@@ -56,6 +56,7 @@ is distributed under the [ISC license](LICENSE.md).
5656 - [ Programming with transactional data structures] ( #programming-with-transactional-data-structures )
5757 - [ The dining philosophers problem] ( #the-dining-philosophers-problem )
5858 - [ A transactional LRU cache] ( #a-transactional-lru-cache )
59+ - [ The sleeping barbers problem] ( #the-sleeping-barbers-problem )
5960 - [ Programming with primitive operations] ( #programming-with-primitive-operations )
6061- [ Designing lock-free algorithms with k-CAS] ( #designing-lock-free-algorithms-with-k-cas )
6162 - [ Minimize accesses] ( #minimize-accesses )
@@ -940,6 +941,164 @@ val a_cache : (int, string) cache =
940941As an exercise, implement an operation to ` remove ` associations from a cache and
941942an operation to change the capacity of the cache.
942943
944+ #### The sleeping barbers problem
945+
946+ The
947+ [ sleeping barber problem] ( https://en.wikipedia.org/wiki/Sleeping_barber_problem )
948+ is another classic communication and synchronization problem. Let's write a
949+ solution using ** kcas** .
950+
951+ ``` ocaml
952+ module Barbershop : sig
953+ type ('barber, 'customer) t
954+ val create : int -> ('b, 'c) t
955+ val get_barber_opt : xt:'x Xt.t -> ('b, 'c) t -> 'b option
956+ val try_enqueue : xt:'x Xt.t -> ('b, 'c) t -> 'c -> bool
957+ val get_customer_opt : xt:'x Xt.t -> ('b, 'c) t -> 'c option
958+ val sleep : xt:'x Xt.t -> ('b, 'c) t -> 'b -> unit
959+ val is_closed : xt:'x Xt.t -> ('b, 'c) t -> bool
960+ val close : xt:'x Xt.t -> ('b, 'c) t -> unit
961+ end = struct
962+ type ('barber, 'customer) t = {
963+ sleeping_barbers : 'barber Queue.t;
964+ waiting_customers : 'customer Queue.t;
965+ is_closed : bool Loc.t;
966+ }
967+
968+ let create capacity =
969+ let sleeping_barbers = Queue.create ()
970+ and waiting_customers = Queue.create ~capacity ()
971+ and is_closed = Loc.make false in
972+ { sleeping_barbers; waiting_customers; is_closed }
973+
974+ let get_barber_opt ~xt bs =
975+ Queue.Xt.take_opt ~xt bs.sleeping_barbers
976+
977+ let try_enqueue ~xt bs customer =
978+ not (Xt.get ~xt bs.is_closed) &&
979+ Queue.Xt.try_add ~xt customer bs.waiting_customers
980+
981+ let get_customer_opt ~xt bs =
982+ Queue.Xt.take_opt ~xt bs.waiting_customers
983+
984+ let sleep ~xt bs barber =
985+ if not (Xt.get ~xt bs.is_closed)
986+ then Queue.Xt.add ~xt barber bs.sleeping_barbers
987+
988+ let is_closed ~xt bs = Xt.get ~xt bs.is_closed
989+
990+ let close ~xt bs =
991+ Xt.set ~xt bs.is_closed true;
992+ Queue.Xt.clear ~xt bs.sleeping_barbers;
993+ Queue.Xt.clear ~xt bs.waiting_customers
994+ end
995+ ```
996+
997+ ``` ocaml
998+ type customer = {
999+ cut_hair : 'x.xt:'x Xt.t -> unit;
1000+ }
1001+
1002+ type barber = {
1003+ wake_up : 'x.xt:'x Xt.t -> customer -> unit;
1004+ }
1005+ ```
1006+
1007+ ``` ocaml
1008+ # let customer shop cuts =
1009+ let clean = Mvar.create None in
1010+ let self = { cut_hair = Mvar.Xt.put clean true } in
1011+ while not (Xt.commit { tx = Barbershop.is_closed shop }) do
1012+ let try_get_barber ~xt =
1013+ match Barbershop.get_barber_opt ~xt shop with
1014+ | None ->
1015+ Barbershop.try_enqueue ~xt shop self
1016+ | Some barber ->
1017+ barber.wake_up ~xt self;
1018+ true
1019+ in
1020+ if Xt.commit { tx = try_get_barber } then
1021+ let try_get_haircut ~xt =
1022+ not (Barbershop.is_closed ~xt shop) &&
1023+ Mvar.Xt.take ~xt clean
1024+ in
1025+ if Xt.commit { tx = try_get_haircut } then
1026+ Loc.incr cuts
1027+ done
1028+ val customer : (barber, customer) Barbershop.t -> int Loc.t -> unit = <fun>
1029+ ```
1030+
1031+ ``` ocaml
1032+ # let barber shop cuts =
1033+ let customer = Mvar.create None in
1034+ let self = { wake_up = Mvar.Xt.put customer } in
1035+ while not (Xt.commit { tx = Barbershop.is_closed shop }) do
1036+ let cut customer =
1037+ Xt.commit { tx = customer.cut_hair };
1038+ Loc.incr cuts
1039+ in
1040+ let try_get_customer ~xt =
1041+ match Barbershop.get_customer_opt ~xt shop with
1042+ | Some _ as some -> some
1043+ | None ->
1044+ Barbershop.sleep ~xt shop self;
1045+ None
1046+ in
1047+ match Xt.commit { tx = try_get_customer } with
1048+ | Some customer -> cut customer
1049+ | None ->
1050+ let sleeping ~xt =
1051+ if Barbershop.is_closed ~xt shop then None
1052+ else Some (Mvar.Xt.take ~xt customer)
1053+ in
1054+ match Xt.commit { tx = sleeping } with
1055+ | Some customer -> cut customer
1056+ | None -> ()
1057+ done
1058+ val barber : (barber, customer) Barbershop.t -> int Loc.t -> unit = <fun>
1059+ ```
1060+
1061+ ``` ocaml
1062+ # let sleeping_barbers ~barbers
1063+ ~queue_max
1064+ ~customers
1065+ ~cuts_per_agent =
1066+ assert (0 < barbers
1067+ && 0 <= queue_max
1068+ && 0 <= customers
1069+ && 0 <= cuts_per_agent);
1070+ let shop = Barbershop.create queue_max in
1071+ let barbers = Array.init barbers @@ fun _ ->
1072+ let cuts = Loc.make 0 in
1073+ (cuts, Domain.spawn (fun () -> barber shop cuts))
1074+ and customers = Array.init customers @@ fun _ ->
1075+ let cuts = Loc.make 0 in
1076+ (cuts, Domain.spawn (fun () -> customer shop cuts))
1077+ in
1078+ let agents = Array.append barbers customers in
1079+ while agents
1080+ |> Array.map fst
1081+ |> Array.exists @@ fun c ->
1082+ Loc.get c < cuts_per_agent do
1083+ Domain.cpu_relax ()
1084+ done;
1085+ Xt.commit { tx = Barbershop.close shop };
1086+ agents
1087+ |> Array.map snd
1088+ |> Array.iter Domain.join
1089+ val sleeping_barbers :
1090+ barbers:int -> queue_max:int -> customers:int -> cuts_per_agent:int -> unit =
1091+ <fun>
1092+ ```
1093+
1094+ ``` ocaml
1095+ # sleeping_barbers ~barbers:2
1096+ ~queue_max:1
1097+ ~customers:4
1098+ ~cuts_per_agent:10
1099+ - : unit = ()
1100+ ```
1101+
9431102### Programming with primitive operations
9441103
9451104In addition to the transactional interface, ** kcas** also provides the
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