389 lines
11 KiB
Standard ML
389 lines
11 KiB
Standard ML
signature ROPE =
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sig
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type t
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val empty: t
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val fromString: string -> t
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val size: t -> int
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val insert: int * string * t -> t
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val append: string * t -> t
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val delete: int * int * t -> t
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val toString: t -> string
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end
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structure Rope :> ROPE =
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struct
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(* This function counts line breaks in reverse order,
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* from the end of the string to the start.
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* Reverse order is used for performance, as it avoids a List.rev at the end. *)
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fun helpCountLineBreaks (pos, acc, str) =
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if pos < 0 then
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Vector.fromList acc
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else
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let
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val chr = String.sub (str, pos)
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in
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if chr = #"\n" then
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(* Is this a \r\n pair? Then the position of \r should be consed. *)
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if pos = 0 then
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Vector.fromList (0 :: acc)
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else
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let
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val prevChar = String.sub (str, pos - 1)
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in
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if prevChar = #"\r" then
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helpCountLineBreaks (pos - 2, (pos - 1) :: acc, str)
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else
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helpCountLineBreaks (pos - 2, pos :: acc, str)
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end
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else if chr = #"\r" then
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helpCountLineBreaks (pos - 1, pos :: acc, str)
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else
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helpCountLineBreaks (pos - 1, acc, str)
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end
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fun countLineBreaks str =
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helpCountLineBreaks (String.size str - 1, [], str)
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datatype t =
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N0 of string
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| N1 of t
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| N2 of t * int * t
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| L2 of string * string
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| N3 of t * t * t
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exception AuxConstructor
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exception Substring of int
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fun foldr (f, state, rope) =
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case rope of
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N2 (l, _, r) =>
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let val state = foldr (f, state, r)
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in foldr (f, state, l)
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end
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| N1 t => foldr (f, state, t)
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| N0 s => f (state, s)
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| _ => raise AuxConstructor
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fun toString rope =
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let val strList = foldr ((fn (acc, str) => str :: acc), [], rope)
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in String.concat strList
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end
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datatype balance = AddedNode | DeletedNode | NoAction
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val targetLength = 1024
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val empty = N0 ""
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fun fromString string = N0 string
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fun isLessThanTarget (str1, str2) =
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String.size str1 + String.size str2 <= targetLength
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fun helpSize (acc, rope) =
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case rope of
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N0 s => acc + String.size s
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| N1 t => helpSize (acc, t)
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| N2 (_, lm, r) => helpSize (acc + lm, r)
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| _ => raise AuxConstructor
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fun size rope = helpSize (0, rope)
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fun insRoot rope =
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case rope of
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L2 (s1, s2) => N2 (N0 s1, String.size s1, N0 s2)
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| N3 (t1, t2, t3) =>
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let val left = N2 (t1, size t1, t2)
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in N2 (left, size left, N1 t3)
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end
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| t => t
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fun delRoot rope =
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case rope of
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N1 t => t
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| t => t
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fun insN1 rope =
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case rope of
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L2 (s1, s2) => N2 (N0 s1, String.size s1, N0 s2)
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| N3 (t1, t2, t3) =>
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let val left = N2 (t1, size t1, t2)
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in N2 (left, size left, N1 t3)
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end
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| t => N1 t
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fun insN2Left (left, right) =
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case (left, right) of
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(L2 (s1, s2), t3) => N3 (N0 s1, N0 s2, t3)
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| (N3 (t1, t2, t3), N1 t4) =>
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let
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val left = N2 (t1, size t1, t2)
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val right = N2 (t3, size t3, t4)
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in
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N2 (left, size left, right)
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end
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| (N3 (t1, t2, t3), t4) =>
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let val left = N2 (t1, size t1, t2)
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in N3 (left, N1 t3, t4)
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end
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| (l, r) => N2 (l, size l, r)
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fun delN2Left (left, right) =
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case (left, right) of
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(N1 t1, N1 t2) => N1 (N2 (t1, size t1, t2))
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| (N1 (N1 t1), N2 (N1 t2, _, (t3 as N2 _))) =>
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let
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val left = N2 (t1, size t1, t2)
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val inner = N2 (left, size left, t3)
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in
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N1 inner
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end
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| (N1 (N1 t1), N2 (N2 (t2, _, t3), _, N1 t4)) =>
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let
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val left = N2 (t1, size t1, t2)
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val right = N2 (t3, size t3, t4)
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val inner = N2 (left, size left, right)
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in
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N1 inner
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end
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| (N1 (t1 as N1 _), N2 ((t2 as N2 _), _, (t3 as N2 _))) =>
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let
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val left = N2 (t1, size t1, t2)
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val right = N1 t3
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in
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N2 (left, size left, right)
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end
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| (l, r) => N2 (l, size l, r)
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fun insN2Right (left, right) =
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case (left, right) of
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(t1, L2 (s1, s2)) => N3 (t1, N0 s1, N0 s2)
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| (N1 t1, N3 (t2, t3, t4)) =>
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let
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val left = N2 (t1, size t1, t2)
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val right = N2 (t3, size t3, t4)
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in
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N2 (left, size left, right)
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end
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| (t1, N3 (t2, t3, t4)) =>
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let val right = N2 (t3, size t3, t4)
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in N3 (t1, N1 t2, right)
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end
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| (l, r) => N2 (l, size l, r)
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fun delN2Right (left, right) =
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case (left, right) of
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(N2 (N1 t1, _, N2 (t2, _, t3)), N1 (N1 t4)) =>
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let
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val left = N2 (t1, size t1, t2)
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val right = N2 (t3, size t3, t4)
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val inner = N2 (left, size left, right)
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in
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N1 inner
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end
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| (N2 ((t1 as N2 _), lm, N1 t2), N1 (N1 t3)) =>
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let
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val right = N2 (t2, size t2, t3)
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val inner = N2 (t1, lm, right)
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in
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N1 inner
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end
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| (N2 ((t1 as N2 _), _, (t2 as N2 _)), N1 (t3 as N1 _)) =>
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let
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val left = N1 t1
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val right = N2 (t2, size t2, t3)
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in
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N2 (left, size left, right)
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end
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| (l, r) => N2 (l, size l, r)
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fun insLeaf (curIdx, newStr, rope, oldStr) =
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if curIdx <= 0 then
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if isLessThanTarget (oldStr, newStr) then (N0 (newStr ^ oldStr), NoAction)
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else (L2 (newStr, oldStr), AddedNode)
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else if curIdx >= String.size oldStr then
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if isLessThanTarget (oldStr, newStr) then (N0 (oldStr ^ newStr), NoAction)
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else (L2 (oldStr, newStr), AddedNode)
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else
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(* Need to split in middle of string. *)
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let
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val sub1 = String.substring (oldStr, 0, curIdx)
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val sub2Len = String.size oldStr - curIdx
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val sub2 = String.substring (oldStr, curIdx, sub2Len)
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in
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if
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isLessThanTarget (oldStr, newStr)
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then
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(N0 (sub1 ^ newStr ^ sub2), NoAction)
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else if
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curIdx + String.size newStr <= targetLength
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then
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(L2 (sub1 ^ newStr, sub2), AddedNode)
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else if
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((String.size oldStr) - curIdx) + String.size newStr <= targetLength
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then
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(L2 (sub1, newStr ^ sub2), AddedNode)
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else
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(N3 (N0 sub1, N0 newStr, N0 sub2), AddedNode)
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end
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fun ins (curIdx, newStr, rope) =
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case rope of
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N2 (l, lm, r) =>
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if curIdx < lm then
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let
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val (l, action) = ins (curIdx, newStr, l)
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in
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(case action of
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NoAction =>
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(case (l, r) of
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(N0 s1, N0 s2) =>
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if isLessThanTarget (s1, s2) then
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(N0 (s1 ^ s2), DeletedNode)
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else
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(N2 (l, lm + String.size newStr, r), action)
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| _ => (N2 (l, lm + String.size newStr, r), action))
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| AddedNode => (insN2Left (l, r), action)
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| DeletedNode => (delN2Left (l, r), action))
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end
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else
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let
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val (r, action) = ins (curIdx - lm, newStr, r)
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in
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(case action of
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NoAction =>
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(case (l, r) of
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(N0 s1, N0 s2) =>
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if isLessThanTarget (s1, s2) then
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(N0 (s1 ^ s2), DeletedNode)
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else
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(N2 (l, lm, r), action)
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| _ => (N2 (l, lm, r), action))
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| AddedNode => (insN2Right (l, r), action)
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| DeletedNode => (delN2Right (l, r), action))
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end
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| N1 t =>
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let
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val (t, action) = ins (curIdx, newStr, t)
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in
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(case action of
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AddedNode => (insN1 t, action)
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| _ => (N1 t, action))
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end
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| N0 oldStr => insLeaf (curIdx, newStr, rope, oldStr)
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| _ => raise AuxConstructor
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fun insert (index, str, rope) =
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let
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val (rope, action) = ins (index, str, rope)
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in
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(case action of
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NoAction => rope
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| AddedNode => insRoot rope
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| DeletedNode => delRoot rope)
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end
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fun app (newStr, rope) =
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case rope of
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N2 (l, lm, r) =>
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let
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val (r, action) = app (newStr, r)
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in
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(case action of
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NoAction =>
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(case (l, r) of
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(N0 s1, N0 s2) =>
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if isLessThanTarget (s1, s2) then
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(N0 (s1 ^ s2), DeletedNode)
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else
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(N2 (l, lm, r), action)
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| _ => (N2 (l, lm, r), action))
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| AddedNode => (insN2Right (l, r), action)
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| DeletedNode => (delN2Right (l, r), action))
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end
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| N1 t =>
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let
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val (t, action) = app (newStr, t)
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in
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(case action of
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AddedNode => (insN1 t, action)
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| _ => (N1 t, action))
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end
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| N0 oldStr =>
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if isLessThanTarget (oldStr, newStr) then
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(N0 (oldStr ^ newStr), NoAction)
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else
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(L2 (oldStr, newStr), AddedNode)
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| _ => raise AuxConstructor
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fun append (str, rope) =
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let
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val (rope, action) = app (str, rope)
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in
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(case action of
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NoAction => rope
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| AddedNode => insRoot rope
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| DeletedNode => delRoot rope)
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end
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fun delLeaf (startIdx, endIdx, str) =
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if startIdx <= 0 andalso endIdx >= String.size str then
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(empty, false)
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else if startIdx >= 0 andalso endIdx <= String.size str then
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let
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val sub1 = String.substring (str, 0, startIdx)
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val sub2 = String.substring (str, endIdx, (String.size str - endIdx))
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in
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if isLessThanTarget (sub1, sub2) then (N0 (sub1 ^ sub2), false)
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else (L2 (sub1, sub2), true)
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end
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else if startIdx >= 0 andalso endIdx >= String.size str then
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let
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val start = Int.toString startIdx
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val str = String.substring (str, 0, startIdx)
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in
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(N0 str, false)
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end
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else
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let val str = String.substring (str, endIdx, String.size str - endIdx)
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in (N0 str, false)
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end
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fun del (startIdx, endIdx, rope) =
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case rope of
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N2 (l, lm, r) =>
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if lm > startIdx andalso lm > endIdx then
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let
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val (l, didAdd) = del (startIdx, endIdx, l)
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in
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if didAdd then (insN2Left (l, r), didAdd)
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else (N2 (l, size l, r), didAdd)
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end
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else if lm < startIdx andalso lm < endIdx then
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let
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val (r, didAdd) = del (startIdx - lm, endIdx - lm, r)
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in
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if didAdd then (insN2Right (l, r), didAdd)
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else (N2 (l, lm, r), didAdd)
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end
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else
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let
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val (r, didAddR) = del (startIdx - lm, endIdx - lm, r)
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val (l, didaddL) = del (startIdx, endIdx, l)
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in
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if didaddL then (insN2Left (l, r), didaddL)
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else if didAddR then (insN2Right (l, r), didAddR)
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else (N2 (l, size l, r), false)
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end
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| N1 t =>
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let val (t, didAdd) = del (startIdx, endIdx, t)
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in if didAdd then (insN1 t, didAdd) else (N1 t, didAdd)
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end
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| N0 str => delLeaf (startIdx, endIdx, str)
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| _ => raise AuxConstructor
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fun delete (start, length, rope) =
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let val (rope, didAdd) = del (start, start + length, rope)
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in if didAdd then insRoot rope else delRoot rope
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end
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end
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