605 lines
25 KiB
OCaml
605 lines
25 KiB
OCaml
(***********************************************************************)
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(* *)
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(* Objective Caml *)
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(* *)
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(* Pierre Weis, projet Cristal, INRIA Rocquencourt *)
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(* *)
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(* Copyright 1996 Institut National de Recherche en Informatique et *)
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(* en Automatique. All rights reserved. This file is distributed *)
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(* under the terms of the GNU Library General Public License, with *)
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(* the special exception on linking described in file ../LICENSE. *)
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(* *)
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(***********************************************************************)
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(* $Id$ *)
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(** Pretty printing.
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This module implements a pretty-printing facility to format text
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within ``pretty-printing boxes''. The pretty-printer breaks lines
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at specified break hints, and indents lines according to the box
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structure.
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Warning: the material output by the following functions is delayed
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in the pretty-printer queue in order to compute the proper line
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breaking. Hence, you should not mix calls to the printing functions
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of the basic I/O system with calls to the functions of this module:
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this could result in some strange output seemingly unrelated with
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the evaluation order of printing commands.
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You may consider this module as providing an extension to the
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[printf] facility to provide automatic line breaking. The addition of
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pretty-printing annotations to your regular [printf] formats gives you
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fancy indentation and line breaks.
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Pretty-printing annotations are described below in the documentation of
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the function {!Format.fprintf}.
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You may also use the explicit box management and printing functions
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provided by this module. This style is more basic but more verbose
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than the [fprintf] concise formats.
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For instance, the sequence
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[open_box (); print_string "x ="; print_space (); print_int 1; close_box ()]
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that prints [x = 1] within a pretty-printing box, can be
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abbreviated as [printf "@[%s@ %i@]" "x =" 1], or even shorter
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[printf "@[x =@ %i@]" 1].
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Rule of thumb for casual users of this library:
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- use simple boxes (as obtained by [open_box 0]);
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- use simple break hints (as obtained by [print_cut ()] that outputs a
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simple break hint, or by [print_space ()] that outputs a space
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indicating a break hint);
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- once a box is opened, display its material with basic printing
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functions (e. g. [print_int] and [print_string]);
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- when the material for a box has been printed, call [close_box ()] to
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close the box;
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- at the end of your routine, evaluate [print_newline ()] to close
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all remaining boxes and flush the pretty-printer.
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The behaviour of pretty-printing commands is unspecified
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if there is no opened pretty-printing box. Each box opened via
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one of the [open_] functions below must be closed using [close_box]
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for proper formatting. Otherwise, some of the material printed in the
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boxes may not be output, or may be formatted incorrectly.
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In case of interactive use, the system closes all opened boxes and
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flushes all pending text (as with the [print_newline] function)
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after each phrase. Each phrase is therefore executed in the initial
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state of the pretty-printer.
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*)
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(** {6 Boxes} *)
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val open_box : int -> unit;;
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(** [open_box d] opens a new pretty-printing box
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with offset [d].
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This box is the general purpose pretty-printing box.
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Material in this box is displayed ``horizontal or vertical'':
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break hints inside the box may lead to a new line, if there
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is no more room on the line to print the remainder of the box,
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or if a new line may lead to a new indentation
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(demonstrating the indentation of the box).
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When a new line is printed in the box, [d] is added to the
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current indentation. *)
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val close_box : unit -> unit;;
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(** Close the most recently opened pretty-printing box. *)
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(** {6 Formatting functions} *)
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val print_string : string -> unit;;
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(** [print_string str] prints [str] in the current box. *)
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val print_as : int -> string -> unit;;
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(** [print_as len str] prints [str] in the
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current box. The pretty-printer formats [str] as if
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it were of length [len]. *)
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val print_int : int -> unit;;
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(** Print an integer in the current box. *)
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val print_float : float -> unit;;
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(** Print a floating point number in the current box. *)
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val print_char : char -> unit;;
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(** Print a character in the current box. *)
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val print_bool : bool -> unit;;
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(** Print a boolean in the current box. *)
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(** {6 Break hints} *)
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val print_space : unit -> unit;;
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(** [print_space ()] is used to separate items (typically to print
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a space between two words).
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It indicates that the line may be split at this
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point. It either prints one space or splits the line.
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It is equivalent to [print_break 1 0]. *)
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val print_cut : unit -> unit;;
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(** [print_cut ()] is used to mark a good break position.
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It indicates that the line may be split at this
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point. It either prints nothing or splits the line.
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This allows line splitting at the current
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point, without printing spaces or adding indentation.
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It is equivalent to [print_break 0 0]. *)
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val print_break : int -> int -> unit;;
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(** Insert a break hint in a pretty-printing box.
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[print_break nspaces offset] indicates that the line may
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be split (a newline character is printed) at this point,
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if the contents of the current box does not fit on the
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current line.
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If the line is split at that point, [offset] is added to
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the current indentation. If the line is not split,
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[nspaces] spaces are printed. *)
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val print_flush : unit -> unit;;
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(** Flush the pretty printer: all opened boxes are closed,
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and all pending text is displayed. *)
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val print_newline : unit -> unit;;
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(** Equivalent to [print_flush] followed by a new line. *)
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val force_newline : unit -> unit;;
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(** Force a newline in the current box. Not the normal way of
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pretty-printing, you should prefer break hints. *)
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val print_if_newline : unit -> unit;;
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(** Execute the next formatting command if the preceding line
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has just been split. Otherwise, ignore the next formatting
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command. *)
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(** {6 Margin} *)
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val set_margin : int -> unit;;
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(** [set_margin d] sets the value of the right margin
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to [d] (in characters): this value is used to detect line
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overflows that leads to split lines.
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Nothing happens if [d] is smaller than 2 or
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bigger than 999999999. *)
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val get_margin : unit -> int;;
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(** Return the position of the right margin. *)
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(** {6 Maximum indentation limit} *)
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val set_max_indent : int -> unit;;
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(** [set_max_indent d] sets the value of the maximum
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indentation limit to [d] (in characters):
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once this limit is reached, boxes are rejected to the left,
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if they do not fit on the current line.
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Nothing happens if [d] is smaller than 2 or
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bigger than 999999999. *)
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val get_max_indent : unit -> int;;
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(** Return the value of the maximum indentation limit (in characters). *)
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(** {6 Formatting depth: maximum number of boxes allowed before ellipsis} *)
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val set_max_boxes : int -> unit;;
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(** [set_max_boxes max] sets the maximum number
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of boxes simultaneously opened.
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Material inside boxes nested deeper is printed as an
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ellipsis (more precisely as the text returned by
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[get_ellipsis_text ()]).
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Nothing happens if [max] is not greater than 1. *)
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val get_max_boxes : unit -> int;;
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(** Return the maximum number of boxes allowed before ellipsis. *)
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val over_max_boxes : unit -> bool;;
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(** Test if the maximum number of boxes allowed have already been opened. *)
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(** {6 Advanced formatting} *)
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val open_hbox : unit -> unit;;
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(** [open_hbox ()] opens a new pretty-printing box.
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This box is ``horizontal'': the line is not split in this box
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(new lines may still occur inside boxes nested deeper). *)
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val open_vbox : int -> unit;;
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(** [open_vbox d] opens a new pretty-printing box
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with offset [d].
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This box is ``vertical'': every break hint inside this
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box leads to a new line.
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When a new line is printed in the box, [d] is added to the
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current indentation. *)
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val open_hvbox : int -> unit;;
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(** [open_hvbox d] opens a new pretty-printing box
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with offset [d].
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This box is ``horizontal-vertical'': it behaves as an
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``horizontal'' box if it fits on a single line,
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otherwise it behaves as a ``vertical'' box.
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When a new line is printed in the box, [d] is added to the
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current indentation. *)
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val open_hovbox : int -> unit;;
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(** [open_hovbox d] opens a new pretty-printing box
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with offset [d].
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This box is ``horizontal or vertical'': break hints
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inside this box may lead to a new line, if there is no more room
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on the line to print the remainder of the box.
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When a new line is printed in the box, [d] is added to the
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current indentation. *)
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(** {6 Tabulations} *)
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val open_tbox : unit -> unit;;
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(** Open a tabulation box. *)
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val close_tbox : unit -> unit;;
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(** Close the most recently opened tabulation box. *)
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val print_tbreak : int -> int -> unit;;
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(** Break hint in a tabulation box.
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[print_tbreak spaces offset] moves the insertion point to
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the next tabulation ([spaces] being added to this position).
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Nothing occurs if insertion point is already on a
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tabulation mark.
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If there is no next tabulation on the line, then a newline
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is printed and the insertion point moves to the first
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tabulation of the box.
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If a new line is printed, [offset] is added to the current
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indentation. *)
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val set_tab : unit -> unit;;
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(** Set a tabulation mark at the current insertion point. *)
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val print_tab : unit -> unit;;
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(** [print_tab ()] is equivalent to [print_tbreak (0,0)]. *)
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(** {6 Tags} *)
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(** Tags are are used to mark printed entities for user's defined
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purposes, e.g. setting font and giving size indications for a
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display device, or marking delimitations of semantics entities
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(e.g. HTML or TeX elements or terminal escape sequences).
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Tag markers are not considered as part of the printing material
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that drive line breaking (the length of the strings corresponding
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to tag markers is considered as zero).
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In addition, if [set_print_tags] is set to [false], the pretty
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printer engine omits tags. *)
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type tag = string;;
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val open_tag : tag -> unit;;
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val close_tag : unit -> unit;;
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(** [open_tag s] opens the tag named [s] that is output as the zero
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length token [mark_open_tag s]; next [close_tag ()] call
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outputs [mark_close_tag s], also as a zero length token. *)
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type formatter_tag_functions = {
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mark_open_tag : tag -> string;
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mark_close_tag : tag -> string;
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print_open_tag : tag -> unit;
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print_close_tag : tag -> unit;
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};;
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(** The tag handling functions of a formatter:
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[mark] versions output string as 0 length tokens,
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[print] versions can perform regular printing. *)
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val set_formatter_tag_functions :
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formatter_tag_functions -> unit;;
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val get_formatter_tag_functions :
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unit -> formatter_tag_functions;;
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val set_print_tags : bool -> unit;;
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val set_mark_tags : bool -> unit;;
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(** [set_print_tags b] turns on or off the printing of tags, while
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[set_mark_tags b] turns on or off the output of tag markers.
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This way a single pretty printing routine can output both simple
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``verbatim'' material or richer decorated output depending on the
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treatment of tags. Default behavior of the pretty printer is to
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print tags and markers of tags. *)
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val get_print_tags : unit -> bool;;
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val get_mark_tags : unit -> bool;;
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(** Return the current status of tag printing and marking. *)
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(** {6 Ellipsis} *)
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val set_ellipsis_text : string -> unit;;
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(** Set the text of the ellipsis printed when too many boxes
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are opened (a single dot, [.], by default). *)
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val get_ellipsis_text : unit -> string;;
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(** Return the text of the ellipsis. *)
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(** {6 Redirecting formatter output} *)
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val set_formatter_out_channel : out_channel -> unit;;
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(** Redirect the pretty-printer output to the given channel. *)
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(** {6 Changing the meaning of printing material} *)
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val set_formatter_output_functions :
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(string -> int -> int -> unit) -> (unit -> unit) -> unit;;
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(** [set_formatter_output_functions out flush] redirects the
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pretty-printer output to the functions [out] and [flush].
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The [out] function performs the pretty-printer output. It is called
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with a string [s], a start position [p], and a number of characters
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[n]; it is supposed to output characters [p] to [p + n - 1] of
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[s]. The [flush] function is called whenever the pretty-printer is
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flushed using [print_flush] or [print_newline]. *)
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val get_formatter_output_functions :
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unit -> (string -> int -> int -> unit) * (unit -> unit);;
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(** Return the current output functions of the pretty-printer. *)
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(*val set_formatter_tag_functions :
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(string -> tag) -> (tag -> unit) -> unit;;
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(** [set_formatter_tag_functions open close] changes the meaning of
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opening and closing tags to use the functions [open] and [close].
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When opening a tag name [s], the string [s] is passed to the [open]
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function that must return the tag corresponding to that name; this
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tag is sent back to the tag closing function [close], when the
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next call to [close_tag ()] happens.
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*)
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val get_formatter_tag_functions :
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unit -> (string -> tag) * (tag -> unit);;
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(** Return the current tag functions of the pretty-printer. *)
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*)
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(** {6 Changing the meaning of pretty printing (indentation, line breaking, and printing material)} *)
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val set_all_formatter_output_functions :
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out:(string -> int -> int -> unit) ->
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flush:(unit -> unit) ->
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newline:(unit -> unit) ->
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spaces:(int -> unit) ->
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unit;;
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(** [set_all_formatter_output_functions out flush outnewline outspace]
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redirects the pretty-printer output to the functions [out] and
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[flush] as described in [set_formatter_output_functions]. In
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addition, the pretty-printer function that outputs a newline is set
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to the function [outnewline] and the function that outputs
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indentation spaces is set to the function [outspace].
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This way, you can change the meaning of indentation (which can be
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something else than just printing space characters) and the
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meaning of new lines opening (which can be connected to any other
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action needed by the application at hand). The two functions
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[outspace] and [outnewline] are normally connected to [out] and
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[flush]: respective default values for [outspace] and [outnewline]
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are [out (String.make n ' ') 0 n] and [out "\n" 0 1]. *)
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val get_all_formatter_output_functions :
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unit ->
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(string -> int -> int -> unit) *
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(unit -> unit) *
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(unit -> unit) *
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(int -> unit);;
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(** Return the current output functions of the pretty-printer,
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including line breaking and indentation functions. *)
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(** {6 Multiple formatted output} *)
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type formatter;;
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(** Abstract data type corresponding to a pretty-printer and
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all its machinery.
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Defining new pretty-printers permits the output of
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material in parallel on several channels.
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Parameters of a pretty-printer are local to this pretty-printer:
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margin, maximum indentation limit, maximum number of boxes
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simultaneously opened, ellipsis, and so on, are specific to
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each pretty-printer and may be fixed independently.
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Given an output channel [oc], a new formatter writing to
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that channel is obtained by calling [formatter_of_out_channel oc].
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Alternatively, the [make_formatter] function allocates a new
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formatter with explicit output and flushing functions
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(convenient to output material to strings for instance). *)
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val formatter_of_out_channel : out_channel -> formatter;;
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(** [formatter_of_out_channel oc] returns a new formatter that
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writes to the corresponding channel [oc]. *)
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val std_formatter : formatter;;
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(** The standard formatter used by the formatting functions
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above. It is defined as [formatter_of_out_channel stdout]. *)
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val err_formatter : formatter;;
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(** A formatter to use with formatting functions below for
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output to standard error. It is defined as
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[formatter_of_out_channel stderr]. *)
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val formatter_of_buffer : Buffer.t -> formatter;;
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(** [formatter_of_buffer b] returns a new formatter writing to
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buffer [b]. As usual, the formatter has to be flushed at
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the end of pretty printing, using [pp_print_flush] or
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[pp_print_newline], to display all the pending material. *)
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val stdbuf : Buffer.t;;
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(** The string buffer in which [str_formatter] writes. *)
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val str_formatter : formatter;;
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(** A formatter to use with formatting functions below for
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output to the [stdbuf] string buffer.
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[str_formatter] is defined as [formatter_of_buffer stdbuf]. *)
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val flush_str_formatter : unit -> string;;
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(** Returns the material printed with [str_formatter], flushes
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the formatter and reset the corresponding buffer. *)
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val make_formatter :
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(string -> int -> int -> unit) -> (unit -> unit) -> formatter;;
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(** [make_formatter out flush] returns a new formatter that
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writes according to the output function [out], and the flushing
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function [flush]. Hence, a formatter to the out channel [oc]
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is returned by [make_formatter (output oc) (fun () -> flush oc)]. *)
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(** {6 Basic functions to use with formatters} *)
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val pp_open_hbox : formatter -> unit -> unit;;
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val pp_open_vbox : formatter -> int -> unit;;
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val pp_open_hvbox : formatter -> int -> unit;;
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val pp_open_hovbox : formatter -> int -> unit;;
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val pp_open_box : formatter -> int -> unit;;
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val pp_close_box : formatter -> unit -> unit;;
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val pp_open_tag : formatter -> string -> unit;;
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val pp_close_tag : formatter -> unit -> unit;;
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val pp_print_string : formatter -> string -> unit;;
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val pp_print_as : formatter -> int -> string -> unit;;
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val pp_print_int : formatter -> int -> unit;;
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val pp_print_float : formatter -> float -> unit;;
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val pp_print_char : formatter -> char -> unit;;
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val pp_print_bool : formatter -> bool -> unit;;
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val pp_print_break : formatter -> int -> int -> unit;;
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val pp_print_cut : formatter -> unit -> unit;;
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val pp_print_space : formatter -> unit -> unit;;
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val pp_force_newline : formatter -> unit -> unit;;
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val pp_print_flush : formatter -> unit -> unit;;
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val pp_print_newline : formatter -> unit -> unit;;
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val pp_print_if_newline : formatter -> unit -> unit;;
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val pp_open_tbox : formatter -> unit -> unit;;
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val pp_close_tbox : formatter -> unit -> unit;;
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val pp_print_tbreak : formatter -> int -> int -> unit;;
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val pp_set_tab : formatter -> unit -> unit;;
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val pp_print_tab : formatter -> unit -> unit;;
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val pp_set_print_tags : formatter -> bool -> unit;;
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val pp_set_mark_tags : formatter -> bool -> unit;;
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val pp_get_print_tags : formatter -> unit -> bool;;
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val pp_get_mark_tags : formatter -> unit -> bool;;
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val pp_set_margin : formatter -> int -> unit;;
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val pp_get_margin : formatter -> unit -> int;;
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val pp_set_max_indent : formatter -> int -> unit;;
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val pp_get_max_indent : formatter -> unit -> int;;
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val pp_set_max_boxes : formatter -> int -> unit;;
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val pp_get_max_boxes : formatter -> unit -> int;;
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val pp_over_max_boxes : formatter -> unit -> bool;;
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val pp_set_ellipsis_text : formatter -> string -> unit;;
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val pp_get_ellipsis_text : formatter -> unit -> string;;
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val pp_set_formatter_out_channel : formatter -> out_channel -> unit;;
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val pp_set_formatter_output_functions :
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formatter -> (string -> int -> int -> unit) -> (unit -> unit) -> unit;;
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val pp_get_formatter_output_functions :
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formatter -> unit -> (string -> int -> int -> unit) * (unit -> unit);;
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val pp_set_all_formatter_output_functions :
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formatter -> out:(string -> int -> int -> unit) -> flush:(unit -> unit) ->
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newline:(unit -> unit) -> spaces:(int -> unit) -> unit;;
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val pp_get_all_formatter_output_functions :
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formatter -> unit ->
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(string -> int -> int -> unit) * (unit -> unit) * (unit -> unit) *
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(int -> unit);;
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val pp_set_formatter_tag_functions :
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formatter -> formatter_tag_functions -> unit;;
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val pp_get_formatter_tag_functions :
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formatter -> unit -> formatter_tag_functions;;
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(** These functions are the basic ones: usual functions
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operating on the standard formatter are defined via partial
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evaluation of these primitives. For instance,
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[print_string] is equal to [pp_print_string std_formatter]. *)
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(** {6 [printf] like functions for pretty-printing.} *)
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val fprintf : formatter -> ('a, formatter, unit) format -> 'a;;
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(** [fprintf ff format arg1 ... argN] formats the arguments
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[arg1] to [argN] according to the format string [format],
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and outputs the resulting string on the formatter [ff].
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The format is a character string which contains three types of
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objects: plain characters and conversion specifications as
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specified in the [printf] module, and pretty-printing
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|
indications.
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The pretty-printing indication characters are introduced by
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a [@] character, and their meanings are:
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- [@\[]: open a pretty-printing box. The type and offset of the
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box may be optionally specified with the following syntax:
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the [<] character, followed by an optional box type indication,
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then an optional integer offset, and the closing [>] character.
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Box type is one of [h], [v], [hv], [b], or [hov],
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which stand respectively for an horizontal box, a vertical box,
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an ``horizontal-vertical'' box, or an ``horizontal or
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|
vertical'' box ([b] standing for an ``horizontal or
|
|
vertical'' box demonstrating indentation and [hov] standing
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|
for a regular``horizontal or vertical'' box).
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|
For instance, [@\[<hov 2>] opens an ``horizontal or vertical''
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|
box with indentation 2 as obtained with [open_hovbox 2].
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|
For more details about boxes, see the various box opening
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|
functions [open_*box].
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- [@\]]: close the most recently opened pretty-printing box.
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|
- [@,]: output a good break as with [print_cut ()].
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|
- [@ ]: output a space, as with [print_space ()].
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- [@\n]: force a newline, as with [force_newline ()].
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|
- [@;]: output a good break as with [print_break]. The
|
|
[nspaces] and [offset] parameters of the break may be
|
|
optionally specified with the following syntax:
|
|
the [<] character, followed by an integer [nspaces] value,
|
|
then an integer offset, and a closing [>] character.
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|
- [@?]: flush the pretty printer as with [print_flush ()].
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|
- [@.]: flush the pretty printer and output a new line, as with
|
|
[print_newline ()].
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|
- [@<n>]: print the following item as if it were of length [n].
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|
Hence, [printf "@<0>%s" arg] is equivalent to [print_as 0 arg].
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|
If [@<n>] is not followed by a conversion specification,
|
|
then the following character of the format is printed as if
|
|
it were of length [n].
|
|
- [@\{]: open a tag. The name of the tag may be optionally
|
|
specified with the following syntax:
|
|
the [<] character, followed by an optional string
|
|
specification, and the closing [>] character. The string
|
|
specification is any character string that does not contain the
|
|
closing character ['>']. If omitted, the tag name defaults to the
|
|
empty string.
|
|
For more details about tags, see the functions [open_tag] and
|
|
[close_tag].
|
|
- [@\}]: close the most recently opened tag.
|
|
- [@@]: print a plain [@] character.
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|
|
|
Example: [printf "@[%s@ %d@]" "x =" 1] is equivalent to
|
|
[open_box (); print_string "x ="; print_space (); print_int 1; close_box ()].
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|
It prints [x = 1] within a pretty-printing box.
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|
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|
*)
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val printf : ('a, formatter, unit) format -> 'a;;
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(** Same as [fprintf] above, but output on [std_formatter]. *)
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|
val eprintf : ('a, formatter, unit) format -> 'a;;
|
|
(** Same as [fprintf] above, but output on [err_formatter]. *)
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|
|
val sprintf : ('a, unit, string) format -> 'a;;
|
|
(** Same as [printf] above, but instead of printing on a formatter,
|
|
return a string containing the result of formatting the arguments.
|
|
Note that the pretty-printer queue is flushed at the end of each
|
|
call to [sprintf].
|
|
|
|
In case of multiple and related calls to [sprintf] to output
|
|
material on a single string, you should consider using [fprintf]
|
|
with a formatter writing to a buffer: flushing the buffer at the
|
|
end of pretty-printing returns the desired string. You can also use
|
|
the predefined formatter [str_formatter] and call
|
|
[flush_str_formatter ()] to get the result. *)
|
|
|
|
val bprintf : Buffer.t -> ('a, formatter, unit) format -> 'a;;
|
|
(** Same as [sprintf] above, but instead of printing on a string,
|
|
writes into the given extensible buffer.
|
|
As for [sprintf], the pretty-printer queue is flushed at the end of each
|
|
call to [bprintf].
|
|
|
|
In case of multiple and related calls to [bprintf] to output
|
|
material on the same buffer [b], you should consider using
|
|
[fprintf] with a formatter writing to the buffer [b] (as obtained
|
|
by [formatter_of_buffer b]), otherwise the repeated flushes of the
|
|
pretty-printer queue would result in badly formatted output. *)
|
|
|
|
val kprintf : (string -> string) -> ('a, unit, string) format -> 'a;;
|
|
(** Same as [sprintf] above, but instead of returning the string,
|
|
pass it to the first argument. *)
|