src/HOL/Codatatype/Tools/bnf_fp_sugar_tactics.ML
author blanchet
Mon, 17 Sep 2012 21:13:30 +0200
changeset 50444 64ac3471005a
parent 50443 93f158d59ead
child 50445 6df729c6a1a6
permissions -rw-r--r--
cleaner way of dealing with the set functions of sums and products
     1 (*  Title:      HOL/Codatatype/Tools/bnf_fp_sugar_tactics.ML
     2     Author:     Jasmin Blanchette, TU Muenchen
     3     Copyright   2012
     4 
     5 Tactics for datatype and codatatype sugar.
     6 *)
     7 
     8 signature BNF_FP_SUGAR_TACTICS =
     9 sig
    10   val mk_case_tac: Proof.context -> int -> int -> int -> thm -> thm -> thm -> tactic
    11   val mk_coiter_like_tac: thm list -> thm list -> thm -> thm -> thm -> Proof.context -> tactic
    12   val mk_exhaust_tac: Proof.context -> int -> thm list -> thm -> thm -> tactic
    13   val mk_fld_iff_unf_tac: Proof.context -> ctyp option list -> cterm -> cterm -> thm -> thm ->
    14     tactic
    15   val mk_half_distinct_tac: Proof.context -> thm -> thm list -> tactic
    16   val mk_induct_tac: Proof.context -> int list -> int list list -> int list list list -> thm list ->
    17     thm -> thm list -> thm list list -> tactic
    18   val mk_inject_tac: Proof.context -> thm -> thm -> tactic
    19   val mk_iter_like_tac: thm list -> thm list -> thm list -> thm -> thm -> Proof.context -> tactic
    20 end;
    21 
    22 structure BNF_FP_Sugar_Tactics : BNF_FP_SUGAR_TACTICS =
    23 struct
    24 
    25 open BNF_Tactics
    26 open BNF_Util
    27 open BNF_FP_Util
    28 
    29 val meta_mp = @{thm meta_mp};
    30 val meta_spec = @{thm meta_spec};
    31 
    32 fun inst_spurious_fs lthy thm =
    33   let
    34     val fs =
    35       Term.add_vars (prop_of thm) []
    36       |> filter (fn (_, Type (@{type_name fun}, [_, T'])) => T' <> HOLogic.boolT | _ => false);
    37     val cfs =
    38       map (fn f as (_, T) => (certify lthy (Var f), certify lthy (id_abs (domain_type T)))) fs;
    39   in
    40     Drule.cterm_instantiate cfs thm
    41   end;
    42 
    43 val inst_spurious_fs_tac = PRIMITIVE o inst_spurious_fs;
    44 
    45 fun mk_case_tac ctxt n k m case_def ctr_def unf_fld =
    46   Local_Defs.unfold_tac ctxt [case_def, ctr_def, unf_fld] THEN
    47   (rtac (mk_sum_casesN_balanced n k RS ssubst) THEN'
    48    REPEAT_DETERM_N (Int.max (0, m - 1)) o rtac (@{thm split} RS ssubst) THEN'
    49    rtac refl) 1;
    50 
    51 fun mk_exhaust_tac ctxt n ctr_defs fld_iff_unf sumEN' =
    52   Local_Defs.unfold_tac ctxt (fld_iff_unf :: ctr_defs) THEN rtac sumEN' 1 THEN
    53   Local_Defs.unfold_tac ctxt @{thms all_prod_eq} THEN
    54   EVERY' (maps (fn k => [select_prem_tac n (rotate_tac 1) k, REPEAT_DETERM o dtac meta_spec,
    55     etac meta_mp, atac]) (1 upto n)) 1;
    56 
    57 fun mk_fld_iff_unf_tac ctxt cTs cfld cunf fld_unf unf_fld =
    58   (rtac iffI THEN'
    59    EVERY' (map3 (fn cTs => fn cx => fn th =>
    60      dtac (Drule.instantiate' cTs [NONE, NONE, SOME cx] arg_cong) THEN'
    61      SELECT_GOAL (Local_Defs.unfold_tac ctxt [th]) THEN'
    62      atac) [rev cTs, cTs] [cunf, cfld] [unf_fld, fld_unf])) 1;
    63 
    64 fun mk_half_distinct_tac ctxt fld_inject ctr_defs =
    65   Local_Defs.unfold_tac ctxt (fld_inject :: @{thms sum.inject} @ ctr_defs) THEN
    66   rtac @{thm sum.distinct(1)} 1;
    67 
    68 fun mk_inject_tac ctxt ctr_def fld_inject =
    69   Local_Defs.unfold_tac ctxt [ctr_def] THEN rtac (fld_inject RS ssubst) 1 THEN
    70   Local_Defs.unfold_tac ctxt @{thms sum.inject Pair_eq conj_assoc} THEN rtac refl 1;
    71 
    72 val iter_like_thms =
    73   @{thms case_unit comp_def convol_def id_apply map_pair_def sum.simps(5,6) sum_map.simps
    74       split_conv};
    75 
    76 fun mk_iter_like_tac pre_map_defs map_ids iter_like_defs fld_iter_like ctr_def ctxt =
    77   Local_Defs.unfold_tac ctxt (ctr_def :: fld_iter_like :: iter_like_defs @ pre_map_defs @ map_ids @
    78     iter_like_thms) THEN Local_Defs.unfold_tac ctxt @{thms id_def} THEN rtac refl 1;
    79 
    80 val coiter_like_ss = ss_only @{thms if_True if_False};
    81 val coiter_like_thms = @{thms id_apply map_pair_def sum_map.simps prod.cases};
    82 
    83 fun mk_coiter_like_tac coiter_like_defs map_ids fld_unf_coiter_like pre_map_def ctr_def ctxt =
    84   Local_Defs.unfold_tac ctxt (ctr_def :: coiter_like_defs) THEN
    85   subst_tac ctxt [fld_unf_coiter_like] 1 THEN asm_simp_tac coiter_like_ss 1 THEN
    86   Local_Defs.unfold_tac ctxt (pre_map_def :: coiter_like_thms @ map_ids) THEN
    87   Local_Defs.unfold_tac ctxt @{thms id_def} THEN
    88   TRY ((rtac refl ORELSE' subst_tac ctxt @{thms unit_eq} THEN' rtac refl) 1);
    89 
    90 val maybe_singletonI_tac = atac ORELSE' rtac @{thm singletonI};
    91 
    92 val solve_prem_prem_tac =
    93   REPEAT o (eresolve_tac @{thms bexE rev_bexI} ORELSE' rtac @{thm rev_bexI[OF UNIV_I]} ORELSE'
    94     hyp_subst_tac ORELSE' resolve_tac @{thms disjI1 disjI2}) THEN'
    95   (rtac refl ORELSE' atac ORELSE' rtac @{thm singletonI});
    96 
    97 val induct_prem_prem_thms =
    98   @{thms SUP_empty Sup_empty Sup_insert UN_compreh_bex_eq_empty UN_compreh_bex_eq_singleton
    99       UN_insert Un_assoc Un_empty_left Un_empty_right Un_iff Union_Un_distrib collect_def[abs_def]
   100       eq_UN_compreh_Un fst_conv image_def o_apply snd_conv snd_prod_fun sum.cases sup_bot_right
   101       fst_map_pair map_pair_simp mem_Collect_eq mem_UN_compreh_eq prod_set_simps sum_map.simps
   102       sum_set_simps};
   103 
   104 fun mk_induct_leverage_prem_prems_tac ctxt nn kks set_natural's pre_set_defs =
   105   EVERY' (maps (fn kk => [select_prem_tac nn (dtac meta_spec) kk, etac meta_mp,
   106      SELECT_GOAL (Local_Defs.unfold_tac ctxt
   107        (pre_set_defs @ set_natural's @ induct_prem_prem_thms)),
   108      solve_prem_prem_tac]) (rev kks)) 1;
   109 
   110 fun mk_induct_discharge_prem_tac ctxt nn n set_natural's pre_set_defs m k kks =
   111   let val r = length kks in
   112     EVERY' [select_prem_tac n (rotate_tac 1) k, rotate_tac ~1, hyp_subst_tac,
   113       REPEAT_DETERM_N m o (dtac meta_spec THEN' rotate_tac ~1)] 1 THEN
   114     EVERY [REPEAT_DETERM_N r
   115         (rotate_tac ~1 1 THEN dtac meta_mp 1 THEN rotate_tac 1 1 THEN prefer_tac 2),
   116       if r > 0 then PRIMITIVE Raw_Simplifier.norm_hhf else all_tac, atac 1,
   117       mk_induct_leverage_prem_prems_tac ctxt nn kks set_natural's pre_set_defs]
   118   end;
   119 
   120 fun mk_induct_tac ctxt ns mss kkss ctr_defs fld_induct' set_natural's pre_set_defss =
   121   let
   122     val nn = length ns;
   123     val n = Integer.sum ns;
   124   in
   125     Local_Defs.unfold_tac ctxt ctr_defs THEN rtac fld_induct' 1 THEN inst_spurious_fs_tac ctxt THEN
   126     EVERY (map4 (EVERY oooo map3 o mk_induct_discharge_prem_tac ctxt nn n set_natural's)
   127       pre_set_defss mss (unflat mss (1 upto n)) kkss)
   128   end;
   129 
   130 end;