mirror of
https://github.com/CatalaLang/catala.git
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2c0e8a7864
Cleaner rewriting of main let-binding chaining procedure from Scopelang to Dcalc Removed costly unboxing in DCalc.Ast.make_let_in seemed to do the trick
165 lines
5.1 KiB
OCaml
165 lines
5.1 KiB
OCaml
(* This file is part of the Catala compiler, a specification language for tax and social benefits
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computation rules. Copyright (C) 2020 Inria, contributor: Denis Merigoux
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<denis.merigoux@inria.fr>
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Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except
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in compliance with the License. You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software distributed under the License
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is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express
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or implied. See the License for the specific language governing permissions and limitations under
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the License. *)
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[@@@ocaml.warning "-7-34"]
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open Utils
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module ScopeName : Uid.Id with type info = Uid.MarkedString.info = Uid.Make (Uid.MarkedString) ()
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module StructName : Uid.Id with type info = Uid.MarkedString.info = Uid.Make (Uid.MarkedString) ()
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module StructFieldName : Uid.Id with type info = Uid.MarkedString.info =
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Uid.Make (Uid.MarkedString) ()
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module StructMap : Map.S with type key = StructName.t = Map.Make (StructName)
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module EnumName : Uid.Id with type info = Uid.MarkedString.info = Uid.Make (Uid.MarkedString) ()
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module EnumConstructor : Uid.Id with type info = Uid.MarkedString.info =
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Uid.Make (Uid.MarkedString) ()
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module EnumMap : Map.S with type key = EnumName.t = Map.Make (EnumName)
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type typ_lit = TBool | TUnit | TInt | TRat | TMoney | TDate | TDuration
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type struct_name = StructName.t
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type enum_name = EnumName.t
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type typ =
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| TLit of typ_lit
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| TTuple of typ Pos.marked list * struct_name option
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| TEnum of typ Pos.marked list * enum_name
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| TArrow of typ Pos.marked * typ Pos.marked
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| TArray of typ Pos.marked
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| TAny
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type date = Runtime.date
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type duration = Runtime.duration
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type integer = Runtime.integer
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type decimal = Runtime.decimal
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type money = Runtime.money
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type lit =
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| LBool of bool
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| LEmptyError
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| LInt of integer
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| LRat of decimal
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| LMoney of money
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| LUnit
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| LDate of date
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| LDuration of duration
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type op_kind = KInt | KRat | KMoney | KDate | KDuration
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type ternop = Fold
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type binop =
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| And
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| Or
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| Xor
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| Add of op_kind
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| Sub of op_kind
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| Mult of op_kind
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| Div of op_kind
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| Lt of op_kind
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| Lte of op_kind
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| Gt of op_kind
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| Gte of op_kind
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| Eq
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| Neq
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| Map
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| Concat
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| Filter
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type log_entry = VarDef of typ | BeginCall | EndCall | PosRecordIfTrueBool
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type unop =
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| Not
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| Minus of op_kind
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| Log of log_entry * (Utils.Uid.MarkedString.info list[@opaque])
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| Length
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| IntToRat
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| GetDay
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| GetMonth
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| GetYear
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type operator = Ternop of ternop | Binop of binop | Unop of unop
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type expr =
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| EVar of (expr Bindlib.var[@opaque]) Pos.marked
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| ETuple of expr Pos.marked list * struct_name option
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| ETupleAccess of expr Pos.marked * int * struct_name option * typ Pos.marked list
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| EInj of expr Pos.marked * int * enum_name * typ Pos.marked list
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| EMatch of expr Pos.marked * expr Pos.marked list * enum_name
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| EArray of expr Pos.marked list
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| ELit of lit
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| EAbs of (expr, expr Pos.marked) Bindlib.mbinder Pos.marked * typ Pos.marked list
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| EApp of expr Pos.marked * expr Pos.marked list
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| EAssert of expr Pos.marked
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| EOp of operator
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| EDefault of expr Pos.marked list * expr Pos.marked * expr Pos.marked
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| EIfThenElse of expr Pos.marked * expr Pos.marked * expr Pos.marked
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| ErrorOnEmpty of expr Pos.marked
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type struct_ctx = (StructFieldName.t * typ Pos.marked) list StructMap.t
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type enum_ctx = (EnumConstructor.t * typ Pos.marked) list EnumMap.t
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type decl_ctx = { ctx_enums : enum_ctx; ctx_structs : struct_ctx }
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module Var = struct
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type t = expr Bindlib.var
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let make (s : string Pos.marked) : t =
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Bindlib.new_var
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(fun (x : expr Bindlib.var) : expr -> EVar (x, Pos.get_position s))
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(Pos.unmark s)
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let compare x y = Bindlib.compare_vars x y
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end
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module VarMap = Map.Make (Var)
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type vars = expr Bindlib.mvar
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let make_var ((x, pos) : Var.t Pos.marked) : expr Pos.marked Bindlib.box =
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Bindlib.box_apply (fun x -> (x, pos)) (Bindlib.box_var x)
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let make_abs (xs : vars) (e : expr Pos.marked Bindlib.box) (pos_binder : Pos.t)
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(taus : typ Pos.marked list) (pos : Pos.t) : expr Pos.marked Bindlib.box =
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Bindlib.box_apply (fun b -> (EAbs ((b, pos_binder), taus), pos)) (Bindlib.bind_mvar xs e)
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let make_app (e : expr Pos.marked Bindlib.box) (u : expr Pos.marked Bindlib.box list) (pos : Pos.t)
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: expr Pos.marked Bindlib.box =
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Bindlib.box_apply2 (fun e u -> (EApp (e, u), pos)) e (Bindlib.box_list u)
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let make_let_in (x : Var.t) (tau : typ Pos.marked) (e1 : expr Pos.marked Bindlib.box)
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(e2 : expr Pos.marked Bindlib.box) (pos : Pos.t) : expr Pos.marked Bindlib.box =
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make_app (make_abs (Array.of_list [ x ]) e2 pos [ tau ] pos) [ e1 ] pos
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let make_multiple_let_in (xs : Var.t array) (taus : typ Pos.marked list)
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(e1 : expr Pos.marked Bindlib.box list) (e2 : expr Pos.marked Bindlib.box) (pos : Pos.t) :
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expr Pos.marked Bindlib.box =
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make_app (make_abs xs e2 pos taus pos) e1 pos
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type binder = (expr, expr Pos.marked) Bindlib.binder
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type program = { decl_ctx : decl_ctx; scopes : (ScopeName.t * Var.t * expr Pos.marked) list }
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