Eager_deferredSourceinclude S with type 'a t := 'a Async_kernel.Deferred.tinclude Async_kernel.Invariant.S1 with type 'a t := 'a Async_kernel.Deferred.tval invariant :
'a Base__Invariant_intf.inv ->
'a Async_kernel.Deferred.t Base__Invariant_intf.invinclude Core.Monad with type 'a t := 'a Async_kernel.Deferred.tval (>>=) :
'a Async_kernel.Deferred.t ->
('a -> 'b Async_kernel.Deferred.t) ->
'b Async_kernel.Deferred.tval (>>|) :
'a Async_kernel.Deferred.t ->
('a -> 'b) ->
'b Async_kernel.Deferred.tmodule Monad_infix : sig ... endval bind :
'a Async_kernel.Deferred.t ->
f:('a -> 'b Async_kernel.Deferred.t) ->
'b Async_kernel.Deferred.tval return : 'a -> 'a Async_kernel.Deferred.tval map :
'a Async_kernel.Deferred.t ->
f:('a -> 'b) ->
'b Async_kernel.Deferred.tval join :
'a Async_kernel.Deferred.t Async_kernel.Deferred.t ->
'a Async_kernel.Deferred.tval all : 'a Async_kernel.Deferred.t list -> 'a list Async_kernel.Deferred.tmodule Let_syntax : sig ... endval both :
'a Async_kernel.Deferred.t ->
'b Async_kernel.Deferred.t ->
('a * 'b) Async_kernel.Deferred.tval repeat_until_finished :
'state ->
('state ->
[ `Repeat of 'state | `Finished of 'result ] Async_kernel.Deferred.t) ->
'result Async_kernel.Deferred.tmodule List :
Async_kernel.Monad_sequence.S
with type 'a monad := 'a Async_kernel.Deferred.t
with type 'a t := 'a list