mirror of
https://github.com/CatalaLang/catala.git
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94f8eac858
- We're able to say from the parser what the user could have written. It may not be complete due to the acceptable function of Menhir : it is only an indication given to the user (and not intended to be an adaptive documentation) - .mli file added : module interface for suggestions - Add a test that provides a typographical or a logical error. - Documentation and type / name changes for suggestions
315 lines
10 KiB
OCaml
315 lines
10 KiB
OCaml
(* This file is part of the Catala compiler, a specification language for tax
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and social benefits computation rules. Copyright (C) 2023 Inria,
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contributors: Denis Merigoux <denis.merigoux@inria.fr>, Louis Gesbert
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<louis.gesbert@inria.fr>
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Licensed under the Apache License, Version 2.0 (the "License"); you may not
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use this file except in compliance with the License. You may obtain a copy of
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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
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distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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License for the specific language governing permissions and limitations under
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the License. *)
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(** Error formatting and helper functions *)
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(**{1 Terminal formatting}*)
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(* Adds handling of color tags in the formatter *)
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let color_formatter ppf =
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Ocolor_format.prettify_formatter ppf;
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ppf
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(* Sets handling of tags in the formatter to ignore them (don't print any color
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codes) *)
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let unstyle_formatter ppf =
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Format.pp_set_mark_tags ppf false;
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ppf
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(* SIDE EFFECT AT MODULE LOAD: this turns on handling of tags in
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[Format.sprintf] etc. functions (ignoring them) *)
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let () = ignore (unstyle_formatter Format.str_formatter)
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(* Note: we could do the same for std_formatter, err_formatter... but we'd
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rather promote the use of the formatting functions of this module and the
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below std_ppf / err_ppf *)
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let has_color oc =
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match Cli.globals.color with
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| Cli.Never -> false
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| Always -> true
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| Auto -> Unix.(isatty (descr_of_out_channel oc))
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(* Here we create new formatters to stderr/stdout that remain separate from the
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ones used by [Format.printf] / [Format.eprintf] (which remain unchanged) *)
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let formatter_of_out_channel oc =
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let ppf = Format.formatter_of_out_channel oc in
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if has_color oc then color_formatter ppf else unstyle_formatter ppf
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let std_ppf = lazy (formatter_of_out_channel stdout)
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let err_ppf = lazy (formatter_of_out_channel stderr)
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let ignore_ppf = lazy (Format.make_formatter (fun _ _ _ -> ()) (fun () -> ()))
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let unformat (f : Format.formatter -> unit) : string =
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let buf = Buffer.create 1024 in
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let ppf = unstyle_formatter (Format.formatter_of_buffer buf) in
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Format.pp_set_margin ppf max_int;
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(* We won't print newlines anyways, but better not have them in the first
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place (this wouldn't remove cuts in a vbox for example) *)
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let out_funs = Format.pp_get_formatter_out_functions ppf () in
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Format.pp_set_formatter_out_functions ppf
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{
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out_funs with
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Format.out_newline = (fun () -> out_funs.out_string " " 0 1);
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Format.out_indent = (fun _ -> ());
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};
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f ppf;
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Format.pp_print_flush ppf ();
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Buffer.contents buf
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(**{2 Message types and output helpers *)
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type content_type = Error | Warning | Debug | Log | Result
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let get_ppf = function
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| Result -> Lazy.force std_ppf
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| Debug when not Cli.globals.debug -> Lazy.force ignore_ppf
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| Warning when Cli.globals.disable_warnings -> Lazy.force ignore_ppf
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| Error | Log | Debug | Warning -> Lazy.force err_ppf
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(**{3 Markers}*)
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let print_time_marker =
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let time : float ref = ref (Unix.gettimeofday ()) in
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fun ppf () ->
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let new_time = Unix.gettimeofday () in
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let old_time = !time in
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time := new_time;
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let delta = (new_time -. old_time) *. 1000. in
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if delta > 50. then
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Format.fprintf ppf "@{<bold;black>[TIME] %.0fms@}@\n" delta
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let pp_marker target ppf =
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let open Ocolor_types in
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let tags, str =
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match target with
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| Debug -> [Bold; Fg (C4 magenta)], "[DEBUG]"
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| Error -> [Bold; Fg (C4 red)], "[ERROR]"
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| Warning -> [Bold; Fg (C4 yellow)], "[WARNING]"
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| Result -> [Bold; Fg (C4 green)], "[RESULT]"
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| Log -> [Bold; Fg (C4 black)], "[LOG]"
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in
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if target = Debug then print_time_marker ppf ();
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Format.pp_open_stag ppf (Ocolor_format.Ocolor_styles_tag tags);
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Format.pp_print_string ppf str;
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Format.pp_close_stag ppf ()
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(**{2 Printers}*)
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(** {1 Message content} *)
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module Content = struct
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type message = Format.formatter -> unit
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type position = { pos_message : message option; pos : Pos.t }
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type message_element =
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| MainMessage of message
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| Position of position
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| Suggestion of string list
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| Result of message
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type t = message_element list
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let of_message (message : message) : t = [MainMessage message]
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let of_result (message : message) : t = [Result message]
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let prepend_message (content : t) prefix : t = MainMessage prefix :: content
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let to_internal_error (content : t) : t =
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let internal_error_prefix ppf =
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Format.pp_print_string ppf
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"Internal Error, please report to \
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https://github.com/CatalaLang/catala/issues."
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in
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prepend_message content internal_error_prefix
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let add_suggestion (content : t) (suggestion : string list) =
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content @ [Suggestion suggestion]
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let of_string (s : string) : t =
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[MainMessage (fun ppf -> Format.pp_print_string ppf s)]
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let emit (content : t) (target : content_type) : unit =
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match Cli.globals.message_format with
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| Cli.Human ->
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let ppf = get_ppf target in
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Format.fprintf ppf "@[<hv>%t%t%a@]@." (pp_marker target)
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(fun (ppf : Format.formatter) ->
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match content, target with
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| MainMessage _ :: _, (Result | Error) -> Format.pp_print_space ppf ()
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| _ -> Format.pp_print_char ppf ' ')
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(fun (ppf : Format.formatter) (message_elements : t) ->
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Format.pp_print_list
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~pp_sep:(fun ppf () -> Format.fprintf ppf "@,@,")
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(fun ppf (elt : message_element) ->
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match elt with
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| Position pos ->
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Option.iter
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(fun msg -> Format.fprintf ppf "%t@," msg)
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pos.pos_message;
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Pos.format_loc_text ppf pos.pos
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| MainMessage msg -> msg ppf
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| Result msg -> msg ppf
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| Suggestion suggestions_list ->
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Suggestions.format ppf suggestions_list)
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ppf message_elements)
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content
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| Cli.GNU ->
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(* The top message doesn't come with a position, which is not something
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the GNU standard allows. So we look the position list and put the top
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message everywhere there is not a more precise message. If we can't
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find a position without a more precise message, we just take the first
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position in the list to pair with the message. *)
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let ppf = get_ppf target in
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Format.pp_print_list ~pp_sep:Format.pp_print_newline
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(fun ppf elt ->
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let pos, message =
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match elt with
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| MainMessage m ->
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let pos =
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List.find_map
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(function
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| Position { pos_message = None; pos } -> Some pos
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| _ -> None)
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content
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|> function
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| None ->
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List.find_map
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(function
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| Position { pos_message = _; pos } -> Some pos
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| _ -> None)
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content
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| some -> some
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in
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pos, m
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| Position { pos_message; pos } ->
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let message =
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match pos_message with Some m -> m | None -> fun _ -> ()
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in
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Some pos, message
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| Result m -> None, m
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| Suggestion sl -> None, fun ppf -> Suggestions.format ppf sl
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in
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Option.iter
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(fun pos ->
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Format.fprintf ppf "@{<blue>%s@}: " (Pos.to_string_short pos))
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pos;
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pp_marker target ppf;
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Format.pp_print_char ppf ' ';
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Format.pp_print_string ppf (unformat message))
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ppf content;
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Format.pp_print_newline ppf ()
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end
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open Content
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(** {1 Error exception} *)
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exception CompilerError of Content.t
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(** {1 Error printing} *)
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let raise_spanned_error
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?(span_msg : Content.message option)
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?(suggestion = ([] : string list))
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(span : Pos.t)
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format =
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let continuation (message : Format.formatter -> unit) =
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raise
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(CompilerError
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([MainMessage message; Position { pos_message = span_msg; pos = span }]
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@ match suggestion with [] -> [] | sugg -> [Suggestion sugg]))
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in
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Format.kdprintf continuation format
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let raise_multispanned_error_full
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?(suggestion = ([] : string list))
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(spans : (Content.message option * Pos.t) list)
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format =
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Format.kdprintf
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(fun message ->
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raise
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(CompilerError
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(MainMessage message
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:: List.map
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(fun (pos_message, pos) -> Position { pos_message; pos })
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spans
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@ match suggestion with [] -> [] | sugg -> [Suggestion sugg])))
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format
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let raise_multispanned_error
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?(suggestion = ([] : string list))
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(spans : (string option * Pos.t) list)
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format =
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raise_multispanned_error_full ~suggestion
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(List.map
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(fun (msg, pos) ->
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Option.map (fun s ppf -> Format.pp_print_string ppf s) msg, pos)
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spans)
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format
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let raise_error format =
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Format.kdprintf
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(fun message -> raise (CompilerError [MainMessage message]))
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format
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let raise_internal_error format =
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Format.kdprintf
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(fun message ->
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raise (CompilerError (Content.to_internal_error [MainMessage message])))
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format
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(** {1 Warning printing}*)
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let assert_internal_error condition fmt =
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if condition then raise_internal_error ("assertion failed: " ^^ fmt)
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else Format.ifprintf (Format.formatter_of_out_channel stdout) fmt
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let emit_multispanned_warning
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(pos : (Content.message option * Pos.t) list)
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format =
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Format.kdprintf
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(fun message ->
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Content.emit
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(MainMessage message
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:: List.map
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(fun (pos_message, pos) -> Position { pos_message; pos })
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pos)
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Warning)
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format
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let emit_spanned_warning
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?(span_msg : Content.message option)
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(span : Pos.t)
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format =
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emit_multispanned_warning [span_msg, span] format
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let emit_warning format = emit_multispanned_warning [] format
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let emit_log format =
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Format.kdprintf (fun message -> Content.emit [MainMessage message] Log) format
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let emit_debug format =
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Format.kdprintf
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(fun message -> Content.emit [MainMessage message] Debug)
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format
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let emit_result format =
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Format.kdprintf
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(fun message -> Content.emit [MainMessage message] Result)
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format
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