| author | wenzelm | 
| Tue, 18 Sep 2007 16:08:00 +0200 | |
| changeset 24630 | 351a308ab58d | 
| parent 24483 | 0b1a8fd26da9 | 
| child 24671 | 35075a1e9599 | 
| permissions | -rw-r--r-- | 
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changeset | 1 | (* Title: Pure/term.ML | 
| 0 | 2 | ID: $Id$ | 
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changeset | 3 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
| 0 | 4 | Copyright Cambridge University 1992 | 
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changeset | 5 | |
| 4444 | 6 | Simply typed lambda-calculus: types, terms, and basic operations. | 
| 0 | 7 | *) | 
| 8 | ||
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changeset | 9 | infix 9 $; | 
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changeset | 10 | infixr 5 -->; | 
| 4444 | 11 | infixr --->; | 
| 12 | infix aconv; | |
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changeset | 13 | |
| 4444 | 14 | signature BASIC_TERM = | 
| 15 | sig | |
| 22572 | 16 | eqtype indexname | 
| 17 | eqtype class | |
| 18 | eqtype sort | |
| 19 | eqtype arity | |
| 4444 | 20 | datatype typ = | 
| 21 | Type of string * typ list | | |
| 22 | TFree of string * sort | | |
| 23 | TVar of indexname * sort | |
| 16537 | 24 | datatype term = | 
| 25 | Const of string * typ | | |
| 26 | Free of string * typ | | |
| 27 | Var of indexname * typ | | |
| 28 | Bound of int | | |
| 29 | Abs of string * typ * term | | |
| 17756 | 30 | $ of term * term | 
| 16537 | 31 | exception TYPE of string * typ list * term list | 
| 32 | exception TERM of string * term list | |
| 21353 | 33 | val dummyS: sort | 
| 16710 | 34 | val dummyT: typ | 
| 35 | val no_dummyT: typ -> typ | |
| 4444 | 36 | val --> : typ * typ -> typ | 
| 37 | val ---> : typ list * typ -> typ | |
| 16710 | 38 | val dest_Type: typ -> string * typ list | 
| 39 | val dest_TVar: typ -> indexname * sort | |
| 40 | val dest_TFree: typ -> string * sort | |
| 41 | val is_Bound: term -> bool | |
| 42 | val is_Const: term -> bool | |
| 43 | val is_Free: term -> bool | |
| 44 | val is_Var: term -> bool | |
| 4444 | 45 | val is_TVar: typ -> bool | 
| 16710 | 46 | val dest_Const: term -> string * typ | 
| 47 | val dest_Free: term -> string * typ | |
| 48 | val dest_Var: term -> indexname * typ | |
| 4444 | 49 | val domain_type: typ -> typ | 
| 4480 | 50 | val range_type: typ -> typ | 
| 4444 | 51 | val binder_types: typ -> typ list | 
| 52 | val body_type: typ -> typ | |
| 53 | val strip_type: typ -> typ list * typ | |
| 16710 | 54 | val type_of1: typ list * term -> typ | 
| 4444 | 55 | val type_of: term -> typ | 
| 16710 | 56 | val fastype_of1: typ list * term -> typ | 
| 4444 | 57 | val fastype_of: term -> typ | 
| 10806 | 58 | val list_abs: (string * typ) list * term -> term | 
| 18927 | 59 | val strip_abs: term -> (string * typ) list * term | 
| 4444 | 60 | val strip_abs_body: term -> term | 
| 61 | val strip_abs_vars: term -> (string * typ) list | |
| 62 | val strip_qnt_body: string -> term -> term | |
| 63 | val strip_qnt_vars: string -> term -> (string * typ) list | |
| 64 | val list_comb: term * term list -> term | |
| 65 | val strip_comb: term -> term * term list | |
| 66 | val head_of: term -> term | |
| 67 | val size_of_term: term -> int | |
| 18847 | 68 | val map_atyps: (typ -> typ) -> typ -> typ | 
| 69 | val map_aterms: (term -> term) -> term -> term | |
| 4444 | 70 | val map_type_tvar: (indexname * sort -> typ) -> typ -> typ | 
| 71 | val map_type_tfree: (string * sort -> typ) -> typ -> typ | |
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changeset | 72 | val map_types: (typ -> typ) -> term -> term | 
| 16943 | 73 | val fold_atyps: (typ -> 'a -> 'a) -> typ -> 'a -> 'a | 
| 74 | val fold_aterms: (term -> 'a -> 'a) -> term -> 'a -> 'a | |
| 75 | val fold_term_types: (term -> typ -> 'a -> 'a) -> term -> 'a -> 'a | |
| 76 | val fold_types: (typ -> 'a -> 'a) -> term -> 'a -> 'a | |
| 24483 | 77 | val burrow_types: (typ list -> typ list) -> term list -> term list | 
| 18927 | 78 | val it_term_types: (typ * 'a -> 'a) -> term * 'a -> 'a | 
| 16943 | 79 | val add_term_names: term * string list -> string list | 
| 16710 | 80 | val aconv: term * term -> bool | 
| 16537 | 81 | structure Vartab: TABLE | 
| 82 | structure Typtab: TABLE | |
| 83 | structure Termtab: TABLE | |
| 4444 | 84 | val propT: typ | 
| 85 | val implies: term | |
| 86 | val all: typ -> term | |
| 87 | val equals: typ -> term | |
| 88 | val strip_all_body: term -> term | |
| 89 | val strip_all_vars: term -> (string * typ) list | |
| 90 | val incr_bv: int * int * term -> term | |
| 91 | val incr_boundvars: int -> term -> term | |
| 92 | val add_loose_bnos: term * int * int list -> int list | |
| 93 | val loose_bnos: term -> int list | |
| 94 | val loose_bvar: term * int -> bool | |
| 95 | val loose_bvar1: term * int -> bool | |
| 96 | val subst_bounds: term list * term -> term | |
| 97 | val subst_bound: term * term -> term | |
| 98 | val betapply: term * term -> term | |
| 18183 | 99 | val betapplys: term * term list -> term | 
| 4444 | 100 | val eq_ix: indexname * indexname -> bool | 
| 101 | val could_unify: term * term -> bool | |
| 102 | val subst_free: (term * term) list -> term -> term | |
| 103 | val abstract_over: term * term -> term | |
| 11922 | 104 | val lambda: term -> term -> term | 
| 4444 | 105 | val absfree: string * typ * term -> term | 
| 17786 | 106 | val absdummy: typ * term -> term | 
| 4444 | 107 | val list_abs_free: (string * typ) list * term -> term | 
| 108 | val list_all_free: (string * typ) list * term -> term | |
| 109 | val list_all: (string * typ) list * term -> term | |
| 16710 | 110 | val subst_atomic: (term * term) list -> term -> term | 
| 111 | val typ_subst_atomic: (typ * typ) list -> typ -> typ | |
| 112 | val subst_atomic_types: (typ * typ) list -> term -> term | |
| 113 | val typ_subst_TVars: (indexname * typ) list -> typ -> typ | |
| 114 | val subst_TVars: (indexname * typ) list -> term -> term | |
| 115 | val subst_Vars: (indexname * term) list -> term -> term | |
| 116 | val subst_vars: (indexname * typ) list * (indexname * term) list -> term -> term | |
| 117 | val is_first_order: string list -> term -> bool | |
| 4444 | 118 | val maxidx_of_typ: typ -> int | 
| 119 | val maxidx_of_typs: typ list -> int | |
| 120 | val maxidx_of_term: term -> int | |
| 121 | val add_term_consts: term * string list -> string list | |
| 13646 | 122 | val term_consts: term -> string list | 
| 19909 | 123 | val exists_subtype: (typ -> bool) -> typ -> bool | 
| 20531 | 124 | val exists_type: (typ -> bool) -> term -> bool | 
| 16943 | 125 | val exists_subterm: (term -> bool) -> term -> bool | 
| 16710 | 126 | val exists_Const: (string * typ -> bool) -> term -> bool | 
| 127 | val add_term_free_names: term * string list -> string list | |
| 128 | val add_typ_tvars: typ * (indexname * sort) list -> (indexname * sort) list | |
| 129 | val add_typ_tfree_names: typ * string list -> string list | |
| 130 | val add_typ_tfrees: typ * (string * sort) list -> (string * sort) list | |
| 131 | val add_typ_varnames: typ * string list -> string list | |
| 132 | val add_term_tvars: term * (indexname * sort) list -> (indexname * sort) list | |
| 133 | val add_term_tfrees: term * (string * sort) list -> (string * sort) list | |
| 134 | val add_term_tfree_names: term * string list -> string list | |
| 135 | val typ_tfrees: typ -> (string * sort) list | |
| 136 | val typ_tvars: typ -> (indexname * sort) list | |
| 137 | val term_tfrees: term -> (string * sort) list | |
| 138 | val term_tvars: term -> (indexname * sort) list | |
| 139 | val add_typ_ixns: indexname list * typ -> indexname list | |
| 140 | val add_term_tvar_ixns: term * indexname list -> indexname list | |
| 141 | val add_term_vars: term * term list -> term list | |
| 142 | val term_vars: term -> term list | |
| 4444 | 143 | val add_term_frees: term * term list -> term list | 
| 144 | val term_frees: term -> term list | |
| 20160 | 145 | val rename_wrt_term: term -> (string * 'a) list -> (string * 'a) list | 
| 15986 | 146 | val show_question_marks: bool ref | 
| 4444 | 147 | end; | 
| 0 | 148 | |
| 4444 | 149 | signature TERM = | 
| 150 | sig | |
| 151 | include BASIC_TERM | |
| 19394 | 152 | val aT: sort -> typ | 
| 153 | val itselfT: typ -> typ | |
| 154 | val a_itselfT: typ | |
| 22908 | 155 | val argument_type_of: term -> int -> typ | 
| 21493 | 156 | val head_name_of: term -> string | 
| 16943 | 157 | val add_tvarsT: typ -> (indexname * sort) list -> (indexname * sort) list | 
| 158 | val add_tvars: term -> (indexname * sort) list -> (indexname * sort) list | |
| 159 | val add_vars: term -> (indexname * typ) list -> (indexname * typ) list | |
| 21682 | 160 | val add_varnames: term -> indexname list -> indexname list | 
| 16943 | 161 | val add_tfreesT: typ -> (string * sort) list -> (string * sort) list | 
| 162 | val add_tfrees: term -> (string * sort) list -> (string * sort) list | |
| 163 | val add_frees: term -> (string * typ) list -> (string * typ) list | |
| 21682 | 164 | val hidden_polymorphism: term -> typ -> (indexname * sort) list | 
| 21797 | 165 | val equiv_types: term * term -> bool | 
| 20109 | 166 | val strip_abs_eta: int -> term -> (string * typ) list * term | 
| 16678 | 167 | val fast_indexname_ord: indexname * indexname -> order | 
| 16537 | 168 | val indexname_ord: indexname * indexname -> order | 
| 169 | val sort_ord: sort * sort -> order | |
| 170 | val typ_ord: typ * typ -> order | |
| 16678 | 171 | val fast_term_ord: term * term -> order | 
| 16537 | 172 | val term_ord: term * term -> order | 
| 173 | val hd_ord: term * term -> order | |
| 174 | val termless: term * term -> bool | |
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changeset | 175 | val term_lpo: (term -> int) -> term * term -> order | 
| 12981 | 176 | val match_bvars: (term * term) * (string * string) list -> (string * string) list | 
| 22031 | 177 | val map_abs_vars: (string -> string) -> term -> term | 
| 12981 | 178 | val rename_abs: term -> term -> term -> term option | 
| 16943 | 179 | val eq_tvar: (indexname * sort) * (indexname * sort) -> bool | 
| 16882 | 180 | val eq_var: (indexname * typ) * (indexname * typ) -> bool | 
| 16943 | 181 | val tvar_ord: (indexname * sort) * (indexname * sort) -> order | 
| 182 | val var_ord: (indexname * typ) * (indexname * typ) -> order | |
| 16710 | 183 | val maxidx_typ: typ -> int -> int | 
| 184 | val maxidx_typs: typ list -> int -> int | |
| 185 | val maxidx_term: term -> int -> int | |
| 20239 | 186 | val dest_abs: string * typ * term -> string * term | 
| 20148 | 187 | val declare_term_names: term -> Name.context -> Name.context | 
| 20160 | 188 | val variant_frees: term -> (string * 'a) list -> (string * 'a) list | 
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changeset | 189 | val dummy_patternN: string | 
| 18253 | 190 | val dummy_pattern: typ -> term | 
| 22723 | 191 | val is_dummy_pattern: term -> bool | 
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changeset | 192 | val no_dummy_patterns: term -> term | 
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changeset | 193 | val replace_dummy_patterns: int * term -> int * term | 
| 10552 | 194 | val is_replaced_dummy_pattern: indexname -> bool | 
| 16035 | 195 | val show_dummy_patterns: term -> term | 
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changeset | 196 | val string_of_vname: indexname -> string | 
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changeset | 197 | val string_of_vname': indexname -> string | 
| 4444 | 198 | end; | 
| 199 | ||
| 200 | structure Term: TERM = | |
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changeset | 201 | struct | 
| 0 | 202 | |
| 203 | (*Indexnames can be quickly renamed by adding an offset to the integer part, | |
| 204 | for resolution.*) | |
| 16537 | 205 | type indexname = string * int; | 
| 0 | 206 | |
| 4626 | 207 | (* Types are classified by sorts. *) | 
| 0 | 208 | type class = string; | 
| 209 | type sort = class list; | |
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changeset | 210 | type arity = string * sort list * sort; | 
| 0 | 211 | |
| 212 | (* The sorts attached to TFrees and TVars specify the sort of that variable *) | |
| 213 | datatype typ = Type of string * typ list | |
| 214 | | TFree of string * sort | |
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changeset | 215 | | TVar of indexname * sort; | 
| 0 | 216 | |
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changeset | 217 | (*Terms. Bound variables are indicated by depth number. | 
| 0 | 218 | Free variables, (scheme) variables and constants have names. | 
| 4626 | 219 | An term is "closed" if every bound variable of level "lev" | 
| 13000 | 220 | is enclosed by at least "lev" abstractions. | 
| 0 | 221 | |
| 222 | It is possible to create meaningless terms containing loose bound vars | |
| 223 | or type mismatches. But such terms are not allowed in rules. *) | |
| 224 | ||
| 13000 | 225 | datatype term = | 
| 0 | 226 | Const of string * typ | 
| 13000 | 227 | | Free of string * typ | 
| 0 | 228 | | Var of indexname * typ | 
| 229 | | Bound of int | |
| 230 | | Abs of string*typ*term | |
| 3965 | 231 | | op $ of term*term; | 
| 0 | 232 | |
| 16537 | 233 | (*Errors involving type mismatches*) | 
| 0 | 234 | exception TYPE of string * typ list * term list; | 
| 235 | ||
| 16537 | 236 | (*Errors errors involving terms*) | 
| 0 | 237 | exception TERM of string * term list; | 
| 238 | ||
| 239 | (*Note variable naming conventions! | |
| 240 | a,b,c: string | |
| 241 | f,g,h: functions (including terms of function type) | |
| 242 | i,j,m,n: int | |
| 243 | t,u: term | |
| 244 | v,w: indexnames | |
| 245 | x,y: any | |
| 246 | A,B,C: term (denoting formulae) | |
| 247 | T,U: typ | |
| 248 | *) | |
| 249 | ||
| 250 | ||
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changeset | 251 | (** Types **) | 
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changeset | 252 | |
| 21353 | 253 | (*dummies for type-inference etc.*) | 
| 254 | val dummyS = [""]; | |
| 16537 | 255 | val dummyT = Type ("dummy", []);
 | 
| 256 | ||
| 257 | fun no_dummyT typ = | |
| 258 | let | |
| 259 |     fun check (T as Type ("dummy", _)) =
 | |
| 260 |           raise TYPE ("Illegal occurrence of '_' dummy type", [T], [])
 | |
| 261 | | check (Type (_, Ts)) = List.app check Ts | |
| 262 | | check _ = (); | |
| 263 | in check typ; typ end; | |
| 264 | ||
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changeset | 265 | fun S --> T = Type("fun",[S,T]);
 | 
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changeset | 266 | |
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changeset | 267 | (*handy for multiple args: [T1,...,Tn]--->T gives T1-->(T2--> ... -->T)*) | 
| 15570 | 268 | val op ---> = Library.foldr (op -->); | 
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changeset | 269 | |
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changeset | 270 | fun dest_Type (Type x) = x | 
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changeset | 271 |   | dest_Type T = raise TYPE ("dest_Type", [T], []);
 | 
| 15914 | 272 | fun dest_TVar (TVar x) = x | 
| 273 |   | dest_TVar T = raise TYPE ("dest_TVar", [T], []);
 | |
| 274 | fun dest_TFree (TFree x) = x | |
| 275 |   | dest_TFree T = raise TYPE ("dest_TFree", [T], []);
 | |
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changeset | 276 | |
| 16537 | 277 | |
| 0 | 278 | (** Discriminators **) | 
| 279 | ||
| 7318 | 280 | fun is_Bound (Bound _) = true | 
| 281 | | is_Bound _ = false; | |
| 282 | ||
| 0 | 283 | fun is_Const (Const _) = true | 
| 284 | | is_Const _ = false; | |
| 285 | ||
| 286 | fun is_Free (Free _) = true | |
| 287 | | is_Free _ = false; | |
| 288 | ||
| 289 | fun is_Var (Var _) = true | |
| 290 | | is_Var _ = false; | |
| 291 | ||
| 292 | fun is_TVar (TVar _) = true | |
| 293 | | is_TVar _ = false; | |
| 294 | ||
| 16537 | 295 | |
| 0 | 296 | (** Destructors **) | 
| 297 | ||
| 298 | fun dest_Const (Const x) = x | |
| 299 |   | dest_Const t = raise TERM("dest_Const", [t]);
 | |
| 300 | ||
| 301 | fun dest_Free (Free x) = x | |
| 302 |   | dest_Free t = raise TERM("dest_Free", [t]);
 | |
| 303 | ||
| 304 | fun dest_Var (Var x) = x | |
| 305 |   | dest_Var t = raise TERM("dest_Var", [t]);
 | |
| 306 | ||
| 307 | ||
| 4464 | 308 | fun domain_type (Type("fun", [T,_])) = T
 | 
| 309 | and range_type  (Type("fun", [_,T])) = T;
 | |
| 4064 | 310 | |
| 0 | 311 | (* maps [T1,...,Tn]--->T to the list [T1,T2,...,Tn]*) | 
| 312 | fun binder_types (Type("fun",[S,T])) = S :: binder_types T
 | |
| 313 | | binder_types _ = []; | |
| 314 | ||
| 315 | (* maps [T1,...,Tn]--->T to T*) | |
| 316 | fun body_type (Type("fun",[S,T])) = body_type T
 | |
| 317 | | body_type T = T; | |
| 318 | ||
| 319 | (* maps [T1,...,Tn]--->T to ([T1,T2,...,Tn], T) *) | |
| 320 | fun strip_type T : typ list * typ = | |
| 321 | (binder_types T, body_type T); | |
| 322 | ||
| 323 | ||
| 324 | (*Compute the type of the term, checking that combinations are well-typed | |
| 325 | Ts = [T0,T1,...] holds types of bound variables 0, 1, ...*) | |
| 326 | fun type_of1 (Ts, Const (_,T)) = T | |
| 327 | | type_of1 (Ts, Free (_,T)) = T | |
| 15570 | 328 | | type_of1 (Ts, Bound i) = (List.nth (Ts,i) | 
| 329 |         handle Subscript => raise TYPE("type_of: bound variable", [], [Bound i]))
 | |
| 0 | 330 | | type_of1 (Ts, Var (_,T)) = T | 
| 331 | | type_of1 (Ts, Abs (_,T,body)) = T --> type_of1(T::Ts, body) | |
| 13000 | 332 | | type_of1 (Ts, f$u) = | 
| 0 | 333 | let val U = type_of1(Ts,u) | 
| 334 | and T = type_of1(Ts,f) | |
| 335 | in case T of | |
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changeset | 336 |             Type("fun",[T1,T2]) =>
 | 
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changeset | 337 | if T1=U then T2 else raise TYPE | 
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changeset | 338 |                     ("type_of: type mismatch in application", [T1,U], [f$u])
 | 
| 13000 | 339 | | _ => raise TYPE | 
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changeset | 340 |                     ("type_of: function type is expected in application",
 | 
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changeset | 341 | [T,U], [f$u]) | 
| 0 | 342 | end; | 
| 343 | ||
| 344 | fun type_of t : typ = type_of1 ([],t); | |
| 345 | ||
| 346 | (*Determines the type of a term, with minimal checking*) | |
| 13000 | 347 | fun fastype_of1 (Ts, f$u) = | 
| 61 | 348 | (case fastype_of1 (Ts,f) of | 
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changeset | 349 |         Type("fun",[_,T]) => T
 | 
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changeset | 350 |         | _ => raise TERM("fastype_of: expected function type", [f$u]))
 | 
| 61 | 351 | | fastype_of1 (_, Const (_,T)) = T | 
| 352 | | fastype_of1 (_, Free (_,T)) = T | |
| 15570 | 353 | | fastype_of1 (Ts, Bound i) = (List.nth(Ts,i) | 
| 354 |          handle Subscript => raise TERM("fastype_of: Bound", [Bound i]))
 | |
| 13000 | 355 | | fastype_of1 (_, Var (_,T)) = T | 
| 61 | 356 | | fastype_of1 (Ts, Abs (_,T,u)) = T --> fastype_of1 (T::Ts, u); | 
| 357 | ||
| 358 | fun fastype_of t : typ = fastype_of1 ([],t); | |
| 0 | 359 | |
| 16678 | 360 | (*Determine the argument type of a function*) | 
| 22908 | 361 | fun argument_type_of tm k = | 
| 16678 | 362 | let | 
| 363 |     fun argT i (Type ("fun", [T, U])) = if i = 0 then T else argT (i - 1) U
 | |
| 364 |       | argT _ T = raise TYPE ("argument_type_of", [T], []);
 | |
| 365 | ||
| 366 | fun arg 0 _ (Abs (_, T, _)) = T | |
| 367 | | arg i Ts (Abs (_, T, t)) = arg (i - 1) (T :: Ts) t | |
| 368 | | arg i Ts (t $ _) = arg (i + 1) Ts t | |
| 369 | | arg i Ts a = argT i (fastype_of1 (Ts, a)); | |
| 22908 | 370 | in arg k [] tm end; | 
| 16678 | 371 | |
| 0 | 372 | |
| 19473 | 373 | val list_abs = uncurry (fold_rev (fn (x, T) => fn t => Abs (x, T, t))); | 
| 10806 | 374 | |
| 18927 | 375 | fun strip_abs (Abs (a, T, t)) = | 
| 376 | let val (a', t') = strip_abs t | |
| 377 | in ((a, T) :: a', t') end | |
| 378 | | strip_abs t = ([], t); | |
| 379 | ||
| 0 | 380 | (* maps (x1,...,xn)t to t *) | 
| 13000 | 381 | fun strip_abs_body (Abs(_,_,t)) = strip_abs_body t | 
| 0 | 382 | | strip_abs_body u = u; | 
| 383 | ||
| 384 | (* maps (x1,...,xn)t to [x1, ..., xn] *) | |
| 13000 | 385 | fun strip_abs_vars (Abs(a,T,t)) = (a,T) :: strip_abs_vars t | 
| 0 | 386 | | strip_abs_vars u = [] : (string*typ) list; | 
| 387 | ||
| 388 | ||
| 389 | fun strip_qnt_body qnt = | |
| 390 | let fun strip(tm as Const(c,_)$Abs(_,_,t)) = if c=qnt then strip t else tm | |
| 391 | | strip t = t | |
| 392 | in strip end; | |
| 393 | ||
| 394 | fun strip_qnt_vars qnt = | |
| 395 | let fun strip(Const(c,_)$Abs(a,T,t)) = if c=qnt then (a,T)::strip t else [] | |
| 396 | | strip t = [] : (string*typ) list | |
| 397 | in strip end; | |
| 398 | ||
| 399 | ||
| 400 | (* maps (f, [t1,...,tn]) to f(t1,...,tn) *) | |
| 15570 | 401 | val list_comb : term * term list -> term = Library.foldl (op $); | 
| 0 | 402 | |
| 403 | ||
| 404 | (* maps f(t1,...,tn) to (f, [t1,...,tn]) ; naturally tail-recursive*) | |
| 13000 | 405 | fun strip_comb u : term * term list = | 
| 0 | 406 | let fun stripc (f$t, ts) = stripc (f, t::ts) | 
| 13000 | 407 | | stripc x = x | 
| 0 | 408 | in stripc(u,[]) end; | 
| 409 | ||
| 410 | ||
| 411 | (* maps f(t1,...,tn) to f , which is never a combination *) | |
| 412 | fun head_of (f$t) = head_of f | |
| 413 | | head_of u = u; | |
| 414 | ||
| 21493 | 415 | fun head_name_of tm = | 
| 416 | (case head_of tm of | |
| 417 | t as Const (c, _) => | |
| 418 | if NameSpace.is_qualified c then c | |
| 419 |       else raise TERM ("Malformed constant name", [t])
 | |
| 420 | | t as Free (x, _) => | |
| 421 | if not (NameSpace.is_qualified x) then x | |
| 422 |       else raise TERM ("Malformed fixed variable name", [t])
 | |
| 423 |   | t => raise TERM ("No fixed head of term", [t]));
 | |
| 0 | 424 | |
| 16599 | 425 | (*number of atoms and abstractions in a term*) | 
| 426 | fun size_of_term tm = | |
| 427 | let | |
| 16678 | 428 | fun add_size (t $ u, n) = add_size (t, add_size (u, n)) | 
| 429 | | add_size (Abs (_ ,_, t), n) = add_size (t, n + 1) | |
| 430 | | add_size (_, n) = n + 1; | |
| 431 | in add_size (tm, 0) end; | |
| 0 | 432 | |
| 18847 | 433 | fun map_atyps f (Type (a, Ts)) = Type (a, map (map_atyps f) Ts) | 
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changeset | 434 | | map_atyps f T = f T; | 
| 18847 | 435 | |
| 436 | fun map_aterms f (t $ u) = map_aterms f t $ map_aterms f u | |
| 437 | | map_aterms f (Abs (a, T, t)) = Abs (a, T, map_aterms f t) | |
| 438 | | map_aterms f t = f t; | |
| 439 | ||
| 18981 | 440 | fun map_type_tvar f = map_atyps (fn TVar x => f x | T => T); | 
| 441 | fun map_type_tfree f = map_atyps (fn TFree x => f x | T => T); | |
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changeset | 442 | |
| 20548 
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changeset | 443 | fun map_types f = | 
| 16678 | 444 | let | 
| 445 | fun map_aux (Const (a, T)) = Const (a, f T) | |
| 446 | | map_aux (Free (a, T)) = Free (a, f T) | |
| 447 | | map_aux (Var (v, T)) = Var (v, f T) | |
| 448 | | map_aux (t as Bound _) = t | |
| 449 | | map_aux (Abs (a, T, t)) = Abs (a, f T, map_aux t) | |
| 450 | | map_aux (t $ u) = map_aux t $ map_aux u; | |
| 451 | in map_aux end; | |
| 0 | 452 | |
| 453 | (* iterate a function over all types in a term *) | |
| 454 | fun it_term_types f = | |
| 455 | let fun iter(Const(_,T), a) = f(T,a) | |
| 456 | | iter(Free(_,T), a) = f(T,a) | |
| 457 | | iter(Var(_,T), a) = f(T,a) | |
| 458 | | iter(Abs(_,T,t), a) = iter(t,f(T,a)) | |
| 459 | | iter(f$u, a) = iter(f, iter(u, a)) | |
| 460 | | iter(Bound _, a) = a | |
| 461 | in iter end | |
| 462 | ||
| 463 | ||
| 16943 | 464 | (* fold types and terms *) | 
| 465 | ||
| 466 | (*fold atoms of type*) | |
| 467 | fun fold_atyps f (Type (_, Ts)) = fold (fold_atyps f) Ts | |
| 468 | | fold_atyps f T = f T; | |
| 469 | ||
| 470 | (*fold atoms of term*) | |
| 471 | fun fold_aterms f (t $ u) = fold_aterms f t #> fold_aterms f u | |
| 472 | | fold_aterms f (Abs (_, _, t)) = fold_aterms f t | |
| 473 | | fold_aterms f a = f a; | |
| 474 | ||
| 475 | (*fold types of term*) | |
| 476 | fun fold_term_types f (t as Const (_, T)) = f t T | |
| 477 | | fold_term_types f (t as Free (_, T)) = f t T | |
| 478 | | fold_term_types f (t as Var (_, T)) = f t T | |
| 479 | | fold_term_types f (Bound _) = I | |
| 480 | | fold_term_types f (t as Abs (_, T, b)) = f t T #> fold_term_types f b | |
| 481 | | fold_term_types f (t $ u) = fold_term_types f t #> fold_term_types f u; | |
| 482 | ||
| 483 | fun fold_types f = fold_term_types (K f); | |
| 484 | ||
| 24483 | 485 | fun replace_types (Const (c, _)) (T :: Ts) = (Const (c, T), Ts) | 
| 486 | | replace_types (Free (x, _)) (T :: Ts) = (Free (x, T), Ts) | |
| 487 | | replace_types (Var (xi, _)) (T :: Ts) = (Var (xi, T), Ts) | |
| 488 | | replace_types (Bound i) Ts = (Bound i, Ts) | |
| 489 | | replace_types (Abs (x, _, b)) (T :: Ts) = | |
| 490 | let val (b', Ts') = replace_types b Ts | |
| 491 | in (Abs (x, T, b'), Ts') end | |
| 492 | | replace_types (t $ u) Ts = | |
| 493 | let | |
| 494 | val (t', Ts') = replace_types t Ts; | |
| 495 | val (u', Ts'') = replace_types u Ts'; | |
| 496 | in (t' $ u', Ts'') end; | |
| 497 | ||
| 498 | fun burrow_types f ts = | |
| 499 | let | |
| 500 | val Ts = rev (fold (fold_types cons) ts []); | |
| 501 | val Ts' = f Ts; | |
| 502 | val (ts', []) = fold_map replace_types ts Ts'; | |
| 503 | in ts' end; | |
| 504 | ||
| 16943 | 505 | (*collect variables*) | 
| 506 | val add_tvarsT = fold_atyps (fn TVar v => insert (op =) v | _ => I); | |
| 507 | val add_tvars = fold_types add_tvarsT; | |
| 508 | val add_vars = fold_aterms (fn Var v => insert (op =) v | _ => I); | |
| 20199 | 509 | val add_varnames = fold_aterms (fn Var (xi, _) => insert (op =) xi | _ => I); | 
| 16943 | 510 | val add_tfreesT = fold_atyps (fn TFree v => insert (op =) v | _ => I); | 
| 511 | val add_tfrees = fold_types add_tfreesT; | |
| 512 | val add_frees = fold_aterms (fn Free v => insert (op =) v | _ => I); | |
| 513 | ||
| 21682 | 514 | (*extra type variables in a term, not covered by the type*) | 
| 515 | fun hidden_polymorphism t T = | |
| 516 | let | |
| 517 | val tvarsT = add_tvarsT T []; | |
| 518 | val extra_tvars = fold_types (fold_atyps | |
| 519 | (fn TVar v => if member (op =) tvarsT v then I else insert (op =) v | _ => I)) t []; | |
| 520 | in extra_tvars end; | |
| 521 | ||
| 16943 | 522 | |
| 16678 | 523 | (** Comparing terms, types, sorts etc. **) | 
| 16537 | 524 | |
| 20511 | 525 | (* alpha equivalence -- tuned for equalities *) | 
| 526 | ||
| 527 | fun tm1 aconv tm2 = | |
| 528 | pointer_eq (tm1, tm2) orelse | |
| 529 | (case (tm1, tm2) of | |
| 530 | (t1 $ u1, t2 $ u2) => t1 aconv t2 andalso u1 aconv u2 | |
| 531 | | (Abs (_, T1, t1), Abs (_, T2, t2)) => t1 aconv t2 andalso T1 = T2 | |
| 532 | | (a1, a2) => a1 = a2); | |
| 533 | ||
| 534 | ||
| 21797 | 535 | (* equivalence up to renaming of types variables *) | 
| 536 | ||
| 537 | local | |
| 538 | ||
| 539 | val invent_names = Name.invents Name.context "'a"; | |
| 540 | ||
| 541 | fun standard_types t = | |
| 542 | let | |
| 543 | val tfrees = add_tfrees t []; | |
| 544 | val tvars = add_tvars t []; | |
| 545 | val env1 = map2 (fn (a, S) => fn a' => (TFree (a, S), TFree (a', []))) | |
| 546 | tfrees (invent_names (length tfrees)); | |
| 547 | val env2 = map2 (fn ((a, i), S) => fn a' => (TVar ((a, i), S), TVar ((a', 0), []))) | |
| 548 | tvars (invent_names (length tvars)); | |
| 549 | in map_types (map_atyps (perhaps (AList.lookup (op =) (env1 @ env2)))) t end; | |
| 550 | ||
| 551 | in | |
| 552 | ||
| 553 | val equiv_types = op aconv o pairself standard_types; | |
| 554 | ||
| 555 | end; | |
| 556 | ||
| 557 | ||
| 20511 | 558 | (* fast syntactic ordering -- tuned for inequalities *) | 
| 16678 | 559 | |
| 560 | fun fast_indexname_ord ((x, i), (y, j)) = | |
| 561 | (case int_ord (i, j) of EQUAL => fast_string_ord (x, y) | ord => ord); | |
| 16537 | 562 | |
| 16599 | 563 | fun sort_ord SS = | 
| 564 | if pointer_eq SS then EQUAL | |
| 16990 | 565 | else dict_ord fast_string_ord SS; | 
| 16678 | 566 | |
| 567 | local | |
| 16537 | 568 | |
| 16678 | 569 | fun cons_nr (TVar _) = 0 | 
| 570 | | cons_nr (TFree _) = 1 | |
| 571 | | cons_nr (Type _) = 2; | |
| 16537 | 572 | |
| 16678 | 573 | in | 
| 16537 | 574 | |
| 575 | fun typ_ord TU = | |
| 576 | if pointer_eq TU then EQUAL | |
| 577 | else | |
| 578 | (case TU of | |
| 16678 | 579 | (Type (a, Ts), Type (b, Us)) => | 
| 16990 | 580 | (case fast_string_ord (a, b) of EQUAL => dict_ord typ_ord (Ts, Us) | ord => ord) | 
| 16678 | 581 | | (TFree (a, S), TFree (b, S')) => | 
| 582 | (case fast_string_ord (a, b) of EQUAL => sort_ord (S, S') | ord => ord) | |
| 583 | | (TVar (xi, S), TVar (yj, S')) => | |
| 584 | (case fast_indexname_ord (xi, yj) of EQUAL => sort_ord (S, S') | ord => ord) | |
| 585 | | (T, U) => int_ord (cons_nr T, cons_nr U)); | |
| 586 | ||
| 587 | end; | |
| 588 | ||
| 589 | local | |
| 590 | ||
| 591 | fun cons_nr (Const _) = 0 | |
| 592 | | cons_nr (Free _) = 1 | |
| 593 | | cons_nr (Var _) = 2 | |
| 594 | | cons_nr (Bound _) = 3 | |
| 595 | | cons_nr (Abs _) = 4 | |
| 596 | | cons_nr (_ $ _) = 5; | |
| 597 | ||
| 598 | fun struct_ord (Abs (_, _, t), Abs (_, _, u)) = struct_ord (t, u) | |
| 599 | | struct_ord (t1 $ t2, u1 $ u2) = | |
| 600 | (case struct_ord (t1, u1) of EQUAL => struct_ord (t2, u2) | ord => ord) | |
| 601 | | struct_ord (t, u) = int_ord (cons_nr t, cons_nr u); | |
| 602 | ||
| 603 | fun atoms_ord (Abs (_, _, t), Abs (_, _, u)) = atoms_ord (t, u) | |
| 604 | | atoms_ord (t1 $ t2, u1 $ u2) = | |
| 605 | (case atoms_ord (t1, u1) of EQUAL => atoms_ord (t2, u2) | ord => ord) | |
| 606 | | atoms_ord (Const (a, _), Const (b, _)) = fast_string_ord (a, b) | |
| 607 | | atoms_ord (Free (x, _), Free (y, _)) = fast_string_ord (x, y) | |
| 608 | | atoms_ord (Var (xi, _), Var (yj, _)) = fast_indexname_ord (xi, yj) | |
| 609 | | atoms_ord (Bound i, Bound j) = int_ord (i, j) | |
| 610 | | atoms_ord _ = sys_error "atoms_ord"; | |
| 611 | ||
| 612 | fun types_ord (Abs (_, T, t), Abs (_, U, u)) = | |
| 613 | (case typ_ord (T, U) of EQUAL => types_ord (t, u) | ord => ord) | |
| 614 | | types_ord (t1 $ t2, u1 $ u2) = | |
| 615 | (case types_ord (t1, u1) of EQUAL => types_ord (t2, u2) | ord => ord) | |
| 616 | | types_ord (Const (_, T), Const (_, U)) = typ_ord (T, U) | |
| 617 | | types_ord (Free (_, T), Free (_, U)) = typ_ord (T, U) | |
| 618 | | types_ord (Var (_, T), Var (_, U)) = typ_ord (T, U) | |
| 619 | | types_ord (Bound _, Bound _) = EQUAL | |
| 620 | | types_ord _ = sys_error "types_ord"; | |
| 621 | ||
| 622 | in | |
| 623 | ||
| 624 | fun fast_term_ord tu = | |
| 625 | if pointer_eq tu then EQUAL | |
| 626 | else | |
| 627 | (case struct_ord tu of | |
| 628 | EQUAL => (case atoms_ord tu of EQUAL => types_ord tu | ord => ord) | |
| 629 | | ord => ord); | |
| 630 | ||
| 631 | structure Vartab = TableFun(type key = indexname val ord = fast_indexname_ord); | |
| 632 | structure Typtab = TableFun(type key = typ val ord = typ_ord); | |
| 633 | structure Termtab = TableFun(type key = term val ord = fast_term_ord); | |
| 634 | ||
| 635 | end; | |
| 16537 | 636 | |
| 637 | ||
| 638 | (* term_ord *) | |
| 639 | ||
| 640 | (*a linear well-founded AC-compatible ordering for terms: | |
| 641 | s < t <=> 1. size(s) < size(t) or | |
| 642 | 2. size(s) = size(t) and s=f(...) and t=g(...) and f<g or | |
| 643 | 3. size(s) = size(t) and s=f(s1..sn) and t=f(t1..tn) and | |
| 644 | (s1..sn) < (t1..tn) (lexicographically)*) | |
| 16678 | 645 | |
| 646 | fun indexname_ord ((x, i), (y, j)) = | |
| 647 | (case int_ord (i, j) of EQUAL => string_ord (x, y) | ord => ord); | |
| 648 | ||
| 16667 | 649 | local | 
| 650 | ||
| 651 | fun hd_depth (t $ _, n) = hd_depth (t, n + 1) | |
| 652 | | hd_depth p = p; | |
| 16537 | 653 | |
| 654 | fun dest_hd (Const (a, T)) = (((a, 0), T), 0) | |
| 655 | | dest_hd (Free (a, T)) = (((a, 0), T), 1) | |
| 656 | | dest_hd (Var v) = (v, 2) | |
| 657 |   | dest_hd (Bound i) = ((("", i), dummyT), 3)
 | |
| 658 |   | dest_hd (Abs (_, T, _)) = ((("", 0), T), 4);
 | |
| 659 | ||
| 16667 | 660 | in | 
| 661 | ||
| 16537 | 662 | fun term_ord tu = | 
| 663 | if pointer_eq tu then EQUAL | |
| 664 | else | |
| 665 | (case tu of | |
| 666 | (Abs (_, T, t), Abs(_, U, u)) => | |
| 667 | (case term_ord (t, u) of EQUAL => typ_ord (T, U) | ord => ord) | |
| 16667 | 668 | | (t, u) => | 
| 16537 | 669 | (case int_ord (size_of_term t, size_of_term u) of | 
| 670 | EQUAL => | |
| 16943 | 671 | (case prod_ord hd_ord int_ord (hd_depth (t, 0), hd_depth (u, 0)) of | 
| 672 | EQUAL => args_ord (t, u) | ord => ord) | |
| 16537 | 673 | | ord => ord)) | 
| 674 | and hd_ord (f, g) = | |
| 675 | prod_ord (prod_ord indexname_ord typ_ord) int_ord (dest_hd f, dest_hd g) | |
| 16667 | 676 | and args_ord (f $ t, g $ u) = | 
| 677 | (case args_ord (f, g) of EQUAL => term_ord (t, u) | ord => ord) | |
| 678 | | args_ord _ = EQUAL; | |
| 16537 | 679 | |
| 680 | fun termless tu = (term_ord tu = LESS); | |
| 681 | ||
| 16667 | 682 | end; | 
| 683 | ||
| 684 | ||
| 685 | (** Lexicographic path order on terms **) | |
| 686 | ||
| 687 | (* | |
| 16570 | 688 | See Baader & Nipkow, Term rewriting, CUP 1998. | 
| 689 | Without variables. Const, Var, Bound, Free and Abs are treated all as | |
| 690 | constants. | |
| 691 | ||
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changeset | 692 | f_ord maps terms to integers and serves two purposes: | 
| 16570 | 693 | - Predicate on constant symbols. Those that are not recognised by f_ord | 
| 694 | must be mapped to ~1. | |
| 695 | - Order on the recognised symbols. These must be mapped to distinct | |
| 696 | integers >= 0. | |
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changeset | 697 | The argument of f_ord is never an application. | 
| 16667 | 698 | *) | 
| 16570 | 699 | |
| 700 | local | |
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changeset | 701 | |
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changeset | 702 | fun unrecognized (Const (a, T)) = ((1, ((a, 0), T)), 0) | 
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changeset | 703 | | unrecognized (Free (a, T)) = ((1, ((a, 0), T)), 0) | 
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changeset | 704 | | unrecognized (Var v) = ((1, v), 1) | 
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changeset | 705 |   | unrecognized (Bound i) = ((1, (("", i), dummyT)), 2)
 | 
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changeset | 706 |   | unrecognized (Abs (_, T, _)) = ((1, (("", 0), T)), 3);
 | 
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changeset | 707 | |
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changeset | 708 | fun dest_hd f_ord t = | 
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changeset | 709 | let val ord = f_ord t in | 
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changeset | 710 |         if ord = ~1 then unrecognized t else ((0, (("", ord), fastype_of t)), 0)
 | 
| 16570 | 711 | end | 
| 712 | ||
| 713 | fun term_lpo f_ord (s, t) = | |
| 714 | let val (f, ss) = strip_comb s and (g, ts) = strip_comb t in | |
| 715 | if forall (fn si => term_lpo f_ord (si, t) = LESS) ss | |
| 716 | then case hd_ord f_ord (f, g) of | |
| 16667 | 717 | GREATER => | 
| 718 | if forall (fn ti => term_lpo f_ord (s, ti) = GREATER) ts | |
| 719 | then GREATER else LESS | |
| 16570 | 720 | | EQUAL => | 
| 16667 | 721 | if forall (fn ti => term_lpo f_ord (s, ti) = GREATER) ts | 
| 722 | then list_ord (term_lpo f_ord) (ss, ts) | |
| 723 | else LESS | |
| 16570 | 724 | | LESS => LESS | 
| 725 | else GREATER | |
| 726 | end | |
| 727 | and hd_ord f_ord (f, g) = case (f, g) of | |
| 728 | (Abs (_, T, t), Abs (_, U, u)) => | |
| 729 | (case term_lpo f_ord (t, u) of EQUAL => typ_ord (T, U) | ord => ord) | |
| 730 | | (_, _) => prod_ord (prod_ord int_ord | |
| 731 | (prod_ord indexname_ord typ_ord)) int_ord | |
| 732 | (dest_hd f_ord f, dest_hd f_ord g) | |
| 733 | in | |
| 734 | val term_lpo = term_lpo | |
| 735 | end; | |
| 736 | ||
| 16537 | 737 | |
| 0 | 738 | (** Connectives of higher order logic **) | 
| 739 | ||
| 19394 | 740 | fun aT S = TFree ("'a", S);
 | 
| 741 | ||
| 375 | 742 | fun itselfT ty = Type ("itself", [ty]);
 | 
| 14854 | 743 | val a_itselfT = itselfT (TFree ("'a", []));
 | 
| 375 | 744 | |
| 0 | 745 | val propT : typ = Type("prop",[]);
 | 
| 746 | ||
| 747 | val implies = Const("==>", propT-->propT-->propT);
 | |
| 748 | ||
| 749 | fun all T = Const("all", (T-->propT)-->propT);
 | |
| 750 | ||
| 751 | fun equals T = Const("==", T-->T-->propT);
 | |
| 752 | ||
| 753 | (* maps !!x1...xn. t to t *) | |
| 13000 | 754 | fun strip_all_body (Const("all",_)$Abs(_,_,t))  =  strip_all_body t
 | 
| 0 | 755 | | strip_all_body t = t; | 
| 756 | ||
| 757 | (* maps !!x1...xn. t to [x1, ..., xn] *) | |
| 758 | fun strip_all_vars (Const("all",_)$Abs(a,T,t))  =
 | |
| 13000 | 759 | (a,T) :: strip_all_vars t | 
| 0 | 760 | | strip_all_vars t = [] : (string*typ) list; | 
| 761 | ||
| 762 | (*increments a term's non-local bound variables | |
| 763 | required when moving a term within abstractions | |
| 764 | inc is increment for bound variables | |
| 765 | lev is level at which a bound variable is considered 'loose'*) | |
| 13000 | 766 | fun incr_bv (inc, lev, u as Bound i) = if i>=lev then Bound(i+inc) else u | 
| 0 | 767 | | incr_bv (inc, lev, Abs(a,T,body)) = | 
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changeset | 768 | Abs(a, T, incr_bv(inc,lev+1,body)) | 
| 13000 | 769 | | incr_bv (inc, lev, f$t) = | 
| 0 | 770 | incr_bv(inc,lev,f) $ incr_bv(inc,lev,t) | 
| 771 | | incr_bv (inc, lev, u) = u; | |
| 772 | ||
| 773 | fun incr_boundvars 0 t = t | |
| 774 | | incr_boundvars inc t = incr_bv(inc,0,t); | |
| 775 | ||
| 12981 | 776 | (*Scan a pair of terms; while they are similar, | 
| 777 | accumulate corresponding bound vars in "al"*) | |
| 778 | fun match_bvs(Abs(x,_,s),Abs(y,_,t), al) = | |
| 779 | match_bvs(s, t, if x="" orelse y="" then al | |
| 780 | else (x,y)::al) | |
| 781 | | match_bvs(f$s, g$t, al) = match_bvs(f,g,match_bvs(s,t,al)) | |
| 782 | | match_bvs(_,_,al) = al; | |
| 783 | ||
| 784 | (* strip abstractions created by parameters *) | |
| 785 | fun match_bvars((s,t),al) = match_bvs(strip_abs_body s, strip_abs_body t, al); | |
| 786 | ||
| 22031 | 787 | fun map_abs_vars f (t $ u) = map_abs_vars f t $ map_abs_vars f u | 
| 788 | | map_abs_vars f (Abs (a, T, t)) = Abs (f a, T, map_abs_vars f t) | |
| 789 | | map_abs_vars f t = t; | |
| 790 | ||
| 12981 | 791 | fun rename_abs pat obj t = | 
| 792 | let | |
| 793 | val ren = match_bvs (pat, obj, []); | |
| 794 | fun ren_abs (Abs (x, T, b)) = | |
| 18942 | 795 | Abs (the_default x (AList.lookup (op =) ren x), T, ren_abs b) | 
| 12981 | 796 | | ren_abs (f $ t) = ren_abs f $ ren_abs t | 
| 797 | | ren_abs t = t | |
| 15531 | 798 | in if null ren then NONE else SOME (ren_abs t) end; | 
| 0 | 799 | |
| 800 | (*Accumulate all 'loose' bound vars referring to level 'lev' or beyond. | |
| 801 | (Bound 0) is loose at level 0 *) | |
| 13000 | 802 | fun add_loose_bnos (Bound i, lev, js) = | 
| 20854 | 803 | if i<lev then js else insert (op =) (i - lev) js | 
| 0 | 804 | | add_loose_bnos (Abs (_,_,t), lev, js) = add_loose_bnos (t, lev+1, js) | 
| 805 | | add_loose_bnos (f$t, lev, js) = | |
| 13000 | 806 | add_loose_bnos (f, lev, add_loose_bnos (t, lev, js)) | 
| 0 | 807 | | add_loose_bnos (_, _, js) = js; | 
| 808 | ||
| 809 | fun loose_bnos t = add_loose_bnos (t, 0, []); | |
| 810 | ||
| 811 | (* loose_bvar(t,k) iff t contains a 'loose' bound variable referring to | |
| 812 | level k or beyond. *) | |
| 813 | fun loose_bvar(Bound i,k) = i >= k | |
| 814 | | loose_bvar(f$t, k) = loose_bvar(f,k) orelse loose_bvar(t,k) | |
| 815 | | loose_bvar(Abs(_,_,t),k) = loose_bvar(t,k+1) | |
| 816 | | loose_bvar _ = false; | |
| 817 | ||
| 2792 | 818 | fun loose_bvar1(Bound i,k) = i = k | 
| 819 | | loose_bvar1(f$t, k) = loose_bvar1(f,k) orelse loose_bvar1(t,k) | |
| 820 | | loose_bvar1(Abs(_,_,t),k) = loose_bvar1(t,k+1) | |
| 821 | | loose_bvar1 _ = false; | |
| 0 | 822 | |
| 823 | (*Substitute arguments for loose bound variables. | |
| 824 | Beta-reduction of arg(n-1)...arg0 into t replacing (Bound i) with (argi). | |
| 4626 | 825 | Note that for ((%x y. c) a b), the bound vars in c are x=1 and y=0 | 
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changeset | 826 | and the appropriate call is subst_bounds([b,a], c) . | 
| 0 | 827 | Loose bound variables >=n are reduced by "n" to | 
| 828 | compensate for the disappearance of lambdas. | |
| 829 | *) | |
| 13000 | 830 | fun subst_bounds (args: term list, t) : term = | 
| 19065 | 831 | let | 
| 832 | exception SAME; | |
| 833 | val n = length args; | |
| 834 | fun subst (t as Bound i, lev) = | |
| 835 | (if i < lev then raise SAME (*var is locally bound*) | |
| 836 | else incr_boundvars lev (List.nth (args, i - lev)) | |
| 837 | handle Subscript => Bound (i - n)) (*loose: change it*) | |
| 838 | | subst (Abs (a, T, body), lev) = Abs (a, T, subst (body, lev + 1)) | |
| 839 | | subst (f $ t, lev) = | |
| 840 | (subst (f, lev) $ (subst (t, lev) handle SAME => t) handle SAME => f $ subst (t, lev)) | |
| 841 | | subst _ = raise SAME; | |
| 842 | in case args of [] => t | _ => (subst (t, 0) handle SAME => t) end; | |
| 0 | 843 | |
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changeset | 844 | (*Special case: one argument*) | 
| 13000 | 845 | fun subst_bound (arg, t) : term = | 
| 19065 | 846 | let | 
| 847 | exception SAME; | |
| 848 | fun subst (Bound i, lev) = | |
| 849 | if i < lev then raise SAME (*var is locally bound*) | |
| 850 | else if i = lev then incr_boundvars lev arg | |
| 851 | else Bound (i - 1) (*loose: change it*) | |
| 852 | | subst (Abs (a, T, body), lev) = Abs (a, T, subst (body, lev + 1)) | |
| 853 | | subst (f $ t, lev) = | |
| 854 | (subst (f, lev) $ (subst (t, lev) handle SAME => t) handle SAME => f $ subst (t, lev)) | |
| 855 | | subst _ = raise SAME; | |
| 856 | in subst (t, 0) handle SAME => t end; | |
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changeset | 857 | |
| 0 | 858 | (*beta-reduce if possible, else form application*) | 
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changeset | 859 | fun betapply (Abs(_,_,t), u) = subst_bound (u,t) | 
| 0 | 860 | | betapply (f,u) = f$u; | 
| 861 | ||
| 18183 | 862 | val betapplys = Library.foldl betapply; | 
| 863 | ||
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changeset | 864 | |
| 20109 | 865 | (*unfolding abstractions with substitution | 
| 866 | of bound variables and implicit eta-expansion*) | |
| 867 | fun strip_abs_eta k t = | |
| 868 | let | |
| 20122 | 869 | val used = fold_aterms (fn Free (v, _) => Name.declare v | _ => I) t Name.context; | 
| 20109 | 870 | fun strip_abs t (0, used) = (([], t), (0, used)) | 
| 871 | | strip_abs (Abs (v, T, t)) (k, used) = | |
| 872 | let | |
| 20122 | 873 | val ([v'], used') = Name.variants [v] used; | 
| 21013 | 874 | val t' = subst_bound (Free (v', T), t); | 
| 20122 | 875 | val ((vs, t''), (k', used'')) = strip_abs t' (k - 1, used'); | 
| 876 | in (((v', T) :: vs, t''), (k', used'')) end | |
| 20109 | 877 | | strip_abs t (k, used) = (([], t), (k, used)); | 
| 878 | fun expand_eta [] t _ = ([], t) | |
| 879 | | expand_eta (T::Ts) t used = | |
| 880 | let | |
| 20122 | 881 | val ([v], used') = Name.variants [""] used; | 
| 882 | val (vs, t') = expand_eta Ts (t $ Free (v, T)) used'; | |
| 20109 | 883 | in ((v, T) :: vs, t') end; | 
| 884 | val ((vs1, t'), (k', used')) = strip_abs t (k, used); | |
| 885 | val Ts = (fst o chop k' o fst o strip_type o fastype_of) t'; | |
| 886 | val (vs2, t'') = expand_eta Ts t' used'; | |
| 887 | in (vs1 @ vs2, t'') end; | |
| 888 | ||
| 889 | ||
| 20199 | 890 | (* comparing variables *) | 
| 16882 | 891 | |
| 16724 | 892 | fun eq_ix ((x, i): indexname, (y, j)) = i = j andalso x = y; | 
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changeset | 893 | |
| 16943 | 894 | fun eq_tvar ((xi, S: sort), (xi', S')) = eq_ix (xi, xi') andalso S = S'; | 
| 895 | fun eq_var ((xi, T: typ), (xi', T')) = eq_ix (xi, xi') andalso T = T'; | |
| 896 | ||
| 897 | val tvar_ord = prod_ord indexname_ord sort_ord; | |
| 898 | val var_ord = prod_ord indexname_ord typ_ord; | |
| 16882 | 899 | |
| 900 | ||
| 13000 | 901 | (*A fast unification filter: true unless the two terms cannot be unified. | 
| 0 | 902 | Terms must be NORMAL. Treats all Vars as distinct. *) | 
| 903 | fun could_unify (t,u) = | |
| 904 | let fun matchrands (f$t, g$u) = could_unify(t,u) andalso matchrands(f,g) | |
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changeset | 905 | | matchrands _ = true | 
| 0 | 906 | in case (head_of t , head_of u) of | 
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changeset | 907 | (_, Var _) => true | 
| 0 | 908 | | (Var _, _) => true | 
| 909 | | (Const(a,_), Const(b,_)) => a=b andalso matchrands(t,u) | |
| 910 | | (Free(a,_), Free(b,_)) => a=b andalso matchrands(t,u) | |
| 911 | | (Bound i, Bound j) => i=j andalso matchrands(t,u) | |
| 912 | | (Abs _, _) => true (*because of possible eta equality*) | |
| 913 | | (_, Abs _) => true | |
| 914 | | _ => false | |
| 915 | end; | |
| 916 | ||
| 917 | (*Substitute new for free occurrences of old in a term*) | |
| 918 | fun subst_free [] = (fn t=>t) | |
| 919 | | subst_free pairs = | |
| 13000 | 920 | let fun substf u = | 
| 17314 | 921 | case AList.lookup (op aconv) pairs u of | 
| 15531 | 922 | SOME u' => u' | 
| 923 | | NONE => (case u of Abs(a,T,t) => Abs(a, T, substf t) | |
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changeset | 924 | | t$u' => substf t $ substf u' | 
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changeset | 925 | | _ => u) | 
| 0 | 926 | in substf end; | 
| 927 | ||
| 13000 | 928 | (*Abstraction of the term "body" over its occurrences of v, | 
| 0 | 929 | which must contain no loose bound variables. | 
| 930 | The resulting term is ready to become the body of an Abs.*) | |
| 16882 | 931 | fun abstract_over (v, body) = | 
| 932 | let | |
| 16990 | 933 | exception SAME; | 
| 934 | fun abs lev tm = | |
| 935 | if v aconv tm then Bound lev | |
| 16882 | 936 | else | 
| 16990 | 937 | (case tm of | 
| 938 | Abs (a, T, t) => Abs (a, T, abs (lev + 1) t) | |
| 939 | | t $ u => (abs lev t $ (abs lev u handle SAME => u) handle SAME => t $ abs lev u) | |
| 940 | | _ => raise SAME); | |
| 941 | in abs 0 body handle SAME => body end; | |
| 0 | 942 | |
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changeset | 943 | fun lambda v t = | 
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changeset | 944 | let val x = | 
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changeset | 945 | (case v of | 
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changeset | 946 | Const (x, _) => NameSpace.base x | 
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changeset | 947 | | Free (x, _) => x | 
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changeset | 948 | | Var ((x, _), _) => x | 
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changeset | 949 | | _ => "uu") | 
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changeset | 950 | in Abs (x, fastype_of v, abstract_over (v, t)) end; | 
| 0 | 951 | |
| 952 | (*Form an abstraction over a free variable.*) | |
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changeset | 953 | fun absfree (a,T,body) = Abs (a, T, abstract_over (Free (a, T), body)); | 
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changeset | 954 | fun absdummy (T, body) = Abs (Name.internal "uu", T, body); | 
| 0 | 955 | |
| 956 | (*Abstraction over a list of free variables*) | |
| 957 | fun list_abs_free ([ ] , t) = t | |
| 13000 | 958 | | list_abs_free ((a,T)::vars, t) = | 
| 0 | 959 | absfree(a, T, list_abs_free(vars,t)); | 
| 960 | ||
| 961 | (*Quantification over a list of free variables*) | |
| 962 | fun list_all_free ([], t: term) = t | |
| 13000 | 963 | | list_all_free ((a,T)::vars, t) = | 
| 0 | 964 | (all T) $ (absfree(a, T, list_all_free(vars,t))); | 
| 965 | ||
| 966 | (*Quantification over a list of variables (already bound in body) *) | |
| 967 | fun list_all ([], t) = t | |
| 13000 | 968 | | list_all ((a,T)::vars, t) = | 
| 0 | 969 | (all T) $ (Abs(a, T, list_all(vars,t))); | 
| 970 | ||
| 16678 | 971 | (*Replace the ATOMIC term ti by ui; inst = [(t1,u1), ..., (tn,un)]. | 
| 0 | 972 | A simultaneous substitution: [ (a,b), (b,a) ] swaps a and b. *) | 
| 16678 | 973 | fun subst_atomic [] tm = tm | 
| 974 | | subst_atomic inst tm = | |
| 975 | let | |
| 976 | fun subst (Abs (a, T, body)) = Abs (a, T, subst body) | |
| 977 | | subst (t $ u) = subst t $ subst u | |
| 18942 | 978 | | subst t = the_default t (AList.lookup (op aconv) inst t); | 
| 16678 | 979 | in subst tm end; | 
| 0 | 980 | |
| 16678 | 981 | (*Replace the ATOMIC type Ti by Ui; inst = [(T1,U1), ..., (Tn,Un)].*) | 
| 982 | fun typ_subst_atomic [] ty = ty | |
| 983 | | typ_subst_atomic inst ty = | |
| 984 | let | |
| 985 | fun subst (Type (a, Ts)) = Type (a, map subst Ts) | |
| 18942 | 986 | | subst T = the_default T (AList.lookup (op = : typ * typ -> bool) inst T); | 
| 16678 | 987 | in subst ty end; | 
| 15797 | 988 | |
| 16678 | 989 | fun subst_atomic_types [] tm = tm | 
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changeset | 990 | | subst_atomic_types inst tm = map_types (typ_subst_atomic inst) tm; | 
| 16678 | 991 | |
| 992 | fun typ_subst_TVars [] ty = ty | |
| 993 | | typ_subst_TVars inst ty = | |
| 994 | let | |
| 995 | fun subst (Type (a, Ts)) = Type (a, map subst Ts) | |
| 18942 | 996 | | subst (T as TVar (xi, _)) = the_default T (AList.lookup (op =) inst xi) | 
| 16678 | 997 | | subst T = T; | 
| 998 | in subst ty end; | |
| 0 | 999 | |
| 16678 | 1000 | fun subst_TVars [] tm = tm | 
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changeset | 1001 | | subst_TVars inst tm = map_types (typ_subst_TVars inst) tm; | 
| 0 | 1002 | |
| 16678 | 1003 | fun subst_Vars [] tm = tm | 
| 1004 | | subst_Vars inst tm = | |
| 1005 | let | |
| 18942 | 1006 | fun subst (t as Var (xi, _)) = the_default t (AList.lookup (op =) inst xi) | 
| 16678 | 1007 | | subst (Abs (a, T, t)) = Abs (a, T, subst t) | 
| 1008 | | subst (t $ u) = subst t $ subst u | |
| 1009 | | subst t = t; | |
| 1010 | in subst tm end; | |
| 0 | 1011 | |
| 16678 | 1012 | fun subst_vars ([], []) tm = tm | 
| 1013 | | subst_vars ([], inst) tm = subst_Vars inst tm | |
| 1014 | | subst_vars (instT, inst) tm = | |
| 1015 | let | |
| 1016 | fun subst (Const (a, T)) = Const (a, typ_subst_TVars instT T) | |
| 1017 | | subst (Free (a, T)) = Free (a, typ_subst_TVars instT T) | |
| 1018 | | subst (t as Var (xi, T)) = | |
| 17271 | 1019 | (case AList.lookup (op =) inst xi of | 
| 16678 | 1020 | NONE => Var (xi, typ_subst_TVars instT T) | 
| 1021 | | SOME t => t) | |
| 1022 | | subst (t as Bound _) = t | |
| 1023 | | subst (Abs (a, T, t)) = Abs (a, typ_subst_TVars instT T, subst t) | |
| 1024 | | subst (t $ u) = subst t $ subst u; | |
| 1025 | in subst tm end; | |
| 0 | 1026 | |
| 1027 | ||
| 15573 | 1028 | (** Identifying first-order terms **) | 
| 1029 | ||
| 20199 | 1030 | (*Differs from proofterm/is_fun in its treatment of TVar*) | 
| 1031 | fun is_funtype (Type("fun",[_,_])) = true
 | |
| 1032 | | is_funtype _ = false; | |
| 1033 | ||
| 15573 | 1034 | (*Argument Ts is a reverse list of binder types, needed if term t contains Bound vars*) | 
| 1035 | fun has_not_funtype Ts t = not (is_funtype (fastype_of1 (Ts,t))); | |
| 1036 | ||
| 16537 | 1037 | (*First order means in all terms of the form f(t1,...,tn) no argument has a | 
| 16589 | 1038 | function type. The supplied quantifiers are excluded: their argument always | 
| 1039 | has a function type through a recursive call into its body.*) | |
| 16667 | 1040 | fun is_first_order quants = | 
| 16589 | 1041 | let fun first_order1 Ts (Abs (_,T,body)) = first_order1 (T::Ts) body | 
| 16667 | 1042 | | first_order1 Ts (Const(q,_) $ Abs(a,T,body)) = | 
| 20664 | 1043 | member (op =) quants q andalso (*it is a known quantifier*) | 
| 16589 | 1044 | not (is_funtype T) andalso first_order1 (T::Ts) body | 
| 16667 | 1045 | | first_order1 Ts t = | 
| 1046 | case strip_comb t of | |
| 1047 | (Var _, ts) => forall (first_order1 Ts andf has_not_funtype Ts) ts | |
| 1048 | | (Free _, ts) => forall (first_order1 Ts andf has_not_funtype Ts) ts | |
| 1049 | | (Const _, ts) => forall (first_order1 Ts andf has_not_funtype Ts) ts | |
| 1050 | | (Bound _, ts) => forall (first_order1 Ts andf has_not_funtype Ts) ts | |
| 1051 | | (Abs _, ts) => false (*not in beta-normal form*) | |
| 1052 | | _ => error "first_order: unexpected case" | |
| 16589 | 1053 | in first_order1 [] end; | 
| 15573 | 1054 | |
| 16710 | 1055 | |
| 16990 | 1056 | (* maximum index of typs and terms *) | 
| 0 | 1057 | |
| 16710 | 1058 | fun maxidx_typ (TVar ((_, j), _)) i = Int.max (i, j) | 
| 1059 | | maxidx_typ (Type (_, Ts)) i = maxidx_typs Ts i | |
| 1060 | | maxidx_typ (TFree _) i = i | |
| 1061 | and maxidx_typs [] i = i | |
| 1062 | | maxidx_typs (T :: Ts) i = maxidx_typs Ts (maxidx_typ T i); | |
| 0 | 1063 | |
| 16710 | 1064 | fun maxidx_term (Var ((_, j), T)) i = maxidx_typ T (Int.max (i, j)) | 
| 1065 | | maxidx_term (Const (_, T)) i = maxidx_typ T i | |
| 1066 | | maxidx_term (Free (_, T)) i = maxidx_typ T i | |
| 1067 | | maxidx_term (Bound _) i = i | |
| 1068 | | maxidx_term (Abs (_, T, t)) i = maxidx_term t (maxidx_typ T i) | |
| 1069 | | maxidx_term (t $ u) i = maxidx_term u (maxidx_term t i); | |
| 0 | 1070 | |
| 16710 | 1071 | fun maxidx_of_typ T = maxidx_typ T ~1; | 
| 1072 | fun maxidx_of_typs Ts = maxidx_typs Ts ~1; | |
| 1073 | fun maxidx_of_term t = maxidx_term t ~1; | |
| 13665 | 1074 | |
| 0 | 1075 | |
| 1076 | ||
| 1077 | (**** Syntax-related declarations ****) | |
| 1078 | ||
| 19909 | 1079 | (* substructure *) | 
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changeset | 1080 | |
| 19909 | 1081 | fun exists_subtype P = | 
| 1082 | let | |
| 1083 | fun ex ty = P ty orelse | |
| 1084 | (case ty of Type (_, Ts) => exists ex Ts | _ => false); | |
| 1085 | in ex end; | |
| 13646 | 1086 | |
| 20531 | 1087 | fun exists_type P = | 
| 1088 | let | |
| 1089 | fun ex (Const (_, T)) = P T | |
| 1090 | | ex (Free (_, T)) = P T | |
| 1091 | | ex (Var (_, T)) = P T | |
| 1092 | | ex (Bound _) = false | |
| 1093 | | ex (Abs (_, T, t)) = P T orelse ex t | |
| 1094 | | ex (t $ u) = ex t orelse ex u; | |
| 1095 | in ex end; | |
| 1096 | ||
| 16943 | 1097 | fun exists_subterm P = | 
| 1098 | let | |
| 1099 | fun ex tm = P tm orelse | |
| 1100 | (case tm of | |
| 1101 | t $ u => ex t orelse ex u | |
| 1102 | | Abs (_, _, t) => ex t | |
| 1103 | | _ => false); | |
| 1104 | in ex end; | |
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changeset | 1105 | |
| 19909 | 1106 | |
| 1107 | (** Consts etc. **) | |
| 1108 | ||
| 1109 | fun add_term_consts (Const (c, _), cs) = insert (op =) c cs | |
| 1110 | | add_term_consts (t $ u, cs) = add_term_consts (t, add_term_consts (u, cs)) | |
| 1111 | | add_term_consts (Abs (_, _, t), cs) = add_term_consts (t, cs) | |
| 1112 | | add_term_consts (_, cs) = cs; | |
| 1113 | ||
| 1114 | fun term_consts t = add_term_consts(t,[]); | |
| 1115 | ||
| 16943 | 1116 | fun exists_Const P = exists_subterm (fn Const c => P c | _ => false); | 
| 4631 | 1117 | |
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changeset | 1118 | |
| 0 | 1119 | (** TFrees and TVars **) | 
| 1120 | ||
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changeset | 1121 | (*Accumulates the names of Frees in the term, suppressing duplicates.*) | 
| 20854 | 1122 | fun add_term_free_names (Free(a,_), bs) = insert (op =) a bs | 
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changeset | 1123 | | add_term_free_names (f$u, bs) = add_term_free_names (f, add_term_free_names(u, bs)) | 
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changeset | 1124 | | add_term_free_names (Abs(_,_,t), bs) = add_term_free_names(t,bs) | 
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changeset | 1125 | | add_term_free_names (_, bs) = bs; | 
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changeset | 1126 | |
| 0 | 1127 | (*Accumulates the names in the term, suppressing duplicates. | 
| 1128 | Includes Frees and Consts. For choosing unambiguous bound var names.*) | |
| 20854 | 1129 | fun add_term_names (Const(a,_), bs) = insert (op =) (NameSpace.base a) bs | 
| 1130 | | add_term_names (Free(a,_), bs) = insert (op =) a bs | |
| 0 | 1131 | | add_term_names (f$u, bs) = add_term_names (f, add_term_names(u, bs)) | 
| 1132 | | add_term_names (Abs(_,_,t), bs) = add_term_names(t,bs) | |
| 1133 | | add_term_names (_, bs) = bs; | |
| 1134 | ||
| 1135 | (*Accumulates the TVars in a type, suppressing duplicates. *) | |
| 23178 | 1136 | fun add_typ_tvars(Type(_,Ts),vs) = List.foldr add_typ_tvars vs Ts | 
| 0 | 1137 | | add_typ_tvars(TFree(_),vs) = vs | 
| 16294 | 1138 | | add_typ_tvars(TVar(v),vs) = insert (op =) v vs; | 
| 0 | 1139 | |
| 1140 | (*Accumulates the TFrees in a type, suppressing duplicates. *) | |
| 23178 | 1141 | fun add_typ_tfree_names(Type(_,Ts),fs) = List.foldr add_typ_tfree_names fs Ts | 
| 20854 | 1142 | | add_typ_tfree_names(TFree(f,_),fs) = insert (op =) f fs | 
| 0 | 1143 | | add_typ_tfree_names(TVar(_),fs) = fs; | 
| 1144 | ||
| 23178 | 1145 | fun add_typ_tfrees(Type(_,Ts),fs) = List.foldr add_typ_tfrees fs Ts | 
| 16294 | 1146 | | add_typ_tfrees(TFree(f),fs) = insert (op =) f fs | 
| 0 | 1147 | | add_typ_tfrees(TVar(_),fs) = fs; | 
| 1148 | ||
| 23178 | 1149 | fun add_typ_varnames(Type(_,Ts),nms) = List.foldr add_typ_varnames nms Ts | 
| 20854 | 1150 | | add_typ_varnames(TFree(nm,_),nms) = insert (op =) nm nms | 
| 1151 | | add_typ_varnames(TVar((nm,_),_),nms) = insert (op =) nm nms; | |
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changeset | 1152 | |
| 0 | 1153 | (*Accumulates the TVars in a term, suppressing duplicates. *) | 
| 1154 | val add_term_tvars = it_term_types add_typ_tvars; | |
| 1155 | ||
| 1156 | (*Accumulates the TFrees in a term, suppressing duplicates. *) | |
| 1157 | val add_term_tfrees = it_term_types add_typ_tfrees; | |
| 1158 | val add_term_tfree_names = it_term_types add_typ_tfree_names; | |
| 1159 | ||
| 1160 | (*Non-list versions*) | |
| 1161 | fun typ_tfrees T = add_typ_tfrees(T,[]); | |
| 1162 | fun typ_tvars T = add_typ_tvars(T,[]); | |
| 1163 | fun term_tfrees t = add_term_tfrees(t,[]); | |
| 1164 | fun term_tvars t = add_term_tvars(t,[]); | |
| 1165 | ||
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changeset | 1166 | (*special code to enforce left-to-right collection of TVar-indexnames*) | 
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changeset | 1167 | |
| 15570 | 1168 | fun add_typ_ixns(ixns,Type(_,Ts)) = Library.foldl add_typ_ixns (ixns,Ts) | 
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changeset | 1169 | | add_typ_ixns(ixns,TVar(ixn,_)) = if member (op =) ixns ixn then ixns | 
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changeset | 1170 | else ixns@[ixn] | 
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changeset | 1171 | | add_typ_ixns(ixns,TFree(_)) = ixns; | 
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changeset | 1172 | |
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changeset | 1173 | fun add_term_tvar_ixns(Const(_,T),ixns) = add_typ_ixns(ixns,T) | 
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changeset | 1174 | | add_term_tvar_ixns(Free(_,T),ixns) = add_typ_ixns(ixns,T) | 
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changeset | 1175 | | add_term_tvar_ixns(Var(_,T),ixns) = add_typ_ixns(ixns,T) | 
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changeset | 1176 | | add_term_tvar_ixns(Bound _,ixns) = ixns | 
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changeset | 1177 | | add_term_tvar_ixns(Abs(_,T,t),ixns) = | 
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changeset | 1178 | add_term_tvar_ixns(t,add_typ_ixns(ixns,T)) | 
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changeset | 1179 | | add_term_tvar_ixns(f$t,ixns) = | 
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changeset | 1180 | add_term_tvar_ixns(t,add_term_tvar_ixns(f,ixns)); | 
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changeset | 1181 | |
| 16537 | 1182 | |
| 0 | 1183 | (** Frees and Vars **) | 
| 1184 | ||
| 1185 | (*Accumulates the Vars in the term, suppressing duplicates*) | |
| 1186 | fun add_term_vars (t, vars: term list) = case t of | |
| 16990 | 1187 | Var _ => OrdList.insert term_ord t vars | 
| 0 | 1188 | | Abs (_,_,body) => add_term_vars(body,vars) | 
| 1189 | | f$t => add_term_vars (f, add_term_vars(t, vars)) | |
| 1190 | | _ => vars; | |
| 1191 | ||
| 1192 | fun term_vars t = add_term_vars(t,[]); | |
| 1193 | ||
| 1194 | (*Accumulates the Frees in the term, suppressing duplicates*) | |
| 1195 | fun add_term_frees (t, frees: term list) = case t of | |
| 16990 | 1196 | Free _ => OrdList.insert term_ord t frees | 
| 0 | 1197 | | Abs (_,_,body) => add_term_frees(body,frees) | 
| 1198 | | f$t => add_term_frees (f, add_term_frees(t, frees)) | |
| 1199 | | _ => frees; | |
| 1200 | ||
| 1201 | fun term_frees t = add_term_frees(t,[]); | |
| 1202 | ||
| 20199 | 1203 | |
| 1204 | (* dest abstraction *) | |
| 0 | 1205 | |
| 16678 | 1206 | fun dest_abs (x, T, body) = | 
| 1207 | let | |
| 1208 | fun name_clash (Free (y, _)) = (x = y) | |
| 1209 | | name_clash (t $ u) = name_clash t orelse name_clash u | |
| 1210 | | name_clash (Abs (_, _, t)) = name_clash t | |
| 1211 | | name_clash _ = false; | |
| 1212 | in | |
| 1213 | if name_clash body then | |
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changeset | 1214 | dest_abs (Name.variant [x] x, T, body) (*potentially slow, but rarely happens*) | 
| 16678 | 1215 | else (x, subst_bound (Free (x, T), body)) | 
| 1216 | end; | |
| 1217 | ||
| 20160 | 1218 | |
| 1219 | (* renaming variables *) | |
| 0 | 1220 | |
| 20239 | 1221 | fun declare_term_names tm = | 
| 1222 | fold_aterms | |
| 1223 | (fn Const (a, _) => Name.declare (NameSpace.base a) | |
| 1224 | | Free (a, _) => Name.declare a | |
| 1225 | | _ => I) tm #> | |
| 1226 | fold_types (fold_atyps (fn TFree (a, _) => Name.declare a | _ => I)) tm; | |
| 1227 | ||
| 20160 | 1228 | fun variant_frees t frees = | 
| 1229 | fst (Name.variants (map fst frees) (declare_term_names t Name.context)) ~~ map snd frees; | |
| 1230 | ||
| 1231 | fun rename_wrt_term t frees = rev (variant_frees t frees); (*reversed result!*) | |
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changeset | 1232 | |
| 1417 | 1233 | |
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changeset | 1234 | (* dummy patterns *) | 
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changeset | 1235 | |
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changeset | 1236 | val dummy_patternN = "dummy_pattern"; | 
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changeset | 1237 | |
| 18253 | 1238 | fun dummy_pattern T = Const (dummy_patternN, T); | 
| 1239 | ||
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changeset | 1240 | fun is_dummy_pattern (Const ("dummy_pattern", _)) = true
 | 
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changeset | 1241 | | is_dummy_pattern _ = false; | 
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changeset | 1242 | |
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changeset | 1243 | fun no_dummy_patterns tm = | 
| 16787 | 1244 | if not (fold_aterms (fn t => fn b => b orelse is_dummy_pattern t) tm false) then tm | 
| 9536 
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changeset | 1245 |   else raise TERM ("Illegal occurrence of '_' dummy pattern", [tm]);
 | 
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changeset | 1246 | |
| 11903 | 1247 | fun replace_dummy Ts (i, Const ("dummy_pattern", T)) =
 | 
| 1248 |       (i + 1, list_comb (Var (("_dummy_", i), Ts ---> T), map Bound (0 upto length Ts - 1)))
 | |
| 1249 | | replace_dummy Ts (i, Abs (x, T, t)) = | |
| 1250 | let val (i', t') = replace_dummy (T :: Ts) (i, t) | |
| 1251 | in (i', Abs (x, T, t')) end | |
| 1252 | | replace_dummy Ts (i, t $ u) = | |
| 1253 | let val (i', t') = replace_dummy Ts (i, t); val (i'', u') = replace_dummy Ts (i', u) | |
| 1254 | in (i'', t' $ u') end | |
| 1255 | | replace_dummy _ (i, a) = (i, a); | |
| 1256 | ||
| 1257 | val replace_dummy_patterns = replace_dummy []; | |
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changeset | 1258 | |
| 10552 | 1259 | fun is_replaced_dummy_pattern ("_dummy_", _) = true
 | 
| 1260 | | is_replaced_dummy_pattern _ = false; | |
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changeset | 1261 | |
| 16035 | 1262 | fun show_dummy_patterns (Var (("_dummy_", _), T)) = Const ("dummy_pattern", T)
 | 
| 1263 | | show_dummy_patterns (t $ u) = show_dummy_patterns t $ show_dummy_patterns u | |
| 1264 | | show_dummy_patterns (Abs (x, T, t)) = Abs (x, T, show_dummy_patterns t) | |
| 1265 | | show_dummy_patterns a = a; | |
| 1266 | ||
| 13484 | 1267 | |
| 20100 | 1268 | (* display variables *) | 
| 1269 | ||
| 15986 | 1270 | val show_question_marks = ref true; | 
| 15472 | 1271 | |
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changeset | 1272 | fun string_of_vname (x, i) = | 
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changeset | 1273 | let | 
| 15986 | 1274 | val question_mark = if ! show_question_marks then "?" else ""; | 
| 1275 | val idx = string_of_int i; | |
| 1276 | val dot = | |
| 1277 | (case rev (Symbol.explode x) of | |
| 1278 | _ :: "\\<^isub>" :: _ => false | |
| 1279 | | _ :: "\\<^isup>" :: _ => false | |
| 1280 | | c :: _ => Symbol.is_digit c | |
| 1281 | | _ => true); | |
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changeset | 1282 | in | 
| 15986 | 1283 | if dot then question_mark ^ x ^ "." ^ idx | 
| 1284 | else if i <> 0 then question_mark ^ x ^ idx | |
| 1285 | else question_mark ^ x | |
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changeset | 1286 | end; | 
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changeset | 1287 | |
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changeset | 1288 | fun string_of_vname' (x, ~1) = x | 
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changeset | 1289 | | string_of_vname' xi = string_of_vname xi; | 
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changeset | 1290 | |
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changeset | 1291 | end; | 
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changeset | 1292 | |
| 4444 | 1293 | structure BasicTerm: BASIC_TERM = Term; | 
| 1294 | open BasicTerm; |