| author | wenzelm | 
| Wed, 10 Jul 2002 14:50:08 +0200 | |
| changeset 13335 | 7995b3f4ca5e | 
| parent 12902 | a23dc0b7566f | 
| child 13550 | 5a176b8dda84 | 
| permissions | -rw-r--r-- | 
| 4078 | 1 | (* Title: Provers/blast.ML | 
| 2894 | 2 | ID: $Id$ | 
| 3 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | |
| 3083 | 4 | Copyright 1997 University of Cambridge | 
| 2894 | 5 | |
| 6 | Generic tableau prover with proof reconstruction | |
| 7 | ||
| 2854 | 8 | SKOLEMIZES ReplaceI WRONGLY: allow new vars in prems, or forbid such rules?? | 
| 2894 | 9 | Needs explicit instantiation of assumptions? | 
| 10 | ||
| 11 | ||
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changeset | 12 | Blast_tac is often more powerful than fast_tac, but has some limitations. | 
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changeset | 13 | Blast_tac... | 
| 4651 | 14 | * ignores wrappers (addss, addbefore, addafter, addWrapper, ...); | 
| 15 | this restriction is intrinsic | |
| 2894 | 16 | * ignores elimination rules that don't have the correct format | 
| 17 | (conclusion must be a formula variable) | |
| 18 | * ignores types, which can make HOL proofs fail | |
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changeset | 19 | * rules must not require higher-order unification, e.g. apply_type in ZF | 
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changeset | 20 | + message "Function Var's argument not a bound variable" relates to this | 
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changeset | 21 | * its proof strategy is more general but can actually be slower | 
| 2894 | 22 | |
| 23 | Known problems: | |
| 3092 | 24 | "Recursive" chains of rules can sometimes exclude other unsafe formulae | 
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changeset | 25 | from expansion. This happens because newly-created formulae always | 
| 3092 | 26 | have priority over existing ones. But obviously recursive rules | 
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changeset | 27 | such as transitivity are treated specially to prevent this. Sometimes | 
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changeset | 28 | the formulae get into the wrong order (see WRONG below). | 
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changeset | 29 | |
| 2952 | 30 | With overloading: | 
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changeset | 31 | Calls to Blast.overloaded (see HOL/Set.ML for examples) are needed | 
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changeset | 32 | to tell Blast_tac when to retain some type information. Make sure | 
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changeset | 33 | you know the constant's internal name, which might be "op <=" or | 
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changeset | 34 | "Relation.op ^^". | 
| 2952 | 35 | |
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changeset | 36 | With substition for equalities (hyp_subst_tac): | 
| 3092 | 37 | When substitution affects a haz formula or literal, it is moved | 
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changeset | 38 | back to the list of safe formulae. | 
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changeset | 39 | But there's no way of putting it in the right place. A "moved" or | 
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changeset | 40 | "no DETERM" flag would prevent proofs failing here. | 
| 2854 | 41 | *) | 
| 42 | ||
| 43 | (*Should be a type abbreviation?*) | |
| 44 | type netpair = (int*(bool*thm)) Net.net * (int*(bool*thm)) Net.net; | |
| 45 | ||
| 46 | ||
| 47 | (*Assumptions about constants: | |
| 48 | --The negation symbol is "Not" | |
| 49 | --The equality symbol is "op =" | |
| 50 | --The is-true judgement symbol is "Trueprop" | |
| 51 | --There are no constants named "*Goal* or "*False*" | |
| 52 | *) | |
| 53 | signature BLAST_DATA = | |
| 54 | sig | |
| 55 | type claset | |
| 56 | val notE : thm (* [| ~P; P |] ==> R *) | |
| 57 | val ccontr : thm | |
| 58 | val contr_tac : int -> tactic | |
| 59 | val dup_intr : thm -> thm | |
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changeset | 60 | val hyp_subst_tac : bool ref -> int -> tactic | 
| 4078 | 61 | val claset : unit -> claset | 
| 4653 | 62 | val rep_cs : (* dependent on classical.ML *) | 
| 2854 | 63 |       claset -> {safeIs: thm list, safeEs: thm list, 
 | 
| 64 | hazIs: thm list, hazEs: thm list, | |
| 4651 | 65 | swrappers: (string * wrapper) list, | 
| 66 | uwrappers: (string * wrapper) list, | |
| 2854 | 67 | safe0_netpair: netpair, safep_netpair: netpair, | 
| 12403 | 68 | haz_netpair: netpair, dup_netpair: netpair, xtra_netpair: ContextRules.netpair} | 
| 7272 | 69 | val cla_modifiers: (Args.T list -> (Method.modifier * Args.T list)) list | 
| 7559 | 70 | val cla_meth': (claset -> int -> tactic) -> thm list -> Proof.context -> Proof.method | 
| 2854 | 71 | end; | 
| 72 | ||
| 73 | ||
| 74 | signature BLAST = | |
| 75 | sig | |
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changeset | 76 | type claset | 
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changeset | 77 | exception TRANS of string (*reports translation errors*) | 
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changeset | 78 | datatype term = | 
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changeset | 79 | Const of string | 
| 4065 | 80 | | TConst of string * term | 
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changeset | 81 | | Skolem of string * term option ref list | 
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changeset | 82 | | Free of string | 
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changeset | 83 | | Var of term option ref | 
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changeset | 84 | | Bound of int | 
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changeset | 85 | | Abs of string*term | 
| 3030 | 86 | | $ of term*term; | 
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changeset | 87 | type branch | 
| 2883 | 88 | val depth_tac : claset -> int -> int -> tactic | 
| 89 | val blast_tac : claset -> int -> tactic | |
| 90 | val Blast_tac : int -> tactic | |
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changeset | 91 | val overloaded : string * (Term.typ -> Term.typ) -> unit | 
| 11119 | 92 | val get_overloads : unit -> (string * (Term.typ -> Term.typ)) list | 
| 5926 | 93 | val setup : (theory -> theory) list | 
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changeset | 94 | (*debugging tools*) | 
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changeset | 95 | val stats : bool ref | 
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changeset | 96 | val trace : bool ref | 
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changeset | 97 | val fullTrace : branch list list ref | 
| 4065 | 98 | val fromType : (indexname * term) list ref -> Term.typ -> term | 
| 99 | val fromTerm : Term.term -> term | |
| 100 | val fromSubgoal : Term.term -> term | |
| 101 | val instVars : term -> (unit -> unit) | |
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changeset | 102 | val toTerm : int -> term -> Term.term | 
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changeset | 103 | val readGoal : Sign.sg -> string -> term | 
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changeset | 104 | val tryInThy : theory -> int -> string -> | 
| 3083 | 105 | (int->tactic) list * branch list list * (int*int*exn) list | 
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changeset | 106 | val trygl : claset -> int -> int -> | 
| 3083 | 107 | (int->tactic) list * branch list list * (int*int*exn) list | 
| 108 | val Trygl : int -> int -> | |
| 109 | (int->tactic) list * branch list list * (int*int*exn) list | |
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changeset | 110 | val normBr : branch -> branch | 
| 2854 | 111 | end; | 
| 112 | ||
| 113 | ||
| 3092 | 114 | functor BlastFun(Data: BLAST_DATA) : BLAST = | 
| 2854 | 115 | struct | 
| 116 | ||
| 117 | type claset = Data.claset; | |
| 118 | ||
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changeset | 119 | val trace = ref false | 
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changeset | 120 | and stats = ref false; (*for runtime and search statistics*) | 
| 2854 | 121 | |
| 122 | datatype term = | |
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changeset | 123 | Const of string | 
| 4065 | 124 | | TConst of string * term (*type of overloaded constant--as a term!*) | 
| 2854 | 125 | | Skolem of string * term option ref list | 
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changeset | 126 | | Free of string | 
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changeset | 127 | | Var of term option ref | 
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changeset | 128 | | Bound of int | 
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changeset | 129 | | Abs of string*term | 
| 5613 | 130 | | op $ of term*term; | 
| 2854 | 131 | |
| 132 | ||
| 133 | (** Basic syntactic operations **) | |
| 134 | ||
| 135 | fun is_Var (Var _) = true | |
| 136 | | is_Var _ = false; | |
| 137 | ||
| 138 | fun dest_Var (Var x) = x; | |
| 139 | ||
| 140 | ||
| 141 | fun rand (f$x) = x; | |
| 142 | ||
| 143 | (* maps (f, [t1,...,tn]) to f(t1,...,tn) *) | |
| 144 | val list_comb : term * term list -> term = foldl (op $); | |
| 145 | ||
| 146 | ||
| 147 | (* maps f(t1,...,tn) to (f, [t1,...,tn]) ; naturally tail-recursive*) | |
| 148 | fun strip_comb u : term * term list = | |
| 149 | let fun stripc (f$t, ts) = stripc (f, t::ts) | |
| 150 | | stripc x = x | |
| 151 | in stripc(u,[]) end; | |
| 152 | ||
| 153 | ||
| 154 | (* maps f(t1,...,tn) to f , which is never a combination *) | |
| 155 | fun head_of (f$t) = head_of f | |
| 156 | | head_of u = u; | |
| 157 | ||
| 158 | ||
| 159 | (** Particular constants **) | |
| 160 | ||
| 161 | fun negate P = Const"Not" $ P; | |
| 162 | ||
| 163 | fun mkGoal P = Const"*Goal*" $ P; | |
| 164 | ||
| 165 | fun isGoal (Const"*Goal*" $ _) = true | |
| 166 | | isGoal _ = false; | |
| 167 | ||
| 168 | val Trueprop = Term.Const("Trueprop", Type("o",[])-->propT);
 | |
| 169 | fun mk_tprop P = Term.$ (Trueprop, P); | |
| 170 | ||
| 171 | fun isTrueprop (Term.Const("Trueprop",_)) = true
 | |
| 172 | | isTrueprop _ = false; | |
| 173 | ||
| 174 | ||
| 4065 | 175 | (*** Dealing with overloaded constants ***) | 
| 2854 | 176 | |
| 4065 | 177 | (*alist is a map from TVar names to Vars. We need to unify the TVars | 
| 178 | faithfully in order to track overloading*) | |
| 179 | fun fromType alist (Term.Type(a,Ts)) = list_comb (Const a, | |
| 180 | map (fromType alist) Ts) | |
| 181 | | fromType alist (Term.TFree(a,_)) = Free a | |
| 182 | | fromType alist (Term.TVar (ixn,_)) = | |
| 183 | (case (assoc_string_int(!alist,ixn)) of | |
| 184 | None => let val t' = Var(ref None) | |
| 185 | in alist := (ixn, t') :: !alist; t' | |
| 186 | end | |
| 187 | | Some v => v) | |
| 2854 | 188 | |
| 189 | local | |
| 4065 | 190 | val overloads = ref ([]: (string * (Term.typ -> Term.typ)) list) | 
| 2854 | 191 | in | 
| 192 | ||
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changeset | 193 | fun overloaded arg = (overloads := arg :: (!overloads)); | 
| 2854 | 194 | |
| 11119 | 195 | fun get_overloads() = !overloads; | 
| 196 | ||
| 4065 | 197 | (*Convert a possibly overloaded Term.Const to a Blast.Const or Blast.TConst, | 
| 198 | converting its type to a Blast.term in the latter case.*) | |
| 199 | fun fromConst alist (a,T) = | |
| 200 | case assoc_string (!overloads, a) of | |
| 201 | None => Const a (*not overloaded*) | |
| 202 | | Some f => | |
| 203 | let val T' = f T | |
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changeset | 204 | handle Match => error | 
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changeset | 205 |                 ("Blast_tac: unexpected type for overloaded constant " ^ a)
 | 
| 4065 | 206 | in TConst(a, fromType alist T') end; | 
| 207 | ||
| 2854 | 208 | end; | 
| 209 | ||
| 210 | ||
| 211 | (*Tests whether 2 terms are alpha-convertible; chases instantiations*) | |
| 212 | fun (Const a) aconv (Const b) = a=b | |
| 4065 | 213 | | (TConst (a,ta)) aconv (TConst (b,tb)) = a=b andalso ta aconv tb | 
| 2854 | 214 | | (Skolem (a,_)) aconv (Skolem (b,_)) = a=b (*arglists must then be equal*) | 
| 215 | | (Free a) aconv (Free b) = a=b | |
| 216 | | (Var(ref(Some t))) aconv u = t aconv u | |
| 4065 | 217 | | t aconv (Var(ref(Some u))) = t aconv u | 
| 2854 | 218 | | (Var v) aconv (Var w) = v=w (*both Vars are un-assigned*) | 
| 219 | | (Bound i) aconv (Bound j) = i=j | |
| 220 | | (Abs(_,t)) aconv (Abs(_,u)) = t aconv u | |
| 221 | | (f$t) aconv (g$u) = (f aconv g) andalso (t aconv u) | |
| 222 | | _ aconv _ = false; | |
| 223 | ||
| 224 | ||
| 225 | fun mem_term (_, []) = false | |
| 226 | | mem_term (t, t'::ts) = t aconv t' orelse mem_term(t,ts); | |
| 227 | ||
| 228 | fun ins_term(t,ts) = if mem_term(t,ts) then ts else t :: ts; | |
| 229 | ||
| 230 | fun mem_var (v: term option ref, []) = false | |
| 231 | | mem_var (v, v'::vs) = v=v' orelse mem_var(v,vs); | |
| 232 | ||
| 233 | fun ins_var(v,vs) = if mem_var(v,vs) then vs else v :: vs; | |
| 234 | ||
| 235 | ||
| 236 | (** Vars **) | |
| 237 | ||
| 238 | (*Accumulates the Vars in the term, suppressing duplicates*) | |
| 239 | fun add_term_vars (Skolem(a,args), vars) = add_vars_vars(args,vars) | |
| 240 | | add_term_vars (Var (v as ref None), vars) = ins_var (v, vars) | |
| 241 | | add_term_vars (Var (ref (Some u)), vars) = add_term_vars(u,vars) | |
| 4065 | 242 | | add_term_vars (TConst (_,t), vars) = add_term_vars(t,vars) | 
| 2854 | 243 | | add_term_vars (Abs (_,body), vars) = add_term_vars(body,vars) | 
| 244 | | add_term_vars (f$t, vars) = add_term_vars (f, add_term_vars(t, vars)) | |
| 245 | | add_term_vars (_, vars) = vars | |
| 246 | (*Term list version. [The fold functionals are slow]*) | |
| 247 | and add_terms_vars ([], vars) = vars | |
| 248 | | add_terms_vars (t::ts, vars) = add_terms_vars (ts, add_term_vars(t,vars)) | |
| 249 | (*Var list version.*) | |
| 250 | and add_vars_vars ([], vars) = vars | |
| 251 | | add_vars_vars (ref (Some u) :: vs, vars) = | |
| 252 | add_vars_vars (vs, add_term_vars(u,vars)) | |
| 253 | | add_vars_vars (v::vs, vars) = (*v must be a ref None*) | |
| 254 | add_vars_vars (vs, ins_var (v, vars)); | |
| 255 | ||
| 256 | ||
| 257 | (*Chase assignments in "vars"; return a list of unassigned variables*) | |
| 258 | fun vars_in_vars vars = add_vars_vars(vars,[]); | |
| 259 | ||
| 260 | ||
| 261 | ||
| 262 | (*increment a term's non-local bound variables | |
| 263 | inc is increment for bound variables | |
| 264 | lev is level at which a bound variable is considered 'loose'*) | |
| 265 | fun incr_bv (inc, lev, u as Bound i) = if i>=lev then Bound(i+inc) else u | |
| 266 | | incr_bv (inc, lev, Abs(a,body)) = Abs(a, incr_bv(inc,lev+1,body)) | |
| 267 | | incr_bv (inc, lev, f$t) = incr_bv(inc,lev,f) $ incr_bv(inc,lev,t) | |
| 268 | | incr_bv (inc, lev, u) = u; | |
| 269 | ||
| 270 | fun incr_boundvars 0 t = t | |
| 271 | | incr_boundvars inc t = incr_bv(inc,0,t); | |
| 272 | ||
| 273 | ||
| 274 | (*Accumulate all 'loose' bound vars referring to level 'lev' or beyond. | |
| 275 | (Bound 0) is loose at level 0 *) | |
| 276 | fun add_loose_bnos (Bound i, lev, js) = if i<lev then js | |
| 277 | else (i-lev) ins_int js | |
| 278 | | add_loose_bnos (Abs (_,t), lev, js) = add_loose_bnos (t, lev+1, js) | |
| 279 | | add_loose_bnos (f$t, lev, js) = | |
| 280 | add_loose_bnos (f, lev, add_loose_bnos (t, lev, js)) | |
| 281 | | add_loose_bnos (_, _, js) = js; | |
| 282 | ||
| 283 | fun loose_bnos t = add_loose_bnos (t, 0, []); | |
| 284 | ||
| 285 | fun subst_bound (arg, t) : term = | |
| 286 | let fun subst (t as Bound i, lev) = | |
| 287 | if i<lev then t (*var is locally bound*) | |
| 288 | else if i=lev then incr_boundvars lev arg | |
| 289 | else Bound(i-1) (*loose: change it*) | |
| 290 | | subst (Abs(a,body), lev) = Abs(a, subst(body,lev+1)) | |
| 291 | | subst (f$t, lev) = subst(f,lev) $ subst(t,lev) | |
| 292 | | subst (t,lev) = t | |
| 293 | in subst (t,0) end; | |
| 294 | ||
| 295 | ||
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changeset | 296 | (*Normalize...but not the bodies of ABSTRACTIONS*) | 
| 2854 | 297 | fun norm t = case t of | 
| 2952 | 298 | Skolem (a,args) => Skolem(a, vars_in_vars args) | 
| 4065 | 299 | | TConst(a,aT) => TConst(a, norm aT) | 
| 2854 | 300 | | (Var (ref None)) => t | 
| 301 | | (Var (ref (Some u))) => norm u | |
| 302 | | (f $ u) => (case norm f of | |
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changeset | 303 | Abs(_,body) => norm (subst_bound (u, body)) | 
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changeset | 304 | | nf => nf $ norm u) | 
| 2854 | 305 | | _ => t; | 
| 306 | ||
| 307 | ||
| 308 | (*Weak (one-level) normalize for use in unification*) | |
| 309 | fun wkNormAux t = case t of | |
| 310 | (Var v) => (case !v of | |
| 311 | Some u => wkNorm u | |
| 312 | | None => t) | |
| 313 | | (f $ u) => (case wkNormAux f of | |
| 314 | Abs(_,body) => wkNorm (subst_bound (u, body)) | |
| 315 | | nf => nf $ u) | |
| 2952 | 316 | | Abs (a,body) => (*eta-contract if possible*) | 
| 317 | (case wkNormAux body of | |
| 318 | nb as (f $ t) => | |
| 319 | if (0 mem_int loose_bnos f) orelse wkNorm t <> Bound 0 | |
| 320 | then Abs(a,nb) | |
| 321 | else wkNorm (incr_boundvars ~1 f) | |
| 3092 | 322 | | nb => Abs (a,nb)) | 
| 2854 | 323 | | _ => t | 
| 324 | and wkNorm t = case head_of t of | |
| 325 | Const _ => t | |
| 4065 | 326 | | TConst _ => t | 
| 2854 | 327 | | Skolem(a,args) => t | 
| 328 | | Free _ => t | |
| 329 | | _ => wkNormAux t; | |
| 330 | ||
| 331 | ||
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changeset | 332 | (*Does variable v occur in u? For unification. | 
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changeset | 333 | Dangling bound vars are also forbidden.*) | 
| 2854 | 334 | fun varOccur v = | 
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changeset | 335 | let fun occL lev [] = false (*same as (exists occ), but faster*) | 
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changeset | 336 | | occL lev (u::us) = occ lev u orelse occL lev us | 
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changeset | 337 | and occ lev (Var w) = | 
| 2854 | 338 | v=w orelse | 
| 339 | (case !w of None => false | |
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changeset | 340 | | Some u => occ lev u) | 
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changeset | 341 | | occ lev (Skolem(_,args)) = occL lev (map Var args) | 
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changeset | 342 | (*ignore TConst, since term variables can't occur in types (?) *) | 
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changeset | 343 | | occ lev (Bound i) = lev <= i | 
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changeset | 344 | | occ lev (Abs(_,u)) = occ (lev+1) u | 
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changeset | 345 | | occ lev (f$u) = occ lev u orelse occ lev f | 
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changeset | 346 | | occ lev _ = false; | 
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changeset | 347 | in occ 0 end; | 
| 2854 | 348 | |
| 349 | exception UNIFY; | |
| 350 | ||
| 351 | val trail = ref [] : term option ref list ref; | |
| 352 | val ntrail = ref 0; | |
| 353 | ||
| 354 | ||
| 355 | (*Restore the trail to some previous state: for backtracking*) | |
| 356 | fun clearTo n = | |
| 3083 | 357 | while !ntrail<>n do | 
| 2854 | 358 | (hd(!trail) := None; | 
| 359 | trail := tl (!trail); | |
| 360 | ntrail := !ntrail - 1); | |
| 361 | ||
| 362 | ||
| 363 | (*First-order unification with bound variables. | |
| 364 | "vars" is a list of variables local to the rule and NOT to be put | |
| 365 | on the trail (no point in doing so) | |
| 366 | *) | |
| 4065 | 367 | fun unify(vars,t,u) = | 
| 2854 | 368 | let val n = !ntrail | 
| 369 | fun update (t as Var v, u) = | |
| 370 | if t aconv u then () | |
| 371 | else if varOccur v u then raise UNIFY | |
| 372 | else if mem_var(v, vars) then v := Some u | |
| 373 | else (*avoid updating Vars in the branch if possible!*) | |
| 374 | if is_Var u andalso mem_var(dest_Var u, vars) | |
| 375 | then dest_Var u := Some t | |
| 376 | else (v := Some u; | |
| 377 | trail := v :: !trail; ntrail := !ntrail + 1) | |
| 378 | fun unifyAux (t,u) = | |
| 379 | case (wkNorm t, wkNorm u) of | |
| 380 | (nt as Var v, nu) => update(nt,nu) | |
| 381 | | (nu, nt as Var v) => update(nt,nu) | |
| 4065 | 382 | | (TConst(a,at), TConst(b,bt)) => if a=b then unifyAux(at,bt) | 
| 383 | else raise UNIFY | |
| 2854 | 384 | | (Abs(_,t'), Abs(_,u')) => unifyAux(t',u') | 
| 385 | (*NB: can yield unifiers having dangling Bound vars!*) | |
| 386 | | (f$t', g$u') => (unifyAux(f,g); unifyAux(t',u')) | |
| 387 | | (nt, nu) => if nt aconv nu then () else raise UNIFY | |
| 3083 | 388 | in (unifyAux(t,u); true) handle UNIFY => (clearTo n; false) | 
| 2854 | 389 | end; | 
| 390 | ||
| 391 | ||
| 4065 | 392 | (*Convert from "real" terms to prototerms; eta-contract | 
| 393 | Code is duplicated with fromSubgoal. Correct this?*) | |
| 394 | fun fromTerm t = | |
| 395 | let val alistVar = ref [] | |
| 396 | and alistTVar = ref [] | |
| 397 | fun from (Term.Const aT) = fromConst alistTVar aT | |
| 2854 | 398 | | from (Term.Free (a,_)) = Free a | 
| 399 | | from (Term.Bound i) = Bound i | |
| 400 | | from (Term.Var (ixn,T)) = | |
| 4065 | 401 | (case (assoc_string_int(!alistVar,ixn)) of | 
| 2854 | 402 | None => let val t' = Var(ref None) | 
| 4065 | 403 | in alistVar := (ixn, t') :: !alistVar; t' | 
| 2854 | 404 | end | 
| 4065 | 405 | | Some v => v) | 
| 2854 | 406 | | from (Term.Abs (a,_,u)) = | 
| 407 | (case from u of | |
| 408 | u' as (f $ Bound 0) => | |
| 409 | if (0 mem_int loose_bnos f) then Abs(a,u') | |
| 410 | else incr_boundvars ~1 f | |
| 411 | | u' => Abs(a,u')) | |
| 412 | | from (Term.$ (f,u)) = from f $ from u | |
| 413 | in from t end; | |
| 414 | ||
| 4065 | 415 | (*A debugging function: replaces all Vars by dummy Frees for visual inspection | 
| 416 | of whether they are distinct. Function revert undoes the assignments.*) | |
| 417 | fun instVars t = | |
| 12902 | 418 | let val name = ref "a" | 
| 4065 | 419 | val updated = ref [] | 
| 420 | fun inst (TConst(a,t)) = inst t | |
| 421 | | inst (Var(v as ref None)) = (updated := v :: (!updated); | |
| 422 | 				       v       := Some (Free ("?" ^ !name)); 
 | |
| 12902 | 423 | name := Symbol.bump_string (!name)) | 
| 4065 | 424 | | inst (Abs(a,t)) = inst t | 
| 425 | | inst (f $ u) = (inst f; inst u) | |
| 426 | | inst _ = () | |
| 427 | fun revert() = seq (fn v => v:=None) (!updated) | |
| 428 | in inst t; revert end; | |
| 429 | ||
| 430 | ||
| 2854 | 431 | (* A1==>...An==>B goes to [A1,...,An], where B is not an implication *) | 
| 432 | fun strip_imp_prems (Const"==>" $ (Const"Trueprop" $ A) $ B) = | |
| 433 | A :: strip_imp_prems B | |
| 434 | | strip_imp_prems (Const"==>" $ A $ B) = A :: strip_imp_prems B | |
| 435 | | strip_imp_prems _ = []; | |
| 436 | ||
| 437 | (* A1==>...An==>B goes to B, where B is not an implication *) | |
| 438 | fun strip_imp_concl (Const"==>" $ A $ B) = strip_imp_concl B | |
| 439 | | strip_imp_concl (Const"Trueprop" $ A) = A | |
| 440 | | strip_imp_concl A = A : term; | |
| 441 | ||
| 442 | ||
| 443 | (*** Conversion of Elimination Rules to Tableau Operations ***) | |
| 444 | ||
| 9170 | 445 | exception ElimBadConcl and ElimBadPrem; | 
| 446 | ||
| 447 | (*The conclusion becomes the goal/negated assumption *False*: delete it! | |
| 448 | If we don't find it then the premise is ill-formed and could cause | |
| 449 | PROOF FAILED*) | |
| 450 | fun delete_concl [] = raise ElimBadPrem | |
| 451 | | delete_concl (Const "*Goal*" $ (Var (ref (Some (Const"*False*")))) :: Ps) = | |
| 452 | Ps | |
| 453 | | delete_concl (Const "Not" $ (Var (ref (Some (Const"*False*")))) :: Ps) = | |
| 454 | Ps | |
| 455 | | delete_concl (P::Ps) = P :: delete_concl Ps; | |
| 2854 | 456 | |
| 457 | fun skoPrem vars (Const "all" $ Abs (_, P)) = | |
| 458 | skoPrem vars (subst_bound (Skolem (gensym "S_", vars), P)) | |
| 459 | | skoPrem vars P = P; | |
| 460 | ||
| 461 | fun convertPrem t = | |
| 9170 | 462 | delete_concl (mkGoal (strip_imp_concl t) :: strip_imp_prems t); | 
| 2854 | 463 | |
| 464 | (*Expects elimination rules to have a formula variable as conclusion*) | |
| 465 | fun convertRule vars t = | |
| 466 | let val (P::Ps) = strip_imp_prems t | |
| 467 | val Var v = strip_imp_concl t | |
| 468 | in v := Some (Const"*False*"); | |
| 469 | (P, map (convertPrem o skoPrem vars) Ps) | |
| 9170 | 470 | end | 
| 471 | handle Bind => raise ElimBadConcl; | |
| 2854 | 472 | |
| 473 | ||
| 474 | (*Like dup_elim, but puts the duplicated major premise FIRST*) | |
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changeset | 475 | fun rev_dup_elim th = th RSN (2, revcut_rl) |> assumption 2 |> Seq.hd; | 
| 2854 | 476 | |
| 477 | ||
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changeset | 478 | (*Rotate the assumptions in all new subgoals for the LIFO discipline*) | 
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changeset | 479 | local | 
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changeset | 480 | (*Count new hyps so that they can be rotated*) | 
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changeset | 481 | fun nNewHyps [] = 0 | 
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changeset | 482 | | nNewHyps (Const "*Goal*" $ _ :: Ps) = nNewHyps Ps | 
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changeset | 483 | | nNewHyps (P::Ps) = 1 + nNewHyps Ps; | 
| 2854 | 484 | |
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changeset | 485 | fun rot_tac [] i st = Seq.single st | 
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changeset | 486 | | rot_tac (0::ks) i st = rot_tac ks (i+1) st | 
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changeset | 487 | | rot_tac (k::ks) i st = rot_tac ks (i+1) (rotate_rule (~k) i st); | 
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changeset | 488 | in | 
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changeset | 489 | fun rot_subgoals_tac (rot, rl) = | 
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changeset | 490 | rot_tac (if rot then map nNewHyps rl else []) | 
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changeset | 491 | end; | 
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changeset | 492 | |
| 2854 | 493 | |
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changeset | 494 | fun TRACE rl tac st i = if !trace then (prth rl; tac st i) else tac st i; | 
| 2854 | 495 | |
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changeset | 496 | (*Resolution/matching tactics: if upd then the proof state may be updated. | 
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changeset | 497 | Matching makes the tactics more deterministic in the presence of Vars.*) | 
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changeset | 498 | fun emtac upd rl = TRACE rl (if upd then etac rl else ematch_tac [rl]); | 
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changeset | 499 | fun rmtac upd rl = TRACE rl (if upd then rtac rl else match_tac [rl]); | 
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changeset | 500 | |
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changeset | 501 | (*Tableau rule from elimination rule. | 
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changeset | 502 | Flag "upd" says that the inference updated the branch. | 
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changeset | 503 | Flag "dup" requests duplication of the affected formula.*) | 
| 2854 | 504 | fun fromRule vars rl = | 
| 4065 | 505 | let val trl = rl |> rep_thm |> #prop |> fromTerm |> convertRule vars | 
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changeset | 506 | fun tac (upd, dup,rot) i = | 
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changeset | 507 | emtac upd (if dup then rev_dup_elim rl else rl) i | 
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changeset | 508 | THEN | 
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changeset | 509 | rot_subgoals_tac (rot, #2 trl) i | 
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changeset | 510 | in Option.SOME (trl, tac) end | 
| 9170 | 511 | handle ElimBadPrem => (*reject: prems don't preserve conclusion*) | 
| 512 | 	    (warning("Ignoring weak elimination rule\n" ^ string_of_thm rl);
 | |
| 513 | Option.NONE) | |
| 514 | | ElimBadConcl => (*ignore: conclusion is not just a variable*) | |
| 515 | 	   (if !trace then (warning("Ignoring ill-formed elimination rule:\n" ^
 | |
| 516 | "conclusion should be a variable\n" ^ string_of_thm rl)) | |
| 517 | else (); | |
| 518 | Option.NONE); | |
| 2854 | 519 | |
| 520 | ||
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changeset | 521 | (*** Conversion of Introduction Rules ***) | 
| 2854 | 522 | |
| 523 | fun convertIntrPrem t = mkGoal (strip_imp_concl t) :: strip_imp_prems t; | |
| 524 | ||
| 525 | fun convertIntrRule vars t = | |
| 526 | let val Ps = strip_imp_prems t | |
| 527 | val P = strip_imp_concl t | |
| 528 | in (mkGoal P, map (convertIntrPrem o skoPrem vars) Ps) | |
| 529 | end; | |
| 530 | ||
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changeset | 531 | (*Tableau rule from introduction rule. | 
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changeset | 533 | Flag "dup" requests duplication of the affected formula. | 
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changeset | 534 | Since haz rules are now delayed, "dup" is always FALSE for | 
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changeset | 535 | introduction rules.*) | 
| 2854 | 536 | fun fromIntrRule vars rl = | 
| 4065 | 537 | let val trl = rl |> rep_thm |> #prop |> fromTerm |> convertIntrRule vars | 
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changeset | 538 | fun tac (upd,dup,rot) i = | 
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changeset | 539 | rmtac upd (if dup then Data.dup_intr rl else rl) i | 
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changeset | 540 | THEN | 
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changeset | 541 | rot_subgoals_tac (rot, #2 trl) i | 
| 2854 | 542 | in (trl, tac) end; | 
| 543 | ||
| 544 | ||
| 3030 | 545 | val dummyVar = Term.Var (("etc",0), dummyT);
 | 
| 2854 | 546 | |
| 547 | (*Convert from prototerms to ordinary terms with dummy types | |
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changeset | 548 | Ignore abstractions; identify all Vars; STOP at given depth*) | 
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changeset | 549 | fun toTerm 0 _ = dummyVar | 
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changeset | 550 | | toTerm d (Const a) = Term.Const (a,dummyT) | 
| 4065 | 551 | | toTerm d (TConst(a,_)) = Term.Const (a,dummyT) (*no need to convert type*) | 
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changeset | 552 | | toTerm d (Skolem(a,_)) = Term.Const (a,dummyT) | 
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changeset | 553 | | toTerm d (Free a) = Term.Free (a,dummyT) | 
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changeset | 554 | | toTerm d (Bound i) = Term.Bound i | 
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changeset | 555 | | toTerm d (Var _) = dummyVar | 
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changeset | 556 | | toTerm d (Abs(a,_)) = dummyVar | 
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changeset | 557 | | toTerm d (f $ u) = Term.$ (toTerm d f, toTerm (d-1) u); | 
| 2854 | 558 | |
| 559 | ||
| 560 | fun netMkRules P vars (nps: netpair list) = | |
| 561 | case P of | |
| 562 | (Const "*Goal*" $ G) => | |
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changeset | 563 | let val pG = mk_tprop (toTerm 2 G) | 
| 2854 | 564 | val intrs = List.concat | 
| 565 | (map (fn (inet,_) => Net.unify_term inet pG) | |
| 566 | nps) | |
| 11783 | 567 | in map (fromIntrRule vars o #2) (Tactic.orderlist intrs) end | 
| 2854 | 568 | | _ => | 
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changeset | 569 | let val pP = mk_tprop (toTerm 3 P) | 
| 2854 | 570 | val elims = List.concat | 
| 571 | (map (fn (_,enet) => Net.unify_term enet pP) | |
| 572 | nps) | |
| 11783 | 573 | in List.mapPartial (fromRule vars o #2) (Tactic.orderlist elims) end; | 
| 2854 | 574 | |
| 3092 | 575 | |
| 576 | (*Pending formulae carry md (may duplicate) flags*) | |
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changeset | 577 | type branch = | 
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changeset | 578 |     {pairs: ((term*bool) list *	(*safe formulae on this level*)
 | 
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changeset | 579 | (term*bool) list) list, (*haz formulae on this level*) | 
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changeset | 580 | lits: term list, (*literals: irreducible formulae*) | 
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changeset | 581 | vars: term option ref list, (*variables occurring in branch*) | 
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changeset | 582 | lim: int}; (*resource limit*) | 
| 3092 | 583 | |
| 584 | val fullTrace = ref[] : branch list list ref; | |
| 585 | ||
| 586 | (*Normalize a branch--for tracing*) | |
| 587 | fun norm2 (G,md) = (norm G, md); | |
| 588 | ||
| 589 | fun normLev (Gs,Hs) = (map norm2 Gs, map norm2 Hs); | |
| 590 | ||
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changeset | 591 | fun normBr {pairs, lits, vars, lim} =
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changeset | 592 |      {pairs = map normLev pairs, 
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changeset | 593 | lits = map norm lits, | 
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changeset | 594 | vars = vars, | 
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changeset | 595 | lim = lim}; | 
| 3092 | 596 | |
| 597 | ||
| 4065 | 598 | val dummyTVar = Term.TVar(("a",0), []);
 | 
| 3092 | 599 | val dummyVar2 = Term.Var(("var",0), dummyT);
 | 
| 600 | ||
| 4065 | 601 | (*convert Blast_tac's type representation to real types for tracing*) | 
| 602 | fun showType (Free a) = Term.TFree (a,[]) | |
| 603 | | showType (Var _) = dummyTVar | |
| 604 | | showType t = | |
| 605 | (case strip_comb t of | |
| 606 | (Const a, us) => Term.Type(a, map showType us) | |
| 607 | | _ => dummyT); | |
| 608 | ||
| 609 | (*Display top-level overloading if any*) | |
| 610 | fun topType (TConst(a,t)) = Some (showType t) | |
| 611 | | topType (Abs(a,t)) = topType t | |
| 612 | | topType (f $ u) = (case topType f of | |
| 613 | None => topType u | |
| 614 | | some => some) | |
| 615 | | topType _ = None; | |
| 616 | ||
| 617 | ||
| 3092 | 618 | (*Convert from prototerms to ordinary terms with dummy types for tracing*) | 
| 619 | fun showTerm d (Const a) = Term.Const (a,dummyT) | |
| 4065 | 620 | | showTerm d (TConst(a,_)) = Term.Const (a,dummyT) | 
| 3092 | 621 | | showTerm d (Skolem(a,_)) = Term.Const (a,dummyT) | 
| 622 | | showTerm d (Free a) = Term.Free (a,dummyT) | |
| 623 | | showTerm d (Bound i) = Term.Bound i | |
| 3101 
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changeset | 624 | | showTerm d (Var(ref(Some u))) = showTerm d u | 
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changeset | 625 | | showTerm d (Var(ref None)) = dummyVar2 | 
| 3092 | 626 | | showTerm d (Abs(a,t)) = if d=0 then dummyVar | 
| 627 | else Term.Abs(a, dummyT, showTerm (d-1) t) | |
| 628 | | showTerm d (f $ u) = if d=0 then dummyVar | |
| 629 | else Term.$ (showTerm d f, showTerm (d-1) u); | |
| 630 | ||
| 4065 | 631 | fun string_of sign d t = Sign.string_of_term sign (showTerm d t); | 
| 3092 | 632 | |
| 4065 | 633 | fun traceTerm sign t = | 
| 634 | let val t' = norm t | |
| 635 | val stm = string_of sign 8 t' | |
| 636 | in | |
| 637 | case topType t' of | |
| 638 | None => stm (*no type to attach*) | |
| 639 | | Some T => stm ^ "\t:: " ^ Sign.string_of_typ sign T | |
| 640 | end; | |
| 3092 | 641 | |
| 642 | ||
| 5961 | 643 | val prs = std_output; | 
| 644 | ||
| 3092 | 645 | (*Print tracing information at each iteration of prover*) | 
| 646 | fun tracing sign brs = | |
| 647 | let fun printPairs (((G,_)::_,_)::_) = prs(traceTerm sign G) | |
| 648 | | printPairs (([],(H,_)::_)::_) = prs(traceTerm sign H ^ "\t (Unsafe)") | |
| 649 | | printPairs _ = () | |
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changeset | 650 |       fun printBrs (brs0 as {pairs, lits, lim, ...} :: brs) =
 | 
| 3092 | 651 | (fullTrace := brs0 :: !fullTrace; | 
| 652 | seq (fn _ => prs "+") brs; | |
| 653 | 	     prs (" [" ^ Int.toString lim ^ "] ");
 | |
| 654 | printPairs pairs; | |
| 655 | writeln"") | |
| 656 | in if !trace then printBrs (map normBr brs) else () | |
| 657 | end; | |
| 658 | ||
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changeset | 659 | fun traceMsg s = if !trace then writeln s else (); | 
| 4065 | 660 | |
| 3092 | 661 | (*Tracing: variables updated in the last branch operation?*) | 
| 4065 | 662 | fun traceVars sign ntrl = | 
| 663 | if !trace then | |
| 664 | (case !ntrail-ntrl of | |
| 665 | 0 => () | |
| 666 | | 1 => prs"\t1 variable UPDATED:" | |
| 667 | 	  | n => prs("\t" ^ Int.toString n ^ " variables UPDATED:");
 | |
| 668 | (*display the instantiations themselves, though no variable names*) | |
| 669 |        seq (fn v => prs("   " ^ string_of sign 4 (the (!v))))
 | |
| 670 | (List.take(!trail, !ntrail-ntrl)); | |
| 671 | writeln"") | |
| 3092 | 672 | else (); | 
| 673 | ||
| 674 | (*Tracing: how many new branches are created?*) | |
| 675 | fun traceNew prems = | |
| 676 | if !trace then | |
| 677 | case length prems of | |
| 678 | 0 => prs"branch closed by rule" | |
| 679 | | 1 => prs"branch extended (1 new subgoal)" | |
| 680 | 	  | n => prs("branch split: "^ Int.toString n ^ " new subgoals")
 | |
| 681 | else (); | |
| 682 | ||
| 683 | ||
| 684 | ||
| 2854 | 685 | (*** Code for handling equality: naive substitution, like hyp_subst_tac ***) | 
| 686 | ||
| 687 | (*Replace the ATOMIC term "old" by "new" in t*) | |
| 688 | fun subst_atomic (old,new) t = | |
| 689 | let fun subst (Var(ref(Some u))) = subst u | |
| 690 | | subst (Abs(a,body)) = Abs(a, subst body) | |
| 691 | | subst (f$t) = subst f $ subst t | |
| 692 | | subst t = if t aconv old then new else t | |
| 693 | in subst t end; | |
| 694 | ||
| 695 | (*Eta-contract a term from outside: just enough to reduce it to an atom*) | |
| 696 | fun eta_contract_atom (t0 as Abs(a, body)) = | |
| 697 | (case eta_contract2 body of | |
| 698 | f $ Bound 0 => if (0 mem_int loose_bnos f) then t0 | |
| 699 | else eta_contract_atom (incr_boundvars ~1 f) | |
| 700 | | _ => t0) | |
| 701 | | eta_contract_atom t = t | |
| 702 | and eta_contract2 (f$t) = f $ eta_contract_atom t | |
| 703 | | eta_contract2 t = eta_contract_atom t; | |
| 704 | ||
| 705 | ||
| 706 | (*When can we safely delete the equality? | |
| 707 | Not if it equates two constants; consider 0=1. | |
| 708 | Not if it resembles x=t[x], since substitution does not eliminate x. | |
| 709 | Not if it resembles ?x=0; another goal could instantiate ?x to Suc(i) | |
| 710 | Prefer to eliminate Bound variables if possible. | |
| 711 | Result: true = use as is, false = reorient first *) | |
| 712 | ||
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changeset | 713 | (*Can t occur in u? For substitution. | 
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changeset | 714 | Does NOT examine the args of Skolem terms: substitution does not affect them. | 
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changeset | 715 | REFLEXIVE because hyp_subst_tac fails on x=x.*) | 
| 2854 | 716 | fun substOccur t = | 
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changeset | 717 | let (*NO vars are permitted in u except the arguments of t, if it is | 
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changeset | 718 | a Skolem term. This ensures that no equations are deleted that could | 
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changeset | 719 | be instantiated to a cycle. For example, x=?a is rejected because ?a | 
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changeset | 720 | could be instantiated to Suc(x).*) | 
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changeset | 721 | val vars = case t of | 
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changeset | 722 | Skolem(_,vars) => vars | 
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changeset | 723 | | _ => [] | 
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changeset | 724 | fun occEq u = (t aconv u) orelse occ u | 
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changeset | 725 | and occ (Var(ref(Some u))) = occEq u | 
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changeset | 726 | | occ (Var v) = not (mem_var (v, vars)) | 
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changeset | 727 | | occ (Abs(_,u)) = occEq u | 
| 2854 | 728 | | occ (f$u) = occEq u orelse occEq f | 
| 729 | | occ (_) = false; | |
| 730 | in occEq end; | |
| 731 | ||
| 3092 | 732 | exception DEST_EQ; | 
| 733 | ||
| 734 | (*Take apart an equality (plain or overloaded). NO constant Trueprop*) | |
| 735 | fun dest_eq (Const "op =" $ t $ u) = | |
| 736 | (eta_contract_atom t, eta_contract_atom u) | |
| 4065 | 737 |   | dest_eq (TConst("op =",_)  $ t $ u) = 
 | 
| 3092 | 738 | (eta_contract_atom t, eta_contract_atom u) | 
| 739 | | dest_eq _ = raise DEST_EQ; | |
| 740 | ||
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changeset | 741 | (*Reject the equality if u occurs in (or equals!) t*) | 
| 2854 | 742 | fun check (t,u,v) = if substOccur t u then raise DEST_EQ else v; | 
| 743 | ||
| 744 | (*IF the goal is an equality with a substitutable variable | |
| 745 | THEN orient that equality ELSE raise exception DEST_EQ*) | |
| 3092 | 746 | fun orientGoal (t,u) = case (t,u) of | 
| 2854 | 747 | (Skolem _, _) => check(t,u,(t,u)) (*eliminates t*) | 
| 748 | | (_, Skolem _) => check(u,t,(u,t)) (*eliminates u*) | |
| 749 | | (Free _, _) => check(t,u,(t,u)) (*eliminates t*) | |
| 750 | | (_, Free _) => check(u,t,(u,t)) (*eliminates u*) | |
| 751 | | _ => raise DEST_EQ; | |
| 752 | ||
| 2894 | 753 | (*Substitute through the branch if an equality goal (else raise DEST_EQ). | 
| 754 | Moves affected literals back into the branch, but it is not clear where | |
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changeset | 755 | they should go: this could make proofs fail.*) | 
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changeset | 756 | fun equalSubst sign (G, {pairs, lits, vars, lim}) = 
 | 
| 3092 | 757 | let val (t,u) = orientGoal(dest_eq G) | 
| 758 | val subst = subst_atomic (t,u) | |
| 2854 | 759 | fun subst2(G,md) = (subst G, md) | 
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changeset | 760 | (*substitute throughout list; extract affected formulae*) | 
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changeset | 761 | fun subForm ((G,md), (changed, pairs)) = | 
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changeset | 762 | let val nG = subst G | 
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changeset | 763 | in if nG aconv G then (changed, (G,md)::pairs) | 
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changeset | 764 | else ((nG,md)::changed, pairs) | 
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changeset | 765 | end | 
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changeset | 766 | (*substitute throughout "stack frame"; extract affected formulae*) | 
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changeset | 767 | fun subFrame ((Gs,Hs), (changed, frames)) = | 
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changeset | 768 | let val (changed', Gs') = foldr subForm (Gs, (changed, [])) | 
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changeset | 769 | val (changed'', Hs') = foldr subForm (Hs, (changed', [])) | 
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changeset | 770 | in (changed'', (Gs',Hs')::frames) end | 
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changeset | 771 | (*substitute throughout literals; extract affected ones*) | 
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changeset | 772 | fun subLit (lit, (changed, nlits)) = | 
| 2854 | 773 | let val nlit = subst lit | 
| 4466 
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changeset | 774 | in if nlit aconv lit then (changed, nlit::nlits) | 
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changeset | 775 | else ((nlit,true)::changed, nlits) | 
| 2854 | 776 | end | 
| 4466 
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changeset | 777 | val (changed, lits') = foldr subLit (lits, ([], [])) | 
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changeset | 778 | val (changed', pairs') = foldr subFrame (pairs, (changed, [])) | 
| 3092 | 779 |   in  if !trace then writeln ("Substituting " ^ traceTerm sign u ^
 | 
| 780 | " for " ^ traceTerm sign t ^ " in branch" ) | |
| 781 | else (); | |
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changeset | 782 |       {pairs = (changed',[])::pairs',	(*affected formulas, and others*)
 | 
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changeset | 783 | lits = lits', (*unaffected literals*) | 
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changeset | 784 | vars = vars, | 
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changeset | 785 | lim = lim} | 
| 2854 | 786 | end; | 
| 787 | ||
| 788 | ||
| 789 | exception NEWBRANCHES and CLOSEF; | |
| 790 | ||
| 791 | exception PROVE; | |
| 792 | ||
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changeset | 793 | (*Trying eq_contr_tac first INCREASES the effort, slowing reconstruction*) | 
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changeset | 794 | val contr_tac = ematch_tac [Data.notE] THEN' | 
| 
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changeset | 795 | (eq_assume_tac ORELSE' assume_tac); | 
| 2854 | 796 | |
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changeset | 797 | val eContr_tac = TRACE Data.notE contr_tac; | 
| 2854 | 798 | val eAssume_tac = TRACE asm_rl (eq_assume_tac ORELSE' assume_tac); | 
| 799 | ||
| 800 | (*Try to unify complementary literals and return the corresponding tactic. *) | |
| 3083 | 801 | fun tryClose (Const"*Goal*" $ G, L) = | 
| 4065 | 802 | if unify([],G,L) then Some eAssume_tac else None | 
| 3083 | 803 | | tryClose (G, Const"*Goal*" $ L) = | 
| 4065 | 804 | if unify([],G,L) then Some eAssume_tac else None | 
| 3083 | 805 | | tryClose (Const"Not" $ G, L) = | 
| 4065 | 806 | if unify([],G,L) then Some eContr_tac else None | 
| 3083 | 807 | | tryClose (G, Const"Not" $ L) = | 
| 4065 | 808 | if unify([],G,L) then Some eContr_tac else None | 
| 3083 | 809 | | tryClose _ = None; | 
| 2854 | 810 | |
| 811 | ||
| 812 | (*Were there Skolem terms in the premise? Must NOT chase Vars*) | |
| 813 | fun hasSkolem (Skolem _) = true | |
| 814 | | hasSkolem (Abs (_,body)) = hasSkolem body | |
| 815 | | hasSkolem (f$t) = hasSkolem f orelse hasSkolem t | |
| 816 | | hasSkolem _ = false; | |
| 817 | ||
| 818 | (*Attach the right "may duplicate" flag to new formulae: if they contain | |
| 819 | Skolem terms then allow duplication.*) | |
| 820 | fun joinMd md [] = [] | |
| 821 | | joinMd md (G::Gs) = (G, hasSkolem G orelse md) :: joinMd md Gs; | |
| 822 | ||
| 2894 | 823 | (*Convert a Goal to an ordinary Not. Used also in dup_intr, where a goal like | 
| 824 | Ex(P) is duplicated as the assumption ~Ex(P). *) | |
| 825 | fun negOfGoal (Const"*Goal*" $ G) = negate G | |
| 826 | | negOfGoal G = G; | |
| 827 | ||
| 828 | fun negOfGoal2 (G,md) = (negOfGoal G, md); | |
| 829 | ||
| 830 | (*Converts all Goals to Nots in the safe parts of a branch. They could | |
| 831 | have been moved there from the literals list after substitution (equalSubst). | |
| 832 | There can be at most one--this function could be made more efficient.*) | |
| 833 | fun negOfGoals pairs = map (fn (Gs,haz) => (map negOfGoal2 Gs, haz)) pairs; | |
| 834 | ||
| 835 | (*Tactic. Convert *Goal* to negated assumption in FIRST position*) | |
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changeset | 836 | fun negOfGoal_tac i = TRACE Data.ccontr (rtac Data.ccontr) i THEN | 
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changeset | 837 | rotate_tac ~1 i; | 
| 2894 | 838 | |
| 2854 | 839 | |
| 840 | (** Backtracking and Pruning **) | |
| 841 | ||
| 842 | (*clashVar vars (n,trail) determines whether any of the last n elements | |
| 843 | of "trail" occur in "vars" OR in their instantiations*) | |
| 844 | fun clashVar [] = (fn _ => false) | |
| 845 | | clashVar vars = | |
| 846 | let fun clash (0, _) = false | |
| 847 | | clash (_, []) = false | |
| 848 | | clash (n, v::vs) = exists (varOccur v) vars orelse clash(n-1,vs) | |
| 849 | in clash end; | |
| 850 | ||
| 851 | ||
| 852 | (*nbrs = # of branches just prior to closing this one. Delete choice points | |
| 853 | for goals proved by the latest inference, provided NO variables in the | |
| 854 | next branch have been updated.*) | |
| 855 | fun prune (1, nxtVars, choices) = choices (*DON'T prune at very end: allow | |
| 856 | backtracking over bad proofs*) | |
| 857 | | prune (nbrs, nxtVars, choices) = | |
| 858 | let fun traceIt last = | |
| 859 | let val ll = length last | |
| 860 | and lc = length choices | |
| 861 | in if !trace andalso ll<lc then | |
| 3083 | 862 | 		    (writeln("Pruning " ^ Int.toString(lc-ll) ^ " levels"); 
 | 
| 2854 | 863 | last) | 
| 864 | else last | |
| 865 | end | |
| 866 | fun pruneAux (last, _, _, []) = last | |
| 3083 | 867 | | pruneAux (last, ntrl, trl, (ntrl',nbrs',exn) :: choices) = | 
| 2854 | 868 | if nbrs' < nbrs | 
| 869 | then last (*don't backtrack beyond first solution of goal*) | |
| 870 | else if nbrs' > nbrs then pruneAux (last, ntrl, trl, choices) | |
| 871 | else (* nbrs'=nbrs *) | |
| 872 | if clashVar nxtVars (ntrl-ntrl', trl) then last | |
| 873 | else (*no clashes: can go back at least this far!*) | |
| 874 | pruneAux(choices, ntrl', List.drop(trl, ntrl-ntrl'), | |
| 875 | choices) | |
| 876 | in traceIt (pruneAux (choices, !ntrail, !trail, choices)) end; | |
| 877 | ||
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changeset | 878 | fun nextVars ({pairs, lits, vars, lim} :: _) = map Var vars
 | 
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changeset | 879 | | nextVars [] = []; | 
| 2854 | 880 | |
| 3083 | 881 | fun backtrack (choices as (ntrl, nbrs, exn)::_) = | 
| 882 |       (if !trace then (writeln ("Backtracking; now there are " ^ 
 | |
| 883 | Int.toString nbrs ^ " branches")) | |
| 884 | else (); | |
| 885 | raise exn) | |
| 886 | | backtrack _ = raise PROVE; | |
| 2854 | 887 | |
| 2894 | 888 | (*Add the literal G, handling *Goal* and detecting duplicates.*) | 
| 889 | fun addLit (Const "*Goal*" $ G, lits) = | |
| 890 | (*New literal is a *Goal*, so change all other Goals to Nots*) | |
| 2854 | 891 | let fun bad (Const"*Goal*" $ _) = true | 
| 892 | | bad (Const"Not" $ G') = G aconv G' | |
| 893 | | bad _ = false; | |
| 894 | fun change [] = [] | |
| 895 | | change (Const"*Goal*" $ G' :: lits) = | |
| 896 | if G aconv G' then change lits | |
| 897 | else Const"Not" $ G' :: change lits | |
| 898 | | change (Const"Not" $ G' :: lits) = | |
| 899 | if G aconv G' then change lits | |
| 900 | else Const"Not" $ G' :: change lits | |
| 901 | | change (lit::lits) = lit :: change lits | |
| 902 | in | |
| 903 | Const "*Goal*" $ G :: (if exists bad lits then change lits else lits) | |
| 904 | end | |
| 905 | | addLit (G,lits) = ins_term(G, lits) | |
| 906 | ||
| 907 | ||
| 2952 | 908 | (*For calculating the "penalty" to assess on a branching factor of n | 
| 909 | log2 seems a little too severe*) | |
| 3083 | 910 | fun log n = if n<4 then 0 else 1 + log(n div 4); | 
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changeset | 911 | |
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changeset | 912 | |
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changeset | 913 | (*match(t,u) says whether the term u might be an instance of the pattern t | 
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changeset | 914 | Used to detect "recursive" rules such as transitivity*) | 
| 
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changeset | 915 | fun match (Var _) u = true | 
| 4065 | 916 | | match (Const"*Goal*") (Const"Not") = true | 
| 917 | | match (Const"Not") (Const"*Goal*") = true | |
| 918 | | match (Const a) (Const b) = (a=b) | |
| 919 | | match (TConst (a,ta)) (TConst (b,tb)) = a=b andalso match ta tb | |
| 920 | | match (Free a) (Free b) = (a=b) | |
| 921 | | match (Bound i) (Bound j) = (i=j) | |
| 922 | | match (Abs(_,t)) (Abs(_,u)) = match t u | |
| 923 | | match (f$t) (g$u) = match f g andalso match t u | |
| 924 | | match t u = false; | |
| 3021 
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changeset | 925 | |
| 
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changeset | 926 | |
| 4300 | 927 | (*Branches closed: number of branches closed during the search | 
| 928 | Branches tried: number of branches created by splitting (counting from 1)*) | |
| 929 | val nclosed = ref 0 | |
| 930 | and ntried = ref 1; | |
| 931 | ||
| 4391 
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changeset | 932 | fun printStats (b, start, tacs) = | 
| 4323 
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changeset | 933 | if b then | 
| 
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changeset | 934 | writeln (endTiming start ^ " for search. Closed: " | 
| 
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changeset | 935 | ^ Int.toString (!nclosed) ^ | 
| 4391 
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changeset | 936 | " tried: " ^ Int.toString (!ntried) ^ | 
| 
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changeset | 937 | " tactics: " ^ Int.toString (length tacs)) | 
| 4323 
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changeset | 938 | else (); | 
| 
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changeset | 939 | |
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changeset | 940 | |
| 2854 | 941 | (*Tableau prover based on leanTaP. Argument is a list of branches. Each | 
| 942 | branch contains a list of unexpanded formulae, a list of literals, and a | |
| 4391 
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changeset | 943 | bound on unsafe expansions. | 
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changeset | 944 | "start" is CPU time at start, for printing search time | 
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changeset | 945 | *) | 
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changeset | 946 | fun prove (sign, start, cs, brs, cont) = | 
| 4653 | 947 |  let val {safe0_netpair, safep_netpair, haz_netpair, ...} = Data.rep_cs cs
 | 
| 2854 | 948 | val safeList = [safe0_netpair, safep_netpair] | 
| 949 | and hazList = [haz_netpair] | |
| 4065 | 950 | fun prv (tacs, trs, choices, []) = | 
| 4391 
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changeset | 951 | (printStats (!trace orelse !stats, start, tacs); | 
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changeset | 952 | cont (tacs, trs, choices)) (*all branches closed!*) | 
| 2854 | 953 | | prv (tacs, trs, choices, | 
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changeset | 954 | 	      brs0 as {pairs = ((G,md)::br, haz)::pairs, 
 | 
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changeset | 955 | lits, vars, lim} :: brs) = | 
| 3917 | 956 | (*apply a safe rule only (possibly allowing instantiation); | 
| 957 | defer any haz formulae*) | |
| 2854 | 958 | let exception PRV (*backtrack to precisely this recursion!*) | 
| 959 | val ntrl = !ntrail | |
| 960 | val nbrs = length brs0 | |
| 961 | val nxtVars = nextVars brs | |
| 962 | val G = norm G | |
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changeset | 963 | val rules = netMkRules G vars safeList | 
| 2854 | 964 | (*Make a new branch, decrementing "lim" if instantiations occur*) | 
| 2894 | 965 | fun newBr (vars',lim') prems = | 
| 966 | map (fn prem => | |
| 967 | if (exists isGoal prem) | |
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changeset | 968 | 		       then {pairs = ((joinMd md prem, []) :: 
 | 
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changeset | 969 | negOfGoals ((br, haz)::pairs)), | 
| 
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changeset | 970 | lits = map negOfGoal lits, | 
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changeset | 971 | vars = vars', | 
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changeset | 972 | lim = lim'} | 
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changeset | 973 | 		       else {pairs = ((joinMd md prem, []) :: 
 | 
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changeset | 974 | (br, haz) :: pairs), | 
| 
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changeset | 975 | lits = lits, | 
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changeset | 976 | vars = vars', | 
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changeset | 977 | lim = lim'}) | 
| 2854 | 978 | prems @ | 
| 979 | brs | |
| 980 | (*Seek a matching rule. If unifiable then add new premises | |
| 981 | to branch.*) | |
| 982 | fun deeper [] = raise NEWBRANCHES | |
| 983 | | deeper (((P,prems),tac)::grls) = | |
| 4065 | 984 | if unify(add_term_vars(P,[]), P, G) | 
| 3083 | 985 | then (*P comes from the rule; G comes from the branch.*) | 
| 5343 
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changeset | 986 | let val updated = ntrl < !ntrail (*branch updated*) | 
| 
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changeset | 987 | val lim' = if updated | 
| 3083 | 988 | then lim - (1+log(length rules)) | 
| 989 | else lim (*discourage branching updates*) | |
| 990 | val vars = vars_in_vars vars | |
| 991 | val vars' = foldr add_terms_vars (prems, vars) | |
| 992 | val choices' = (ntrl, nbrs, PRV) :: choices | |
| 5463 
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changeset | 993 | val tacs' = (tac(updated,false,true)) | 
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changeset | 994 | :: tacs (*no duplication; rotate*) | 
| 3083 | 995 | in | 
| 4065 | 996 | traceNew prems; traceVars sign ntrl; | 
| 3083 | 997 | (if null prems then (*closed the branch: prune!*) | 
| 4300 | 998 | (nclosed := !nclosed + 1; | 
| 999 | prv(tacs', brs0::trs, | |
| 1000 | prune (nbrs, nxtVars, choices'), | |
| 1001 | brs)) | |
| 1002 | else (*prems non-null*) | |
| 3083 | 1003 | if lim'<0 (*faster to kill ALL the alternatives*) | 
| 5343 
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changeset | 1004 | then (traceMsg"Excessive branching: KILLED"; | 
| 4065 | 1005 | clearTo ntrl; raise NEWBRANCHES) | 
| 3083 | 1006 | else | 
| 4300 | 1007 | (ntried := !ntried + length prems - 1; | 
| 1008 | prv(tacs', brs0::trs, choices', | |
| 1009 | newBr (vars',lim') prems))) | |
| 3083 | 1010 | handle PRV => | 
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changeset | 1011 | if updated then | 
| 3083 | 1012 | (*Backtrack at this level. | 
| 1013 | Reset Vars and try another rule*) | |
| 1014 | (clearTo ntrl; deeper grls) | |
| 1015 | else (*backtrack to previous level*) | |
| 1016 | backtrack choices | |
| 1017 | end | |
| 1018 | else deeper grls | |
| 2854 | 1019 | (*Try to close branch by unifying with head goal*) | 
| 1020 | fun closeF [] = raise CLOSEF | |
| 1021 | | closeF (L::Ls) = | |
| 3083 | 1022 | case tryClose(G,L) of | 
| 1023 | None => closeF Ls | |
| 1024 | | Some tac => | |
| 1025 | let val choices' = | |
| 3092 | 1026 | (if !trace then (prs"branch closed"; | 
| 4065 | 1027 | traceVars sign ntrl) | 
| 3083 | 1028 | else (); | 
| 1029 | prune (nbrs, nxtVars, | |
| 1030 | (ntrl, nbrs, PRV) :: choices)) | |
| 4300 | 1031 | in nclosed := !nclosed + 1; | 
| 1032 | prv (tac::tacs, brs0::trs, choices', brs) | |
| 3083 | 1033 | handle PRV => | 
| 1034 | (*reset Vars and try another literal | |
| 1035 | [this handler is pruned if possible!]*) | |
| 1036 | (clearTo ntrl; closeF Ls) | |
| 1037 | end | |
| 11152 
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changeset | 1038 | (*Try to unify a queued formula (safe or haz) with head goal*) | 
| 2894 | 1039 | fun closeFl [] = raise CLOSEF | 
| 1040 | | closeFl ((br, haz)::pairs) = | |
| 1041 | closeF (map fst br) | |
| 1042 | handle CLOSEF => closeF (map fst haz) | |
| 1043 | handle CLOSEF => closeFl pairs | |
| 3083 | 1044 | in tracing sign brs0; | 
| 4065 | 1045 | if lim<0 then (traceMsg "Limit reached. "; backtrack choices) | 
| 2854 | 1046 | else | 
| 4466 
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changeset | 1047 | prv (Data.hyp_subst_tac trace :: tacs, | 
| 2854 | 1048 | brs0::trs, choices, | 
| 5463 
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changeset | 1049 | equalSubst sign | 
| 
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changeset | 1050 | 		    (G, {pairs = (br,haz)::pairs, 
 | 
| 
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changeset | 1051 | lits = lits, vars = vars, lim = lim}) | 
| 
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changeset | 1052 | :: brs) | 
| 4065 | 1053 | handle DEST_EQ => closeF lits | 
| 1054 | handle CLOSEF => closeFl ((br,haz)::pairs) | |
| 1055 | handle CLOSEF => deeper rules | |
| 2894 | 1056 | handle NEWBRANCHES => | 
| 1057 | (case netMkRules G vars hazList of | |
| 4466 
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Better equality handling in Blast_tac, usingd a new variant of hyp_subst_tac
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changeset | 1058 | [] => (*there are no plausible haz rules*) | 
| 5463 
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changeset | 1059 | (traceMsg "moving formula to literals"; | 
| 
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changeset | 1060 | prv (tacs, brs0::trs, choices, | 
| 
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changeset | 1061 | 				   {pairs = (br,haz)::pairs, 
 | 
| 
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changeset | 1062 | lits = addLit(G,lits), | 
| 
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changeset | 1063 | vars = vars, | 
| 
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changeset | 1064 | lim = lim} :: brs)) | 
| 2894 | 1065 | | _ => (*G admits some haz rules: try later*) | 
| 5463 
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changeset | 1066 | (traceMsg "moving formula to haz list"; | 
| 4466 
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changeset | 1067 | prv (if isGoal G then negOfGoal_tac :: tacs | 
| 5463 
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changeset | 1068 | else tacs, | 
| 
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changeset | 1069 | brs0::trs, | 
| 
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changeset | 1070 | choices, | 
| 
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changeset | 1071 | 				 {pairs = (br, haz@[(negOfGoal G, md)])::pairs,
 | 
| 
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changeset | 1072 | lits = lits, | 
| 
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changeset | 1073 | vars = vars, | 
| 
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changeset | 1074 | lim = lim} :: brs))) | 
| 2854 | 1075 | end | 
| 2924 
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changeset | 1076 | | prv (tacs, trs, choices, | 
| 5463 
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changeset | 1077 | 	      {pairs = ([],haz)::(Gs,haz')::pairs, lits, vars, lim} :: brs) =
 | 
| 2894 | 1078 | (*no more "safe" formulae: transfer haz down a level*) | 
| 2924 
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changeset | 1079 | prv (tacs, trs, choices, | 
| 5463 
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changeset | 1080 | 		{pairs = (Gs,haz@haz')::pairs, 
 | 
| 
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changeset | 1081 | lits = lits, | 
| 
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changeset | 1082 | vars = vars, | 
| 
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changeset | 1083 | lim = lim} :: brs) | 
| 2854 | 1084 | | prv (tacs, trs, choices, | 
| 5463 
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changeset | 1085 | 	      brs0 as {pairs = [([], (H,md)::Hs)],
 | 
| 
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changeset | 1086 | lits, vars, lim} :: brs) = | 
| 2894 | 1087 | (*no safe steps possible at any level: apply a haz rule*) | 
| 2854 | 1088 | let exception PRV (*backtrack to precisely this recursion!*) | 
| 2894 | 1089 | val H = norm H | 
| 2854 | 1090 | val ntrl = !ntrail | 
| 2924 
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changeset | 1091 | val rules = netMkRules H vars hazList | 
| 3021 
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changeset | 1092 | (*new premises of haz rules may NOT be duplicated*) | 
| 4391 
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changeset | 1093 | fun newPrem (vars,P,dup,lim') prem = | 
| 
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changeset | 1094 | let val Gs' = map (fn Q => (Q,false)) prem | 
| 3021 
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changeset | 1095 | and Hs' = if dup then Hs @ [(negOfGoal H, md)] else Hs | 
| 4196 
9953c0995b79
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changeset | 1096 | and lits' = if (exists isGoal prem) | 
| 
9953c0995b79
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changeset | 1097 | then map negOfGoal lits | 
| 
9953c0995b79
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changeset | 1098 | else lits | 
| 5463 
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changeset | 1099 |                   in  {pairs = if exists (match P) prem then [(Gs',Hs')] 
 | 
| 
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changeset | 1100 | (*Recursive in this premise. Don't make new | 
| 
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changeset | 1101 | "stack frame". New haz premises will end up | 
| 
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changeset | 1102 | at the BACK of the queue, preventing | 
| 
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changeset | 1103 | exclusion of others*) | 
| 
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changeset | 1104 | else [(Gs',[]), ([],Hs')], | 
| 
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changeset | 1105 | lits = lits', | 
| 
a5479f5cd482
Allows more backtracking in proof reconstruction, making it slower but more
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changeset | 1106 | vars = vars, | 
| 
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changeset | 1107 | lim = lim'} | 
| 3021 
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changeset | 1108 | end | 
| 2854 | 1109 | fun newBr x prems = map (newPrem x) prems @ brs | 
| 1110 | (*Seek a matching rule. If unifiable then add new premises | |
| 1111 | to branch.*) | |
| 1112 | fun deeper [] = raise NEWBRANCHES | |
| 1113 | | deeper (((P,prems),tac)::grls) = | |
| 4065 | 1114 | if unify(add_term_vars(P,[]), P, H) | 
| 3083 | 1115 | then | 
| 5343 
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changeset | 1116 | let val updated = ntrl < !ntrail (*branch updated*) | 
| 3083 | 1117 | val vars = vars_in_vars vars | 
| 1118 | val vars' = foldr add_terms_vars (prems, vars) | |
| 11152 
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changeset | 1119 | (*duplicate H if md permits*) | 
| 
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changeset | 1120 | val dup = md (*earlier had "andalso vars' <> vars": | 
| 
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Blast bug fix: now always duplicates when applying a haz rule,
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changeset | 1121 | duplicate only if the subgoal has new vars*) | 
| 5463 
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changeset | 1122 | (*any instances of P in the subgoals? | 
| 11152 
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changeset | 1123 | NB: boolean "recur" affects tracing only!*) | 
| 3083 | 1124 | and recur = exists (exists (match P)) prems | 
| 1125 | val lim' = (*Decrement "lim" extra if updates occur*) | |
| 5343 
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changeset | 1126 | if updated then lim - (1+log(length rules)) | 
| 3083 | 1127 | else lim-1 | 
| 1128 | (*It is tempting to leave "lim" UNCHANGED if | |
| 1129 | both dup and recur are false. Proofs are | |
| 1130 | found at shallower depths, but looping | |
| 1131 | occurs too often...*) | |
| 3917 | 1132 | val mayUndo = | 
| 1133 | (*Allowing backtracking from a rule application | |
| 1134 | if other matching rules exist, if the rule | |
| 1135 | updated variables, or if the rule did not | |
| 1136 | introduce new variables. This latter condition | |
| 1137 | means it is not a standard "gamma-rule" but | |
| 1138 | some other form of unsafe rule. Aim is to | |
| 1139 | emulate Fast_tac, which allows all unsafe steps | |
| 1140 | to be undone.*) | |
| 1141 | not(null grls) (*other rules to try?*) | |
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changeset | 1142 | orelse updated | 
| 3917 | 1143 | orelse vars=vars' (*no new Vars?*) | 
| 5481 
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changeset | 1144 | val tac' = tac(updated, dup, true) | 
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changeset | 1145 | (*if recur then perhaps shouldn't call rotate_tac: new | 
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changeset | 1146 | formulae should be last, but that's WRONG if the new | 
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changeset | 1147 | formulae are Goals, since they remain in the first | 
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changeset | 1148 | position*) | 
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changeset | 1149 | |
| 3083 | 1150 | in | 
| 1151 | if lim'<0 andalso not (null prems) | |
| 1152 | then (*it's faster to kill ALL the alternatives*) | |
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changeset | 1153 | (traceMsg"Excessive branching: KILLED"; | 
| 4065 | 1154 | clearTo ntrl; raise NEWBRANCHES) | 
| 3083 | 1155 | else | 
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changeset | 1156 | traceNew prems; | 
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changeset | 1157 | if !trace andalso dup then prs" (duplicating)" | 
| 
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changeset | 1158 | else (); | 
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changeset | 1159 | if !trace andalso recur then prs" (recursive)" | 
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changeset | 1160 | else (); | 
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changeset | 1161 | traceVars sign ntrl; | 
| 4300 | 1162 | if null prems then nclosed := !nclosed + 1 | 
| 1163 | else ntried := !ntried + length prems - 1; | |
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changeset | 1164 | prv(tac' :: tacs, | 
| 3083 | 1165 | brs0::trs, | 
| 1166 | (ntrl, length brs0, PRV) :: choices, | |
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changeset | 1167 | newBr (vars', P, dup, lim') prems) | 
| 3083 | 1168 | handle PRV => | 
| 1169 | if mayUndo | |
| 1170 | then (*reset Vars and try another rule*) | |
| 1171 | (clearTo ntrl; deeper grls) | |
| 1172 | else (*backtrack to previous level*) | |
| 1173 | backtrack choices | |
| 1174 | end | |
| 1175 | else deeper grls | |
| 1176 | in tracing sign brs0; | |
| 4065 | 1177 | if lim<1 then (traceMsg "Limit reached. "; backtrack choices) | 
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changeset | 1178 | else deeper rules | 
| 2854 | 1179 | handle NEWBRANCHES => | 
| 2894 | 1180 | (*cannot close branch: move H to literals*) | 
| 2854 | 1181 | prv (tacs, brs0::trs, choices, | 
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changeset | 1182 | 		      {pairs = [([], Hs)], 
 | 
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changeset | 1183 | lits = H::lits, | 
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changeset | 1184 | vars = vars, | 
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changeset | 1185 | lim = lim} :: brs) | 
| 2854 | 1186 | end | 
| 1187 | | prv (tacs, trs, choices, _ :: brs) = backtrack choices | |
| 12346 | 1188 | in prv ([], [], [(!ntrail, length brs, PROVE)], brs) end; | 
| 2854 | 1189 | |
| 1190 | ||
| 2883 | 1191 | (*Construct an initial branch.*) | 
| 2854 | 1192 | fun initBranch (ts,lim) = | 
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changeset | 1193 |     {pairs = [(map (fn t => (t,true)) ts, [])],
 | 
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changeset | 1194 | lits = [], | 
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changeset | 1195 | vars = add_terms_vars (ts,[]), | 
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changeset | 1196 | lim = lim}; | 
| 2854 | 1197 | |
| 1198 | ||
| 1199 | (*** Conversion & Skolemization of the Isabelle proof state ***) | |
| 1200 | ||
| 1201 | (*Make a list of all the parameters in a subgoal, even if nested*) | |
| 1202 | local open Term | |
| 1203 | in | |
| 1204 | fun discard_foralls (Const("all",_)$Abs(a,T,t)) = discard_foralls t
 | |
| 1205 | | discard_foralls t = t; | |
| 1206 | end; | |
| 1207 | ||
| 1208 | ||
| 1209 | (*List of variables not appearing as arguments to the given parameter*) | |
| 1210 | fun getVars [] i = [] | |
| 1211 | | getVars ((_,(v,is))::alist) i = | |
| 1212 | if i mem is then getVars alist i | |
| 1213 | else v :: getVars alist i; | |
| 1214 | ||
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changeset | 1215 | exception TRANS of string; | 
| 2854 | 1216 | |
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changeset | 1217 | (*Translation of a subgoal: Skolemize all parameters*) | 
| 4065 | 1218 | fun fromSubgoal t = | 
| 1219 | let val alistVar = ref [] | |
| 1220 | and alistTVar = ref [] | |
| 2854 | 1221 | fun hdvar ((ix,(v,is))::_) = v | 
| 1222 | fun from lev t = | |
| 1223 | let val (ht,ts) = Term.strip_comb t | |
| 1224 | fun apply u = list_comb (u, map (from lev) ts) | |
| 1225 | fun bounds [] = [] | |
| 1226 | | bounds (Term.Bound i::ts) = | |
| 4233 
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changeset | 1227 | if i<lev then raise TRANS | 
| 
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changeset | 1228 | "Function unknown's argument not a parameter" | 
| 2854 | 1229 | else i-lev :: bounds ts | 
| 4233 
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changeset | 1230 | | bounds ts = raise TRANS | 
| 
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changeset | 1231 | "Function unknown's argument not a bound variable" | 
| 2854 | 1232 | in | 
| 1233 | case ht of | |
| 4065 | 1234 | Term.Const aT => apply (fromConst alistTVar aT) | 
| 2854 | 1235 | | Term.Free (a,_) => apply (Free a) | 
| 1236 | | Term.Bound i => apply (Bound i) | |
| 1237 | | Term.Var (ix,_) => | |
| 4065 | 1238 | (case (assoc_string_int(!alistVar,ix)) of | 
| 1239 | None => (alistVar := (ix, (ref None, bounds ts)) | |
| 1240 | :: !alistVar; | |
| 1241 | Var (hdvar(!alistVar))) | |
| 2854 | 1242 | | Some(v,is) => if is=bounds ts then Var v | 
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changeset | 1243 | else raise TRANS | 
| 5411 | 1244 | 				("Discrepancy among occurrences of "
 | 
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changeset | 1245 | ^ Syntax.string_of_vname ix)) | 
| 2854 | 1246 | | Term.Abs (a,_,body) => | 
| 1247 | if null ts then Abs(a, from (lev+1) body) | |
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changeset | 1248 | else raise TRANS "argument not in normal form" | 
| 2854 | 1249 | end | 
| 1250 | ||
| 1251 | val npars = length (Logic.strip_params t) | |
| 1252 | ||
| 1253 | (*Skolemize a subgoal from a proof state*) | |
| 1254 | fun skoSubgoal i t = | |
| 1255 | if i<npars then | |
| 1256 | skoSubgoal (i+1) | |
| 4065 | 1257 | (subst_bound (Skolem (gensym "T_", getVars (!alistVar) i), | 
| 2854 | 1258 | t)) | 
| 1259 | else t | |
| 1260 | ||
| 1261 | in skoSubgoal 0 (from 0 (discard_foralls t)) end; | |
| 1262 | ||
| 1263 | ||
| 4300 | 1264 | fun initialize() = | 
| 1265 | (fullTrace:=[]; trail := []; ntrail := 0; | |
| 1266 | nclosed := 0; ntried := 1); | |
| 1267 | ||
| 1268 | ||
| 2854 | 1269 | (*Tactic using tableau engine and proof reconstruction. | 
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changeset | 1270 | "start" is CPU time at start, for printing SEARCH time | 
| 
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changeset | 1271 | (also prints reconstruction time) | 
| 2854 | 1272 | "lim" is depth limit.*) | 
| 9486 
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changeset | 1273 | fun timing_depth_tac start cs lim i st0 = | 
| 4323 
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changeset | 1274 | (initialize(); | 
| 11754 | 1275 | let val st = ObjectLogic.atomize_goal i st0; | 
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changeset | 1276 |       val {sign,...} = rep_thm st
 | 
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changeset | 1277 | val skoprem = fromSubgoal (List.nth(prems_of st, i-1)) | 
| 
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changeset | 1278 | val hyps = strip_imp_prems skoprem | 
| 
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changeset | 1279 | and concl = strip_imp_concl skoprem | 
| 
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changeset | 1280 | fun cont (tacs,_,choices) = | 
| 
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changeset | 1281 | let val start = startTiming() | 
| 
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changeset | 1282 | in | 
| 
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changeset | 1283 | case Seq.pull(EVERY' (rev tacs) i st) of | 
| 
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changeset | 1284 | 	      None => (writeln ("PROOF FAILED for depth " ^
 | 
| 
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changeset | 1285 | Int.toString lim); | 
| 5463 
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changeset | 1286 | if !trace then writeln "************************\n" | 
| 
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changeset | 1287 | else (); | 
| 4323 
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changeset | 1288 | backtrack choices) | 
| 
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changeset | 1289 | | cell => (if (!trace orelse !stats) | 
| 
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changeset | 1290 | then writeln (endTiming start ^ " for reconstruction") | 
| 
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changeset | 1291 | else (); | 
| 
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changeset | 1292 | Seq.make(fn()=> cell)) | 
| 
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changeset | 1293 | end | 
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changeset | 1294 | in prove (sign, start, cs, [initBranch (mkGoal concl :: hyps, lim)], cont) | 
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changeset | 1295 | end | 
| 
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changeset | 1296 | handle PROVE => Seq.empty); | 
| 2854 | 1297 | |
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changeset | 1298 | (*Public version with fixed depth*) | 
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changeset | 1299 | fun depth_tac cs lim i st = timing_depth_tac (startTiming()) cs lim i st; | 
| 
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changeset | 1300 | |
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changeset | 1301 | fun blast_tac cs i st = | 
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changeset | 1302 | ((DEEPEN (1,20) (timing_depth_tac (startTiming()) cs) 0) i | 
| 
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changeset | 1303 | THEN flexflex_tac) st | 
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changeset | 1304 |     handle TRANS s => (warning ("Blast_tac: " ^ s); Seq.empty);
 | 
| 2854 | 1305 | |
| 4078 | 1306 | fun Blast_tac i = blast_tac (Data.claset()) i; | 
| 2854 | 1307 | |
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changeset | 1308 | |
| 
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changeset | 1309 | (*** For debugging: these apply the prover to a subgoal and return | 
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changeset | 1310 | the resulting tactics, trace, etc. ***) | 
| 
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changeset | 1311 | |
| 
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changeset | 1312 | (*Translate subgoal i from a proof state*) | 
| 
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changeset | 1313 | fun trygl cs lim i = | 
| 4300 | 1314 | (initialize(); | 
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changeset | 1315 | let val st = topthm() | 
| 3030 | 1316 |          val {sign,...} = rep_thm st
 | 
| 4065 | 1317 | val skoprem = fromSubgoal (List.nth(prems_of st, i-1)) | 
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changeset | 1318 | val hyps = strip_imp_prems skoprem | 
| 
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changeset | 1319 | and concl = strip_imp_concl skoprem | 
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changeset | 1320 | in timeap prove (sign, startTiming(), cs, | 
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changeset | 1321 | [initBranch (mkGoal concl :: hyps, lim)], I) | 
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changeset | 1322 | end | 
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changeset | 1323 |      handle Subscript => error("There is no subgoal " ^ Int.toString i));
 | 
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changeset | 1324 | |
| 4078 | 1325 | fun Trygl lim i = trygl (Data.claset()) lim i; | 
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changeset | 1326 | |
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changeset | 1327 | (*Read a string to make an initial, singleton branch*) | 
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changeset | 1328 | fun readGoal sign s = read_cterm sign (s,propT) |> | 
| 4065 | 1329 | term_of |> fromTerm |> rand |> mkGoal; | 
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changeset | 1330 | |
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changeset | 1331 | fun tryInThy thy lim s = | 
| 4300 | 1332 | (initialize(); | 
| 6391 | 1333 | timeap prove (Theory.sign_of thy, | 
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changeset | 1334 | startTiming(), | 
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changeset | 1335 | Data.claset(), | 
| 6391 | 1336 | [initBranch ([readGoal (Theory.sign_of thy) s], lim)], | 
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changeset | 1337 | I)); | 
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changeset | 1338 | |
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changeset | 1339 | |
| 5926 | 1340 | (** method setup **) | 
| 1341 | ||
| 7559 | 1342 | fun blast_args m = | 
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changeset | 1343 | Method.bang_sectioned_args' | 
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changeset | 1344 | Data.cla_modifiers (Scan.lift (Scan.option Args.nat)) m; | 
| 7155 | 1345 | |
| 9779 | 1346 | fun blast_meth None = Data.cla_meth' blast_tac | 
| 1347 | | blast_meth (Some lim) = Data.cla_meth' (fn cs => depth_tac cs lim); | |
| 7155 | 1348 | |
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changeset | 1349 | val setup = [Method.add_methods [("blast", blast_args blast_meth, 
 | 
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changeset | 1350 | "tableau prover")]]; | 
| 5926 | 1351 | |
| 1352 | ||
| 2854 | 1353 | end; |