| author | kleing | 
| Wed, 19 Jun 2002 12:39:41 +0200 | |
| changeset 13224 | 6f0928a942d1 | 
| parent 13195 | 98975cc13d28 | 
| child 13642 | a3d97348ceb6 | 
| permissions | -rw-r--r-- | 
| 12784 | 1 | (* Title: Pure/pattern.ML | 
| 0 | 2 | ID: $Id$ | 
| 12784 | 3 | Author: Tobias Nipkow, Christine Heinzelmann, and Stefan Berghofer | 
| 4 | License: GPL (GNU GENERAL PUBLIC LICENSE) | |
| 0 | 5 | |
| 6 | Unification of Higher-Order Patterns. | |
| 7 | ||
| 8 | See also: | |
| 9 | Tobias Nipkow. Functional Unification of Higher-Order Patterns. | |
| 10 | In Proceedings of the 8th IEEE Symposium Logic in Computer Science, 1993. | |
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changeset | 11 | |
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changeset | 12 | TODO: optimize red by special-casing it | 
| 0 | 13 | *) | 
| 14 | ||
| 2751 | 15 | infix aeconv; | 
| 16 | ||
| 0 | 17 | signature PATTERN = | 
| 1501 | 18 | sig | 
| 0 | 19 | type type_sig | 
| 20 | type sg | |
| 21 | type env | |
| 2751 | 22 | val aeconv : term * term -> bool | 
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changeset | 23 | val eta_contract : term -> term | 
| 12781 | 24 | val beta_eta_contract : term -> term | 
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changeset | 25 | val eta_contract_atom : term -> term | 
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changeset | 26 | val match : type_sig -> term * term | 
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changeset | 27 | -> (indexname*typ)list * (indexname*term)list | 
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changeset | 28 | val first_order_match : type_sig -> term * term | 
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changeset | 29 | -> (indexname*typ)list * (indexname*term)list | 
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changeset | 30 | val matches : type_sig -> term * term -> bool | 
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changeset | 31 | val matches_subterm : type_sig -> term * term -> bool | 
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changeset | 32 | val unify : sg * env * (term * term)list -> env | 
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changeset | 33 | val first_order : term -> bool | 
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changeset | 34 | val pattern : term -> bool | 
| 13195 | 35 | val rewrite_term : type_sig -> (term * term) list -> (term -> term option) list | 
| 36 | -> term -> term | |
| 0 | 37 | exception Unif | 
| 38 | exception MATCH | |
| 39 | exception Pattern | |
| 1501 | 40 | end; | 
| 0 | 41 | |
| 1501 | 42 | structure Pattern : PATTERN = | 
| 0 | 43 | struct | 
| 44 | ||
| 45 | type type_sig = Type.type_sig | |
| 46 | type sg = Sign.sg | |
| 47 | type env = Envir.env | |
| 48 | ||
| 49 | exception Unif; | |
| 50 | exception Pattern; | |
| 51 | ||
| 12784 | 52 | fun occurs(F,t,env) = | 
| 0 | 53 | let fun occ(Var(G,_)) = (case Envir.lookup(env,G) of | 
| 54 | Some(t) => occ t | |
| 55 | | None => F=G) | |
| 56 | | occ(t1$t2) = occ t1 orelse occ t2 | |
| 57 | | occ(Abs(_,_,t)) = occ t | |
| 58 | | occ _ = false | |
| 59 | in occ t end; | |
| 60 | ||
| 61 | ||
| 62 | fun mapbnd f = | |
| 63 | let fun mpb d (Bound(i)) = if i < d then Bound(i) else Bound(f(i-d)+d) | |
| 64 | | mpb d (Abs(s,T,t)) = Abs(s,T,mpb(d+1) t) | |
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changeset | 65 | | mpb d ((u1 $ u2)) = (mpb d u1)$(mpb d u2) | 
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changeset | 66 | | mpb _ atom = atom | 
| 0 | 67 | in mpb 0 end; | 
| 68 | ||
| 69 | fun idx [] j = ~10000 | |
| 70 | | idx(i::is) j = if i=j then length is else idx is j; | |
| 71 | ||
| 72 | fun at xs i = nth_elem (i,xs); | |
| 73 | ||
| 74 | fun mkabs (binders,is,t) = | |
| 75 | let fun mk(i::is) = let val (x,T) = nth_elem(i,binders) | |
| 12784 | 76 | in Abs(x,T,mk is) end | 
| 0 | 77 | | mk [] = t | 
| 78 | in mk is end; | |
| 79 | ||
| 80 | val incr = mapbnd (fn i => i+1); | |
| 81 | ||
| 82 | fun ints_of [] = [] | |
| 12784 | 83 | | ints_of (Bound i ::bs) = | 
| 0 | 84 | let val is = ints_of bs | 
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changeset | 85 | in if i mem_int is then raise Pattern else i::is end | 
| 0 | 86 | | ints_of _ = raise Pattern; | 
| 87 | ||
| 12232 | 88 | fun ints_of' env ts = ints_of (map (Envir.head_norm env) ts); | 
| 89 | ||
| 0 | 90 | |
| 91 | fun app (s,(i::is)) = app (s$Bound(i),is) | |
| 92 | | app (s,[]) = s; | |
| 93 | ||
| 94 | fun red (Abs(_,_,s)) (i::is) js = red s is (i::js) | |
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changeset | 95 | | red t [] [] = t | 
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changeset | 96 | | red t is jn = app (mapbnd (at jn) t,is); | 
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changeset | 97 | |
| 0 | 98 | |
| 99 | (* split_type ([T1,....,Tn]---> T,n,[]) = ([Tn,...,T1],T) *) | |
| 100 | fun split_type (T,0,Ts) = (Ts,T) | |
| 101 |   | split_type (Type ("fun",[T1,T2]),n,Ts) = split_type (T2,n-1,T1::Ts)
 | |
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changeset | 102 |   | split_type _                           = error("split_type");
 | 
| 0 | 103 | |
| 104 | fun type_of_G (T,n,is) = | |
| 105 | let val (Ts,U) = split_type(T,n,[]) in map(at Ts)is ---> U end; | |
| 106 | ||
| 107 | fun mkhnf (binders,is,G,js) = mkabs (binders, is, app(G,js)); | |
| 108 | ||
| 109 | fun mknewhnf(env,binders,is,F as (a,_),T,js) = | |
| 110 | let val (env',G) = Envir.genvar a (env,type_of_G(T,length is,js)) | |
| 111 | in Envir.update((F,mkhnf(binders,is,G,js)),env') end; | |
| 112 | ||
| 113 | ||
| 114 | (* mk_proj_list(is) = [ |is| - k | 1 <= k <= |is| and is[k] >= 0 ] *) | |
| 115 | fun mk_proj_list is = | |
| 116 | let fun mk(i::is,j) = if i >= 0 then j :: mk(is,j-1) else mk(is,j-1) | |
| 117 | | mk([],_) = [] | |
| 118 | in mk(is,length is - 1) end; | |
| 119 | ||
| 120 | fun proj(s,env,binders,is) = | |
| 121 | let fun trans d i = if i<d then i else (idx is (i-d))+d; | |
| 12232 | 122 | fun pr(s,env,d,binders) = (case Envir.head_norm env s of | 
| 0 | 123 | Abs(a,T,t) => let val (t',env') = pr(t,env,d+1,((a,T)::binders)) | 
| 124 | in (Abs(a,T,t'),env') end | |
| 125 | | t => (case strip_comb t of | |
| 126 | (c as Const _,ts) => | |
| 127 | let val (ts',env') = prs(ts,env,d,binders) | |
| 128 | in (list_comb(c,ts'),env') end | |
| 129 | | (f as Free _,ts) => | |
| 130 | let val (ts',env') = prs(ts,env,d,binders) | |
| 131 | in (list_comb(f,ts'),env') end | |
| 132 | | (Bound(i),ts) => | |
| 133 | let val j = trans d i | |
| 134 | in if j < 0 then raise Unif | |
| 135 | else let val (ts',env') = prs(ts,env,d,binders) | |
| 136 | in (list_comb(Bound j,ts'),env') end | |
| 137 | end | |
| 138 | | (Var(F as (a,_),Fty),ts) => | |
| 12232 | 139 | let val js = ints_of' env ts; | 
| 0 | 140 | val js' = map (trans d) js; | 
| 141 | val ks = mk_proj_list js'; | |
| 142 | val ls = filter (fn i => i >= 0) js' | |
| 143 | val Hty = type_of_G(Fty,length js,ks) | |
| 144 | val (env',H) = Envir.genvar a (env,Hty) | |
| 145 | val env'' = | |
| 146 | Envir.update((F,mkhnf(binders,js,H,ks)),env') | |
| 147 | in (app(H,ls),env'') end | |
| 148 | | _ => raise Pattern)) | |
| 149 | and prs(s::ss,env,d,binders) = | |
| 150 | let val (s',env1) = pr(s,env,d,binders) | |
| 151 | val (ss',env2) = prs(ss,env1,d,binders) | |
| 152 | in (s'::ss',env2) end | |
| 153 | | prs([],env,_,_) = ([],env) | |
| 154 | in if downto0(is,length binders - 1) then (s,env) | |
| 155 | else pr(s,env,0,binders) | |
| 156 | end; | |
| 157 | ||
| 158 | ||
| 159 | (* mk_ff_list(is,js) = [ length(is) - k | 1 <= k <= |is| and is[k] = js[k] ] *) | |
| 12784 | 160 | fun mk_ff_list(is,js) = | 
| 161 | let fun mk([],[],_) = [] | |
| 0 | 162 | | mk(i::is,j::js, k) = if i=j then k :: mk(is,js,k-1) | 
| 163 | else mk(is,js,k-1) | |
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changeset | 164 | | mk _ = error"mk_ff_list" | 
| 0 | 165 | in mk(is,js,length is-1) end; | 
| 166 | ||
| 167 | fun flexflex1(env,binders,F,Fty,is,js) = | |
| 168 | if is=js then env | |
| 169 | else let val ks = mk_ff_list(is,js) | |
| 170 | in mknewhnf(env,binders,is,F,Fty,ks) end; | |
| 171 | ||
| 172 | fun flexflex2(env,binders,F,Fty,is,G,Gty,js) = | |
| 173 | let fun ff(F,Fty,is,G as (a,_),Gty,js) = | |
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changeset | 174 | if js subset_int is | 
| 0 | 175 | then let val t= mkabs(binders,is,app(Var(G,Gty),map (idx is) js)) | 
| 176 | in Envir.update((F,t),env) end | |
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changeset | 177 | else let val ks = is inter_int js | 
| 0 | 178 | val Hty = type_of_G(Fty,length is,map (idx is) ks) | 
| 179 | val (env',H) = Envir.genvar a (env,Hty) | |
| 180 | fun lam(is) = mkabs(binders,is,app(H,map (idx is) ks)); | |
| 181 | in Envir.update((G,lam js), Envir.update((F,lam is),env')) | |
| 182 | end; | |
| 183 | in if xless(G,F) then ff(F,Fty,is,G,Gty,js) else ff(G,Gty,js,F,Fty,is) end | |
| 184 | ||
| 185 | val tsgr = ref(Type.tsig0); | |
| 186 | ||
| 187 | fun unify_types(T,U, env as Envir.Envir{asol,iTs,maxidx}) =
 | |
| 188 | if T=U then env | |
| 12527 | 189 | else let val (iTs',maxidx') = Type.unify (!tsgr) (iTs, maxidx) (U, T) | 
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changeset | 190 |        in Envir.Envir{asol=asol,maxidx=maxidx',iTs=iTs'} end
 | 
| 0 | 191 | handle Type.TUNIFY => raise Unif; | 
| 192 | ||
| 12232 | 193 | fun unif binders (env,(s,t)) = case (Envir.head_norm env s, Envir.head_norm env t) of | 
| 0 | 194 | (Abs(ns,Ts,ts),Abs(nt,Tt,tt)) => | 
| 195 | let val name = if ns = "" then nt else ns | |
| 196 | in unif ((name,Ts)::binders) (env,(ts,tt)) end | |
| 197 | | (Abs(ns,Ts,ts),t) => unif ((ns,Ts)::binders) (env,(ts,(incr t)$Bound(0))) | |
| 198 | | (t,Abs(nt,Tt,tt)) => unif ((nt,Tt)::binders) (env,((incr t)$Bound(0),tt)) | |
| 199 | | p => cases(binders,env,p) | |
| 200 | ||
| 201 | and cases(binders,env,(s,t)) = case (strip_comb s,strip_comb t) of | |
| 12784 | 202 | ((Var(F,Fty),ss),(Var(G,Gty),ts)) => | 
| 12232 | 203 | if F = G then flexflex1(env,binders,F,Fty,ints_of' env ss,ints_of' env ts) | 
| 204 | else flexflex2(env,binders,F,Fty,ints_of' env ss,G,Gty,ints_of' env ts) | |
| 205 | | ((Var(F,_),ss),_) => flexrigid(env,binders,F,ints_of' env ss,t) | |
| 206 | | (_,(Var(F,_),ts)) => flexrigid(env,binders,F,ints_of' env ts,s) | |
| 0 | 207 | | ((Const c,ss),(Const d,ts)) => rigidrigid(env,binders,c,d,ss,ts) | 
| 208 | | ((Free(f),ss),(Free(g),ts)) => rigidrigid(env,binders,f,g,ss,ts) | |
| 12784 | 209 | | ((Bound(i),ss),(Bound(j),ts)) => rigidrigidB (env,binders,i,j,ss,ts) | 
| 0 | 210 | | ((Abs(_),_),_) => raise Pattern | 
| 211 | | (_,(Abs(_),_)) => raise Pattern | |
| 212 | | _ => raise Unif | |
| 213 | ||
| 214 | and rigidrigid (env,binders,(a,Ta),(b,Tb),ss,ts) = | |
| 215 | if a<>b then raise Unif | |
| 216 | else foldl (unif binders) (unify_types(Ta,Tb,env), ss~~ts) | |
| 217 | ||
| 218 | and rigidrigidB (env,binders,i,j,ss,ts) = | |
| 219 | if i <> j then raise Unif else foldl (unif binders) (env ,ss~~ts) | |
| 220 | ||
| 221 | and flexrigid (env,binders,F,is,t) = | |
| 222 | if occurs(F,t,env) then raise Unif | |
| 223 | else let val (u,env') = proj(t,env,binders,is) | |
| 224 | in Envir.update((F,mkabs(binders,is,u)),env') end; | |
| 225 | ||
| 226 | fun unify(sg,env,tus) = (tsgr := #tsig(Sign.rep_sg sg); | |
| 227 | foldl (unif []) (env,tus)); | |
| 228 | ||
| 229 | ||
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changeset | 230 | (*Eta-contract a term (fully)*) | 
| 2792 | 231 | |
| 12797 | 232 | fun eta_contract t = | 
| 233 | let | |
| 234 | exception SAME; | |
| 235 | fun eta (Abs (a, T, body)) = | |
| 236 | ((case eta body of | |
| 237 | body' as (f $ Bound 0) => | |
| 238 | if loose_bvar1 (f, 0) then Abs(a, T, body') | |
| 239 | else incr_boundvars ~1 f | |
| 240 | | body' => Abs (a, T, body')) handle SAME => | |
| 241 | (case body of | |
| 242 | (f $ Bound 0) => | |
| 243 | if loose_bvar1 (f, 0) then raise SAME | |
| 244 | else incr_boundvars ~1 f | |
| 245 | | _ => raise SAME)) | |
| 246 | | eta (f $ t) = | |
| 247 | (let val f' = eta f | |
| 248 | in f' $ etah t end handle SAME => f $ eta t) | |
| 249 | | eta _ = raise SAME | |
| 250 | and etah t = (eta t handle SAME => t) | |
| 251 | in etah t end; | |
| 0 | 252 | |
| 12781 | 253 | val beta_eta_contract = eta_contract o Envir.beta_norm; | 
| 254 | ||
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changeset | 255 | (*Eta-contract a term from outside: just enough to reduce it to an atom | 
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changeset | 256 | DOESN'T QUITE WORK! | 
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changeset | 257 | *) | 
| 12784 | 258 | fun eta_contract_atom (t0 as Abs(a, T, body)) = | 
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changeset | 259 | (case eta_contract2 body of | 
| 12784 | 260 | body' as (f $ Bound 0) => | 
| 261 | if loose_bvar1(f,0) then Abs(a,T,body') | |
| 262 | else eta_contract_atom (incr_boundvars ~1 f) | |
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changeset | 263 | | _ => t0) | 
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changeset | 264 | | eta_contract_atom t = t | 
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changeset | 265 | and eta_contract2 (f$t) = f $ eta_contract_atom t | 
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changeset | 266 | | eta_contract2 t = eta_contract_atom t; | 
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changeset | 267 | |
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changeset | 268 | |
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changeset | 269 | (*Tests whether 2 terms are alpha/eta-convertible and have same type. | 
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changeset | 270 | Note that Consts and Vars may have more than one type.*) | 
| 2751 | 271 | fun t aeconv u = aconv_aux (eta_contract_atom t, eta_contract_atom u) | 
| 272 | and aconv_aux (Const(a,T), Const(b,U)) = a=b andalso T=U | |
| 273 | | aconv_aux (Free(a,T), Free(b,U)) = a=b andalso T=U | |
| 274 | | aconv_aux (Var(v,T), Var(w,U)) = eq_ix(v,w) andalso T=U | |
| 12784 | 275 | | aconv_aux (Bound i, Bound j) = i=j | 
| 2751 | 276 | | aconv_aux (Abs(_,T,t), Abs(_,U,u)) = (t aeconv u) andalso T=U | 
| 12784 | 277 | | aconv_aux (f$t, g$u) = (f aeconv g) andalso (t aeconv u) | 
| 2751 | 278 | | aconv_aux _ = false; | 
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changeset | 279 | |
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changeset | 280 | |
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changeset | 281 | (*** Matching ***) | 
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changeset | 282 | |
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changeset | 283 | exception MATCH; | 
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changeset | 284 | |
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changeset | 285 | fun typ_match tsig args = (Type.typ_match tsig args) | 
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changeset | 286 | handle Type.TYPE_MATCH => raise MATCH; | 
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changeset | 287 | |
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changeset | 288 | (*First-order matching; | 
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changeset | 289 | fomatch tsig (pattern, object) returns a (tyvar,typ)list and (var,term)list. | 
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changeset | 290 | The pattern and object may have variables in common. | 
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changeset | 291 | Instantiation does not affect the object, so matching ?a with ?a+1 works. | 
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changeset | 292 | Object is eta-contracted on the fly (by eta-expanding the pattern). | 
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changeset | 293 | Precondition: the pattern is already eta-contracted! | 
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changeset | 294 | Note: types are matched on the fly *) | 
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changeset | 295 | fun fomatch tsig = | 
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changeset | 296 | let | 
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changeset | 297 | fun mtch (instsp as (tyinsts,insts)) = fn | 
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changeset | 298 | (Var(ixn,T), t) => | 
| 12784 | 299 | if loose_bvar(t,0) then raise MATCH | 
| 300 | else (case assoc_string_int(insts,ixn) of | |
| 301 | None => (typ_match tsig (tyinsts, (T, fastype_of t)), | |
| 302 | (ixn,t)::insts) | |
| 303 | | Some u => if t aeconv u then instsp else raise MATCH) | |
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changeset | 304 | | (Free (a,T), Free (b,U)) => | 
| 12784 | 305 | if a=b then (typ_match tsig (tyinsts,(T,U)), insts) else raise MATCH | 
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changeset | 306 | | (Const (a,T), Const (b,U)) => | 
| 12784 | 307 | if a=b then (typ_match tsig (tyinsts,(T,U)), insts) else raise MATCH | 
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changeset | 308 | | (Bound i, Bound j) => if i=j then instsp else raise MATCH | 
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changeset | 309 | | (Abs(_,T,t), Abs(_,U,u)) => | 
| 12784 | 310 | mtch (typ_match tsig (tyinsts,(T,U)),insts) (t,u) | 
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changeset | 311 | | (f$t, g$u) => mtch (mtch instsp (f,g)) (t, u) | 
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changeset | 312 | | (t, Abs(_,U,u)) => mtch instsp ((incr t)$(Bound 0), u) | 
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changeset | 313 | | _ => raise MATCH | 
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changeset | 314 | in mtch end; | 
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changeset | 315 | |
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changeset | 316 | fun first_order_match tsig = apfst Vartab.dest o fomatch tsig (Vartab.empty, []); | 
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changeset | 317 | |
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changeset | 318 | (* Matching of higher-order patterns *) | 
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changeset | 319 | |
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changeset | 320 | fun match_bind(itms,binders,ixn,is,t) = | 
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changeset | 321 | let val js = loose_bnos t | 
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changeset | 322 | in if null is | 
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changeset | 323 | then if null js then (ixn,t)::itms else raise MATCH | 
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changeset | 324 | else if js subset_int is | 
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changeset | 325 | then let val t' = if downto0(is,length binders - 1) then t | 
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changeset | 326 | else mapbnd (idx is) t | 
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changeset | 327 | in (ixn, mkabs(binders,is,t')) :: itms end | 
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changeset | 328 | else raise MATCH | 
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changeset | 329 | end; | 
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changeset | 330 | |
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changeset | 331 | fun match tsg (po as (pat,obj)) = | 
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changeset | 332 | let | 
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changeset | 333 | (* Pre: pat and obj have same type *) | 
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changeset | 334 | fun mtch binders (env as (iTs,itms),(pat,obj)) = | 
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changeset | 335 | case pat of | 
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changeset | 336 | Abs(ns,Ts,ts) => | 
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changeset | 337 | (case obj of | 
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changeset | 338 | Abs(nt,Tt,tt) => mtch ((nt,Tt)::binders) (env,(ts,tt)) | 
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changeset | 339 | | _ => let val Tt = typ_subst_TVars_Vartab iTs Ts | 
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changeset | 340 | in mtch((ns,Tt)::binders)(env,(ts,(incr obj)$Bound(0))) end) | 
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changeset | 341 | | _ => (case obj of | 
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changeset | 342 | Abs(nt,Tt,tt) => | 
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changeset | 343 | mtch((nt,Tt)::binders)(env,((incr pat)$Bound(0),tt)) | 
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changeset | 344 | | _ => cases(binders,env,pat,obj)) | 
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changeset | 345 | |
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changeset | 346 | and cases(binders,env as (iTs,itms),pat,obj) = | 
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changeset | 347 | let val (ph,pargs) = strip_comb pat | 
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changeset | 348 | fun rigrig1(iTs,oargs) = | 
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changeset | 349 | foldl (mtch binders) ((iTs,itms), pargs~~oargs) | 
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changeset | 350 | fun rigrig2((a,Ta),(b,Tb),oargs) = | 
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changeset | 351 | if a<> b then raise MATCH | 
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changeset | 352 | else rigrig1(typ_match tsg (iTs,(Ta,Tb)), oargs) | 
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changeset | 353 | in case ph of | 
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changeset | 354 | Var(ixn,_) => | 
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changeset | 355 | let val is = ints_of pargs | 
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changeset | 356 | in case assoc_string_int(itms,ixn) of | 
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changeset | 357 | None => (iTs,match_bind(itms,binders,ixn,is,obj)) | 
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changeset | 358 | | Some u => if obj aeconv (red u is []) then env | 
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changeset | 359 | else raise MATCH | 
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changeset | 360 | end | 
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changeset | 361 | | _ => | 
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changeset | 362 | let val (oh,oargs) = strip_comb obj | 
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changeset | 363 | in case (ph,oh) of | 
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changeset | 364 | (Const c,Const d) => rigrig2(c,d,oargs) | 
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changeset | 365 | | (Free f,Free g) => rigrig2(f,g,oargs) | 
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changeset | 366 | | (Bound i,Bound j) => if i<>j then raise MATCH | 
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changeset | 367 | else rigrig1(iTs,oargs) | 
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changeset | 368 | | (Abs _, _) => raise Pattern | 
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changeset | 369 | | (_, Abs _) => raise Pattern | 
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changeset | 370 | | _ => raise MATCH | 
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changeset | 371 | end | 
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changeset | 372 | end; | 
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changeset | 373 | |
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changeset | 374 | val pT = fastype_of pat | 
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changeset | 375 | and oT = fastype_of obj | 
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changeset | 376 | val iTs = typ_match tsg (Vartab.empty, (pT,oT)) | 
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changeset | 377 | val insts2 = (iTs,[]) | 
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changeset | 378 | |
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changeset | 379 | in apfst Vartab.dest (mtch [] (insts2, po) | 
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changeset | 380 | handle Pattern => fomatch tsg insts2 po) | 
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changeset | 381 | end; | 
| 0 | 382 | |
| 383 | (*Predicate: does the pattern match the object?*) | |
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changeset | 384 | fun matches tsig po = (match tsig po; true) handle MATCH => false; | 
| 0 | 385 | |
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changeset | 386 | (* Does pat match a subterm of obj? *) | 
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changeset | 387 | fun matches_subterm tsig (pat,obj) = | 
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changeset | 388 | let fun msub(bounds,obj) = matches tsig (pat,obj) orelse | 
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changeset | 389 | case obj of | 
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changeset | 390 | Abs(x,T,t) => let val y = variant bounds x | 
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changeset | 391 |                                 val f = Free(":" ^ y,T)
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changeset | 392 | in msub(x::bounds,subst_bound(f,t)) end | 
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changeset | 393 | | s$t => msub(bounds,s) orelse msub(bounds,t) | 
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changeset | 394 | | _ => false | 
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changeset | 395 | in msub([],obj) end; | 
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changeset | 396 | |
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changeset | 397 | fun first_order(Abs(_,_,t)) = first_order t | 
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changeset | 398 | | first_order(t $ u) = first_order t andalso first_order u andalso | 
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changeset | 399 | not(is_Var t) | 
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changeset | 400 | | first_order _ = true; | 
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changeset | 401 | |
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changeset | 402 | fun pattern(Abs(_,_,t)) = pattern t | 
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changeset | 403 | | pattern(t) = let val (head,args) = strip_comb t | 
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changeset | 404 | in if is_Var head | 
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changeset | 405 | then let val _ = ints_of args in true end | 
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changeset | 406 | handle Pattern => false | 
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changeset | 407 | else forall pattern args | 
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changeset | 408 | end; | 
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changeset | 409 | |
| 12784 | 410 | |
| 411 | (* rewriting -- simple but fast *) | |
| 412 | ||
| 13195 | 413 | fun rewrite_term tsig rules procs tm = | 
| 12784 | 414 | let | 
| 13195 | 415 | val skel0 = Bound 0; | 
| 416 | ||
| 12797 | 417 | val rhs_names = | 
| 418 | foldr (fn ((_, rhs), names) => add_term_free_names (rhs, names)) (rules, []); | |
| 13195 | 419 | |
| 12797 | 420 | fun variant_absfree (x, T, t) = | 
| 421 | let | |
| 422 | val x' = variant (add_term_free_names (t, rhs_names)) x; | |
| 423 | val t' = subst_bound (Free (x', T), t); | |
| 424 | in (fn u => Abs (x, T, abstract_over (Free (x', T), u)), t') end; | |
| 425 | ||
| 12784 | 426 | fun match_rew tm (tm1, tm2) = | 
| 13195 | 427 | let val rtm = if_none (Term.rename_abs tm1 tm tm2) tm2 | 
| 428 | in Some (subst_vars (match tsig (tm1, tm)) rtm, rtm) | |
| 429 | handle MATCH => None | |
| 430 | end; | |
| 12784 | 431 | |
| 13195 | 432 | fun rew (Abs (_, _, body) $ t) = Some (subst_bound (t, body), skel0) | 
| 433 | | rew tm = (case get_first (match_rew tm) rules of | |
| 434 | None => apsome (rpair skel0) (get_first (fn p => p tm) procs) | |
| 435 | | x => x); | |
| 436 | ||
| 437 | fun rew1 (Var _) _ = None | |
| 438 | | rew1 skel tm = (case rew2 skel tm of | |
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changeset | 439 | Some tm1 => (case rew tm1 of | 
| 13195 | 440 | Some (tm2, skel') => Some (if_none (rew1 skel' tm2) tm2) | 
| 12784 | 441 | | None => Some tm1) | 
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changeset | 442 | | None => (case rew tm of | 
| 13195 | 443 | Some (tm1, skel') => Some (if_none (rew1 skel' tm1) tm1) | 
| 12784 | 444 | | None => None)) | 
| 445 | ||
| 13195 | 446 | and rew2 skel (tm1 $ tm2) = (case tm1 of | 
| 12784 | 447 | Abs (_, _, body) => | 
| 448 | let val tm' = subst_bound (tm2, body) | |
| 13195 | 449 | in Some (if_none (rew2 skel0 tm') tm') end | 
| 450 | | _ => | |
| 451 | let val (skel1, skel2) = (case skel of | |
| 452 | skel1 $ skel2 => (skel1, skel2) | |
| 453 | | _ => (skel0, skel0)) | |
| 454 | in case rew1 skel1 tm1 of | |
| 455 | Some tm1' => (case rew1 skel2 tm2 of | |
| 456 | Some tm2' => Some (tm1' $ tm2') | |
| 457 | | None => Some (tm1' $ tm2)) | |
| 458 | | None => (case rew1 skel2 tm2 of | |
| 459 | Some tm2' => Some (tm1 $ tm2') | |
| 460 | | None => None) | |
| 461 | end) | |
| 462 | | rew2 skel (Abs (x, T, tm)) = | |
| 463 | let | |
| 464 | val (abs, tm') = variant_absfree (x, T, tm); | |
| 465 | val skel' = (case skel of Abs (_, _, skel') => skel' | _ => skel0) | |
| 466 | in case rew1 skel' tm' of | |
| 12797 | 467 | Some tm'' => Some (abs tm'') | 
| 13195 | 468 | | None => None | 
| 12797 | 469 | end | 
| 13195 | 470 | | rew2 _ _ = None | 
| 12784 | 471 | |
| 13195 | 472 | in if_none (rew1 skel0 tm) tm end; | 
| 12784 | 473 | |
| 0 | 474 | end; |