src/HOL/Tools/semiring_normalizer.ML
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(*  Title:      HOL/Tools/semiring_normalizer.ML
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    Author:     Amine Chaieb, TU Muenchen
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Normalization of expressions in semirings.
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*)
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signature SEMIRING_NORMALIZER = 
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sig
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  type entry
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  val get: Proof.context -> (thm * entry) list
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  val match: Proof.context -> cterm -> entry option
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  val del: attribute
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  val add: {semiring: cterm list * thm list, ring: cterm list * thm list,
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    field: cterm list * thm list, idom: thm list, ideal: thm list} -> attribute
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  val funs: thm -> {is_const: morphism -> cterm -> bool,
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    dest_const: morphism -> cterm -> Rat.rat,
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    mk_const: morphism -> ctyp -> Rat.rat -> cterm,
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    conv: morphism -> Proof.context -> cterm -> thm} -> declaration
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  val semiring_funs: thm -> declaration
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  val field_funs: thm -> declaration
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  val semiring_normalize_conv: Proof.context -> conv
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  val semiring_normalize_ord_conv: Proof.context -> (cterm -> cterm -> bool) -> conv
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  val semiring_normalize_wrapper: Proof.context -> entry -> conv
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  val semiring_normalize_ord_wrapper: Proof.context -> entry
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    -> (cterm -> cterm -> bool) -> conv
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  val semiring_normalizers_conv: cterm list -> cterm list * thm list
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    -> cterm list * thm list -> cterm list * thm list ->
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      (cterm -> bool) * conv * conv * conv -> (cterm -> cterm -> bool) ->
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        {add: Proof.context -> conv,
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         mul: Proof.context -> conv,
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         neg: Proof.context -> conv,
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         main: Proof.context -> conv,
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         pow: Proof.context -> conv,
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         sub: Proof.context -> conv}
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  val semiring_normalizers_ord_wrapper:  Proof.context -> entry ->
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    (cterm -> cterm -> bool) ->
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      {add: Proof.context -> conv,
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       mul: Proof.context -> conv,
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       neg: Proof.context -> conv,
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       main: Proof.context -> conv,
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       pow: Proof.context -> conv,
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       sub: Proof.context -> conv}
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end
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structure Semiring_Normalizer: SEMIRING_NORMALIZER = 
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struct
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(** data **)
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type entry =
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 {vars: cterm list,
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  semiring: cterm list * thm list,
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  ring: cterm list * thm list,
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  field: cterm list * thm list,
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  idom: thm list,
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  ideal: thm list} *
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 {is_const: cterm -> bool,
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  dest_const: cterm -> Rat.rat,
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  mk_const: ctyp -> Rat.rat -> cterm,
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  conv: Proof.context -> cterm -> thm};
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structure Data = Generic_Data
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(
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  type T = (thm * entry) list;
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  val empty = [];
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  val extend = I;
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  fun merge data = AList.merge Thm.eq_thm (K true) data;
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);
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val get = Data.get o Context.Proof;
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fun match ctxt tm =
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  let
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    fun match_inst
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        ({vars, semiring = (sr_ops, sr_rules), 
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          ring = (r_ops, r_rules), field = (f_ops, f_rules), idom, ideal},
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         fns) pat =
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       let
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        fun h instT =
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          let
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            val substT = Thm.instantiate (instT, []);
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            val substT_cterm = Drule.cterm_rule substT;
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            val vars' = map substT_cterm vars;
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            val semiring' = (map substT_cterm sr_ops, map substT sr_rules);
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            val ring' = (map substT_cterm r_ops, map substT r_rules);
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            val field' = (map substT_cterm f_ops, map substT f_rules);
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            val idom' = map substT idom;
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            val ideal' = map substT ideal;
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            val result = ({vars = vars', semiring = semiring', 
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                           ring = ring', field = field', idom = idom', ideal = ideal'}, fns);
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          in SOME result end
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      in (case try Thm.match (pat, tm) of
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           NONE => NONE
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         | SOME (instT, _) => h instT)
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      end;
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    fun match_struct (_,
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        entry as ({semiring = (sr_ops, _), ring = (r_ops, _), field = (f_ops, _), ...}, _): entry) =
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      get_first (match_inst entry) (sr_ops @ r_ops @ f_ops);
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  in get_first match_struct (get ctxt) end;
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(* logical content *)
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val semiringN = "semiring";
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val ringN = "ring";
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val idomN = "idom";
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val idealN = "ideal";
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val fieldN = "field";
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val del = Thm.declaration_attribute (Data.map o AList.delete Thm.eq_thm);
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fun add {semiring = (sr_ops, sr_rules), ring = (r_ops, r_rules), 
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         field = (f_ops, f_rules), idom, ideal} =
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  Thm.declaration_attribute (fn key => fn context => context |> Data.map
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    let
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      val ctxt = Context.proof_of context;
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      fun check kind name xs n =
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        null xs orelse length xs = n orelse
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        error ("Expected " ^ string_of_int n ^ " " ^ kind ^ " for " ^ name);
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      val check_ops = check "operations";
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      val check_rules = check "rules";
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      val _ =
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        check_ops semiringN sr_ops 5 andalso
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        check_rules semiringN sr_rules 37 andalso
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        check_ops ringN r_ops 2 andalso
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        check_rules ringN r_rules 2 andalso
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        check_ops fieldN f_ops 2 andalso
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        check_rules fieldN f_rules 2 andalso
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        check_rules idomN idom 2;
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      val mk_meta = Local_Defs.meta_rewrite_rule ctxt;
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      val sr_rules' = map mk_meta sr_rules;
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      val r_rules' = map mk_meta r_rules;
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      val f_rules' = map mk_meta f_rules;
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      fun rule i = nth sr_rules' (i - 1);
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      val (cx, cy) = Thm.dest_binop (hd sr_ops);
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      val cz = rule 34 |> Thm.rhs_of |> Thm.dest_arg |> Thm.dest_arg;
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      val cn = rule 36 |> Thm.rhs_of |> Thm.dest_arg |> Thm.dest_arg;
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      val ((clx, crx), (cly, cry)) =
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        rule 13 |> Thm.rhs_of |> Thm.dest_binop |> apply2 Thm.dest_binop;
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      val ((ca, cb), (cc, cd)) =
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        rule 20 |> Thm.lhs_of |> Thm.dest_binop |> apply2 Thm.dest_binop;
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      val cm = rule 1 |> Thm.rhs_of |> Thm.dest_arg;
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      val (cp, cq) = rule 26 |> Thm.lhs_of |> Thm.dest_binop |> apply2 Thm.dest_arg;
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      val vars = [ca, cb, cc, cd, cm, cn, cp, cq, cx, cy, cz, clx, crx, cly, cry];
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      val semiring = (sr_ops, sr_rules');
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      val ring = (r_ops, r_rules');
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      val field = (f_ops, f_rules');
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      val ideal' = map (Thm.symmetric o mk_meta) ideal
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    in
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      AList.delete Thm.eq_thm key #>
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      cons (key, ({vars = vars, semiring = semiring, 
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                          ring = ring, field = field, idom = idom, ideal = ideal'},
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             {is_const = undefined, dest_const = undefined, mk_const = undefined,
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             conv = undefined}))
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    end);
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(* extra-logical functions *)
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fun funs raw_key {is_const, dest_const, mk_const, conv} phi = 
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 Data.map (fn data =>
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  let
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    val key = Morphism.thm phi raw_key;
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    val _ = AList.defined Thm.eq_thm data key orelse
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      raise THM ("No data entry for structure key", 0, [key]);
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    val fns = {is_const = is_const phi, dest_const = dest_const phi,
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      mk_const = mk_const phi, conv = conv phi};
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  in AList.map_entry Thm.eq_thm key (apsnd (K fns)) data end);
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val semiring_norm_ss =
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  simpset_of (put_simpset HOL_basic_ss @{context} addsimps @{thms semiring_norm});
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fun semiring_funs key = funs key
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   {is_const = fn phi => can HOLogic.dest_number o Thm.term_of,
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    dest_const = fn phi => fn ct =>
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      Rat.rat_of_int (snd
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        (HOLogic.dest_number (Thm.term_of ct)
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          handle TERM _ => error "ring_dest_const")),
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    mk_const = fn phi => fn cT => fn x => Numeral.mk_cnumber cT
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      (case Rat.quotient_of_rat x of (i, 1) => i | _ => error "int_of_rat: bad int"),
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    conv = fn phi => fn ctxt =>
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      Simplifier.rewrite (put_simpset semiring_norm_ss ctxt)
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      then_conv Simplifier.rewrite (put_simpset HOL_basic_ss ctxt addsimps @{thms numeral_1_eq_1})};
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fun field_funs key =
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  let
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    fun numeral_is_const ct =
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      case term_of ct of
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       Const (@{const_name Fields.divide},_) $ a $ b =>
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         can HOLogic.dest_number a andalso can HOLogic.dest_number b
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     | Const (@{const_name Fields.inverse},_)$t => can HOLogic.dest_number t
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     | t => can HOLogic.dest_number t
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    fun dest_const ct = ((case term_of ct of
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       Const (@{const_name Fields.divide},_) $ a $ b=>
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        Rat.rat_of_quotient (snd (HOLogic.dest_number a), snd (HOLogic.dest_number b))
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     | Const (@{const_name Fields.inverse},_)$t => 
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                   Rat.inv (Rat.rat_of_int (snd (HOLogic.dest_number t)))
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     | t => Rat.rat_of_int (snd (HOLogic.dest_number t))) 
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       handle TERM _ => error "ring_dest_const")
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    fun mk_const phi cT x =
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      let val (a, b) = Rat.quotient_of_rat x
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      in if b = 1 then Numeral.mk_cnumber cT a
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        else Thm.apply
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             (Thm.apply (Drule.cterm_rule (instantiate' [SOME cT] []) @{cpat "op /"})
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                         (Numeral.mk_cnumber cT a))
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             (Numeral.mk_cnumber cT b)
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      end
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  in funs key
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     {is_const = K numeral_is_const,
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      dest_const = K dest_const,
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      mk_const = mk_const,
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      conv = K Numeral_Simprocs.field_comp_conv}
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  end;
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(** auxiliary **)
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fun is_comb ct =
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  (case Thm.term_of ct of
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    _ $ _ => true
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  | _ => false);
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val concl = Thm.cprop_of #> Thm.dest_arg;
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fun is_binop ct ct' =
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  (case Thm.term_of ct' of
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    c $ _ $ _ => term_of ct aconv c
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  | _ => false);
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fun dest_binop ct ct' =
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  if is_binop ct ct' then Thm.dest_binop ct'
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  else raise CTERM ("dest_binop: bad binop", [ct, ct'])
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fun inst_thm inst = Thm.instantiate ([], inst);
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val dest_numeral = term_of #> HOLogic.dest_number #> snd;
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val is_numeral = can dest_numeral;
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fun numeral01_conv ctxt =
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  Simplifier.rewrite (put_simpset HOL_basic_ss ctxt addsimps [@{thm numeral_1_eq_1}]);
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fun zero1_numeral_conv ctxt =
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  Simplifier.rewrite (put_simpset HOL_basic_ss ctxt addsimps [@{thm numeral_1_eq_1} RS sym]);
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fun zerone_conv ctxt cv =
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  zero1_numeral_conv ctxt then_conv cv then_conv numeral01_conv ctxt;
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val natarith = [@{thm "numeral_plus_numeral"}, @{thm "diff_nat_numeral"},
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                @{thm "numeral_times_numeral"}, @{thm "numeral_eq_iff"}, 
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                @{thm "numeral_less_iff"}];
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val nat_add_ss =
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  simpset_of 
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    (put_simpset HOL_basic_ss @{context}
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       addsimps @{thms arith_simps} @ natarith @ @{thms rel_simps}
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             @ [@{thm if_False}, @{thm if_True}, @{thm Nat.add_0}, @{thm add_Suc},
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                 @{thm add_numeral_left}, @{thm Suc_eq_plus1}]
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             @ map (fn th => th RS sym) @{thms numerals});
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fun nat_add_conv ctxt =
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  zerone_conv ctxt (Simplifier.rewrite (put_simpset nat_add_ss ctxt));
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val zeron_tm = @{cterm "0::nat"};
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val onen_tm  = @{cterm "1::nat"};
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val true_tm = @{cterm "True"};
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(** normalizing conversions **)
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(* core conversion *)
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fun semiring_normalizers_conv vars (sr_ops, sr_rules) (r_ops, r_rules) (f_ops, f_rules)
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  (is_semiring_constant, semiring_add_conv, semiring_mul_conv, semiring_pow_conv) =
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let
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val [pthm_02, pthm_03, pthm_04, pthm_05, pthm_07, pthm_08,
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     pthm_09, pthm_10, pthm_11, pthm_12, pthm_13, pthm_14, pthm_15, pthm_16,
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     pthm_17, pthm_18, pthm_19, pthm_21, pthm_22, pthm_23, pthm_24,
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     pthm_25, pthm_26, pthm_27, pthm_28, pthm_29, pthm_30, pthm_31, pthm_32,
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     pthm_33, pthm_34, pthm_35, pthm_36, pthm_37, pthm_38, _, _] = sr_rules;
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val [ca, cb, cc, cd, cm, cn, cp, cq, cx, cy, cz, clx, crx, cly, cry] = vars;
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val [add_pat, mul_pat, pow_pat, zero_tm, one_tm] = sr_ops;
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val [add_tm, mul_tm, pow_tm] = map (Thm.dest_fun o Thm.dest_fun) [add_pat, mul_pat, pow_pat];
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   295
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val dest_add = dest_binop add_tm
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val dest_mul = dest_binop mul_tm
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fun dest_pow tm =
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 let val (l,r) = dest_binop pow_tm tm
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 in if is_numeral r then (l,r) else raise CTERM ("dest_pow",[tm])
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 end;
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val is_add = is_binop add_tm
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val is_mul = is_binop mul_tm
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val (neg_mul, sub_add, sub_tm, neg_tm, dest_sub, cx', cy') =
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  (case (r_ops, r_rules) of
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    ([sub_pat, neg_pat], [neg_mul, sub_add]) =>
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      let
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        val sub_tm = Thm.dest_fun (Thm.dest_fun sub_pat)
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        val neg_tm = Thm.dest_fun neg_pat
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        val dest_sub = dest_binop sub_tm
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      in (neg_mul,sub_add,sub_tm,neg_tm,dest_sub, neg_mul |> concl |> Thm.dest_arg,
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          sub_add |> concl |> Thm.dest_arg |> Thm.dest_arg)
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   314
      end
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    | _ => (TrueI, TrueI, true_tm, true_tm, (fn t => (t,t)), true_tm, true_tm));
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val (divide_inverse, divide_tm, inverse_tm) = 
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  (case (f_ops, f_rules) of 
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   319
   ([divide_pat, inverse_pat], [div_inv, _]) => 
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   320
     let val div_tm = funpow 2 Thm.dest_fun divide_pat
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   321
         val inv_tm = Thm.dest_fun inverse_pat
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   322
     in (div_inv, div_tm, inv_tm)
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   323
     end
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   324
   | _ => (TrueI, true_tm, true_tm));
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   325
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in fn variable_order =>
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 let
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   328
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   329
(* Conversion for "x^n * x^m", with either x^n = x and/or x^m = x possible.  *)
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(* Also deals with "const * const", but both terms must involve powers of    *)
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   331
(* the same variable, or both be constants, or behaviour may be incorrect.   *)
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   332
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   333
 fun powvar_mul_conv ctxt tm =
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   334
  let
67268bb40b21 Semiring normalization and Groebner Bases.
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   335
  val (l,r) = dest_mul tm
67268bb40b21 Semiring normalization and Groebner Bases.
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   336
  in if is_semiring_constant l andalso is_semiring_constant r
67268bb40b21 Semiring normalization and Groebner Bases.
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   337
     then semiring_mul_conv tm
67268bb40b21 Semiring normalization and Groebner Bases.
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   338
     else
67268bb40b21 Semiring normalization and Groebner Bases.
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   339
      ((let
67268bb40b21 Semiring normalization and Groebner Bases.
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   340
         val (lx,ln) = dest_pow l
67268bb40b21 Semiring normalization and Groebner Bases.
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   341
        in
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   342
         ((let val (_, rn) = dest_pow r
23252
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   343
               val th1 = inst_thm [(cx,lx),(cp,ln),(cq,rn)] pthm_29
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   344
                val (tm1,tm2) = Thm.dest_comb(concl th1) in
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   345
               Thm.transitive th1 (Drule.arg_cong_rule tm1 (nat_add_conv ctxt tm2)) end)
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   346
           handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
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   347
            (let val th1 = inst_thm [(cx,lx),(cq,ln)] pthm_31
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   348
                 val (tm1,tm2) = Thm.dest_comb(concl th1) in
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   349
               Thm.transitive th1 (Drule.arg_cong_rule tm1 (nat_add_conv ctxt tm2)) end)) end)
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   350
       handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
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   351
           ((let val (rx,rn) = dest_pow r
67268bb40b21 Semiring normalization and Groebner Bases.
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   352
                val th1 = inst_thm [(cx,rx),(cq,rn)] pthm_30
67268bb40b21 Semiring normalization and Groebner Bases.
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   353
                val (tm1,tm2) = Thm.dest_comb(concl th1) in
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   354
               Thm.transitive th1 (Drule.arg_cong_rule tm1 (nat_add_conv ctxt tm2)) end)
23252
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   355
           handle CTERM _ => inst_thm [(cx,l)] pthm_32
67268bb40b21 Semiring normalization and Groebner Bases.
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diff changeset
   356
67268bb40b21 Semiring normalization and Groebner Bases.
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   357
))
67268bb40b21 Semiring normalization and Groebner Bases.
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   358
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
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   359
67268bb40b21 Semiring normalization and Groebner Bases.
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   360
(* Remove "1 * m" from a monomial, and just leave m.                         *)
67268bb40b21 Semiring normalization and Groebner Bases.
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diff changeset
   361
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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   362
 fun monomial_deone th =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
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   363
       (let val (l,r) = dest_mul(concl th) in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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diff changeset
   364
           if l aconvc one_tm
36945
9bec62c10714 less pervasive names from structure Thm;
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   365
          then Thm.transitive th (inst_thm [(ca,r)] pthm_13)  else th end)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   366
       handle CTERM _ => th;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   367
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
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   368
(* Conversion for "(monomial)^n", where n is a numeral.                      *)
67268bb40b21 Semiring normalization and Groebner Bases.
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diff changeset
   369
51717
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   370
 fun monomial_pow_conv ctxt =
23252
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wenzelm
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   371
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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   372
   fun monomial_pow tm bod ntm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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diff changeset
   373
    if not(is_comb bod)
36945
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diff changeset
   374
    then Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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diff changeset
   375
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   376
     if is_semiring_constant bod
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   377
     then semiring_pow_conv tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   378
     else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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diff changeset
   379
      let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   380
      val (lopr,r) = Thm.dest_comb bod
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   381
      in if not(is_comb lopr)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
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diff changeset
   382
         then Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
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diff changeset
   383
        else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   384
          let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   385
          val (opr,l) = Thm.dest_comb lopr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   386
         in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   387
           if opr aconvc pow_tm andalso is_numeral r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   388
          then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   389
            let val th1 = inst_thm [(cx,l),(cp,r),(cq,ntm)] pthm_34
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   390
                val (l,r) = Thm.dest_comb(concl th1)
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   391
           in Thm.transitive th1 (Drule.arg_cong_rule l (nat_add_conv ctxt r))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   392
           end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   393
           else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   394
            if opr aconvc mul_tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   395
            then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   396
             let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   397
              val th1 = inst_thm [(cx,l),(cy,r),(cq,ntm)] pthm_33
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   398
             val (xy,z) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   399
              val (x,y) = Thm.dest_comb xy
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   400
              val thl = monomial_pow y l ntm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   401
              val thr = monomial_pow z r ntm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   402
             in Thm.transitive th1 (Thm.combination (Drule.arg_cong_rule x thl) thr)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   403
             end
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   404
             else Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   405
          end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   406
      end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   407
  in fn tm =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   408
   let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   409
    val (lopr,r) = Thm.dest_comb tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   410
    val (opr,l) = Thm.dest_comb lopr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   411
   in if not (opr aconvc pow_tm) orelse not(is_numeral r)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   412
      then raise CTERM ("monomial_pow_conv", [tm])
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   413
      else if r aconvc zeron_tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   414
      then inst_thm [(cx,l)] pthm_35
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   415
      else if r aconvc onen_tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   416
      then inst_thm [(cx,l)] pthm_36
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   417
      else monomial_deone(monomial_pow tm l r)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   418
   end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   419
  end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   420
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   421
(* Multiplication of canonical monomials.                                    *)
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   422
 fun monomial_mul_conv ctxt =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   423
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   424
   fun powvar tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   425
    if is_semiring_constant tm then one_tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   426
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   427
     ((let val (lopr,r) = Thm.dest_comb tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   428
           val (opr,l) = Thm.dest_comb lopr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   429
       in if opr aconvc pow_tm andalso is_numeral r then l 
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   430
          else raise CTERM ("monomial_mul_conv",[tm]) end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   431
     handle CTERM _ => tm)   (* FIXME !? *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   432
   fun  vorder x y =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   433
    if x aconvc y then 0
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   434
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   435
     if x aconvc one_tm then ~1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   436
     else if y aconvc one_tm then 1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   437
      else if variable_order x y then ~1 else 1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   438
   fun monomial_mul tm l r =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   439
    ((let val (lx,ly) = dest_mul l val vl = powvar lx
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   440
      in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   441
      ((let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   442
        val (rx,ry) = dest_mul r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   443
         val vr = powvar rx
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   444
         val ord = vorder vl vr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   445
        in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   446
         if ord = 0
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   447
        then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   448
          let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   449
             val th1 = inst_thm [(clx,lx),(cly,ly),(crx,rx),(cry,ry)] pthm_15
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   450
             val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   451
             val (tm3,tm4) = Thm.dest_comb tm1
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   452
             val th2 = Drule.fun_cong_rule (Drule.arg_cong_rule tm3 (powvar_mul_conv ctxt tm4)) tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   453
             val th3 = Thm.transitive th1 th2
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   454
              val  (tm5,tm6) = Thm.dest_comb(concl th3)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   455
              val  (tm7,tm8) = Thm.dest_comb tm6
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   456
             val  th4 = monomial_mul tm6 (Thm.dest_arg tm7) tm8
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   457
         in Thm.transitive th3 (Drule.arg_cong_rule tm5 th4)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   458
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   459
         else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   460
          let val th0 = if ord < 0 then pthm_16 else pthm_17
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   461
             val th1 = inst_thm [(clx,lx),(cly,ly),(crx,rx),(cry,ry)] th0
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   462
             val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   463
             val (tm3,tm4) = Thm.dest_comb tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   464
         in Thm.transitive th1 (Drule.arg_cong_rule tm1 (monomial_mul tm2 (Thm.dest_arg tm3) tm4))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   465
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   466
        end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   467
       handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   468
        (let val vr = powvar r val ord = vorder vl vr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   469
        in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   470
          if ord = 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   471
           let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   472
           val th1 = inst_thm [(clx,lx),(cly,ly),(crx,r)] pthm_18
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   473
                 val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   474
           val (tm3,tm4) = Thm.dest_comb tm1
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   475
           val th2 = Drule.fun_cong_rule (Drule.arg_cong_rule tm3 (powvar_mul_conv ctxt tm4)) tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   476
          in Thm.transitive th1 th2
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   477
          end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   478
          else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   479
          if ord < 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   480
            let val th1 = inst_thm [(clx,lx),(cly,ly),(crx,r)] pthm_19
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   481
                val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   482
                val (tm3,tm4) = Thm.dest_comb tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   483
           in Thm.transitive th1 (Drule.arg_cong_rule tm1 (monomial_mul tm2 (Thm.dest_arg tm3) tm4))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   484
           end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   485
           else inst_thm [(ca,l),(cb,r)] pthm_09
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   486
        end)) end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   487
     handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   488
      (let val vl = powvar l in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   489
        ((let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   490
          val (rx,ry) = dest_mul r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   491
          val vr = powvar rx
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   492
           val ord = vorder vl vr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   493
         in if ord = 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   494
              let val th1 = inst_thm [(clx,l),(crx,rx),(cry,ry)] pthm_21
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   495
                 val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   496
                 val (tm3,tm4) = Thm.dest_comb tm1
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   497
             in Thm.transitive th1 (Drule.fun_cong_rule (Drule.arg_cong_rule tm3 (powvar_mul_conv ctxt tm4)) tm2)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   498
             end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   499
             else if ord > 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   500
                 let val th1 = inst_thm [(clx,l),(crx,rx),(cry,ry)] pthm_22
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   501
                     val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   502
                    val (tm3,tm4) = Thm.dest_comb tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   503
                in Thm.transitive th1 (Drule.arg_cong_rule tm1 (monomial_mul tm2 (Thm.dest_arg tm3) tm4))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   504
                end
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   505
             else Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   506
         end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   507
        handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   508
          (let val vr = powvar r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   509
               val  ord = vorder vl vr
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   510
          in if ord = 0 then powvar_mul_conv ctxt tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   511
              else if ord > 0 then inst_thm [(ca,l),(cb,r)] pthm_09
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   512
              else Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   513
          end)) end))
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   514
  in fn tm => let val (l,r) = dest_mul tm in monomial_deone(monomial_mul tm l r)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   515
             end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   516
  end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   517
(* Multiplication by monomial of a polynomial.                               *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   518
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   519
 fun polynomial_monomial_mul_conv ctxt =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   520
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   521
   fun pmm_conv tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   522
    let val (l,r) = dest_mul tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   523
    in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   524
    ((let val (y,z) = dest_add r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   525
          val th1 = inst_thm [(cx,l),(cy,y),(cz,z)] pthm_37
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   526
          val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   527
          val (tm3,tm4) = Thm.dest_comb tm1
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   528
          val th2 =
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   529
            Thm.combination (Drule.arg_cong_rule tm3 (monomial_mul_conv ctxt tm4)) (pmm_conv tm2)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   530
      in Thm.transitive th1 th2
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   531
      end)
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   532
     handle CTERM _ => monomial_mul_conv ctxt tm)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   533
   end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   534
 in pmm_conv
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   535
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   536
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   537
(* Addition of two monomials identical except for constant multiples.        *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   538
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   539
fun monomial_add_conv tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   540
 let val (l,r) = dest_add tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   541
 in if is_semiring_constant l andalso is_semiring_constant r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   542
    then semiring_add_conv tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   543
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   544
     let val th1 =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   545
           if is_mul l andalso is_semiring_constant(Thm.dest_arg1 l)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   546
           then if is_mul r andalso is_semiring_constant(Thm.dest_arg1 r) then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   547
                    inst_thm [(ca,Thm.dest_arg1 l),(cm,Thm.dest_arg r), (cb,Thm.dest_arg1 r)] pthm_02
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   548
                else inst_thm [(ca,Thm.dest_arg1 l),(cm,r)] pthm_03
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   549
           else if is_mul r andalso is_semiring_constant(Thm.dest_arg1 r)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   550
           then inst_thm [(cm,l),(ca,Thm.dest_arg1 r)] pthm_04
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   551
           else inst_thm [(cm,r)] pthm_05
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   552
         val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   553
         val (tm3,tm4) = Thm.dest_comb tm1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   554
         val th2 = Drule.arg_cong_rule tm3 (semiring_add_conv tm4)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   555
         val th3 = Thm.transitive th1 (Drule.fun_cong_rule th2 tm2)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   556
         val tm5 = concl th3
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   557
      in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   558
      if (Thm.dest_arg1 tm5) aconvc zero_tm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   559
      then Thm.transitive th3 (inst_thm [(ca,Thm.dest_arg tm5)] pthm_11)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   560
      else monomial_deone th3
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   561
     end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   562
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   563
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   564
(* Ordering on monomials.                                                    *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   565
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   566
fun striplist dest =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   567
 let fun strip x acc =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   568
   ((let val (l,r) = dest x in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   569
        strip l (strip r acc) end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   570
    handle CTERM _ => x::acc)    (* FIXME !? *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   571
 in fn x => strip x []
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   572
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   573
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   574
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   575
fun powervars tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   576
 let val ptms = striplist dest_mul tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   577
 in if is_semiring_constant (hd ptms) then tl ptms else ptms
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   578
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   579
val num_0 = 0;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   580
val num_1 = 1;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   581
fun dest_varpow tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   582
 ((let val (x,n) = dest_pow tm in (x,dest_numeral n) end)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   583
   handle CTERM _ =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   584
   (tm,(if is_semiring_constant tm then num_0 else num_1)));
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   585
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   586
val morder =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   587
 let fun lexorder l1 l2 =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   588
  case (l1,l2) of
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   589
    ([],[]) => 0
59321
haftmann
parents: 59058
diff changeset
   590
  | (_ ,[]) => ~1
haftmann
parents: 59058
diff changeset
   591
  | ([], _) => 1
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   592
  | (((x1,n1)::vs1),((x2,n2)::vs2)) =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   593
     if variable_order x1 x2 then 1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   594
     else if variable_order x2 x1 then ~1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   595
     else if n1 < n2 then ~1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   596
     else if n2 < n1 then 1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   597
     else lexorder vs1 vs2
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   598
 in fn tm1 => fn tm2 =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   599
  let val vdegs1 = map dest_varpow (powervars tm1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   600
      val vdegs2 = map dest_varpow (powervars tm2)
33002
f3f02f36a3e2 uniform use of Integer.add/mult/sum/prod;
wenzelm
parents: 31790
diff changeset
   601
      val deg1 = fold (Integer.add o snd) vdegs1 num_0
f3f02f36a3e2 uniform use of Integer.add/mult/sum/prod;
wenzelm
parents: 31790
diff changeset
   602
      val deg2 = fold (Integer.add o snd) vdegs2 num_0
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   603
  in if deg1 < deg2 then ~1 else if deg1 > deg2 then 1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   604
                            else lexorder vdegs1 vdegs2
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   605
  end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   606
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   607
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   608
(* Addition of two polynomials.                                              *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   609
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   610
fun polynomial_add_conv ctxt =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   611
 let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   612
 fun dezero_rule th =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   613
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   614
   val tm = concl th
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   615
  in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   616
   if not(is_add tm) then th else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   617
   let val (lopr,r) = Thm.dest_comb tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   618
       val l = Thm.dest_arg lopr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   619
   in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   620
    if l aconvc zero_tm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   621
    then Thm.transitive th (inst_thm [(ca,r)] pthm_07)   else
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   622
        if r aconvc zero_tm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   623
        then Thm.transitive th (inst_thm [(ca,l)] pthm_08)  else th
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   624
   end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   625
  end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   626
 fun padd tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   627
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   628
   val (l,r) = dest_add tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   629
  in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   630
   if l aconvc zero_tm then inst_thm [(ca,r)] pthm_07
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   631
   else if r aconvc zero_tm then inst_thm [(ca,l)] pthm_08
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   632
   else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   633
    if is_add l
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   634
    then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   635
     let val (a,b) = dest_add l
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   636
     in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   637
     if is_add r then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   638
      let val (c,d) = dest_add r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   639
          val ord = morder a c
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   640
      in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   641
       if ord = 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   642
        let val th1 = inst_thm [(ca,a),(cb,b),(cc,c),(cd,d)] pthm_23
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   643
            val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   644
            val (tm3,tm4) = Thm.dest_comb tm1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   645
            val th2 = Drule.arg_cong_rule tm3 (monomial_add_conv tm4)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   646
        in dezero_rule (Thm.transitive th1 (Thm.combination th2 (padd tm2)))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   647
        end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   648
       else (* ord <> 0*)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   649
        let val th1 =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   650
                if ord > 0 then inst_thm [(ca,a),(cb,b),(cc,r)] pthm_24
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   651
                else inst_thm [(ca,l),(cc,c),(cd,d)] pthm_25
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   652
            val (tm1,tm2) = Thm.dest_comb(concl th1)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   653
        in dezero_rule (Thm.transitive th1 (Drule.arg_cong_rule tm1 (padd tm2)))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   654
        end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   655
      end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   656
     else (* not (is_add r)*)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   657
      let val ord = morder a r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   658
      in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   659
       if ord = 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   660
        let val th1 = inst_thm [(ca,a),(cb,b),(cc,r)] pthm_26
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   661
            val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   662
            val (tm3,tm4) = Thm.dest_comb tm1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   663
            val th2 = Drule.fun_cong_rule (Drule.arg_cong_rule tm3 (monomial_add_conv tm4)) tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   664
        in dezero_rule (Thm.transitive th1 th2)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   665
        end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   666
       else (* ord <> 0*)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   667
        if ord > 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   668
          let val th1 = inst_thm [(ca,a),(cb,b),(cc,r)] pthm_24
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   669
              val (tm1,tm2) = Thm.dest_comb(concl th1)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   670
          in dezero_rule (Thm.transitive th1 (Drule.arg_cong_rule tm1 (padd tm2)))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   671
          end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   672
        else dezero_rule (inst_thm [(ca,l),(cc,r)] pthm_27)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   673
      end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   674
    end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   675
   else (* not (is_add l)*)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   676
    if is_add r then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   677
      let val (c,d) = dest_add r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   678
          val  ord = morder l c
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   679
      in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   680
       if ord = 0 then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   681
         let val th1 = inst_thm [(ca,l),(cc,c),(cd,d)] pthm_28
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   682
             val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   683
             val (tm3,tm4) = Thm.dest_comb tm1
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   684
             val th2 = Drule.fun_cong_rule (Drule.arg_cong_rule tm3 (monomial_add_conv tm4)) tm2
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   685
         in dezero_rule (Thm.transitive th1 th2)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   686
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   687
       else
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   688
        if ord > 0 then Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   689
        else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   690
         let val th1 = inst_thm [(ca,l),(cc,c),(cd,d)] pthm_25
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   691
             val (tm1,tm2) = Thm.dest_comb(concl th1)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   692
         in dezero_rule (Thm.transitive th1 (Drule.arg_cong_rule tm1 (padd tm2)))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   693
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   694
      end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   695
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   696
     let val ord = morder l r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   697
     in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   698
      if ord = 0 then monomial_add_conv tm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   699
      else if ord > 0 then dezero_rule(Thm.reflexive tm)
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   700
      else dezero_rule (inst_thm [(ca,l),(cc,r)] pthm_27)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   701
     end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   702
  end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   703
 in padd
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   704
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   705
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   706
(* Multiplication of two polynomials.                                        *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   707
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   708
fun polynomial_mul_conv ctxt =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   709
 let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   710
  fun pmul tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   711
   let val (l,r) = dest_mul tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   712
   in
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   713
    if not(is_add l) then polynomial_monomial_mul_conv ctxt tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   714
    else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   715
     if not(is_add r) then
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   716
      let val th1 = inst_thm [(ca,l),(cb,r)] pthm_09
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   717
      in Thm.transitive th1 (polynomial_monomial_mul_conv ctxt (concl th1))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   718
      end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   719
     else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   720
       let val (a,b) = dest_add l
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   721
           val th1 = inst_thm [(ca,a),(cb,b),(cc,r)] pthm_10
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   722
           val (tm1,tm2) = Thm.dest_comb(concl th1)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   723
           val (tm3,tm4) = Thm.dest_comb tm1
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   724
           val th2 = Drule.arg_cong_rule tm3 (polynomial_monomial_mul_conv ctxt tm4)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   725
           val th3 = Thm.transitive th1 (Thm.combination th2 (pmul tm2))
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   726
       in Thm.transitive th3 (polynomial_add_conv ctxt (concl th3))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   727
       end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   728
   end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   729
 in fn tm =>
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   730
   let val (l,r) = dest_mul tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   731
   in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   732
    if l aconvc zero_tm then inst_thm [(ca,r)] pthm_11
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   733
    else if r aconvc zero_tm then inst_thm [(ca,l)] pthm_12
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   734
    else if l aconvc one_tm then inst_thm [(ca,r)] pthm_13
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   735
    else if r aconvc one_tm then inst_thm [(ca,l)] pthm_14
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   736
    else pmul tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   737
   end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   738
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   739
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   740
(* Power of polynomial (optimized for the monomial and trivial cases).       *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   741
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   742
fun num_conv ctxt n =
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   743
  nat_add_conv ctxt (Thm.apply @{cterm Suc} (Numeral.mk_cnumber @{ctyp nat} (dest_numeral n - 1)))
23580
998a6fda9bb6 moved mk_cnumeral/mk_cnumber to Tools/numeral.ML;
wenzelm
parents: 23559
diff changeset
   744
  |> Thm.symmetric;
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   745
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   746
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   747
fun polynomial_pow_conv ctxt =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   748
 let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   749
  fun ppow tm =
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   750
    let val (l,n) = dest_pow tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   751
    in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   752
     if n aconvc zeron_tm then inst_thm [(cx,l)] pthm_35
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   753
     else if n aconvc onen_tm then inst_thm [(cx,l)] pthm_36
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   754
     else
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   755
         let val th1 = num_conv ctxt n
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   756
             val th2 = inst_thm [(cx,l),(cq,Thm.dest_arg (concl th1))] pthm_38
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   757
             val (tm1,tm2) = Thm.dest_comb(concl th2)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   758
             val th3 = Thm.transitive th2 (Drule.arg_cong_rule tm1 (ppow tm2))
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   759
             val th4 = Thm.transitive (Drule.arg_cong_rule (Thm.dest_fun tm) th1) th3
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   760
         in Thm.transitive th4 (polynomial_mul_conv ctxt (concl th4))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   761
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   762
    end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   763
 in fn tm =>
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   764
       if is_add(Thm.dest_arg1 tm) then ppow tm else monomial_pow_conv ctxt tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   765
 end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   766
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   767
(* Negation.                                                                 *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   768
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   769
fun polynomial_neg_conv ctxt tm =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   770
   let val (l,r) = Thm.dest_comb tm in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   771
        if not (l aconvc neg_tm) then raise CTERM ("polynomial_neg_conv",[tm]) else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   772
        let val th1 = inst_thm [(cx',r)] neg_mul
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   773
            val th2 = Thm.transitive th1 (Conv.arg1_conv semiring_mul_conv (concl th1))
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   774
        in Thm.transitive th2 (polynomial_monomial_mul_conv ctxt (concl th2))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   775
        end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   776
   end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   777
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   778
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   779
(* Subtraction.                                                              *)
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   780
fun polynomial_sub_conv ctxt tm =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   781
  let val (l,r) = dest_sub tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   782
      val th1 = inst_thm [(cx',l),(cy',r)] sub_add
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   783
      val (tm1,tm2) = Thm.dest_comb(concl th1)
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   784
      val th2 = Drule.arg_cong_rule tm1 (polynomial_neg_conv ctxt tm2)
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   785
  in Thm.transitive th1 (Thm.transitive th2 (polynomial_add_conv ctxt (concl th2)))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   786
  end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   787
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   788
(* Conversion from HOL term.                                                 *)
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   789
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   790
fun polynomial_conv ctxt tm =
23407
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   791
 if is_semiring_constant tm then semiring_add_conv tm
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   792
 else if not(is_comb tm) then Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   793
 else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   794
  let val (lopr,r) = Thm.dest_comb tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   795
  in if lopr aconvc neg_tm then
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   796
       let val th1 = Drule.arg_cong_rule lopr (polynomial_conv ctxt r)
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   797
       in Thm.transitive th1 (polynomial_neg_conv ctxt (concl th1))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   798
       end
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   799
     else if lopr aconvc inverse_tm then
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   800
       let val th1 = Drule.arg_cong_rule lopr (polynomial_conv ctxt r)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   801
       in Thm.transitive th1 (semiring_mul_conv (concl th1))
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   802
       end
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   803
     else
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   804
       if not(is_comb lopr) then Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   805
       else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   806
         let val (opr,l) = Thm.dest_comb lopr
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   807
         in if opr aconvc pow_tm andalso is_numeral r
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   808
            then
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   809
              let val th1 = Drule.fun_cong_rule (Drule.arg_cong_rule opr (polynomial_conv ctxt l)) r
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   810
              in Thm.transitive th1 (polynomial_pow_conv ctxt (concl th1))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   811
              end
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   812
         else if opr aconvc divide_tm 
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   813
            then
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   814
              let val th1 = Thm.combination (Drule.arg_cong_rule opr (polynomial_conv ctxt l)) 
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   815
                                        (polynomial_conv ctxt r)
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   816
                  val th2 = (Conv.rewr_conv divide_inverse then_conv polynomial_mul_conv ctxt)
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   817
                              (Thm.rhs_of th1)
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   818
              in Thm.transitive th1 th2
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   819
              end
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   820
            else
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   821
              if opr aconvc add_tm orelse opr aconvc mul_tm orelse opr aconvc sub_tm
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   822
              then
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   823
               let val th1 =
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   824
                    Thm.combination
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   825
                      (Drule.arg_cong_rule opr (polynomial_conv ctxt l)) (polynomial_conv ctxt r)
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   826
                   val f = if opr aconvc add_tm then polynomial_add_conv ctxt
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   827
                      else if opr aconvc mul_tm then polynomial_mul_conv ctxt
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   828
                      else polynomial_sub_conv ctxt
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   829
               in Thm.transitive th1 (f (concl th1))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   830
               end
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   831
              else Thm.reflexive tm
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   832
         end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   833
  end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   834
 in
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   835
   {main = polynomial_conv,
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   836
    add = polynomial_add_conv,
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   837
    mul = polynomial_mul_conv,
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   838
    pow = polynomial_pow_conv,
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   839
    neg = polynomial_neg_conv,
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   840
    sub = polynomial_sub_conv}
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   841
 end
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   842
end;
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   843
35410
1ea89d2a1bd4 more antiquotations;
wenzelm
parents: 35408
diff changeset
   844
val nat_exp_ss =
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   845
  simpset_of
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   846
   (put_simpset HOL_basic_ss @{context}
54249
ce00f2fef556 streamlined setup of linear arithmetic
haftmann
parents: 53078
diff changeset
   847
    addsimps (@{thms eval_nat_numeral} @ @{thms diff_nat_numeral} @ @{thms arith_simps} @ @{thms rel_simps})
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   848
    addsimps [@{thm Let_def}, @{thm if_False}, @{thm if_True}, @{thm Nat.add_0}, @{thm add_Suc}]);
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   849
35408
b48ab741683b modernized structure Term_Ord;
wenzelm
parents: 35064
diff changeset
   850
fun simple_cterm_ord t u = Term_Ord.term_ord (term_of t, term_of u) = LESS;
27222
b08abdb8f499 Export a wrapper for all semiring_normalizers
chaieb
parents: 25481
diff changeset
   851
36710
999e2d8603c2 tuned headings
haftmann
parents: 36709
diff changeset
   852
999e2d8603c2 tuned headings
haftmann
parents: 36709
diff changeset
   853
(* various normalizing conversions *)
999e2d8603c2 tuned headings
haftmann
parents: 36709
diff changeset
   854
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   855
fun semiring_normalizers_ord_wrapper ctxt ({vars, semiring, ring, field, idom, ideal}, 
23407
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   856
                                     {conv, dest_const, mk_const, is_const}) ord =
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   857
  let
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   858
    val pow_conv =
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   859
      Conv.arg_conv (Simplifier.rewrite (put_simpset nat_exp_ss ctxt))
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   860
      then_conv Simplifier.rewrite
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   861
        (put_simpset HOL_basic_ss ctxt addsimps [nth (snd semiring) 31, nth (snd semiring) 34])
23330
01c09922ce59 Conversion for computation on constants now depends on the context
chaieb
parents: 23259
diff changeset
   862
      then_conv conv ctxt
01c09922ce59 Conversion for computation on constants now depends on the context
chaieb
parents: 23259
diff changeset
   863
    val dat = (is_const, conv ctxt, conv ctxt, pow_conv)
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   864
  in semiring_normalizers_conv vars semiring ring field dat ord end;
27222
b08abdb8f499 Export a wrapper for all semiring_normalizers
chaieb
parents: 25481
diff changeset
   865
30866
dd5117e2d73e now deals with devision in fields
chaieb
parents: 29269
diff changeset
   866
fun semiring_normalize_ord_wrapper ctxt ({vars, semiring, ring, field, idom, ideal}, {conv, dest_const, mk_const, is_const}) ord =
51717
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   867
 #main (semiring_normalizers_ord_wrapper ctxt
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   868
  ({vars = vars, semiring = semiring, ring = ring, field = field, idom = idom, ideal = ideal},
9e7d1c139569 simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents: 47108
diff changeset
   869
   {conv = conv, dest_const = dest_const, mk_const = mk_const, is_const = is_const}) ord) ctxt;
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   870
23407
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   871
fun semiring_normalize_wrapper ctxt data = 
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   872
  semiring_normalize_ord_wrapper ctxt data simple_cterm_ord;
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   873
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   874
fun semiring_normalize_ord_conv ctxt ord tm =
36700
9b85b9d74b83 dropped auxiliary method sring_norm; integrated normalizer.ML and normalizer_data.ML
haftmann
parents: 35410
diff changeset
   875
  (case match ctxt tm of
36945
9bec62c10714 less pervasive names from structure Thm;
wenzelm
parents: 36771
diff changeset
   876
    NONE => Thm.reflexive tm
23407
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   877
  | SOME res => semiring_normalize_ord_wrapper ctxt res ord tm);
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   878
 
0e4452fcbeb8 normalizer conversions depend on the proof context; added functions for conversion and wrapper that sill depend on the variable ordering (_ord)
chaieb
parents: 23330
diff changeset
   879
fun semiring_normalize_conv ctxt = semiring_normalize_ord_conv ctxt simple_cterm_ord;
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   880
36708
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   881
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   882
(** Isar setup **)
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   883
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   884
local
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   885
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   886
fun keyword2 k1 k2 = Scan.lift (Args.$$$ k1 -- Args.$$$ k2 -- Args.colon) >> K ();
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   887
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   888
val opsN = "ops";
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   889
val rulesN = "rules";
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   890
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   891
val delN = "del";
36700
9b85b9d74b83 dropped auxiliary method sring_norm; integrated normalizer.ML and normalizer_data.ML
haftmann
parents: 35410
diff changeset
   892
36708
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   893
val any_keyword =
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   894
  keyword2 semiringN opsN || keyword2 semiringN rulesN ||
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   895
  keyword2 ringN opsN || keyword2 ringN rulesN ||
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   896
  keyword2 fieldN opsN || keyword2 fieldN rulesN ||
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   897
  keyword2 idomN rulesN || keyword2 idealN rulesN;
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   898
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   899
val thms = Scan.repeat (Scan.unless any_keyword Attrib.multi_thm) >> flat;
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   900
val terms = thms >> map Drule.dest_term;
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   901
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   902
fun optional scan = Scan.optional scan [];
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   903
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   904
in
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   905
58826
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   906
val _ =
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   907
  Theory.setup
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   908
    (Attrib.setup @{binding normalizer}
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   909
      (Scan.lift (Args.$$$ delN >> K del) ||
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   910
        ((keyword2 semiringN opsN |-- terms) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   911
         (keyword2 semiringN rulesN |-- thms)) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   912
        (optional (keyword2 ringN opsN |-- terms) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   913
         optional (keyword2 ringN rulesN |-- thms)) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   914
        (optional (keyword2 fieldN opsN |-- terms) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   915
         optional (keyword2 fieldN rulesN |-- thms)) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   916
        optional (keyword2 idomN rulesN |-- thms) --
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   917
        optional (keyword2 idealN rulesN |-- thms)
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   918
        >> (fn ((((sr, r), f), id), idl) => 
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   919
               add {semiring = sr, ring = r, field = f, idom = id, ideal = idl}))
2ed2eaabe3df modernized setup;
wenzelm
parents: 54249
diff changeset
   920
      "semiring normalizer data");
36700
9b85b9d74b83 dropped auxiliary method sring_norm; integrated normalizer.ML and normalizer_data.ML
haftmann
parents: 35410
diff changeset
   921
23252
67268bb40b21 Semiring normalization and Groebner Bases.
wenzelm
parents:
diff changeset
   922
end;
36708
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   923
3db7243c2484 tuned internal structure
haftmann
parents: 36707
diff changeset
   924
end;