author | haftmann |
Wed, 22 Oct 2008 14:15:42 +0200 | |
changeset 28660 | 54091ba1448f |
parent 26711 | 3a478bfa1650 |
child 28839 | 32d498cf7595 |
permissions | -rw-r--r-- |
4 | 1 |
(* Title: Provers/splitter |
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ID: $Id$ |
|
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Author: Tobias Nipkow |
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Copyright 1995 TU Munich |
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|
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Generic case-splitter, suitable for most logics. |
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Deals with equalities of the form ?P(f args) = ... |
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where "f args" must be a first-order term without duplicate variables. |
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*) |
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||
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infix 4 addsplits delsplits; |
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||
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signature SPLITTER_DATA = |
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sig |
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val mk_eq : thm -> thm |
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val meta_eq_to_iff: thm (* "x == y ==> x = y" *) |
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val iffD : thm (* "[| P = Q; Q |] ==> P" *) |
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val disjE : thm (* "[| P | Q; P ==> R; Q ==> R |] ==> R" *) |
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val conjE : thm (* "[| P & Q; [| P; Q |] ==> R |] ==> R" *) |
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val exE : thm (* "[| EX x. P x; !!x. P x ==> Q |] ==> Q" *) |
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val contrapos : thm (* "[| ~ Q; P ==> Q |] ==> ~ P" *) |
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val contrapos2 : thm (* "[| Q; ~ P ==> ~ Q |] ==> P" *) |
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val notnotD : thm (* "~ ~ P ==> P" *) |
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end |
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||
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signature SPLITTER = |
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sig |
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(* somewhat more internal functions *) |
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val cmap_of_split_thms : thm list -> (string * (typ * term * thm * typ * int) list) list |
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val split_posns : (string * (typ * term * thm * typ * int) list) list -> theory -> typ list -> term -> |
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(thm * (typ * typ * int list) list * int list * typ * term) list (* first argument is a "cmap", returns a list of "split packs" *) |
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(* the "real" interface, providing a number of tactics *) |
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val split_tac : thm list -> int -> tactic |
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val split_inside_tac: thm list -> int -> tactic |
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val split_asm_tac : thm list -> int -> tactic |
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val addsplits : simpset * thm list -> simpset |
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val delsplits : simpset * thm list -> simpset |
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val Addsplits : thm list -> unit |
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val Delsplits : thm list -> unit |
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val split_add: attribute |
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val split_del: attribute |
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val split_modifiers : (Args.T list -> (Method.modifier * Args.T list)) list |
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val setup: theory -> theory |
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end; |
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functor SplitterFun(Data: SPLITTER_DATA): SPLITTER = |
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struct |
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val Const (const_not, _) $ _ = |
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ObjectLogic.drop_judgment (the_context ()) |
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(#1 (Logic.dest_implies (Thm.prop_of Data.notnotD))); |
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val Const (const_or , _) $ _ $ _ = |
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ObjectLogic.drop_judgment (the_context ()) |
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(#1 (Logic.dest_implies (Thm.prop_of Data.disjE))); |
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val const_Trueprop = ObjectLogic.judgment_name (the_context ()); |
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fun split_format_err () = error "Wrong format for split rule"; |
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(* thm -> (string * typ) * bool *) |
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fun split_thm_info thm = case concl_of (Data.mk_eq thm) of |
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Const("==", _) $ (Var _ $ t) $ c => (case strip_comb t of |
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(Const p, _) => (p, case c of (Const (s, _) $ _) => s = const_not | _ => false) |
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| _ => split_format_err ()) |
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| _ => split_format_err (); |
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(* thm list -> (string * (typ * term * thm * typ * int) list) list *) |
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fun cmap_of_split_thms thms = |
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let |
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val splits = map Data.mk_eq thms |
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fun add_thm (cmap, thm) = |
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(case concl_of thm of _$(t as _$lhs)$_ => |
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(case strip_comb lhs of (Const(a,aT),args) => |
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let val info = (aT,lhs,thm,fastype_of t,length args) |
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in case AList.lookup (op =) cmap a of |
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SOME infos => AList.update (op =) (a, info::infos) cmap |
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| NONE => (a,[info])::cmap |
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end |
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| _ => split_format_err()) |
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| _ => split_format_err()) |
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in |
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Library.foldl add_thm ([], splits) |
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end; |
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(* ------------------------------------------------------------------------- *) |
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(* mk_case_split_tac *) |
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(* ------------------------------------------------------------------------- *) |
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(* (int * int -> order) -> thm list -> int -> tactic * <split_posns> *) |
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fun mk_case_split_tac order = |
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let |
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(************************************************************ |
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Create lift-theorem "trlift" : |
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[| !!x. Q x == R x; P(%x. R x) == C |] ==> P (%x. Q x) == C |
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*************************************************************) |
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val meta_iffD = Data.meta_eq_to_iff RS Data.iffD; (* (P == Q) ==> Q ==> P *) |
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val lift = Goal.prove_global Pure.thy ["P", "Q", "R"] |
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[Syntax.read_prop_global Pure.thy "!!x :: 'b. Q(x) == R(x) :: 'c"] |
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(Syntax.read_prop_global Pure.thy "P(%x. Q(x)) == P(%x. R(x))") |
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(fn {prems = [prem], ...} => rewtac prem THEN rtac reflexive_thm 1) |
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val trlift = lift RS transitive_thm; |
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val _ $ (P $ _) $ _ = concl_of trlift; |
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||
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(************************************************************************ |
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Set up term for instantiation of P in the lift-theorem |
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Ts : types of parameters (i.e. variables bound by meta-quantifiers) |
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t : lefthand side of meta-equality in subgoal |
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the lift theorem is applied to (see select) |
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pos : "path" leading to abstraction, coded as a list |
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T : type of body of P(...) |
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maxi : maximum index of Vars |
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*************************************************************************) |
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fun mk_cntxt Ts t pos T maxi = |
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let fun var (t,i) = Var(("X",i),type_of1(Ts,t)); |
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fun down [] t i = Bound 0 |
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| down (p::ps) t i = |
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let val (h,ts) = strip_comb t |
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val v1 = ListPair.map var (Library.take(p,ts), i upto (i+p-1)) |
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val u::us = Library.drop(p,ts) |
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val v2 = ListPair.map var (us, (i+p) upto (i+length(ts)-2)) |
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in list_comb(h,v1@[down ps u (i+length ts)]@v2) end; |
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in Abs("", T, down (rev pos) t maxi) end; |
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|
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(************************************************************************ |
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Set up term for instantiation of P in the split-theorem |
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P(...) == rhs |
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|
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t : lefthand side of meta-equality in subgoal |
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the split theorem is applied to (see select) |
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T : type of body of P(...) |
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tt : the term Const(key,..) $ ... |
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*************************************************************************) |
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fun mk_cntxt_splitthm t tt T = |
148 |
let fun repl lev t = |
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if incr_boundvars lev tt aconv t then Bound lev |
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else case t of |
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(Abs (v, T2, t)) => Abs (v, T2, repl (lev+1) t) |
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| (Bound i) => Bound (if i>=lev then i+1 else i) |
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| (t1 $ t2) => (repl lev t1) $ (repl lev t2) |
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| t => t |
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in Abs("", T, repl 0 t) end; |
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|
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(* add all loose bound variables in t to list is *) |
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fun add_lbnos (is,t) = add_loose_bnos (t,0,is); |
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(* check if the innermost abstraction that needs to be removed |
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has a body of type T; otherwise the expansion thm will fail later on |
163 |
*) |
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fun type_test (T,lbnos,apsns) = |
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let val (_,U: typ,_) = List.nth(apsns, Library.foldl Int.min (hd lbnos, tl lbnos)) |
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in T=U end; |
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(************************************************************************* |
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Create a "split_pack". |
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170 |
|
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171 |
thm : the relevant split-theorem, i.e. P(...) == rhs , where P(...) |
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172 |
is of the form |
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P( Const(key,...) $ t_1 $ ... $ t_n ) (e.g. key = "if") |
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T : type of P(...) |
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T' : type of term to be scanned |
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n : number of arguments expected by Const(key,...) |
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177 |
ts : list of arguments actually found |
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178 |
apsns : list of tuples of the form (T,U,pos), one tuple for each |
17881 | 179 |
abstraction that is encountered on the way to the position where |
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180 |
Const(key, ...) $ ... occurs, where |
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181 |
T : type of the variable bound by the abstraction |
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182 |
U : type of the abstraction's body |
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183 |
pos : "path" leading to the body of the abstraction |
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184 |
pos : "path" leading to the position where Const(key, ...) $ ... occurs. |
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TB : type of Const(key,...) $ t_1 $ ... $ t_n |
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t : the term Const(key,...) $ t_1 $ ... $ t_n |
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187 |
|
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A split pack is a tuple of the form |
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189 |
(thm, apsns, pos, TB, tt) |
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Note : apsns is reversed, so that the outermost quantifier's position |
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191 |
comes first ! If the terms in ts don't contain variables bound |
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192 |
by other than meta-quantifiers, apsns is empty, because no further |
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193 |
lifting is required before applying the split-theorem. |
17881 | 194 |
******************************************************************************) |
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195 |
|
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fun mk_split_pack (thm, T: typ, T', n, ts, apsns, pos, TB, t) = |
1064 | 197 |
if n > length ts then [] |
198 |
else let val lev = length apsns |
|
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val lbnos = Library.foldl add_lbnos ([],Library.take(n,ts)) |
200 |
val flbnos = List.filter (fn i => i < lev) lbnos |
|
4232 | 201 |
val tt = incr_boundvars (~lev) t |
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in if null flbnos then |
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if T = T' then [(thm,[],pos,TB,tt)] else [] |
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204 |
else if type_test(T,flbnos,apsns) then [(thm, rev apsns,pos,TB,tt)] |
2143 | 205 |
else [] |
1064 | 206 |
end; |
0 | 207 |
|
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208 |
|
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209 |
(**************************************************************************** |
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210 |
Recursively scans term for occurences of Const(key,...) $ ... |
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211 |
Returns a list of "split-packs" (one for each occurence of Const(key,...) ) |
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212 |
|
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213 |
cmap : association list of split-theorems that should be tried. |
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214 |
The elements have the format (key,(thm,T,n)) , where |
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215 |
key : the theorem's key constant ( Const(key,...) $ ... ) |
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216 |
thm : the theorem itself |
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T : type of P( Const(key,...) $ ... ) |
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218 |
n : number of arguments expected by Const(key,...) |
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219 |
Ts : types of parameters |
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220 |
t : the term to be scanned |
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221 |
******************************************************************************) |
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222 |
|
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223 |
(* Simplified first-order matching; |
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224 |
assumes that all Vars in the pattern are distinct; |
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225 |
see Pure/pattern.ML for the full version; |
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226 |
*) |
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227 |
local |
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228 |
exception MATCH |
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229 |
in |
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230 |
(* Context.theory -> Type.tyenv * (Term.typ * Term.typ) -> Type.tyenv *) |
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231 |
fun typ_match sg (tyenv, TU) = (Sign.typ_match sg TU tyenv) |
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232 |
handle Type.TYPE_MATCH => raise MATCH |
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233 |
(* Context.theory -> Term.typ list * Term.term * Term.term -> bool *) |
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234 |
fun fomatch sg args = |
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235 |
let |
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236 |
(* Type.tyenv -> Term.typ list * Term.term * Term.term -> Type.tyenv *) |
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237 |
fun mtch tyinsts = fn |
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238 |
(Ts, Var(_,T), t) => |
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239 |
typ_match sg (tyinsts, (T, fastype_of1(Ts,t))) |
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240 |
| (_, Free (a,T), Free (b,U)) => |
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241 |
if a=b then typ_match sg (tyinsts,(T,U)) else raise MATCH |
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242 |
| (_, Const (a,T), Const (b,U)) => |
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243 |
if a=b then typ_match sg (tyinsts,(T,U)) else raise MATCH |
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244 |
| (_, Bound i, Bound j) => |
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245 |
if i=j then tyinsts else raise MATCH |
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246 |
| (Ts, Abs(_,T,t), Abs(_,U,u)) => |
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247 |
mtch (typ_match sg (tyinsts,(T,U))) (U::Ts,t,u) |
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248 |
| (Ts, f$t, g$u) => |
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249 |
mtch (mtch tyinsts (Ts,f,g)) (Ts, t, u) |
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250 |
| _ => raise MATCH |
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|
251 |
in (mtch Vartab.empty args; true) handle MATCH => false end; |
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252 |
end (* local *) |
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253 |
|
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254 |
(* (string * (Term.typ * Term.term * Thm.thm * Term.typ * int) list) list -> Context.theory -> Term.typ list -> Term.term -> |
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|
255 |
(Thm.thm * (Term.typ * Term.typ * int list) list * int list * Term.typ * Term.term) list *) |
20237 | 256 |
fun split_posns (cmap : (string * (typ * term * thm * typ * int) list) list) sg Ts t = |
6130
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257 |
let |
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|
258 |
val T' = fastype_of1 (Ts, t); |
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|
259 |
fun posns Ts pos apsns (Abs (_, T, t)) = |
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|
260 |
let val U = fastype_of1 (T::Ts,t) |
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|
261 |
in posns (T::Ts) (0::pos) ((T, U, pos)::apsns) t end |
6130
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|
262 |
| posns Ts pos apsns t = |
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|
263 |
let |
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|
264 |
val (h, ts) = strip_comb t |
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|
265 |
fun iter((i, a), t) = (i+1, (posns Ts (i::pos) apsns t) @ a); |
6130
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|
266 |
val a = case h of |
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|
267 |
Const(c, cT) => |
9267
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|
268 |
let fun find [] = [] |
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|
269 |
| find ((gcT, pat, thm, T, n)::tups) = |
15570 | 270 |
let val t2 = list_comb (h, Library.take (n, ts)) |
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|
271 |
in if Sign.typ_instance sg (cT, gcT) |
16935 | 272 |
andalso fomatch sg (Ts,pat,t2) |
13157
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|
273 |
then mk_split_pack(thm,T,T',n,ts,apsns,pos,type_of1(Ts,t2),t2) |
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|
274 |
else find tups |
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|
275 |
end |
17184 | 276 |
in find (these (AList.lookup (op =) cmap c)) end |
6130
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|
277 |
| _ => [] |
15570 | 278 |
in snd(Library.foldl iter ((0, a), ts)) end |
1030
1d8fa2fc4b9c
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|
279 |
in posns Ts [] [] t end; |
0 | 280 |
|
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|
281 |
fun nth_subgoal i thm = List.nth (prems_of thm, i-1); |
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|
282 |
|
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|
283 |
fun shorter ((_,ps,pos,_,_), (_,qs,qos,_,_)) = |
4519 | 284 |
prod_ord (int_ord o pairself length) (order o pairself length) |
285 |
((ps, pos), (qs, qos)); |
|
286 |
||
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|
287 |
|
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|
288 |
(************************************************************ |
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|
289 |
call split_posns with appropriate parameters |
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|
290 |
*************************************************************) |
0 | 291 |
|
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|
292 |
fun select cmap state i = |
22596 | 293 |
let val sg = Thm.theory_of_thm state |
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|
294 |
val goali = nth_subgoal i state |
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|
295 |
val Ts = rev(map #2 (Logic.strip_params goali)) |
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|
296 |
val _ $ t $ _ = Logic.strip_assums_concl goali; |
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|
297 |
in (Ts, t, sort shorter (split_posns cmap sg Ts t)) end; |
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|
298 |
|
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299 |
fun exported_split_posns cmap sg Ts t = |
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|
300 |
sort shorter (split_posns cmap sg Ts t); |
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berghofe
parents:
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changeset
|
301 |
|
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
302 |
(************************************************************* |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
303 |
instantiate lift theorem |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
304 |
|
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
305 |
if t is of the form |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
306 |
... ( Const(...,...) $ Abs( .... ) ) ... |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
307 |
then |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
308 |
P = %a. ... ( Const(...,...) $ a ) ... |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
309 |
where a has type T --> U |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
310 |
|
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
311 |
Ts : types of parameters |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
312 |
t : lefthand side of meta-equality in subgoal |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
313 |
the split theorem is applied to (see cmap) |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
314 |
T,U,pos : see mk_split_pack |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
315 |
state : current proof state |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
316 |
lift : the lift theorem |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
317 |
i : no. of subgoal |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
318 |
**************************************************************) |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
319 |
|
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
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diff
changeset
|
320 |
fun inst_lift Ts t (T, U, pos) state i = |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
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diff
changeset
|
321 |
let |
22578 | 322 |
val cert = cterm_of (Thm.theory_of_thm state); |
22596 | 323 |
val cntxt = mk_cntxt Ts t pos (T --> U) (Thm.maxidx_of trlift); |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
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diff
changeset
|
324 |
in cterm_instantiate [(cert P, cert cntxt)] trlift |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
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diff
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|
325 |
end; |
0 | 326 |
|
327 |
||
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
328 |
(************************************************************* |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
329 |
instantiate split theorem |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
330 |
|
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
331 |
Ts : types of parameters |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
332 |
t : lefthand side of meta-equality in subgoal |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
333 |
the split theorem is applied to (see cmap) |
4232 | 334 |
tt : the term Const(key,..) $ ... |
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
335 |
thm : the split theorem |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
336 |
TB : type of body of P(...) |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
337 |
state : current proof state |
4232 | 338 |
i : number of subgoal |
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
339 |
**************************************************************) |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
340 |
|
4232 | 341 |
fun inst_split Ts t tt thm TB state i = |
17881 | 342 |
let |
18145 | 343 |
val thm' = Thm.lift_rule (Thm.cprem_of state i) thm; |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
344 |
val (P, _) = strip_comb (fst (Logic.dest_equals |
22596 | 345 |
(Logic.strip_assums_concl (Thm.prop_of thm')))); |
22578 | 346 |
val cert = cterm_of (Thm.theory_of_thm state); |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
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diff
changeset
|
347 |
val cntxt = mk_cntxt_splitthm t tt TB; |
15570 | 348 |
val abss = Library.foldl (fn (t, T) => Abs ("", T, t)); |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
349 |
in cterm_instantiate [(cert P, cert (abss (cntxt, Ts)))] thm' |
4232 | 350 |
end; |
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
351 |
|
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
352 |
|
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
353 |
(***************************************************************************** |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
354 |
The split-tactic |
17881 | 355 |
|
1686
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
356 |
splits : list of split-theorems to be tried |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
357 |
i : number of subgoal the tactic should be applied to |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
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diff
changeset
|
358 |
*****************************************************************************) |
c67d543bc395
Added functions mk_cntxt_splitthm and inst_split which instantiate
berghofe
parents:
1064
diff
changeset
|
359 |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
360 |
(* thm list -> int -> tactic *) |
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
361 |
|
0 | 362 |
fun split_tac [] i = no_tac |
363 |
| split_tac splits i = |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
364 |
let val cmap = cmap_of_split_thms splits |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
365 |
fun lift_tac Ts t p st = rtac (inst_lift Ts t p st i) i st |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
366 |
fun lift_split_tac state = |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
367 |
let val (Ts, t, splits) = select cmap state i |
1030
1d8fa2fc4b9c
Completely rewrote split_tac. The old one failed in strange circumstances.
nipkow
parents:
943
diff
changeset
|
368 |
in case splits of |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
369 |
[] => no_tac state |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
370 |
| (thm, apsns, pos, TB, tt)::_ => |
1030
1d8fa2fc4b9c
Completely rewrote split_tac. The old one failed in strange circumstances.
nipkow
parents:
943
diff
changeset
|
371 |
(case apsns of |
7672
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
372 |
[] => compose_tac (false, inst_split Ts t tt thm TB state i, 0) i state |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
373 |
| p::_ => EVERY [lift_tac Ts t p, |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
374 |
rtac reflexive_thm (i+1), |
c092e67d12f8
- Fixed bug in mk_split_pack which caused application of expansion theorem
berghofe
parents:
6130
diff
changeset
|
375 |
lift_split_tac] state) |
1030
1d8fa2fc4b9c
Completely rewrote split_tac. The old one failed in strange circumstances.
nipkow
parents:
943
diff
changeset
|
376 |
end |
17881 | 377 |
in COND (has_fewer_prems i) no_tac |
5304 | 378 |
(rtac meta_iffD i THEN lift_split_tac) |
0 | 379 |
end; |
380 |
||
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
381 |
in (split_tac, exported_split_posns) end; (* mk_case_split_tac *) |
1721
445654b6cb95
Rewrote mk_cntxt_splitthm. Added function mk_case_split_inside_tac.
berghofe
parents:
1686
diff
changeset
|
382 |
|
5304 | 383 |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
384 |
val (split_tac, split_posns) = mk_case_split_tac int_ord; |
4189 | 385 |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
386 |
val (split_inside_tac, _) = mk_case_split_tac (rev_order o int_ord); |
5304 | 387 |
|
4189 | 388 |
|
389 |
(***************************************************************************** |
|
390 |
The split-tactic for premises |
|
17881 | 391 |
|
4189 | 392 |
splits : list of split-theorems to be tried |
5304 | 393 |
****************************************************************************) |
4202 | 394 |
fun split_asm_tac [] = K no_tac |
17881 | 395 |
| split_asm_tac splits = |
5304 | 396 |
|
13855
644692eca537
addsplits / delsplits no longer ignore type of constant.
berghofe
parents:
13157
diff
changeset
|
397 |
let val cname_list = map (fst o fst o split_thm_info) splits; |
17881 | 398 |
fun tac (t,i) = |
20664 | 399 |
let val n = find_index (exists_Const (member (op =) cname_list o #1)) |
17881 | 400 |
(Logic.strip_assums_hyp t); |
18545 | 401 |
fun first_prem_is_disj (Const ("==>", _) $ (Const (c, _) |
402 |
$ (Const (s, _) $ _ $ _ )) $ _ ) = c = const_Trueprop andalso s = const_or |
|
17881 | 403 |
| first_prem_is_disj (Const("all",_)$Abs(_,_,t)) = |
404 |
first_prem_is_disj t |
|
405 |
| first_prem_is_disj _ = false; |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
406 |
(* does not work properly if the split variable is bound by a quantifier *) |
17881 | 407 |
fun flat_prems_tac i = SUBGOAL (fn (t,i) => |
408 |
(if first_prem_is_disj t |
|
409 |
then EVERY[etac Data.disjE i,rotate_tac ~1 i, |
|
410 |
rotate_tac ~1 (i+1), |
|
411 |
flat_prems_tac (i+1)] |
|
412 |
else all_tac) |
|
413 |
THEN REPEAT (eresolve_tac [Data.conjE,Data.exE] i) |
|
414 |
THEN REPEAT (dresolve_tac [Data.notnotD] i)) i; |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
415 |
in if n<0 then no_tac else (DETERM (EVERY' |
17881 | 416 |
[rotate_tac n, etac Data.contrapos2, |
417 |
split_tac splits, |
|
418 |
rotate_tac ~1, etac Data.contrapos, rotate_tac ~1, |
|
20217
25b068a99d2b
linear arithmetic splits certain operators (e.g. min, max, abs)
webertj
parents:
18988
diff
changeset
|
419 |
flat_prems_tac] i)) |
17881 | 420 |
end; |
4189 | 421 |
in SUBGOAL tac |
422 |
end; |
|
423 |
||
10652 | 424 |
fun gen_split_tac [] = K no_tac |
425 |
| gen_split_tac (split::splits) = |
|
426 |
let val (_,asm) = split_thm_info split |
|
427 |
in (if asm then split_asm_tac else split_tac) [split] ORELSE' |
|
428 |
gen_split_tac splits |
|
429 |
end; |
|
8468 | 430 |
|
18688 | 431 |
|
8468 | 432 |
(** declare split rules **) |
433 |
||
434 |
(* addsplits / delsplits *) |
|
435 |
||
13859
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
436 |
fun string_of_typ (Type (s, Ts)) = (if null Ts then "" |
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
437 |
else enclose "(" ")" (commas (map string_of_typ Ts))) ^ s |
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
438 |
| string_of_typ _ = "_"; |
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
439 |
|
17881 | 440 |
fun split_name (name, T) asm = "split " ^ |
13859
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
441 |
(if asm then "asm " else "") ^ name ^ " :: " ^ string_of_typ T; |
4189 | 442 |
|
5304 | 443 |
fun ss addsplits splits = |
444 |
let fun addsplit (ss,split) = |
|
445 |
let val (name,asm) = split_thm_info split |
|
13859
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
446 |
in Simplifier.addloop (ss, (split_name name asm, |
17881 | 447 |
(if asm then split_asm_tac else split_tac) [split])) end |
15570 | 448 |
in Library.foldl addsplit (ss,splits) end; |
1721
445654b6cb95
Rewrote mk_cntxt_splitthm. Added function mk_case_split_inside_tac.
berghofe
parents:
1686
diff
changeset
|
449 |
|
5304 | 450 |
fun ss delsplits splits = |
451 |
let fun delsplit(ss,split) = |
|
452 |
let val (name,asm) = split_thm_info split |
|
13859
adf68d9e5dec
split_name no longer uses Sign.string_of_typ to encode types, since
berghofe
parents:
13855
diff
changeset
|
453 |
in Simplifier.delloop (ss, split_name name asm) |
15570 | 454 |
end in Library.foldl delsplit (ss,splits) end; |
1721
445654b6cb95
Rewrote mk_cntxt_splitthm. Added function mk_case_split_inside_tac.
berghofe
parents:
1686
diff
changeset
|
455 |
|
17881 | 456 |
fun Addsplits splits = (change_simpset (fn ss => ss addsplits splits)); |
457 |
fun Delsplits splits = (change_simpset (fn ss => ss delsplits splits)); |
|
8468 | 458 |
|
459 |
||
460 |
(* attributes *) |
|
461 |
||
462 |
val splitN = "split"; |
|
463 |
||
18688 | 464 |
val split_add = Simplifier.attrib (op addsplits); |
465 |
val split_del = Simplifier.attrib (op delsplits); |
|
8634 | 466 |
|
467 |
||
9703 | 468 |
(* methods *) |
8468 | 469 |
|
470 |
val split_modifiers = |
|
18728 | 471 |
[Args.$$$ splitN -- Args.colon >> K ((I, split_add): Method.modifier), |
472 |
Args.$$$ splitN -- Args.add -- Args.colon >> K (I, split_add), |
|
473 |
Args.$$$ splitN -- Args.del -- Args.colon >> K (I, split_del)]; |
|
8468 | 474 |
|
18688 | 475 |
fun split_meth src = |
18988 | 476 |
Method.syntax Attrib.thms src |
21879 | 477 |
#> (fn (ths, _) => Method.SIMPLE_METHOD' (CHANGED_PROP o gen_split_tac ths)); |
9703 | 478 |
|
8468 | 479 |
|
18688 | 480 |
(* theory setup *) |
8468 | 481 |
|
9703 | 482 |
val setup = |
18708 | 483 |
(Attrib.add_attributes |
18728 | 484 |
[(splitN, Attrib.add_del_args split_add split_del, "declaration of case split rule")] #> |
18708 | 485 |
Method.add_methods [(splitN, split_meth, "apply case split rule")]); |
4189 | 486 |
|
1721
445654b6cb95
Rewrote mk_cntxt_splitthm. Added function mk_case_split_inside_tac.
berghofe
parents:
1686
diff
changeset
|
487 |
end; |