host, Function, Seq) when is_function(Function) ->
add(Hook, Host, undefined, Function, Seq);
%% @doc Add a module and function to this hook.
%% The integer sequence is used to sort the calls: low number is called before high number.
add(Hook, Module, Function, Seq) ->
add(Hook, global, Module, Function, Seq).
-spec add(atom(), binary() | global, atom(), atom() | fun(), number()) -> ok.
add(Hook, Host, Module, Function, Seq) ->
gen_server:call(ejabberd_hooks, {add, Hook, Host, Module, Function, Seq}).
-spec add_dist(atom(), atom(), atom(), atom() | fun(), number()) -> ok.
add_dist(Hook, Node, Module, Function, Seq) ->
gen_server:call(ejabberd_hooks, {add, Hook, global, Node, Module, Function, Seq}).
-spec add_dist(atom(), binary() | global, atom(), atom(), atom() | fun(), number()) -> ok.
add_dist(Hook, Host, Node, Module, Function, Seq) ->
gen_server:call(ejabberd_hooks, {add, Hook, Host, Node, Module, Function, Seq}).
-spec delete(atom(), fun(), number()) -> ok.
%% @doc See del/4.
delete(Hook, Function, Seq) when is_function(Function) ->
delete(Hook, global, undefined, Function, Seq).
-spec delete(atom(), binary() | atom(), atom() | fun(), number()) -> ok.
delete(Hook, Host, Function, Seq) when is_function(Function) ->
delete(Hook, Host, undefined, Function, Seq);
%% @doc Delete a module and function from this hook.
%% It is important to indicate exactly the same information than when the call was added.
delete(Hook, Module, Function, Seq) ->
delete(Hook, global, Module, Function, Seq).
-spec delete(atom(), binary() | global, atom(), atom() | fun(), number()) -> ok.
delete(Hook, Host, Module, Function, Seq) ->
gen_server:call(ejabberd_hooks, {delete, Hook, Host, Module, Function, Seq}).
-spec delete_dist(atom(), atom(), atom(), atom() | fun(), number()) -> ok.
delete_dist(Hook, Node, Module, Function, Seq) ->
delete_dist(Hook, global, Node, Module, Function, Seq).
-spec delete_dist(atom(), binary() | global, atom(), atom(), atom() | fun(), number()) -> ok.
delete_dist(Hook, Host, Node, Module, Function, Seq) ->
gen_server:call(ejabberd_hooks, {delete, Hook, Host, Node, Module, Function, Seq}).
-spec delete_all_hooks() -> true.
%% @doc Primarily for testing / instrumentation
delete_all_hooks() ->
gen_server:call(ejabberd_hooks, {delete_all}).
-spec get_handlers(atom(), binary() | global) -> [local_hook() | distributed_hook()].
%% @doc Returns currently set handler for hook name
get_handlers(Hookname, Host) ->
gen_server:call(ejabberd_hooks, {get_handlers, Hookname, Host}).
-spec run(atom(), list()) -> ok.
%% @doc Run the calls of this hook in order, don't care about function results.
%% If a call returns stop, no more calls are performed.
run(Hook, Args) ->
run(Hook, global, Args).
-spec run(atom(), binary() | global, list()) -> ok.
run(Hook, Host, Args) ->
case ets:lookup(hooks, {Hook, Host}) of
[{_, Ls}] ->
run1(Ls, Hook, Args);
[] ->
ok
end.
-spec run_fold(atom(), any(), list()) -> any().
%% @doc Run the calls of this hook in order.
%% The arguments passed to the function are: [Val | Args].
%% The result of a call is used as Val for the next call.
%% If a call returns 'stop', no more calls are performed and 'stopped' is returned.
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%% If a call returns {stop, NewVal}, no more calls are performed and NewVal is returned.
run_fold(Hook, Val, Args) ->
run_fold(Hook, global, Val, Args).
-spec run_fold(atom(), binary() | global, any(), list()) -> any().
run_fold(Hook, Host, Val, Args) ->
case ets:lookup(hooks, {Hook, Host}) of
[{_, Ls}] ->
run_fold1(Ls, Hook, Val, Args);
[] ->
Val
end.
%%%----------------------------------------------------------------------
%%% Callback functions from gen_server
%%%----------------------------------------------------------------------
%%----------------------------------------------------------------------
%% Func: init/1
%% Returns: {ok, State} |
%% {ok, State, Timeout} |
%% ignore |
%% {stop, Reason}
%%----------------------------------------------------------------------
init([]) ->
ets:new(hooks, [named_table]),
{ok, #state{}}.
%%----------------------------------------------------------------------
%% Func: handle_call/3
%% Returns: {reply, Reply, State} |
%% {reply, Reply, State, Timeout} |
%% {noreply, State} |
%% {noreply, State, Timeout} |
%% {stop, Reason, Reply, State} | (terminate/2 is called)
%% {stop, Reason, State} (terminate/2 is called)
%%----------------------------------------------------------------------
handle_call({add, Hook, Host, Module, Function, Seq}, _From, State) ->
HookFormat = {Seq, Module, Function},
Reply = handle_add(Hook, Host, HookFormat),
{reply, Reply, State};
handle_call({add, Hook, Host, Node, Module, Function, Seq}, _From, State) ->
HookFormat = {Seq, Node, Module, Function},
Reply = handle_add(Hook, Host, HookFormat),
{reply, Reply, State};
handle_call({delete, Hook, Host, Module, Function, Seq}, _From, State) ->
HookFormat = {Seq, Module, Function},
Reply = handle_delete(Hook, Host, HookFormat),
{reply, Reply, State};
handle_call({delete, Hook, Host, Node, Module, Function, Seq}, _From, State) ->
HookFormat = {Seq, Node, Module, Function},
Reply = handle_delete(Hook, Host, HookFormat),
{reply, Reply, State};
handle_call({get_handlers, Hook, Host}, _From, State) ->
Reply = case ets:lookup(hooks, {Hook, Host}) of
[{_, Handlers}] -> Handlers;
[] -> []
end,
{reply, Reply, State};
handle_call({delete_all}, _From, State) ->
Reply = ets:delete_all_objects(hooks),
{reply, Reply, State};
handle_call(_Request, _From, State) ->
Reply = ok,
{reply, Reply, State}.
-spec handle_add(atom(), atom(), local_hook() | distributed_hook()) -> ok.
%% in-memory storage operation: Handle adding hook in ETS table
handle_add(Hook, Host, El) ->
case ets:lookup(hooks, {Hook, Host}) of
[{_, Ls}] ->
case lists:member(El, Ls) of
true ->
ok;
false ->
NewLs = lists:merge(Ls, [El]),
ets:insert(hooks, {{Hook, Host}, NewLs}),
ok
end;
[] ->
NewLs = [El],
ets:insert(hooks, {{Hook, Host}, NewLs}),
ok
end.
-spec handle_delete(atom(), atom(), local_hook() | distributed_hook()) -> ok.
%% in-memory storage operation: Handle deleting hook from ETS table
handle_delete(Hook, Host, El) ->
case ets:lookup(hooks, {Hook, Host}) of
[{_, Ls}] ->
NewLs = lists:delete(El, Ls),
ets:insert(hooks, {{Hook, Host}, NewLs}),
ok;
[] ->
ok
end.
%%----------------------------------------------------------------------
%% Func: handle_cast/2
%% Returns: {noreply, State} |
%% {noreply, State, Timeout} |
%% {stop, Reason, State} (terminate/2 is called)
%%----------------------------------------------------------------------
handle_cast(_Msg, State) ->
{noreply, State}.
%%----------------------------------------------------------------------
%% Func: handle_info/2
%% Returns: {noreply, State} |
%% {noreply, State, Timeout} |
%% {stop, Reason, State} (terminate/2 is called)
%%----------------------------------------------------------------------
handle_info(_Info, State) ->
{noreply, State}.
%%----------------------------------------------------------------------
%% Func: terminate/2
%% Purpose: Shutdown the server
%% Returns: any (ignored by gen_server)
%%----------------------------------------------------------------------
terminate(_Reason, _State) ->
ok.
code_change(_OldVsn, State, _Extra) ->
{ok, State}.
%%%----------------------------------------------------------------------
%%% Internal functions
%%%----------------------------------------------------------------------
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-spec run1([local_hook()|distributed_hook()], atom(), list()) -> ok.
run1([], _Hook, _Args) ->
ok;
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%% Run distributed hook on target node.
%% It is not attempted again in case of failure. Next hook will be executed
run1([{_Seq, Node, Module, Function} | Ls], Hook, Args) ->
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%% MR: Should we have a safe rpc, like we have a safe apply or is bad_rpc enough ?
case rpc:call(Node, Module, Function, Args, ?TIMEOUT_DISTRIBUTED_HOOK) of
timeout ->
?ERROR_MSG("Timeout on RPC to ~p~nrunning hook: ~p",
[Node, {Hook, Args}]),
run1(Ls, Hook, Args);
{badrpc, Reason} ->
?ERROR_MSG("Bad RPC error to ~p: ~p~nrunning hook: ~p",
[Node, Reason, {Hook, Args}]),
run1(Ls, Hook, Args);
stop ->
?INFO_MSG("~nThe process ~p in node ~p ran a hook in node ~p.~n"
"Stop.", [self(), node(), Node]), % debug code
ok;
Res ->
?INFO_MSG("~nThe process ~p in node ~p ran a hook in node ~p.~n"
"The response is:~n~s", [self(), node(), Node, Res]), % debug code
run1(Ls, Hook, Args)
end;
run1([{_Seq, Module, Function} | Ls], Hook, Args) ->
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Res = safe_apply(Module, Function, Args),
case Res of
{'EXIT', Reason} ->
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?ERROR_MSG("~p~nrunning hook: ~p", [Reason, {Hook, Args}]),
run1(Ls, Hook, Args);
stop ->
ok;
_ ->
run1(Ls, Hook, Args)
end.
run_fold1([], _Hook, Val, _Args) ->
Val;
run_fold1([{_Seq, Node, Module, Function} | Ls], Hook, Val, Args) ->
case rpc:call(Node, Module, Function, [Val | Args], ?TIMEOUT_DISTRIBUTED_HOOK) of
{badrpc, Reason} ->
?ERROR_MSG("Bad RPC error to ~p: ~p~nrunning hook: ~p",
[Node, Reason, {Hook, Args}]),
run_fold1(Ls, Hook, Val, Args);
timeout ->
?ERROR_MSG("Timeout on RPC to ~p~nrunning hook: ~p",
[Node, {Hook, Args}]),
run_fold1(Ls, Hook, Val, Args);
stop ->
stopped;
{stop, NewVal} ->
?INFO_MSG("~nThe process ~p in node ~p ran a hook in node ~p.~n"
"Stop, and the NewVal is:~n~p", [self(), node(), Node, NewVal]), % debug code
NewVal;
NewVal ->
?INFO_MSG("~nThe process ~p in node ~p ran a hook in node ~p.~n"
"The NewVal is:~n~p", [self(), node(), Node, NewVal]), % debug code
run_fold1(Ls, Hook, NewVal, Args)
end;
run_fold1([{_Seq, Module, Function} | Ls], Hook, Val, Args) ->
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Res = safe_apply(Module, Function, [Val | Args]),
case Res of
{'EXIT', Reason} ->
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?ERROR_MSG("~p~nrunning hook: ~p", [Reason, {Hook, Args}]),
run_fold1(Ls, Hook, Val, Args);
stop ->
stopped;
{stop, NewVal} ->
NewVal;
NewVal ->
run_fold1(Ls, Hook, NewVal, Args)
end.
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safe_apply(Module, Function, Args) ->
if is_function(Function) ->
catch apply(Function, Args);
true ->
catch apply(Module, Function, Args)
end.