src/Tools/isac/calcelems.sml
author Walther Neuper <neuper@ist.tugraz.at>
Sun, 22 Jun 2014 15:17:07 +0200
changeset 55459 339639ffde0e
parent 55457 137308a1da3c
child 55460 ee6ffa1fc437
permissions -rw-r--r--
ad thehier: removed last two Unsychronized.ref
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(* elements of calculations.
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   they are partially held in association lists as ref's for
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   switching language levels (meta-string, object-values).
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   in order to keep these ref's during re-evaluation of code,
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   they are defined here at the beginning of the code.
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   Author: Walther Neuper 2003
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   (c) copyright due to lincense terms
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*)
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(*
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structure CalcElems =
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struct
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*)
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val linefeed = (curry op^) "\n";
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type authors = string list;
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type cterm' = string;
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val empty_cterm' = "empty_cterm'";
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type thmID = string;    (* identifier for a thm (the shortest possible identifier)       *)
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type thmDeriv = string; (* WN120524 deprecated
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  thyID ^"."^ xxx ^"."^ thmID, see fun thmID_of_derivation_name 
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  WN120524: dont use Thm.derivation_name, this is destroyed by num_str;
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  Thm.get_name_hint survives num_str and seems perfectly reliable *)
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type thm' = thmID * cterm';(*WN060610 deprecated in favour of thm''*)
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type thm'' = thmID * term;
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type rls' = string;
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(*.a 'guh'='globally unique handle' is a string unique for each element
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   of isac's KEStore and persistent over time
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   (in particular under shifts within the respective hierarchy);
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   specialty for thys:
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   # guh NOT resistant agains shifts from one thy to another
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   (which is the price for Isabelle's design: thy's overwrite ids of subthy's)
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   # requirement for matchTheory: induce guh from tac + current thy
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   (see 'fun thy_containing_thm', 'fun thy_containing_rls' etc.)
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   TODO: introduce to pbl, met.*)
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type guh = string;
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val e_guh = "e_guh":guh;
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type xml = string;
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(* eval function calling sml code during rewriting.
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Unifying "type cal" and "type calc" would make Lucas-Interpretation more efficient,
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  see "fun rule2stac": instead of 
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    Calc: calID * eval_fn -> rule
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  would be better
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    Calc: prog_calcID * (calID * eval_fn)) -> rule*)
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type eval_fn = (string -> term -> theory -> (string * term) option);
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fun e_evalfn (_:'a) (_:term) (_:theory) = NONE:(string * term) option;
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(*. op in isa-term 'Const(op,_)' .*)
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type calID = string;
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(* *)
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type cal = (calID * eval_fn);
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(*. fun calculate_ fetches the evaluation-function via this list. *)
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type prog_calcID = string;
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type calc = (prog_calcID * cal);
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type calc_elem =
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  prog_calcID *   (* a simple identifier used in programs *)
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  (calID *        (* a long identifier used in Const *)
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    eval_fn)      (* an ML function *)
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fun calc_eq ((pi1, (ci1, _)) : calc_elem, (pi2, (ci2, _)) : calc_elem) =
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  if pi1 = pi2
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  then if ci1 = ci2 then true else error ("calc_eq: " ^ ci1 ^ " <> " ^ ci2)
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  else false
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type subs' = (cterm' * cterm') list; (*16.11.00 for FE-KE*)
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type subst = (term * term) list; (*here for ets2str*)
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val e_subst = []:(term * term) list;
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(*TODO.WN060610 make use of "type rew_ord" total*)
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type rew_ord' = string;
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val e_rew_ord' = "e_rew_ord" : rew_ord';
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type rew_ord_ = subst -> Term.term * Term.term -> bool;
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fun dummy_ord (_:subst) (_:term,_:term) = true;
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val e_rew_ord_ = dummy_ord;
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type rew_ord = rew_ord' * rew_ord_;
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val e_rew_ord = dummy_ord; (* TODO.WN071231 clarify identifiers..e_rew_ordX*)
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val e_rew_ordX = (e_rew_ord', e_rew_ord_) : rew_ord;
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(* error patterns and fill patterns *)
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type errpatID = string
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type errpat =
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  errpatID    (* one identifier for a list of patterns                       
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                 DESIGN ?TODO: errpatID list for hierarchy of errpats ?      *)
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  * term list (* error patterns                                              *)
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  * thm list  (* thms related to error patterns; note that respective lhs 
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                 do not match (which reflects student's error).
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                 fillpatterns are stored with these thms.                    *)
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(* for (at least) 2 kinds of access:
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  (1) given an errpatID, find the respective fillpats (e.g. in fun find_fill_pats)
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  (2) given a thm, find respective fillpats *)
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type fillpatID = string
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type fillpat =
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  fillpatID   (* DESIGN ?TODO: give an order w.r.t difficulty ? *)
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  * term      (* the pattern with fill-in gaps                  *)
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  * errpatID; (* which the fillpat would be a help for          
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                 DESIGN ?TODO: list for several patterns ?      *)
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datatype rule =
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  Erule                (*.the empty rule                     .*)
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| Thm of (string * Basic_Thm.thm)(*.a theorem, ie (identifier, Thm.thm).*)
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| Calc of string *     (*.sml-code manipulating a (sub)term  .*)
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	  (string -> term -> theory -> (string * term) option)
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| Cal1 of string *     (*.sml-code applied only to whole term
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                          or left/right-hand-side of eqality .*)
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	  (string -> term -> theory -> (string * term) option)
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| Rls_ of rls          (*.ie. rule sets may be nested.*)
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and scr =
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    EmptyScr
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  | Prog of term (* for met *)
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  | Rfuns of     (* for Rrls, usage see rational.sml ----- reverse rewrite -----      *)
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    {init_state : (* initialise for reverse rewriting by the Interpreter              *)
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      term ->         (* for this the rrlsstate is initialised:                       *)
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      term *          (* the current formula: goes locate_gen -> next_tac via istate  *)
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      term *          (* the final formula                                            *)
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      rule list       (* of reverse rewrite set (#1#)                                 *)
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        list *        (*   may be serveral, eg. in norm_rational                      *)
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      ( rule *        (* Thm (+ Thm generated from Calc) resulting in ...             *)
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        (term *       (*   ... rewrite with ...                                       *)
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        term list))   (*   ... assumptions                                            *)
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      list,           (* derivation from given term to normalform
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                         in reverse order with sym_thm;
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                                                (#1#) could be extracted from here #1 *)  
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	  normal_form:  (* the function which drives the Rrls ##############################*)
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	    term -> (term * term list) option,
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	  locate_rule:  (* checks a rule R for being a cancel-rule, and if it is,
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                     then return the list of rules (+ the terms they are rewriting to)
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                     which need to be applied before R should be applied.
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                     precondition: the rule is applicable to the argument-term.       *)
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	    rule list list -> (* the reverse rule list                                      *)
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	    term ->         (* ... to which the rule shall be applied                       *)
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	    rule ->         (* ... to be applied to term                                    *)
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	    ( rule *        (* value: a rule rewriting to ...                               *)
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	      (term *       (*   ... the resulting term ...                                 *)
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	      term list))   (*   ... with the assumptions ( //#0)                           *)
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	    list,           (*   there may be several such rules; the list is empty,          
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                           if the rule has nothing to do with e.g. cancelation        *)
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	  next_rule:    (* for a given term return the next rules to be done for cancelling *)
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	    rule list list->(* the reverse rule list                                        *)
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	    term ->         (* the term for which ...                                       *)
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	    rule option,    (* ... this rule is appropriate for cancellation;
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		                     there may be no such rule (if the term is eg.canceled already*)
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	  attach_form:  (* checks an input term TI, if it may belong to e.g. a current 
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                     cancellation, by trying to derive it from the given term TG.     
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                     NOT IMPLEMENTED                                                 *)
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	    rule list list->(**)
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	    term ->         (* TG, the last one agreed upon by user + math-eng              *)
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	    term ->         (* TI, the next one input by the user                           *)
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	    ( rule *        (* the rule to be applied in order to reach TI                  *) 
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	      (term *       (* ... obtained by applying the rule ...                        *)
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	      term list))   (* ... and the respective assumptions                           *) 
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	    list}           (* there may be several such rules; the list is empty, if the 
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                         users term does not belong to e.g. a cancellation of the term 
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                         last agreed upon.                                            *)
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and rls =
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    Erls                          (*for init e_rls*)
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  | Rls of (*a confluent and terminating ruleset, in general         *)
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    {id : string,          (*for trace_rewrite:=true                 *)
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     preconds : term list, (*unused WN020820                         *)
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     (*WN060616 for efficiency...
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      bdvs    : false,       (*set in prep_rls' for get_bdvs *)*)
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     rew_ord  : rew_ord,   (*for rules*)
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     erls     : rls,       (*for the conditions in rules             *)
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     srls     : rls,       (*for evaluation of list_fns in script    *)
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     calc     : calc list, (*for Calculate in scr, set by prep_rls'   *)
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     rules    : rule list,
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     errpatts : errpatID list,(*dialog-authoring in Build_Thydata.thy*)
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     scr      : scr}       (*Prog term: generating intermed.steps  *)
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  | Seq of (*a sequence of rules to be tried only once               *)
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    {id : string,          (*for trace_rewrite:=true                 *)
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     preconds : term list, (*unused 20.8.02                          *)
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     (*WN060616 for efficiency...
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      bdvs    : false,       (*set in prep_rls' for get_bdvs *)*)
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     rew_ord  : rew_ord,   (*for rules                               *)
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     erls     : rls,       (*for the conditions in rules             *)
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     srls     : rls,       (*for evaluation of list_fns in script    *)
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     calc     : calc list, (*for Calculate in scr, set by prep_rls'   *)
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     rules    : rule list,
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     errpatts : errpatID list,(*dialog-authoring in Build_Thydata.thy*)
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     scr      : scr}  (*Prog term  (how to restrict type ???)*)
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  (*Rrls call SML-code and simulate an rls
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    difference: there is always _ONE_ redex rewritten in 1 call,
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    thus wrap Rrls by: Rls (Rls_ ...)*)
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  | Rrls of (* SML-functions within rewriting; step-wise execution provided;   
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               Rrls simulate an rls
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               difference: there is always _ONE_ redex rewritten in 1 call,
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               thus wrap Rrls by: Rls (Rls_ ...)                              *)
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    {id : string,          (* for trace_rewrite := true                       *)
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     prepat  : (term list *(* preconds, eval with subst from pattern;
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                              if [@{term True}], match decides alone          *)
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		            term )     (* pattern matched with current (sub)term          *)
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		   list,               (* meta-conjunction is or                          *)
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     rew_ord  : rew_ord,   (* for rules                                       *)
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     erls     : rls,       (* for the conditions in rules and preconds        *)
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     calc     : calc list, (* for Calculate in scr, set automatic.in prep_rls' *)
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     errpatts : errpatID list,(*dialog-authoring in Build_Thydata.thy*)
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     scr      : scr};      (* Rfuns {...}  (how to restrict type ???)         *)
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fun thy2ctxt' thy' = Proof_Context.init_global (Thy_Info.get_theory thy');(*FIXXXME thy-ctxt*)
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fun thy2ctxt thy = Proof_Context.init_global thy;(*FIXXXME thy-ctxt*)
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fun Isac _ = Proof_Context.theory_of (thy2ctxt' "Isac"); (*@{theory "Isac"}*)
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val e_rule = Thm ("refl", @{thm refl});
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fun id_of_thm (Thm (id, _)) = id
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  | id_of_thm _ = error "error id_of_thm";
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fun thm_of_thm (Thm (_, thm)) = thm
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  | thm_of_thm _ = error "error thm_of_thm";
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fun rep_thm_G' (Thm (thmid, thm)) = (thmid, thm);
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fun thmID_of_derivation_name dn = last_elem (space_explode "." dn);
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fun thyID_of_derivation_name dn = hd (space_explode "." dn);
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fun eq_thmI ((thmid1 : thmID, _ : thm), (thmid2 : thmID, _ : thm)) =
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    (strip_thy thmid1) = (strip_thy thmid2);
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(*WN120201 weakened*)
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fun eq_thmI ((thmid1 : thmID, _ : thm), (thmid2 : thmID, _)) = thmid1 = thmid2;
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(*version typed weaker WN100910*)
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fun eq_thmI' ((thmid1, _), (thmid2, _)) =
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    (thmID_of_derivation_name thmid1) = (thmID_of_derivation_name thmid2);
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val string_of_thm =  Thm.get_name_hint; (*FIXME.2009*)
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fun thm'_of_thm thm =
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  ((thmID_of_derivation_name o Thm.get_name_hint) thm, ""): thm'
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(*check for [.] as caused by "fun assoc_thm'"*)
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fun string_of_thmI thm =
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    let val ct' = (de_quote o string_of_thm) thm
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	val (a, b) = split_nlast (5, Symbol.explode ct')
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    in case b of
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	   [" ", " ","[", ".", "]"] => implode a
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	 | _ => ct'
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    end;
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(*.id requested for all, Rls,Seq,Rrls.*)
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fun id_rls Erls = "e_rls" (*WN060714 quick and dirty: recursive defs!*)
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  | id_rls (Rls {id,...}) = id
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  | id_rls (Seq {id,...}) = id
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  | id_rls (Rrls {id,...}) = id;
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val rls2str = id_rls;
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fun id_rule (Thm (id, _)) = id
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  | id_rule (Calc (id, _)) = id
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  | id_rule (Rls_ rls) = id_rls rls;
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fun get_rules (Rls {rules,...}) = rules
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  | get_rules (Seq {rules,...}) = rules
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  | get_rules (Rrls _) = [];
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fun rule2str Erule = "Erule"
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  | rule2str (Thm (str, thm)) = "Thm (\""^str^"\","^(string_of_thmI thm)^")"
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  | rule2str (Calc (str,f))  = "Calc (\""^str^"\",fn)"
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  | rule2str (Cal1 (str,f))  = "Cal1 (\""^str^"\",fn)"
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  | rule2str (Rls_ rls) = "Rls_ (\""^id_rls rls^"\")";
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fun rule2str' Erule = "Erule"
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  | rule2str' (Thm (str, thm)) = "Thm (\""^str^"\",\"\")"
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  | rule2str' (Calc (str,f))  = "Calc (\""^str^"\",fn)"
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  | rule2str' (Cal1 (str,f))  = "Cal1 (\""^str^"\",fn)"
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  | rule2str' (Rls_ rls) = "Rls_ (\""^id_rls rls^"\")";
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(*WN080102 compare eq_rule ?!?*)
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fun eqrule (Thm (id1,_), Thm (id2,_)) = id1 = id2
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  | eqrule (Calc (id1,_), Calc (id2,_)) = id1 = id2
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  | eqrule (Cal1 (id1,_), Cal1 (id2,_)) = id1 = id2
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  | eqrule (Rls_ _, Rls_ _) = false (*{id=id1}{id=id2} = id1 = id2 FIXXME*)
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  | eqrule _ = false;
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type rrlsstate =  (* state for reverse rewriting, comments see type rule and scr | Rfuns *)
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  (term * term * rule list list * (rule * (term * term list)) list);
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val e_type = Type("empty",[]);
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val a_type = TFree("'a",[]);
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val e_term = Const("empty",e_type);
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val a_term = Free("empty",a_type);
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val e_rrlsstate = (e_term,e_term,[[e_rule]],[(e_rule,(e_term,[]))]):rrlsstate;
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val e_term = Const("empty", Type("'a", []));
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val e_scr = Prog e_term;
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(*ad thm':
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   there are two kinds of theorems ...
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   (1) known by isabelle
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   (2) not known, eg. calc_thm, instantiated rls
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       the latter have a thmid "#..."
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   and thus outside isa we ALWAYS transport both (thmid,string_of_thmI)
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   and have a special assoc_thm / assoc_rls in this interface      *)
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type theory' = string; (* = domID ^".thy" WN.101011 ABOLISH !*)
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type domID = string;   (* domID ^".thy" = theory' WN.101011 replace by thyID*)
neuper@37906
   295
type thyID = string;    (*WN.3.11.03 TODO: replace domID with thyID*)
neuper@37906
   296
neuper@37906
   297
fun string_of_thy thy = Context.theory_name thy: theory';
neuper@37906
   298
val theory2domID = string_of_thy;
neuper@37906
   299
val theory2thyID = (get_thy o string_of_thy) : theory -> thyID;
neuper@37906
   300
val theory2theory' = string_of_thy;
neuper@37906
   301
val theory2str = string_of_thy; (*WN050903 ..most consistent naming*)
neuper@40836
   302
val theory2str' = implode o (drop_last_n 4) o Symbol.explode o string_of_thy;
neuper@48795
   303
(* fun theory'2theory = fun thyID2thy ... see fun assoc_thy (...Thy_Info.get_theory string);
neuper@37906
   304
al it = "Isac" : string
neuper@37906
   305
*)
neuper@37906
   306
neuper@38058
   307
fun thyID2theory' (thyID:thyID) = thyID;
neuper@38058
   308
(*
neuper@40836
   309
    let val ss = Symbol.explode thyID
neuper@37906
   310
	val ext = implode (takelast (4, ss))
neuper@37906
   311
    in if ext = ".thy" then thyID : theory' (*disarm abuse of thyID*)
neuper@37906
   312
       else thyID ^ ".thy"
neuper@37906
   313
    end;
neuper@38058
   314
*)
neuper@37906
   315
(* thyID2theory' "Isac" (*ok*);
neuper@38050
   316
val it = "Isac" : theory'
neuper@38050
   317
 > thyID2theory' "Isac" (*abuse, goes ok...*);
neuper@38050
   318
val it = "Isac" : theory'
neuper@37906
   319
*)
neuper@48880
   320
neuper@38058
   321
fun theory'2thyID (theory':theory') = theory';
neuper@38058
   322
(*
neuper@40836
   323
    let val ss = Symbol.explode theory'
neuper@37906
   324
	val ext = implode (takelast (4, ss))
neuper@37906
   325
    in if ext = ".thy" then ((implode o (drop_last_n 4)) ss) : thyID
neuper@37906
   326
       else theory' (*disarm abuse of theory'*)
neuper@37906
   327
    end;
neuper@38058
   328
*)
neuper@38050
   329
(* theory'2thyID "Isac";
neuper@37906
   330
val it = "Isac" : thyID
neuper@37906
   331
> theory'2thyID "Isac";
neuper@37906
   332
val it = "Isac" : thyID*)
neuper@37906
   333
neuper@37906
   334
neuper@37906
   335
(*. WN0509 discussion:
neuper@37906
   336
#############################################################################
neuper@37906
   337
#   How to manage theorys in subproblems wrt. the requirement,              #
neuper@37906
   338
#   that scripts should be re-usable ?                                      #
neuper@37906
   339
#############################################################################
neuper@37906
   340
neuper@37988
   341
    eg. 'Script Solve_rat_equation' calls 'SubProblem (RatEq',..'
neuper@37906
   342
    which would not allow to 'solve (y'' = -M_b / EI, M_b)' by this script
neuper@40836
   343
    because Biegelinie.thy is subthy of RatEq.thy and thus Biegelinie.M_b
neuper@37906
   344
    is unknown in RatEq.thy and M_b cannot be parsed into the scripts guard
neuper@37906
   345
    (see match_ags).
neuper@37906
   346
neuper@37906
   347
    Preliminary solution:
neuper@38011
   348
    # the thy in 'SubProblem (thy', pbl, arglist)' is not taken automatically,
neuper@38011
   349
    # instead the 'maxthy (rootthy pt) thy' is taken for each subpbl
neuper@40836
   350
    # however, a thy specified by the user in the rootpbl may lead to
neuper@40836
   351
      errors in far-off subpbls (which are not yet reported properly !!!)
neuper@37906
   352
      and interactively specifiying thys in subpbl is not very relevant.
neuper@37906
   353
neuper@37906
   354
    Other solutions possible:
neuper@40836
   355
    # always parse and type-check with Thy_Info.get_theory "Isac"
neuper@37906
   356
      (rejected tue to the vague idea eg. to re-use equations for R in C etc.)
neuper@37906
   357
    # regard the subthy-relation in specifying thys of subpbls
neuper@38011
   358
    # specifically handle 'SubProblem (undefined, pbl, arglist)'
neuper@37906
   359
    # ???
neuper@37906
   360
.*)
neuper@40836
   361
(*WN0509 TODO "ProtoPure" ... would be more consistent
neuper@37906
   362
  with assoc_thy <--> theory2theory' +FIXME assoc_thy "e_domID" -> Script.thy*)
neuper@37906
   363
val e_domID = "e_domID":domID;
neuper@37906
   364
neuper@37906
   365
(*the key into the hierarchy ob theory elements*)
neuper@37906
   366
type theID = string list;
neuper@37906
   367
val e_theID = ["e_theID"];
neuper@37906
   368
val theID2str = strs2str;
neuper@37906
   369
(*theID eg. is ["IsacKnowledge", "Test", "Rulesets", "ac_plus_times"]*)
neuper@37906
   370
fun theID2thyID (theID:theID) =
neuper@37906
   371
    if length theID >= 3 then (last_elem o (drop_last_n 2)) theID : thyID
neuper@38031
   372
    else error ("theID2thyID called with "^ theID2str theID);
neuper@37906
   373
neuper@37906
   374
(*the key into the hierarchy ob problems*)
neuper@37906
   375
type pblID = string list; (* domID::...*)
neuper@37906
   376
val e_pblID = ["e_pblID"]:pblID;
neuper@37906
   377
val pblID2str = strs2str;
neuper@37906
   378
neuper@37906
   379
(*the key into the hierarchy ob methods*)
neuper@37906
   380
type metID = string list;
neuper@37906
   381
val e_metID = ["e_metID"]:metID;
neuper@37906
   382
val metID2str = strs2str;
neuper@37906
   383
s1210629013@52166
   384
type spec = 
s1210629013@52166
   385
     domID * (*WN.12.03: is replaced by thy from get_met ?FIXME? in:
s1210629013@52166
   386
	      specify (Init_Proof..), nxt_specify_init_calc,
s1210629013@52166
   387
	      assod (.SubProblem...), stac2tac (.SubProblem...)*)
s1210629013@52166
   388
     pblID * 
s1210629013@52166
   389
     metID;
s1210629013@52166
   390
s1210629013@52171
   391
fun spec2str ((dom,pbl,met)(*:spec*)) = 
s1210629013@52171
   392
  "(" ^ (quote dom) ^ ", " ^ (strs2str pbl) ^ 
s1210629013@52171
   393
  ", " ^ (strs2str met) ^ ")";
s1210629013@52171
   394
(*> spec2str empty_spec;
s1210629013@52171
   395
val it = "(\"\", [], (\"\", \"\"))" : string *)
s1210629013@52171
   396
val empty_spec = (e_domID,e_pblID,e_metID):spec;
s1210629013@52171
   397
val e_spec = empty_spec;
s1210629013@52171
   398
s1210629013@52166
   399
(*.association list with cas-commands, for generating a complete calc-head.*)
neuper@52169
   400
type generate_fn = 
neuper@52169
   401
  (term list ->    (* the arguments of the cas-command, eg. (x+1=2, x) *)
neuper@52169
   402
    (term *        (* description of an element                        *)
neuper@52169
   403
      term list)   (* value of the element (always put into a list)    *)
neuper@52169
   404
  list)            (* of elements in the formalization                 *)
neuper@52169
   405
type cas_elem = 
neuper@52169
   406
  (term *          (* cas-command, eg. 'solve'                         *)
neuper@52169
   407
    (spec *        (* theory, problem, method                          *)
s1210629013@52174
   408
    generate_fn))
neuper@52169
   409
fun cas_eq ((t1, (_, _)) : cas_elem, (t2, (_, _)) : cas_elem) = t1 = t2
s1210629013@52167
   410
neuper@37906
   411
(*either theID or pblID or metID*)
neuper@37906
   412
type kestoreID = string list;
neuper@37906
   413
val e_kestoreID = ["e_kestoreID"];
neuper@37906
   414
val kestoreID2str = strs2str;
neuper@37906
   415
neuper@48892
   416
(*for distinction of contexts WN130621: disambiguate with Isabelle's Context !*)
neuper@37906
   417
datatype ketype = Exp_ | Thy_ | Pbl_ | Met_;
neuper@37906
   418
fun ketype2str Exp_ = "Exp_"
neuper@40836
   419
  | ketype2str Thy_ = "Thy_"
neuper@40836
   420
  | ketype2str Pbl_ = "Pbl_"
neuper@37906
   421
  | ketype2str Met_ = "Met_";
neuper@37906
   422
fun ketype2str' Exp_ = "Example"
neuper@40836
   423
  | ketype2str' Thy_ = "Theory"
neuper@40836
   424
  | ketype2str' Pbl_ = "Problem"
neuper@37906
   425
  | ketype2str' Met_ = "Method";
neuper@37906
   426
neuper@37906
   427
(*rewrite orders, also stored in 'type met' and type 'and rls'
neuper@37906
   428
  The association list is required for 'rewrite.."rew_ord"..'
neuper@37947
   429
  WN0509 tests not well-organized: see smltest/Knowledge/termorder.sml*)
neuper@55432
   430
val rew_ord' = Unsynchronized.ref
neuper@38007
   431
        ([]:(rew_ord' *        (*the key for the association list         *)
neuper@37906
   432
	     (subst 	       (*the bound variables - they get high order*)
neuper@37906
   433
	      -> (term * term) (*(t1, t2) to be compared                  *)
neuper@37906
   434
	      -> bool))        (*if t1 <= t2 then true else false         *)
neuper@37906
   435
		list);         (*association list                         *)
neuper@38061
   436
neuper@37906
   437
rew_ord' := overwritel (!rew_ord', [("e_rew_ord", e_rew_ord),
neuper@37906
   438
				    ("dummy_ord", dummy_ord)]);
neuper@37906
   439
neuper@37906
   440
neuper@48887
   441
(* A tree for storing data defined in different theories 
neuper@48887
   442
  for access from the Interpreter and from dialogue authoring 
neuper@48887
   443
  using a string list as key.
neuper@48887
   444
  'a is for pbt | met | thydata; after WN030424 naming became inappropriate *)
neuper@40836
   445
datatype 'a ptyp =
neuper@48887
   446
	Ptyp of string * (* element of the key *)
neuper@48887
   447
		'a list *      (* several pbts with different domIDs/thy TODO: select by subthy (isaref.p.69)
neuper@48887
   448
			                presently only _ONE_ elem FOR ALL KINDS OF CONTENT pbt | met | thydata *)
neuper@48887
   449
		('a ptyp) list;(* the children nodes *)
neuper@37906
   450
neuper@37906
   451
(*.datatype for collecting thydata for hierarchy.*)
neuper@37906
   452
(*WN060720 more consistent naming would be 'type thyelem' or 'thelem'*)
neuper@37906
   453
(*WN0606 Htxt contains html which does not belong to the sml-kernel*)
neuper@37906
   454
datatype thydata = Html of {guh: guh,
neuper@37906
   455
			    coursedesign: authors,
neuper@37906
   456
			    mathauthors: authors,
neuper@37906
   457
			    html: string} (*html; for demos before database*)
neuper@37906
   458
		 | Hthm of {guh: guh,
neuper@37906
   459
			    coursedesign: authors,
neuper@37906
   460
			    mathauthors: authors,
neuper@42429
   461
			    fillpats: fillpat list,
neuper@38002
   462
			    thm: term}
neuper@37906
   463
		 | Hrls of {guh: guh,
neuper@37906
   464
			    coursedesign: authors,
neuper@37906
   465
			    mathauthors: authors,
neuper@37906
   466
			    thy_rls: (thyID * rls)}
neuper@37906
   467
		 | Hcal of {guh: guh,
neuper@37906
   468
			    coursedesign: authors,
neuper@37906
   469
			    mathauthors: authors,
neuper@37906
   470
			    calc: calc}
neuper@37906
   471
		 | Hord of {guh: guh,
neuper@37906
   472
			    coursedesign: authors,
neuper@37906
   473
			    mathauthors: authors,
neuper@37906
   474
			    ord: (subst -> (term * term) -> bool)};
neuper@37906
   475
val e_thydata = Html {guh="e_guh", coursedesign=[], mathauthors=[], html=""};
neuper@55435
   476
fun the2str (Html {guh, coursedesign, mathauthors, html}) = guh : string
neuper@55435
   477
  | the2str (Hthm {guh, coursedesign, mathauthors, fillpats, thm}) = guh
neuper@55435
   478
  | the2str (Hrls {guh, coursedesign, mathauthors, thy_rls}) = guh
neuper@55435
   479
  | the2str (Hcal {guh, coursedesign, mathauthors, calc}) = guh
neuper@55435
   480
  | the2str (Hord {guh, coursedesign, mathauthors, ord}) = guh
neuper@55435
   481
fun thes2str thes = map the2str thes |> list2str;
neuper@37906
   482
neuper@37906
   483
type thehier = (thydata ptyp) list;
neuper@55405
   484
(* required to determine sequence of main nodes of thehier in KEStore.thy *)
neuper@55405
   485
fun part2guh ([str]:theID) =
neuper@55405
   486
    (case str of
neuper@55405
   487
	"Isabelle" => "thy_isab_" ^ str ^ "-part" : guh
neuper@55405
   488
      | "IsacScripts" => "thy_scri_" ^ str ^ "-part"
neuper@55405
   489
      | "IsacKnowledge" => "thy_isac_" ^ str ^ "-part"
neuper@55405
   490
      | str => error ("thy2guh: called with '"^str^"'"))
neuper@55405
   491
  | part2guh theID = error ("part2guh called with theID = " ^ theID2str theID);
neuper@37906
   492
neuper@55437
   493
fun thy2guh ([part, thyID] : theID) = (case part of
neuper@55437
   494
      "Isabelle" => "thy_isab_" ^ thyID : guh
neuper@55437
   495
    | "IsacScripts" => "thy_scri_" ^ thyID
neuper@55437
   496
    | "IsacKnowledge" => "thy_isac_" ^ thyID
neuper@55437
   497
    | str => error ("thy2guh: called with '" ^ str ^ "'"))
neuper@55437
   498
  | thy2guh theID = error ("thy2guh called with '" ^ strs2str' theID ^ "'");
neuper@55437
   499
			
neuper@55437
   500
fun thypart2guh ([part, thyID, thypart] : theID) = case part of
neuper@55437
   501
    "Isabelle" => "thy_isab_" ^ thyID ^ "-" ^ thypart : guh
neuper@55437
   502
  | "IsacScripts" => "thy_scri_" ^ thyID ^ "-" ^ thypart
neuper@55437
   503
  | "IsacKnowledge" => "thy_isac_" ^ thyID ^ "-" ^ thypart
neuper@55437
   504
  | str => error ("thypart2guh: called with '" ^ str ^ "'");
neuper@55437
   505
  
neuper@55437
   506
(* convert the data got via contextToThy to a globally unique handle
neuper@55437
   507
   there is another way to get the guh out of the 'theID' in the hierarchy *)
neuper@55437
   508
fun thm2guh (isa, thyID:thyID) (thmID:thmID) = case isa of
neuper@55437
   509
    "Isabelle" => "thy_isab_" ^ theory'2thyID thyID ^ "-thm-" ^ strip_thy thmID : guh
neuper@55437
   510
  | "IsacKnowledge" => "thy_isac_" ^ theory'2thyID thyID ^ "-thm-" ^ strip_thy thmID
neuper@55437
   511
  | "IsacScripts" => "thy_scri_" ^ theory'2thyID thyID ^ "-thm-" ^ strip_thy thmID
neuper@55437
   512
  | str => error ("thm2guh called with isa = '" ^ isa ^ "' for thm = " ^ thmID ^ "'");
neuper@55437
   513
neuper@55437
   514
fun rls2guh (isa, thyID:thyID) (rls':rls') = case isa of
neuper@55437
   515
    "Isabelle" => "thy_isab_" ^ theory'2thyID thyID ^ "-rls-" ^ rls' : guh
neuper@55437
   516
  | "IsacKnowledge" => "thy_isac_" ^ theory'2thyID thyID ^ "-rls-" ^ rls'
neuper@55437
   517
  | "IsacScripts" => "thy_scri_" ^ theory'2thyID thyID ^ "-rls-" ^ rls'
neuper@55437
   518
  | str => error ("rls2guh called with isa = '" ^ isa ^ "' for rls = '" ^ rls' ^ "'");
neuper@55437
   519
			  
neuper@55437
   520
fun cal2guh (isa, thyID:thyID) calID = case isa of
neuper@55437
   521
    "Isabelle" => "thy_isab_" ^ theory'2thyID thyID ^ "-cal-" ^ calID : guh
neuper@55437
   522
  | "IsacKnowledge" => "thy_isac_" ^ theory'2thyID thyID ^ "-cal-" ^ calID
neuper@55437
   523
  | "IsacScripts" => "thy_scri_" ^ theory'2thyID thyID ^ "-cal-" ^ calID
neuper@55437
   524
  | str => error ("cal2guh called with isa = '" ^ isa ^ "' for cal = '" ^ calID ^ "'");
neuper@55437
   525
			  
neuper@55437
   526
fun ord2guh (isa, thyID:thyID) (rew_ord':rew_ord') = case isa of
neuper@55437
   527
    "Isabelle" => "thy_isab_" ^ theory'2thyID thyID ^ "-ord-" ^ rew_ord' : guh
neuper@55437
   528
  | "IsacKnowledge" => "thy_isac_" ^ theory'2thyID thyID ^ "-ord-" ^ rew_ord'
neuper@55437
   529
  | "IsacScripts" => "thy_scri_" ^ theory'2thyID thyID ^ "-ord-" ^ rew_ord'
neuper@55437
   530
  | str => error ("ord2guh called with isa = '" ^ isa ^ "' for ord = '" ^ rew_ord' ^ "'");
neuper@55437
   531
neuper@55437
   532
(* not only for thydata, but also for thy's etc *)
neuper@55437
   533
fun theID2guh (theID : theID) = case length theID of
neuper@55437
   534
    0 => error ("theID2guh: called with theID = " ^ strs2str' theID)
neuper@55437
   535
  | 1 => part2guh theID
neuper@55437
   536
  | 2 => thy2guh theID
neuper@55437
   537
  | 3 => thypart2guh theID
neuper@55437
   538
  | 4 => 
neuper@55437
   539
    let val [isa, thyID, typ, elemID] = theID
neuper@55437
   540
    in case typ of
neuper@55437
   541
        "Theorems" => thm2guh (isa, thyID) elemID
neuper@55437
   542
      | "Rulesets" => rls2guh (isa, thyID) elemID
neuper@55437
   543
      | "Calculations" => cal2guh (isa, thyID) elemID
neuper@55437
   544
      | "Orders" => ord2guh (isa, thyID) elemID
neuper@55437
   545
      | "Theorems" => thy2guh [isa, thyID]
neuper@55437
   546
      | str => error ("theID2guh: called with theID = " ^ strs2str' theID)
neuper@55437
   547
    end
neuper@55437
   548
  | n => error ("theID2guh called with theID = " ^ strs2str' theID);
neuper@55437
   549
neuper@37906
   550
type path = string;
neuper@37906
   551
type filename = string;
neuper@37906
   552
neuper@37906
   553
(*val xxx = fn: a b => (a,b);   ??? fun-definition ???*)
neuper@37906
   554
local
neuper@37906
   555
    fun ii (_:term) = e_rrlsstate;
neuper@37906
   556
    fun no (_:term) = SOME (e_term,[e_term]);
neuper@37906
   557
    fun lo (_:rule list list) (_:term) (_:rule) = [(e_rule,(e_term,[e_term]))];
neuper@37906
   558
    fun ne (_:rule list list) (_:term) = SOME e_rule;
neuper@37906
   559
    fun fo (_:rule list list) (_:term) (_:term) = [(e_rule,(e_term,[e_term]))];
neuper@37906
   560
in
neuper@37906
   561
val e_rfuns = Rfuns {init_state=ii,normal_form=no,locate_rule=lo,
neuper@37906
   562
		     next_rule=ne,attach_form=fo};
neuper@37906
   563
end;
neuper@37906
   564
neuper@42458
   565
val e_rls =
neuper@42458
   566
  Rls {id = "e_rls", preconds = [], rew_ord = ("dummy_ord", dummy_ord), erls = Erls,
neuper@42458
   567
    srls = Erls, calc = [], rules = [], errpatts = [], scr = EmptyScr}: rls;
neuper@42458
   568
val e_rrls =
neuper@42458
   569
  Rrls {id = "e_rrls", prepat = [], rew_ord = ("dummy_ord", dummy_ord), erls = Erls,
neuper@42458
   570
    calc = [], errpatts = [], scr=e_rfuns}:rls;
neuper@42451
   571
neuper@42451
   572
fun rep_rls (Rls {id,preconds,rew_ord,erls,srls,calc,errpatts,rules,scr}) =
neuper@37906
   573
  {id=id,preconds=preconds,rew_ord=rew_ord,erls=erls,srls=srls,calc=calc,
neuper@37906
   574
   (*asm_thm=asm_thm,*)rules=rules,scr=scr}
neuper@42451
   575
  | rep_rls (Seq {id,preconds,rew_ord,erls,srls,calc,errpatts,rules,scr}) =
neuper@37906
   576
  {id=id,preconds=preconds,rew_ord=rew_ord,erls=erls,srls=srls,calc=calc,
neuper@37906
   577
   (*asm_thm=asm_thm,*)rules=rules,scr=scr}
neuper@37906
   578
  | rep_rls Erls = rep_rls e_rls
neuper@37906
   579
  | rep_rls (Rrls {id,...})  = rep_rls e_rls
neuper@38031
   580
    (*error("rep_rls doesn't take apart reverse-rewrite-rule-sets: "^id)*);
neuper@40836
   581
(*| rep_rls (Seq {id,...})  =
neuper@38031
   582
    error("rep_rls doesn't take apart reverse-rewrite-rule-sets: "^id);
neuper@37906
   583
--1.7.03*)
neuper@42451
   584
fun rep_rrls (Rrls {id, calc, erls, prepat, rew_ord, errpatts,
neuper@42451
   585
	      scr = Rfuns {attach_form, init_state, locate_rule, next_rule, normal_form}}) =
neuper@42451
   586
  {id=id, calc=calc, erls=erls, prepat=prepat,
neuper@42451
   587
     rew_ord=rew_ord, errpatts=errpatts, attach_form=attach_form, init_state=init_state,
neuper@37906
   588
     locate_rule=locate_rule, next_rule=next_rule, normal_form=normal_form}
neuper@40836
   589
  | rep_rrls (Rls {id,...}) =
neuper@38031
   590
    error ("rep_rrls doesn't take apart (normal) rule-sets: "^id)
neuper@40836
   591
  | rep_rrls (Seq {id,...}) =
neuper@38031
   592
    error ("rep_rrls doesn't take apart (normal) rule-sets: "^id);
neuper@37906
   593
neuper@37906
   594
fun append_rls id (Rls {id=_,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   595
			rules =rs, errpatts=errpatts, scr=sc}) r =
neuper@37906
   596
    (Rls{id=id,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   597
	 rules = rs @ r, errpatts=errpatts, scr=sc}:rls)
neuper@37906
   598
  | append_rls id (Seq {id=_,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   599
			rules =rs, errpatts=errpatts, scr=sc}) r =
neuper@37906
   600
    (Seq{id=id,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   601
	 rules = rs @ r, errpatts=errpatts, scr=sc}:rls)
neuper@40836
   602
  | append_rls id (Rrls _) _ =
neuper@38031
   603
    error ("append_rls: not for reverse-rewrite-rule-set "^id);
neuper@37906
   604
neuper@37906
   605
(*. are _atomic_ rules equal ?.*)
neuper@37906
   606
(*WN080102 compare eqrule ?!?*)
neuper@37906
   607
fun eq_rule (Thm (thm1,_), Thm (thm2,_)) = thm1 = thm2
neuper@37906
   608
  | eq_rule (Calc (id1,_), Calc (id2,_)) = id1 = id2
neuper@37906
   609
  | eq_rule (Rls_ rls1, Rls_ rls2) = id_rls rls1 = id_rls rls2
neuper@37906
   610
  (*id_rls checks for Rls, Seq, Rrls*)
neuper@37906
   611
  | eq_rule _ = false;
neuper@37906
   612
neuper@52141
   613
fun merge_ids rls1 rls2 =
neuper@52141
   614
  let 
neuper@52141
   615
    val id1 = (#id o rep_rls) rls1
neuper@52141
   616
    val id2 = (#id o rep_rls) rls2
neuper@52141
   617
  in
neuper@52141
   618
    if id1 = id2 then id1
neuper@52141
   619
    else "merged_" ^ id1 ^ "_" ^ id2
neuper@52141
   620
  end
neuper@37906
   621
fun merge_rls _ Erls rls = rls
neuper@37906
   622
  | merge_rls _ rls Erls = rls
neuper@52141
   623
  | merge_rls _ (Rrls x) _ = Rrls x (* required for merging Theory_Data *)
neuper@52141
   624
  | merge_rls _ _ (Rrls x) = Rrls x
neuper@37906
   625
  | merge_rls id
neuper@52141
   626
	  (Rls {preconds = pc1, rew_ord = ro1, erls = er1, srls = sr1, calc = ca1,
neuper@52141
   627
	    rules = rs1, errpatts = eps1, scr = sc1, ...})
neuper@52141
   628
	  (Rls {preconds = pc2, erls = er2, srls = sr2, calc = ca2,
neuper@52141
   629
	    rules = rs2, errpatts = eps2, ...})
neuper@52141
   630
    =
neuper@52141
   631
	  (Rls {id = id, rew_ord = ro1, scr = sc1,
neuper@52141
   632
	    preconds = union (op =) pc1 pc2,	    
neuper@52141
   633
	    erls = merge_rls (merge_ids er1 er2) er1 er2,
neuper@52141
   634
	    srls = merge_rls (merge_ids sr1 sr2) sr1 sr2,
neuper@52141
   635
	    calc = union calc_eq ca1 ca2,
neuper@52141
   636
		  rules = union eq_rule rs1 rs2,
neuper@52141
   637
      errpatts = union (op =) eps1 eps2} : rls)
neuper@37906
   638
  | merge_rls id
neuper@52141
   639
	  (Seq {preconds = pc1, rew_ord = ro1, erls = er1, srls = sr1, calc = ca1,
neuper@52141
   640
	    rules = rs1, errpatts = eps1, scr = sc1, ...})
neuper@52141
   641
	  (Seq {preconds = pc2, erls = er2, srls = sr2, calc = ca2,
neuper@52141
   642
	    rules = rs2, errpatts = eps2, ...})
neuper@52141
   643
    =
neuper@52141
   644
	  (Seq {id = id, rew_ord = ro1, scr = sc1,
neuper@52141
   645
	    preconds = union (op =) pc1 pc2,	    
neuper@52141
   646
	    erls = merge_rls (merge_ids er1 er2) er1 er2,
neuper@52141
   647
	    srls = merge_rls (merge_ids sr1 sr2) sr1 sr2,
neuper@52141
   648
	    calc = union calc_eq ca1 ca2,
neuper@52141
   649
		  rules = union eq_rule rs1 rs2,
neuper@52141
   650
      errpatts = union (op =) eps1 eps2} : rls)
neuper@52141
   651
  | merge_rls id _ _ = error ("merge_rls: \"" ^ id ^ 
neuper@52141
   652
    "\"; not for reverse-rewrite-rule-sets and not for mixed Rls -- Seq");
neuper@42451
   653
neuper@37906
   654
fun remove_rls id (Rls {id=_,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   655
		     rules=rs, errpatts=eps, scr=sc}) r =
neuper@37906
   656
    (Rls{id=id,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   657
	   rules = gen_rems eq_rule (rs, r),
neuper@42451
   658
	   errpatts = eps(*gen_rems op= (eps, TODO)*),
neuper@37906
   659
	 scr=sc}:rls)
neuper@37906
   660
  | remove_rls id (Seq {id=_,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   661
		     rules =rs, errpatts=eps, scr=sc}) r =
neuper@37906
   662
    (Seq{id=id,preconds=pc,rew_ord=ro,erls=er,srls=sr,calc=ca,
neuper@42451
   663
	   rules = gen_rems eq_rule (rs, r),
neuper@42451
   664
	   errpatts = eps(*gen_rems op= (eps, TODO)*),
neuper@37906
   665
	 scr=sc}:rls)
neuper@40836
   666
  | remove_rls id (Rrls _) _ = error
neuper@37906
   667
                   ("remove_rls: not for reverse-rewrite-rule-set "^id);
neuper@37906
   668
neuper@52141
   669
(* datastructure for KEStore_Elems, intermediate for thehier *)
neuper@52141
   670
type rlss_elem = 
neuper@52141
   671
  (rls' *     (* identifier unique within Isac *)
neuper@52141
   672
  (theory' *  (* just for assignment in thehier, not appropriate for parsing etc *)
neuper@52141
   673
    rls))     (* ((#id o rep_rls) rls) = rls'   by coding discipline *)
neuper@52141
   674
fun rls_eq ((id1, (_, _)), (id2, (_, _))) = id1 = id2
neuper@37906
   675
neuper@52141
   676
fun insert_merge_rls (re as (id, (thyID, r1)) : rlss_elem) ys = 
neuper@52141
   677
  case get_index (fn y => if curry rls_eq re y then SOME y else NONE) ys of
neuper@52141
   678
    NONE => re :: ys
neuper@52141
   679
  | SOME (i, (_, (_, r2))) => 
neuper@52141
   680
      let
neuper@52141
   681
        val r12 = merge_rls id r1 r2
neuper@52141
   682
      in list_update ys i (id, (thyID, r12)) end
neuper@52141
   683
neuper@52141
   684
fun merge_rlss (s1, s2) = fold insert_merge_rls s1 s2;
neuper@52141
   685
neuper@52141
   686
neuper@37906
   687
fun memrls r (Rls {rules,...}) = gen_mem eqrule (r, rules)
neuper@37906
   688
  | memrls r (Seq {rules,...}) = gen_mem eqrule (r, rules)
neuper@38031
   689
  | memrls r _ = error ("memrls: incomplete impl. r= "^(rule2str r));
neuper@37906
   690
neuper@38031
   691
fun assoc' ([], key) = error ("ME_Isa: '"^key^"' not known")
neuper@37906
   692
  | assoc' ((keyi, xi) :: pairs, key) =
neuper@37906
   693
      if key = keyi then SOME xi else assoc' (pairs, key);
neuper@37906
   694
neuper@38056
   695
fun assoc_thy (thy:theory') =
neuper@40836
   696
    if thy = "e_domID" then (Thy_Info.get_theory "Script") (*lower bound of Knowledge*)
neuper@40836
   697
    else (Thy_Info.get_theory thy)
neuper@38056
   698
         handle _ => error ("ME_Isa: thy '" ^ thy ^ "' not in system");
neuper@40836
   699
neuper@37906
   700
(*.overwrite an element in an association list and pair it with a thyID
neuper@37906
   701
   in order to create the thy_hierarchy;
neuper@37906
   702
   overwrites existing rls' even if they are defined in a different thy;
neuper@37906
   703
   this is related to assoc_rls, TODO.WN060120: assoc_rew_ord, assoc_calc;.*)
neuper@40836
   704
(*WN060120 ...these are NOT compatible to "fun assoc_thm'" in that
neuper@37906
   705
   they do NOT handle overlays by re-using an identifier in different thys;
neuper@37906
   706
   "thyID.rlsID" would be a good solution, if the "." would be possible
neuper@37906
   707
   in scripts...
neuper@37906
   708
   actually a hack to get alltogether run again with minimal effort*)
neuper@37906
   709
fun insthy thy' (rls', rls) = (rls', (thy', rls));
neuper@37906
   710
fun overwritelthy thy (al, bl:(rls' * rls) list) =
neuper@37906
   711
    let val bl' = map (insthy ((get_thy o theory2theory') thy)) bl
neuper@37906
   712
    in overwritel (al, bl') end;
neuper@37906
   713
neuper@37906
   714
fun assoc_rew_ord ro = ((the o assoc') (!rew_ord',ro))
neuper@38031
   715
  handle _ => error ("ME_Isa: rew_ord '"^ro^"' not in system");
neuper@37906
   716
(*get the string for stac from rule*)
neuper@37906
   717
neuper@52070
   718
fun term_to_string' ctxt t =
neuper@52065
   719
  let
neuper@52070
   720
    val ctxt' = Config.put show_markup false ctxt
neuper@52070
   721
  in Print_Mode.setmp [] (Syntax.string_of_term ctxt') t end;
neuper@52070
   722
fun term_to_string'' (thyID : thyID) t =
neuper@52070
   723
  let
neuper@52070
   724
    val ctxt' = Config.put show_markup false (Proof_Context.init_global (Thy_Info.get_theory thyID))
neuper@52070
   725
  in Print_Mode.setmp [] (Syntax.string_of_term ctxt') t end;
neuper@52070
   726
fun term_to_string''' thy t =
neuper@52070
   727
  let
neuper@52070
   728
    val ctxt' = Config.put show_markup false (Proof_Context.init_global thy)
neuper@52065
   729
  in Print_Mode.setmp [] (Syntax.string_of_term ctxt') t end;
neuper@38051
   730
s1210629013@55443
   731
fun term2str t = term_to_string' (assoc_thy "Isac" |> thy2ctxt) t;
s1210629013@55345
   732
fun terms2strs ts = map term2str ts;
s1210629013@55345
   733
(*terms2strs [t1,t2] = ["1 + 2", "abc"];*)
s1210629013@55345
   734
val terms2str = strs2str o terms2strs;
neuper@38022
   735
(*terms2str [t1,t2] = "[\"1 + 2\",\"abc\"]";*)
s1210629013@55345
   736
val terms2str' = strs2str' o terms2strs;
neuper@38022
   737
(*terms2str' [t1,t2] = "[1 + 2,abc]";*)
neuper@38013
   738
s1210629013@55345
   739
fun termopt2str (SOME t) = "(SOME " ^ term2str t ^ ")"
neuper@38053
   740
  | termopt2str NONE = "NONE";
neuper@38053
   741
neuper@52070
   742
fun type_to_string' ctxt t =
neuper@52070
   743
  let
neuper@52070
   744
    val ctxt' = Config.put show_markup false ctxt
neuper@52070
   745
  in Print_Mode.setmp [] (Syntax.string_of_typ ctxt') t end;
neuper@52070
   746
fun type_to_string'' (thyID : thyID) t =
neuper@52070
   747
  let
neuper@52070
   748
    val ctxt' = Config.put show_markup false (Proof_Context.init_global (Thy_Info.get_theory thyID))
neuper@52070
   749
  in Print_Mode.setmp [] (Syntax.string_of_typ ctxt') t end;
neuper@52070
   750
fun type_to_string''' thy t =
neuper@52070
   751
  let
neuper@52070
   752
    val ctxt' = Config.put show_markup false (Proof_Context.init_global thy)
neuper@52070
   753
  in Print_Mode.setmp [] (Syntax.string_of_typ ctxt') t end;
neuper@37906
   754
neuper@52070
   755
fun type2str typ = type_to_string'' "Isac" typ; (*legacy*)
neuper@52070
   756
val string_of_typ = type2str; (*legacy*)
neuper@52070
   757
fun string_of_typ_thy thy typ = type_to_string'' thy typ; (*legacy*)
neuper@52070
   758
                 
neuper@40836
   759
fun subst2str (s:subst) =
neuper@40836
   760
    (strs2str o
neuper@37906
   761
     (map (linefeed o pair2str o
neuper@40836
   762
	   (apsnd term2str) o
neuper@37906
   763
	   (apfst term2str)))) s;
neuper@40836
   764
fun subst2str' (s:subst) =
neuper@40836
   765
    (strs2str' o
neuper@37906
   766
     (map (pair2str o
neuper@40836
   767
	   (apsnd term2str) o
neuper@37906
   768
	   (apfst term2str)))) s;
neuper@37906
   769
(*> subst2str' [(str2term "bdv", str2term "x"),
neuper@37906
   770
		(str2term "bdv_2", str2term "y")];
neuper@37906
   771
val it = "[(bdv, x)]" : string
neuper@37906
   772
*)
neuper@37906
   773
val env2str = subst2str;
neuper@37906
   774
neuper@37906
   775
neuper@37906
   776
(*recursive defs:*)
neuper@48763
   777
fun scr2str (Prog s) = "Prog " ^ term2str s
neuper@37906
   778
  | scr2str (Rfuns _)  = "Rfuns";
neuper@37906
   779
neuper@37906
   780
neuper@37906
   781
fun maxthy thy1 thy2 = if Theory.subthy (thy1, thy2) then thy2 else thy1;
neuper@37906
   782
neuper@37906
   783
neuper@37906
   784
(*.trace internal steps of isac's rewriter*)
neuper@38006
   785
val trace_rewrite = Unsynchronized.ref false;
neuper@37906
   786
(*.depth of recursion in traces of the rewriter, if trace_rewrite:=true.*)
neuper@38006
   787
val depth = Unsynchronized.ref 99999;
neuper@37906
   788
(*.no of rewrites exceeding this int -> NO rewrite.*)
neuper@37906
   789
(*WN060829 still unused...*)
neuper@38006
   790
val lim_rewrite = Unsynchronized.ref 99999;
neuper@37906
   791
(*.no of derivation-elements exceeding this int -> SOME derivation-elements.*)
neuper@38006
   792
val lim_deriv = Unsynchronized.ref 100;
neuper@37906
   793
(*.switch for checking guhs unique before storing a pbl or met;
neuper@37906
   794
   set true at startup (done at begin of ROOT.ML)
neuper@37906
   795
   set false for editing IsacKnowledge (done at end of ROOT.ML).*)
neuper@41905
   796
val check_guhs_unique = Unsynchronized.ref true;
neuper@37906
   797
neuper@37906
   798
neuper@37906
   799
datatype lrd = (*elements of a path (=loc_) into an Isabelle term*)
neuper@40836
   800
	 L     (*go left at $*)
neuper@37906
   801
       | R     (*go right at $*)
neuper@37906
   802
       | D;     (*go down at Abs*)
neuper@37906
   803
type loc_ = lrd list;
neuper@37906
   804
fun ldr2str L = "L"
neuper@37906
   805
  | ldr2str R = "R"
neuper@37906
   806
  | ldr2str D = "D";
neuper@37906
   807
fun loc_2str (k:loc_) = (strs2str' o (map ldr2str)) k;
neuper@37906
   808
neuper@55335
   809
neuper@55335
   810
(* the pattern for an item of a problems model or a methods guard *)
neuper@55335
   811
type pat =
neuper@55335
   812
  (string *     (* field               *)
neuper@55335
   813
	  (term *     (* description         *)
neuper@55335
   814
	     term))   (* id | arbitrary term *);
neuper@55335
   815
fun pat2str ((field, (dsc, id)) : pat) = 
neuper@55335
   816
  pair2str (field, pair2str (term2str dsc, term2str id))
neuper@55335
   817
fun pats2str pats = (strs2str o (map pat2str)) pats
neuper@55335
   818
neuper@55357
   819
(* types for problems models (TODO rename to specification models) *)
neuper@55335
   820
type pbt_ =
neuper@55335
   821
  (string *   (* field "#Given",..*)(*deprecated due to 'type pat'*)
neuper@55335
   822
    (term *   (* description      *)
neuper@55335
   823
      term)); (* id | struct-var  *)
neuper@55335
   824
val e_pbt_ = ("#Undef", (e_term, e_term)) : pbt_
neuper@55335
   825
type pbt = 
neuper@55335
   826
  {guh : guh,         (* unique within this isac-knowledge *)
neuper@55335
   827
  mathauthors : string list, (* copyright *)
neuper@55335
   828
  init : pblID,       (* to start refinement with *)
neuper@55335
   829
  thy  : theory,      (* which allows to compile that pbt
neuper@55335
   830
                      TODO: search generalized for subthy (ref.p.69*)
neuper@55335
   831
                      (*^^^ WN050912 NOT used during application of the problem,
neuper@55335
   832
                      because applied terms may be from 'subthy' as well as from super;
neuper@55335
   833
                      thus we take 'maxthy'; see match_ags !*)
neuper@55335
   834
  cas : term option,  (* 'CAS-command'*)
neuper@55335
   835
  prls : rls,         (* for preds in where_*)
neuper@55335
   836
  where_ : term list, (* where - predicates*)
neuper@55335
   837
  ppc : pat list,     (* this is the model-pattern; 
neuper@55335
   838
                       it contains "#Given","#Where","#Find","#Relate"-patterns
neuper@55335
   839
                       for constraints on identifiers see "fun cpy_nam" *)
neuper@55335
   840
  met : metID list}   (* methods solving the pbt*)
neuper@55335
   841
neuper@55335
   842
val e_pbt = {guh = "pbl_empty", mathauthors = [], init = e_pblID, thy = Thy_Info.get_theory "Pure",
neuper@55335
   843
  cas = NONE, prls = Erls, where_ = [], ppc = [], met = []} : pbt
s1210629013@55344
   844
fun pbt2str
s1210629013@55344
   845
        ({cas = cas', guh = guh', init = init', mathauthors = ma', met = met', ppc = ppc',
s1210629013@55345
   846
          prls = prls', thy = thy', where_ = w'} : pbt) =
s1210629013@55344
   847
      "{cas = " ^ (termopt2str cas') ^  ", guh = \"" ^ guh'  ^ "\", init = "
s1210629013@55345
   848
        ^ (strs2str init') ^ ", mathauthors = " ^ (strs2str ma' |> quote) ^ ", met = "
s1210629013@55345
   849
        ^ (strslist2strs met') ^ ", ppc = " ^ pats2str ppc' ^ ", prls = "
s1210629013@55345
   850
        ^ (rls2str prls' |> quote) ^ ", thy = {" ^ (theory2str thy') ^ "}, where_ = "
s1210629013@55345
   851
        ^ (terms2str w') ^ "}" |> linefeed;
s1210629013@55345
   852
fun pbts2str pbts = map pbt2str pbts |> list2str;
neuper@55335
   853
neuper@55335
   854
val e_Ptyp = Ptyp ("e_pblID",[e_pbt],[])
neuper@55335
   855
type ptyps = (pbt ptyp) list
neuper@55335
   856
neuper@55357
   857
fun coll_pblguhs pbls =
neuper@55357
   858
    let fun node coll (Ptyp (_,[n],ns)) =
neuper@55357
   859
	    [(#guh : pbt -> guh) n] @ (nodes coll ns)
neuper@55357
   860
	and nodes coll [] = coll
neuper@55357
   861
	  | nodes coll (n::ns) = (node coll n) @ (nodes coll ns);
neuper@55357
   862
    in nodes [] pbls end;
neuper@55357
   863
fun check_pblguh_unique (guh:guh) (pbls: (pbt ptyp) list) =
neuper@55357
   864
    if member op = (coll_pblguhs pbls) guh
neuper@55357
   865
    then error ("check_guh_unique failed with '"^guh^"';\n"^
neuper@55357
   866
		      "use 'sort_pblguhs()' for a list of guhs;\n"^
neuper@55357
   867
		      "consider setting 'check_guhs_unique := false'")
neuper@55357
   868
    else ();
s1210629013@55339
   869
neuper@55453
   870
fun insrt _ pbt [k] [] = [Ptyp (k, [pbt], [])]
neuper@55453
   871
  | insrt d pbt [k] ((Ptyp (k', [p], ps)) :: pys) =
neuper@55453
   872
      ((*writeln ("### insert 1: ks = " ^ strs2str [k] ^ "    k'= " ^ k');*)
neuper@55453
   873
      if k = k'
neuper@55453
   874
      then ((Ptyp (k', [pbt], ps)) :: pys)
neuper@55453
   875
      else  ((Ptyp (k', [p], ps)) :: (insrt d pbt [k] pys))
neuper@55453
   876
      )			 
s1210629013@55339
   877
  | insrt d pbt (k::ks) ((Ptyp (k', [p], ps))::pys) =
neuper@55453
   878
      ((*writeln ("### insert 2: ks = "^(strs2str (k::ks))^"    k'= "^k');*)
neuper@55453
   879
      if k = k'
neuper@55453
   880
      then ((Ptyp (k', [p], insrt d pbt ks ps)) :: pys)
neuper@55453
   881
      else 
neuper@55453
   882
        if length pys = 0
neuper@55453
   883
        then error ("insert: not found " ^ (strs2str (d : pblID)))
neuper@55453
   884
        else ((Ptyp (k', [p], ps)) :: (insrt d pbt (k :: ks) pys))
neuper@55453
   885
      );
s1210629013@55339
   886
neuper@55448
   887
fun update_ptyps ID _ _ [] =
neuper@55448
   888
    error ("update_ptyps: " ^ strs2str' ID ^ " does not exist")
neuper@55448
   889
  | update_ptyps ID [i] data ((py as Ptyp (key, _, pys)) :: pyss) =
neuper@55448
   890
    if i = key
neuper@55448
   891
    then 
neuper@55448
   892
      if length pys = 0
neuper@55448
   893
      then ((Ptyp (key, [data], [])) :: pyss)
neuper@55448
   894
      else error ("update_ptyps: " ^ strs2str' ID ^ " has descendants")
neuper@55448
   895
    else py :: update_ptyps ID [i] data pyss
neuper@55448
   896
  | update_ptyps ID (i :: is) data ((py as Ptyp (key, d, pys)) :: pyss) =
neuper@55448
   897
    if i = key
neuper@55448
   898
    then ((Ptyp (key,  d, update_ptyps ID is data pys)) :: pyss)
neuper@55448
   899
    else (py :: (update_ptyps ID (i :: is) data pyss))
neuper@55448
   900
s1210629013@55339
   901
(* this function only works wrt. the way Isabelle evaluates Theories and is not a general merge
s1210629013@55339
   902
  function for trees / ptyps *)
s1210629013@55339
   903
fun merge_ptyps ([], pt) = pt
s1210629013@55339
   904
  | merge_ptyps (pt, []) = pt
s1210629013@55346
   905
  | merge_ptyps ((x' as Ptyp (k, x, ps)) :: xs, (xs' as Ptyp (k', y, ps') :: ys)) =
s1210629013@55346
   906
      if k = k'
s1210629013@55346
   907
      then Ptyp (k, y, merge_ptyps (ps, ps')) :: merge_ptyps (xs, ys)
s1210629013@55346
   908
      else x' :: merge_ptyps (xs, xs');
neuper@55448
   909
fun merge_ptyps' pt1 pt2 = merge_ptyps (pt1, pt2)
s1210629013@55372
   910
s1210629013@55372
   911
(* data for methods stored in 'methods'-database*)
s1210629013@55372
   912
type met = 
s1210629013@55372
   913
     {guh        : guh,        (*unique within this isac-knowledge           *)
s1210629013@55372
   914
      mathauthors: string list,(*copyright                                   *)
s1210629013@55372
   915
      init       : pblID,      (*WN060721 introduced mistakenly--TODO.REMOVE!*)
s1210629013@55372
   916
      rew_ord'   : rew_ord',   (*for rules in Detail
s1210629013@55372
   917
			                           TODO.WN0509 store fun itself, see 'type pbt'*)
s1210629013@55372
   918
      erls       : rls,        (*the eval_rls for cond. in rules FIXME "rls'
s1210629013@55372
   919
				                         instead erls in "fun prep_met"              *)
s1210629013@55372
   920
      srls       : rls,        (*for evaluating list expressions in scr      *)
s1210629013@55372
   921
      prls       : rls,        (*for evaluating predicates in modelpattern   *)
s1210629013@55372
   922
      crls       : rls,        (*for check_elementwise, ie. formulae in calc.*)
s1210629013@55372
   923
      nrls       : rls,        (*canonical simplifier specific for this met  *)
s1210629013@55372
   924
      errpats    : errpat list,(*error patterns expected in this method      *)
s1210629013@55372
   925
      calc       : calc list,  (*Theory_Data in fun prep_met                 *)
s1210629013@55372
   926
      (*branch   : TransitiveB set in append_problem at generation ob pblobj
s1210629013@55372
   927
          FIXXXME.0308: set branch from met in Apply_Method ?                *)
s1210629013@55372
   928
      ppc        : pat list,   (*.items in given, find, relate;
s1210629013@55372
   929
	      items (in "#Find") which need not occur in the arg-list of a SubProblem
s1210629013@55372
   930
        are 'copy-named' with an identifier "*'.'".
s1210629013@55372
   931
        copy-named items are 'generating' if they are NOT "*'''" ?WN120516??
s1210629013@55372
   932
        see ME/calchead.sml 'fun is_copy_named'.                              *)
s1210629013@55372
   933
      pre        : term list,  (*preconditions in where                       *)
s1210629013@55372
   934
      scr        : scr         (*prep_met gets progam or string "empty_script"*)
s1210629013@55372
   935
	   };
s1210629013@55372
   936
val e_met = {guh="met_empty",mathauthors=[],init=e_metID,
s1210629013@55372
   937
	     rew_ord' = "e_rew_ord'": rew_ord',
s1210629013@55372
   938
	      erls = e_rls, srls = e_rls, prls = e_rls,
s1210629013@55372
   939
	      calc = [], crls = e_rls, errpats = [], nrls= e_rls,
s1210629013@55372
   940
	      ppc = []: (string * (term * term)) list,
s1210629013@55372
   941
	      pre = []: term list,
s1210629013@55372
   942
	      scr = EmptyScr: scr}:met;
s1210629013@55372
   943
s1210629013@55372
   944
s1210629013@55372
   945
val e_Mets = Ptyp ("e_metID",[e_met],[]);
s1210629013@55372
   946
s1210629013@55372
   947
type mets = (met ptyp) list;
neuper@55335
   948
s1210629013@55373
   949
fun coll_metguhs mets =
s1210629013@55373
   950
    let fun node coll (Ptyp (_,[n],ns)) =
neuper@55428
   951
	    [(#guh : met -> guh) n] @ (nodes coll ns)
s1210629013@55373
   952
	and nodes coll [] = coll
s1210629013@55373
   953
	  | nodes coll (n::ns) = (node coll n) @ (nodes coll ns);
s1210629013@55373
   954
    in nodes [] mets end;
s1210629013@55373
   955
s1210629013@55373
   956
(* val (guh, mets) = ("met_test", !mets);
s1210629013@55373
   957
   *)
s1210629013@55373
   958
fun check_metguh_unique (guh:guh) (mets: (met ptyp) list) =
s1210629013@55373
   959
    if member op = (coll_metguhs mets) guh
s1210629013@55373
   960
    then error ("check_guh_unique failed with '"^guh^"';\n"^
s1210629013@55373
   961
		      "use 'sort_metguhs()' for a list of guhs;\n"^
s1210629013@55373
   962
		      "consider setting 'check_guhs_unique := false'")
s1210629013@55373
   963
    else ();
s1210629013@55373
   964
neuper@55450
   965
fun Html_default exist = (Html {guh = theID2guh exist, 
neuper@55450
   966
  coursedesign = ["isac team 2006"], mathauthors = [], html = ""})
neuper@55450
   967
neuper@55450
   968
fun fill_parents (exist, [i]) thydata = Ptyp (i, [thydata], [])
neuper@55450
   969
  | fill_parents (exist, i :: is) thydata =
neuper@55450
   970
    Ptyp (i, [Html_default (exist @ [i])], [fill_parents (exist @ [i], is) thydata])
neuper@55450
   971
  | fill_parents _ _ = error "Html_default: avoid ML warning: Matches are not exhaustive"
neuper@55450
   972
neuper@55450
   973
fun add_thydata (exist, is) thydata [] = [fill_parents (exist, is) thydata]
neuper@55450
   974
  | add_thydata (exist, [i]) data (pys as (py as Ptyp (key, _, _)) :: pyss) = 
neuper@55450
   975
    if i = key
neuper@55450
   976
    then pys (* preserve existing thydata *) 
neuper@55450
   977
    else py :: add_thydata (exist, [i]) data pyss
neuper@55450
   978
  | add_thydata (exist, iss as (i :: is)) data ((py as Ptyp (key, d, pys)) :: pyss) = 
neuper@55450
   979
    if i = key
neuper@55450
   980
    then       
neuper@55450
   981
      if length pys = 0
neuper@55450
   982
      then Ptyp (key, d, [fill_parents (exist @ [i], is) data]) :: pyss
neuper@55450
   983
      else Ptyp (key, d, add_thydata (exist @ [i], is) data pys) :: pyss
neuper@55450
   984
    else py :: add_thydata (exist, iss) data pyss
neuper@55450
   985
  | add_thydata _ _ _ = error "add_thydata: avoid ML warning: Matches are not exhaustive"
neuper@55448
   986
neuper@55448
   987
fun update_hthm (Hthm {guh, coursedesign, mathauthors, thm, ...}) fillpats' =
neuper@55448
   988
  Hthm {guh = guh, coursedesign = coursedesign, mathauthors = mathauthors,
neuper@55448
   989
    fillpats = fillpats', thm = thm}
neuper@55448
   990
  | update_hthm _ _ = raise ERROR "wrong data";
neuper@55448
   991
neuper@55448
   992
(* for interface for dialog-authoring *)
neuper@55448
   993
fun update_hrls (Hrls {guh, coursedesign, mathauthors, thy_rls = (thyID, rls)}) errpatIDs =
neuper@55448
   994
  let
neuper@55448
   995
    val rls' = 
neuper@55448
   996
      case rls of
neuper@55448
   997
        Rls {id, preconds, rew_ord, erls, srls, calc, rules, scr, ...} =>
neuper@55448
   998
          Rls {id = id, preconds = preconds, rew_ord = rew_ord, erls = erls, srls = srls,
neuper@55448
   999
            calc = calc, rules = rules, scr = scr, errpatts = errpatIDs}
neuper@55448
  1000
      | Seq {id, preconds, rew_ord, erls, srls, calc, rules, scr, ...} =>
neuper@55448
  1001
            Seq {id = id, preconds = preconds, rew_ord = rew_ord, erls = erls, srls = srls,
neuper@55448
  1002
              calc = calc, rules = rules, scr = scr, errpatts = errpatIDs}
neuper@55448
  1003
      | Rrls {id, prepat, rew_ord, erls, calc, scr, ...} =>
neuper@55448
  1004
            Rrls {id = id, prepat = prepat, rew_ord = rew_ord, erls = erls, calc = calc,
neuper@55448
  1005
              scr = scr, errpatts = errpatIDs}
neuper@55448
  1006
      | Erls => Erls
neuper@55448
  1007
  in
neuper@55448
  1008
    Hrls {guh = guh, coursedesign = coursedesign, mathauthors = mathauthors,
neuper@55448
  1009
      thy_rls = (thyID, rls')}
neuper@55448
  1010
  end
neuper@55448
  1011
  | update_hrls _ _ = raise ERROR "wrong data";
neuper@55448
  1012
neuper@55448
  1013
fun app_py p f (d:pblID) (k(*:pblRD*)) = let
neuper@55448
  1014
    fun py_err _ =
neuper@55448
  1015
          error ("app_py: not found: " ^ (strs2str d));
neuper@55448
  1016
    fun app_py' _ [] = py_err ()
neuper@55448
  1017
      | app_py' [] _ = py_err ()
neuper@55448
  1018
      | app_py' [k0] ((p' as Ptyp (k', _, _  ))::ps) =
neuper@55448
  1019
          if k0 = k' then f p' else app_py' [k0] ps
neuper@55448
  1020
      | app_py' (k' as (k0::ks)) (Ptyp (k'', _, ps)::ps') =
neuper@55448
  1021
          if k0 = k'' then app_py' ks ps else app_py' k' ps';
neuper@55448
  1022
  in app_py' k p end;
neuper@55448
  1023
  
neuper@55448
  1024
fun get_py p = let
neuper@55448
  1025
        fun extract_py (Ptyp (_, [py], _)) = py
neuper@55448
  1026
          | extract_py _ = error ("extract_py: Ptyp has wrong format.");
neuper@55448
  1027
      in app_py p extract_py end;
neuper@55448
  1028
neuper@55448
  1029
fun (*KEStore_Elems.*)insert_fillpats th fis = (* for tests bypassing setup KEStore_Elems *)
neuper@55448
  1030
  let
neuper@55448
  1031
    fun update_elem th (theID, fillpats) =
neuper@55437
  1032
      let
neuper@55448
  1033
        val hthm = get_py th theID theID
neuper@55448
  1034
        val hthm' = update_hthm hthm fillpats
neuper@55448
  1035
          handle ERROR _ => error ("insert_fillpats: " ^ strs2str theID ^ "must address a theorem")
neuper@55448
  1036
      in update_ptyps theID theID hthm' end
neuper@55448
  1037
  in fold (update_elem th) fis end
neuper@55456
  1038
neuper@55456
  1039
(* group the theories defined in Isac, compare Build_Thydata:
neuper@55456
  1040
  section "Get and group the theories defined in Isac" *) 
neuper@55456
  1041
fun isabthys () = (*["Complex_Main", "Taylor", .., "Pure"]*)
neuper@55456
  1042
  let
neuper@55456
  1043
    val allthys = Theory.ancestors_of (Thy_Info.get_theory "Build_Thydata")
neuper@55456
  1044
  in
neuper@55456
  1045
    drop ((find_index (curry Theory.eq_thy (Thy_Info.get_theory "Complex_Main")) allthys), allthys)
neuper@55456
  1046
  end
neuper@55456
  1047
fun knowthys () = (*["Isac", .., "Descript", "Delete"]*)
neuper@55456
  1048
  let
neuper@55456
  1049
    fun isacthys () = (* ["Isac", .., "KEStore"] without Build_Isac thys: "Interpret" etc *)
neuper@55456
  1050
      let
neuper@55456
  1051
        val allthys = filter_out (member Theory.eq_thy
neuper@55456
  1052
          [(*Thy_Info.get_theory "ProgLang",*) Thy_Info.get_theory "Interpret", 
neuper@55456
  1053
            Thy_Info.get_theory "xmlsrc", Thy_Info.get_theory "Frontend"]) 
neuper@55456
  1054
          (Theory.ancestors_of (Thy_Info.get_theory "Build_Thydata"))
neuper@55456
  1055
      in
neuper@55456
  1056
        take ((find_index (curry Theory.eq_thy (Thy_Info.get_theory "Complex_Main")) allthys), 
neuper@55456
  1057
        allthys)
neuper@55456
  1058
      end
neuper@55456
  1059
    val isacthys' = isacthys ()
neuper@55456
  1060
    val proglang_parent = Thy_Info.get_theory "ProgLang"
neuper@55456
  1061
  in
neuper@55456
  1062
    take ((find_index (curry Theory.eq_thy proglang_parent) isacthys'), isacthys')
neuper@55456
  1063
  end
neuper@55456
  1064
fun progthys () = (*["Isac", .., "Descript", "Delete"]*)
neuper@55456
  1065
  let
neuper@55456
  1066
    fun isacthys () = (* ["Isac", .., "KEStore"] without Build_Isac thys: "Interpret" etc *)
neuper@55456
  1067
      let
neuper@55456
  1068
        val allthys = filter_out (member Theory.eq_thy
neuper@55456
  1069
          [(*Thy_Info.get_theory "ProgLang",*) Thy_Info.get_theory "Interpret", 
neuper@55456
  1070
            Thy_Info.get_theory "xmlsrc", Thy_Info.get_theory "Frontend"]) 
neuper@55456
  1071
          (Theory.ancestors_of (Thy_Info.get_theory "Build_Thydata"))
neuper@55456
  1072
      in
neuper@55456
  1073
        take ((find_index (curry Theory.eq_thy (Thy_Info.get_theory "Complex_Main")) allthys), 
neuper@55456
  1074
        allthys)
neuper@55456
  1075
      end
neuper@55456
  1076
    val isacthys' = isacthys ()
neuper@55456
  1077
    val proglang_parent = Thy_Info.get_theory "ProgLang"
neuper@55456
  1078
  in
neuper@55456
  1079
    drop ((find_index (curry Theory.eq_thy proglang_parent) isacthys') + 1(*ProgLang*), isacthys')
neuper@55456
  1080
  end
neuper@55456
  1081
neuper@55456
  1082
fun partID thy = 
neuper@55456
  1083
  if member Theory.eq_thy (knowthys ()) thy then "IsacKnowledge"
neuper@55456
  1084
  else if member Theory.eq_thy (progthys ()) thy then "IsacScripts"
neuper@55456
  1085
  else if member Theory.eq_thy (isabthys ()) thy then "Isabelle"
neuper@55456
  1086
  else error ("closure of thys in Isac is broken by " ^ string_of_thy thy)
neuper@55456
  1087
fun partID' (thy' : theory') = partID (Thy_Info.get_theory thy')
neuper@38061
  1088
(*
neuper@38061
  1089
end (*struct*)
neuper@38061
  1090
*)