910 lines
26 KiB
Prolog
910 lines
26 KiB
Prolog
/*************************************************************************
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* *
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* YAP Prolog *
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* *
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* Yap Prolog was developed at NCCUP - Universidade do Porto *
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* *
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* Copyright L.Damas, V.S.Costa and Universidade do Porto 1985-1997 *
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* *
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**************************************************************************
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* *
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* File: debug.pl *
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* Last rev: *
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* mods: *
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* comments: YAP's debugger *
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* *
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*************************************************************************/
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/*-----------------------------------------------------------------------------
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Debugging / creating spy points
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-----------------------------------------------------------------------------*/
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:- op(900,fx,[spy,nospy]).
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% First part : setting and reseting spy points
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% $suspy does most of the work
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'$suspy'(V,S,M) :- var(V) , !,
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'$do_error'(instantiation_error,M:spy(V,S)).
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'$suspy'((M:S),P,_) :- !,
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'$suspy'(S,P,M).
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'$suspy'([],_,_) :- !.
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'$suspy'([F|L],S,M) :- !, ( '$suspy'(F,S,M) ; '$suspy'(L,S,M) ).
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'$suspy'(F/N,S,M) :- !,
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functor(T,F,N),
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'$do_suspy'(S, F, N, T, M).
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'$suspy'(A,S,M) :- atom(A), !,
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'$suspy_predicates_by_name'(A,S,M).
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'$suspy'(P,spy,M) :- !,
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'$do_error'(domain_error(predicate_spec,P),spy(M:P)).
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'$suspy'(P,nospy,M) :-
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'$do_error'(domain_error(predicate_spec,P),nospy(M:P)).
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'$suspy_predicates_by_name'(A,S,M) :-
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% just check one such predicate exists
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(
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current_predicate(A,M:_)
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->
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M = EM,
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A = NA
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;
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recorded('$import','$import'(EM,M,GA,_,A,_),_),
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functor(GA,NA,_)
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),
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!,
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'$do_suspy_predicates_by_name'(NA,S,EM).
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'$suspy_predicates_by_name'(A,spy,M) :- !,
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print_message(warning,no_match(spy(M:A))).
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'$suspy_predicates_by_name'(A,nospy,M) :-
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print_message(warning,no_match(nospy(M:A))).
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'$do_suspy_predicates_by_name'(A,S,M) :-
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current_predicate(A,M:T),
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functor(T,A,N),
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'$do_suspy'(S, A, N, T, M).
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'$do_suspy_predicates_by_name'(A, S, M) :-
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recorded('$import','$import'(EM,M,T0,_,A,N),_),
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functor(T0,A0,N0),
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'$do_suspy'(S, A0, N0, T, EM).
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%
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% protect against evil arguments.
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%
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'$do_suspy'(S, F, N, T, M) :-
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recorded('$import','$import'(EM,M,T0,_,F,N),_), !,
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functor(T0, F0, N0),
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'$do_suspy'(S, F0, N0, T, EM).
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'$do_suspy'(S, F, N, T, M) :-
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'$undefined'(T,M), !,
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( S = spy ->
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print_message(warning,no_match(spy(M:F/N)))
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;
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print_message(warning,no_match(nospy(M:F/N)))
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).
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'$do_suspy'(S, F, N, T, M) :-
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'$system_predicate'(T,M),
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'$flags'(T,M,F,F),
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F /\ 0x118dd080 =\= 0,
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( S = spy ->
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'$do_error'(permission_error(access,private_procedure,T),spy(M:F/N))
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;
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'$do_error'(permission_error(access,private_procedure,T),nospy(M:F/N))
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).
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'$do_suspy'(S, F, N, T, M) :-
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'$undefined'(T,M), !,
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( S = spy ->
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print_message(warning,no_match(spy(M:F/N)))
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;
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print_message(warning,no_match(nospy(M:F/N)))
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).
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'$do_suspy'(S,F,N,T,M) :-
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'$suspy2'(S,F,N,T,M).
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'$suspy2'(spy,F,N,T,M) :-
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recorded('$spy','$spy'(T,M),_), !,
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print_message(informational,breakp(bp(debugger,plain,M:T,M:F/N,N),add,already)).
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'$suspy2'(spy,F,N,T,M) :- !,
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recorda('$spy','$spy'(T,M),_),
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'$set_spy'(T,M),
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print_message(informational,breakp(bp(debugger,plain,M:T,M:F/N,N),add,ok)).
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'$suspy2'(nospy,F,N,T,M) :-
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recorded('$spy','$spy'(T,M),R), !,
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erase(R),
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'$rm_spy'(T,M),
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print_message(informational,breakp(bp(debugger,plain,M:T,M:F/N,N),remove,last)).
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'$suspy2'(nospy,F,N,_,M) :-
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print_message(informational,breakp(no,breakpoint_for,M:F/N)).
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'$pred_being_spied'(G, M) :-
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recorded('$spy','$spy'(G,M),_), !.
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spy Spec :-
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'$notrace'(prolog:debug_action_hook(spy(Spec))), !.
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spy L :-
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'$current_module'(M),
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'$suspy'(L, spy, M), fail.
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spy _ :- debug.
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nospy Spec :-
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'$notrace'(prolog:debug_action_hook(nospy(Spec))), !.
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nospy L :-
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'$current_module'(M),
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'$suspy'(L, nospy, M), fail.
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nospy _.
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nospyall :-
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'$notrace'(prolog:debug_action_hook(nospyall)), !.
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nospyall :-
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recorded('$spy','$spy'(T,M),_), functor(T,F,N), '$suspy'(F/N,nospy,M), fail.
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nospyall.
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% debug mode -> debug flag = 1
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debug :-
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( nb_getval('$spy_gn',L) -> true ; nb_setval('$spy_gn',1) ),
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'$start_debugging'(on),
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print_message(informational,debug(debug)).
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'$start_debugging'(Mode) :-
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(Mode == on ->
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'$debug_on'(true)
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;
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'$debug_on'(false)
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),
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nb_setval('$debug_run',off),
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nb_setval('$debug_jump',false).
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nodebug :-
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'$debug_on'(false),
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nb_setval('$trace',off),
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print_message(informational,debug(off)).
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%
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% remove any debugging info after an abort.
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%
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trace :-
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nb_getval('$trace',on), !.
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trace :-
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nb_setval('$trace',on),
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'$start_debugging'(on),
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print_message(informational,debug(trace)),
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'$creep'.
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notrace :-
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nodebug.
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/*-----------------------------------------------------------------------------
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leash
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-----------------------------------------------------------------------------*/
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leash(X) :- var(X),
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'$do_error'(instantiation_error,leash(X)).
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leash(X) :-
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'$leashcode'(X,Code),
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set_value('$leash',Code),
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'$show_leash'(informational,Code), !.
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leash(X) :-
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'$do_error'(type_error(leash_mode,X),leash(X)).
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'$show_leash'(Msg,0) :-
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print_message(Msg,leash([])).
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'$show_leash'(Msg,Code) :-
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'$check_leash_bit'(Code,0x8,L3,call,LF),
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'$check_leash_bit'(Code,0x4,L2,exit,L3),
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'$check_leash_bit'(Code,0x2,L1,redo,L2),
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'$check_leash_bit'(Code,0x1,[],fail,L1),
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print_message(Msg,leash(LF)).
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'$check_leash_bit'(Code,Bit,L0,_,L0) :- Bit /\ Code =:= 0, !.
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'$check_leash_bit'(_,_,L0,Name,[Name|L0]).
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'$leashcode'(full,0xf) :- !.
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'$leashcode'(on,0xf) :- !.
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'$leashcode'(half,0xb) :- !.
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'$leashcode'(loose,0x8) :- !.
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'$leashcode'(off,0x0) :- !.
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'$leashcode'(none,0x0) :- !.
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%'$leashcode'([L|M],Code) :- !, '$leashcode_list'([L|M],Code).
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'$leashcode'([L|M],Code) :- !,
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'$list2Code'([L|M],Code).
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'$leashcode'(N,N) :- integer(N), N >= 0, N =< 0xf.
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'$list2Code'(V,_) :- var(V), !,
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'$do_error'(instantiation_error,leash(V)).
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'$list2Code'([],0) :- !.
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'$list2Code'([V|L],_) :- var(V), !,
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'$do_error'(instantiation_error,leash([V|L])).
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'$list2Code'([call|L],N) :- '$list2Code'(L,N1), N is 0x8 + N1.
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'$list2Code'([exit|L],N) :- '$list2Code'(L,N1), N is 0x4 + N1.
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'$list2Code'([redo|L],N) :- '$list2Code'(L,N1), N is 0x2 + N1.
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'$list2Code'([fail|L],N) :- '$list2Code'(L,N1), N is 0x1 + N1.
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/*-----------------------------------------------------------------------------
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debugging
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-----------------------------------------------------------------------------*/
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debugging :-
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prolog:debug_action_hook(nospyall), !.
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debugging :-
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( '$debug_on'(true) ->
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print_message(help,debug(debug))
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;
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print_message(help,debug(off))
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),
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findall(M:(N/A),(recorded('$spy','$spy'(T,M),_),functor(T,N,A)),L),
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print_message(help,breakpoints(L)),
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get_value('$leash',Leash),
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'$show_leash'(help,Leash).
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/*-----------------------------------------------------------------------------
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spy
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-----------------------------------------------------------------------------*/
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% ok, I may have a spy point for this goal, or not.
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% if I do, I should check what mode I am in.
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% Goal/Mode Have Spy Not Spied
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% Creep Stop Stop
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% Leap Stop Create CP
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% Skip Create CP Create CP
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% FastLeap Stop Ignore
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% FastIgnore Ignore Ignore
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% flag description initial possible values
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% spy_gn goal number 1 1...
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% spy_trace trace 0 0, 1
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% spy_skip leap off Num (stop level)
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% debug_prompt stop at spy points on on,off
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% a flip-flop is also used
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% when 1 spying is enabled *(the same as spy stop).
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%'$spy'(G) :- write(user_error,'$spy'(G)), nl, fail.
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%
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% handle suspended goals
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% take care with hidden goals.
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%
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% $spy may be called from user code, so be careful.
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'$spy'([Mod|G]) :-
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'$debug_on'(F), F = false, !,
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'$execute_nonstop'(G,Mod).
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'$spy'([Mod|G]) :-
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nb_getval('$system_mode',on), !,
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'$execute_nonstop'(G,Mod).
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'$spy'([Mod|G]) :-
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CP is '$last_choice_pt',
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'$do_spy'(G, Mod, CP, no).
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% last argument to do_spy says that we are at the end of a context. It
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% is required to know whether we are controlled by the debugger.
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'$do_spy'(V, M, CP, Flag) :- var(V), !, '$do_spy'(call(V), M, CP, Flag).
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'$do_spy'(!, _, CP, _) :- !, '$$cut_by'(CP).
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'$do_spy'('$cut_by'(M), _, _, _) :- !, '$$cut_by'(M).
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'$do_spy'(true, _, _, _) :- !.
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%'$do_spy'(fail, _, _, _) :- !, fail.
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'$do_spy'(M:G, _, CP, CalledFromDebugger) :- !,
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'$do_spy'(G, M, CP, CalledFromDebugger).
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'$do_spy'((A,B), M, CP, CalledFromDebugger) :- !,
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'$do_spy'(A, M, CP, yes),
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'$do_spy'(B, M, CP, CalledFromDebugger).
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'$do_spy'((T->A;B), M, CP, CalledFromDebugger) :- !,
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( '$do_spy'(T, M, CP, yes) -> '$do_spy'(A, M, CP, yes)
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;
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'$do_spy'(B, M, CP, CalledFromDebugger)
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).
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'$do_spy'((T->A|B), M, CP, CalledFromDebugger) :- !,
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( '$do_spy'(T, M, CP, yes) -> '$do_spy'(A, M, CP, yes)
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;
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'$do_spy'(B, M, CP, CalledFromDebugger)
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).
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'$do_spy'((T->A), M, CP, _) :- !,
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( '$do_spy'(T, M, CP, yes) -> '$do_spy'(A, M, CP, yes) ).
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'$do_spy'((A;B), M, CP, CalledFromDebugger) :- !,
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(
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'$do_spy'(A, M, CP, yes)
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;
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'$do_spy'(B, M, CP, CalledFromDebugger)
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).
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'$do_spy'((A|B), M, CP, CalledFromDebugger) :- !,
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(
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'$do_spy'(A, M, CP, yes)
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;
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'$do_spy'(B, M, CP, CalledFromDebugger)
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).
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'$do_spy'((\+G), M, CP, CalledFromDebugger) :- !,
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\+ '$do_spy'(G, M, CP, CalledFromDebugger).
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'$do_spy'((not(G)), M, CP, CalledFromDebugger) :- !,
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\+ '$do_spy'(G, M, CP, CalledFromDebugger).
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'$do_spy'(G, Module, _, CalledFromDebugger) :-
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nb_getval('$spy_gn',L), /* get goal no. */
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L1 is L+1, /* bump it */
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nb_setval('$spy_gn',L1), /* and save it globaly */
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b_getval('$spy_glist',History), /* get goal list */
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b_setval('$spy_glist',[info(L,Module,G,_Retry,_Det,_HasFoundAnswers)|History]), /* and update it */
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'$loop_spy'(L, G, Module, CalledFromDebugger). /* set creep on */
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% we are skipping, so we can just call the goal,
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% while leaving the minimal structure in place.
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'$loop_spy'(GoalNumber, G, Module, CalledFromDebugger) :-
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yap_hacks:current_choice_point(CP),
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'$system_catch'('$loop_spy2'(GoalNumber, G, Module, CalledFromDebugger, CP),
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Module, error(Event,Context),
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'$loop_spy_event'(error(Event,Context), GoalNumber, G, Module, CalledFromDebugger)).
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% handle weird things happening in the debugger.
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'$loop_spy_event'('$pass'(Event), _, _, _, _) :- !,
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throw(Event).
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'$loop_spy_event'(error('$retry_spy'(G0),_), GoalNumber, G, Module, CalledFromDebugger) :-
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G0 >= GoalNumber, !,
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'$loop_spy'(GoalNumber, G, Module, CalledFromDebugger).
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'$loop_spy_event'(error('$retry_spy'(GoalNumber),_), _, _, _, _) :- !,
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throw(error('$retry_spy'(GoalNumber),[])).
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'$loop_spy_event'(error('$fail_spy'(G0),_), GoalNumber, G, Module, CalledFromDebugger) :-
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G0 >= GoalNumber, !,
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'$loop_fail'(GoalNumber, G, Module, CalledFromDebugger).
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'$loop_spy_event'(error('$fail_spy'(GoalNumber),_), _, _, _, _) :- !,
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throw(error('$fail_spy'(GoalNumber),[])).
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'$loop_spy_event'(error('$done_spy'(G0),_), GoalNumber, G, _, CalledFromDebugger) :-
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G0 >= GoalNumber, !,
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'$continue_debugging'(CalledFromDebugger).
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'$loop_spy_event'(error('$done_spy'(GoalNumber),_), _, _, _, _) :- !,
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throw(error('$done_spy'(GoalNumber),[])).
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'$loop_spy_event'(Event, GoalNumber, G, Module, CalledFromDebugger) :-
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'$debug_error'(Event),
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'$system_catch'(
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('$trace'(exception(Event),G,Module,GoalNumber,_),fail),
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Module,
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error(NewEvent,NewContext),
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'$loop_spy_event'(error(NewEvent,NewContext), GoalNumber, G, Module, CalledFromDebugger)
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).
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'$debug_error'(Event) :-
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'$Error'(Event), fail.
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'$debug_error'(_).
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% just fail here, don't really need to call debugger, the user knows what he
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% wants to do
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'$loop_fail'(_GoalNumber, _G, _Module, _CalledFromDebugger) :-
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'$continue_debugging'(CalledFromDebugger),
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fail.
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% if we are in
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'$loop_spy2'(GoalNumber, G0, Module, CalledFromDebugger, CP) :-
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/* the following choice point is where the predicate is called */
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(
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'$is_metapredicate'(G0, Module)
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->
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'$meta_expansion'(G0,Module,Module,Module,G,[])
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;
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G = G0
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),
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b_getval('$spy_glist',[Info|_]), /* get goal list */
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Info = info(_,_,_,Retry,Det,false),
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(
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/* call port */
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'$enter_goal'(GoalNumber, G, Module),
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'$spycall'(G, Module, CalledFromDebugger, Retry),
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'$disable_docreep',
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(
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'$debugger_deterministic_goal'(G) ->
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Det=true
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;
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Det=false
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),
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/* go execute the predicate */
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(
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Retry = false ->
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/* found an answer, so it can redo */
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nb_setarg(6, Info, true),
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'$show_trace'(exit,G,Module,GoalNumber,Det), /* output message at exit */
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/* exit port */
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/* get rid of deterministic computations */
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(
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Det == true
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->
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'$$cut_by'(CP)
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;
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true
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),
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'$continue_debugging'(CalledFromDebugger)
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;
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/* backtracking from exit */
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/* we get here when we want to redo a goal */
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/* redo port */
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'$disable_docreep',
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(
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arg(6, Info, true)
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->
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'$show_trace'(redo,G,Module,GoalNumber,_), /* inform user_error */
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nb_setarg(6, Info, false)
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;
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true
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),
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'$continue_debugging'(CalledFromDebugger),
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fail /* to backtrack to spycalls */
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)
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;
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'$show_trace'(fail,G,Module,GoalNumber,_), /* inform at fail port */
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'$continue_debugging'(CalledFromDebugger),
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/* fail port */
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fail
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).
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|
|
|
'$enter_goal'(GoalNumber, G, Module) :-
|
|
'$zip'(GoalNumber, G, Module), !.
|
|
'$enter_goal'(GoalNumber, G, Module) :-
|
|
'$trace'(call, G, Module, GoalNumber, _).
|
|
|
|
'$show_trace'(_, G, Module, GoalNumber,_) :-
|
|
'$zip'(GoalNumber, G, Module), !.
|
|
'$show_trace'(P,G,Module,GoalNumber,Deterministic) :-
|
|
'$trace'(P,G,Module,GoalNumber,Deterministic).
|
|
|
|
%
|
|
% skip a goal or a port
|
|
%
|
|
'$zip'(GoalNumber, G, Module) :-
|
|
nb_getval('$debug_run',StopPoint),
|
|
% zip mode off, we cannot zip
|
|
StopPoint \= off,
|
|
(
|
|
% skip spy points (eg, s).
|
|
StopPoint == spy
|
|
->
|
|
\+ '$pred_being_spied'(G, Module)
|
|
;
|
|
% skip goals (eg, l).
|
|
number(StopPoint)
|
|
->
|
|
StopPoint < GoalNumber
|
|
).
|
|
|
|
|
|
|
|
%
|
|
'$spycall'(G, M, _, _) :-
|
|
nb_getval('$debug_jump',true),
|
|
!,
|
|
'$execute_nonstop'(G,M).
|
|
'$spycall'(G, M, _, _) :-
|
|
'$system_predicate'(G,M),
|
|
\+ '$is_metapredicate'(G,M), !,
|
|
'$execute'(M:G).
|
|
'$spycall'(G, M, _, _) :-
|
|
'$system_module'(M), !,
|
|
'$execute'(M:G).
|
|
'$spycall'(G, M, _, _) :-
|
|
'$tabled_predicate'(G,M),
|
|
!,
|
|
'$continue_debugging'(no, '$execute_nonstop'(G,M)).
|
|
'$spycall'(G, M, CalledFromDebugger, InRedo) :-
|
|
'$flags'(G,M,F,F),
|
|
F /\ 0x08402000 =\= 0, !, % dynamic procedure, logical semantics, or source
|
|
% use the interpreter
|
|
CP is '$last_choice_pt',
|
|
'$clause'(G, M, Cl, _),
|
|
% I may backtrack to here from far away
|
|
'$disable_docreep',
|
|
( '$do_spy'(Cl, M, CP, CalledFromDebugger) ; InRedo = true ).
|
|
'$spycall'(G, M, CalledFromDebugger, InRedo) :-
|
|
'$undefined'(G, M), !,
|
|
'$find_goal_definition'(M, G, NM, Goal),
|
|
'$spycall'(Goal, NM, CalledFromDebugger, InRedo).
|
|
'$spycall'(G, M, _, InRedo) :-
|
|
% I lost control here.
|
|
CP is '$last_choice_pt',
|
|
'$static_clause'(G,M,_,R),
|
|
% I may backtrack to here from far away
|
|
'$disable_docreep',
|
|
(
|
|
'$continue_debugging'(no, '$execute_clause'(G, M, R, CP))
|
|
;
|
|
InRedo = true
|
|
).
|
|
|
|
'$tabled_predicate'(G,M) :-
|
|
'$flags'(G,M,F,F),
|
|
F /\ 0x00000040 =\= 0.
|
|
|
|
'$trace'(P,G,Module,L,Deterministic) :-
|
|
% at this point we are done with leap or skip
|
|
nb_setval('$debug_run',off),
|
|
% make sure we run this code outside debugging mode.
|
|
'$debug_on'(false),
|
|
repeat,
|
|
'$trace_msg'(P,G,Module,L,Deterministic),
|
|
(
|
|
'$unleashed'(P) ->
|
|
'$action'(10,P,L,G,Module,Debug),
|
|
put_code(user_error, 10)
|
|
;
|
|
write(user_error,' ? '), get0(user_input,C),
|
|
'$action'(C,P,L,G,Module,Debug)
|
|
),
|
|
(Debug = on
|
|
->
|
|
'$debug_on'(true)
|
|
;
|
|
Debug = zip
|
|
->
|
|
'$debug_on'(true)
|
|
;
|
|
'$debug_on'(false)
|
|
),
|
|
!.
|
|
|
|
'$trace_msg'(P,G,Module,L,Deterministic) :-
|
|
flush_output(user_output),
|
|
flush_output(user_error),
|
|
functor(P,P0,_),
|
|
(P = exit, Deterministic \= true -> Det = '?' ; Det = ' '),
|
|
('$pred_being_spied'(G,Module) -> CSPY = '*' ; CSPY = ' '),
|
|
% vsc: fix this
|
|
% ( SL = L -> SLL = '>' ; SLL = ' '),
|
|
SLL = ' ',
|
|
( Module\=prolog,
|
|
Module\=user
|
|
->
|
|
GW = Module:G
|
|
;
|
|
GW = G
|
|
),
|
|
format(user_error,'~a~a~a (~d) ~q:',[Det,CSPY,SLL,L,P0]),
|
|
'$debugger_write'(user_error,GW).
|
|
|
|
'$unleashed'(call) :- get_value('$leash',L), L /\ 2'1000 =:= 0. %'
|
|
'$unleashed'(exit) :- get_value('$leash',L), L /\ 2'0100 =:= 0. %'
|
|
'$unleashed'(redo) :- get_value('$leash',L), L /\ 2'0010 =:= 0. %'
|
|
'$unleashed'(fail) :- get_value('$leash',L), L /\ 2'0001 =:= 0. %'
|
|
% the same as fail.
|
|
'$unleashed'(exception(_)) :- get_value('$leash',L), L /\ 2'0001 =:= 0. %'
|
|
|
|
'$debugger_write'(Stream, G) :-
|
|
recorded('$print_options','$debugger'(OUT),_), !,
|
|
write_term(Stream, G, OUT).
|
|
'$debugger_write'(Stream, G) :-
|
|
writeq(Stream, G).
|
|
|
|
'$action'(13,P,CallNumber,G,Module,Zip) :- !, % newline creep
|
|
get0(user_input,C),
|
|
'$action'(C,P,CallNumber,G,Module,Zip).
|
|
%'$action'(10,_,_,_,_,on) :- % newline creep
|
|
% nb_setval('$debug_jump',false).
|
|
'$action'(10,_,_,_,_,on) :- !, % newline creep
|
|
nb_setval('$debug_jump',false).
|
|
'$action'(0'!,_,_,_,_,_) :- !, % ! 'g execute
|
|
read(user,G),
|
|
% don't allow yourself to be caught by creep.
|
|
'$debug_on'(OldDeb),
|
|
'$debug_on'(false),
|
|
( '$execute'(G) -> true ; true),
|
|
'$debug_on'(OldDeb),
|
|
% '$skipeol'(0'!), % '
|
|
fail.
|
|
'$action'(0'<,_,_,_,_,_) :- !, % <'Depth
|
|
'$new_deb_depth',
|
|
'$skipeol'(0'<),
|
|
fail.
|
|
'$action'(0'^,_,_,G,_,_) :- !, % '
|
|
'$print_deb_sterm'(G),
|
|
'$skipeol'(0'^),
|
|
fail.
|
|
'$action'(0'a,_,_,_,_,off) :- !, % 'a abort
|
|
'$skipeol'(0'a),
|
|
abort.
|
|
'$action'(0'b,_,_,_,_,_) :- !, % 'b break
|
|
'$skipeol'(0'b),
|
|
break,
|
|
fail.
|
|
'$action'(0'A,_,_,_,_,_) :- !, % 'b break
|
|
'$skipeol'(0'A),
|
|
'$stack_dump',
|
|
fail.
|
|
'$action'(0'c,_,_,_,_,on) :- !, % 'c creep
|
|
'$skipeol'(0'c),
|
|
nb_setval('$debug_jump',false).
|
|
'$action'(0'e,_,_,_,_,_) :- !, % 'e exit
|
|
'$skipeol'(0'e),
|
|
halt.
|
|
'$action'(0'f,_,CallId,_,_,_) :- !, % 'f fail
|
|
'$scan_number'(0'f, CallId, GoalId), %'f
|
|
throw(error('$fail_spy'(GoalId),[])).
|
|
'$action'(0'h,_,_,_,_,_) :- !, % 'h help
|
|
'$action_help',
|
|
'$skipeol'(104),
|
|
fail.
|
|
'$action'(0'?,_,_,_,_,_) :- !, % '? help
|
|
'$action_help',
|
|
'$skipeol'(104),
|
|
fail.
|
|
'$action'(0'p,_,_,G,Module,_) :- !, % 'p print
|
|
((Module = prolog ; Module = user) ->
|
|
print(user_error,G), nl(user_error)
|
|
;
|
|
print(user_error,Module:G), nl(user_error)
|
|
),
|
|
'$skipeol'(0'p),
|
|
fail.
|
|
'$action'(0'd,_,_,G,Module,_) :- !, % 'd display
|
|
((Module = prolog ; Module = user) ->
|
|
display(user_error,G), nl(user_error)
|
|
;
|
|
display(user_error,Module:G), nl(user_error)
|
|
),
|
|
'$skipeol'(0'd),
|
|
fail.
|
|
'$action'(0'l,_,_,_,_,on) :- !, % 'l leap
|
|
'$skipeol'(0'l),
|
|
nb_setval('$debug_run',spy),
|
|
nb_setval('$debug_jump',false).
|
|
'$action'(0'z,_,_,_,_,zip) :- !, % 'z zip, fast leap
|
|
'$skipeol'(0'z), % 'z
|
|
nb_setval('$debug_run',spy),
|
|
nb_setval('$debug_jump',true).
|
|
% skip first call (for current goal),
|
|
% stop next time.
|
|
'$action'(0'k,_,_,_,_,zip) :- !, % 'k zip, fast leap
|
|
'$skipeol'(0'k), % '
|
|
nb_setval('$debug_run',spy),
|
|
nb_setval('$debug_jump',true).
|
|
% skip first call (for current goal),
|
|
% stop next time.
|
|
'$action'(0'n,_,_,_,_,off) :- !, % 'n nodebug
|
|
'$skipeol'(0'n), % '
|
|
% tell debugger never to stop.
|
|
nb_setval('$debug_run', -1),
|
|
nb_setval('$debug_jump',true),
|
|
nodebug.
|
|
'$action'(0'r,_,CallId,_,_,_) :- !, % 'r retry
|
|
'$scan_number'(0'r,CallId,ScanNumber), % '
|
|
'$debug_on'(true),
|
|
throw(error('$retry_spy'(ScanNumber),[])).
|
|
'$action'(0's,P,CallNumber,_,_,on) :- !, % 's skip
|
|
'$skipeol'(0's), % '
|
|
( (P=call; P=redo) ->
|
|
nb_setval('$debug_run',CallNumber),
|
|
nb_setval('$debug_jump',false)
|
|
;
|
|
'$ilgl'(0's) % '
|
|
).
|
|
'$action'(0't,P,CallNumber,_,_,zip) :- !, % 't fast skip
|
|
'$skipeol'(0't), % '
|
|
( (P=call; P=redo) ->
|
|
nb_setval('$debug_run',CallNumber),
|
|
nb_setval('$debug_jump',true)
|
|
;
|
|
'$ilgl'(0't) % '
|
|
).
|
|
'$action'(0'+,_,_,G,M,_) :- !, % '+ spy this
|
|
functor(G,F,N), spy(M:(F/N)),
|
|
'$skipeol'(0'+), % '
|
|
fail.
|
|
'$action'(0'-,_,_,G,M,_) :- !, % '- nospy this
|
|
functor(G,F,N), nospy(M:(F/N)),
|
|
'$skipeol'(0'-), % '
|
|
fail.
|
|
'$action'(0'g,_,_,_,_,_) :- !, % 'g ancestors
|
|
'$scan_number'(0'g,-1,HowMany), % '
|
|
'$show_ancestors'(HowMany),
|
|
fail.
|
|
'$action'(C,_,_,_,_,_) :-
|
|
'$skipeol'(C),
|
|
'$ilgl'(C),
|
|
fail.
|
|
|
|
'$continue_debugging'(yes).
|
|
% do not need to debug!
|
|
'$continue_debugging'(no) :-
|
|
'$creep'.
|
|
|
|
% if we are in the interpreter, don't need to care about forcing a trace, do we?
|
|
'$continue_debugging'(yes,G) :- !,
|
|
'$execute_dgoal'(G).
|
|
% do not need to debug!
|
|
'$continue_debugging'(_,G) :-
|
|
'nb_getval'('$debug_run',Zip),
|
|
(Zip == nodebug ; number(Zip) ; Zip == spy ), !,
|
|
'$execute_dgoal'(G).
|
|
'$continue_debugging'(_,G) :-
|
|
'$execute_creep_dgoal'(G).
|
|
|
|
'$execute_dgoal'('$execute_nonstop'(G,M)) :-
|
|
'$execute_nonstop'(G,M).
|
|
'$execute_dgoal'('$execute_clause'(G, M, R, CP)) :-
|
|
'$execute_clause'(G, M, R, CP).
|
|
|
|
'$execute_creep_dgoal'('$execute_nonstop'(G,M)) :-
|
|
'$signal_creep',
|
|
'$execute_nonstop'(G,M).
|
|
'$execute_creep_dgoal'('$execute_clause'(G, M, R, CP)) :-
|
|
'$signal_creep',
|
|
'$execute_clause'(G, M, R, CP).
|
|
|
|
'$show_ancestors'(HowMany) :-
|
|
b_getval('$spy_glist',[_|History]),
|
|
(
|
|
History == []
|
|
->
|
|
print_message(help, ancestors([]))
|
|
;
|
|
'$show_ancestors'(History,HowMany),
|
|
nl(user_error)
|
|
).
|
|
|
|
'$show_ancestors'([],_).
|
|
'$show_ancestors'([_|_],0) :- !.
|
|
'$show_ancestors'([info(L,M,G,Retry,Det,_Exited)|History],HowMany) :-
|
|
'$show_ancestor'(L,M,G,Retry,Det,HowMany,HowMany1),
|
|
'$show_ancestors'(History,HowMany1).
|
|
|
|
% skip exit port, we're looking at true ancestors
|
|
'$show_ancestor'(_,_,_,_,Det,HowMany,HowMany) :-
|
|
nonvar(Det), !.
|
|
% look at retry
|
|
'$show_ancestor'(GoalNumber, M, G, Retry, _, HowMany, HowMany1) :-
|
|
nonvar(Retry), !,
|
|
HowMany1 is HowMany-1,
|
|
'$trace_msg'(redo, G, M, GoalNumber, _), nl(user_error).
|
|
'$show_ancestor'(GoalNumber, M, G, _, _, HowMany, HowMany1) :-
|
|
HowMany1 is HowMany-1,
|
|
'$trace_msg'(call, G, M, GoalNumber, _), nl(user_error).
|
|
|
|
|
|
'$action_help' :-
|
|
format(user_error,'newline creep a abort~n', []),
|
|
format(user_error,'c creep e exit~n', []),
|
|
format(user_error,'f Goal fail h help~n', []),
|
|
format(user_error,'l leap r Goal retry~n', []),
|
|
format(user_error,'s skip t fastskip~n', []),
|
|
format(user_error,'q quasiskip k quasileap~n', []),
|
|
format(user_error,'b break n no debug~n', []),
|
|
format(user_error,'p print d display~n', []),
|
|
format(user_error,'<D depth D < full term~n', []),
|
|
format(user_error,'+ spy this - nospy this~n', []),
|
|
format(user_error,'^ view subg ^^ view using~n', []),
|
|
format(user_error,'A choices g [N] ancestors~n', []),
|
|
format(user_error,'! g execute goal~n', []).
|
|
|
|
'$ilgl'(C) :-
|
|
print_message(warning, trace_command(C)),
|
|
print_message(help, trace_help),
|
|
fail.
|
|
|
|
'$skipeol'(10) :- !.
|
|
'$skipeol'(_) :- get0(user,C), '$skipeol'(C).
|
|
|
|
'$scan_number'(_, _, Nb) :-
|
|
get0(user,C),
|
|
'$scan_number2'(C, Nb), !.
|
|
'$scan_number'(_, CallId, CallId).
|
|
|
|
'$scan_number2'(10, _) :- !, fail.
|
|
'$scan_number2'(0' , Nb) :- !, % '
|
|
get0(user,C),
|
|
'$scan_number2'(C , Nb).
|
|
'$scan_number2'(0' , Nb) :- !, %'
|
|
get0(user,C),
|
|
'$scan_number2'(C, Nb).
|
|
'$scan_number2'(C, Nb) :-
|
|
'$scan_number3'(C, 0, Nb).
|
|
|
|
'$scan_number3'(10, Nb, Nb) :- !, Nb > 0.
|
|
'$scan_number3'( C, Nb0, Nb) :-
|
|
C >= "0", C =< "9",
|
|
NbI is Nb0*10+(C-"0"),
|
|
get0(user, NC),
|
|
'$scan_number3'( NC, NbI, Nb).
|
|
|
|
'$print_deb_sterm'(G) :-
|
|
'$get_sterm_list'(L), !,
|
|
'$deb_get_sterm_in_g'(L,G,A),
|
|
recorda('$debug_sub_skel',L,_),
|
|
format(user_error,'~n~w~n~n',[A]).
|
|
'$print_deb_sterm'(_) :- '$skipeol'(94).
|
|
|
|
'$get_sterm_list'(L) :-
|
|
get0(user_input,C),
|
|
'$deb_inc_in_sterm_oldie'(C,L0,CN),
|
|
'$get_sterm_list'(L0,CN,0,L).
|
|
|
|
'$deb_inc_in_sterm_oldie'(94,L0,CN) :- !,
|
|
get0(user_input,CN),
|
|
( recorded('$debug_sub_skel',L0,_) -> true ;
|
|
CN = [] ).
|
|
'$deb_inc_in_sterm_oldie'(C,[],C).
|
|
|
|
'$get_sterm_list'(L0,C,N,L) :-
|
|
( C =:= "^", N =\= 0 -> get0(CN),
|
|
'$get_sterm_list'([N|L0],CN,0,L) ;
|
|
C >= "0", C =< "9" -> NN is 10*N+C-"0", get0(CN),
|
|
'$get_sterm_list'(L0,CN,NN,L);
|
|
C =:= 10 -> (N =:= 0 -> L = L0 ; L=[N|L0]) ).
|
|
|
|
'$deb_get_sterm_in_g'([],G,G).
|
|
'$deb_get_sterm_in_g'([H|T],G,A) :-
|
|
'$deb_get_sterm_in_g'(T,G,A1),
|
|
arg(H,A1,A).
|
|
|
|
'$new_deb_depth' :-
|
|
get0(user_input,C),
|
|
'$get_deb_depth'(C,D),
|
|
'$set_deb_depth'(D).
|
|
|
|
'$get_deb_depth'(10,10) :- !. % default depth is 0
|
|
'$get_deb_depth'(C,XF) :-
|
|
'$get_deb_depth_char_by_char'(C,0,XF).
|
|
|
|
'$get_deb_depth_char_by_char'(10,X,X) :- !.
|
|
'$get_deb_depth_char_by_char'(C,X0,XF) :-
|
|
C >= "0", C =< "9", !,
|
|
XI is X0*10+C-"0",
|
|
get0(user_input,NC),
|
|
'$get_deb_depth_char_by_char'(NC,XI,XF).
|
|
% reset when given garbage.
|
|
'$get_deb_depth_char_by_char'(C,_,10) :- '$skipeol'(C).
|
|
|
|
'$set_deb_depth'(D) :-
|
|
recorded('$print_options','$debugger'(L),R), !,
|
|
'$delete_if_there'(L, max_depth(_), LN),
|
|
erase(R),
|
|
recorda('$print_options','$debugger'([max_depth(D)|LN]),_).
|
|
'$set_deb_depth'(D) :-
|
|
recorda('$print_options','$debugger'([quoted(true),numbervars(true),portrayed(true),max_depth(D)]),_).
|
|
|
|
'$delete_if_there'([], _, []).
|
|
'$delete_if_there'([T|L], T, LN) :- !,
|
|
'$delete_if_there'(L, T, LN).
|
|
'$delete_if_there'([Q|L], T, [Q|LN]) :-
|
|
'$delete_if_there'(L, T, LN).
|
|
|
|
'$debugger_deterministic_goal'(G) :-
|
|
yap_hacks:current_choicepoints(CPs0),
|
|
% $cps(CPs0),
|
|
'$debugger_skip_traces'(CPs0,CPs1),
|
|
'$debugger_skip_loop_spy2'(CPs1,CPs2),
|
|
'$debugger_skip_spycall'(CPs2,CPs3),
|
|
'$debugger_skip_loop_spy2'(CPs3,[Catch|_]),
|
|
yap_hacks:choicepoint(Catch,_,prolog,'$catch',3,'$catch'(_,'$loop_spy_event'(_,_,G,_,_),_),_).
|
|
|
|
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'$cps'([CP|CPs]) :-
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yap_hacks:choicepoint(CP,A,B,C,D,E,F),
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write(A:B:C:D:E:F),nl,
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'$cps'(CPs).
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'$cps'([]).
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'$debugger_skip_spycall'([CP|CPs],CPs1) :-
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yap_hacks:choicepoint(CP,_,prolog,'$spycall',4,(_;_),_), !,
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'$debugger_skip_spycall'(CPs,CPs1).
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'$debugger_skip_spycall'(CPs,CPs).
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'$debugger_skip_traces'([CP|CPs],CPs1) :-
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yap_hacks:choicepoint(CP,_,prolog,'$trace',4,(_;_),_), !,
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'$debugger_skip_traces'(CPs,CPs1).
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'$debugger_skip_traces'(CPs,CPs).
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'$debugger_skip_loop_spy2'([CP|CPs],CPs1) :-
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yap_hacks:choicepoint(CP,_,prolog,'$loop_spy2',5,(_;_),_), !,
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'$debugger_skip_loop_spy2'(CPs,CPs1).
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'$debugger_skip_loop_spy2'(CPs,CPs).
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