| author | kleing | 
| Wed, 19 Jun 2002 12:39:41 +0200 | |
| changeset 13224 | 6f0928a942d1 | 
| parent 12982 | 34a07757634d | 
| child 13528 | d14fb18343cb | 
| permissions | -rw-r--r-- | 
| 250 | 1 | (* Title: Pure/thm.ML | 
| 0 | 2 | ID: $Id$ | 
| 250 | 3 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
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changeset | 4 | Copyright 1994 University of Cambridge | 
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changeset | 5 | |
| 1160 | 6 | The core of Isabelle's Meta Logic: certified types and terms, meta | 
| 10486 | 7 | theorems, meta rules (including lifting and resolution). | 
| 0 | 8 | *) | 
| 9 | ||
| 6089 | 10 | signature BASIC_THM = | 
| 1503 | 11 | sig | 
| 1160 | 12 | (*certified types*) | 
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changeset | 13 | type ctyp | 
| 1238 | 14 |   val rep_ctyp          : ctyp -> {sign: Sign.sg, T: typ}
 | 
| 15 | val typ_of : ctyp -> typ | |
| 16 | val ctyp_of : Sign.sg -> typ -> ctyp | |
| 17 | val read_ctyp : Sign.sg -> string -> ctyp | |
| 1160 | 18 | |
| 19 | (*certified terms*) | |
| 20 | type cterm | |
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changeset | 21 | exception CTERM of string | 
| 4270 | 22 |   val rep_cterm         : cterm -> {sign: Sign.sg, t: term, T: typ, maxidx: int}
 | 
| 4288 | 23 |   val crep_cterm        : cterm -> {sign: Sign.sg, t: term, T: ctyp, maxidx: int}
 | 
| 9461 | 24 | val sign_of_cterm : cterm -> Sign.sg | 
| 1238 | 25 | val term_of : cterm -> term | 
| 26 | val cterm_of : Sign.sg -> term -> cterm | |
| 2671 | 27 | val ctyp_of_term : cterm -> ctyp | 
| 1238 | 28 | val read_cterm : Sign.sg -> string * typ -> cterm | 
| 29 | val cterm_fun : (term -> term) -> (cterm -> cterm) | |
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changeset | 30 | val adjust_maxidx : cterm -> cterm | 
| 1238 | 31 | val read_def_cterm : | 
| 1160 | 32 | Sign.sg * (indexname -> typ option) * (indexname -> sort option) -> | 
| 33 | string list -> bool -> string * typ -> cterm * (indexname * typ) list | |
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changeset | 34 | val read_def_cterms : | 
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changeset | 35 | Sign.sg * (indexname -> typ option) * (indexname -> sort option) -> | 
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changeset | 36 | string list -> bool -> (string * typ)list | 
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changeset | 37 | -> cterm list * (indexname * typ)list | 
| 1160 | 38 | |
| 6089 | 39 | type tag (* = string * string list *) | 
| 1529 | 40 | |
| 1160 | 41 | (*meta theorems*) | 
| 42 | type thm | |
| 11518 | 43 |   val rep_thm           : thm -> {sign: Sign.sg, der: bool * Proofterm.proof, maxidx: int,
 | 
| 2386 | 44 | shyps: sort list, hyps: term list, | 
| 45 | prop: term} | |
| 11518 | 46 |   val crep_thm          : thm -> {sign: Sign.sg, der: bool * Proofterm.proof, maxidx: int,
 | 
| 2386 | 47 | shyps: sort list, hyps: cterm list, | 
| 48 | prop: cterm} | |
| 6089 | 49 | exception THM of string * int * thm list | 
| 50 | type 'a attribute (* = 'a * thm -> 'a * thm *) | |
| 3994 | 51 | val eq_thm : thm * thm -> bool | 
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changeset | 52 | val sign_of_thm : thm -> Sign.sg | 
| 12803 | 53 | val prop_of : thm -> term | 
| 4254 | 54 | val transfer_sg : Sign.sg -> thm -> thm | 
| 3895 | 55 | val transfer : theory -> thm -> thm | 
| 1238 | 56 | val tpairs_of : thm -> (term * term) list | 
| 57 | val prems_of : thm -> term list | |
| 58 | val nprems_of : thm -> int | |
| 59 | val concl_of : thm -> term | |
| 60 | val cprop_of : thm -> cterm | |
| 61 | val extra_shyps : thm -> sort list | |
| 62 | val strip_shyps : thm -> thm | |
| 3812 | 63 | val get_axiom : theory -> xstring -> thm | 
| 6368 | 64 | val def_name : string -> string | 
| 4847 | 65 | val get_def : theory -> xstring -> thm | 
| 1238 | 66 | val axioms_of : theory -> (string * thm) list | 
| 1160 | 67 | |
| 68 | (*meta rules*) | |
| 1238 | 69 | val assume : cterm -> thm | 
| 1416 | 70 | val compress : thm -> thm | 
| 1238 | 71 | val implies_intr : cterm -> thm -> thm | 
| 72 | val implies_elim : thm -> thm -> thm | |
| 73 | val forall_intr : cterm -> thm -> thm | |
| 74 | val forall_elim : cterm -> thm -> thm | |
| 75 | val reflexive : cterm -> thm | |
| 76 | val symmetric : thm -> thm | |
| 77 | val transitive : thm -> thm -> thm | |
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changeset | 78 | val beta_conversion : bool -> cterm -> thm | 
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changeset | 79 | val eta_conversion : cterm -> thm | 
| 1238 | 80 | val abstract_rule : string -> cterm -> thm -> thm | 
| 81 | val combination : thm -> thm -> thm | |
| 82 | val equal_intr : thm -> thm -> thm | |
| 83 | val equal_elim : thm -> thm -> thm | |
| 84 | val implies_intr_hyps : thm -> thm | |
| 4270 | 85 | val flexflex_rule : thm -> thm Seq.seq | 
| 1238 | 86 | val instantiate : | 
| 1160 | 87 | (indexname * ctyp) list * (cterm * cterm) list -> thm -> thm | 
| 1238 | 88 | val trivial : cterm -> thm | 
| 6368 | 89 | val class_triv : Sign.sg -> class -> thm | 
| 1238 | 90 | val varifyT : thm -> thm | 
| 12500 | 91 | val varifyT' : string list -> thm -> thm * (string * indexname) list | 
| 1238 | 92 | val freezeT : thm -> thm | 
| 93 | val dest_state : thm * int -> | |
| 1160 | 94 | (term * term) list * term list * term * term | 
| 1238 | 95 | val lift_rule : (thm * int) -> thm -> thm | 
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changeset | 96 | val incr_indexes : int -> thm -> thm | 
| 4270 | 97 | val assumption : int -> thm -> thm Seq.seq | 
| 1238 | 98 | val eq_assumption : int -> thm -> thm | 
| 2671 | 99 | val rotate_rule : int -> int -> thm -> thm | 
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changeset | 100 | val permute_prems : int -> int -> thm -> thm | 
| 1160 | 101 | val rename_params_rule: string list * int -> thm -> thm | 
| 1238 | 102 | val bicompose : bool -> bool * thm * int -> | 
| 4270 | 103 | int -> thm -> thm Seq.seq | 
| 1238 | 104 | val biresolution : bool -> (bool * thm) list -> | 
| 4270 | 105 | int -> thm -> thm Seq.seq | 
| 4999 | 106 | val invoke_oracle : theory -> xstring -> Sign.sg * Object.T -> thm | 
| 250 | 107 | end; | 
| 0 | 108 | |
| 6089 | 109 | signature THM = | 
| 110 | sig | |
| 111 | include BASIC_THM | |
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changeset | 112 | val dest_comb : cterm -> cterm * cterm | 
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changeset | 113 | val dest_abs : string option -> cterm -> cterm * cterm | 
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changeset | 114 | val capply : cterm -> cterm -> cterm | 
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changeset | 115 | val cabs : cterm -> cterm -> cterm | 
| 8299 | 116 | val major_prem_of : thm -> term | 
| 7534 | 117 | val no_prems : thm -> bool | 
| 6089 | 118 | val no_attributes : 'a -> 'a * 'b attribute list | 
| 119 |   val apply_attributes	: ('a * thm) * 'a attribute list -> ('a * thm)
 | |
| 120 |   val applys_attributes	: ('a * thm list) * 'a attribute list -> ('a * thm list)
 | |
| 121 | val get_name_tags : thm -> string * tag list | |
| 122 | val put_name_tags : string * tag list -> thm -> thm | |
| 123 | val name_of_thm : thm -> string | |
| 124 | val tags_of_thm : thm -> tag list | |
| 125 | val name_thm : string * thm -> thm | |
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changeset | 126 | val rename_boundvars : term -> term -> thm -> thm | 
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changeset | 127 | val cterm_match : cterm * cterm -> | 
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changeset | 128 | (indexname * ctyp) list * (cterm * cterm) list | 
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changeset | 129 | val cterm_first_order_match : cterm * cterm -> | 
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changeset | 130 | (indexname * ctyp) list * (cterm * cterm) list | 
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changeset | 131 | val cterm_incr_indexes : int -> cterm -> cterm | 
| 6089 | 132 | end; | 
| 133 | ||
| 3550 | 134 | structure Thm: THM = | 
| 0 | 135 | struct | 
| 250 | 136 | |
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changeset | 137 | (*** Certified terms and types ***) | 
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changeset | 138 | |
| 250 | 139 | (** certified types **) | 
| 140 | ||
| 141 | (*certified typs under a signature*) | |
| 142 | ||
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changeset | 143 | datatype ctyp = Ctyp of {sign_ref: Sign.sg_ref, T: typ};
 | 
| 250 | 144 | |
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changeset | 145 | fun rep_ctyp (Ctyp {sign_ref, T}) = {sign = Sign.deref sign_ref, T = T};
 | 
| 250 | 146 | fun typ_of (Ctyp {T, ...}) = T;
 | 
| 147 | ||
| 148 | fun ctyp_of sign T = | |
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changeset | 149 |   Ctyp {sign_ref = Sign.self_ref sign, T = Sign.certify_typ sign T};
 | 
| 250 | 150 | |
| 151 | fun read_ctyp sign s = | |
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changeset | 152 |   Ctyp {sign_ref = Sign.self_ref sign, T = Sign.read_typ (sign, K None) s};
 | 
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changeset | 153 | |
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changeset | 154 | |
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changeset | 155 | |
| 250 | 156 | (** certified terms **) | 
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changeset | 157 | |
| 250 | 158 | (*certified terms under a signature, with checked typ and maxidx of Vars*) | 
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changeset | 159 | |
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changeset | 160 | datatype cterm = Cterm of {sign_ref: Sign.sg_ref, t: term, T: typ, maxidx: int};
 | 
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changeset | 161 | |
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changeset | 162 | fun rep_cterm (Cterm {sign_ref, t, T, maxidx}) =
 | 
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changeset | 163 |   {sign = Sign.deref sign_ref, t = t, T = T, maxidx = maxidx};
 | 
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changeset | 164 | |
| 4288 | 165 | fun crep_cterm (Cterm {sign_ref, t, T, maxidx}) =
 | 
| 166 |   {sign = Sign.deref sign_ref, t = t, T = Ctyp {sign_ref = sign_ref, T = T},
 | |
| 167 | maxidx = maxidx}; | |
| 168 | ||
| 9461 | 169 | fun sign_of_cterm (Cterm {sign_ref, ...}) = Sign.deref sign_ref;
 | 
| 170 | ||
| 250 | 171 | fun term_of (Cterm {t, ...}) = t;
 | 
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changeset | 172 | |
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changeset | 173 | fun ctyp_of_term (Cterm {sign_ref, T, ...}) = Ctyp {sign_ref = sign_ref, T = T};
 | 
| 2671 | 174 | |
| 250 | 175 | (*create a cterm by checking a "raw" term with respect to a signature*) | 
| 176 | fun cterm_of sign tm = | |
| 177 | let val (t, T, maxidx) = Sign.certify_term sign tm | |
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changeset | 178 |   in  Cterm {sign_ref = Sign.self_ref sign, t = t, T = T, maxidx = maxidx}
 | 
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changeset | 179 | end; | 
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changeset | 180 | |
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changeset | 181 | fun cterm_fun f (Cterm {sign_ref, t, ...}) = cterm_of (Sign.deref sign_ref) (f t);
 | 
| 250 | 182 | |
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changeset | 183 | |
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changeset | 184 | exception CTERM of string; | 
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changeset | 185 | |
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changeset | 186 | (*Destruct application in cterms*) | 
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changeset | 187 | fun dest_comb (Cterm {sign_ref, T, maxidx, t = A $ B}) =
 | 
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changeset | 188 | let val typeA = fastype_of A; | 
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changeset | 189 | val typeB = | 
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changeset | 190 |             case typeA of Type("fun",[S,T]) => S
 | 
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changeset | 191 | | _ => error "Function type expected in dest_comb"; | 
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changeset | 192 | in | 
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changeset | 193 |       (Cterm {sign_ref=sign_ref, maxidx=maxidx, t=A, T=typeA},
 | 
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changeset | 194 |        Cterm {sign_ref=sign_ref, maxidx=maxidx, t=B, T=typeB})
 | 
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changeset | 195 | end | 
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changeset | 196 | | dest_comb _ = raise CTERM "dest_comb"; | 
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changeset | 197 | |
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changeset | 198 | (*Destruct abstraction in cterms*) | 
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changeset | 199 | fun dest_abs a (Cterm {sign_ref, T as Type("fun",[_,S]), maxidx, t=Abs(x,ty,M)}) = 
 | 
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changeset | 200 | let val (y,N) = variant_abs (if_none a x,ty,M) | 
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changeset | 201 |       in (Cterm {sign_ref = sign_ref, T = ty, maxidx = 0, t = Free(y,ty)},
 | 
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changeset | 202 |           Cterm {sign_ref = sign_ref, T = S, maxidx = maxidx, t = N})
 | 
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changeset | 203 | end | 
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changeset | 204 | | dest_abs _ _ = raise CTERM "dest_abs"; | 
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changeset | 205 | |
| 2147 | 206 | (*Makes maxidx precise: it is often too big*) | 
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changeset | 207 | fun adjust_maxidx (ct as Cterm {sign_ref, T, t, maxidx, ...}) =
 | 
| 2147 | 208 | if maxidx = ~1 then ct | 
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changeset | 209 |   else  Cterm {sign_ref = sign_ref, T = T, maxidx = maxidx_of_term t, t = t};
 | 
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changeset | 210 | |
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changeset | 211 | (*Form cterm out of a function and an argument*) | 
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changeset | 212 | fun capply (Cterm {t=f, sign_ref=sign_ref1, T=Type("fun",[dty,rty]), maxidx=maxidx1})
 | 
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changeset | 213 |            (Cterm {t=x, sign_ref=sign_ref2, T, maxidx=maxidx2}) =
 | 
| 8291 | 214 | if T = dty then | 
| 215 |         Cterm{t=Sign.nodup_vars (f$x), sign_ref=Sign.merge_refs(sign_ref1,sign_ref2), T=rty,
 | |
| 216 | maxidx=Int.max(maxidx1, maxidx2)} | |
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changeset | 217 | else raise CTERM "capply: types don't agree" | 
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changeset | 218 | | capply _ _ = raise CTERM "capply: first arg is not a function" | 
| 250 | 219 | |
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changeset | 220 | fun cabs (Cterm {t=Free(a,ty), sign_ref=sign_ref1, T=T1, maxidx=maxidx1})
 | 
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changeset | 221 |          (Cterm {t=t2, sign_ref=sign_ref2, T=T2, maxidx=maxidx2}) =
 | 
| 8291 | 222 |       Cterm {t=Sign.nodup_vars (absfree(a,ty,t2)), sign_ref=Sign.merge_refs(sign_ref1,sign_ref2),
 | 
| 2147 | 223 | T = ty --> T2, maxidx=Int.max(maxidx1, maxidx2)} | 
| 1517 | 224 | | cabs _ _ = raise CTERM "cabs: first arg is not a free variable"; | 
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changeset | 225 | |
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changeset | 226 | (*Matching of cterms*) | 
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changeset | 227 | fun gen_cterm_match mtch | 
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changeset | 228 |       (Cterm {sign_ref = sign_ref1, maxidx = maxidx1, t = t1, ...},
 | 
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changeset | 229 |        Cterm {sign_ref = sign_ref2, maxidx = maxidx2, t = t2, ...}) =
 | 
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changeset | 230 | let | 
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changeset | 231 | val sign_ref = Sign.merge_refs (sign_ref1, sign_ref2); | 
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changeset | 232 | val tsig = Sign.tsig_of (Sign.deref sign_ref); | 
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changeset | 233 | val (Tinsts, tinsts) = mtch tsig (t1, t2); | 
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changeset | 234 | val maxidx = Int.max (maxidx1, maxidx2); | 
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changeset | 235 | val vars = map dest_Var (term_vars t1); | 
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changeset | 236 |     fun mk_cTinsts (ixn, T) = (ixn, Ctyp {sign_ref = sign_ref, T = T});
 | 
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changeset | 237 | fun mk_ctinsts (ixn, t) = | 
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changeset | 238 | let val T = typ_subst_TVars Tinsts (the (assoc (vars, ixn))) | 
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changeset | 239 | in | 
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changeset | 240 |         (Cterm {sign_ref = sign_ref, maxidx = maxidx, T = T, t = Var (ixn, T)},
 | 
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changeset | 241 |          Cterm {sign_ref = sign_ref, maxidx = maxidx, T = T, t = t})
 | 
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changeset | 242 | end; | 
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changeset | 243 | in (map mk_cTinsts Tinsts, map mk_ctinsts tinsts) end; | 
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changeset | 244 | |
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changeset | 245 | val cterm_match = gen_cterm_match Pattern.match; | 
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changeset | 246 | val cterm_first_order_match = gen_cterm_match Pattern.first_order_match; | 
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changeset | 247 | |
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changeset | 248 | (*Incrementing indexes*) | 
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changeset | 249 | fun cterm_incr_indexes i (ct as Cterm {sign_ref, maxidx, t, T}) =
 | 
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changeset | 250 | if i < 0 then raise CTERM "negative increment" else | 
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changeset | 251 | if i = 0 then ct else | 
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changeset | 252 |     Cterm {sign_ref = sign_ref, maxidx = maxidx + i,
 | 
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changeset | 253 | t = Logic.incr_indexes ([], i) t, T = Term.incr_tvar i T}; | 
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changeset | 254 | |
| 2509 | 255 | |
| 256 | ||
| 574 | 257 | (** read cterms **) (*exception ERROR*) | 
| 250 | 258 | |
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changeset | 259 | (*read terms, infer types, certify terms*) | 
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changeset | 260 | fun read_def_cterms (sign, types, sorts) used freeze sTs = | 
| 250 | 261 | let | 
| 8608 | 262 | val (ts', tye) = Sign.read_def_terms (sign, types, sorts) used freeze sTs; | 
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changeset | 263 | val cts = map (cterm_of sign) ts' | 
| 2979 | 264 | handle TYPE (msg, _, _) => error msg | 
| 2386 | 265 | | TERM (msg, _) => error msg; | 
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changeset | 266 | in (cts, tye) end; | 
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changeset | 267 | |
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changeset | 268 | (*read term, infer types, certify term*) | 
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changeset | 269 | fun read_def_cterm args used freeze aT = | 
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changeset | 270 | let val ([ct],tye) = read_def_cterms args used freeze [aT] | 
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changeset | 271 | in (ct,tye) end; | 
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changeset | 272 | |
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changeset | 273 | fun read_cterm sign = #1 o read_def_cterm (sign, K None, K None) [] true; | 
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changeset | 274 | |
| 250 | 275 | |
| 6089 | 276 | (*tags provide additional comment, apart from the axiom/theorem name*) | 
| 277 | type tag = string * string list; | |
| 278 | ||
| 2509 | 279 | |
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changeset | 280 | (*** Meta theorems ***) | 
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changeset | 281 | |
| 11518 | 282 | structure Pt = Proofterm; | 
| 283 | ||
| 0 | 284 | datatype thm = Thm of | 
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changeset | 285 |  {sign_ref: Sign.sg_ref,       (*mutable reference to signature*)
 | 
| 11518 | 286 | der: bool * Pt.proof, (*derivation*) | 
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changeset | 287 | maxidx: int, (*maximum index of any Var or TVar*) | 
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changeset | 288 | shyps: sort list, (*sort hypotheses*) | 
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changeset | 289 | hyps: term list, (*hypotheses*) | 
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changeset | 290 | prop: term}; (*conclusion*) | 
| 0 | 291 | |
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changeset | 292 | fun rep_thm (Thm {sign_ref, der, maxidx, shyps, hyps, prop}) =
 | 
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changeset | 293 |   {sign = Sign.deref sign_ref, der = der, maxidx = maxidx,
 | 
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changeset | 294 | shyps = shyps, hyps = hyps, prop = prop}; | 
| 0 | 295 | |
| 1529 | 296 | (*Version of rep_thm returning cterms instead of terms*) | 
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changeset | 297 | fun crep_thm (Thm {sign_ref, der, maxidx, shyps, hyps, prop}) =
 | 
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changeset | 298 |   let fun ctermf max t = Cterm{sign_ref=sign_ref, t=t, T=propT, maxidx=max};
 | 
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changeset | 299 |   in {sign = Sign.deref sign_ref, der = der, maxidx = maxidx, shyps = shyps,
 | 
| 1529 | 300 | hyps = map (ctermf ~1) hyps, | 
| 301 | prop = ctermf maxidx prop} | |
| 1517 | 302 | end; | 
| 303 | ||
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changeset | 304 | (*errors involving theorems*) | 
| 0 | 305 | exception THM of string * int * thm list; | 
| 306 | ||
| 6089 | 307 | (*attributes subsume any kind of rules or addXXXs modifiers*) | 
| 308 | type 'a attribute = 'a * thm -> 'a * thm; | |
| 309 | ||
| 310 | fun no_attributes x = (x, []); | |
| 311 | fun apply_attributes (x_th, atts) = Library.apply atts x_th; | |
| 312 | fun applys_attributes (x_ths, atts) = foldl_map (Library.apply atts) x_ths; | |
| 313 | ||
| 3994 | 314 | fun eq_thm (th1, th2) = | 
| 315 | let | |
| 11518 | 316 |     val {sign = sg1, shyps = shyps1, hyps = hyps1, prop = prop1, ...} =
 | 
| 9031 | 317 | rep_thm th1; | 
| 11518 | 318 |     val {sign = sg2, shyps = shyps2, hyps = hyps2, prop = prop2, ...} =
 | 
| 9031 | 319 | rep_thm th2; | 
| 3994 | 320 | in | 
| 9031 | 321 | Sign.joinable (sg1, sg2) andalso | 
| 3994 | 322 | eq_set_sort (shyps1, shyps2) andalso | 
| 323 | aconvs (hyps1, hyps2) andalso | |
| 324 | prop1 aconv prop2 | |
| 325 | end; | |
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changeset | 326 | |
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changeset | 327 | fun sign_of_thm (Thm {sign_ref, ...}) = Sign.deref sign_ref;
 | 
| 12803 | 328 | fun prop_of (Thm {prop, ...}) = prop;
 | 
| 0 | 329 | |
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changeset | 330 | (*merge signatures of two theorems; raise exception if incompatible*) | 
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changeset | 331 | fun merge_thm_sgs | 
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changeset | 332 |     (th1 as Thm {sign_ref = sgr1, ...}, th2 as Thm {sign_ref = sgr2, ...}) =
 | 
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changeset | 333 | Sign.merge_refs (sgr1, sgr2) handle TERM (msg, _) => raise THM (msg, 0, [th1, th2]); | 
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changeset | 334 | |
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changeset | 335 | (*transfer thm to super theory (non-destructive)*) | 
| 4254 | 336 | fun transfer_sg sign' thm = | 
| 3895 | 337 | let | 
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changeset | 338 |     val Thm {sign_ref, der, maxidx, shyps, hyps, prop} = thm;
 | 
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changeset | 339 | val sign = Sign.deref sign_ref; | 
| 3895 | 340 | in | 
| 4254 | 341 | if Sign.eq_sg (sign, sign') then thm | 
| 342 | else if Sign.subsig (sign, sign') then | |
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changeset | 343 |       Thm {sign_ref = Sign.self_ref sign', der = der, maxidx = maxidx,
 | 
| 3895 | 344 | shyps = shyps, hyps = hyps, prop = prop} | 
| 345 |     else raise THM ("transfer: not a super theory", 0, [thm])
 | |
| 346 | end; | |
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changeset | 347 | |
| 6390 | 348 | val transfer = transfer_sg o Theory.sign_of; | 
| 4254 | 349 | |
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changeset | 350 | (*maps object-rule to tpairs*) | 
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changeset | 351 | fun tpairs_of (Thm {prop, ...}) = #1 (Logic.strip_flexpairs prop);
 | 
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changeset | 352 | |
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changeset | 353 | (*maps object-rule to premises*) | 
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changeset | 354 | fun prems_of (Thm {prop, ...}) =
 | 
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changeset | 355 | Logic.strip_imp_prems (Logic.skip_flexpairs prop); | 
| 0 | 356 | |
| 357 | (*counts premises in a rule*) | |
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changeset | 358 | fun nprems_of (Thm {prop, ...}) =
 | 
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changeset | 359 | Logic.count_prems (Logic.skip_flexpairs prop, 0); | 
| 0 | 360 | |
| 8299 | 361 | fun major_prem_of thm = | 
| 362 | (case prems_of thm of | |
| 11692 | 363 | prem :: _ => Logic.strip_assums_concl prem | 
| 8299 | 364 |   | [] => raise THM ("major_prem_of: rule with no premises", 0, [thm]));
 | 
| 365 | ||
| 7534 | 366 | fun no_prems thm = nprems_of thm = 0; | 
| 367 | ||
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changeset | 368 | (*maps object-rule to conclusion*) | 
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changeset | 369 | fun concl_of (Thm {prop, ...}) = Logic.strip_imp_concl prop;
 | 
| 0 | 370 | |
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changeset | 371 | (*the statement of any thm is a cterm*) | 
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changeset | 372 | fun cprop_of (Thm {sign_ref, maxidx, prop, ...}) =
 | 
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changeset | 373 |   Cterm {sign_ref = sign_ref, maxidx = maxidx, T = propT, t = prop};
 | 
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changeset | 374 | |
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changeset | 375 | |
| 0 | 376 | |
| 1238 | 377 | (** sort contexts of theorems **) | 
| 378 | ||
| 379 | (* basic utils *) | |
| 380 | ||
| 2163 | 381 | (*accumulate sorts suppressing duplicates; these are coded low levelly | 
| 1238 | 382 | to improve efficiency a bit*) | 
| 383 | ||
| 384 | fun add_typ_sorts (Type (_, Ts), Ss) = add_typs_sorts (Ts, Ss) | |
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changeset | 385 | | add_typ_sorts (TFree (_, S), Ss) = ins_sort(S,Ss) | 
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changeset | 386 | | add_typ_sorts (TVar (_, S), Ss) = ins_sort(S,Ss) | 
| 1238 | 387 | and add_typs_sorts ([], Ss) = Ss | 
| 388 | | add_typs_sorts (T :: Ts, Ss) = add_typs_sorts (Ts, add_typ_sorts (T, Ss)); | |
| 389 | ||
| 390 | fun add_term_sorts (Const (_, T), Ss) = add_typ_sorts (T, Ss) | |
| 391 | | add_term_sorts (Free (_, T), Ss) = add_typ_sorts (T, Ss) | |
| 392 | | add_term_sorts (Var (_, T), Ss) = add_typ_sorts (T, Ss) | |
| 393 | | add_term_sorts (Bound _, Ss) = Ss | |
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changeset | 394 | | add_term_sorts (Abs (_,T,t), Ss) = add_term_sorts (t, add_typ_sorts (T,Ss)) | 
| 1238 | 395 | | add_term_sorts (t $ u, Ss) = add_term_sorts (t, add_term_sorts (u, Ss)); | 
| 396 | ||
| 397 | fun add_terms_sorts ([], Ss) = Ss | |
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changeset | 398 | | add_terms_sorts (t::ts, Ss) = add_terms_sorts (ts, add_term_sorts (t,Ss)); | 
| 1238 | 399 | |
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changeset | 400 | fun env_codT (Envir.Envir {iTs, ...}) = map snd (Vartab.dest iTs);
 | 
| 1258 | 401 | |
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changeset | 402 | fun add_env_sorts (Envir.Envir {iTs, asol, ...}, Ss) =
 | 
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changeset | 403 | Vartab.foldl (add_term_sorts o swap o apsnd snd) | 
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changeset | 404 | (Vartab.foldl (add_typ_sorts o swap o apsnd snd) (Ss, iTs), asol); | 
| 1258 | 405 | |
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changeset | 406 | fun add_insts_sorts ((iTs, is), Ss) = | 
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changeset | 407 | add_typs_sorts (map snd iTs, add_terms_sorts (map snd is, Ss)); | 
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changeset | 408 | |
| 1238 | 409 | fun add_thm_sorts (Thm {hyps, prop, ...}, Ss) =
 | 
| 410 | add_terms_sorts (hyps, add_term_sorts (prop, Ss)); | |
| 411 | ||
| 412 | fun add_thms_shyps ([], Ss) = Ss | |
| 413 |   | add_thms_shyps (Thm {shyps, ...} :: ths, Ss) =
 | |
| 7642 | 414 | add_thms_shyps (ths, union_sort (shyps, Ss)); | 
| 1238 | 415 | |
| 416 | ||
| 417 | (*get 'dangling' sort constraints of a thm*) | |
| 418 | fun extra_shyps (th as Thm {shyps, ...}) =
 | |
| 7642 | 419 | Term.rems_sort (shyps, add_thm_sorts (th, [])); | 
| 1238 | 420 | |
| 421 | ||
| 422 | (* fix_shyps *) | |
| 423 | ||
| 7642 | 424 | fun all_sorts_nonempty sign_ref = is_some (Sign.univ_witness (Sign.deref sign_ref)); | 
| 425 | ||
| 1238 | 426 | (*preserve sort contexts of rule premises and substituted types*) | 
| 7642 | 427 | fun fix_shyps thms Ts (thm as Thm {sign_ref, der, maxidx, hyps, prop, ...}) =
 | 
| 428 | Thm | |
| 429 |    {sign_ref = sign_ref,
 | |
| 430 | der = der, (*no new derivation, as other rules call this*) | |
| 431 | maxidx = maxidx, | |
| 432 | shyps = | |
| 433 | if all_sorts_nonempty sign_ref then [] | |
| 434 | else add_thm_sorts (thm, add_typs_sorts (Ts, add_thms_shyps (thms, []))), | |
| 435 | hyps = hyps, prop = prop} | |
| 1238 | 436 | |
| 437 | ||
| 7642 | 438 | (* strip_shyps *) | 
| 1238 | 439 | |
| 7642 | 440 | (*remove extra sorts that are non-empty by virtue of type signature information*) | 
| 441 | fun strip_shyps (thm as Thm {shyps = [], ...}) = thm
 | |
| 442 |   | strip_shyps (thm as Thm {sign_ref, der, maxidx, shyps, hyps, prop}) =
 | |
| 443 | let | |
| 444 | val sign = Sign.deref sign_ref; | |
| 1238 | 445 | |
| 7642 | 446 | val present_sorts = add_thm_sorts (thm, []); | 
| 447 | val extra_shyps = Term.rems_sort (shyps, present_sorts); | |
| 448 | val witnessed_shyps = Sign.witness_sorts sign present_sorts extra_shyps; | |
| 449 | in | |
| 450 |         Thm {sign_ref = sign_ref, der = der, maxidx = maxidx,
 | |
| 451 | shyps = Term.rems_sort (shyps, map #2 witnessed_shyps), | |
| 452 | hyps = hyps, prop = prop} | |
| 453 | end; | |
| 1238 | 454 | |
| 455 | ||
| 456 | ||
| 1529 | 457 | (** Axioms **) | 
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changeset | 458 | |
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changeset | 459 | (*look up the named axiom in the theory*) | 
| 3812 | 460 | fun get_axiom theory raw_name = | 
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changeset | 461 | let | 
| 4847 | 462 | val name = Sign.intern (Theory.sign_of theory) Theory.axiomK raw_name; | 
| 463 | ||
| 464 | fun get_ax [] = None | |
| 1529 | 465 | | get_ax (thy :: thys) = | 
| 4847 | 466 |           let val {sign, axioms, ...} = Theory.rep_theory thy in
 | 
| 467 | (case Symtab.lookup (axioms, name) of | |
| 468 | Some t => | |
| 469 | Some (fix_shyps [] [] | |
| 470 |                   (Thm {sign_ref = Sign.self_ref sign,
 | |
| 11518 | 471 | der = Pt.infer_derivs' I | 
| 472 | (false, Pt.axm_proof name t), | |
| 4847 | 473 | maxidx = maxidx_of_term t, | 
| 474 | shyps = [], | |
| 475 | hyps = [], | |
| 476 | prop = t})) | |
| 477 | | None => get_ax thys) | |
| 1529 | 478 | end; | 
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changeset | 479 | in | 
| 4847 | 480 | (case get_ax (theory :: Theory.ancestors_of theory) of | 
| 481 | Some thm => thm | |
| 482 |     | None => raise THEORY ("No axiom " ^ quote name, [theory]))
 | |
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changeset | 483 | end; | 
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changeset | 484 | |
| 6368 | 485 | fun def_name name = name ^ "_def"; | 
| 486 | fun get_def thy = get_axiom thy o def_name; | |
| 4847 | 487 | |
| 1529 | 488 | |
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changeset | 489 | (*return additional axioms of this theory node*) | 
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changeset | 490 | fun axioms_of thy = | 
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changeset | 491 | map (fn (s, _) => (s, get_axiom thy s)) | 
| 6390 | 492 | (Symtab.dest (#axioms (Theory.rep_theory thy))); | 
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changeset | 493 | |
| 6089 | 494 | |
| 495 | (* name and tags -- make proof objects more readable *) | |
| 496 | ||
| 12923 | 497 | fun get_name_tags (Thm {hyps, prop, der = (_, prf), ...}) =
 | 
| 498 | Pt.get_name_tags hyps prop prf; | |
| 4018 | 499 | |
| 11518 | 500 | fun put_name_tags x (Thm {sign_ref, der = (ora, prf), maxidx, shyps, hyps, prop}) =
 | 
| 501 |   Thm {sign_ref = sign_ref,
 | |
| 502 | der = (ora, Pt.thm_proof (Sign.deref sign_ref) x hyps prop prf), | |
| 503 | maxidx = maxidx, shyps = shyps, hyps = hyps, prop = prop}; | |
| 6089 | 504 | |
| 505 | val name_of_thm = #1 o get_name_tags; | |
| 506 | val tags_of_thm = #2 o get_name_tags; | |
| 507 | ||
| 508 | fun name_thm (name, thm) = put_name_tags (name, tags_of_thm thm) thm; | |
| 0 | 509 | |
| 510 | ||
| 1529 | 511 | (*Compression of theorems -- a separate rule, not integrated with the others, | 
| 512 | as it could be slow.*) | |
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changeset | 513 | fun compress (Thm {sign_ref, der, maxidx, shyps, hyps, prop}) = 
 | 
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changeset | 514 |     Thm {sign_ref = sign_ref, 
 | 
| 2386 | 515 | der = der, (*No derivation recorded!*) | 
| 516 | maxidx = maxidx, | |
| 517 | shyps = shyps, | |
| 518 | hyps = map Term.compress_term hyps, | |
| 519 | prop = Term.compress_term prop}; | |
| 564 | 520 | |
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changeset | 521 | |
| 2509 | 522 | |
| 1529 | 523 | (*** Meta rules ***) | 
| 0 | 524 | |
| 2147 | 525 | (*Check that term does not contain same var with different typing/sorting. | 
| 526 | If this check must be made, recalculate maxidx in hope of preventing its | |
| 527 | recurrence.*) | |
| 8291 | 528 | fun nodup_vars (thm as Thm{sign_ref, der, maxidx, shyps, hyps, prop}) s =
 | 
| 8296 | 529 |   Thm {sign_ref = sign_ref, 
 | 
| 2386 | 530 | der = der, | 
| 531 | maxidx = maxidx_of_term prop, | |
| 532 | shyps = shyps, | |
| 533 | hyps = hyps, | |
| 8296 | 534 | prop = Sign.nodup_vars prop} | 
| 2147 | 535 | handle TYPE(msg,Ts,ts) => raise TYPE(s^": "^msg,Ts,ts); | 
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changeset | 536 | |
| 8291 | 537 | |
| 1220 | 538 | (** 'primitive' rules **) | 
| 539 | ||
| 540 | (*discharge all assumptions t from ts*) | |
| 0 | 541 | val disch = gen_rem (op aconv); | 
| 542 | ||
| 1220 | 543 | (*The assumption rule A|-A in a theory*) | 
| 5344 | 544 | fun assume raw_ct : thm = | 
| 545 |   let val ct as Cterm {sign_ref, t=prop, T, maxidx} = adjust_maxidx raw_ct
 | |
| 250 | 546 | in if T<>propT then | 
| 547 |         raise THM("assume: assumptions must have type prop", 0, [])
 | |
| 0 | 548 | else if maxidx <> ~1 then | 
| 250 | 549 |         raise THM("assume: assumptions may not contain scheme variables",
 | 
| 550 | maxidx, []) | |
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changeset | 551 |       else Thm{sign_ref   = sign_ref,
 | 
| 11518 | 552 | der = Pt.infer_derivs' I (false, Pt.Hyp prop), | 
| 2386 | 553 | maxidx = ~1, | 
| 554 | shyps = add_term_sorts(prop,[]), | |
| 555 | hyps = [prop], | |
| 556 | prop = prop} | |
| 0 | 557 | end; | 
| 558 | ||
| 1220 | 559 | (*Implication introduction | 
| 3529 | 560 | [A] | 
| 561 | : | |
| 562 | B | |
| 1220 | 563 | ------- | 
| 564 | A ==> B | |
| 565 | *) | |
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changeset | 566 | fun implies_intr cA (thB as Thm{sign_ref,der,maxidx,hyps,shyps,prop}) : thm =
 | 
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changeset | 567 |   let val Cterm {sign_ref=sign_refA, t=A, T, maxidx=maxidxA} = cA
 | 
| 0 | 568 | in if T<>propT then | 
| 250 | 569 |         raise THM("implies_intr: assumptions must have type prop", 0, [thB])
 | 
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changeset | 570 | else | 
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changeset | 571 |          Thm{sign_ref = Sign.merge_refs (sign_ref,sign_refA),  
 | 
| 11518 | 572 | der = Pt.infer_derivs' (Pt.implies_intr_proof A) der, | 
| 2386 | 573 | maxidx = Int.max(maxidxA, maxidx), | 
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changeset | 574 | shyps = add_term_sorts (A, shyps), | 
| 2386 | 575 | hyps = disch(hyps,A), | 
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changeset | 576 | prop = implies$A$prop} | 
| 0 | 577 | handle TERM _ => | 
| 578 |         raise THM("implies_intr: incompatible signatures", 0, [thB])
 | |
| 579 | end; | |
| 580 | ||
| 1529 | 581 | |
| 1220 | 582 | (*Implication elimination | 
| 583 | A ==> B A | |
| 584 | ------------ | |
| 585 | B | |
| 586 | *) | |
| 0 | 587 | fun implies_elim thAB thA : thm = | 
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changeset | 588 |     let val Thm{maxidx=maxA, der=derA, hyps=hypsA, shyps=shypsA, prop=propA, ...} = thA
 | 
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changeset | 589 |         and Thm{der, maxidx, hyps, shyps, prop, ...} = thAB;
 | 
| 250 | 590 |         fun err(a) = raise THM("implies_elim: "^a, 0, [thAB,thA])
 | 
| 0 | 591 | in case prop of | 
| 250 | 592 | imp$A$B => | 
| 593 | if imp=implies andalso A aconv propA | |
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changeset | 594 | then | 
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changeset | 595 |                   Thm{sign_ref= merge_thm_sgs(thAB,thA),
 | 
| 11612 | 596 | der = Pt.infer_derivs (curry Pt.%%) der derA, | 
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changeset | 597 | maxidx = Int.max(maxA,maxidx), | 
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changeset | 598 | shyps = union_sort (shypsA, shyps), | 
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changeset | 599 | hyps = union_term(hypsA,hyps), (*dups suppressed*) | 
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changeset | 600 | prop = B} | 
| 250 | 601 |                 else err("major premise")
 | 
| 602 |           | _ => err("major premise")
 | |
| 0 | 603 | end; | 
| 250 | 604 | |
| 1220 | 605 | (*Forall introduction. The Free or Var x must not be free in the hypotheses. | 
| 606 | A | |
| 607 | ----- | |
| 608 | !!x.A | |
| 609 | *) | |
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changeset | 610 | fun forall_intr cx (th as Thm{sign_ref,der,maxidx,hyps,prop,...}) =
 | 
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changeset | 611 | let val x = term_of cx; | 
| 1238 | 612 | fun result(a,T) = fix_shyps [th] [] | 
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changeset | 613 |         (Thm{sign_ref = sign_ref, 
 | 
| 11518 | 614 | der = Pt.infer_derivs' (Pt.forall_intr_proof x a) der, | 
| 2386 | 615 | maxidx = maxidx, | 
| 616 | shyps = [], | |
| 617 | hyps = hyps, | |
| 618 | prop = all(T) $ Abs(a, T, abstract_over (x,prop))}) | |
| 0 | 619 | in case x of | 
| 250 | 620 | Free(a,T) => | 
| 621 | if exists (apl(x, Logic.occs)) hyps | |
| 622 |           then  raise THM("forall_intr: variable free in assumptions", 0, [th])
 | |
| 623 | else result(a,T) | |
| 0 | 624 | | Var((a,_),T) => result(a,T) | 
| 625 |       | _ => raise THM("forall_intr: not a variable", 0, [th])
 | |
| 626 | end; | |
| 627 | ||
| 1220 | 628 | (*Forall elimination | 
| 629 | !!x.A | |
| 630 | ------ | |
| 631 | A[t/x] | |
| 632 | *) | |
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changeset | 633 | fun forall_elim ct (th as Thm{sign_ref,der,maxidx,hyps,prop,...}) : thm =
 | 
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changeset | 634 |   let val Cterm {sign_ref=sign_reft, t, T, maxidx=maxt} = ct
 | 
| 0 | 635 | in case prop of | 
| 2386 | 636 |         Const("all",Type("fun",[Type("fun",[qary,_]),_])) $ A =>
 | 
| 637 | if T<>qary then | |
| 638 |               raise THM("forall_elim: type mismatch", 0, [th])
 | |
| 639 | else let val thm = fix_shyps [th] [] | |
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changeset | 640 |                     (Thm{sign_ref= Sign.merge_refs(sign_ref,sign_reft),
 | 
| 11612 | 641 | der = Pt.infer_derivs' (Pt.% o rpair (Some t)) der, | 
| 2386 | 642 | maxidx = Int.max(maxidx, maxt), | 
| 643 | shyps = [], | |
| 644 | hyps = hyps, | |
| 645 | prop = betapply(A,t)}) | |
| 646 | in if maxt >= 0 andalso maxidx >= 0 | |
| 8291 | 647 | then nodup_vars thm "forall_elim" | 
| 2386 | 648 | else thm (*no new Vars: no expensive check!*) | 
| 649 | end | |
| 2147 | 650 |       | _ => raise THM("forall_elim: not quantified", 0, [th])
 | 
| 0 | 651 | end | 
| 652 | handle TERM _ => | |
| 250 | 653 |          raise THM("forall_elim: incompatible signatures", 0, [th]);
 | 
| 0 | 654 | |
| 655 | ||
| 1220 | 656 | (* Equality *) | 
| 0 | 657 | |
| 658 | (*The reflexivity rule: maps t to the theorem t==t *) | |
| 250 | 659 | fun reflexive ct = | 
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changeset | 660 |   let val Cterm {sign_ref, t, T, maxidx} = ct
 | 
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changeset | 661 |   in Thm{sign_ref= sign_ref, 
 | 
| 11518 | 662 | der = Pt.infer_derivs' I (false, Pt.reflexive), | 
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changeset | 663 | shyps = add_term_sorts (t, []), | 
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changeset | 664 | hyps = [], | 
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changeset | 665 | maxidx = maxidx, | 
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changeset | 666 | prop = Logic.mk_equals(t,t)} | 
| 0 | 667 | end; | 
| 668 | ||
| 669 | (*The symmetry rule | |
| 1220 | 670 | t==u | 
| 671 | ---- | |
| 672 | u==t | |
| 673 | *) | |
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changeset | 674 | fun symmetric (th as Thm{sign_ref,der,maxidx,shyps,hyps,prop}) =
 | 
| 0 | 675 | case prop of | 
| 11518 | 676 |       (eq as Const("==", Type (_, [T, _]))) $ t $ u =>
 | 
| 1238 | 677 | (*no fix_shyps*) | 
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changeset | 678 |           Thm{sign_ref = sign_ref,
 | 
| 11518 | 679 | der = Pt.infer_derivs' Pt.symmetric der, | 
| 2386 | 680 | maxidx = maxidx, | 
| 681 | shyps = shyps, | |
| 682 | hyps = hyps, | |
| 683 | prop = eq$u$t} | |
| 0 | 684 |     | _ => raise THM("symmetric", 0, [th]);
 | 
| 685 | ||
| 686 | (*The transitive rule | |
| 1220 | 687 | t1==u u==t2 | 
| 688 | -------------- | |
| 689 | t1==t2 | |
| 690 | *) | |
| 0 | 691 | fun transitive th1 th2 = | 
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changeset | 692 |   let val Thm{der=der1, maxidx=max1, hyps=hyps1, shyps=shyps1, prop=prop1,...} = th1
 | 
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changeset | 693 |       and Thm{der=der2, maxidx=max2, hyps=hyps2, shyps=shyps2, prop=prop2,...} = th2;
 | 
| 0 | 694 |       fun err(msg) = raise THM("transitive: "^msg, 0, [th1,th2])
 | 
| 695 | in case (prop1,prop2) of | |
| 11518 | 696 |        ((eq as Const("==", Type (_, [T, _]))) $ t1 $ u, Const("==",_) $ u' $ t2) =>
 | 
| 1634 | 697 | if not (u aconv u') then err"middle term" | 
| 698 | else let val thm = | |
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changeset | 699 |                  Thm{sign_ref= merge_thm_sgs(th1,th2), 
 | 
| 11518 | 700 | der = Pt.infer_derivs (Pt.transitive u T) der1 der2, | 
| 2147 | 701 | maxidx = Int.max(max1,max2), | 
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changeset | 702 | shyps = union_sort (shyps1, shyps2), | 
| 2386 | 703 | hyps = union_term(hyps1,hyps2), | 
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changeset | 704 | prop = eq$t1$t2} | 
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changeset | 705 | in if max1 >= 0 andalso max2 >= 0 | 
| 8291 | 706 | then nodup_vars thm "transitive" | 
| 2147 | 707 | else thm (*no new Vars: no expensive check!*) | 
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changeset | 708 | end | 
| 0 | 709 | | _ => err"premises" | 
| 710 | end; | |
| 711 | ||
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changeset | 712 | (*Beta-conversion: maps (%x.t)(u) to the theorem (%x.t)(u) == t[u/x] | 
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changeset | 713 | Fully beta-reduces the term if full=true | 
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changeset | 714 | *) | 
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changeset | 715 | fun beta_conversion full ct = | 
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changeset | 716 |   let val Cterm {sign_ref, t, T, maxidx} = ct
 | 
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changeset | 717 | in Thm | 
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changeset | 718 |     {sign_ref = sign_ref,  
 | 
| 11518 | 719 | der = Pt.infer_derivs' I (false, Pt.reflexive), | 
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changeset | 720 | maxidx = maxidx, | 
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changeset | 721 | shyps = add_term_sorts (t, []), | 
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changeset | 722 | hyps = [], | 
| 10486 | 723 | prop = Logic.mk_equals (t, if full then Envir.beta_norm t | 
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changeset | 724 | else case t of | 
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changeset | 725 | Abs(_, _, bodt) $ u => subst_bound (u, bodt) | 
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changeset | 726 |         | _ => raise THM ("beta_conversion: not a redex", 0, []))}
 | 
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changeset | 727 | end; | 
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changeset | 728 | |
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changeset | 729 | fun eta_conversion ct = | 
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changeset | 730 |   let val Cterm {sign_ref, t, T, maxidx} = ct
 | 
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changeset | 731 | in Thm | 
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changeset | 732 |     {sign_ref = sign_ref,  
 | 
| 11518 | 733 | der = Pt.infer_derivs' I (false, Pt.reflexive), | 
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changeset | 734 | maxidx = maxidx, | 
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changeset | 735 | shyps = add_term_sorts (t, []), | 
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changeset | 736 | hyps = [], | 
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changeset | 737 | prop = Logic.mk_equals (t, Pattern.eta_contract t)} | 
| 0 | 738 | end; | 
| 739 | ||
| 740 | (*The abstraction rule. The Free or Var x must not be free in the hypotheses. | |
| 741 | The bound variable will be named "a" (since x will be something like x320) | |
| 1220 | 742 | t == u | 
| 743 | ------------ | |
| 744 | %x.t == %x.u | |
| 745 | *) | |
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changeset | 746 | fun abstract_rule a cx (th as Thm{sign_ref,der,maxidx,hyps,shyps,prop}) =
 | 
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changeset | 747 | let val x = term_of cx; | 
| 250 | 748 | val (t,u) = Logic.dest_equals prop | 
| 749 | handle TERM _ => | |
| 750 |                 raise THM("abstract_rule: premise not an equality", 0, [th])
 | |
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changeset | 751 | fun result T = | 
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changeset | 752 |            Thm{sign_ref = sign_ref,
 | 
| 11518 | 753 | der = Pt.infer_derivs' (Pt.abstract_rule x a) der, | 
| 2386 | 754 | maxidx = maxidx, | 
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changeset | 755 | shyps = add_typ_sorts (T, shyps), | 
| 2386 | 756 | hyps = hyps, | 
| 757 | prop = Logic.mk_equals(Abs(a, T, abstract_over (x,t)), | |
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changeset | 758 | Abs(a, T, abstract_over (x,u)))} | 
| 0 | 759 | in case x of | 
| 250 | 760 | Free(_,T) => | 
| 761 | if exists (apl(x, Logic.occs)) hyps | |
| 762 |          then raise THM("abstract_rule: variable free in assumptions", 0, [th])
 | |
| 763 | else result T | |
| 0 | 764 | | Var(_,T) => result T | 
| 765 |       | _ => raise THM("abstract_rule: not a variable", 0, [th])
 | |
| 766 | end; | |
| 767 | ||
| 768 | (*The combination rule | |
| 3529 | 769 | f == g t == u | 
| 770 | -------------- | |
| 771 | f(t) == g(u) | |
| 1220 | 772 | *) | 
| 0 | 773 | fun combination th1 th2 = | 
| 1529 | 774 |   let val Thm{der=der1, maxidx=max1, shyps=shyps1, hyps=hyps1, 
 | 
| 2386 | 775 | prop=prop1,...} = th1 | 
| 1529 | 776 |       and Thm{der=der2, maxidx=max2, shyps=shyps2, hyps=hyps2, 
 | 
| 2386 | 777 | prop=prop2,...} = th2 | 
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changeset | 778 | fun chktypes fT tT = | 
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changeset | 779 | (case fT of | 
| 2386 | 780 |                 Type("fun",[T1,T2]) => 
 | 
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changeset | 781 | if T1 <> tT then | 
| 2386 | 782 |                          raise THM("combination: types", 0, [th1,th2])
 | 
| 783 | else () | |
| 784 |                 | _ => raise THM("combination: not function type", 0, 
 | |
| 785 | [th1,th2])) | |
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changeset | 786 | in case (prop1,prop2) of | 
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changeset | 787 |        (Const ("==", Type ("fun", [fT, _])) $ f $ g,
 | 
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changeset | 788 |         Const ("==", Type ("fun", [tT, _])) $ t $ u) =>
 | 
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changeset | 789 | let val _ = chktypes fT tT | 
| 2386 | 790 | val thm = (*no fix_shyps*) | 
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changeset | 791 |                         Thm{sign_ref = merge_thm_sgs(th1,th2), 
 | 
| 11518 | 792 | der = Pt.infer_derivs | 
| 793 | (Pt.combination f g t u fT) der1 der2, | |
| 2386 | 794 | maxidx = Int.max(max1,max2), | 
| 795 | shyps = union_sort(shyps1,shyps2), | |
| 796 | hyps = union_term(hyps1,hyps2), | |
| 797 | prop = Logic.mk_equals(f$t, g$u)} | |
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changeset | 798 | in if max1 >= 0 andalso max2 >= 0 | 
| 8291 | 799 | then nodup_vars thm "combination" | 
| 2386 | 800 | else thm (*no new Vars: no expensive check!*) | 
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changeset | 801 | end | 
| 0 | 802 |      | _ =>  raise THM("combination: premises", 0, [th1,th2])
 | 
| 803 | end; | |
| 804 | ||
| 805 | ||
| 806 | (* Equality introduction | |
| 3529 | 807 | A ==> B B ==> A | 
| 808 | ---------------- | |
| 809 | A == B | |
| 1220 | 810 | *) | 
| 0 | 811 | fun equal_intr th1 th2 = | 
| 11518 | 812 |   let val Thm{der=der1, maxidx=max1, shyps=shyps1, hyps=hyps1, 
 | 
| 2386 | 813 | prop=prop1,...} = th1 | 
| 1529 | 814 |       and Thm{der=der2, maxidx=max2, shyps=shyps2, hyps=hyps2, 
 | 
| 2386 | 815 | prop=prop2,...} = th2; | 
| 1529 | 816 |       fun err(msg) = raise THM("equal_intr: "^msg, 0, [th1,th2])
 | 
| 817 | in case (prop1,prop2) of | |
| 818 |        (Const("==>",_) $ A $ B, Const("==>",_) $ B' $ A')  =>
 | |
| 2386 | 819 | if A aconv A' andalso B aconv B' | 
| 820 | then | |
| 821 | (*no fix_shyps*) | |
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changeset | 822 |               Thm{sign_ref = merge_thm_sgs(th1,th2),
 | 
| 11518 | 823 | der = Pt.infer_derivs (Pt.equal_intr A B) der1 der2, | 
| 2386 | 824 | maxidx = Int.max(max1,max2), | 
| 825 | shyps = union_sort(shyps1,shyps2), | |
| 826 | hyps = union_term(hyps1,hyps2), | |
| 827 | prop = Logic.mk_equals(A,B)} | |
| 828 | else err"not equal" | |
| 1529 | 829 | | _ => err"premises" | 
| 830 | end; | |
| 831 | ||
| 832 | ||
| 833 | (*The equal propositions rule | |
| 3529 | 834 | A == B A | 
| 1529 | 835 | --------- | 
| 836 | B | |
| 837 | *) | |
| 838 | fun equal_elim th1 th2 = | |
| 839 |   let val Thm{der=der1, maxidx=max1, hyps=hyps1, prop=prop1,...} = th1
 | |
| 840 |       and Thm{der=der2, maxidx=max2, hyps=hyps2, prop=prop2,...} = th2;
 | |
| 841 |       fun err(msg) = raise THM("equal_elim: "^msg, 0, [th1,th2])
 | |
| 842 | in case prop1 of | |
| 843 |        Const("==",_) $ A $ B =>
 | |
| 844 | if not (prop2 aconv A) then err"not equal" else | |
| 845 | fix_shyps [th1, th2] [] | |
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changeset | 846 |               (Thm{sign_ref= merge_thm_sgs(th1,th2), 
 | 
| 11518 | 847 | der = Pt.infer_derivs (Pt.equal_elim A B) der1 der2, | 
| 2386 | 848 | maxidx = Int.max(max1,max2), | 
| 849 | shyps = [], | |
| 850 | hyps = union_term(hyps1,hyps2), | |
| 851 | prop = B}) | |
| 1529 | 852 | | _ => err"major premise" | 
| 853 | end; | |
| 0 | 854 | |
| 1220 | 855 | |
| 856 | ||
| 0 | 857 | (**** Derived rules ****) | 
| 858 | ||
| 1503 | 859 | (*Discharge all hypotheses. Need not verify cterms or call fix_shyps. | 
| 0 | 860 | Repeated hypotheses are discharged only once; fold cannot do this*) | 
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changeset | 861 | fun implies_intr_hyps (Thm{sign_ref, der, maxidx, shyps, hyps=A::As, prop}) =
 | 
| 1238 | 862 | implies_intr_hyps (*no fix_shyps*) | 
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changeset | 863 |             (Thm{sign_ref = sign_ref, 
 | 
| 11518 | 864 | der = Pt.infer_derivs' (Pt.implies_intr_proof A) der, | 
| 2386 | 865 | maxidx = maxidx, | 
| 866 | shyps = shyps, | |
| 1529 | 867 | hyps = disch(As,A), | 
| 2386 | 868 | prop = implies$A$prop}) | 
| 0 | 869 | | implies_intr_hyps th = th; | 
| 870 | ||
| 871 | (*Smash" unifies the list of term pairs leaving no flex-flex pairs. | |
| 250 | 872 | Instantiates the theorem and deletes trivial tpairs. | 
| 0 | 873 | Resulting sequence may contain multiple elements if the tpairs are | 
| 874 | not all flex-flex. *) | |
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changeset | 875 | fun flexflex_rule (th as Thm{sign_ref, der, maxidx, hyps, prop,...}) =
 | 
| 250 | 876 | let fun newthm env = | 
| 1529 | 877 | if Envir.is_empty env then th | 
| 878 | else | |
| 250 | 879 | let val (tpairs,horn) = | 
| 880 | Logic.strip_flexpairs (Envir.norm_term env prop) | |
| 881 | (*Remove trivial tpairs, of the form t=t*) | |
| 882 | val distpairs = filter (not o op aconv) tpairs | |
| 883 | val newprop = Logic.list_flexpairs(distpairs, horn) | |
| 1220 | 884 | in fix_shyps [th] (env_codT env) | 
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changeset | 885 |                 (Thm{sign_ref = sign_ref, 
 | 
| 11518 | 886 | der = Pt.infer_derivs' (Pt.norm_proof' env) der, | 
| 2386 | 887 | maxidx = maxidx_of_term newprop, | 
| 888 | shyps = [], | |
| 889 | hyps = hyps, | |
| 890 | prop = newprop}) | |
| 250 | 891 | end; | 
| 0 | 892 | val (tpairs,_) = Logic.strip_flexpairs prop | 
| 4270 | 893 | in Seq.map newthm | 
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changeset | 894 | (Unify.smash_unifiers(Sign.deref sign_ref, Envir.empty maxidx, tpairs)) | 
| 0 | 895 | end; | 
| 896 | ||
| 897 | (*Instantiation of Vars | |
| 1220 | 898 | A | 
| 899 | ------------------- | |
| 900 | A[t1/v1,....,tn/vn] | |
| 901 | *) | |
| 0 | 902 | |
| 6928 | 903 | local | 
| 904 | ||
| 0 | 905 | (*Check that all the terms are Vars and are distinct*) | 
| 906 | fun instl_ok ts = forall is_Var ts andalso null(findrep ts); | |
| 907 | ||
| 6928 | 908 | fun prt_typing sg_ref t T = | 
| 909 | let val sg = Sign.deref sg_ref in | |
| 910 | Pretty.block [Sign.pretty_term sg t, Pretty.str " ::", Pretty.brk 1, Sign.pretty_typ sg T] | |
| 911 | end; | |
| 912 | ||
| 0 | 913 | (*For instantiate: process pair of cterms, merge theories*) | 
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changeset | 914 | fun add_ctpair ((ct,cu), (sign_ref,tpairs)) = | 
| 6928 | 915 | let | 
| 916 |     val Cterm {sign_ref=sign_reft, t=t, T= T, ...} = ct
 | |
| 917 |     and Cterm {sign_ref=sign_refu, t=u, T= U, ...} = cu;
 | |
| 918 | val sign_ref_merged = Sign.merge_refs (sign_ref, Sign.merge_refs (sign_reft, sign_refu)); | |
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changeset | 919 | in | 
| 6928 | 920 | if T=U then (sign_ref_merged, (t,u)::tpairs) | 
| 921 | else raise TYPE (Pretty.string_of (Pretty.block [Pretty.str "instantiate: type conflict", | |
| 922 | Pretty.fbrk, prt_typing sign_ref_merged t T, | |
| 923 | Pretty.fbrk, prt_typing sign_ref_merged u U]), [T,U], [t,u]) | |
| 0 | 924 | end; | 
| 925 | ||
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changeset | 926 | fun add_ctyp ((v,ctyp), (sign_ref',vTs)) = | 
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changeset | 927 |   let val Ctyp {T,sign_ref} = ctyp
 | 
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changeset | 928 | in (Sign.merge_refs(sign_ref,sign_ref'), (v,T)::vTs) end; | 
| 0 | 929 | |
| 6928 | 930 | in | 
| 931 | ||
| 0 | 932 | (*Left-to-right replacements: ctpairs = [...,(vi,ti),...]. | 
| 933 | Instantiates distinct Vars by terms of same type. | |
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changeset | 934 | No longer normalizes the new theorem! *) | 
| 1529 | 935 | fun instantiate ([], []) th = th | 
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changeset | 936 |   | instantiate (vcTs,ctpairs) (th as Thm{sign_ref,der,maxidx,hyps,shyps,prop}) =
 | 
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changeset | 937 | let val (newsign_ref,tpairs) = foldr add_ctpair (ctpairs, (sign_ref,[])); | 
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changeset | 938 | val (newsign_ref,vTs) = foldr add_ctyp (vcTs, (newsign_ref,[])); | 
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changeset | 939 | val newprop = subst_atomic tpairs | 
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changeset | 940 | (Type.inst_term_tvars | 
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changeset | 941 | (Sign.tsig_of (Sign.deref newsign_ref),vTs) prop) | 
| 1220 | 942 | val newth = | 
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changeset | 943 |             (Thm{sign_ref = newsign_ref, 
 | 
| 11518 | 944 | der = Pt.infer_derivs' (Pt.instantiate vTs tpairs) der, | 
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changeset | 945 | maxidx = maxidx_of_term newprop, | 
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changeset | 946 | shyps = add_insts_sorts ((vTs, tpairs), shyps), | 
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changeset | 947 | hyps = hyps, | 
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changeset | 948 | prop = newprop}) | 
| 250 | 949 | in if not(instl_ok(map #1 tpairs)) | 
| 193 | 950 |       then raise THM("instantiate: variables not distinct", 0, [th])
 | 
| 951 | else if not(null(findrep(map #1 vTs))) | |
| 952 |       then raise THM("instantiate: type variables not distinct", 0, [th])
 | |
| 8291 | 953 | else nodup_vars newth "instantiate" | 
| 0 | 954 | end | 
| 6928 | 955 |   handle TERM _ => raise THM("instantiate: incompatible signatures", 0, [th])
 | 
| 956 | | TYPE (msg, _, _) => raise THM (msg, 0, [th]); | |
| 957 | ||
| 958 | end; | |
| 959 | ||
| 0 | 960 | |
| 961 | (*The trivial implication A==>A, justified by assume and forall rules. | |
| 962 | A can contain Vars, not so for assume! *) | |
| 250 | 963 | fun trivial ct : thm = | 
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changeset | 964 |   let val Cterm {sign_ref, t=A, T, maxidx} = ct
 | 
| 250 | 965 | in if T<>propT then | 
| 966 |             raise THM("trivial: the term must have type prop", 0, [])
 | |
| 1238 | 967 | else fix_shyps [] [] | 
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changeset | 968 |         (Thm{sign_ref = sign_ref, 
 | 
| 11518 | 969 |              der = Pt.infer_derivs' I (false, Pt.AbsP ("H", None, Pt.PBound 0)),
 | 
| 2386 | 970 | maxidx = maxidx, | 
| 971 | shyps = [], | |
| 972 | hyps = [], | |
| 973 | prop = implies$A$A}) | |
| 0 | 974 | end; | 
| 975 | ||
| 1503 | 976 | (*Axiom-scheme reflecting signature contents: "OFCLASS(?'a::c, c_class)" *) | 
| 6368 | 977 | fun class_triv sign c = | 
| 978 |   let val Cterm {sign_ref, t, maxidx, ...} =
 | |
| 979 |     cterm_of sign (Logic.mk_inclass (TVar (("'a", 0), [c]), c))
 | |
| 980 |       handle TERM (msg, _) => raise THM ("class_triv: " ^ msg, 0, []);
 | |
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changeset | 981 | in | 
| 1238 | 982 | fix_shyps [] [] | 
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changeset | 983 |       (Thm {sign_ref = sign_ref, 
 | 
| 11518 | 984 | der = Pt.infer_derivs' I | 
| 985 |               (false, Pt.PAxm ("ProtoPure.class_triv:" ^ c, t, Some [])),
 | |
| 2386 | 986 | maxidx = maxidx, | 
| 987 | shyps = [], | |
| 988 | hyps = [], | |
| 989 | prop = t}) | |
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changeset | 990 | end; | 
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changeset | 991 | |
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changeset | 992 | |
| 6786 | 993 | (* Replace all TFrees not fixed or in the hyps by new TVars *) | 
| 994 | fun varifyT' fixed (Thm{sign_ref,der,maxidx,shyps,hyps,prop}) =
 | |
| 12500 | 995 | let | 
| 996 | val tfrees = foldr add_term_tfree_names (hyps, fixed); | |
| 997 | val (prop', al) = Type.varify (prop, tfrees); | |
| 1634 | 998 | in let val thm = (*no fix_shyps*) | 
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changeset | 999 |     Thm{sign_ref = sign_ref, 
 | 
| 11518 | 1000 | der = Pt.infer_derivs' (Pt.varify_proof prop tfrees) der, | 
| 2386 | 1001 | maxidx = Int.max(0,maxidx), | 
| 1002 | shyps = shyps, | |
| 1003 | hyps = hyps, | |
| 12500 | 1004 | prop = prop'} | 
| 1005 | in (nodup_vars thm "varifyT", al) end | |
| 8291 | 1006 | (* this nodup_vars check can be removed if thms are guaranteed not to contain | 
| 1007 | duplicate TVars with different sorts *) | |
| 0 | 1008 | end; | 
| 1009 | ||
| 12500 | 1010 | val varifyT = #1 o varifyT' []; | 
| 6786 | 1011 | |
| 0 | 1012 | (* Replace all TVars by new TFrees *) | 
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changeset | 1013 | fun freezeT(Thm{sign_ref,der,maxidx,shyps,hyps,prop}) =
 | 
| 3410 | 1014 | let val (prop',_) = Type.freeze_thaw prop | 
| 1238 | 1015 | in (*no fix_shyps*) | 
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changeset | 1016 |     Thm{sign_ref = sign_ref, 
 | 
| 11518 | 1017 | der = Pt.infer_derivs' (Pt.freezeT prop) der, | 
| 2386 | 1018 | maxidx = maxidx_of_term prop', | 
| 1019 | shyps = shyps, | |
| 1020 | hyps = hyps, | |
| 1529 | 1021 | prop = prop'} | 
| 1220 | 1022 | end; | 
| 0 | 1023 | |
| 1024 | ||
| 1025 | (*** Inference rules for tactics ***) | |
| 1026 | ||
| 1027 | (*Destruct proof state into constraints, other goals, goal(i), rest *) | |
| 1028 | fun dest_state (state as Thm{prop,...}, i) =
 | |
| 1029 | let val (tpairs,horn) = Logic.strip_flexpairs prop | |
| 1030 | in case Logic.strip_prems(i, [], horn) of | |
| 1031 | (B::rBs, C) => (tpairs, rev rBs, B, C) | |
| 1032 |         | _ => raise THM("dest_state", i, [state])
 | |
| 1033 | end | |
| 1034 |   handle TERM _ => raise THM("dest_state", i, [state]);
 | |
| 1035 | ||
| 309 | 1036 | (*Increment variables and parameters of orule as required for | 
| 0 | 1037 | resolution with goal i of state. *) | 
| 1038 | fun lift_rule (state, i) orule = | |
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changeset | 1039 |   let val Thm{shyps=sshyps, prop=sprop, maxidx=smax, sign_ref=ssign_ref,...} = state
 | 
| 0 | 1040 | val (Bi::_, _) = Logic.strip_prems(i, [], Logic.skip_flexpairs sprop) | 
| 1529 | 1041 |         handle TERM _ => raise THM("lift_rule", i, [orule,state])
 | 
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changeset | 1042 |       val ct_Bi = Cterm {sign_ref=ssign_ref, maxidx=smax, T=propT, t=Bi}
 | 
| 1529 | 1043 | val (lift_abs,lift_all) = Logic.lift_fns(Bi,smax+1) | 
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changeset | 1044 |       val (Thm{sign_ref, der, maxidx,shyps,hyps,prop}) = orule
 | 
| 0 | 1045 | val (tpairs,As,B) = Logic.strip_horn prop | 
| 1238 | 1046 | in (*no fix_shyps*) | 
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changeset | 1047 |       Thm{sign_ref = merge_thm_sgs(state,orule),
 | 
| 11518 | 1048 | der = Pt.infer_derivs' (Pt.lift_proof Bi (smax+1) prop) der, | 
| 2386 | 1049 | maxidx = maxidx+smax+1, | 
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changeset | 1050 | shyps=union_sort(sshyps,shyps), | 
| 2386 | 1051 | hyps=hyps, | 
| 1529 | 1052 | prop = Logic.rule_of (map (pairself lift_abs) tpairs, | 
| 2386 | 1053 | map lift_all As, | 
| 1054 | lift_all B)} | |
| 0 | 1055 | end; | 
| 1056 | ||
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changeset | 1057 | fun incr_indexes i (thm as Thm {sign_ref, der, maxidx, shyps, hyps, prop}) =
 | 
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changeset | 1058 |   if i < 0 then raise THM ("negative increment", 0, [thm]) else
 | 
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changeset | 1059 | if i = 0 then thm else | 
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changeset | 1060 |     Thm {sign_ref = sign_ref,
 | 
| 11518 | 1061 | der = Pt.infer_derivs' (Pt.map_proof_terms | 
| 1062 | (Logic.incr_indexes ([], i)) (incr_tvar i)) der, | |
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changeset | 1063 | maxidx = maxidx + i, | 
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changeset | 1064 | shyps = shyps, | 
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changeset | 1065 | hyps = hyps, | 
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changeset | 1066 | prop = Logic.incr_indexes ([], i) prop}; | 
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changeset | 1067 | |
| 0 | 1068 | (*Solve subgoal Bi of proof state B1...Bn/C by assumption. *) | 
| 1069 | fun assumption i state = | |
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changeset | 1070 |   let val Thm{sign_ref,der,maxidx,hyps,prop,...} = state;
 | 
| 0 | 1071 | val (tpairs, Bs, Bi, C) = dest_state(state,i) | 
| 11518 | 1072 |       fun newth n (env as Envir.Envir{maxidx, ...}, tpairs) =
 | 
| 1220 | 1073 | fix_shyps [state] (env_codT env) | 
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changeset | 1074 |           (Thm{sign_ref = sign_ref, 
 | 
| 11518 | 1075 | der = Pt.infer_derivs' | 
| 1076 | ((if Envir.is_empty env then I else (Pt.norm_proof' env)) o | |
| 1077 | Pt.assumption_proof Bs Bi n) der, | |
| 2386 | 1078 | maxidx = maxidx, | 
| 1079 | shyps = [], | |
| 1080 | hyps = hyps, | |
| 1081 | prop = | |
| 1082 | if Envir.is_empty env then (*avoid wasted normalizations*) | |
| 1083 | Logic.rule_of (tpairs, Bs, C) | |
| 1084 | else (*normalize the new rule fully*) | |
| 1085 | Envir.norm_term env (Logic.rule_of (tpairs, Bs, C))}); | |
| 11518 | 1086 | fun addprfs [] _ = Seq.empty | 
| 1087 | | addprfs ((t,u)::apairs) n = Seq.make (fn()=> Seq.pull | |
| 1088 | (Seq.mapp (newth n) | |
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changeset | 1089 | (Unify.unifiers(Sign.deref sign_ref,Envir.empty maxidx, (t,u)::tpairs)) | 
| 11518 | 1090 | (addprfs apairs (n+1)))) | 
| 1091 | in addprfs (Logic.assum_pairs Bi) 1 end; | |
| 0 | 1092 | |
| 250 | 1093 | (*Solve subgoal Bi of proof state B1...Bn/C by assumption. | 
| 0 | 1094 | Checks if Bi's conclusion is alpha-convertible to one of its assumptions*) | 
| 1095 | fun eq_assumption i state = | |
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changeset | 1096 |   let val Thm{sign_ref,der,maxidx,hyps,prop,...} = state;
 | 
| 0 | 1097 | val (tpairs, Bs, Bi, C) = dest_state(state,i) | 
| 11518 | 1098 | in (case find_index (op aconv) (Logic.assum_pairs Bi) of | 
| 1099 |          (~1) => raise THM("eq_assumption", 0, [state])
 | |
| 1100 | | n => fix_shyps [state] [] | |
| 1101 |                 (Thm{sign_ref = sign_ref, 
 | |
| 1102 | der = Pt.infer_derivs' | |
| 1103 | (Pt.assumption_proof Bs Bi (n+1)) der, | |
| 1104 | maxidx = maxidx, | |
| 1105 | shyps = [], | |
| 1106 | hyps = hyps, | |
| 1107 | prop = Logic.rule_of(tpairs, Bs, C)})) | |
| 0 | 1108 | end; | 
| 1109 | ||
| 1110 | ||
| 2671 | 1111 | (*For rotate_tac: fast rotation of assumptions of subgoal i*) | 
| 1112 | fun rotate_rule k i state = | |
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changeset | 1113 |   let val Thm{sign_ref,der,maxidx,hyps,prop,shyps} = state;
 | 
| 2671 | 1114 | val (tpairs, Bs, Bi, C) = dest_state(state,i) | 
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changeset | 1115 | val params = Term.strip_all_vars Bi | 
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changeset | 1116 | and rest = Term.strip_all_body Bi | 
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changeset | 1117 | val asms = Logic.strip_imp_prems rest | 
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changeset | 1118 | and concl = Logic.strip_imp_concl rest | 
| 2671 | 1119 | val n = length asms | 
| 11563 | 1120 | val m = if k<0 then n+k else k | 
| 1121 | val Bi' = if 0=m orelse m=n then Bi | |
| 2671 | 1122 | else if 0<m andalso m<n | 
| 1123 | then list_all | |
| 1124 | (params, | |
| 1125 | Logic.list_implies(List.drop(asms, m) @ | |
| 1126 | List.take(asms, m), | |
| 1127 | concl)) | |
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changeset | 1128 | 		   else raise THM("rotate_rule", k, [state])
 | 
| 7264 | 1129 | in (*no fix_shyps*) | 
| 1130 |       Thm{sign_ref = sign_ref, 
 | |
| 11563 | 1131 | der = Pt.infer_derivs' (Pt.rotate_proof Bs Bi m) der, | 
| 2671 | 1132 | maxidx = maxidx, | 
| 1133 | shyps = shyps, | |
| 1134 | hyps = hyps, | |
| 11563 | 1135 | prop = Logic.rule_of (tpairs, Bs @ [Bi'], C)} | 
| 2671 | 1136 | end; | 
| 1137 | ||
| 1138 | ||
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changeset | 1139 | (*Rotates a rule's premises to the left by k, leaving the first j premises | 
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changeset | 1140 | unchanged. Does nothing if k=0 or if k equals n-j, where n is the | 
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changeset | 1141 | number of premises. Useful with etac and underlies tactic/defer_tac*) | 
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changeset | 1142 | fun permute_prems j k rl = | 
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changeset | 1143 |   let val Thm{sign_ref,der,maxidx,hyps,prop,shyps} = rl
 | 
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changeset | 1144 | val prems = Logic.strip_imp_prems prop | 
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changeset | 1145 | and concl = Logic.strip_imp_concl prop | 
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changeset | 1146 | val moved_prems = List.drop(prems, j) | 
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changeset | 1147 | and fixed_prems = List.take(prems, j) | 
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changeset | 1148 |         handle Subscript => raise THM("permute_prems:j", j, [rl])
 | 
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changeset | 1149 | val n_j = length moved_prems | 
| 11563 | 1150 | val m = if k<0 then n_j + k else k | 
| 1151 | val prop' = if 0 = m orelse m = n_j then prop | |
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changeset | 1152 | else if 0<m andalso m<n_j | 
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changeset | 1153 | then Logic.list_implies(fixed_prems @ | 
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changeset | 1154 | List.drop(moved_prems, m) @ | 
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changeset | 1155 | List.take(moved_prems, m), | 
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changeset | 1156 | concl) | 
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changeset | 1157 | 		   else raise THM("permute_prems:k", k, [rl])
 | 
| 7264 | 1158 | in (*no fix_shyps*) | 
| 1159 |       Thm{sign_ref = sign_ref, 
 | |
| 11563 | 1160 | der = Pt.infer_derivs' (Pt.permute_prems_prf prems j m) der, | 
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changeset | 1161 | maxidx = maxidx, | 
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changeset | 1162 | shyps = shyps, | 
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changeset | 1163 | hyps = hyps, | 
| 11563 | 1164 | prop = prop'} | 
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changeset | 1165 | end; | 
| 
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changeset | 1166 | |
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changeset | 1167 | |
| 0 | 1168 | (** User renaming of parameters in a subgoal **) | 
| 1169 | ||
| 1170 | (*Calls error rather than raising an exception because it is intended | |
| 1171 | for top-level use -- exception handling would not make sense here. | |
| 1172 | The names in cs, if distinct, are used for the innermost parameters; | |
| 1173 | preceding parameters may be renamed to make all params distinct.*) | |
| 1174 | fun rename_params_rule (cs, i) state = | |
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changeset | 1175 |   let val Thm{sign_ref,der,maxidx,hyps,...} = state
 | 
| 0 | 1176 | val (tpairs, Bs, Bi, C) = dest_state(state,i) | 
| 1177 | val iparams = map #1 (Logic.strip_params Bi) | |
| 1178 | val short = length iparams - length cs | |
| 250 | 1179 | val newnames = | 
| 1180 | if short<0 then error"More names than abstractions!" | |
| 1181 | else variantlist(take (short,iparams), cs) @ cs | |
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changeset | 1182 | val freenames = map (#1 o dest_Free) (term_frees Bi) | 
| 0 | 1183 | val newBi = Logic.list_rename_params (newnames, Bi) | 
| 250 | 1184 | in | 
| 0 | 1185 | case findrep cs of | 
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changeset | 1186 |      c::_ => (warning ("Can't rename.  Bound variables not distinct: " ^ c); 
 | 
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changeset | 1187 | state) | 
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changeset | 1188 | | [] => (case cs inter_string freenames of | 
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changeset | 1189 |        a::_ => (warning ("Can't rename.  Bound/Free variable clash: " ^ a); 
 | 
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changeset | 1190 | state) | 
| 1220 | 1191 | | [] => fix_shyps [state] [] | 
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changeset | 1192 |                 (Thm{sign_ref = sign_ref,
 | 
| 11518 | 1193 | der = der, | 
| 2386 | 1194 | maxidx = maxidx, | 
| 1195 | shyps = [], | |
| 1196 | hyps = hyps, | |
| 1197 | prop = Logic.rule_of(tpairs, Bs@[newBi], C)})) | |
| 0 | 1198 | end; | 
| 1199 | ||
| 12982 | 1200 | |
| 0 | 1201 | (*** Preservation of bound variable names ***) | 
| 1202 | ||
| 12982 | 1203 | fun rename_boundvars pat obj (thm as Thm {sign_ref, der, maxidx, hyps, shyps, prop}) =
 | 
| 1204 | (case Term.rename_abs pat obj prop of | |
| 1205 | None => thm | |
| 1206 | | Some prop' => Thm | |
| 1207 |       {sign_ref = sign_ref,
 | |
| 1208 | der = der, | |
| 1209 | maxidx = maxidx, | |
| 1210 | hyps = hyps, | |
| 1211 | shyps = shyps, | |
| 1212 | prop = prop'}); | |
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changeset | 1213 | |
| 0 | 1214 | |
| 250 | 1215 | (* strip_apply f A(,B) strips off all assumptions/parameters from A | 
| 0 | 1216 | introduced by lifting over B, and applies f to remaining part of A*) | 
| 1217 | fun strip_apply f = | |
| 1218 |   let fun strip(Const("==>",_)$ A1 $ B1,
 | |
| 250 | 1219 |                 Const("==>",_)$ _  $ B2) = implies $ A1 $ strip(B1,B2)
 | 
| 1220 |         | strip((c as Const("all",_)) $ Abs(a,T,t1),
 | |
| 1221 |                       Const("all",_)  $ Abs(_,_,t2)) = c$Abs(a,T,strip(t1,t2))
 | |
| 1222 | | strip(A,_) = f A | |
| 0 | 1223 | in strip end; | 
| 1224 | ||
| 1225 | (*Use the alist to rename all bound variables and some unknowns in a term | |
| 1226 | dpairs = current disagreement pairs; tpairs = permanent ones (flexflex); | |
| 1227 | Preserves unknowns in tpairs and on lhs of dpairs. *) | |
| 1228 | fun rename_bvs([],_,_,_) = I | |
| 1229 | | rename_bvs(al,dpairs,tpairs,B) = | |
| 250 | 1230 | let val vars = foldr add_term_vars | 
| 1231 | (map fst dpairs @ map fst tpairs @ map snd tpairs, []) | |
| 1232 | (*unknowns appearing elsewhere be preserved!*) | |
| 1233 | val vids = map (#1 o #1 o dest_Var) vars; | |
| 1234 | fun rename(t as Var((x,i),T)) = | |
| 1235 | (case assoc(al,x) of | |
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changeset | 1236 | Some(y) => if x mem_string vids orelse y mem_string vids then t | 
| 250 | 1237 | else Var((y,i),T) | 
| 1238 | | None=> t) | |
| 0 | 1239 | | rename(Abs(x,T,t)) = | 
| 9721 | 1240 | Abs(if_none(assoc_string(al,x)) x, T, rename t) | 
| 0 | 1241 | | rename(f$t) = rename f $ rename t | 
| 1242 | | rename(t) = t; | |
| 250 | 1243 | fun strip_ren Ai = strip_apply rename (Ai,B) | 
| 0 | 1244 | in strip_ren end; | 
| 1245 | ||
| 1246 | (*Function to rename bounds/unknowns in the argument, lifted over B*) | |
| 1247 | fun rename_bvars(dpairs, tpairs, B) = | |
| 12982 | 1248 | rename_bvs(foldr Term.match_bvars (dpairs,[]), dpairs, tpairs, B); | 
| 0 | 1249 | |
| 1250 | ||
| 1251 | (*** RESOLUTION ***) | |
| 1252 | ||
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changeset | 1253 | (** Lifting optimizations **) | 
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changeset | 1254 | |
| 0 | 1255 | (*strip off pairs of assumptions/parameters in parallel -- they are | 
| 1256 | identical because of lifting*) | |
| 250 | 1257 | fun strip_assums2 (Const("==>", _) $ _ $ B1,
 | 
| 1258 |                    Const("==>", _) $ _ $ B2) = strip_assums2 (B1,B2)
 | |
| 0 | 1259 |   | strip_assums2 (Const("all",_)$Abs(a,T,t1),
 | 
| 250 | 1260 |                    Const("all",_)$Abs(_,_,t2)) =
 | 
| 0 | 1261 | let val (B1,B2) = strip_assums2 (t1,t2) | 
| 1262 | in (Abs(a,T,B1), Abs(a,T,B2)) end | |
| 1263 | | strip_assums2 BB = BB; | |
| 1264 | ||
| 1265 | ||
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changeset | 1266 | (*Faster normalization: skip assumptions that were lifted over*) | 
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changeset | 1267 | fun norm_term_skip env 0 t = Envir.norm_term env t | 
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changeset | 1268 |   | norm_term_skip env n (Const("all",_)$Abs(a,T,t)) =
 | 
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changeset | 1269 |         let val Envir.Envir{iTs, ...} = env
 | 
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changeset | 1270 | val T' = typ_subst_TVars_Vartab iTs T | 
| 1238 | 1271 | (*Must instantiate types of parameters because they are flattened; | 
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changeset | 1272 | this could be a NEW parameter*) | 
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changeset | 1273 | in all T' $ Abs(a, T', norm_term_skip env n t) end | 
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changeset | 1274 |   | norm_term_skip env n (Const("==>", _) $ A $ B) =
 | 
| 1238 | 1275 | implies $ A $ norm_term_skip env (n-1) B | 
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changeset | 1276 | | norm_term_skip env n t = error"norm_term_skip: too few assumptions??"; | 
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changeset | 1277 | |
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changeset | 1278 | |
| 0 | 1279 | (*Composition of object rule r=(A1...Am/B) with proof state s=(B1...Bn/C) | 
| 250 | 1280 | Unifies B with Bi, replacing subgoal i (1 <= i <= n) | 
| 0 | 1281 | If match then forbid instantiations in proof state | 
| 1282 | If lifted then shorten the dpair using strip_assums2. | |
| 1283 | If eres_flg then simultaneously proves A1 by assumption. | |
| 250 | 1284 | nsubgoal is the number of new subgoals (written m above). | 
| 0 | 1285 | Curried so that resolution calls dest_state only once. | 
| 1286 | *) | |
| 4270 | 1287 | local exception COMPOSE | 
| 0 | 1288 | in | 
| 250 | 1289 | fun bicompose_aux match (state, (stpairs, Bs, Bi, C), lifted) | 
| 0 | 1290 | (eres_flg, orule, nsubgoal) = | 
| 1529 | 1291 |  let val Thm{der=sder, maxidx=smax, shyps=sshyps, hyps=shyps, ...} = state
 | 
| 1292 |      and Thm{der=rder, maxidx=rmax, shyps=rshyps, hyps=rhyps, 
 | |
| 2386 | 1293 | prop=rprop,...} = orule | 
| 1529 | 1294 | (*How many hyps to skip over during normalization*) | 
| 1238 | 1295 | and nlift = Logic.count_prems(strip_all_body Bi, | 
| 1296 | if eres_flg then ~1 else 0) | |
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changeset | 1297 | val sign_ref = merge_thm_sgs(state,orule); | 
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changeset | 1298 | val sign = Sign.deref sign_ref; | 
| 0 | 1299 | (** Add new theorem with prop = '[| Bs; As |] ==> C' to thq **) | 
| 11518 | 1300 |      fun addth A (As, oldAs, rder', n) ((env as Envir.Envir {maxidx, ...}, tpairs), thq) =
 | 
| 250 | 1301 | let val normt = Envir.norm_term env; | 
| 1302 | (*perform minimal copying here by examining env*) | |
| 1303 | val normp = | |
| 1304 | if Envir.is_empty env then (tpairs, Bs @ As, C) | |
| 1305 | else | |
| 1306 | let val ntps = map (pairself normt) tpairs | |
| 2147 | 1307 | in if Envir.above (smax, env) then | 
| 1238 | 1308 | (*no assignments in state; normalize the rule only*) | 
| 1309 | if lifted | |
| 1310 | then (ntps, Bs @ map (norm_term_skip env nlift) As, C) | |
| 1311 | else (ntps, Bs @ map normt As, C) | |
| 1529 | 1312 | else if match then raise COMPOSE | 
| 250 | 1313 | else (*normalize the new rule fully*) | 
| 1314 | (ntps, map normt (Bs @ As), normt C) | |
| 1315 | end | |
| 1258 | 1316 | val th = (*tuned fix_shyps*) | 
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changeset | 1317 |              Thm{sign_ref = sign_ref,
 | 
| 11518 | 1318 | der = Pt.infer_derivs | 
| 1319 | ((if Envir.is_empty env then I | |
| 1320 | else if Envir.above (smax, env) then | |
| 1321 | (fn f => fn der => f (Pt.norm_proof' env der)) | |
| 1322 | else | |
| 1323 | curry op oo (Pt.norm_proof' env)) | |
| 1324 | (Pt.bicompose_proof Bs oldAs As A n)) rder' sder, | |
| 2386 | 1325 | maxidx = maxidx, | 
| 1326 | shyps = add_env_sorts (env, union_sort(rshyps,sshyps)), | |
| 1327 | hyps = union_term(rhyps,shyps), | |
| 1328 | prop = Logic.rule_of normp} | |
| 11518 | 1329 | in Seq.cons(th, thq) end handle COMPOSE => thq; | 
| 0 | 1330 | val (rtpairs,rhorn) = Logic.strip_flexpairs(rprop); | 
| 1331 | val (rAs,B) = Logic.strip_prems(nsubgoal, [], rhorn) | |
| 1332 |        handle TERM _ => raise THM("bicompose: rule", 0, [orule,state]);
 | |
| 1333 | (*Modify assumptions, deleting n-th if n>0 for e-resolution*) | |
| 1334 | fun newAs(As0, n, dpairs, tpairs) = | |
| 11518 | 1335 | let val (As1, rder') = | 
| 1336 | if !Logic.auto_rename orelse not lifted then (As0, rder) | |
| 1337 | else (map (rename_bvars(dpairs,tpairs,B)) As0, | |
| 1338 | Pt.infer_derivs' (Pt.map_proof_terms | |
| 1339 | (rename_bvars (dpairs, tpairs, Bound 0)) I) rder); | |
| 1340 | in (map (Logic.flatten_params n) As1, As1, rder', n) | |
| 250 | 1341 | handle TERM _ => | 
| 1342 |           raise THM("bicompose: 1st premise", 0, [orule])
 | |
| 0 | 1343 | end; | 
| 2147 | 1344 | val env = Envir.empty(Int.max(rmax,smax)); | 
| 0 | 1345 | val BBi = if lifted then strip_assums2(B,Bi) else (B,Bi); | 
| 1346 | val dpairs = BBi :: (rtpairs@stpairs); | |
| 1347 | (*elim-resolution: try each assumption in turn. Initially n=1*) | |
| 11518 | 1348 | fun tryasms (_, _, _, []) = Seq.empty | 
| 1349 | | tryasms (A, As, n, (t,u)::apairs) = | |
| 4270 | 1350 | (case Seq.pull(Unify.unifiers(sign, env, (t,u)::dpairs)) of | 
| 11518 | 1351 | None => tryasms (A, As, n+1, apairs) | 
| 250 | 1352 | | cell as Some((_,tpairs),_) => | 
| 11518 | 1353 | Seq.it_right (addth A (newAs(As, n, [BBi,(u,t)], tpairs))) | 
| 4270 | 1354 | (Seq.make (fn()=> cell), | 
| 11518 | 1355 | Seq.make (fn()=> Seq.pull (tryasms (A, As, n+1, apairs))))); | 
| 0 | 1356 |      fun eres [] = raise THM("bicompose: no premises", 0, [orule,state])
 | 
| 11518 | 1357 | | eres (A1::As) = tryasms (Some A1, As, 1, Logic.assum_pairs A1); | 
| 0 | 1358 | (*ordinary resolution*) | 
| 4270 | 1359 | fun res(None) = Seq.empty | 
| 250 | 1360 | | res(cell as Some((_,tpairs),_)) = | 
| 11518 | 1361 | Seq.it_right (addth None (newAs(rev rAs, 0, [BBi], tpairs))) | 
| 4270 | 1362 | (Seq.make (fn()=> cell), Seq.empty) | 
| 0 | 1363 | in if eres_flg then eres(rev rAs) | 
| 4270 | 1364 | else res(Seq.pull(Unify.unifiers(sign, env, dpairs))) | 
| 0 | 1365 | end; | 
| 7528 | 1366 | end; | 
| 0 | 1367 | |
| 1368 | ||
| 1369 | fun bicompose match arg i state = | |
| 1370 | bicompose_aux match (state, dest_state(state,i), false) arg; | |
| 1371 | ||
| 1372 | (*Quick test whether rule is resolvable with the subgoal with hyps Hs | |
| 1373 | and conclusion B. If eres_flg then checks 1st premise of rule also*) | |
| 1374 | fun could_bires (Hs, B, eres_flg, rule) = | |
| 1375 | let fun could_reshyp (A1::_) = exists (apl(A1,could_unify)) Hs | |
| 250 | 1376 | | could_reshyp [] = false; (*no premise -- illegal*) | 
| 1377 | in could_unify(concl_of rule, B) andalso | |
| 1378 | (not eres_flg orelse could_reshyp (prems_of rule)) | |
| 0 | 1379 | end; | 
| 1380 | ||
| 1381 | (*Bi-resolution of a state with a list of (flag,rule) pairs. | |
| 1382 | Puts the rule above: rule/state. Renames vars in the rules. *) | |
| 250 | 1383 | fun biresolution match brules i state = | 
| 0 | 1384 | let val lift = lift_rule(state, i); | 
| 250 | 1385 | val (stpairs, Bs, Bi, C) = dest_state(state,i) | 
| 1386 | val B = Logic.strip_assums_concl Bi; | |
| 1387 | val Hs = Logic.strip_assums_hyp Bi; | |
| 1388 | val comp = bicompose_aux match (state, (stpairs, Bs, Bi, C), true); | |
| 4270 | 1389 | fun res [] = Seq.empty | 
| 250 | 1390 | | res ((eres_flg, rule)::brules) = | 
| 1391 | if could_bires (Hs, B, eres_flg, rule) | |
| 4270 | 1392 | then Seq.make (*delay processing remainder till needed*) | 
| 250 | 1393 | (fn()=> Some(comp (eres_flg, lift rule, nprems_of rule), | 
| 1394 | res brules)) | |
| 1395 | else res brules | |
| 4270 | 1396 | in Seq.flat (res brules) end; | 
| 0 | 1397 | |
| 1398 | ||
| 2509 | 1399 | (*** Oracles ***) | 
| 1400 | ||
| 3812 | 1401 | fun invoke_oracle thy raw_name = | 
| 1402 | let | |
| 6390 | 1403 |     val {sign = sg, oracles, ...} = Theory.rep_theory thy;
 | 
| 3812 | 1404 | val name = Sign.intern sg Theory.oracleK raw_name; | 
| 1405 | val oracle = | |
| 1406 | (case Symtab.lookup (oracles, name) of | |
| 1407 |         None => raise THM ("Unknown oracle: " ^ name, 0, [])
 | |
| 1408 | | Some (f, _) => f); | |
| 1409 | in | |
| 1410 | fn (sign, exn) => | |
| 1411 | let | |
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changeset | 1412 | val sign_ref' = Sign.merge_refs (Sign.self_ref sg, Sign.self_ref sign); | 
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changeset | 1413 | val sign' = Sign.deref sign_ref'; | 
| 3812 | 1414 | val (prop, T, maxidx) = Sign.certify_term sign' (oracle (sign', exn)); | 
| 1415 | in | |
| 1416 | if T <> propT then | |
| 1417 |           raise THM ("Oracle's result must have type prop: " ^ name, 0, [])
 | |
| 1418 | else fix_shyps [] [] | |
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changeset | 1419 |           (Thm {sign_ref = sign_ref', 
 | 
| 11518 | 1420 | der = (true, Pt.oracle_proof name prop), | 
| 3812 | 1421 | maxidx = maxidx, | 
| 1422 | shyps = [], | |
| 1423 | hyps = [], | |
| 1424 | prop = prop}) | |
| 1425 | end | |
| 1426 | end; | |
| 1427 | ||
| 1539 | 1428 | |
| 0 | 1429 | end; | 
| 1503 | 1430 | |
| 6089 | 1431 | |
| 1432 | structure BasicThm: BASIC_THM = Thm; | |
| 1433 | open BasicThm; |