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actors.pl
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actors.pl
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/* Part of SWI-Prolog
Author: Jan Wielemaker
E-mail: J.Wielemaker@vu.nl
WWW: http://www.swi-prolog.org
Copyright (c) 2017, VU University Amsterdam
All rights reserved.
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in
the documentation and/or other materials provided with the
distribution.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
POSSIBILITY OF SUCH DAMAGE.
*/
:- module(actors,
[ start/0,
flush/0,
spawn/1, % :Goal
spawn/2, % :Goal, -Pid
spawn/3, % :Goal, -Pid, +Options
send/2, % +Pid, +Message
(!)/2, % +Pid, +Message
exit/1, % +Reason
exit/2, % +Pid, +Reason
receive/1, % +ReceiveClauses
link/2, % +Parent, +Child
self/1, % -Pid
register/2, % +Alias, +Pid
unregister/1, % +Alias
whereis/2, % +Alias, -Pid
dump_backtrace/2, % +Pid, +Depth
dump_queue/2, % +Pid, -Queue
op(1000, xfx, when),
op(800, xfx, !)
]).
:- use_module(library(debug)).
:- use_module(library(option)).
:- use_module(library(lists)).
:- use_module(library(time)).
:- use_module(library(error)).
:- use_module(library(broadcast)).
:- use_module(library(random)).
pid_uuid(Id) :-
Max is 1<<128,
random_between(0, Max, Num),
atom_number(Id, Num).
:- meta_predicate
spawn(0),
spawn(0, -),
spawn(0, -, +),
receive(:).
% :- debug(dispatch).
:- multifile
hook_self/1,
hook_spawn/3,
hook_send/2,
hook_goal/3.
/*******************************
* STATE *
*******************************/
:- dynamic
registered/3, % Name, Parent, Child
dispatch_queue/1, % MessageQueue
linked_child/2, % Parent, Child
exit_reason/2. % Pid, Reason
:- thread_local
stdout/1. % Pid
/*******************************
* CONTROL *
*******************************/
%! start is det.
%! start(+Options) is det.
%
% Start the message dispatcher for the current process. Options are:
%
% - queues(+Count)
% Number of queues used to dispatch messages. Currently must
% be `1`.
% - workers(+Count)
% Number of workers used to activate engines. Default `5`.
%
% @tbd Use multiple queues
start :-
start([]).
start(_) :-
dispatch_queue(_),
!.
start(Options) :-
option(queues(Queues), Options, 1),
option(workers(Workers), Options, 5),
make_dispatch_queues(Queues),
make_workers(Workers).
make_dispatch_queues(N) :-
forall(between(1, N, _),
( message_queue_create(Queue, []),
assertz(dispatch_queue(Queue))
)).
next_dispatch_queue(Q) :-
dispatch_queue(Q).
make_workers(N) :-
dispatch_queue(Queue),
forall(between(1, N, _),
make_worker(Queue, [])).
make_worker(Queue, Options) :-
gensym(dispatch, Alias),
thread_create(work(Queue, Options), _,
[ alias(Alias),
detached(true)
]).
work(Queue, Options) :-
( thread_get_message(Queue, event(Pid, Type, Message), Options)
-> debug(dispatch(queue), 'Got ~p', [event(Pid, Type, Message)]),
( dispatch_event(Pid, Type, Message)
-> true
; debug(dispatch(dispatch), 'FAILED ~p', [event(Pid, Type, Message)])
),
work(Queue, Options)
; true % no work, stop
).
dispatch_event(Pid, user, Message) :-
nonvar(Message),
Message = '$exit'(Reason),
!,
exit_engine(Pid, Reason).
dispatch_event(Pid, user, Message) :-
catch(post_true(Pid, Message), E,
post_failed(E, Pid, Message)).
post_failed(_, _, after(_)) :-
!.
post_failed(_, Pid, _) :-
exit_reason(Pid, _),
!.
post_failed(E, Pid, Message) :-
( debugging(dispatch(delivery))
-> Level = warning
; Level = silent
),
print_message(Level, actor(delivery_failed(Pid, Message, E))).
post_true(Pid, Message) :-
debug(dispatch(wakeup), 'Wakeup ~p for ~p', [Pid, Message]),
engine_post(Pid, Message, Reply),
debug(dispatch(wakeup), 'Wakeup ~p replied ~p', [Pid, Reply]),
( nonvar(Reply),
Reply = timeout(TimeOut, Deadline)
-> schedule_timeout(Pid, TimeOut, Deadline)
; assertion(Reply == true)
).
%! schedule_workers(+Queue)
%
% If Queue has pending messages, consider extending the number of
% worker threads.
schedule_workers(Queue) :-
message_queue_property(Queue, size(Size)),
( Size == 0
-> true
; consider_worker_pool(Queue)
).
consider_worker_pool(Queue) :-
catch(thread_send_message(worker_pool_manager, consider(Queue)),
error(existence_error(message_queue, worker_pool_manager), _),
with_mutex(scheduler,
consider_worker_pool_start(Queue))).
consider_worker_pool_start(Queue) :-
start_worker_pool_manager,
thread_send_message(worker_pool_manager, consider(Queue)).
start_worker_pool_manager :-
thread_create(worker_pool_manager, _, [alias(worker_pool_manager), detached(true)]).
worker_pool_manager :-
thread_get_message(Message),
worker_pool_manager(Message),
worker_pool_manager.
worker_pool_manager(consider(Queue)) :-
make_worker(Queue, [timeout(1)]).
%! exit(+Reason)
%
% Exit the current process.
exit(Reason) :-
self_local(Self),
asserta(exit_reason(Self, Reason)),
abort.
%! exit(+Pid, +Reason)
exit(Pid, Reason) :-
send(Pid, '$exit'(Reason)).
%! exit_engine(+Pid) is det.
%! exit_engine(+Pid, +Reason) is det.
%
% Cause a process to exit with Reason.
%
% @bug Currently stops a possibly running engine using the exception
% `abort`. Eventually, this should use abort/0, but
% engine_next_reified/2 is based on catch/3 and thus cannot catch the
% aborted exception.
exit_engine(Pid, Reason) :-
asserta(exit_reason(Pid, Reason)),
catch(exit_engine(Pid),
error(existence_error(_,_), _),
true).
exit_engine(Pid) :-
thread_property(Pid, engine(true)),
( thread_property(Pid, status(running))
-> debug(dispatch(exit), 'Aborting engine ~p', [Pid]),
catch(thread_signal(Pid, throw(abort)), _, true),
engine_next_reified(Pid, _0Status),
debug(dispatch(exit), 'Status: ~p~n', [_0Status])
; true
),
engine_destroy(Pid).
exit_engine(Pid) :-
debug(dispatch(exit), 'Aborting thread ~p', [Pid]),
thread_signal(Pid, abort),
thread_join(Pid, Status),
debug(dispatch(exit), 'Status: ~p~n', [Status]).
/*******************************
* TIMEOUT *
*******************************/
%! schedule_timeout(+Pid, +TimeOut, +Deadline)
%
% Add a timeout(TimeOut) message to the queue of Pid at Deadline.
schedule_timeout(Pid, TimeOut, Deadline) :-
catch(thread_send_message(scheduler, timeout(Pid, TimeOut, Deadline)),
error(existence_error(message_queue, scheduler), _),
with_mutex(scheduler,
schedule_timeout_start(Pid, TimeOut, Deadline))).
schedule_timeout_start(Pid, TimeOut, Deadline) :-
start_scheduler,
thread_send_message(scheduler, timeout(Pid, TimeOut, Deadline)).
start_scheduler :-
thread_create(scheduler, _, [alias(scheduler), detached(true)]).
scheduler :-
thread_get_message(Message),
schedule(Message),
scheduler.
schedule(timeout(Pid, TimeOut, Deadline)) :-
alarm_at(Deadline, send(Pid, after(TimeOut)), _,
[ remove(true)
]).
/*******************************
* PROCESSES *
*******************************/
%! spawn(:Goal) is det.
%! spawn(:Goal, -Pid) is det.
%! spawn(:Goal, -Pid, +Options) is det.
%
% Spawn a new process. Options:
%
% - monitor(+BoolOrPid)
% Send monitor events to the creator if the argument is `true`
% or the provided `Pid`.
% - link(+Bool)
% If true, exit the spawned process if we exit.
% - alias(+Atom)
% Register the process under this name.
spawn(Goal) :-
spawn(Goal, _, []).
spawn(Goal, Engine) :-
spawn(Goal, Engine, []).
spawn(Goal, Engine, Options) :-
hook_goal(Goal, Goal1, Options),
!,
spawn2(Goal1, Engine, Options).
spawn(Goal, Engine, Options) :-
spawn2(Goal, Engine, Options).
spawn2(Goal, Engine, Options) :-
select_option(monitor(true), Options, Options1),
!,
self(Me),
spawn3(Goal, Engine, [monitor(Me)|Options1]).
spawn2(Goal, Engine, Options) :-
spawn3(Goal, Engine, Options).
spawn3(Goal, Engine, Options) :-
select_option(alias(Alias), Options, Options1),
!,
spawn4(Goal, Engine, Options1),
register(Alias, Engine).
spawn3(Goal, Engine, Options) :-
spawn4(Goal, Engine, Options).
spawn4(Goal, Engine, Options) :-
hook_spawn(Goal, Engine, Options),
!.
spawn4(Goal, Engine, Options) :-
make_pid(Pid),
get_stdout(Stdout),
engine_create(true, run(Goal, Stdout, Options), Engine, [alias(Pid)|Options]),
( option(link(true), Options)
-> self(Me),
link(Me, Engine)
; true
),
send(Engine, '$start').
get_stdout(Stdout) :-
stdout(Stdout),
!.
get_stdout(null).
make_pid(Pid) :-
pid_uuid(Pid0),
sub_atom(Pid0, 0, 8, _, Pid).
self(Pid) :-
hook_self(Me),
!,
Me = Pid.
self(Pid) :-
self_local(Pid).
self_local(Pid) :-
engine_self(Me),
!,
Me = Pid.
self_local(thread(Tid)) :-
thread_self(Tid).
run(Goal, Stdout, Options) :-
inherit_stdout(Stdout),
setup_call_catcher_cleanup(
true,
once(Goal),
Catcher,
down(Catcher, Options)).
inherit_stdout(null) :-
!.
inherit_stdout(Stdout) :-
assertz(stdout(Stdout)).
down(Reason, Options) :-
down_reason(Reason, Reason1),
self(Self),
debug(dispatch(down), '~p down on ~p', [Self, Reason1]),
( option(monitor(Pid), Options)
-> send(Pid, down(Self, Reason1))
; true
),
self_local(SelfLocal),
retractall(registered(_, _, SelfLocal)),
broadcast(actor(down, SelfLocal)),
destroy_children(Self).
down_reason(_, Reason) :-
self_local(Self),
retract(exit_reason(Self, Reason)).
down_reason(Reason, Reason).
destroy_children(Me) :-
forall(retract(linked_child(Me, Child)),
exit(Child, normal)).
%! link(+Parent, +Child) is det.
%
% Define that if Parent goes down, Child is destroyed.
link(Parent, Child) :-
assertz(linked_child(Parent, Child)).
receive(Clauses) :-
process_queue(Queue0),
self(Self),
debug(dispatch(receive), '~p queue: ~p', [Self, Queue0]),
( select(Message, Queue0, Queue1),
receive_clause(Clauses, Message, Body)
-> nb_setval(event_queue, Queue1),
call_body(Clauses, Body)
; timeout(Clauses, Time)
-> debug(dispatch(timeout), '~p: wait for ~p sec.', [Self, Time]),
process_get_message(New, Time),
append(Queue0, [New], Queue2),
b_setval(event_queue, Queue2),
receive(Clauses)
; process_get_message(New),
append(Queue0, [New], Queue2),
b_setval(event_queue, Queue2),
receive(Clauses)
).
call_body(M:_, Body) :-
debug(dispatch(call), 'Calling ~p', [M:Body]),
call(M:Body).
process_queue(Queue) :-
nb_current(event_queue, Queue),
!.
process_queue([]).
%! process_get_message(-Message) is det.
%! process_get_message(-Message, +TimeOut, -TimedOut)
%
% Wait for a message. If no message arrived before TimeOut unify
% TimedOut with `true`.
process_get_message(Message) :-
engine_self(_),
!,
( nb_current(event_queue, _)
-> engine_yield(true)
; b_setval(event_queue, [])
),
engine_fetch(Message0),
service_message(Message0, Message).
process_get_message(Message) :-
thread_get_message(!(Message)).
process_get_message(Message, TimeOut) :-
TimeOut =:= 0,
!,
self(Self),
send(Self, after(TimeOut)),
process_get_message(Message).
process_get_message(Message, TimeOut) :-
engine_self(_),
!,
( nb_current(event_queue, _)
-> get_time(Now),
Deadline is Now+TimeOut,
engine_yield(timeout(TimeOut, Deadline))
; b_setval(event_queue, [])
),
engine_fetch(Message0),
( nonvar(Message0),
Message0 = after(_)
-> Message = Message0
; service_message(Message0, Message)
).
process_get_message(Message, TimeOut) :-
thread_self(Self),
( thread_get_message(Self, !(Message), [timeout(TimeOut)])
-> true
; Message = after(TimeOut)
).
service_message(Message0, Message) :-
nonvar(Message0),
service_message2(Message0, Reply), !,
engine_yield(Reply),
engine_fetch(Message1),
service_message(Message1, Message).
service_message(Message, Message).
service_message2(after(TimeOut), true) :-
TimeOut > 0.
service_message2('$start', true).
service_message2('$backtrace'(Depth), true) :-
set_prolog_flag(backtrace_goal_depth, 10),
backtrace(Depth).
service_message2('$queue', Queue) :-
process_queue(Queue).
receive_clause(_M:{Clauses}, Message, Body) :-
receive_clause2(Clauses, Message, Body).
receive_clause2((C1;C2), Message, Body) :-
!,
( receive_clause2(C1, Message, Body)
; receive_clause2(C2, Message, Body)
).
receive_clause2((HeadAndGuard -> Body), Message, Body) :- !,
( subsumes_term(when(Head,Guard), HeadAndGuard)
-> when(Head,Guard) = HeadAndGuard,
subsumes_term(Head, Message),
Head = Message,
catch(Guard, _, fail) % As in Erlang, the guard will fail if the goal fails or if it raises an exception.
; subsumes_term(HeadAndGuard, Message),
HeadAndGuard = Message
),
debug(dispatch(match), 'Message: ~p, body: ~p', [Message, Body]).
%! timeout(:Clauses, -Timeout) is semidet.
%
% True when Clauses contains a after(TimeOut) message.
timeout(_M:{Clauses}, Timeout) :-
timeout(Clauses, Timeout).
timeout((C1;C2), Timeout) :-
!,
( timeout(C1, Timeout)
-> true
; timeout(C2, Timeout)
).
timeout((After -> _Body), Timeout) :-
subsumes_term(after(_), After),
after(Timeout) = After.
%! send(+Pid, +Message) is det.
%! !(+Pid, +Message) is det.
%
% Send Message to Pid.
Pid ! Message :-
send(Pid, Message).
send(Pid, Message) :-
( var(Message)
-> instantiation_error(Message)
; var(Pid)
-> instantiation_error(Pid)
).
send(Alias, Message) :-
registered(Alias, _SelfLocal, Pid),
% Commented out so that the node resident ping server will work,
% TODO: Will have to deal with this later
%self_local(SelfLocal),
!,
debug(dispatch(send), 'Sending to pid ~p registred as ~p', [Pid, Alias]),
send(Pid, Message).
send(Pid, Message) :-
hook_send(Pid, Message),
!.
send(thread(Tid), Message) :-
!,
thread_send_message(Tid, !(Message)).
send(Pid, Message) :-
send_local(Pid, user, Message).
send_local(Pid, Type, Message) :-
start,
next_dispatch_queue(Queue),
debug(dispatch(send), 'Sending ~p ! ~p', [Pid, Message]),
schedule_workers(Queue),
thread_send_message(Queue, event(Pid, Type, Message)).
%! register(+Alias, +Pid) is det.
%! unregister(?Alias) is det.
%! whereis(?Alias, Pid) is det.
%
% Register the given Pid under the alias Alias.
register(Alias, Pid) :-
must_be(atom, Alias),
self_local(Self),
asserta(registered(Alias, Self, Pid)).
unregister(Alias) :-
self_local(Self),
retractall(registered(Alias, Self, _)).
whereis(Alias, Pid) :-
must_be(atom, Alias),
registered(Alias, _Self, Pid),
!.
whereis(_Alias, undefined).
%! flush
%
% Print all pending messages
flush :-
thread_self(Thread),
( Thread == main
-> flush1(Thread)
; flush2
).
flush1(Thread) :-
thread_get_message(Thread, !(X), [timeout(0)]),
!,
print_message(informational, actor(received(X))),
flush1(Thread).
flush1(_Thread).
flush2 :-
receive({
after(0) -> true;
Message ->
term_to_atom(Message, Atom),
atomics_to_string(['Shell got ', Atom], MessageString),
pengine_output(MessageString),
flush2
}).
/*******************************
* DEBUG *
*******************************/
%! dump_backtrace(+Target, +Depth) is det.
%
% Dump a backtrace for a suspended process in the console of the
% process.
%
% @arg Target is either a registered alias name or the integer id of
% an engine.
% @bug The backtrace should appear in the caller's process.
dump_backtrace(Target, Depth) :-
debug_target(Target, E), !,
engine_post(E, '$backtrace'(Depth), _).
%! dump_queue(+Target, -Queue) is det.
%
% True when Queue is the content of the message queue for the given
% process.
%
% @arg Target is either a registered alias name or the integer id of
% an engine.
dump_queue(Target, Queue) :-
debug_target(Target, E),
engine_post(E, '$queue', Queue).
debug_target(Name, Engine) :-
findall(Pid, registered(Name, Self, Pid), Pids),
Pids \== [],
!,
( Pids = [Engine]
-> true
; registered(Name, Self, Pid),
self_local(Self)
-> Engine = Pid
; print_message(error, actor(ambiguous_target(Name, Pids))),
fail
).
debug_target(Id, Engine) :-
thread_property(Engine, id(Id)).
user:portray(Engine) :-
is_engine(Engine),
registered(Alias, _, Engine),
writeq(Alias).
/*******************************
* MESSAGES *
*******************************/
:- multifile
prolog:message//1.
prolog:message(actor(Message)) -->
message(Message).
message(received(X)) -->
[ 'Got ~p'-[X] ].
message(delivery_failed(Pid, Message, E)) -->
[ 'Delivery to ~p of ~p failed:'-[Pid, Message], nl ],
'$messages':translate_message(E).
message(ambiguous_target(Target, Pids)) -->
[ 'Ambigous debug target ~p: matches ~p'-[Target, Pids] ].