1229 lines
39 KiB
OCaml
1229 lines
39 KiB
OCaml
(***********************************************************************)
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(* *)
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(* OCaml *)
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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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(* A pretty-printing facility and definition of formatters for 'parallel'
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(i.e. unrelated or independent) pretty-printing on multiple out channels. *)
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(**************************************************************
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Data structures definitions.
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**************************************************************)
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type size;;
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external size_of_int : int -> size = "%identity"
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;;
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external int_of_size : size -> int = "%identity"
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;;
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(* Tokens are one of the following : *)
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type block_type
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= CamlinternalFormatBasics.block_type
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= Pp_hbox | Pp_vbox | Pp_hvbox | Pp_hovbox | Pp_box | Pp_fits
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type pp_token =
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| Pp_text of string (* normal text *)
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| Pp_break of int * int (* complete break *)
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| Pp_tbreak of int * int (* go to next tabulation *)
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| Pp_stab (* set a tabulation *)
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| Pp_begin of int * block_type (* beginning of a block *)
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| Pp_end (* end of a block *)
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| Pp_tbegin of tblock (* beginning of a tabulation block *)
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| Pp_tend (* end of a tabulation block *)
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| Pp_newline (* to force a newline inside a block *)
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| Pp_if_newline (* to do something only if this very
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line has been broken *)
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| Pp_open_tag of tag (* opening a tag name *)
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| Pp_close_tag (* closing the most recently opened tag *)
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and tag = string
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and tblock = Pp_tbox of int list ref (* Tabulation box *)
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(* The Queue:
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contains all formatting elements.
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elements are tuples (size, token, length), where
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size is set when the size of the block is known
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len is the declared length of the token. *)
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type pp_queue_elem = {
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mutable elem_size : size;
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token : pp_token;
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length : int;
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}
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;;
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(* Scan stack:
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each element is (left_total, queue element) where left_total
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is the value of pp_left_total when the element has been enqueued. *)
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type pp_scan_elem = Scan_elem of int * pp_queue_elem;;
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(* Formatting stack:
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used to break the lines while printing tokens.
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The formatting stack contains the description of
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the currently active blocks. *)
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type pp_format_elem = Format_elem of block_type * int;;
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(* General purpose queues, used in the formatter. *)
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type 'a queue_elem =
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| Nil
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| Cons of 'a queue_cell
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and 'a queue_cell = {
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mutable head : 'a;
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mutable tail : 'a queue_elem;
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}
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;;
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type 'a queue = {
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mutable insert : 'a queue_elem;
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mutable body : 'a queue_elem;
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}
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;;
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(* The formatter specific tag handling functions. *)
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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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;;
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(* A formatter with all its machinery. *)
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type formatter = {
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mutable pp_scan_stack : pp_scan_elem list;
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mutable pp_format_stack : pp_format_elem list;
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mutable pp_tbox_stack : tblock list;
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mutable pp_tag_stack : tag list;
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mutable pp_mark_stack : tag list;
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(* Global variables: default initialization is
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set_margin 78
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set_min_space_left 0. *)
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(* Value of right margin. *)
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mutable pp_margin : int;
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(* Minimal space left before margin, when opening a block. *)
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mutable pp_min_space_left : int;
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(* Maximum value of indentation:
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no blocks can be opened further. *)
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mutable pp_max_indent : int;
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(* Space remaining on the current line. *)
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mutable pp_space_left : int;
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(* Current value of indentation. *)
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mutable pp_current_indent : int;
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(* True when the line has been broken by the pretty-printer. *)
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mutable pp_is_new_line : bool;
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(* Total width of tokens already printed. *)
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mutable pp_left_total : int;
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(* Total width of tokens ever put in queue. *)
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mutable pp_right_total : int;
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(* Current number of opened blocks. *)
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mutable pp_curr_depth : int;
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(* Maximum number of blocks which can be simultaneously opened. *)
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mutable pp_max_boxes : int;
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(* Ellipsis string. *)
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mutable pp_ellipsis : string;
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(* Output function. *)
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mutable pp_out_string : string -> int -> int -> unit;
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(* Flushing function. *)
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mutable pp_out_flush : unit -> unit;
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(* Output of new lines. *)
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mutable pp_out_newline : unit -> unit;
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(* Output of indentation spaces. *)
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mutable pp_out_spaces : int -> unit;
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(* Are tags printed ? *)
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mutable pp_print_tags : bool;
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(* Are tags marked ? *)
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mutable pp_mark_tags : bool;
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(* Find opening and closing markers of tags. *)
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mutable pp_mark_open_tag : tag -> string;
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mutable pp_mark_close_tag : tag -> string;
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mutable pp_print_open_tag : tag -> unit;
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mutable pp_print_close_tag : tag -> unit;
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(* The pretty-printer queue. *)
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mutable pp_queue : pp_queue_elem queue;
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}
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;;
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(**************************************************************
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Auxilliaries and basic functions.
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**************************************************************)
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(* Queues auxilliaries. *)
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let make_queue () = { insert = Nil; body = Nil; };;
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let clear_queue q = q.insert <- Nil; q.body <- Nil;;
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let add_queue x q =
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let c = Cons { head = x; tail = Nil; } in
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match q with
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| { insert = Cons cell; body = _; } ->
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q.insert <- c; cell.tail <- c
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(* Invariant: when insert is Nil body should be Nil. *)
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| { insert = Nil; body = _; } ->
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q.insert <- c; q.body <- c
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;;
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exception Empty_queue;;
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let peek_queue = function
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| { body = Cons { head = x; tail = _; }; _ } -> x
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| { body = Nil; insert = _; } -> raise Empty_queue
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;;
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let take_queue = function
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| { body = Cons { head = x; tail = tl; }; _ } as q ->
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q.body <- tl;
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if tl = Nil then q.insert <- Nil; (* Maintain the invariant. *)
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x
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| { body = Nil; insert = _; } -> raise Empty_queue
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;;
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(* Enter a token in the pretty-printer queue. *)
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let pp_enqueue state ({ length = len; _} as token) =
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state.pp_right_total <- state.pp_right_total + len;
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add_queue token state.pp_queue
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;;
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let pp_clear_queue state =
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state.pp_left_total <- 1; state.pp_right_total <- 1;
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clear_queue state.pp_queue
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;;
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(* Pp_infinity: large value for default tokens size.
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Pp_infinity is documented as being greater than 1e10; to avoid
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confusion about the word 'greater', we choose pp_infinity greater
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than 1e10 + 1; for correct handling of tests in the algorithm,
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pp_infinity must be even one more than 1e10 + 1; let's stand on the
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safe side by choosing 1.e10+10.
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Pp_infinity could probably be 1073741823 that is 2^30 - 1, that is
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the minimal upper bound for integers; now that max_int is defined,
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this limit could also be defined as max_int - 1.
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However, before setting pp_infinity to something around max_int, we
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must carefully double-check all the integer arithmetic operations
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that involve pp_infinity, since any overflow would wreck havoc the
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pretty-printing algorithm's invariants. Given that this arithmetic
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correctness check is difficult and error prone and given that 1e10
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+ 1 is in practice large enough, there is no need to attempt to set
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pp_infinity to the theoretically maximum limit. It is not worth the
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burden ! *)
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let pp_infinity = 1000000010;;
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(* Output functions for the formatter. *)
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let pp_output_string state s = state.pp_out_string s 0 (String.length s)
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and pp_output_newline state = state.pp_out_newline ()
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and pp_output_spaces state n = state.pp_out_spaces n
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(* To format a break, indenting a new line. *)
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let break_new_line state offset width =
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pp_output_newline state;
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state.pp_is_new_line <- true;
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let indent = state.pp_margin - width + offset in
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(* Don't indent more than pp_max_indent. *)
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let real_indent = min state.pp_max_indent indent in
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state.pp_current_indent <- real_indent;
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state.pp_space_left <- state.pp_margin - state.pp_current_indent;
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pp_output_spaces state state.pp_current_indent
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;;
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(* To force a line break inside a block: no offset is added. *)
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let break_line state width = break_new_line state 0 width;;
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(* To format a break that fits on the current line. *)
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let break_same_line state width =
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state.pp_space_left <- state.pp_space_left - width;
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pp_output_spaces state width
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;;
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(* To indent no more than pp_max_indent, if one tries to open a block
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beyond pp_max_indent, then the block is rejected on the left
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by simulating a break. *)
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let pp_force_break_line state =
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match state.pp_format_stack with
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| Format_elem (bl_ty, width) :: _ ->
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if width > state.pp_space_left then
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(match bl_ty with
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| Pp_fits -> () | Pp_hbox -> ()
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| Pp_vbox | Pp_hvbox | Pp_hovbox | Pp_box ->
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break_line state width)
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| [] -> pp_output_newline state
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;;
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(* To skip a token, if the previous line has been broken. *)
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let pp_skip_token state =
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(* When calling pp_skip_token the queue cannot be empty. *)
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match take_queue state.pp_queue with
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| { elem_size = size; length = len; token = _; } ->
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state.pp_left_total <- state.pp_left_total - len;
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state.pp_space_left <- state.pp_space_left + int_of_size size
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;;
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(**************************************************************
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The main pretty printing functions.
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**************************************************************)
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(* To format a token. *)
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let format_pp_token state size = function
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| Pp_text s ->
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state.pp_space_left <- state.pp_space_left - size;
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pp_output_string state s;
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state.pp_is_new_line <- false
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| Pp_begin (off, ty) ->
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let insertion_point = state.pp_margin - state.pp_space_left in
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if insertion_point > state.pp_max_indent then
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(* can not open a block right there. *)
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begin pp_force_break_line state end;
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let offset = state.pp_space_left - off in
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let bl_type =
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begin match ty with
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| Pp_vbox -> Pp_vbox
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| Pp_hbox | Pp_hvbox | Pp_hovbox | Pp_box | Pp_fits ->
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if size > state.pp_space_left then ty else Pp_fits
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end in
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state.pp_format_stack <-
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Format_elem (bl_type, offset) :: state.pp_format_stack
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| Pp_end ->
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begin match state.pp_format_stack with
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| _ :: ls -> state.pp_format_stack <- ls
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| [] -> () (* No more block to close. *)
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end
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| Pp_tbegin (Pp_tbox _ as tbox) ->
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state.pp_tbox_stack <- tbox :: state.pp_tbox_stack
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| Pp_tend ->
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begin match state.pp_tbox_stack with
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| _ :: ls -> state.pp_tbox_stack <- ls
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| [] -> () (* No more tabulation block to close. *)
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end
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| Pp_stab ->
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begin match state.pp_tbox_stack with
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| Pp_tbox tabs :: _ ->
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let rec add_tab n = function
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| [] -> [n]
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| x :: l as ls -> if n < x then n :: ls else x :: add_tab n l in
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tabs := add_tab (state.pp_margin - state.pp_space_left) !tabs
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| [] -> () (* No opened tabulation block. *)
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end
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| Pp_tbreak (n, off) ->
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let insertion_point = state.pp_margin - state.pp_space_left in
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begin match state.pp_tbox_stack with
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| Pp_tbox tabs :: _ ->
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let rec find n = function
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| x :: l -> if x >= n then x else find n l
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| [] -> raise Not_found in
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let tab =
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match !tabs with
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| x :: _ ->
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begin
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try find insertion_point !tabs with
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| Not_found -> x
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end
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| _ -> insertion_point in
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let offset = tab - insertion_point in
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if offset >= 0
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then break_same_line state (offset + n)
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else break_new_line state (tab + off) state.pp_margin
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| [] -> () (* No opened tabulation block. *)
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end
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| Pp_newline ->
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begin match state.pp_format_stack with
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| Format_elem (_, width) :: _ -> break_line state width
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| [] -> pp_output_newline state (* No opened block. *)
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end
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| Pp_if_newline ->
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if state.pp_current_indent != state.pp_margin - state.pp_space_left
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then pp_skip_token state
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| Pp_break (n, off) ->
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begin match state.pp_format_stack with
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| Format_elem (ty, width) :: _ ->
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begin match ty with
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| Pp_hovbox ->
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if size > state.pp_space_left
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then break_new_line state off width
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else break_same_line state n
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| Pp_box ->
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(* Have the line just been broken here ? *)
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if state.pp_is_new_line then break_same_line state n else
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if size > state.pp_space_left
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then break_new_line state off width else
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(* break the line here leads to new indentation ? *)
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if state.pp_current_indent > state.pp_margin - width + off
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then break_new_line state off width
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else break_same_line state n
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| Pp_hvbox -> break_new_line state off width
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| Pp_fits -> break_same_line state n
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| Pp_vbox -> break_new_line state off width
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| Pp_hbox -> break_same_line state n
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end
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| [] -> () (* No opened block. *)
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end
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| Pp_open_tag tag_name ->
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let marker = state.pp_mark_open_tag tag_name in
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pp_output_string state marker;
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state.pp_mark_stack <- tag_name :: state.pp_mark_stack
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| Pp_close_tag ->
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begin match state.pp_mark_stack with
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| tag_name :: tags ->
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let marker = state.pp_mark_close_tag tag_name in
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pp_output_string state marker;
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state.pp_mark_stack <- tags
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| [] -> () (* No more tag to close. *)
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end
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;;
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(* Print if token size is known or printing is delayed.
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Size is known when not negative.
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Printing is delayed when the text waiting in the queue requires
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more room to format than exists on the current line.
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Note: [advance_loop] must be tail recursive to prevent stack overflows. *)
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let rec advance_loop state =
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match peek_queue state.pp_queue with
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| {elem_size = size; token = tok; length = len} ->
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let size = int_of_size size in
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if not
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(size < 0 &&
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(state.pp_right_total - state.pp_left_total < state.pp_space_left))
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then begin
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ignore (take_queue state.pp_queue);
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format_pp_token state (if size < 0 then pp_infinity else size) tok;
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state.pp_left_total <- len + state.pp_left_total;
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advance_loop state
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end
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;;
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let advance_left state =
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try advance_loop state with
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| Empty_queue -> ()
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;;
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let enqueue_advance state tok = pp_enqueue state tok; advance_left state;;
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(* To enqueue a string : try to advance. *)
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let make_queue_elem size tok len =
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{ elem_size = size; token = tok; length = len; }
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;;
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let enqueue_string_as state size s =
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let len = int_of_size size in
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enqueue_advance state (make_queue_elem size (Pp_text s) len)
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;;
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let enqueue_string state s =
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let len = String.length s in
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enqueue_string_as state (size_of_int len) s
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;;
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(* Routines for scan stack
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determine sizes of blocks. *)
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(* The scan_stack is never empty. *)
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let scan_stack_bottom =
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let q_elem = make_queue_elem (size_of_int (-1)) (Pp_text "") 0 in
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[Scan_elem (-1, q_elem)]
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;;
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(* Set size of blocks on scan stack:
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if ty = true then size of break is set else size of block is set;
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in each case pp_scan_stack is popped. *)
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let clear_scan_stack state = state.pp_scan_stack <- scan_stack_bottom;;
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(* Pattern matching on scan stack is exhaustive,
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since scan_stack is never empty.
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Pattern matching on token in scan stack is also exhaustive,
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since scan_push is used on breaks and opening of boxes. *)
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let set_size state ty =
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match state.pp_scan_stack with
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| Scan_elem
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(left_tot,
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({ elem_size = size; token = tok; length = _; } as queue_elem)) :: t ->
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let size = int_of_size size in
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(* test if scan stack contains any data that is not obsolete. *)
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if left_tot < state.pp_left_total then clear_scan_stack state else
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begin match tok with
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| Pp_break (_, _) | Pp_tbreak (_, _) ->
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if ty then
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begin
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queue_elem.elem_size <- size_of_int (state.pp_right_total + size);
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state.pp_scan_stack <- t
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end
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| Pp_begin (_, _) ->
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if not ty then
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begin
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queue_elem.elem_size <- size_of_int (state.pp_right_total + size);
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state.pp_scan_stack <- t
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end
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| Pp_text _ | Pp_stab | Pp_tbegin _ | Pp_tend | Pp_end
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| Pp_newline | Pp_if_newline
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| Pp_open_tag _ | Pp_close_tag ->
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() (* scan_push is only used for breaks and boxes. *)
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end
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| [] -> () (* scan_stack is never empty. *)
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;;
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|
|
(* Push a token on scan stack. If b is true set_size is called. *)
|
|
let scan_push state b tok =
|
|
pp_enqueue state tok;
|
|
if b then set_size state true;
|
|
state.pp_scan_stack <-
|
|
Scan_elem (state.pp_right_total, tok) :: state.pp_scan_stack
|
|
;;
|
|
|
|
(* To open a new block :
|
|
the user may set the depth bound pp_max_boxes
|
|
any text nested deeper is printed as the ellipsis string. *)
|
|
let pp_open_box_gen state indent br_ty =
|
|
state.pp_curr_depth <- state.pp_curr_depth + 1;
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem =
|
|
make_queue_elem
|
|
(size_of_int (- state.pp_right_total))
|
|
(Pp_begin (indent, br_ty))
|
|
0 in
|
|
scan_push state false elem else
|
|
if state.pp_curr_depth = state.pp_max_boxes
|
|
then enqueue_string state state.pp_ellipsis
|
|
;;
|
|
|
|
(* The box which is always opened. *)
|
|
let pp_open_sys_box state = pp_open_box_gen state 0 Pp_hovbox;;
|
|
|
|
(* Close a block, setting sizes of its sub blocks. *)
|
|
let pp_close_box state () =
|
|
if state.pp_curr_depth > 1 then
|
|
begin
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
begin
|
|
pp_enqueue state
|
|
{ elem_size = size_of_int 0; token = Pp_end; length = 0; };
|
|
set_size state true; set_size state false
|
|
end;
|
|
state.pp_curr_depth <- state.pp_curr_depth - 1;
|
|
end
|
|
;;
|
|
|
|
(* Open a tag, pushing it on the tag stack. *)
|
|
let pp_open_tag state tag_name =
|
|
if state.pp_print_tags then
|
|
begin
|
|
state.pp_tag_stack <- tag_name :: state.pp_tag_stack;
|
|
state.pp_print_open_tag tag_name
|
|
end;
|
|
if state.pp_mark_tags then
|
|
pp_enqueue state {
|
|
elem_size = size_of_int 0;
|
|
token = Pp_open_tag tag_name;
|
|
length = 0;
|
|
}
|
|
;;
|
|
|
|
(* Close a tag, popping it from the tag stack. *)
|
|
let pp_close_tag state () =
|
|
if state.pp_mark_tags then
|
|
pp_enqueue state {
|
|
elem_size = size_of_int 0;
|
|
token = Pp_close_tag;
|
|
length = 0;
|
|
};
|
|
if state.pp_print_tags then
|
|
begin
|
|
match state.pp_tag_stack with
|
|
| tag_name :: tags ->
|
|
state.pp_print_close_tag tag_name;
|
|
state.pp_tag_stack <- tags
|
|
| _ -> () (* No more tag to close. *)
|
|
end
|
|
;;
|
|
|
|
let pp_set_print_tags state b = state.pp_print_tags <- b;;
|
|
let pp_set_mark_tags state b = state.pp_mark_tags <- b;;
|
|
let pp_get_print_tags state () = state.pp_print_tags;;
|
|
let pp_get_mark_tags state () = state.pp_mark_tags;;
|
|
let pp_set_tags state b =
|
|
pp_set_print_tags state b; pp_set_mark_tags state b
|
|
;;
|
|
|
|
let pp_get_formatter_tag_functions state () = {
|
|
mark_open_tag = state.pp_mark_open_tag;
|
|
mark_close_tag = state.pp_mark_close_tag;
|
|
print_open_tag = state.pp_print_open_tag;
|
|
print_close_tag = state.pp_print_close_tag;
|
|
}
|
|
;;
|
|
|
|
let pp_set_formatter_tag_functions state {
|
|
mark_open_tag = mot;
|
|
mark_close_tag = mct;
|
|
print_open_tag = pot;
|
|
print_close_tag = pct;
|
|
} =
|
|
state.pp_mark_open_tag <- mot;
|
|
state.pp_mark_close_tag <- mct;
|
|
state.pp_print_open_tag <- pot;
|
|
state.pp_print_close_tag <- pct
|
|
;;
|
|
|
|
(* Initialize pretty-printer. *)
|
|
let pp_rinit state =
|
|
pp_clear_queue state;
|
|
clear_scan_stack state;
|
|
state.pp_format_stack <- [];
|
|
state.pp_tbox_stack <- [];
|
|
state.pp_tag_stack <- [];
|
|
state.pp_mark_stack <- [];
|
|
state.pp_current_indent <- 0;
|
|
state.pp_curr_depth <- 0;
|
|
state.pp_space_left <- state.pp_margin;
|
|
pp_open_sys_box state
|
|
;;
|
|
|
|
(* Flushing pretty-printer queue. *)
|
|
let pp_flush_queue state b =
|
|
while state.pp_curr_depth > 1 do
|
|
pp_close_box state ()
|
|
done;
|
|
state.pp_right_total <- pp_infinity;
|
|
advance_left state;
|
|
if b then pp_output_newline state;
|
|
pp_rinit state
|
|
;;
|
|
|
|
(**************************************************************
|
|
|
|
Procedures to format objects, and use boxes
|
|
|
|
**************************************************************)
|
|
|
|
(* To format a string. *)
|
|
let pp_print_as_size state size s =
|
|
if state.pp_curr_depth < state.pp_max_boxes
|
|
then enqueue_string_as state size s
|
|
;;
|
|
|
|
let pp_print_as state isize s =
|
|
pp_print_as_size state (size_of_int isize) s
|
|
;;
|
|
|
|
let pp_print_string state s =
|
|
pp_print_as state (String.length s) s
|
|
;;
|
|
|
|
(* To format an integer. *)
|
|
let pp_print_int state i = pp_print_string state (string_of_int i);;
|
|
|
|
(* To format a float. *)
|
|
let pp_print_float state f = pp_print_string state (string_of_float f);;
|
|
|
|
(* To format a boolean. *)
|
|
let pp_print_bool state b = pp_print_string state (string_of_bool b);;
|
|
|
|
(* To format a char. *)
|
|
let pp_print_char state c =
|
|
pp_print_as state 1 (String.make 1 c)
|
|
;;
|
|
|
|
(* Opening boxes. *)
|
|
let pp_open_hbox state () = pp_open_box_gen state 0 Pp_hbox
|
|
and pp_open_vbox state indent = pp_open_box_gen state indent Pp_vbox
|
|
|
|
and pp_open_hvbox state indent = pp_open_box_gen state indent Pp_hvbox
|
|
and pp_open_hovbox state indent = pp_open_box_gen state indent Pp_hovbox
|
|
and pp_open_box state indent = pp_open_box_gen state indent Pp_box
|
|
;;
|
|
|
|
(* Print a new line after printing all queued text
|
|
(same for print_flush but without a newline). *)
|
|
let pp_print_newline state () =
|
|
pp_flush_queue state true; state.pp_out_flush ()
|
|
and pp_print_flush state () =
|
|
pp_flush_queue state false; state.pp_out_flush ()
|
|
;;
|
|
|
|
(* To get a newline when one does not want to close the current block. *)
|
|
let pp_force_newline state () =
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
enqueue_advance state (make_queue_elem (size_of_int 0) Pp_newline 0)
|
|
;;
|
|
|
|
(* To format something if the line has just been broken. *)
|
|
let pp_print_if_newline state () =
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
enqueue_advance state (make_queue_elem (size_of_int 0) Pp_if_newline 0)
|
|
;;
|
|
|
|
(* Breaks: indicate where a block may be broken.
|
|
If line is broken then offset is added to the indentation of the current
|
|
block else (the value of) width blanks are printed.
|
|
To do (?) : add a maximum width and offset value. *)
|
|
let pp_print_break state width offset =
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem =
|
|
make_queue_elem
|
|
(size_of_int (- state.pp_right_total))
|
|
(Pp_break (width, offset))
|
|
width in
|
|
scan_push state true elem
|
|
;;
|
|
|
|
let pp_print_space state () = pp_print_break state 1 0
|
|
and pp_print_cut state () = pp_print_break state 0 0
|
|
;;
|
|
|
|
(* Tabulation boxes. *)
|
|
let pp_open_tbox state () =
|
|
state.pp_curr_depth <- state.pp_curr_depth + 1;
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem =
|
|
make_queue_elem (size_of_int 0) (Pp_tbegin (Pp_tbox (ref []))) 0 in
|
|
enqueue_advance state elem
|
|
;;
|
|
|
|
(* Close a tabulation block. *)
|
|
let pp_close_tbox state () =
|
|
if state.pp_curr_depth > 1 then
|
|
begin
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem = make_queue_elem (size_of_int 0) Pp_tend 0 in
|
|
enqueue_advance state elem;
|
|
state.pp_curr_depth <- state.pp_curr_depth - 1
|
|
end
|
|
;;
|
|
|
|
(* Print a tabulation break. *)
|
|
let pp_print_tbreak state width offset =
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem =
|
|
make_queue_elem
|
|
(size_of_int (- state.pp_right_total))
|
|
(Pp_tbreak (width, offset))
|
|
width in
|
|
scan_push state true elem
|
|
;;
|
|
|
|
let pp_print_tab state () = pp_print_tbreak state 0 0;;
|
|
|
|
let pp_set_tab state () =
|
|
if state.pp_curr_depth < state.pp_max_boxes then
|
|
let elem =
|
|
make_queue_elem (size_of_int 0) Pp_stab 0 in
|
|
enqueue_advance state elem
|
|
;;
|
|
|
|
|
|
(* Convenience functions *)
|
|
|
|
(* To format a list *)
|
|
let rec pp_print_list ?(pp_sep = pp_print_cut) pp_v ppf = function
|
|
| [] -> ()
|
|
| [v] -> pp_v ppf v
|
|
| v :: vs ->
|
|
pp_v ppf v;
|
|
pp_sep ppf ();
|
|
pp_print_list ~pp_sep pp_v ppf vs
|
|
|
|
(* To format free-flowing text *)
|
|
let pp_print_text ppf s =
|
|
let len = String.length s in
|
|
let left = ref 0 in
|
|
let right = ref 0 in
|
|
let flush () =
|
|
pp_print_string ppf (String.sub s !left (!right - !left));
|
|
incr right; left := !right;
|
|
in
|
|
while (!right <> len) do
|
|
match s.[!right] with
|
|
| '\n' ->
|
|
flush ();
|
|
pp_force_newline ppf ()
|
|
| ' ' ->
|
|
flush (); pp_print_space ppf ()
|
|
(* there is no specific support for '\t'
|
|
as it is unclear what a right semantics would be *)
|
|
| _ -> incr right
|
|
done;
|
|
if !left <> len then flush ()
|
|
|
|
|
|
(**************************************************************
|
|
|
|
Procedures to control the pretty-printers
|
|
|
|
**************************************************************)
|
|
|
|
(* Fit max_boxes. *)
|
|
let pp_set_max_boxes state n = if n > 1 then state.pp_max_boxes <- n;;
|
|
|
|
(* To know the current maximum number of boxes allowed. *)
|
|
let pp_get_max_boxes state () = state.pp_max_boxes;;
|
|
|
|
let pp_over_max_boxes state () = state.pp_curr_depth = state.pp_max_boxes;;
|
|
|
|
(* Ellipsis. *)
|
|
let pp_set_ellipsis_text state s = state.pp_ellipsis <- s
|
|
and pp_get_ellipsis_text state () = state.pp_ellipsis
|
|
;;
|
|
|
|
(* To set the margin of pretty-printer. *)
|
|
let pp_limit n =
|
|
if n < pp_infinity then n else pred pp_infinity
|
|
;;
|
|
|
|
let pp_set_min_space_left state n =
|
|
if n >= 1 then
|
|
let n = pp_limit n in
|
|
state.pp_min_space_left <- n;
|
|
state.pp_max_indent <- state.pp_margin - state.pp_min_space_left;
|
|
pp_rinit state
|
|
;;
|
|
|
|
(* Initially, we have :
|
|
pp_max_indent = pp_margin - pp_min_space_left, and
|
|
pp_space_left = pp_margin. *)
|
|
let pp_set_max_indent state n =
|
|
pp_set_min_space_left state (state.pp_margin - n)
|
|
;;
|
|
|
|
let pp_get_max_indent state () = state.pp_max_indent;;
|
|
|
|
let pp_set_margin state n =
|
|
if n >= 1 then
|
|
let n = pp_limit n in
|
|
state.pp_margin <- n;
|
|
let new_max_indent =
|
|
(* Try to maintain max_indent to its actual value. *)
|
|
if state.pp_max_indent <= state.pp_margin
|
|
then state.pp_max_indent else
|
|
(* If possible maintain pp_min_space_left to its actual value,
|
|
if this leads to a too small max_indent, take half of the
|
|
new margin, if it is greater than 1. *)
|
|
max (max (state.pp_margin - state.pp_min_space_left)
|
|
(state.pp_margin / 2)) 1 in
|
|
(* Rebuild invariants. *)
|
|
pp_set_max_indent state new_max_indent
|
|
;;
|
|
|
|
let pp_get_margin state () = state.pp_margin;;
|
|
|
|
type formatter_out_functions = {
|
|
out_string : string -> int -> int -> unit;
|
|
out_flush : unit -> unit;
|
|
out_newline : unit -> unit;
|
|
out_spaces : int -> unit;
|
|
}
|
|
;;
|
|
|
|
let pp_set_formatter_out_functions state {
|
|
out_string = f;
|
|
out_flush = g;
|
|
out_newline = h;
|
|
out_spaces = i;
|
|
} =
|
|
state.pp_out_string <- f;
|
|
state.pp_out_flush <- g;
|
|
state.pp_out_newline <- h;
|
|
state.pp_out_spaces <- i;
|
|
;;
|
|
|
|
let pp_get_formatter_out_functions state () = {
|
|
out_string = state.pp_out_string;
|
|
out_flush = state.pp_out_flush;
|
|
out_newline = state.pp_out_newline;
|
|
out_spaces = state.pp_out_spaces;
|
|
}
|
|
;;
|
|
|
|
let pp_set_formatter_output_functions state f g =
|
|
state.pp_out_string <- f; state.pp_out_flush <- g
|
|
;;
|
|
let pp_get_formatter_output_functions state () =
|
|
(state.pp_out_string, state.pp_out_flush)
|
|
;;
|
|
|
|
let pp_set_all_formatter_output_functions state
|
|
~out:f ~flush:g ~newline:h ~spaces:i =
|
|
pp_set_formatter_output_functions state f g;
|
|
state.pp_out_newline <- h;
|
|
state.pp_out_spaces <- i;
|
|
;;
|
|
let pp_get_all_formatter_output_functions state () =
|
|
(state.pp_out_string, state.pp_out_flush,
|
|
state.pp_out_newline, state.pp_out_spaces)
|
|
;;
|
|
|
|
(* Default function to output new lines. *)
|
|
let display_newline state () = state.pp_out_string "\n" 0 1;;
|
|
|
|
(* Default function to output spaces. *)
|
|
let blank_line = String.make 80 ' ';;
|
|
let rec display_blanks state n =
|
|
if n > 0 then
|
|
if n <= 80 then state.pp_out_string blank_line 0 n else
|
|
begin
|
|
state.pp_out_string blank_line 0 80;
|
|
display_blanks state (n - 80)
|
|
end
|
|
;;
|
|
|
|
let pp_set_formatter_out_channel state os =
|
|
state.pp_out_string <- output_substring os;
|
|
state.pp_out_flush <- (fun () -> flush os);
|
|
state.pp_out_newline <- display_newline state;
|
|
state.pp_out_spaces <- display_blanks state;
|
|
;;
|
|
|
|
(**************************************************************
|
|
|
|
Creation of specific formatters
|
|
|
|
**************************************************************)
|
|
|
|
let default_pp_mark_open_tag s = "<" ^ s ^ ">";;
|
|
let default_pp_mark_close_tag s = "</" ^ s ^ ">";;
|
|
|
|
let default_pp_print_open_tag = ignore;;
|
|
let default_pp_print_close_tag = ignore;;
|
|
|
|
let pp_make_formatter f g h i =
|
|
(* The initial state of the formatter contains a dummy box. *)
|
|
let pp_q = make_queue () in
|
|
let sys_tok =
|
|
make_queue_elem (size_of_int (-1)) (Pp_begin (0, Pp_hovbox)) 0 in
|
|
add_queue sys_tok pp_q;
|
|
let sys_scan_stack =
|
|
(Scan_elem (1, sys_tok)) :: scan_stack_bottom in
|
|
{
|
|
pp_scan_stack = sys_scan_stack;
|
|
pp_format_stack = [];
|
|
pp_tbox_stack = [];
|
|
pp_tag_stack = [];
|
|
pp_mark_stack = [];
|
|
pp_margin = 78;
|
|
pp_min_space_left = 10;
|
|
pp_max_indent = 78 - 10;
|
|
pp_space_left = 78;
|
|
pp_current_indent = 0;
|
|
pp_is_new_line = true;
|
|
pp_left_total = 1;
|
|
pp_right_total = 1;
|
|
pp_curr_depth = 1;
|
|
pp_max_boxes = max_int;
|
|
pp_ellipsis = ".";
|
|
pp_out_string = f;
|
|
pp_out_flush = g;
|
|
pp_out_newline = h;
|
|
pp_out_spaces = i;
|
|
pp_print_tags = false;
|
|
pp_mark_tags = false;
|
|
pp_mark_open_tag = default_pp_mark_open_tag;
|
|
pp_mark_close_tag = default_pp_mark_close_tag;
|
|
pp_print_open_tag = default_pp_print_open_tag;
|
|
pp_print_close_tag = default_pp_print_close_tag;
|
|
pp_queue = pp_q;
|
|
}
|
|
;;
|
|
|
|
(* Make a formatter with default functions to output spaces and new lines. *)
|
|
let make_formatter output flush =
|
|
let ppf = pp_make_formatter output flush ignore ignore in
|
|
ppf.pp_out_newline <- display_newline ppf;
|
|
ppf.pp_out_spaces <- display_blanks ppf;
|
|
ppf
|
|
;;
|
|
|
|
let formatter_of_out_channel oc =
|
|
make_formatter (output_substring oc) (fun () -> flush oc)
|
|
;;
|
|
|
|
let formatter_of_buffer b =
|
|
make_formatter (Buffer.add_substring b) ignore
|
|
;;
|
|
|
|
let stdbuf = Buffer.create 512;;
|
|
|
|
(* Predefined formatters. *)
|
|
let std_formatter = formatter_of_out_channel Pervasives.stdout
|
|
and err_formatter = formatter_of_out_channel Pervasives.stderr
|
|
and str_formatter = formatter_of_buffer stdbuf
|
|
;;
|
|
|
|
let flush_buffer_formatter buf ppf =
|
|
pp_flush_queue ppf false;
|
|
let s = Buffer.contents buf in
|
|
Buffer.reset buf;
|
|
s
|
|
;;
|
|
|
|
let flush_str_formatter () = flush_buffer_formatter stdbuf str_formatter;;
|
|
|
|
(**************************************************************
|
|
|
|
Basic functions on the standard formatter
|
|
|
|
**************************************************************)
|
|
|
|
let open_hbox = pp_open_hbox std_formatter
|
|
and open_vbox = pp_open_vbox std_formatter
|
|
and open_hvbox = pp_open_hvbox std_formatter
|
|
and open_hovbox = pp_open_hovbox std_formatter
|
|
and open_box = pp_open_box std_formatter
|
|
and close_box = pp_close_box std_formatter
|
|
and open_tag = pp_open_tag std_formatter
|
|
and close_tag = pp_close_tag std_formatter
|
|
and print_as = pp_print_as std_formatter
|
|
and print_string = pp_print_string std_formatter
|
|
and print_int = pp_print_int std_formatter
|
|
and print_float = pp_print_float std_formatter
|
|
and print_char = pp_print_char std_formatter
|
|
and print_bool = pp_print_bool std_formatter
|
|
and print_break = pp_print_break std_formatter
|
|
and print_cut = pp_print_cut std_formatter
|
|
and print_space = pp_print_space std_formatter
|
|
and force_newline = pp_force_newline std_formatter
|
|
and print_flush = pp_print_flush std_formatter
|
|
and print_newline = pp_print_newline std_formatter
|
|
and print_if_newline = pp_print_if_newline std_formatter
|
|
|
|
and open_tbox = pp_open_tbox std_formatter
|
|
and close_tbox = pp_close_tbox std_formatter
|
|
and print_tbreak = pp_print_tbreak std_formatter
|
|
|
|
and set_tab = pp_set_tab std_formatter
|
|
and print_tab = pp_print_tab std_formatter
|
|
|
|
and set_margin = pp_set_margin std_formatter
|
|
and get_margin = pp_get_margin std_formatter
|
|
|
|
and set_max_indent = pp_set_max_indent std_formatter
|
|
and get_max_indent = pp_get_max_indent std_formatter
|
|
|
|
and set_max_boxes = pp_set_max_boxes std_formatter
|
|
and get_max_boxes = pp_get_max_boxes std_formatter
|
|
and over_max_boxes = pp_over_max_boxes std_formatter
|
|
|
|
and set_ellipsis_text = pp_set_ellipsis_text std_formatter
|
|
and get_ellipsis_text = pp_get_ellipsis_text std_formatter
|
|
|
|
and set_formatter_out_channel =
|
|
pp_set_formatter_out_channel std_formatter
|
|
|
|
and set_formatter_out_functions =
|
|
pp_set_formatter_out_functions std_formatter
|
|
and get_formatter_out_functions =
|
|
pp_get_formatter_out_functions std_formatter
|
|
|
|
and set_formatter_output_functions =
|
|
pp_set_formatter_output_functions std_formatter
|
|
and get_formatter_output_functions =
|
|
pp_get_formatter_output_functions std_formatter
|
|
|
|
and set_all_formatter_output_functions =
|
|
pp_set_all_formatter_output_functions std_formatter
|
|
and get_all_formatter_output_functions =
|
|
pp_get_all_formatter_output_functions std_formatter
|
|
|
|
and set_formatter_tag_functions =
|
|
pp_set_formatter_tag_functions std_formatter
|
|
and get_formatter_tag_functions =
|
|
pp_get_formatter_tag_functions std_formatter
|
|
and set_print_tags =
|
|
pp_set_print_tags std_formatter
|
|
and get_print_tags =
|
|
pp_get_print_tags std_formatter
|
|
and set_mark_tags =
|
|
pp_set_mark_tags std_formatter
|
|
and get_mark_tags =
|
|
pp_get_mark_tags std_formatter
|
|
and set_tags =
|
|
pp_set_tags std_formatter
|
|
;;
|
|
|
|
(**************************************************************)
|
|
|
|
let compute_tag output tag_acc =
|
|
let buf = Buffer.create 16 in
|
|
let ppf = formatter_of_buffer buf in
|
|
output ppf tag_acc;
|
|
pp_print_flush ppf ();
|
|
let len = Buffer.length buf in
|
|
if len < 2 then Buffer.contents buf
|
|
else Buffer.sub buf 1 (len - 2)
|
|
|
|
(**************************************************************
|
|
|
|
Defining continuations to be passed as arguments of
|
|
CamlinternalFormat.make_printf.
|
|
|
|
**************************************************************)
|
|
|
|
open CamlinternalFormatBasics
|
|
open CamlinternalFormat
|
|
|
|
(* Interpret a formatting entity on a formatter. *)
|
|
let output_formatting_lit ppf fmting_lit = match fmting_lit with
|
|
| Close_box -> pp_close_box ppf ()
|
|
| Close_tag -> pp_close_tag ppf ()
|
|
| Break (_, width, offset) -> pp_print_break ppf width offset
|
|
| FFlush -> pp_print_flush ppf ()
|
|
| Force_newline -> pp_force_newline ppf ()
|
|
| Flush_newline -> pp_print_newline ppf ()
|
|
| Magic_size (_, _) -> ()
|
|
| Escaped_at -> pp_print_char ppf '@'
|
|
| Escaped_percent -> pp_print_char ppf '%'
|
|
| Scan_indic c -> pp_print_char ppf '@'; pp_print_char ppf c
|
|
|
|
(* Recursively output an "accumulator" containing a reversed list of
|
|
printing entities (string, char, flus, ...) in an output_stream. *)
|
|
(* Differ from Printf.output_acc by the interpretation of formatting. *)
|
|
(* Used as a continuation of CamlinternalFormat.make_printf. *)
|
|
let rec output_acc ppf acc = match acc with
|
|
| Acc_string_literal (Acc_formatting_lit (p, Magic_size (_, size)), s)
|
|
| Acc_data_string (Acc_formatting_lit (p, Magic_size (_, size)), s) ->
|
|
output_acc ppf p;
|
|
pp_print_as_size ppf (size_of_int size) s;
|
|
| Acc_char_literal (Acc_formatting_lit (p, Magic_size (_, size)), c)
|
|
| Acc_data_char (Acc_formatting_lit (p, Magic_size (_, size)), c) ->
|
|
output_acc ppf p;
|
|
pp_print_as_size ppf (size_of_int size) (String.make 1 c);
|
|
| Acc_formatting_lit (p, f) ->
|
|
output_acc ppf p;
|
|
output_formatting_lit ppf f;
|
|
| Acc_formatting_gen (p, Acc_open_tag acc') ->
|
|
output_acc ppf p;
|
|
pp_open_tag ppf (compute_tag output_acc acc')
|
|
| Acc_formatting_gen (p, Acc_open_box acc') ->
|
|
output_acc ppf p;
|
|
let (indent, bty) = open_box_of_string (compute_tag output_acc acc') in
|
|
pp_open_box_gen ppf indent bty
|
|
| Acc_string_literal (p, s)
|
|
| Acc_data_string (p, s) -> output_acc ppf p; pp_print_string ppf s;
|
|
| Acc_char_literal (p, c)
|
|
| Acc_data_char (p, c) -> output_acc ppf p; pp_print_char ppf c;
|
|
| Acc_delay (p, f) -> output_acc ppf p; f ppf;
|
|
| Acc_flush p -> output_acc ppf p; pp_print_flush ppf ();
|
|
| Acc_invalid_arg (p, msg) -> output_acc ppf p; invalid_arg msg;
|
|
| End_of_acc -> ()
|
|
|
|
(* Recursively output an "accumulator" containing a reversed list of
|
|
printing entities (string, char, flus, ...) in a buffer. *)
|
|
(* Differ from Printf.bufput_acc by the interpretation of formatting. *)
|
|
(* Used as a continuation of CamlinternalFormat.make_printf. *)
|
|
let rec strput_acc ppf acc = match acc with
|
|
| Acc_string_literal (Acc_formatting_lit (p, Magic_size (_, size)), s)
|
|
| Acc_data_string (Acc_formatting_lit (p, Magic_size (_, size)), s) ->
|
|
strput_acc ppf p;
|
|
pp_print_as_size ppf (size_of_int size) s;
|
|
| Acc_char_literal (Acc_formatting_lit (p, Magic_size (_, size)), c)
|
|
| Acc_data_char (Acc_formatting_lit (p, Magic_size (_, size)), c) ->
|
|
strput_acc ppf p;
|
|
pp_print_as_size ppf (size_of_int size) (String.make 1 c);
|
|
| Acc_delay (Acc_formatting_lit (p, Magic_size (_, size)), f) ->
|
|
strput_acc ppf p;
|
|
pp_print_as_size ppf (size_of_int size) (f ());
|
|
| Acc_formatting_lit (p, f) ->
|
|
strput_acc ppf p;
|
|
output_formatting_lit ppf f;
|
|
| Acc_formatting_gen (p, Acc_open_tag acc') ->
|
|
strput_acc ppf p;
|
|
pp_open_tag ppf (compute_tag strput_acc acc')
|
|
| Acc_formatting_gen (p, Acc_open_box acc') ->
|
|
strput_acc ppf p;
|
|
let (indent, bty) = open_box_of_string (compute_tag strput_acc acc') in
|
|
pp_open_box_gen ppf indent bty
|
|
| Acc_string_literal (p, s)
|
|
| Acc_data_string (p, s) -> strput_acc ppf p; pp_print_string ppf s;
|
|
| Acc_char_literal (p, c)
|
|
| Acc_data_char (p, c) -> strput_acc ppf p; pp_print_char ppf c;
|
|
| Acc_delay (p, f) -> strput_acc ppf p; pp_print_string ppf (f ());
|
|
| Acc_flush p -> strput_acc ppf p; pp_print_flush ppf ();
|
|
| Acc_invalid_arg (p, msg) -> strput_acc ppf p; invalid_arg msg;
|
|
| End_of_acc -> ()
|
|
|
|
(**************************************************************
|
|
|
|
Defining [fprintf] and various flavors of [fprintf].
|
|
|
|
**************************************************************)
|
|
|
|
let kfprintf k ppf (Format (fmt, _)) =
|
|
make_printf
|
|
(fun ppf acc -> output_acc ppf acc; k ppf)
|
|
ppf End_of_acc fmt
|
|
|
|
and ikfprintf k ppf (Format (fmt, _)) =
|
|
make_iprintf k ppf fmt
|
|
|
|
let fprintf ppf = kfprintf ignore ppf;;
|
|
let ifprintf ppf = ikfprintf ignore ppf;;
|
|
let printf fmt = fprintf std_formatter fmt;;
|
|
let eprintf fmt = fprintf err_formatter fmt;;
|
|
|
|
let ksprintf k (Format (fmt, _)) =
|
|
let b = Buffer.create 512 in
|
|
let ppf = formatter_of_buffer b in
|
|
let k () acc =
|
|
strput_acc ppf acc;
|
|
k (flush_buffer_formatter b ppf) in
|
|
make_printf k () End_of_acc fmt
|
|
;;
|
|
|
|
let sprintf fmt = ksprintf (fun s -> s) fmt;;
|
|
|
|
let asprintf (Format (fmt, _)) =
|
|
let b = Buffer.create 512 in
|
|
let ppf = formatter_of_buffer b in
|
|
let k ppf acc =
|
|
output_acc ppf acc;
|
|
flush_buffer_formatter b ppf in
|
|
make_printf k ppf End_of_acc fmt
|
|
;;
|
|
|
|
(**************************************************************
|
|
|
|
Deprecated stuff.
|
|
|
|
**************************************************************)
|
|
|
|
(* Deprecated error prone function bprintf. *)
|
|
let bprintf b (Format (fmt, _) : ('a, formatter, unit) format) =
|
|
let k ppf acc = output_acc ppf acc; pp_flush_queue ppf false in
|
|
make_printf k (formatter_of_buffer b) End_of_acc fmt
|
|
;;
|
|
|
|
(* Deprecated alias for ksprintf. *)
|
|
let kprintf = ksprintf;;
|
|
|
|
(* Output everything left in the pretty printer queue at end of execution. *)
|
|
at_exit print_flush
|
|
;;
|