package coq-serapi
Serialization library and protocol for machine interaction with the Coq proof assistant
Install
Dune Dependency
Authors
Maintainers
Sources
coq-serapi-8.20.0.0.20.0.tbz
sha256=ead9382f111ea385008fe9037513ff1f738dd90d8e989b8d1a0c9290963d9afe
sha512=b29103c2d1eb3cf8a33fa9ddf26b5a6c89e7277cd31256589bcae8a89c37a3de7a3c3e7fe5d376358e874d44dc6c60ab96736cbd1037511ab36705e9f40f0ade
doc/src/coq-serapi.sertop_v8_12/js_sexp_printer.ml.html
Source file js_sexp_printer.ml
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(** Emilio J. Gallego Arias: Code below is adapted from Jane Street's sexplib, licence is: The MIT License Copyright (c) 2005--2024 Jane Street Group, LLC opensource-contacts@janestreet.com Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. *) open Format open Sexplib open Sexp let must_escape str = let len = String.length str in len = 0 || let rec loop ix = match str.[ix] with | '"' | '(' | ')' | '[' | ']' | ';' | '\\' | '\''-> true (* Avoid unquoted comma at the beggining of the string *) | ',' -> ix = 0 || loop (ix - 1) | '|' -> ix > 0 && let next = ix - 1 in str.[next] = '#' || loop next | '#' -> ix > 0 && let next = ix - 1 in str.[next] = '|' || loop next | '\000' .. '\032' -> true | '\248' .. '\255' -> true | _ -> ix > 0 && loop (ix - 1) in loop (len - 1) (* XXX: Be faithful to UTF-8 *) let st_escaped (s : string) = let sget = String.unsafe_get in let open Bytes in let n = ref 0 in for i = 0 to String.length s - 1 do n := !n + (match sget s i with | '\"' | '\\' | '\n' | '\t' | '\r' | '\b' -> 2 | ' ' .. '~' -> 1 (* UTF-8 are valid between \033 -- \247 *) | '\000' .. '\032' -> 4 | '\248' .. '\255' -> 4 | _ -> 1) done; if !n = String.length s then Bytes.of_string s else begin let s' = create !n in n := 0; for i = 0 to String.length s - 1 do begin match sget s i with | ('\"' | '\\') as c -> unsafe_set s' !n '\\'; incr n; unsafe_set s' !n c | '\n' -> unsafe_set s' !n '\\'; incr n; unsafe_set s' !n 'n' | '\t' -> unsafe_set s' !n '\\'; incr n; unsafe_set s' !n 't' | '\r' -> unsafe_set s' !n '\\'; incr n; unsafe_set s' !n 'r' | '\b' -> unsafe_set s' !n '\\'; incr n; unsafe_set s' !n 'b' | (' ' .. '~') as c -> unsafe_set s' !n c (* Valid UTF-8 are valid between \033 -- \247 *) | '\000' .. '\032' | '\248' .. '\255' as c -> let a = Char.code c in unsafe_set s' !n '\\'; incr n; unsafe_set s' !n (Char.chr (48 + a / 100)); incr n; unsafe_set s' !n (Char.chr (48 + (a / 10) mod 10)); incr n; unsafe_set s' !n (Char.chr (48 + a mod 10)); | c -> unsafe_set s' !n c end; incr n done; s' end let esc_str (str : string) = let open Bytes in let estr = st_escaped str in let elen = length estr in let res = create (elen + 2) in blit estr 0 res 1 elen; set res 0 '"'; set res (elen + 1) '"'; to_string res let sertop_maybe_esc_str str = if must_escape str then esc_str str else str let rec pp_sertop_internal may_need_space ppf = function | Atom str -> let str' = sertop_maybe_esc_str str in let new_may_need_space = str' == str in if may_need_space && new_may_need_space then pp_print_string ppf " "; pp_print_string ppf str'; new_may_need_space | List (h :: t) -> pp_print_string ppf "("; let may_need_space = pp_sertop_internal false ppf h in pp_sertop_rest may_need_space ppf t; false | List [] -> pp_print_string ppf "()"; false and pp_sertop_rest may_need_space ppf = function | h :: t -> let may_need_space = pp_sertop_internal may_need_space ppf h in pp_sertop_rest may_need_space ppf t | [] -> pp_print_string ppf ")" let pp_sertop ppf sexp = ignore (pp_sertop_internal false ppf sexp)
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