package grace
A fancy diagnostics library that allows your compilers to exit with grace
Install
Dune Dependency
Authors
Maintainers
Sources
grace-0.2.0.tbz
sha256=821df54882c9253eac69f47bcf3a71ffdc61c77fdae42587c32aada5b56cfeae
sha512=007afa83251da3ddecd874e120ea89dce0253c387a64a5fece69069d3486ec5eb6c82d6bf0febaf23dd322bd9eaadc2f7882e33f05a2e1fa18a41294e7dc3ba1
doc/src/grace.ansi_renderer/snippet_renderer.ml.html
Source file snippet_renderer.ml
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open! Import open Diagnostic open Snippet open Config module Multi_id = Multi_line_label.Id let pp_label_styled ~(config : Config.t) ~severity ~priority pp = Fmt.styled_multi (Style_sheet.label config.styles priority severity) pp ;; let pp_label_styled_string ~config ~severity ~priority = pp_label_styled ~config ~severity ~priority Fmt.string ;; module Chars = struct let pp_source_border_left ~(config : Config.t) ppf () = Fmt.( styled_multi config.styles.source_border string ppf config.chars.source_border_left) ;; let pp_source_border_left_break ~(config : Config.t) ppf () = Fmt.( styled_multi config.styles.source_border string ppf config.chars.source_border_left_break) ;; let pp_caret ~(config : Config.t) ~severity ~priority ppf () = let caret = match priority with | Priority.Primary -> config.chars.single_primary_caret | Secondary -> config.chars.single_secondary_caret in pp_label_styled_string ~config ~severity ~priority ppf caret ;; let pp_pointer_left ~(config : Config.t) ~severity ~priority ppf () = pp_label_styled_string ~config ~severity ~priority ppf config.chars.pointer_left ;; let pp_multi_top ~(config : Config.t) ~severity ~priority ppf () = pp_label_styled_string ~config ~severity ~priority ppf config.chars.multi_top ;; let pp_multi_bottom ~(config : Config.t) ~severity ~priority ppf () = pp_label_styled_string ~config ~severity ~priority ppf config.chars.multi_bottom ;; let pp_multi_caret_start ~(config : Config.t) ~severity ~priority ppf () = let caret_start = match priority with | Priority.Primary -> config.chars.multi_primary_caret_start | Secondary -> config.chars.multi_secondary_caret_start in pp_label_styled_string ~config ~severity ~priority ppf caret_start ;; let pp_multi_caret_end ~(config : Config.t) ~severity ~priority ppf () = let caret_end = match priority with | Priority.Primary -> config.chars.multi_primary_caret_end | Secondary -> config.chars.multi_secondary_caret_end in pp_label_styled_string ~config ~severity ~priority ppf caret_end ;; let pp_snippet_start ~(config : Config.t) ppf () = Fmt.styled_multi config.styles.source_border Fmt.string ppf config.chars.snippet_start ;; let pp_note_bullet ~(config : Config.t) ppf () = Fmt.styled_multi config.styles.note_bullet Fmt.string ppf config.chars.note_bullet ;; end let pp_severity ~(config : Config.t) ppf severity = Fmt.with_style (Style_sheet.header config.styles severity) ppf @@ fun ppf () -> Severity.pp ppf severity ;; let pp_header_message ~(config : Config.t) = Fmt.styled_multi config.styles.header_message Message.pp ;; let pp_message ~(config : Config.t) ~severity ~priority ppf message = Fmt.styled_multi (Style_sheet.label config.styles priority severity) Message.pp ppf message ;; type multi_kind = [ `Top of [ `Unique | `Non_unique ] | `Vertical | `Bottom ] module Multi_context = struct type t = { gutters : (Priority.t * multi_kind) Option_array.t ; bindings : int Multi_id.Table.t } let create ~len = { gutters = Option_array.create ~len; bindings = Multi_id.Table.create () } ;; let length t = Option_array.length t.gutters let def t ~multi_id ~top_kind ~priority prologue = assert (not (Hashtbl.mem t.bindings multi_id)); let gutter, _ = (* Find the next free available gutter (one such gutter *must* exist!) *) t.gutters |> Option_array.findi ~f:(fun _ gutter -> Option.is_none gutter) |> Option.value_exn ~here:[%here] in Hashtbl.set t.bindings ~key:multi_id ~data:gutter; (* Set gutter to `Top *) Option_array.set_some t.gutters gutter (priority, `Top top_kind); (* Execute 'prologue' for multi-line label *) prologue (); (* Set gutter to `Vertical *) Option_array.set_some t.gutters gutter (priority, `Vertical) ;; let free t ~multi_id epilogue = let gutter = Hashtbl.find_exn t.bindings multi_id in let priority, _ = Option_array.get_some_exn t.gutters gutter in (* Set gutter to `Bottom *) Option_array.set_some t.gutters gutter (priority, `Bottom); (* Execute 'epilogue' for multi-line label *) epilogue (); (* Remove bindings for multi-line label *) Option_array.set_none t.gutters gutter; Hashtbl.remove t.bindings multi_id ;; end let pp_multi_vertline ~(config : Config.t) ~severity ~priority ppf kind = let gutter = match kind with | `Top (`Unique | `Non_unique) -> config.chars.multi_top_left | `Vertical -> config.chars.multi_left | `Bottom -> config.chars.multi_bottom_left in pp_label_styled_string ~config ~severity ~priority ppf gutter ;; let pp_multi_underline ~(config : Config.t) ~severity ~priority ppf kind = match kind with | `Top `Non_unique -> Chars.pp_multi_top ~config ~severity ~priority ppf () | `Top `Unique -> (* For unique multi-lines, the underline is removed *) Fmt.sp ppf () | `Bottom -> Chars.pp_multi_bottom ~config ~severity ~priority ppf () | `Vertical -> Fmt.sp ppf () ;; let pp_multi_lines ~(config : Config.t) ~severity ppf (mctxt : Multi_context.t) = let set_sep, pr_sep = let sep = ref Fmt.sp in (fun sep' -> sep := sep'), fun () -> !sep ppf () in for i = 0 to Multi_context.length mctxt - 1 do match Option_array.get mctxt.gutters i with | None -> (* Print the [sep] for the missing gutter and a trailing separator. *) pr_sep (); pr_sep () | Some (priority, kind) -> (* Set the separate (if necessary) *) set_sep (fun ppf () -> pp_multi_underline ~config ~severity ~priority ppf kind); (* Print the gutter line and a trailing separator. *) pp_multi_vertline ~config ~severity ~priority ppf kind; pr_sep () done; (* Print a trailing separator *) pr_sep () ;; type context = { line_num_width : int ; multi_context : Multi_context.t } let pp_line_number ~(config : Config.t) ~ctxt ppf (lnum : Line_number.t) = Fmt.with_style config.styles.line_number ppf @@ fun ppf () -> Fmt.pf ppf "%*d" ctxt.line_num_width (lnum :> int) ;; let pp_source_line ~config ~severity ~ctxt ~lnum ppf (line : Line.t) = let pp_segment ppf (segment : Line.segment) = let content = (* FIXME: We should strip the content in [Snippet.of_diagnostic] *) String.rstrip segment.content ~drop:(function | '\n' | '\r' -> true | _ -> false) in match segment.stag with | Some { priority = Primary; _ } -> (* If primary, style the content *) pp_label_styled_string ~config ~severity ~priority:Primary ppf content | _ -> (* Otherwise, simply print the content *) Fmt.string ppf content in Fmt.( pf ppf "@[<h>%a %a %a%a@]" (pp_line_number ~config ~ctxt) lnum (Chars.pp_source_border_left ~config) () (pp_multi_lines ~config ~severity) ctxt.multi_context (list ~sep:nop pp_segment) line.segments) ;; let pp_line_break ~config ~severity ~ctxt ppf () = Fmt.pf ppf "@[<h>%*s %a %a@]" ctxt.line_num_width "" (Chars.pp_source_border_left_break ~config) () (pp_multi_lines ~config ~severity) ctxt.multi_context ;; (* prefixed box *) let pbox ~prefix pp ppf x = let s = Fmt.str_like ppf "%a" pp x in let lines = String.split_lines s in let nlines = List.length lines in List.iteri lines ~f:(fun i line -> Fmt.pf ppf "@[<h>%s%s@]" prefix line; if i <> nlines - 1 then Fmt.newline ppf ()) ;; (* prefixed-with-indent box *) let pwibox ~prefix pp ppf x = let s = Fmt.str_like ppf "%a" pp x in let lines = String.split_lines s in let nlines = List.length lines in let nprefix = String.length prefix in List.iteri lines ~f:(fun i line -> if i = 0 then Fmt.pf ppf "@[<h>%s%s@]" prefix line else Fmt.pf ppf "@[<h>%*s%s@]" nprefix "" line; if i <> nlines - 1 then Fmt.newline ppf ()) ;; (* line box *) let lbox ~config ~severity ~ctxt pp ppf x = let prefix = Fmt.str_like ppf "%*s %a %a" ctxt.line_num_width "" (Chars.pp_source_border_left ~config) () (pp_multi_lines ~config ~severity) ctxt.multi_context in pbox ~prefix pp ppf x ;; module Multi_line_label = struct let pp_underlines ~config ~severity ~priority ~width = Fmt.repeat ~width (pp_multi_underline ~config ~severity ~priority) ;; let pp_top ~config ~severity ppf (width, priority) = pp_underlines ~config ~severity ~priority ~width ppf (`Top `Non_unique); Chars.pp_multi_caret_start ~config ~severity ~priority ppf () ;; let pp_bottom ~config ~severity ppf (width, priority, label) = let prefix = Fmt.str_like ppf "%a%a " (pp_underlines ~config ~severity ~priority ~width) `Bottom (Chars.pp_multi_caret_end ~config ~severity ~priority) () in pwibox ~prefix (pp_message ~config ~severity ~priority) ppf label ;; let pp_content_top ~ctxt ~(top : Multi_line_label.t option) pp ppf x = match top with | Some mll -> (match mll with | Top { id = multi_id; priority; _ } -> Multi_context.def ctxt.multi_context ~multi_id ~top_kind:`Unique ~priority @@ fun () -> pp ppf x | _ -> assert false) | None -> pp ppf x ;; let pp ~config ~severity ~ctxt ppf (multi_line_label : Multi_line_label.t) = match multi_line_label with | Bottom { id; stop; priority; label } -> Multi_context.free ctxt.multi_context ~multi_id:id @@ fun () -> pp_multi_lines ~config ~severity ppf ctxt.multi_context; pp_bottom ~config ~severity ppf (* [-2] since we want a [-1] offset and [stop] is a column number (starting at 1) *) ((stop :> int) - 2, priority, label) | Top { id; start; priority } -> Multi_context.def ctxt.multi_context ~multi_id:id ~top_kind:`Non_unique ~priority @@ fun () -> pp_multi_lines ~config ~severity ppf ctxt.multi_context; (* [-1] since [start] is a column number (starting at 1) *) pp_top ~config ~severity ppf ((start :> int) - 1, priority) ;; end module Inline_labels = struct (** An inline segment with dangling pointers, with optional messages. *) type hanging_segment = { offset : Column_number.t (** The offset into the line *) ; length : int (** The length of the segment > 0 *) ; priority : Priority.t ; messages : Message.t list } type trailing_segment = { offset : Column_number.t ; length : int ; priority : Priority.t ; message : Message.t } (** A rendering IR for inline labels *) type t = { trailing_segment : trailing_segment option (** An optional trailing label *) ; hanging_segments : hanging_segment list (** A lexically sorted list of hanging segments *) } let is_empty { hanging_segments; trailing_segment } = List.is_empty hanging_segments && Option.is_none trailing_segment ;; let pp_trailing_label ~config ~severity = Fmt.( option ~none:nop @@ fun ppf ({ message; priority; _ } : trailing_segment) -> Fmt.pf ppf " %a" (pp_message ~config ~severity ~priority) message) ;; let pp_carets ~config ~severity ppf { hanging_segments; trailing_segment } = (* [cursor] is used to keep track of the position in the current line buffer *) let cursor = ref Column_number.initial in let pr_segment (offset, length, priority) = assert (Column_number.(!cursor <= offset)); (* Print spaces up until [range] *) Fmt.sps Column_number.(diff offset !cursor) ppf (); (* Print carets *) Fmt.(repeat ~width:length @@ Chars.pp_caret ~config ~severity ~priority) ppf (); (* Update cursor to be stop *) cursor := Column_number.(add offset length) in (* Render the carets for hanging and trailing segments *) List.iter hanging_segments ~f:(fun { offset; length; priority; _ } -> pr_segment (offset, length, priority)); Option.iter trailing_segment ~f:(fun { offset; length; priority; _ } -> pr_segment (offset, length, priority)) ;; let pp_hanging_segments ~config ~severity ppf segments = let str_pointer_left priority = Fmt.str_like ppf "%a" (Chars.pp_pointer_left ~config ~severity ~priority) () in let pp_messages ~priority = let open Fmt in vbox @@ list ~sep:newline @@ hbox @@ pp_message ~config ~severity ~priority in let rec loop cursor pointers = function | [] -> (* Print the initial hanging pointers *) Fmt.pf ppf "%s" pointers | { offset; length; priority = _; messages = [] } :: segments -> assert (Column_number.(cursor <= offset)); (* In the case of an empty hanging segment, simply print the spaces and move the cursor *) let pointers = String.append pointers (String.make Column_number.(diff (add offset length) cursor) ' ') in loop Column_number.(add offset length) pointers segments | { offset; length = _; priority; messages = _ :: _ as messages } :: segments -> assert (Column_number.(cursor <= offset)); (* Prefix the pointers with spaces *) let pointers = String.append pointers (String.make Column_number.(diff offset cursor) ' ') in (* Print the pointers & messages above this message adding a pointer for this set of messages Invariant: offset + length >= offset + 1 <=> length > 0 *) loop Column_number.(add offset 1) String.(pointers ^ str_pointer_left priority) segments; Fmt.newline ppf (); (* Print the messages *) pbox ~prefix:pointers (pp_messages ~priority) ppf messages in loop Column_number.initial "" segments ;; let pp ~config ~severity ppf t = (* Print carets *) pp_carets ~config ~severity ppf t; (* Print trailing label *) pp_trailing_label ~config ~severity ppf t.trailing_segment; (* If non-empty, print the hanging segments *) if not (List.is_empty t.hanging_segments) then Fmt.pf ppf "@.%a" (pp_hanging_segments ~config ~severity) t.hanging_segments ;; let as_trailing_segment { priority; offset; length; messages } : trailing_segment option = match messages with | [ message ] -> Some { priority; offset; length; message } | _ -> None ;; let of_segments (segments : Line.segment list) : t = let rec loop (segments : Line.segment list) accu = let rev_segments, offset, prev_segment = accu in match segments with | [] -> (* Determine if the last segment is a trailing segment *) (* A trailing segment is defined by: - the last segment on the line - the span of the label in the trailing segment doesn't intersect any other label on the line *) (match Option.(prev_segment >>= as_trailing_segment) with | Some trailing_segment -> let hanging_segments = List.rev rev_segments in { hanging_segments; trailing_segment = Some trailing_segment } | None -> let hanging_segments = List.rev (Option.to_list prev_segment @ rev_segments) in { hanging_segments; trailing_segment = None }) | { stag = None; content = _; length } :: segments -> (* Segments with no semantic tag cannot be hanging (or trailing) segments *) loop segments (rev_segments, Column_number.(add offset length), prev_segment) | { stag = Some { priority; inline_labels }; content = _; length } :: segments -> let messages = (* Ensure that higher priority messages are printed first *) inline_labels |> List.sort ~compare: (Comparable.lift (Comparable.reverse Priority.compare) ~f:Tuple2.get1) |> List.map ~f:Tuple2.get2 in loop segments ( Option.to_list prev_segment @ rev_segments , Column_number.add offset length , Some { priority; messages; offset; length } ) in loop segments ([], Column_number.initial, None) ;; end let pp_multi_line_label ~config ~severity ~ctxt ppf multi_line_label = Fmt.pf ppf "@[<h>%*s %a %a@]" ctxt.line_num_width "" (Chars.pp_source_border_left ~config) () (Multi_line_label.pp ~config ~severity ~ctxt) multi_line_label ;; let pp_line ~config ~severity ~ctxt ~lnum ppf (line : Line.t) = (* Convert segments to inline labels *) let inline_labels = Inline_labels.of_segments line.segments in (* Render multi-line top in line content if: - unique top in multi_line_labels - top starts in the whitespace/start of new line *) let multi_line_labels, unique_top_multi_line_label = List.fold_right line.multi_line_labels ~init:([], None) ~f:(fun multi_line_label (mlls, utmll) -> match multi_line_label with | Top { start; _ } when (start :> int) - 1 <= line.margin_length -> (match utmll with | None -> mlls, Some multi_line_label | Some utmll -> multi_line_label :: utmll :: mlls, None) | _ -> multi_line_label :: mlls, utmll) in (* print_s [%message "Mll top" (margin_length : int) (multi_line_labels : Snippet.Multi_line_label.t list) (unique_top_multi_line_label : Snippet.Multi_line_label.t option)]; *) (* Print source line (with potential top multi-line label) *) Multi_line_label.pp_content_top ~ctxt ~top:unique_top_multi_line_label (pp_source_line ~config ~severity ~ctxt ~lnum) ppf line; (* Print inline labels (if any) *) if not (Inline_labels.is_empty inline_labels) then ( Fmt.newline ppf (); lbox ~config ~severity ~ctxt (Inline_labels.pp ~config ~severity) ppf inline_labels); (* Print multi-line labels (if any) *) List.iter multi_line_labels ~f:(fun multi_line_label -> Fmt.newline ppf (); pp_multi_line_label ~config ~severity ~ctxt ppf multi_line_label) ;; let pp_locus ~source ppf (line_num, col_num) = Fmt.pf ppf "@[<h>%s:%a:%a@]" (Option.value (Source.name source) ~default:"unknown") Line_number.pp line_num Column_number.pp col_num ;; let pp_source_start ~config ~ctxt ~source ppf locus = Fmt.pf ppf "@[<h>%*s %a %a@]" ctxt.line_num_width "" (Chars.pp_snippet_start ~config) () (pp_locus ~source) locus ;; let pp_line_gutter ~config ~ctxt ppf () = Fmt.pf ppf "@[<h>%*s %a@]" ctxt.line_num_width "" (Chars.pp_source_border_left ~config) () ;; let pp_block ~config ~severity ~ctxt ppf ({ start; lines } : Snippet.block) = List.iteri lines ~f:(fun i line -> if i <> 0 then Fmt.newline ppf (); let lnum = Line_number.of_line_index @@ Line_index.add start i in pp_line ~config ~severity ~ctxt ~lnum ppf line) ;; let pp_source ~config ~severity ~line_num_width ~multi_width ppf ({ source; blocks; locus } : Snippet.source) = let ctxt = { multi_context = Multi_context.create ~len:multi_width; line_num_width } in pp_source_start ~config ~ctxt ~source ppf locus; if not (List.is_empty blocks) then Fmt.pf ppf "@."; List.iteri blocks ~f:(fun i block -> if i <> 0 then ( Fmt.newline ppf (); pp_line_break ~config ~severity ~ctxt ppf ()); pp_block ~config ~severity ~ctxt ppf block) ;; let pp_code ~config ~code_to_string ~severity ppf code = Fmt.with_style (Style_sheet.header config.styles severity) ppf @@ fun ppf () -> Fmt.(option (any "[" ++ of_to_string code_to_string ++ any "]")) ppf code ;; let pp_header ~config ~code_to_string ~severity ~code ppf message = Fmt.pf ppf "@[<h>%a%a: %a@]" (pp_severity ~config) severity (pp_code ~config ~code_to_string ~severity) code (pp_header_message ~config) message ;; let pp_note ~config ~line_num_width ppf note = pwibox ~prefix: (Fmt.str_like ppf "%*s %a " line_num_width "" (Chars.pp_note_bullet ~config) ()) Message.pp ppf note ;; let pp_rich_snippet ~config ~code_to_string ~line_num_width ~multi_width ppf (severity, message, code, sources) = pp_header ~config ~code_to_string ~severity ~code ppf message; if not (List.is_empty sources) then Fmt.newline ppf (); Fmt.(list ~sep:Fmt.newline (pp_source ~config ~severity ~line_num_width ~multi_width)) ppf sources ;; let pp_compact_snippet ~config ~code_to_string ppf (severity, message, code, sources) = match sources with | [] -> pp_header ~config ~code_to_string ~severity ~code ppf message | sources -> (Fmt.list ~sep:Fmt.newline @@ fun ppf (source, locus) -> Fmt.pf ppf "@[<h>%a: %a@]" (pp_locus ~source) locus (pp_header ~config ~code_to_string ~severity ~code) message) ppf sources ;; let line_num_width sources = match sources with | Compact _ -> 0 | Rich sources -> Int.max (sources |> List.map ~f:(fun { blocks; _ } -> match List.last blocks with | None -> 0 | Some { start; lines; _ } -> let line_num = Line_number.of_line_index Line_index.(add start (List.length lines)) in Line_number.to_string line_num |> String.length) |> List.max_elt ~compare:Int.compare |> Option.value ~default:0) 3 ;; let multi_width sources = let rec count_multi : Snippet.Line.t list -> int = function | [] -> 0 | line :: lines -> List.count line.multi_line_labels ~f:(function | Top _ -> true | Bottom _ -> false) + count_multi lines in match sources with | Compact _ -> 0 | Rich sources -> sources |> List.map ~f:(fun { Snippet.blocks; _ } -> let rec loop_blocks : Snippet.block list -> int = function | [] -> 0 | { lines; _ } :: blocks -> count_multi lines + loop_blocks blocks in loop_blocks blocks) |> List.max_elt ~compare:Int.compare |> Option.value ~default:0 ;; let pp_snippet ~config ~code_to_string ppf ({ severity; message; code; sources; notes } : 'code Snippet.t) = Fmt.set_style_renderer ppf (Config.style_renderer config); Format.pp_set_geometry ppf ~max_indent:2 ~margin:Format.pp_max_margin; let line_num_width = line_num_width sources in let multi_width = multi_width sources in Fmt.pf ppf "@[<v>"; (match sources with | Compact sources -> pp_compact_snippet ~config ~code_to_string ppf (severity, message, code, sources) | Rich sources -> pp_rich_snippet ~config ~code_to_string ~line_num_width ~multi_width ppf (severity, message, code, sources)); if not (List.is_empty notes) then Fmt.newline ppf (); Fmt.(list ~sep:Fmt.newline (pp_note ~config ~line_num_width)) ppf notes; Fmt.pf ppf "@]" ;;
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