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Revert "CCFun(cleanup): align CCFun.compose with the stdlib"
This reverts commit b649ac9dc5.
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3 changed files with 5 additions and 18 deletions
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@ -2,7 +2,6 @@
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## main
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## main
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- breaking: CCListLabel.compare and CCListLabel.equal takes the function on the elements as named arguments
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- breaking: CCListLabel.compare and CCListLabel.equal takes the function on the elements as named arguments
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- breaking: CCListLabel.init now takes the length as a named arguments to follow the Stdlib
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- breaking: CCListLabel.init now takes the length as a named arguments to follow the Stdlib
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- breaking: invert the argument of CCFun.compose to align it with the Stdlib
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- breaking: change the semantic of CCFloat.{min,max} with respect to NaN to follow the Stdlib
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- breaking: change the semantic of CCFloat.{min,max} with respect to NaN to follow the Stdlib
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- breaking: change the semantic of CCInt.rem with respect to negative number to follow the Stdlib
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- breaking: change the semantic of CCInt.rem with respect to negative number to follow the Stdlib
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- breaking: change the order of argument of CCMap.add_seq to align with the stdlib.
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- breaking: change the order of argument of CCMap.add_seq to align with the stdlib.
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@ -10,13 +10,7 @@ include Fun
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let[@inline] and_pred f g x = f x && g x
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let[@inline] and_pred f g x = f x && g x
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let[@inline] or_pred f g x = f x || g x
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let[@inline] or_pred f g x = f x || g x
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let[@inline] compose f g x = g (f x)
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[@@@iflt 5.2]
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let[@inline] compose f g x = f (g x)
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[@@@endif]
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let[@inline] compose_binop f g x y = g (f x) (f y)
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let[@inline] compose_binop f g x y = g (f x) (f y)
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let[@inline] curry f x y = f (x, y)
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let[@inline] curry f x y = f (x, y)
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let[@inline] uncurry f (x, y) = f x y
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let[@inline] uncurry f (x, y) = f x y
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@ -76,7 +70,7 @@ let[@inline] with_return (type ret) f : ret =
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module Infix = struct
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module Infix = struct
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(* default implem for some operators *)
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(* default implem for some operators *)
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let ( %> ) f g = compose g f
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let ( %> ) = compose
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let[@inline] ( % ) f g x = f (g x)
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let[@inline] ( % ) f g x = f (g x)
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let ( let@ ) = ( @@ )
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let ( let@ ) = ( @@ )
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let ( ||> ) (a, b) f = f a b
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let ( ||> ) (a, b) f = f a b
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@ -17,13 +17,8 @@ val or_pred : ('a -> bool) -> ('a -> bool) -> 'a -> bool
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@since 3.13.1
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@since 3.13.1
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*)
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*)
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[@@@iflt 5.2]
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val compose : ('a -> 'b) -> ('b -> 'c) -> 'a -> 'c
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(** [compose f g x] is [g (f x)]. Composition. *)
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val compose : ('b -> 'c) -> ('a -> 'b) -> 'a -> 'c
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(** [compose f g x] is [f (g x)]. Composition.
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@since NEXT_RELEASE arguments are inversted *)
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[@@@endif]
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val compose_binop : ('a -> 'b) -> ('b -> 'b -> 'c) -> 'a -> 'a -> 'c
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val compose_binop : ('a -> 'b) -> ('b -> 'b -> 'c) -> 'a -> 'a -> 'c
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(** [compose_binop f g] is [fun x y -> g (f x) (f y)].
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(** [compose_binop f g] is [fun x y -> g (f x) (f y)].
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@ -105,8 +100,7 @@ let find_array arr x =
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module Infix : sig
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module Infix : sig
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val ( %> ) : ('a -> 'b) -> ('b -> 'c) -> 'a -> 'c
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val ( %> ) : ('a -> 'b) -> ('b -> 'c) -> 'a -> 'c
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(** [(f %> g) x] or [(%>) f g x] is [g (f x)]. Infix version of [compose].
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(** [(f %> g) x] or [(%>) f g x] is [g (f x)]. Alias to [compose]. *)
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The order of the arguments of [%>] and {!compose} are inverted. *)
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val ( % ) : ('b -> 'c) -> ('a -> 'b) -> 'a -> 'c
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val ( % ) : ('b -> 'c) -> ('a -> 'b) -> 'a -> 'c
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(** [(f % g) x] or [(%) f g x] is [f (g x)]. Mathematical composition. *)
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(** [(f % g) x] or [(%) f g x] is [f (g x)]. Mathematical composition. *)
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