author | wenzelm |
Sat, 01 Jun 2019 11:29:59 +0200 | |
changeset 70299 | 83774d669b51 |
parent 69593 | 3dda49e08b9d |
child 74282 | c2ee8d993d6a |
permissions | -rw-r--r-- |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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1 |
(* Author: Lawrence C Paulson, Cambridge University Computer Laboratory |
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Copyright 2000 University of Cambridge |
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Simprocs for the (integer) numerals. |
23164 | 5 |
*) |
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(*To quote from Provers/Arith/cancel_numeral_factor.ML: |
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Cancels common coefficients in balanced expressions: |
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u*#m ~~ u'*#m' == #n*u ~~ #n'*u' |
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where ~~ is an appropriate balancing operation (e.g. =, <=, <, div, /) |
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and d = gcd(m,m') and n=m/d and n'=m'/d. |
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*) |
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||
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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signature NUMERAL_SIMPROCS = |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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sig |
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val trans_tac: Proof.context -> thm option -> tactic |
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val assoc_fold: Proof.context -> cterm -> thm option |
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val combine_numerals: Proof.context -> cterm -> thm option |
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val eq_cancel_numerals: Proof.context -> cterm -> thm option |
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val less_cancel_numerals: Proof.context -> cterm -> thm option |
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val le_cancel_numerals: Proof.context -> cterm -> thm option |
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val eq_cancel_factor: Proof.context -> cterm -> thm option |
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val le_cancel_factor: Proof.context -> cterm -> thm option |
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val less_cancel_factor: Proof.context -> cterm -> thm option |
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val div_cancel_factor: Proof.context -> cterm -> thm option |
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val mod_cancel_factor: Proof.context -> cterm -> thm option |
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val dvd_cancel_factor: Proof.context -> cterm -> thm option |
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val divide_cancel_factor: Proof.context -> cterm -> thm option |
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val eq_cancel_numeral_factor: Proof.context -> cterm -> thm option |
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val less_cancel_numeral_factor: Proof.context -> cterm -> thm option |
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val le_cancel_numeral_factor: Proof.context -> cterm -> thm option |
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val div_cancel_numeral_factor: Proof.context -> cterm -> thm option |
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val divide_cancel_numeral_factor: Proof.context -> cterm -> thm option |
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val field_combine_numerals: Proof.context -> cterm -> thm option |
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val field_divide_cancel_numeral_factor: simproc |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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val num_ss: simpset |
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val field_comp_conv: Proof.context -> conv |
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end; |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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structure Numeral_Simprocs : NUMERAL_SIMPROCS = |
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struct |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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fun trans_tac _ NONE = all_tac |
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| trans_tac ctxt (SOME th) = ALLGOALS (resolve_tac ctxt [th RS trans]); |
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val mk_number = Arith_Data.mk_number; |
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val mk_sum = Arith_Data.mk_sum; |
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val long_mk_sum = Arith_Data.long_mk_sum; |
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val dest_sum = Arith_Data.dest_sum; |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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val mk_times = HOLogic.mk_binop \<^const_name>\<open>Groups.times\<close>; |
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fun one_of T = Const(\<^const_name>\<open>Groups.one\<close>, T); |
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(* build product with trailing 1 rather than Numeral 1 in order to avoid the |
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unnecessary restriction to type class number_ring |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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which is not required for cancellation of common factors in divisions. |
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UPDATE: this reasoning no longer applies (number_ring is gone) |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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*) |
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fun mk_prod T = |
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let val one = one_of T |
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fun mk [] = one |
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| mk [t] = t |
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| mk (t :: ts) = if t = one then mk ts else mk_times (t, mk ts) |
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in mk end; |
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(*This version ALWAYS includes a trailing one*) |
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fun long_mk_prod T [] = one_of T |
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| long_mk_prod T (t :: ts) = mk_times (t, mk_prod T ts); |
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val dest_times = HOLogic.dest_bin \<^const_name>\<open>Groups.times\<close> dummyT; |
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fun dest_prod t = |
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let val (t,u) = dest_times t |
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in dest_prod t @ dest_prod u end |
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handle TERM _ => [t]; |
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fun find_first_numeral past (t::terms) = |
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((snd (HOLogic.dest_number t), rev past @ terms) |
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handle TERM _ => find_first_numeral (t::past) terms) |
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| find_first_numeral past [] = raise TERM("find_first_numeral", []); |
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||
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(*DON'T do the obvious simplifications; that would create special cases*) |
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fun mk_coeff (k, t) = mk_times (mk_number (Term.fastype_of t) k, t); |
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(*Express t as a product of (possibly) a numeral with other sorted terms*) |
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fun dest_coeff sign (Const (\<^const_name>\<open>Groups.uminus\<close>, _) $ t) = dest_coeff (~sign) t |
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| dest_coeff sign t = |
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let val ts = sort Term_Ord.term_ord (dest_prod t) |
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val (n, ts') = find_first_numeral [] ts |
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handle TERM _ => (1, ts) |
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in (sign*n, mk_prod (Term.fastype_of t) ts') end; |
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(*Find first coefficient-term THAT MATCHES u*) |
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fun find_first_coeff past u [] = raise TERM("find_first_coeff", []) |
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| find_first_coeff past u (t::terms) = |
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let val (n,u') = dest_coeff 1 t |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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in if u aconv u' then (n, rev past @ terms) |
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else find_first_coeff (t::past) u terms |
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end |
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handle TERM _ => find_first_coeff (t::past) u terms; |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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105 |
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106 |
(*Fractions as pairs of ints. Can't use Rat.rat because the representation |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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107 |
needs to preserve negative values in the denominator.*) |
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108 |
fun mk_frac (p, q) = if q = 0 then raise Div else (p, q); |
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109 |
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110 |
(*Don't reduce fractions; sums must be proved by rule add_frac_eq. |
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Fractions are reduced later by the cancel_numeral_factor simproc.*) |
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112 |
fun add_frac ((p1, q1), (p2, q2)) = (p1 * q2 + p2 * q1, q1 * q2); |
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113 |
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69593 | 114 |
val mk_divide = HOLogic.mk_binop \<^const_name>\<open>Rings.divide\<close>; |
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115 |
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116 |
(*Build term (p / q) * t*) |
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117 |
fun mk_fcoeff ((p, q), t) = |
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let val T = Term.fastype_of t |
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in mk_times (mk_divide (mk_number T p, mk_number T q), t) end; |
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120 |
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121 |
(*Express t as a product of a fraction with other sorted terms*) |
69593 | 122 |
fun dest_fcoeff sign (Const (\<^const_name>\<open>Groups.uminus\<close>, _) $ t) = dest_fcoeff (~sign) t |
123 |
| dest_fcoeff sign (Const (\<^const_name>\<open>Rings.divide\<close>, _) $ t $ u) = |
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124 |
let val (p, t') = dest_coeff sign t |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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125 |
val (q, u') = dest_coeff 1 u |
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126 |
in (mk_frac (p, q), mk_divide (t', u')) end |
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127 |
| dest_fcoeff sign t = |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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128 |
let val (p, t') = dest_coeff sign t |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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val T = Term.fastype_of t |
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in (mk_frac (p, 1), mk_divide (t', one_of T)) end; |
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131 |
|
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|
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(** New term ordering so that AC-rewriting brings numerals to the front **) |
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134 |
|
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(*Order integers by absolute value and then by sign. The standard integer |
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ordering is not well-founded.*) |
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fun num_ord (i,j) = |
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(case int_ord (abs i, abs j) of |
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EQUAL => int_ord (Int.sign i, Int.sign j) |
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| ord => ord); |
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|
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(*This resembles Term_Ord.term_ord, but it puts binary numerals before other |
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non-atomic terms.*) |
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local open Term |
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in |
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fun numterm_ord (t, u) = |
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case (try HOLogic.dest_number t, try HOLogic.dest_number u) of |
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(SOME (_, i), SOME (_, j)) => num_ord (i, j) |
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| (SOME _, NONE) => LESS |
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| (NONE, SOME _) => GREATER |
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| _ => ( |
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case (t, u) of |
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(Abs (_, T, t), Abs(_, U, u)) => |
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(prod_ord numterm_ord Term_Ord.typ_ord ((t, T), (u, U))) |
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| _ => ( |
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case int_ord (size_of_term t, size_of_term u) of |
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EQUAL => |
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let val (f, ts) = strip_comb t and (g, us) = strip_comb u in |
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(prod_ord Term_Ord.hd_ord numterms_ord ((f, ts), (g, us))) |
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end |
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| ord => ord)) |
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and numterms_ord (ts, us) = list_ord numterm_ord (ts, us) |
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163 |
end; |
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164 |
|
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val num_ss = |
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simpset_of (put_simpset HOL_basic_ss \<^context> |> Simplifier.set_term_ord numterm_ord); |
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167 |
|
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168 |
(*Maps 1 to Numeral1 so that arithmetic isn't complicated by the abstract 1.*) |
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val numeral_syms = [@{thm numeral_One} RS sym]; |
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170 |
|
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171 |
(*Simplify 0+n, n+0, Numeral1*n, n*Numeral1, 1*x, x*1, x/1 *) |
59556 | 172 |
val add_0s = @{thms add_0_left add_0_right}; |
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val mult_1s = @{thms mult_1s divide_numeral_1 mult_1_left mult_1_right mult_minus1 mult_minus1_right div_by_1}; |
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174 |
|
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175 |
(* For post-simplification of the rhs of simproc-generated rules *) |
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val post_simps = |
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[@{thm numeral_One}, |
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@{thm add_0_left}, @{thm add_0_right}, |
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@{thm mult_zero_left}, @{thm mult_zero_right}, |
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@{thm mult_1_left}, @{thm mult_1_right}, |
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181 |
@{thm mult_minus1}, @{thm mult_minus1_right}] |
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182 |
|
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183 |
val field_post_simps = |
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post_simps @ [@{thm div_0}, @{thm div_by_1}] |
61144 | 185 |
|
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186 |
(*Simplify inverse Numeral1*) |
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val inverse_1s = [@{thm inverse_numeral_1}]; |
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188 |
|
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189 |
(*To perform binary arithmetic. The "left" rewriting handles patterns |
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created by the Numeral_Simprocs, such as 3 * (5 * x). *) |
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191 |
val simps = |
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[@{thm numeral_One} RS sym] @ |
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@{thms add_numeral_left} @ |
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@{thms add_neg_numeral_left} @ |
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@{thms mult_numeral_left} @ |
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196 |
@{thms arith_simps} @ @{thms rel_simps}; |
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|
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198 |
(*Binary arithmetic BUT NOT ADDITION since it may collapse adjacent terms |
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199 |
during re-arrangement*) |
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200 |
val non_add_simps = |
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subtract Thm.eq_thm |
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(@{thms add_numeral_left} @ |
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@{thms add_neg_numeral_left} @ |
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@{thms numeral_plus_numeral} @ |
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@{thms add_neg_numeral_simps}) simps; |
23164 | 206 |
|
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207 |
(*To evaluate binary negations of coefficients*) |
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208 |
val minus_simps = [@{thm minus_zero}, @{thm minus_minus}]; |
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209 |
|
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210 |
(*To let us treat subtraction as addition*) |
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211 |
val diff_simps = [@{thm diff_conv_add_uminus}, @{thm minus_add_distrib}, @{thm minus_minus}]; |
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212 |
|
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213 |
(*To let us treat division as multiplication*) |
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214 |
val divide_simps = [@{thm divide_inverse}, @{thm inverse_mult_distrib}, @{thm inverse_inverse_eq}]; |
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215 |
|
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216 |
(*to extract again any uncancelled minuses*) |
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217 |
val minus_from_mult_simps = |
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[@{thm minus_minus}, @{thm mult_minus_left}, @{thm mult_minus_right}]; |
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219 |
|
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220 |
(*combine unary minus with numeric literals, however nested within a product*) |
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221 |
val mult_minus_simps = |
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222 |
[@{thm mult.assoc}, @{thm minus_mult_right}, @{thm minus_mult_commute}, @{thm numeral_times_minus_swap}]; |
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223 |
|
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224 |
val norm_ss1 = |
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simpset_of (put_simpset num_ss \<^context> |
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226 |
addsimps numeral_syms @ add_0s @ mult_1s @ |
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227 |
diff_simps @ minus_simps @ @{thms ac_simps}) |
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228 |
|
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229 |
val norm_ss2 = |
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simpset_of (put_simpset num_ss \<^context> |
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231 |
addsimps non_add_simps @ mult_minus_simps) |
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232 |
|
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233 |
val norm_ss3 = |
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simpset_of (put_simpset num_ss \<^context> |
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235 |
addsimps minus_from_mult_simps @ @{thms ac_simps} @ @{thms ac_simps minus_mult_commute}) |
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236 |
|
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237 |
structure CancelNumeralsCommon = |
44945 | 238 |
struct |
239 |
val mk_sum = mk_sum |
|
240 |
val dest_sum = dest_sum |
|
241 |
val mk_coeff = mk_coeff |
|
242 |
val dest_coeff = dest_coeff 1 |
|
243 |
val find_first_coeff = find_first_coeff [] |
|
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244 |
val trans_tac = trans_tac |
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245 |
|
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246 |
fun norm_tac ctxt = |
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247 |
ALLGOALS (simp_tac (put_simpset norm_ss1 ctxt)) |
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248 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss2 ctxt)) |
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249 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss3 ctxt)) |
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250 |
|
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val numeral_simp_ss = |
69593 | 252 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps add_0s @ simps) |
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fun numeral_simp_tac ctxt = |
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ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) |
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255 |
val simplify_meta_eq = Arith_Data.simplify_meta_eq post_simps |
44945 | 256 |
val prove_conv = Arith_Data.prove_conv |
257 |
end; |
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258 |
|
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259 |
structure EqCancelNumerals = CancelNumeralsFun |
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260 |
(open CancelNumeralsCommon |
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261 |
val mk_bal = HOLogic.mk_eq |
69593 | 262 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>HOL.eq\<close> dummyT |
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263 |
val bal_add1 = @{thm eq_add_iff1} RS trans |
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val bal_add2 = @{thm eq_add_iff2} RS trans |
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265 |
); |
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266 |
|
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267 |
structure LessCancelNumerals = CancelNumeralsFun |
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268 |
(open CancelNumeralsCommon |
69593 | 269 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less\<close> |
270 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less\<close> dummyT |
|
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271 |
val bal_add1 = @{thm less_add_iff1} RS trans |
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272 |
val bal_add2 = @{thm less_add_iff2} RS trans |
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273 |
); |
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274 |
|
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275 |
structure LeCancelNumerals = CancelNumeralsFun |
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|
276 |
(open CancelNumeralsCommon |
69593 | 277 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less_eq\<close> |
278 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less_eq\<close> dummyT |
|
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|
279 |
val bal_add1 = @{thm le_add_iff1} RS trans |
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280 |
val bal_add2 = @{thm le_add_iff2} RS trans |
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281 |
); |
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282 |
|
61144 | 283 |
val eq_cancel_numerals = EqCancelNumerals.proc |
284 |
val less_cancel_numerals = LessCancelNumerals.proc |
|
285 |
val le_cancel_numerals = LeCancelNumerals.proc |
|
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286 |
|
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|
287 |
structure CombineNumeralsData = |
44945 | 288 |
struct |
289 |
type coeff = int |
|
290 |
val iszero = (fn x => x = 0) |
|
291 |
val add = op + |
|
292 |
val mk_sum = long_mk_sum (*to work for e.g. 2*x + 3*x *) |
|
293 |
val dest_sum = dest_sum |
|
294 |
val mk_coeff = mk_coeff |
|
295 |
val dest_coeff = dest_coeff 1 |
|
296 |
val left_distrib = @{thm combine_common_factor} RS trans |
|
297 |
val prove_conv = Arith_Data.prove_conv_nohyps |
|
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298 |
val trans_tac = trans_tac |
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299 |
|
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fun norm_tac ctxt = |
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ALLGOALS (simp_tac (put_simpset norm_ss1 ctxt)) |
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THEN ALLGOALS (simp_tac (put_simpset norm_ss2 ctxt)) |
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THEN ALLGOALS (simp_tac (put_simpset norm_ss3 ctxt)) |
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304 |
|
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val numeral_simp_ss = |
69593 | 306 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps add_0s @ simps) |
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fun numeral_simp_tac ctxt = |
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ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) |
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309 |
val simplify_meta_eq = Arith_Data.simplify_meta_eq post_simps |
44945 | 310 |
end; |
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|
311 |
|
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312 |
structure CombineNumerals = CombineNumeralsFun(CombineNumeralsData); |
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313 |
|
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|
314 |
(*Version for fields, where coefficients can be fractions*) |
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|
315 |
structure FieldCombineNumeralsData = |
44945 | 316 |
struct |
317 |
type coeff = int * int |
|
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318 |
val iszero = (fn (p, _) => p = 0) |
44945 | 319 |
val add = add_frac |
320 |
val mk_sum = long_mk_sum |
|
321 |
val dest_sum = dest_sum |
|
322 |
val mk_coeff = mk_fcoeff |
|
323 |
val dest_coeff = dest_fcoeff 1 |
|
324 |
val left_distrib = @{thm combine_common_factor} RS trans |
|
325 |
val prove_conv = Arith_Data.prove_conv_nohyps |
|
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|
326 |
val trans_tac = trans_tac |
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|
327 |
|
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328 |
val norm_ss1a = |
69593 | 329 |
simpset_of (put_simpset norm_ss1 \<^context> addsimps inverse_1s @ divide_simps) |
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|
330 |
fun norm_tac ctxt = |
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331 |
ALLGOALS (simp_tac (put_simpset norm_ss1a ctxt)) |
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332 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss2 ctxt)) |
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333 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss3 ctxt)) |
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changeset
|
334 |
|
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|
335 |
val numeral_simp_ss = |
69593 | 336 |
simpset_of (put_simpset HOL_basic_ss \<^context> |
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|
337 |
addsimps add_0s @ simps @ [@{thm add_frac_eq}, @{thm not_False_eq_True}]) |
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|
338 |
fun numeral_simp_tac ctxt = |
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|
339 |
ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) |
45437
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changeset
|
340 |
val simplify_meta_eq = Arith_Data.simplify_meta_eq field_post_simps |
44945 | 341 |
end; |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
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changeset
|
342 |
|
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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changeset
|
343 |
structure FieldCombineNumerals = CombineNumeralsFun(FieldCombineNumeralsData); |
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changeset
|
344 |
|
61144 | 345 |
val combine_numerals = CombineNumerals.proc |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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changeset
|
346 |
|
61144 | 347 |
val field_combine_numerals = FieldCombineNumerals.proc |
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|
348 |
|
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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changeset
|
349 |
|
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
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changeset
|
350 |
(** Constant folding for multiplication in semirings **) |
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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diff
changeset
|
351 |
|
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
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changeset
|
352 |
(*We do not need folding for addition: combine_numerals does the same thing*) |
f591144b0f17
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changeset
|
353 |
|
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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|
354 |
structure Semiring_Times_Assoc_Data : ASSOC_FOLD_DATA = |
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
haftmann
parents:
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diff
changeset
|
355 |
struct |
69593 | 356 |
val assoc_ss = simpset_of (put_simpset HOL_basic_ss \<^context> addsimps @{thms ac_simps minus_mult_commute}) |
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
31067
diff
changeset
|
357 |
val eq_reflection = eq_reflection |
35983
27e2fa7d4ce7
slightly more general simproc (avoids errors of linarith)
boehmes
parents:
35408
diff
changeset
|
358 |
val is_numeral = can HOLogic.dest_number |
31068
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modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
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diff
changeset
|
359 |
end; |
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
haftmann
parents:
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changeset
|
360 |
|
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
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parents:
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diff
changeset
|
361 |
structure Semiring_Times_Assoc = Assoc_Fold (Semiring_Times_Assoc_Data); |
f591144b0f17
modules numeral_simprocs, nat_numeral_simprocs; proper structures for numeral simprocs
haftmann
parents:
31067
diff
changeset
|
362 |
|
59582 | 363 |
fun assoc_fold ctxt ct = Semiring_Times_Assoc.proc ctxt (Thm.term_of ct) |
23164 | 364 |
|
365 |
structure CancelNumeralFactorCommon = |
|
44945 | 366 |
struct |
367 |
val mk_coeff = mk_coeff |
|
368 |
val dest_coeff = dest_coeff 1 |
|
44947
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parents:
44945
diff
changeset
|
369 |
val trans_tac = trans_tac |
23164 | 370 |
|
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changeset
|
371 |
val norm_ss1 = |
69593 | 372 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps minus_from_mult_simps @ mult_1s) |
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changeset
|
373 |
val norm_ss2 = |
69593 | 374 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps simps @ mult_minus_simps) |
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changeset
|
375 |
val norm_ss3 = |
69593 | 376 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps @{thms ac_simps minus_mult_commute numeral_times_minus_swap}) |
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changeset
|
377 |
fun norm_tac ctxt = |
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changeset
|
378 |
ALLGOALS (simp_tac (put_simpset norm_ss1 ctxt)) |
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changeset
|
379 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss2 ctxt)) |
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changeset
|
380 |
THEN ALLGOALS (simp_tac (put_simpset norm_ss3 ctxt)) |
23164 | 381 |
|
45668
0ea1c705eebb
use HOL_basic_ss instead of HOL_ss for internal simproc proofs (cf. b36eedcd1633)
huffman
parents:
45625
diff
changeset
|
382 |
(* simp_thms are necessary because some of the cancellation rules below |
0ea1c705eebb
use HOL_basic_ss instead of HOL_ss for internal simproc proofs (cf. b36eedcd1633)
huffman
parents:
45625
diff
changeset
|
383 |
(e.g. mult_less_cancel_left) introduce various logical connectives *) |
51717
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changeset
|
384 |
val numeral_simp_ss = |
69593 | 385 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps simps @ @{thms simp_thms}) |
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changeset
|
386 |
fun numeral_simp_tac ctxt = |
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simplifier uses proper Proof.context instead of historic type simpset;
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changeset
|
387 |
ALLGOALS (simp_tac (put_simpset numeral_simp_ss ctxt)) |
30518 | 388 |
val simplify_meta_eq = Arith_Data.simplify_meta_eq |
45437
958d19d3405b
tune post-processing of simproc-generated rules so they won't produce Numeral0 or Numeral1
huffman
parents:
45306
diff
changeset
|
389 |
([@{thm Nat.add_0}, @{thm Nat.add_0_right}] @ post_simps) |
44945 | 390 |
val prove_conv = Arith_Data.prove_conv |
391 |
end |
|
23164 | 392 |
|
30931
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
393 |
(*Version for semiring_div*) |
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
394 |
structure DivCancelNumeralFactor = CancelNumeralFactorFun |
23164 | 395 |
(open CancelNumeralFactorCommon |
69593 | 396 |
val mk_bal = HOLogic.mk_binop \<^const_name>\<open>Rings.divide\<close> |
397 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Rings.divide\<close> dummyT |
|
30931
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
398 |
val cancel = @{thm div_mult_mult1} RS trans |
23164 | 399 |
val neg_exchanges = false |
400 |
) |
|
401 |
||
402 |
(*Version for fields*) |
|
403 |
structure DivideCancelNumeralFactor = CancelNumeralFactorFun |
|
404 |
(open CancelNumeralFactorCommon |
|
69593 | 405 |
val mk_bal = HOLogic.mk_binop \<^const_name>\<open>Rings.divide\<close> |
406 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Rings.divide\<close> dummyT |
|
23413
5caa2710dd5b
tuned laws for cancellation in divisions for fields.
nipkow
parents:
23401
diff
changeset
|
407 |
val cancel = @{thm mult_divide_mult_cancel_left} RS trans |
23164 | 408 |
val neg_exchanges = false |
409 |
) |
|
410 |
||
411 |
structure EqCancelNumeralFactor = CancelNumeralFactorFun |
|
412 |
(open CancelNumeralFactorCommon |
|
413 |
val mk_bal = HOLogic.mk_eq |
|
69593 | 414 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>HOL.eq\<close> dummyT |
23164 | 415 |
val cancel = @{thm mult_cancel_left} RS trans |
416 |
val neg_exchanges = false |
|
417 |
) |
|
418 |
||
419 |
structure LessCancelNumeralFactor = CancelNumeralFactorFun |
|
420 |
(open CancelNumeralFactorCommon |
|
69593 | 421 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less\<close> |
422 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less\<close> dummyT |
|
23164 | 423 |
val cancel = @{thm mult_less_cancel_left} RS trans |
424 |
val neg_exchanges = true |
|
425 |
) |
|
426 |
||
427 |
structure LeCancelNumeralFactor = CancelNumeralFactorFun |
|
61144 | 428 |
( |
429 |
open CancelNumeralFactorCommon |
|
69593 | 430 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less_eq\<close> |
431 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less_eq\<close> dummyT |
|
23164 | 432 |
val cancel = @{thm mult_le_cancel_left} RS trans |
433 |
val neg_exchanges = true |
|
434 |
) |
|
435 |
||
61144 | 436 |
val eq_cancel_numeral_factor = EqCancelNumeralFactor.proc |
437 |
val less_cancel_numeral_factor = LessCancelNumeralFactor.proc |
|
438 |
val le_cancel_numeral_factor = LeCancelNumeralFactor.proc |
|
439 |
val div_cancel_numeral_factor = DivCancelNumeralFactor.proc |
|
440 |
val divide_cancel_numeral_factor = DivideCancelNumeralFactor.proc |
|
23164 | 441 |
|
57136
653e56c6c963
must not cancel common factors on both sides of (in)equations in linear arithmetic decicision procedure
nipkow
parents:
56282
diff
changeset
|
442 |
val field_divide_cancel_numeral_factor = |
69593 | 443 |
Simplifier.make_simproc \<^context> "field_divide_cancel_numeral_factor" |
61144 | 444 |
{lhss = |
69593 | 445 |
[\<^term>\<open>((l::'a::field) * m) / n\<close>, |
446 |
\<^term>\<open>(l::'a::field) / (m * n)\<close>, |
|
447 |
\<^term>\<open>((numeral v)::'a::field) / (numeral w)\<close>, |
|
448 |
\<^term>\<open>((numeral v)::'a::field) / (- numeral w)\<close>, |
|
449 |
\<^term>\<open>((- numeral v)::'a::field) / (numeral w)\<close>, |
|
450 |
\<^term>\<open>((- numeral v)::'a::field) / (- numeral w)\<close>], |
|
62913 | 451 |
proc = K DivideCancelNumeralFactor.proc} |
57136
653e56c6c963
must not cancel common factors on both sides of (in)equations in linear arithmetic decicision procedure
nipkow
parents:
56282
diff
changeset
|
452 |
|
653e56c6c963
must not cancel common factors on both sides of (in)equations in linear arithmetic decicision procedure
nipkow
parents:
56282
diff
changeset
|
453 |
val field_cancel_numeral_factors = |
69593 | 454 |
[Simplifier.make_simproc \<^context> "field_eq_cancel_numeral_factor" |
61144 | 455 |
{lhss = |
69593 | 456 |
[\<^term>\<open>(l::'a::field) * m = n\<close>, |
457 |
\<^term>\<open>(l::'a::field) = m * n\<close>], |
|
62913 | 458 |
proc = K EqCancelNumeralFactor.proc}, |
61144 | 459 |
field_divide_cancel_numeral_factor] |
23164 | 460 |
|
461 |
||
462 |
(** Declarations for ExtractCommonTerm **) |
|
463 |
||
464 |
(*Find first term that matches u*) |
|
465 |
fun find_first_t past u [] = raise TERM ("find_first_t", []) |
|
466 |
| find_first_t past u (t::terms) = |
|
467 |
if u aconv t then (rev past @ terms) |
|
468 |
else find_first_t (t::past) u terms |
|
469 |
handle TERM _ => find_first_t (t::past) u terms; |
|
470 |
||
471 |
(** Final simplification for the CancelFactor simprocs **) |
|
61144 | 472 |
val simplify_one = Arith_Data.simplify_meta_eq |
61694
6571c78c9667
Removed some legacy theorems; minor adjustments to simplification rules; new material on homotopic paths
paulson <lp15@cam.ac.uk>
parents:
61150
diff
changeset
|
473 |
[@{thm mult_1_left}, @{thm mult_1_right}, @{thm div_by_1}, @{thm numeral_One}]; |
23164 | 474 |
|
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
475 |
fun cancel_simplify_meta_eq ctxt cancel_th th = |
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
476 |
simplify_one ctxt (([th, cancel_th]) MRS trans); |
23164 | 477 |
|
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
478 |
local |
69593 | 479 |
val Tp_Eq = Thm.reflexive (Thm.cterm_of \<^theory_context>\<open>HOL\<close> HOLogic.Trueprop) |
61144 | 480 |
fun Eq_True_elim Eq = |
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
481 |
Thm.equal_elim (Thm.combination Tp_Eq (Thm.symmetric Eq)) @{thm TrueI} |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
482 |
in |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
483 |
fun sign_conv pos_th neg_th ctxt t = |
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
484 |
let val T = fastype_of t; |
69593 | 485 |
val zero = Const(\<^const_name>\<open>Groups.zero\<close>, T); |
486 |
val less = Const(\<^const_name>\<open>Orderings.less\<close>, [T,T] ---> HOLogic.boolT); |
|
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
487 |
val pos = less $ zero $ t and neg = less $ t $ zero |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
488 |
fun prove p = |
59642 | 489 |
SOME (Eq_True_elim (Simplifier.asm_rewrite ctxt (Thm.cterm_of ctxt p))) |
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
490 |
handle THM _ => NONE |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
491 |
in case prove pos of |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
492 |
SOME th => SOME(th RS pos_th) |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
493 |
| NONE => (case prove neg of |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
494 |
SOME th => SOME(th RS neg_th) |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
495 |
| NONE => NONE) |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
496 |
end; |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
497 |
end |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
498 |
|
23164 | 499 |
structure CancelFactorCommon = |
44945 | 500 |
struct |
501 |
val mk_sum = long_mk_prod |
|
502 |
val dest_sum = dest_prod |
|
503 |
val mk_coeff = mk_coeff |
|
504 |
val dest_coeff = dest_coeff |
|
505 |
val find_first = find_first_t [] |
|
44947
8ae418dfe561
dropped unused argument – avoids problem with SML/NJ
haftmann
parents:
44945
diff
changeset
|
506 |
val trans_tac = trans_tac |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
507 |
val norm_ss = |
69593 | 508 |
simpset_of (put_simpset HOL_basic_ss \<^context> addsimps mult_1s @ @{thms ac_simps minus_mult_commute}) |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
509 |
fun norm_tac ctxt = |
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
510 |
ALLGOALS (simp_tac (put_simpset norm_ss ctxt)) |
61144 | 511 |
val simplify_meta_eq = cancel_simplify_meta_eq |
45270
d5b5c9259afd
fix bug in cancel_factor simprocs so they will work on goals like 'x * y < x * z' where the common term is already on the left
huffman
parents:
44984
diff
changeset
|
512 |
fun mk_eq (a, b) = HOLogic.mk_Trueprop (HOLogic.mk_eq (a, b)) |
44945 | 513 |
end; |
23164 | 514 |
|
515 |
(*mult_cancel_left requires a ring with no zero divisors.*) |
|
516 |
structure EqCancelFactor = ExtractCommonTermFun |
|
517 |
(open CancelFactorCommon |
|
518 |
val mk_bal = HOLogic.mk_eq |
|
69593 | 519 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>HOL.eq\<close> dummyT |
31368 | 520 |
fun simp_conv _ _ = SOME @{thm mult_cancel_left} |
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
521 |
); |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
522 |
|
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
523 |
(*for ordered rings*) |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
524 |
structure LeCancelFactor = ExtractCommonTermFun |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
525 |
(open CancelFactorCommon |
69593 | 526 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less_eq\<close> |
527 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less_eq\<close> dummyT |
|
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
528 |
val simp_conv = sign_conv |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
529 |
@{thm mult_le_cancel_left_pos} @{thm mult_le_cancel_left_neg} |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
530 |
); |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
531 |
|
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
532 |
(*for ordered rings*) |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
533 |
structure LessCancelFactor = ExtractCommonTermFun |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
534 |
(open CancelFactorCommon |
69593 | 535 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Orderings.less\<close> |
536 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Orderings.less\<close> dummyT |
|
30649
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
537 |
val simp_conv = sign_conv |
57753e0ec1d4
1. New cancellation simprocs for common factors in inequations
nipkow
parents:
30518
diff
changeset
|
538 |
@{thm mult_less_cancel_left_pos} @{thm mult_less_cancel_left_neg} |
23164 | 539 |
); |
540 |
||
30931
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
541 |
(*for semirings with division*) |
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
542 |
structure DivCancelFactor = ExtractCommonTermFun |
23164 | 543 |
(open CancelFactorCommon |
69593 | 544 |
val mk_bal = HOLogic.mk_binop \<^const_name>\<open>Rings.divide\<close> |
545 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Rings.divide\<close> dummyT |
|
31368 | 546 |
fun simp_conv _ _ = SOME @{thm div_mult_mult1_if} |
23164 | 547 |
); |
548 |
||
30931
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
549 |
structure ModCancelFactor = ExtractCommonTermFun |
24395 | 550 |
(open CancelFactorCommon |
69593 | 551 |
val mk_bal = HOLogic.mk_binop \<^const_name>\<open>modulo\<close> |
552 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>modulo\<close> dummyT |
|
31368 | 553 |
fun simp_conv _ _ = SOME @{thm mod_mult_mult1} |
24395 | 554 |
); |
555 |
||
30931
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
556 |
(*for idoms*) |
86ca651da03e
generalized some simprocs from int to semiring_div
haftmann
parents:
30685
diff
changeset
|
557 |
structure DvdCancelFactor = ExtractCommonTermFun |
23969 | 558 |
(open CancelFactorCommon |
69593 | 559 |
val mk_bal = HOLogic.mk_binrel \<^const_name>\<open>Rings.dvd\<close> |
560 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Rings.dvd\<close> dummyT |
|
31368 | 561 |
fun simp_conv _ _ = SOME @{thm dvd_mult_cancel_left} |
23969 | 562 |
); |
563 |
||
23164 | 564 |
(*Version for all fields, including unordered ones (type complex).*) |
565 |
structure DivideCancelFactor = ExtractCommonTermFun |
|
566 |
(open CancelFactorCommon |
|
69593 | 567 |
val mk_bal = HOLogic.mk_binop \<^const_name>\<open>Rings.divide\<close> |
568 |
val dest_bal = HOLogic.dest_bin \<^const_name>\<open>Rings.divide\<close> dummyT |
|
31368 | 569 |
fun simp_conv _ _ = SOME @{thm mult_divide_mult_cancel_left_if} |
23164 | 570 |
); |
571 |
||
59582 | 572 |
fun eq_cancel_factor ctxt ct = EqCancelFactor.proc ctxt (Thm.term_of ct) |
573 |
fun le_cancel_factor ctxt ct = LeCancelFactor.proc ctxt (Thm.term_of ct) |
|
574 |
fun less_cancel_factor ctxt ct = LessCancelFactor.proc ctxt (Thm.term_of ct) |
|
575 |
fun div_cancel_factor ctxt ct = DivCancelFactor.proc ctxt (Thm.term_of ct) |
|
576 |
fun mod_cancel_factor ctxt ct = ModCancelFactor.proc ctxt (Thm.term_of ct) |
|
577 |
fun dvd_cancel_factor ctxt ct = DvdCancelFactor.proc ctxt (Thm.term_of ct) |
|
578 |
fun divide_cancel_factor ctxt ct = DivideCancelFactor.proc ctxt (Thm.term_of ct) |
|
23164 | 579 |
|
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
580 |
local |
61144 | 581 |
|
69593 | 582 |
val cterm_of = Thm.cterm_of \<^context>; |
61150 | 583 |
fun tvar S = (("'a", 0), S); |
584 |
||
69593 | 585 |
val zero_tvar = tvar \<^sort>\<open>zero\<close>; |
586 |
val zero = cterm_of (Const (\<^const_name>\<open>zero_class.zero\<close>, TVar zero_tvar)); |
|
61150 | 587 |
|
69593 | 588 |
val type_tvar = tvar \<^sort>\<open>type\<close>; |
589 |
val geq = cterm_of (Const (\<^const_name>\<open>HOL.eq\<close>, TVar type_tvar --> TVar type_tvar --> \<^typ>\<open>bool\<close>)); |
|
61150 | 590 |
|
61144 | 591 |
val add_frac_eq = mk_meta_eq @{thm "add_frac_eq"} |
592 |
val add_frac_num = mk_meta_eq @{thm "add_frac_num"} |
|
593 |
val add_num_frac = mk_meta_eq @{thm "add_num_frac"} |
|
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
594 |
|
61144 | 595 |
fun prove_nz ctxt T t = |
596 |
let |
|
61150 | 597 |
val z = Thm.instantiate_cterm ([(zero_tvar, T)], []) zero |
598 |
val eq = Thm.instantiate_cterm ([(type_tvar, T)], []) geq |
|
599 |
val th = |
|
600 |
Simplifier.rewrite (ctxt addsimps @{thms simp_thms}) |
|
69593 | 601 |
(Thm.apply \<^cterm>\<open>Trueprop\<close> (Thm.apply \<^cterm>\<open>Not\<close> |
61150 | 602 |
(Thm.apply (Thm.apply eq t) z))) |
603 |
in Thm.equal_elim (Thm.symmetric th) TrueI end |
|
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
604 |
|
61144 | 605 |
fun proc ctxt ct = |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
606 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
607 |
val ((x,y),(w,z)) = |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
608 |
(Thm.dest_binop #> (fn (a,b) => (Thm.dest_binop a, Thm.dest_binop b))) ct |
59582 | 609 |
val _ = map (HOLogic.dest_number o Thm.term_of) [x,y,z,w] |
59586 | 610 |
val T = Thm.ctyp_of_cterm x |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
611 |
val [y_nz, z_nz] = map (prove_nz ctxt T) [y, z] |
60801 | 612 |
val th = Thm.instantiate' [SOME T] (map SOME [y,z,x,w]) add_frac_eq |
61144 | 613 |
in SOME (Thm.implies_elim (Thm.implies_elim th y_nz) z_nz) end |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
614 |
handle CTERM _ => NONE | TERM _ => NONE | THM _ => NONE |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
615 |
|
61144 | 616 |
fun proc2 ctxt ct = |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
617 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
618 |
val (l,r) = Thm.dest_binop ct |
59586 | 619 |
val T = Thm.ctyp_of_cterm l |
59582 | 620 |
in (case (Thm.term_of l, Thm.term_of r) of |
69593 | 621 |
(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_, _) => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
622 |
let val (x,y) = Thm.dest_binop l val z = r |
59582 | 623 |
val _ = map (HOLogic.dest_number o Thm.term_of) [x,y,z] |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
624 |
val ynz = prove_nz ctxt T y |
60801 | 625 |
in SOME (Thm.implies_elim (Thm.instantiate' [SOME T] (map SOME [y,x,z]) add_frac_num) ynz) |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
626 |
end |
69593 | 627 |
| (_, Const (\<^const_name>\<open>Rings.divide\<close>,_)$_$_) => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
628 |
let val (x,y) = Thm.dest_binop r val z = l |
59582 | 629 |
val _ = map (HOLogic.dest_number o Thm.term_of) [x,y,z] |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
630 |
val ynz = prove_nz ctxt T y |
60801 | 631 |
in SOME (Thm.implies_elim (Thm.instantiate' [SOME T] (map SOME [y,z,x]) add_num_frac) ynz) |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
632 |
end |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
633 |
| _ => NONE) |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
634 |
end |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
635 |
handle CTERM _ => NONE | TERM _ => NONE | THM _ => NONE |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
636 |
|
69593 | 637 |
fun is_number (Const(\<^const_name>\<open>Rings.divide\<close>,_)$a$b) = is_number a andalso is_number b |
61144 | 638 |
| is_number t = can HOLogic.dest_number t |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
639 |
|
61144 | 640 |
val is_number = is_number o Thm.term_of |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
641 |
|
61144 | 642 |
fun proc3 ctxt ct = |
59582 | 643 |
(case Thm.term_of ct of |
69593 | 644 |
Const(\<^const_name>\<open>Orderings.less\<close>,_)$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_)$_ => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
645 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
646 |
val ((a,b),c) = Thm.dest_binop ct |>> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
647 |
val _ = map is_number [a,b,c] |
59586 | 648 |
val T = Thm.ctyp_of_cterm c |
60801 | 649 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "divide_less_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
650 |
in SOME (mk_meta_eq th) end |
69593 | 651 |
| Const(\<^const_name>\<open>Orderings.less_eq\<close>,_)$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_)$_ => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
652 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
653 |
val ((a,b),c) = Thm.dest_binop ct |>> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
654 |
val _ = map is_number [a,b,c] |
59586 | 655 |
val T = Thm.ctyp_of_cterm c |
60801 | 656 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "divide_le_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
657 |
in SOME (mk_meta_eq th) end |
69593 | 658 |
| Const(\<^const_name>\<open>HOL.eq\<close>,_)$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_)$_ => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
659 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
660 |
val ((a,b),c) = Thm.dest_binop ct |>> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
661 |
val _ = map is_number [a,b,c] |
59586 | 662 |
val T = Thm.ctyp_of_cterm c |
60801 | 663 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "divide_eq_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
664 |
in SOME (mk_meta_eq th) end |
69593 | 665 |
| Const(\<^const_name>\<open>Orderings.less\<close>,_)$_$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_) => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
666 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
667 |
val (a,(b,c)) = Thm.dest_binop ct ||> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
668 |
val _ = map is_number [a,b,c] |
59586 | 669 |
val T = Thm.ctyp_of_cterm c |
60801 | 670 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "less_divide_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
671 |
in SOME (mk_meta_eq th) end |
69593 | 672 |
| Const(\<^const_name>\<open>Orderings.less_eq\<close>,_)$_$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_) => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
673 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
674 |
val (a,(b,c)) = Thm.dest_binop ct ||> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
675 |
val _ = map is_number [a,b,c] |
59586 | 676 |
val T = Thm.ctyp_of_cterm c |
60801 | 677 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "le_divide_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
678 |
in SOME (mk_meta_eq th) end |
69593 | 679 |
| Const(\<^const_name>\<open>HOL.eq\<close>,_)$_$(Const(\<^const_name>\<open>Rings.divide\<close>,_)$_$_) => |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
680 |
let |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
681 |
val (a,(b,c)) = Thm.dest_binop ct ||> Thm.dest_binop |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
682 |
val _ = map is_number [a,b,c] |
59586 | 683 |
val T = Thm.ctyp_of_cterm c |
60801 | 684 |
val th = Thm.instantiate' [SOME T] (map SOME [a,b,c]) @{thm "eq_divide_eq"} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
685 |
in SOME (mk_meta_eq th) end |
61144 | 686 |
| _ => NONE) handle TERM _ => NONE | CTERM _ => NONE | THM _ => NONE |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
687 |
|
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
688 |
val add_frac_frac_simproc = |
69593 | 689 |
Simplifier.make_simproc \<^context> "add_frac_frac_simproc" |
690 |
{lhss = [\<^term>\<open>(x::'a::field) / y + (w::'a::field) / z\<close>], |
|
62913 | 691 |
proc = K proc} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
692 |
|
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
693 |
val add_frac_num_simproc = |
69593 | 694 |
Simplifier.make_simproc \<^context> "add_frac_num_simproc" |
695 |
{lhss = [\<^term>\<open>(x::'a::field) / y + z\<close>, \<^term>\<open>z + (x::'a::field) / y\<close>], |
|
62913 | 696 |
proc = K proc2} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
697 |
|
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
698 |
val ord_frac_simproc = |
69593 | 699 |
Simplifier.make_simproc \<^context> "ord_frac_simproc" |
61144 | 700 |
{lhss = |
69593 | 701 |
[\<^term>\<open>(a::'a::{field,ord}) / b < c\<close>, |
702 |
\<^term>\<open>(a::'a::{field,ord}) / b \<le> c\<close>, |
|
703 |
\<^term>\<open>c < (a::'a::{field,ord}) / b\<close>, |
|
704 |
\<^term>\<open>c \<le> (a::'a::{field,ord}) / b\<close>, |
|
705 |
\<^term>\<open>c = (a::'a::{field,ord}) / b\<close>, |
|
706 |
\<^term>\<open>(a::'a::{field, ord}) / b = c\<close>], |
|
62913 | 707 |
proc = K proc3} |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
708 |
|
61144 | 709 |
val ths = |
710 |
[@{thm "mult_numeral_1"}, @{thm "mult_numeral_1_right"}, |
|
711 |
@{thm "divide_numeral_1"}, |
|
64240 | 712 |
@{thm "div_by_0"}, @{thm div_0}, |
61144 | 713 |
@{thm "divide_divide_eq_left"}, |
714 |
@{thm "times_divide_eq_left"}, @{thm "times_divide_eq_right"}, |
|
715 |
@{thm "times_divide_times_eq"}, |
|
716 |
@{thm "divide_divide_eq_right"}, |
|
717 |
@{thm diff_conv_add_uminus}, @{thm "minus_divide_left"}, |
|
718 |
@{thm "add_divide_distrib"} RS sym, |
|
719 |
@{thm Fields.field_divide_inverse} RS sym, @{thm inverse_divide}, |
|
720 |
Conv.fconv_rule (Conv.arg_conv (Conv.arg1_conv (Conv.rewr_conv (mk_meta_eq @{thm mult.commute})))) |
|
721 |
(@{thm Fields.field_divide_inverse} RS sym)] |
|
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
722 |
|
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
723 |
val field_comp_ss = |
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
724 |
simpset_of |
69593 | 725 |
(put_simpset HOL_basic_ss \<^context> |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
726 |
addsimps @{thms "semiring_norm"} |
45620
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
wenzelm
parents:
45437
diff
changeset
|
727 |
addsimps ths addsimps @{thms simp_thms} |
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
wenzelm
parents:
45437
diff
changeset
|
728 |
addsimprocs field_cancel_numeral_factors |
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
wenzelm
parents:
45437
diff
changeset
|
729 |
addsimprocs [add_frac_frac_simproc, add_frac_num_simproc, ord_frac_simproc] |
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
wenzelm
parents:
45437
diff
changeset
|
730 |
|> Simplifier.add_cong @{thm "if_weak_cong"}) |
51717
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
731 |
|
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
732 |
in |
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
733 |
|
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
734 |
fun field_comp_conv ctxt = |
9e7d1c139569
simplifier uses proper Proof.context instead of historic type simpset;
wenzelm
parents:
49323
diff
changeset
|
735 |
Simplifier.rewrite (put_simpset field_comp_ss ctxt) |
45620
f2a587696afb
modernized some old-style infix operations, which were left over from the time of ML proof scripts;
wenzelm
parents:
45437
diff
changeset
|
736 |
then_conv |
61694
6571c78c9667
Removed some legacy theorems; minor adjustments to simplification rules; new material on homotopic paths
paulson <lp15@cam.ac.uk>
parents:
61150
diff
changeset
|
737 |
Simplifier.rewrite (put_simpset HOL_basic_ss ctxt addsimps [@{thm numeral_One}]) |
36751
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
738 |
|
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
739 |
end |
7f1da69cacb3
split of semiring normalization from Groebner theory; moved field_comp_conv to Numeral_Simproces
haftmann
parents:
36409
diff
changeset
|
740 |
|
23164 | 741 |
end; |