doc-src/antiquote_setup.ML
author blanchet
Fri, 27 May 2011 10:30:08 +0200
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child 43563 aeabb735883a
permissions -rw-r--r--
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(*  Title:      doc-src/antiquote_setup.ML
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    Author:     Makarius
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Auxiliary antiquotations for the Isabelle manuals.
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*)
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structure Antiquote_Setup: sig end =
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struct
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(* misc utils *)
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fun translate f = Symbol.explode #> map f #> implode;
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val clean_string = translate
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  (fn "_" => "\\_"
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    | "#" => "\\#"
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    | "<" => "$<$"
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    | ">" => "$>$"
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    | "{" => "\\{"
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    | "|" => "$\\mid$"
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    | "}" => "\\}"
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    | "\<hyphen>" => "-"
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    | c => c);
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fun clean_name "\<dots>" = "dots"
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  | clean_name ".." = "ddot"
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  | clean_name "." = "dot"
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  | clean_name "_" = "underscore"
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  | clean_name "{" = "braceleft"
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  | clean_name "}" = "braceright"
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  | clean_name s = s |> translate (fn "_" => "-" | "\<hyphen>" => "-" | c => c);
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(* verbatim text *)
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val verbatim = space_implode "\\verb,|," o map (enclose "\\verb|" "|") o space_explode "|";
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val _ = Thy_Output.antiquotation "verbatim" (Scan.lift Args.name)
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  (K (split_lines #> map verbatim #> space_implode "\\isasep\\isanewline%\n"));
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(* ML text *)
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local
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fun ml_val (txt1, "") = "fn _ => (" ^ txt1 ^ ");"
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  | ml_val (txt1, txt2) = "fn _ => (" ^ txt1 ^ " : " ^ txt2 ^ ");";
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fun ml_type (txt1, "") = "val _ = NONE : (" ^ txt1 ^ ") option;"
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  | ml_type (txt1, txt2) = "val _ = [NONE : (" ^ txt1 ^ ") option, NONE : (" ^ txt2 ^ ") option];";
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fun ml_exn (txt1, "") = "fn _ => (" ^ txt1 ^ " : exn);"
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  | ml_exn (txt1, txt2) = "fn _ => (" ^ txt1 ^ " : " ^ txt2 ^ " -> exn);";
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fun ml_structure (txt, _) = "functor XXX() = struct structure XX = " ^ txt ^ " end;";
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fun ml_functor (txt, _) = "ML_Env.check_functor " ^ ML_Syntax.print_string txt;
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val is_name = ML_Lex.kind_of #> (fn kind => kind = ML_Lex.Ident orelse kind = ML_Lex.LongIdent);
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fun ml_name txt =
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  (case filter is_name (ML_Lex.tokenize txt) of
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    toks as [_] => ML_Lex.flatten toks
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  | _ => error ("Single ML name expected in input: " ^ quote txt));
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fun index_ml name kind ml = Thy_Output.antiquotation name
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  (Scan.lift (Args.name -- Scan.optional (Args.colon |-- Args.name) ""))
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  (fn {context = ctxt, ...} => fn (txt1, txt2) =>
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    let
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      val txt =
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        if txt2 = "" then txt1
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        else if kind = "type" then txt1 ^ " = " ^ txt2
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        else if kind = "exception" then txt1 ^ " of " ^ txt2
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        else if Lexicon.is_identifier (Long_Name.base_name (ml_name txt1))
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        then txt1 ^ ": " ^ txt2
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        else txt1 ^ " : " ^ txt2;
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      val txt' = if kind = "" then txt else kind ^ " " ^ txt;
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      val _ = ML_Context.eval_text_in (SOME ctxt) false Position.none (ml (txt1, txt2));  (* ML_Lex.read (!?) *)
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      val kind' = if kind = "" then "ML" else "ML " ^ kind;
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    in
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      "\\indexdef{}{" ^ kind' ^ "}{" ^ clean_string (ml_name txt1) ^ "}" ^
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      (txt'
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      |> (if Config.get ctxt Thy_Output.quotes then quote else I)
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      |> (if Config.get ctxt Thy_Output.display then enclose "\\begin{verbatim}\n" "\n\\end{verbatim}"
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          else split_lines #> map verbatim #> space_implode "\\isasep\\isanewline%\n"))
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    end);
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in
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val _ = index_ml "index_ML" "" ml_val;
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val _ = index_ml "index_ML_type" "type" ml_type;
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val _ = index_ml "index_ML_exn" "exception" ml_exn;
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val _ = index_ml "index_ML_structure" "structure" ml_structure;
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val _ = index_ml "index_ML_functor" "functor" ml_functor;
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end;
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(* named theorems *)
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val _ = Thy_Output.antiquotation "named_thms"
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  (Scan.repeat (Attrib.thm -- Scan.lift (Args.parens Args.name)))
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  (fn {context = ctxt, ...} =>
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    map (apfst (Thy_Output.pretty_thm ctxt))
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    #> (if Config.get ctxt Thy_Output.quotes then map (apfst Pretty.quote) else I)
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    #> (if Config.get ctxt Thy_Output.display
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        then
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          map (fn (p, name) =>
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            Output.output (Pretty.string_of (Pretty.indent (Config.get ctxt Thy_Output.indent) p)) ^
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            "\\rulename{" ^ Output.output (Pretty.str_of (Thy_Output.pretty_text ctxt name)) ^ "}")
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          #> space_implode "\\par\\smallskip%\n"
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          #> enclose "\\begin{isabelle}%\n" "%\n\\end{isabelle}"
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        else
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          map (fn (p, name) =>
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            Output.output (Pretty.str_of p) ^
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            "\\rulename{" ^ Output.output (Pretty.str_of (Thy_Output.pretty_text ctxt name)) ^ "}")
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          #> space_implode "\\par\\smallskip%\n"
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          #> enclose "\\isa{" "}"));
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(* theory file *)
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val _ = Thy_Output.antiquotation "thy_file" (Scan.lift Args.name)
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  (fn {context = ctxt, ...} =>
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    fn name => (Thy_Load.check_thy Path.current name; Thy_Output.output ctxt [Pretty.str name]));
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(* Isabelle/Isar entities (with index) *)
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local
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fun no_check _ _ = true;
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fun thy_check intern defined ctxt =
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  let val thy = Proof_Context.theory_of ctxt
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  in defined thy o intern thy end;
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fun check_tool name =
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  File.exists (Path.append (Path.explode "~~/lib/Tools") (Path.basic name));
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val arg = enclose "{" "}" o clean_string;
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fun entity check markup kind index =
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  Thy_Output.antiquotation
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    (translate (fn " " => "_" | c => c) kind ^
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      (case index of NONE => "" | SOME true => "_def" | SOME false => "_ref"))
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    (Scan.lift (Scan.optional (Args.parens Args.name) "" -- Args.name))
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    (fn {context = ctxt, ...} => fn (logic, name) =>
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      let
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        val hyper_name =
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          "{" ^ Long_Name.append kind (Long_Name.append logic (clean_name name)) ^ "}";
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        val hyper =
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          enclose ("\\hyperlink" ^ hyper_name ^ "{") "}" #>
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          index = SOME true ? enclose ("\\hypertarget" ^ hyper_name ^ "{") "}";
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        val idx =
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          (case index of
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            NONE => ""
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          | SOME is_def =>
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              "\\index" ^ (if is_def then "def" else "ref") ^ arg logic ^ arg kind ^ arg name);
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      in
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        if check ctxt name then
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          idx ^
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          (Output.output name
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            |> (if markup = "" then I else enclose ("\\" ^ markup ^ "{") "}")
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            |> (if Config.get ctxt Thy_Output.quotes then quote else I)
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            |> (if Config.get ctxt Thy_Output.display
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                then enclose "\\begin{isabelle}%\n" "%\n\\end{isabelle}"
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                else hyper o enclose "\\mbox{\\isa{" "}}"))
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        else error ("Bad " ^ kind ^ " " ^ quote name)
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      end);
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fun entity_antiqs check markup kind =
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 ((entity check markup kind NONE);
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  (entity check markup kind (SOME true));
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  (entity check markup kind (SOME false)));
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in
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val _ = entity_antiqs no_check "" "syntax";
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val _ = entity_antiqs (K (is_some o Keyword.command_keyword)) "isacommand" "command";
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val _ = entity_antiqs (K Keyword.is_keyword) "isakeyword" "keyword";
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val _ = entity_antiqs (K Keyword.is_keyword) "isakeyword" "element";
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val _ = entity_antiqs (thy_check Method.intern Method.defined) "" "method";
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val _ = entity_antiqs (thy_check Attrib.intern Attrib.defined) "" "attribute";
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val _ = entity_antiqs no_check "" "fact";
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val _ = entity_antiqs no_check "" "variable";
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val _ = entity_antiqs no_check "" "case";
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val _ = entity_antiqs (K Thy_Output.defined_command) "" "antiquotation";
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val _ = entity_antiqs (K Thy_Output.defined_option) "" "antiquotation option";
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val _ = entity_antiqs (fn _ => fn name => is_some (OS.Process.getEnv name)) "isatt" "setting";
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val _ = entity_antiqs no_check "" "inference";
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val _ = entity_antiqs no_check "isatt" "executable";
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val _ = entity_antiqs (K check_tool) "isatt" "tool";
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val _ = entity_antiqs (K (can Thy_Info.get_theory)) "" "theory";
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val _ = entity_antiqs no_check "" "ML antiquotation";  (* FIXME proper check *)
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end;
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end;