package ppx_deriving
Type-driven code generation for OCaml
Install
Dune Dependency
Authors
Maintainers
Sources
ppx_deriving-v5.2.tbz
sha256=1c2d2626824ca350c365bf6c8bc3a23c8045c3995c170f2bc500e53baeda2ee6
sha512=03ce8b3a0d8ed56b6c078212ac54862d99e4296c0e31cc982f9e632bae973a955207cfa968dbcd9d88aa444addda557556f549ef926ae7196534f9b7c007cf10
doc/src/ppx_deriving_fold/ppx_deriving_fold.ml.html
Source file ppx_deriving_fold.ml
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# 1 "ppx_deriving_fold.cppo.ml" open Ppxlib open Asttypes open Parsetree open Ast_helper open Ppx_deriving.Ast_convenience let deriver = "fold" let raise_errorf = Ppx_deriving.raise_errorf let parse_options options = options |> List.iter (fun (name, expr) -> match name with | _ -> raise_errorf ~loc:expr.pexp_loc "%s does not support option %s" deriver name) let attr_nobuiltin attrs = Ppx_deriving.(attrs |> attr ~deriver "nobuiltin" |> Arg.get_flag ~deriver) let argn = Printf.sprintf "a%d" let argl = Printf.sprintf "a%s" let pattn typs = List.mapi (fun i _ -> pvar (argn i)) typs let pattl labels = List.map (fun { pld_name = { txt = n } } -> n, pvar (argl n)) labels let pconstrrec name fields = pconstr name [precord ~closed:Closed fields] let reduce_acc a b = let loc = !Ast_helper.default_loc in [%expr let acc = [%e a] in [%e b]] let rec expr_of_typ typ = let loc = typ.ptyp_loc in let typ = Ppx_deriving.remove_pervasives ~deriver typ in match typ with | _ when Ppx_deriving.free_vars_in_core_type typ = [] -> [%expr fun acc _ -> acc] | { ptyp_desc = Ptyp_constr ({ txt = lid }, args) } -> let builtin = not (attr_nobuiltin typ.ptyp_attributes) in begin match builtin, typ with | true, [%type: [%t? typ] ref] -> [%expr fun acc x -> [%e expr_of_typ typ] acc !x] | true, [%type: [%t? typ] list] -> [%expr Ppx_deriving_runtime.List.fold_left [%e expr_of_typ typ]] | true, [%type: [%t? typ] array] -> [%expr Ppx_deriving_runtime.Array.fold_left [%e expr_of_typ typ]] | true, [%type: [%t? typ] option] -> [%expr fun acc -> function None -> acc | Some x -> [%e expr_of_typ typ] acc x] | true, ([%type: ([%t? ok_t], [%t? err_t]) result] | [%type: ([%t? ok_t], [%t? err_t]) Result.result]) -> [%expr fun acc -> function | Result.Ok ok -> [%e expr_of_typ ok_t] acc ok | Result.Error err -> [%e expr_of_typ err_t] acc err] | _, { ptyp_desc = Ptyp_constr ({ txt = lid }, args) } -> app (Exp.ident (mknoloc (Ppx_deriving.mangle_lid (`Prefix deriver) lid))) (List.map expr_of_typ args) | _ -> assert false end | { ptyp_desc = Ptyp_tuple typs } -> let args = typs |> List.mapi (fun i typ -> [%expr [%e expr_of_typ typ] acc [%e evar (argn i)]]) in [%expr fun acc [%p ptuple (List.mapi (fun i _ -> pvar (argn i)) typs)] -> [%e Ppx_deriving.(fold_exprs ~unit:[%expr acc] reduce_acc args)]]; | { ptyp_desc = Ptyp_variant (fields, _, _); ptyp_loc } -> let cases = fields |> List.map (fun field -> let variant label popt = Pat.variant label.txt popt in match field.prf_desc with | Rtag(label, true (*empty*), []) -> Exp.case (variant label None) [%expr acc] | Rtag(label, false, [typ]) -> Exp.case (variant label (Some [%pat? x])) [%expr [%e expr_of_typ typ] acc x] | Rinherit({ ptyp_desc = Ptyp_constr (tname, _) } as typ) -> Exp.case [%pat? [%p Pat.type_ tname] as x] [%expr [%e expr_of_typ typ] acc x] | _ -> raise_errorf ~loc:ptyp_loc "%s cannot be derived for %s" deriver (Ppx_deriving.string_of_core_type typ)) in Exp.function_ cases | { ptyp_desc = Ptyp_var name } -> evar ("poly_"^name) | { ptyp_desc = Ptyp_alias (typ, name) } -> [%expr fun acc x -> [%e evar ("poly_"^name)] ([%e expr_of_typ typ] acc x) x] | { ptyp_loc } -> raise_errorf ~loc:ptyp_loc "%s cannot be derived for %s" deriver (Ppx_deriving.string_of_core_type typ) and expr_of_label_decl { pld_type; pld_attributes } = let attrs = pld_type.ptyp_attributes @ pld_attributes in expr_of_typ { pld_type with ptyp_attributes = attrs } let str_of_type ~options ~path ({ ptype_loc = loc } as type_decl) = parse_options options; let mapper = match type_decl.ptype_kind, type_decl.ptype_manifest with | Ptype_abstract, Some manifest -> expr_of_typ manifest | Ptype_variant constrs, _ -> let cases = constrs |> List.map (fun { pcd_name = { txt = name' }; pcd_args } -> match pcd_args with | Pcstr_tuple(typs) -> let args = typs |> List.mapi (fun i typ -> [%expr [%e expr_of_typ typ] acc [%e evar (argn i)]]) in Exp.case (pconstr name' (pattn typs)) Ppx_deriving.(fold_exprs ~unit:[%expr acc] reduce_acc args) | Pcstr_record(labels) -> let args = labels |> List.map (fun ({ pld_name = { txt = n }; _ } as pld) -> [%expr [%e expr_of_label_decl pld] acc [%e evar (argl n)]]) in Exp.case (pconstrrec name' (pattl labels)) Ppx_deriving.(fold_exprs ~unit:[%expr acc] reduce_acc args) ) in [%expr fun acc -> [%e Exp.function_ cases]] | Ptype_record labels, _ -> let fields = labels |> List.mapi (fun i ({ pld_name = { txt = name }; _ } as pld) -> [%expr [%e expr_of_label_decl pld] acc [%e Exp.field (evar "x") (mknoloc (Lident name))]]) in [%expr fun acc x -> [%e Ppx_deriving.(fold_exprs ~unit:[%expr acc] reduce_acc fields)]] | Ptype_abstract, None -> raise_errorf ~loc "%s cannot be derived for fully abstract types" deriver | Ptype_open, _ -> raise_errorf ~loc "%s cannot be derived for open types" deriver in let polymorphize = Ppx_deriving.poly_fun_of_type_decl type_decl in [Vb.mk ~attrs:[Ppx_deriving.attr_warning [%expr "-39"]] (pvar (Ppx_deriving.mangle_type_decl (`Prefix deriver) type_decl)) (polymorphize mapper)] let sig_of_type ~options ~path type_decl = parse_options options; let loc = type_decl.ptype_loc in let typ = Ppx_deriving.core_type_of_type_decl type_decl in let vars = (List.map (fun tyvar -> tyvar.txt)) (Ppx_deriving.free_vars_in_core_type typ) in let acc = Typ.var ~loc Ppx_deriving.(fresh_var vars) in let polymorphize = Ppx_deriving.poly_arrow_of_type_decl (fun var -> [%type: [%t acc] -> [%t var] -> [%t acc]]) type_decl in [Sig.value ~loc (Val.mk (mkloc (Ppx_deriving.mangle_type_decl (`Prefix deriver) type_decl) loc) (polymorphize [%type: [%t acc] -> [%t typ] -> [%t acc]]))] let () = Ppx_deriving.(register (create deriver ~core_type: expr_of_typ ~type_decl_str: (fun ~options ~path type_decls -> [Str.value Recursive (List.concat (List.map (str_of_type ~options ~path) type_decls))]) ~type_decl_sig: (fun ~options ~path type_decls -> List.concat (List.map (sig_of_type ~options ~path) type_decls)) () ))
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