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(*
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* Copyright (c) 2009 - 2013 Monoidics ltd.
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* Copyright (c) 2013 - present Facebook, Inc.
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* All rights reserved.
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*
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* This source code is licensed under the BSD style license found in the
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* LICENSE file in the root directory of this source tree. An additional grant
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* of patent rights can be found in the PATENTS file in the same directory.
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*)
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(** The Smallfoot Intermediate Language: Binary Operators *)
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open! IStd
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module L = Logging
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module F = Format
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(** Binary operations *)
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type t =
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| PlusA (** arithmetic + *)
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| PlusPI (** pointer + integer *)
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| MinusA (** arithmetic - *)
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| MinusPI (** pointer - integer *)
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| MinusPP (** pointer - pointer *)
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| Mult (** * *)
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| Div (** / *)
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| Mod (** % *)
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| Shiftlt (** shift left *)
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| Shiftrt (** shift right *)
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| Lt (** < (arithmetic comparison) *)
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| Gt (** > (arithmetic comparison) *)
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| Le (** <= (arithmetic comparison) *)
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| Ge (** >= (arithmetic comparison) *)
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| Eq (** == (arithmetic comparison) *)
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| Ne (** != (arithmetic comparison) *)
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| BAnd (** bitwise and *)
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| BXor (** exclusive-or *)
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| BOr (** inclusive-or *)
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| LAnd (** logical and. Does not always evaluate both operands. *)
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| LOr (** logical or. Does not always evaluate both operands. *)
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[@@deriving compare]
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let equal = [%compare.equal : t]
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(** This function returns true if the operation is injective
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wrt. each argument: op(e,-) and op(-, e) is injective for all e.
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The return value false means "don't know". *)
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let injective = function PlusA | PlusPI | MinusA | MinusPI | MinusPP -> true | _ -> false
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(** This function returns true if 0 is the right unit of [binop].
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The return value false means "don't know". *)
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let is_zero_runit = function PlusA | PlusPI | MinusA | MinusPI | MinusPP -> true | _ -> false
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let text = function
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| PlusA ->
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"+"
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| PlusPI ->
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"+"
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| MinusA | MinusPP ->
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"-"
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| MinusPI ->
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"-"
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| Mult ->
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"*"
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| Div ->
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"/"
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| Mod ->
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"%"
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| Shiftlt ->
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"<<"
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| Shiftrt ->
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">>"
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| Lt ->
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"<"
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| Gt ->
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">"
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| Le ->
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"<="
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| Ge ->
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">="
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| Eq ->
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"=="
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| Ne ->
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"!="
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| BAnd ->
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"&"
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| BXor ->
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"^"
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| BOr ->
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"|"
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| LAnd ->
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"&&"
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| LOr ->
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"||"
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(** Pretty print a binary operator. *)
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let str pe binop =
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match pe.Pp.kind with
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| HTML -> (
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match binop with
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| Ge ->
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" >= "
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| Le ->
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" <= "
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| Gt ->
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" > "
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| Lt ->
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" < "
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| Shiftlt ->
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" << "
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| Shiftrt ->
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" >> "
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| _ ->
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text binop )
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| _ ->
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text binop
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