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| 1 | +open Kcas |
| 2 | + |
| 3 | +type 'a t = { capacity : int; length : int; list : 'a list; limit : int } |
| 4 | + |
| 5 | +let empty_unlimited = |
| 6 | + { capacity = Int.max_int; length = 0; list = []; limit = Int.max_int } |
| 7 | + |
| 8 | +let make_empty ~capacity = |
| 9 | + if capacity = Int.max_int then empty_unlimited |
| 10 | + else { capacity; length = 0; list = []; limit = capacity } |
| 11 | + [@@inline] |
| 12 | + |
| 13 | +let make ~capacity ~length ~list ~limit = { capacity; length; list; limit } |
| 14 | + [@@inline] |
| 15 | + |
| 16 | +let to_rev_elems t = Elems.of_list_rev t.list [@@inline] |
| 17 | +let is_empty t = t.length = 0 [@@inline] |
| 18 | +let length t = t.length [@@inline] |
| 19 | +let capacity t = t.capacity [@@inline] |
| 20 | +let limit t = t.limit [@@inline] |
| 21 | +let list t = t.list [@@inline] |
| 22 | + |
| 23 | +let tl_safe = function |
| 24 | + | { list = []; _ } as t -> t |
| 25 | + | { capacity; length; list = _ :: list; _ } as t -> |
| 26 | + let limit = if capacity = Int.max_int then capacity else t.limit in |
| 27 | + { capacity; length = length - 1; list; limit } |
| 28 | + [@@inline] |
| 29 | + |
| 30 | +let tl_or_retry = function |
| 31 | + | { list = []; _ } -> Retry.later () |
| 32 | + | { capacity; length; list = _ :: list; _ } as t -> |
| 33 | + let limit = if capacity = Int.max_int then capacity else t.limit in |
| 34 | + { capacity; length = length - 1; list; limit } |
| 35 | + [@@inline] |
| 36 | + |
| 37 | +let hd_opt t = match t.list with [] -> None | x :: _ -> Some x [@@inline] |
| 38 | + |
| 39 | +let hd_or_retry t = match t.list with [] -> Retry.later () | x :: _ -> x |
| 40 | + [@@inline] |
| 41 | + |
| 42 | +let hd_unsafe t = List.hd t.list [@@inline] |
| 43 | + |
| 44 | +let cons_safe x ({ capacity; _ } as t) = |
| 45 | + if capacity = Int.max_int then |
| 46 | + let { length; list; _ } = t in |
| 47 | + { capacity; length = length + 1; list = x :: list; limit = capacity } |
| 48 | + else |
| 49 | + let { length; limit; _ } = t in |
| 50 | + if length < limit then |
| 51 | + let { list; _ } = t in |
| 52 | + { capacity; length = length + 1; list = x :: list; limit } |
| 53 | + else t |
| 54 | + [@@inline] |
| 55 | + |
| 56 | +let cons_or_retry x ({ capacity; _ } as t) = |
| 57 | + if capacity = Int.max_int then |
| 58 | + let { length; list; _ } = t in |
| 59 | + { capacity; length = length + 1; list = x :: list; limit = capacity } |
| 60 | + else |
| 61 | + let { length; limit; _ } = t in |
| 62 | + if length < limit then |
| 63 | + let { list; _ } = t in |
| 64 | + { capacity; length = length + 1; list = x :: list; limit } |
| 65 | + else Retry.later () |
| 66 | + [@@inline] |
| 67 | + |
| 68 | +let move ({ capacity; _ } as t) = |
| 69 | + if capacity = Int.max_int then empty_unlimited |
| 70 | + else |
| 71 | + let { length; _ } = t in |
| 72 | + if length = 0 then t |
| 73 | + else |
| 74 | + let { limit; _ } = t in |
| 75 | + { capacity; length = 0; list = []; limit = limit - length } |
| 76 | + [@@inline] |
| 77 | + |
| 78 | +let move_last ({ capacity; _ } as t) = |
| 79 | + if capacity = Int.max_int then empty_unlimited |
| 80 | + else |
| 81 | + let { length; _ } = t in |
| 82 | + let limit = capacity - length in |
| 83 | + if length = 0 && t.limit = limit then t |
| 84 | + else { capacity; length = 0; list = []; limit } |
| 85 | + |
| 86 | +let clear ({ capacity; _ } as t) = |
| 87 | + if capacity = Int.max_int then empty_unlimited |
| 88 | + else if t.length = 0 && t.limit = capacity then t |
| 89 | + else make_empty ~capacity |
| 90 | + [@@inline] |
| 91 | + |
| 92 | +let rec prepend_to_seq xs tl = |
| 93 | + match xs with |
| 94 | + | [] -> tl |
| 95 | + | x :: xs -> fun () -> Seq.Cons (x, prepend_to_seq xs tl) |
| 96 | + |
| 97 | +let to_seq { list; _ } = prepend_to_seq list Seq.empty |
| 98 | + |
| 99 | +let rev_prepend_to_seq { length; list; _ } tl = |
| 100 | + if length <= 1 then prepend_to_seq list tl |
| 101 | + else |
| 102 | + let t = ref (`Original list) in |
| 103 | + fun () -> |
| 104 | + let t = |
| 105 | + match !t with |
| 106 | + | `Original t' -> |
| 107 | + (* This is domain safe as the result is always equivalent. *) |
| 108 | + let t' = List.rev t' in |
| 109 | + t := `Reversed t'; |
| 110 | + t' |
| 111 | + | `Reversed t' -> t' |
| 112 | + in |
| 113 | + prepend_to_seq t tl () |
| 114 | + |
| 115 | +let of_list ?(capacity = Int.max_int) list = |
| 116 | + let length = List.length list in |
| 117 | + let limit = Int.min 0 (capacity - length) in |
| 118 | + { capacity; length; list; limit } |
| 119 | + |
| 120 | +let of_seq_rev ?capacity xs = |
| 121 | + of_list ?capacity (Seq.fold_left (fun xs x -> x :: xs) [] xs) |
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