IntEx.thy
author Cezary Kaliszyk <kaliszyk@in.tum.de>
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theory IntEx
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imports QuotMain
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begin
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fun
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  intrel :: "(nat \<times> nat) \<Rightarrow> (nat \<times> nat) \<Rightarrow> bool"
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where
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  "intrel (x, y) (u, v) = (x + v = u + y)"
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quotient my_int = "nat \<times> nat" / intrel
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  apply(unfold EQUIV_def)
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  apply(auto simp add: mem_def expand_fun_eq)
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  done
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quotient_def (for my_int)
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  ZERO::"my_int"
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where
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  "ZERO \<equiv> (0::nat, 0::nat)"
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thm ZERO_def
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quotient_def (for my_int)
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  ONE::"my_int"
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where
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  "ONE \<equiv> (1::nat, 0::nat)"
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term ONE
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thm ONE_def
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fun
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  my_plus :: "(nat \<times> nat) \<Rightarrow> (nat \<times> nat) \<Rightarrow> (nat \<times> nat)"
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where
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  "my_plus (x, y) (u, v) = (x + u, y + v)"
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quotient_def (for my_int)
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  PLUS::"my_int \<Rightarrow> my_int \<Rightarrow> my_int"
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where
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  "PLUS \<equiv> my_plus"
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term PLUS
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thm PLUS_def
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fun
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  my_neg :: "(nat \<times> nat) \<Rightarrow> (nat \<times> nat)"
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where
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  "my_neg (x, y) = (y, x)"
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quotient_def (for my_int)
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  NEG::"my_int \<Rightarrow> my_int"
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where
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  "NEG \<equiv> my_neg"
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term NEG
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thm NEG_def
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definition
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  MINUS :: "my_int \<Rightarrow> my_int \<Rightarrow> my_int"
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where
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  "MINUS z w = PLUS z (NEG w)"
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fun
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  my_mult :: "(nat \<times> nat) \<Rightarrow> (nat \<times> nat) \<Rightarrow> (nat \<times> nat)"
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where
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  "my_mult (x, y) (u, v) = (x*u + y*v, x*v + y*u)"
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quotient_def (for my_int)
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  MULT::"my_int \<Rightarrow> my_int \<Rightarrow> my_int"
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where
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  "MULT \<equiv> my_mult"
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term MULT
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thm MULT_def
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(* NOT SURE WETHER THIS DEFINITION IS CORRECT *)
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fun
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  my_le :: "(nat \<times> nat) \<Rightarrow> (nat \<times> nat) \<Rightarrow> bool"
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where
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  "my_le (x, y) (u, v) = (x+v \<le> u+y)"
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quotient_def (for my_int)
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  LE :: "my_int \<Rightarrow> my_int \<Rightarrow> bool"
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where
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  "LE \<equiv> my_le"
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term LE
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thm LE_def
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definition
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  LESS :: "my_int \<Rightarrow> my_int \<Rightarrow> bool"
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where
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  "LESS z w = (LE z w \<and> z \<noteq> w)"
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term LESS
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thm LESS_def
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definition
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  ABS :: "my_int \<Rightarrow> my_int"
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where
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  "ABS i = (if (LESS i ZERO) then (NEG i) else i)"
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definition
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  SIGN :: "my_int \<Rightarrow> my_int"
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where
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 "SIGN i = (if i = ZERO then ZERO else if (LESS ZERO i) then ONE else (NEG ONE))"
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lemma plus_sym_pre:
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  shows "intrel (my_plus a b) (my_plus b a)"
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  apply(cases a)
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  apply(cases b)
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  apply(auto)
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  done
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lemma equiv_intrel: "EQUIV intrel"
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  sorry
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lemma intrel_refl: "intrel a a"
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  sorry
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lemma ho_plus_rsp:
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  "IntEx.intrel ===> IntEx.intrel ===> IntEx.intrel my_plus my_plus"
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  by (simp)
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ML {* val consts = [@{const_name "my_plus"}] *}
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ML {* val rty = @{typ "nat \<times> nat"} *}
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ML {* val qty = @{typ "my_int"} *}
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ML {* val rel = @{term "intrel"} *}
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ML {* val rel_eqv = @{thm equiv_intrel} *}
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ML {* val rel_refl = @{thm intrel_refl} *}
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ML {* val quot = @{thm QUOTIENT_my_int} *}
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ML {* val rsp_thms = @{thms ho_plus_rsp} @ @{thms ho_all_prs ho_ex_prs} *}
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ML {* val trans2 = @{thm QUOT_TYPE_I_my_int.R_trans2} *}
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ML {* val reps_same = @{thm QUOT_TYPE_I_my_int.REPS_same} *}
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ML {* val t_defs = @{thms PLUS_def} *}
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ML {*
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fun lift_thm_my_int lthy t =
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  lift_thm lthy consts rty qty rel rel_eqv rel_refl quot rsp_thms trans2 reps_same t_defs t
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*}
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ML {* lift_thm_my_int @{context} @{thm plus_sym_pre} *}
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lemma plus_assoc_pre:
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  shows "intrel (my_plus (my_plus i j) k) (my_plus i (my_plus j k))"
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  apply (cases i)
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  apply (cases j)
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  apply (cases k)
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  apply (simp add: intrel_refl)
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  done
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 ML {* lift_thm_my_int @{context} @{thm plus_assoc_pre} *}
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191
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198
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text {* Below is the construction site code used if things do now work *}
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221
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ML {* val t_a = atomize_thm @{thm plus_sym_pre} *}
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ML {* val t_r = regularize t_a rty rel rel_eqv @{context} *}
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210
f88ea69331bf Simplfied interface to repabs_injection.
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ML {* val t_t =
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  Toplevel.program (fn () =>
210
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  repabs @{context} t_r consts rty qty
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   quot rel_refl trans2
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   rsp_thms
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  )
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*}
192
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ML {* val abs = findabs rty (prop_of (atomize_thm @{thm plus_sym_pre})) *}
210
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192
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ML {* val simp_lam_prs_thms = map (make_simp_lam_prs_thm @{context} quot) abs *}
210
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ML {* t_t *}
221
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ML {* val t_l = repeat_eqsubst_thm @{context} simp_lam_prs_thms t_t *}
191
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196
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ML {* val t_a = simp_allex_prs @{context} quot t_l *}
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ML {* val t_defs_sym = add_lower_defs @{context} t_defs *}
221
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ML {* val t_d = repeat_eqsubst_thm @{context} t_defs_sym t_a *}
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ML {* val t_r = MetaSimplifier.rewrite_rule [reps_same] t_d *}
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ML {* ObjectLogic.rulify t_r *}
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3e53081ad53a added another example file about integers (see HOL/Int.thy)
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3e53081ad53a added another example file about integers (see HOL/Int.thy)
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3e53081ad53a added another example file about integers (see HOL/Int.thy)
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