src/HOL/Decision_Procs/Approximation.thy
author Lars Hupel <lars.hupel@mytum.de>
Thu, 15 Sep 2016 22:41:05 +0200
changeset 63885 a6cd18af8bf9
parent 63570 1826a90b9cbc
child 63918 6bf55e6e0b75
permissions -rw-r--r--
new type for finite maps; use it in HOL-Probability
Ignore whitespace changes - Everywhere: Within whitespace: At end of lines:
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 (* Author:     Johannes Hoelzl, TU Muenchen
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   Coercions removed by Dmitriy Traytel *)
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1c912a9d8200 standard headers;
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60533
1e7ccd864b62 isabelle update_cartouches;
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section \<open>Prove Real Valued Inequalities by Computation\<close>
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theory Approximation
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imports
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  Complex_Main
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  "~~/src/HOL/Library/Float"
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  Dense_Linear_Order
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  "~~/src/HOL/Library/Code_Target_Numeral"
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keywords "approximate" :: diag
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begin
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declare powr_numeral [simp]
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declare powr_neg_one [simp]
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declare powr_neg_numeral [simp]
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section "Horner Scheme"
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5197a2ecb658 isabelle update_cartouches -c -t;
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subsection \<open>Define auxiliary helper \<open>horner\<close> function\<close>
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31098
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
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primrec horner :: "(nat \<Rightarrow> nat) \<Rightarrow> (nat \<Rightarrow> nat \<Rightarrow> nat) \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> real \<Rightarrow> real" where
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"horner F G 0 i k x       = 0" |
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"horner F G (Suc n) i k x = 1 / k - x * horner F G n (F i) (G i k) x"
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lemma horner_schema':
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  fixes x :: real and a :: "nat \<Rightarrow> real"
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  shows "a 0 - x * (\<Sum> i=0..<n. (-1)^i * a (Suc i) * x^i) = (\<Sum> i=0..<Suc n. (-1)^i * a i * x^i)"
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proof -
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parents: 47621
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  have shift_pow: "\<And>i. - (x * ((-1)^i * a (Suc i) * x ^ i)) = (-1)^(Suc i) * a (Suc i) * x ^ (Suc i)"
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    by auto
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  show ?thesis
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b1d955791529 more simplification rules on unary and binary minus
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    34
    unfolding setsum_right_distrib shift_pow uminus_add_conv_diff [symmetric] setsum_negf[symmetric]
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    35
    setsum_head_upt_Suc[OF zero_less_Suc]
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    36
    setsum.reindex[OF inj_Suc, unfolded comp_def, symmetric, of "\<lambda> n. (-1)^n  *a n * x^n"] by auto
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qed
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lemma horner_schema:
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    40
  fixes f :: "nat \<Rightarrow> nat" and G :: "nat \<Rightarrow> nat \<Rightarrow> nat" and F :: "nat \<Rightarrow> nat"
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7fbebf75b3ef funpow and relpow with shared "^^" syntax
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  assumes f_Suc: "\<And>n. f (Suc n) = G ((F ^^ n) s) (f n)"
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  shows "horner F G n ((F ^^ j') s) (f j') x = (\<Sum> j = 0..< n. (- 1) ^ j * (1 / (f (j' + j))) * x ^ j)"
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proof (induct n arbitrary: j')
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  case 0
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  then show ?case by auto
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next
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  case (Suc n)
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  show ?case unfolding horner.simps Suc[where j'="Suc j'", unfolded funpow.simps comp_def f_Suc]
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parents: 39556
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    49
    using horner_schema'[of "\<lambda> j. 1 / (f (j' + j))"] by auto
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qed
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lemma horner_bounds':
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  fixes lb :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float" and ub :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
61609
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paulson <lp15@cam.ac.uk>
parents: 60680
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    54
  assumes "0 \<le> real_of_float x" and f_Suc: "\<And>n. f (Suc n) = G ((F ^^ n) s) (f n)"
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parents: 47621
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    55
    and lb_0: "\<And> i k x. lb 0 i k x = 0"
58985
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    56
    and lb_Suc: "\<And> n i k x. lb (Suc n) i k x = float_plus_down prec
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        (lapprox_rat prec 1 k)
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        (- float_round_up prec (x * (ub n (F i) (G i k) x)))"
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    59
    and ub_0: "\<And> i k x. ub 0 i k x = 0"
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parents: 58982
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    60
    and ub_Suc: "\<And> n i k x. ub (Suc n) i k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
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parents: 58982
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        (rapprox_rat prec 1 k)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
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parents: 58982
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        (- float_round_down prec (x * (lb n (F i) (G i k) x)))"
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e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
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    63
  shows "(lb n ((F ^^ j') s) (f j') x) \<le> horner F G n ((F ^^ j') s) (f j') x \<and>
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
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parents: 39556
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    64
         horner F G n ((F ^^ j') s) (f j') x \<le> (ub n ((F ^^ j') s) (f j') x)"
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parents:
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    65
  (is "?lb n j' \<le> ?horner n j' \<and> ?horner n j' \<le> ?ub n j'")
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parents:
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proof (induct n arbitrary: j')
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    67
  case 0
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    68
  thus ?case unfolding lb_0 ub_0 horner.simps by auto
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    69
next
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    70
  case (Suc n)
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parents: 47108
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    71
  thus ?case using lapprox_rat[of prec 1 "f j'"] using rapprox_rat[of 1 "f j'" prec]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
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    72
    Suc[where j'="Suc j'"] \<open>0 \<le> real_of_float x\<close>
58985
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parents: 58982
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    73
    by (auto intro!: add_mono mult_left_mono float_round_down_le float_round_up_le
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parents: 58982
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    74
      order_trans[OF add_mono[OF _ float_plus_down_le]]
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parents: 58982
diff changeset
    75
      order_trans[OF _ add_mono[OF _ float_plus_up_le]]
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      simp add: lb_Suc ub_Suc field_simps f_Suc)
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    77
qed
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    78
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subsection "Theorems for floating point functions implementing the horner scheme"
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1e7ccd864b62 isabelle update_cartouches;
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text \<open>
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Here @{term_type "f :: nat \<Rightarrow> nat"} is the sequence defining the Taylor series, the coefficients are
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    84
all alternating and reciprocs. We use @{term G} and @{term F} to describe the computation of @{term f}.
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    85
60533
1e7ccd864b62 isabelle update_cartouches;
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\<close>
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    87
49351
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lemma horner_bounds:
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    89
  fixes F :: "nat \<Rightarrow> nat" and G :: "nat \<Rightarrow> nat \<Rightarrow> nat"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
    90
  assumes "0 \<le> real_of_float x" and f_Suc: "\<And>n. f (Suc n) = G ((F ^^ n) s) (f n)"
49351
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parents: 47621
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    91
    and lb_0: "\<And> i k x. lb 0 i k x = 0"
58985
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immler
parents: 58982
diff changeset
    92
    and lb_Suc: "\<And> n i k x. lb (Suc n) i k x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    93
        (lapprox_rat prec 1 k)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    94
        (- float_round_up prec (x * (ub n (F i) (G i k) x)))"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
    95
    and ub_0: "\<And> i k x. ub 0 i k x = 0"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    96
    and ub_Suc: "\<And> n i k x. ub (Suc n) i k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    97
        (rapprox_rat prec 1 k)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    98
        (- float_round_down prec (x * (lb n (F i) (G i k) x)))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
    99
  shows "(lb n ((F ^^ j') s) (f j') x) \<le> (\<Sum>j=0..<n. (- 1) ^ j * (1 / (f (j' + j))) * (x ^ j))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   100
      (is "?lb")
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   101
    and "(\<Sum>j=0..<n. (- 1) ^ j * (1 / (f (j' + j))) * (x ^ j)) \<le> (ub n ((F ^^ j') s) (f j') x)"
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immler
parents: 58982
diff changeset
   102
      (is "?ub")
29805
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hoelzl
parents:
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   103
proof -
31809
hoelzl
parents: 31790
diff changeset
   104
  have "?lb  \<and> ?ub"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   105
    using horner_bounds'[where lb=lb, OF \<open>0 \<le> real_of_float x\<close> f_Suc lb_0 lb_Suc ub_0 ub_Suc]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   106
    unfolding horner_schema[where f=f, OF f_Suc] by simp
29805
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hoelzl
parents:
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   107
  thus "?lb" and "?ub" by auto
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parents:
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   108
qed
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hoelzl
parents:
diff changeset
   109
49351
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parents: 47621
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   110
lemma horner_bounds_nonpos:
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
   111
  fixes F :: "nat \<Rightarrow> nat" and G :: "nat \<Rightarrow> nat \<Rightarrow> nat"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   112
  assumes "real_of_float x \<le> 0" and f_Suc: "\<And>n. f (Suc n) = G ((F ^^ n) s) (f n)"
49351
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wenzelm
parents: 47621
diff changeset
   113
    and lb_0: "\<And> i k x. lb 0 i k x = 0"
58985
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immler
parents: 58982
diff changeset
   114
    and lb_Suc: "\<And> n i k x. lb (Suc n) i k x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   115
        (lapprox_rat prec 1 k)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   116
        (float_round_down prec (x * (ub n (F i) (G i k) x)))"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
   117
    and ub_0: "\<And> i k x. ub 0 i k x = 0"
58985
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immler
parents: 58982
diff changeset
   118
    and ub_Suc: "\<And> n i k x. ub (Suc n) i k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   119
        (rapprox_rat prec 1 k)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   120
        (float_round_up prec (x * (lb n (F i) (G i k) x)))"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   121
  shows "(lb n ((F ^^ j') s) (f j') x) \<le> (\<Sum>j=0..<n. (1 / (f (j' + j))) * real_of_float x ^ j)" (is "?lb")
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   122
    and "(\<Sum>j=0..<n. (1 / (f (j' + j))) * real_of_float x ^ j) \<le> (ub n ((F ^^ j') s) (f j') x)" (is "?ub")
29805
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hoelzl
parents:
diff changeset
   123
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   124
  have diff_mult_minus: "x - y * z = x + - y * z" for x y z :: float by simp
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   125
  have sum_eq: "(\<Sum>j=0..<n. (1 / (f (j' + j))) * real_of_float x ^ j) =
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   126
    (\<Sum>j = 0..<n. (- 1) ^ j * (1 / (f (j' + j))) * real_of_float (- x) ^ j)"
47599
400b158f1589 replace the float datatype by a type with unique representation
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    by (auto simp add: field_simps power_mult_distrib[symmetric])
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  have "0 \<le> real_of_float (-x)" using assms by auto
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  from horner_bounds[where G=G and F=F and f=f and s=s and prec=prec
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    and lb="\<lambda> n i k x. lb n i k (-x)" and ub="\<lambda> n i k x. ub n i k (-x)",
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    unfolded lb_Suc ub_Suc diff_mult_minus,
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    OF this f_Suc lb_0 _ ub_0 _]
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  show "?lb" and "?ub" unfolding minus_minus sum_eq
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    by (auto simp: minus_float_round_up_eq minus_float_round_down_eq)
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qed
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subsection \<open>Selectors for next even or odd number\<close>
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text \<open>
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The horner scheme computes alternating series. To get the upper and lower bounds we need to
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guarantee to access a even or odd member. To do this we use @{term get_odd} and @{term get_even}.
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\<close>
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definition get_odd :: "nat \<Rightarrow> nat" where
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  "get_odd n = (if odd n then n else (Suc n))"
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definition get_even :: "nat \<Rightarrow> nat" where
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  "get_even n = (if even n then n else (Suc n))"
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lemma get_odd[simp]: "odd (get_odd n)"
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  unfolding get_odd_def by (cases "odd n") auto
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lemma get_even[simp]: "even (get_even n)"
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  unfolding get_even_def by (cases "even n") auto
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lemma get_odd_ex: "\<exists> k. Suc k = get_odd n \<and> odd (Suc k)"
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  by (auto simp: get_odd_def odd_pos intro!: exI[of _ "n - 1"])
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lemma get_even_double: "\<exists>i. get_even n = 2 * i"
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  using get_even by (blast elim: evenE)
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lemma get_odd_double: "\<exists>i. get_odd n = 2 * i + 1"
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  using get_odd by (blast elim: oddE)
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section "Power function"
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definition float_power_bnds :: "nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float * float" where
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"float_power_bnds prec n l u =
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  (if 0 < l then (power_down_fl prec l n, power_up_fl prec u n)
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  else if odd n then
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    (- power_up_fl prec \<bar>l\<bar> n,
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      if u < 0 then - power_down_fl prec \<bar>u\<bar> n else power_up_fl prec u n)
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  else if u < 0 then (power_down_fl prec \<bar>u\<bar> n, power_up_fl prec \<bar>l\<bar> n)
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  else (0, power_up_fl prec (max \<bar>l\<bar> \<bar>u\<bar>) n))"
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lemma le_minus_power_downI: "0 \<le> x \<Longrightarrow> x ^ n \<le> - a \<Longrightarrow> a \<le> - power_down prec x n"
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  by (subst le_minus_iff) (auto intro: power_down_le power_mono_odd)
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lemma float_power_bnds:
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  "(l1, u1) = float_power_bnds prec n l u \<Longrightarrow> x \<in> {l .. u} \<Longrightarrow> (x::real) ^ n \<in> {l1..u1}"
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  by (auto
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    simp: float_power_bnds_def max_def real_power_up_fl real_power_down_fl minus_le_iff
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    split: if_split_asm
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    intro!: power_up_le power_down_le le_minus_power_downI
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    intro: power_mono_odd power_mono power_mono_even zero_le_even_power)
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lemma bnds_power:
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  "\<forall>(x::real) l u. (l1, u1) = float_power_bnds prec n l u \<and> x \<in> {l .. u} \<longrightarrow>
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    l1 \<le> x ^ n \<and> x ^ n \<le> u1"
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  using float_power_bnds by auto
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section \<open>Approximation utility functions\<close>
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definition bnds_mult :: "nat \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<times> float" where
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  "bnds_mult prec a1 a2 b1 b2 =
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      (float_plus_down prec (nprt a1 * pprt b2)
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          (float_plus_down prec (nprt a2 * nprt b2)
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            (float_plus_down prec (pprt a1 * pprt b1) (pprt a2 * nprt b1))),
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        float_plus_up prec (pprt a2 * pprt b2)
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            (float_plus_up prec (pprt a1 * nprt b2)
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              (float_plus_up prec (nprt a2 * pprt b1) (nprt a1 * nprt b1))))"
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lemma bnds_mult:
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  fixes prec :: nat and a1 aa2 b1 b2 :: float
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  assumes "(l, u) = bnds_mult prec a1 a2 b1 b2"
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  assumes "a \<in> {real_of_float a1..real_of_float a2}"
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  assumes "b \<in> {real_of_float b1..real_of_float b2}"
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  shows   "a * b \<in> {real_of_float l..real_of_float u}"
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proof -
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  from assms have "real_of_float l \<le> a * b" 
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    by (intro order.trans[OF _ mult_ge_prts[of a1 a a2 b1 b b2]])
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       (auto simp: bnds_mult_def intro!: float_plus_down_le)
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  moreover from assms have "real_of_float u \<ge> a * b" 
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    by (intro order.trans[OF mult_le_prts[of a1 a a2 b1 b b2]])
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       (auto simp: bnds_mult_def intro!: float_plus_up_le)
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  ultimately show ?thesis by simp
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qed
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definition map_bnds :: "(nat \<Rightarrow> float \<Rightarrow> float) \<Rightarrow> (nat \<Rightarrow> float \<Rightarrow> float) \<Rightarrow>
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                           nat \<Rightarrow> (float \<times> float) \<Rightarrow> (float \<times> float)" where
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  "map_bnds lb ub prec = (\<lambda>(l,u). (lb prec l, ub prec u))"
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lemma map_bnds:
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  assumes "(lf, uf) = map_bnds lb ub prec (l, u)"
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  assumes "mono f"
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  assumes "x \<in> {real_of_float l..real_of_float u}"
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  assumes "real_of_float (lb prec l) \<le> f (real_of_float l)"
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  assumes "real_of_float (ub prec u) \<ge> f (real_of_float u)"
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  shows   "f x \<in> {real_of_float lf..real_of_float uf}"
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proof -
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  from assms have "real_of_float lf = real_of_float (lb prec l)"
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    by (simp add: map_bnds_def)
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  also have "real_of_float (lb prec l) \<le> f (real_of_float l)"  by fact
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  also from assms have "\<dots> \<le> f x"
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    by (intro monoD[OF \<open>mono f\<close>]) auto
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  finally have lf: "real_of_float lf \<le> f x" .
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  from assms have "f x \<le> f (real_of_float u)"
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    by (intro monoD[OF \<open>mono f\<close>]) auto
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  also have "\<dots> \<le> real_of_float (ub prec u)" by fact
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  also from assms have "\<dots> = real_of_float uf"
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    by (simp add: map_bnds_def)
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  finally have uf: "f x \<le> real_of_float uf" .
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  from lf uf show ?thesis by simp
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qed
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section "Square root"
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text \<open>
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The square root computation is implemented as newton iteration. As first first step we use the
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nearest power of two greater than the square root.
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\<close>
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fun sqrt_iteration :: "nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float" where
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"sqrt_iteration prec 0 x = Float 1 ((bitlen \<bar>mantissa x\<bar> + exponent x) div 2 + 1)" |
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"sqrt_iteration prec (Suc m) x = (let y = sqrt_iteration prec m x
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bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   261
                                  in Float 1 (- 1) * float_plus_up prec y (float_divr prec x y))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   262
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   263
lemma compute_sqrt_iteration_base[code]:
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   264
  shows "sqrt_iteration prec n (Float m e) =
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   265
    (if n = 0 then Float 1 ((if m = 0 then 0 else bitlen \<bar>m\<bar> + e) div 2 + 1)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   266
    else (let y = sqrt_iteration prec (n - 1) (Float m e) in
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   267
      Float 1 (- 1) * float_plus_up prec y (float_divr prec (Float m e) y)))"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   268
  using bitlen_Float by (cases n) simp_all
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   269
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   270
function ub_sqrt lb_sqrt :: "nat \<Rightarrow> float \<Rightarrow> float" where
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   271
"ub_sqrt prec x = (if 0 < x then (sqrt_iteration prec prec x)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   272
              else if x < 0 then - lb_sqrt prec (- x)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   273
                            else 0)" |
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   274
"lb_sqrt prec x = (if 0 < x then (float_divl prec x (sqrt_iteration prec prec x))
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   275
              else if x < 0 then - ub_sqrt prec (- x)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   276
                            else 0)"
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   277
by pat_completeness auto
55414
eab03e9cee8a renamed '{prod,sum,bool,unit}_case' to 'case_...'
blanchet
parents: 55413
diff changeset
   278
termination by (relation "measure (\<lambda> v. let (prec, x) = case_sum id id v in (if x < 0 then 1 else 0))", auto)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   279
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   280
declare lb_sqrt.simps[simp del]
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   281
declare ub_sqrt.simps[simp del]
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   282
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   283
lemma sqrt_ub_pos_pos_1:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   284
  assumes "sqrt x < b" and "0 < b" and "0 < x"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   285
  shows "sqrt x < (b + x / b)/2"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   286
proof -
53077
a1b3784f8129 more symbols;
wenzelm
parents: 52286
diff changeset
   287
  from assms have "0 < (b - sqrt x)\<^sup>2 " by simp
a1b3784f8129 more symbols;
wenzelm
parents: 52286
diff changeset
   288
  also have "\<dots> = b\<^sup>2 - 2 * b * sqrt x + (sqrt x)\<^sup>2" by algebra
a1b3784f8129 more symbols;
wenzelm
parents: 52286
diff changeset
   289
  also have "\<dots> = b\<^sup>2 - 2 * b * sqrt x + x" using assms by simp
a1b3784f8129 more symbols;
wenzelm
parents: 52286
diff changeset
   290
  finally have "0 < b\<^sup>2 - 2 * b * sqrt x + x" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   291
  hence "0 < b / 2 - sqrt x + x / (2 * b)" using assms
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   292
    by (simp add: field_simps power2_eq_square)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   293
  thus ?thesis by (simp add: field_simps)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   294
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   295
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   296
lemma sqrt_iteration_bound:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   297
  assumes "0 < real_of_float x"
54269
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   298
  shows "sqrt x < sqrt_iteration prec n x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   299
proof (induct n)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   300
  case 0
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   301
  show ?case
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   302
  proof (cases x)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   303
    case (Float m e)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   304
    hence "0 < m"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   305
      using assms
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
   306
      apply (auto simp: sign_simps)
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
   307
      by (meson not_less powr_ge_pzero)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   308
    hence "0 < sqrt m" by auto
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   309
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   310
    have int_nat_bl: "(nat (bitlen m)) = bitlen m"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   311
      using bitlen_nonneg by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   312
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   313
    have "x = (m / 2^nat (bitlen m)) * 2 powr (e + (nat (bitlen m)))"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   314
      unfolding Float by (auto simp: powr_realpow[symmetric] field_simps powr_add)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   315
    also have "\<dots> < 1 * 2 powr (e + nat (bitlen m))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   316
    proof (rule mult_strict_right_mono, auto)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   317
      show "m < 2^nat (bitlen m)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   318
        using bitlen_bounds[OF \<open>0 < m\<close>, THEN conjunct2]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   319
        unfolding of_int_less_iff[of m, symmetric] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   320
    qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   321
    finally have "sqrt x < sqrt (2 powr (e + bitlen m))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   322
      unfolding int_nat_bl by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   323
    also have "\<dots> \<le> 2 powr ((e + bitlen m) div 2 + 1)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   324
    proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   325
      let ?E = "e + bitlen m"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   326
      have E_mod_pow: "2 powr (?E mod 2) < 4"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   327
      proof (cases "?E mod 2 = 1")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   328
        case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   329
        thus ?thesis by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   330
      next
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   331
        case False
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   332
        have "0 \<le> ?E mod 2" by auto
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   333
        have "?E mod 2 < 2" by auto
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   334
        from this[THEN zless_imp_add1_zle]
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   335
        have "?E mod 2 \<le> 0" using False by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   336
        from xt1(5)[OF \<open>0 \<le> ?E mod 2\<close> this]
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   337
        show ?thesis by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   338
      qed
56889
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56813
diff changeset
   339
      hence "sqrt (2 powr (?E mod 2)) < sqrt (2 * 2)"
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56813
diff changeset
   340
        by (auto simp del: real_sqrt_four)
48a745e1bde7 avoid the Complex constructor, use the more natural Re/Im view; moved csqrt to Complex.
hoelzl
parents: 56813
diff changeset
   341
      hence E_mod_pow: "sqrt (2 powr (?E mod 2)) < 2" by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   342
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   343
      have E_eq: "2 powr ?E = 2 powr (?E div 2 + ?E div 2 + ?E mod 2)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   344
        by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   345
      have "sqrt (2 powr ?E) = sqrt (2 powr (?E div 2) * 2 powr (?E div 2) * 2 powr (?E mod 2))"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   346
        unfolding E_eq unfolding powr_add[symmetric] by (metis of_int_add)
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   347
      also have "\<dots> = 2 powr (?E div 2) * sqrt (2 powr (?E mod 2))"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   348
        unfolding real_sqrt_mult[of _ "2 powr (?E mod 2)"] real_sqrt_abs2 by auto
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   349
      also have "\<dots> < 2 powr (?E div 2) * 2 powr 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   350
        by (rule mult_strict_left_mono) (auto intro: E_mod_pow)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   351
      also have "\<dots> = 2 powr (?E div 2 + 1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   352
        unfolding add.commute[of _ 1] powr_add[symmetric] by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   353
      finally show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   354
    qed
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   355
    finally show ?thesis using \<open>0 < m\<close>
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   356
      unfolding Float
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
   357
      by (subst compute_sqrt_iteration_base) (simp add: ac_simps)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   358
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   359
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   360
  case (Suc n)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   361
  let ?b = "sqrt_iteration prec n x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   362
  have "0 < sqrt x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   363
    using \<open>0 < real_of_float x\<close> by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   364
  also have "\<dots> < real_of_float ?b"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   365
    using Suc .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   366
  finally have "sqrt x < (?b + x / ?b)/2"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   367
    using sqrt_ub_pos_pos_1[OF Suc _ \<open>0 < real_of_float x\<close>] by auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   368
  also have "\<dots> \<le> (?b + (float_divr prec x ?b))/2"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   369
    by (rule divide_right_mono, auto simp add: float_divr)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   370
  also have "\<dots> = (Float 1 (- 1)) * (?b + (float_divr prec x ?b))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   371
    by simp
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   372
  also have "\<dots> \<le> (Float 1 (- 1)) * (float_plus_up prec ?b (float_divr prec x ?b))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   373
    by (auto simp add: algebra_simps float_plus_up_le)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   374
  finally show ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   375
    unfolding sqrt_iteration.simps Let_def distrib_left .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   376
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   377
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   378
lemma sqrt_iteration_lower_bound:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   379
  assumes "0 < real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   380
  shows "0 < real_of_float (sqrt_iteration prec n x)" (is "0 < ?sqrt")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   381
proof -
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   382
  have "0 < sqrt x" using assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   383
  also have "\<dots> < ?sqrt" using sqrt_iteration_bound[OF assms] .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   384
  finally show ?thesis .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   385
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   386
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   387
lemma lb_sqrt_lower_bound:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   388
  assumes "0 \<le> real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   389
  shows "0 \<le> real_of_float (lb_sqrt prec x)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   390
proof (cases "0 < x")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   391
  case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   392
  hence "0 < real_of_float x" and "0 \<le> x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   393
    using \<open>0 \<le> real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   394
  hence "0 < sqrt_iteration prec prec x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   395
    using sqrt_iteration_lower_bound by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   396
  hence "0 \<le> real_of_float (float_divl prec x (sqrt_iteration prec prec x))"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   397
    using float_divl_lower_bound[OF \<open>0 \<le> x\<close>] unfolding less_eq_float_def by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   398
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   399
    unfolding lb_sqrt.simps using True by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   400
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   401
  case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   402
  with \<open>0 \<le> real_of_float x\<close> have "real_of_float x = 0" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   403
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   404
    unfolding lb_sqrt.simps by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   405
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   406
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
   407
lemma bnds_sqrt': "sqrt x \<in> {(lb_sqrt prec x) .. (ub_sqrt prec x)}"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   408
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   409
  have lb: "lb_sqrt prec x \<le> sqrt x" if "0 < x" for x :: float
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   410
  proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   411
    from that have "0 < real_of_float x" and "0 \<le> real_of_float x" by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   412
    hence sqrt_gt0: "0 < sqrt x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   413
    hence sqrt_ub: "sqrt x < sqrt_iteration prec prec x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   414
      using sqrt_iteration_bound by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   415
    have "(float_divl prec x (sqrt_iteration prec prec x)) \<le>
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   416
          x / (sqrt_iteration prec prec x)" by (rule float_divl)
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   417
    also have "\<dots> < x / sqrt x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   418
      by (rule divide_strict_left_mono[OF sqrt_ub \<open>0 < real_of_float x\<close>
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   419
               mult_pos_pos[OF order_less_trans[OF sqrt_gt0 sqrt_ub] sqrt_gt0]])
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   420
    also have "\<dots> = sqrt x"
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   421
      unfolding inverse_eq_iff_eq[of _ "sqrt x", symmetric]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   422
                sqrt_divide_self_eq[OF \<open>0 \<le> real_of_float x\<close>, symmetric] by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   423
    finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   424
      unfolding lb_sqrt.simps if_P[OF \<open>0 < x\<close>] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   425
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   426
  have ub: "sqrt x \<le> ub_sqrt prec x" if "0 < x" for x :: float
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   427
  proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   428
    from that have "0 < real_of_float x" by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   429
    hence "0 < sqrt x" by auto
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   430
    hence "sqrt x < sqrt_iteration prec prec x"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   431
      using sqrt_iteration_bound by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   432
    then show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   433
      unfolding ub_sqrt.simps if_P[OF \<open>0 < x\<close>] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   434
  qed
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   435
  show ?thesis
54269
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   436
    using lb[of "-x"] ub[of "-x"] lb[of x] ub[of x]
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   437
    by (auto simp add: lb_sqrt.simps ub_sqrt.simps real_sqrt_minus)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   438
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   439
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   440
lemma bnds_sqrt: "\<forall>(x::real) lx ux.
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   441
  (l, u) = (lb_sqrt prec lx, ub_sqrt prec ux) \<and> x \<in> {lx .. ux} \<longrightarrow> l \<le> sqrt x \<and> sqrt x \<le> u"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   442
proof ((rule allI) +, rule impI, erule conjE, rule conjI)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   443
  fix x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   444
  fix lx ux
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   445
  assume "(l, u) = (lb_sqrt prec lx, ub_sqrt prec ux)"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   446
    and x: "x \<in> {lx .. ux}"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   447
  hence l: "l = lb_sqrt prec lx " and u: "u = ub_sqrt prec ux" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   448
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   449
  have "sqrt lx \<le> sqrt x" using x by auto
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   450
  from order_trans[OF _ this]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   451
  show "l \<le> sqrt x" unfolding l using bnds_sqrt'[of lx prec] by auto
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   452
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   453
  have "sqrt x \<le> sqrt ux" using x by auto
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   454
  from order_trans[OF this]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   455
  show "sqrt x \<le> u" unfolding u using bnds_sqrt'[of ux prec] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   456
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   457
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   458
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   459
section "Arcus tangens and \<pi>"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   460
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   461
subsection "Compute arcus tangens series"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   462
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   463
text \<open>
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   464
As first step we implement the computation of the arcus tangens series. This is only valid in the range
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   465
@{term "{-1 :: real .. 1}"}. This is used to compute \<pi> and then the entire arcus tangens.
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   466
\<close>
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   467
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   468
fun ub_arctan_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   469
and lb_arctan_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   470
  "ub_arctan_horner prec 0 k x = 0"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   471
| "ub_arctan_horner prec (Suc n) k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   472
      (rapprox_rat prec 1 k) (- float_round_down prec (x * (lb_arctan_horner prec n (k + 2) x)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   473
| "lb_arctan_horner prec 0 k x = 0"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   474
| "lb_arctan_horner prec (Suc n) k x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   475
      (lapprox_rat prec 1 k) (- float_round_up prec (x * (ub_arctan_horner prec n (k + 2) x)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   476
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
   477
lemma arctan_0_1_bounds':
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   478
  assumes "0 \<le> real_of_float y" "real_of_float y \<le> 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   479
    and "even n"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   480
  shows "arctan (sqrt y) \<in>
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   481
      {(sqrt y * lb_arctan_horner prec n 1 y) .. (sqrt y * ub_arctan_horner prec (Suc n) 1 y)}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   482
proof -
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   483
  let ?c = "\<lambda>i. (- 1) ^ i * (1 / (i * 2 + (1::nat)) * sqrt y ^ (i * 2 + 1))"
54269
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   484
  let ?S = "\<lambda>n. \<Sum> i=0..<n. ?c i"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   485
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   486
  have "0 \<le> sqrt y" using assms by auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   487
  have "sqrt y \<le> 1" using assms by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   488
  from \<open>even n\<close> obtain m where "2 * m = n" by (blast elim: evenE)
31809
hoelzl
parents: 31790
diff changeset
   489
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   490
  have "arctan (sqrt y) \<in> { ?S n .. ?S (Suc n) }"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   491
  proof (cases "sqrt y = 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   492
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   493
    then show ?thesis by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   494
  next
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   495
    case False
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   496
    hence "0 < sqrt y" using \<open>0 \<le> sqrt y\<close> by auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   497
    hence prem: "0 < 1 / (0 * 2 + (1::nat)) * sqrt y ^ (0 * 2 + 1)" by auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   498
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   499
    have "\<bar> sqrt y \<bar> \<le> 1"  using \<open>0 \<le> sqrt y\<close> \<open>sqrt y \<le> 1\<close> by auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   500
    from mp[OF summable_Leibniz(2)[OF zeroseq_arctan_series[OF this]
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   501
      monoseq_arctan_series[OF this]] prem, THEN spec, of m, unfolded \<open>2 * m = n\<close>]
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   502
    show ?thesis unfolding arctan_series[OF \<open>\<bar> sqrt y \<bar> \<le> 1\<close>] Suc_eq_plus1 atLeast0LessThan .
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   503
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   504
  note arctan_bounds = this[unfolded atLeastAtMost_iff]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   505
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   506
  have F: "\<And>n. 2 * Suc n + 1 = 2 * n + 1 + 2" by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   507
31809
hoelzl
parents: 31790
diff changeset
   508
  note bounds = horner_bounds[where s=1 and f="\<lambda>i. 2 * i + 1" and j'=0
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   509
    and lb="\<lambda>n i k x. lb_arctan_horner prec n k x"
31809
hoelzl
parents: 31790
diff changeset
   510
    and ub="\<lambda>n i k x. ub_arctan_horner prec n k x",
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   511
    OF \<open>0 \<le> real_of_float y\<close> F lb_arctan_horner.simps ub_arctan_horner.simps]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   512
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   513
  have "(sqrt y * lb_arctan_horner prec n 1 y) \<le> arctan (sqrt y)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   514
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   515
    have "(sqrt y * lb_arctan_horner prec n 1 y) \<le> ?S n"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   516
      using bounds(1) \<open>0 \<le> sqrt y\<close>
63170
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   517
      apply (simp only: power_add power_one_right mult.assoc[symmetric] setsum_left_distrib[symmetric])
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   518
      apply (simp only: mult.commute[where 'a=real] mult.commute[of _ "2::nat"] power_mult)
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   519
      apply (auto intro!: mult_left_mono)
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   520
      done
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   521
    also have "\<dots> \<le> arctan (sqrt y)" using arctan_bounds ..
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   522
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   523
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   524
  moreover
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   525
  have "arctan (sqrt y) \<le> (sqrt y * ub_arctan_horner prec (Suc n) 1 y)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   526
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   527
    have "arctan (sqrt y) \<le> ?S (Suc n)" using arctan_bounds ..
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   528
    also have "\<dots> \<le> (sqrt y * ub_arctan_horner prec (Suc n) 1 y)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   529
      using bounds(2)[of "Suc n"] \<open>0 \<le> sqrt y\<close>
63170
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   530
      apply (simp only: power_add power_one_right mult.assoc[symmetric] setsum_left_distrib[symmetric])
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   531
      apply (simp only: mult.commute[where 'a=real] mult.commute[of _ "2::nat"] power_mult)
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   532
      apply (auto intro!: mult_left_mono)
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
   533
      done
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   534
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   535
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   536
  ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   537
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   538
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   539
lemma arctan_0_1_bounds:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   540
  assumes "0 \<le> real_of_float y" "real_of_float y \<le> 1"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   541
  shows "arctan (sqrt y) \<in>
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   542
    {(sqrt y * lb_arctan_horner prec (get_even n) 1 y) ..
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   543
      (sqrt y * ub_arctan_horner prec (get_odd n) 1 y)}"
54269
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   544
  using
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   545
    arctan_0_1_bounds'[OF assms, of n prec]
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   546
    arctan_0_1_bounds'[OF assms, of "n + 1" prec]
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
   547
    arctan_0_1_bounds'[OF assms, of "n - 1" prec]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   548
  by (auto simp: get_even_def get_odd_def odd_pos
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   549
    simp del: ub_arctan_horner.simps lb_arctan_horner.simps)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   550
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   551
lemma arctan_lower_bound:
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   552
  assumes "0 \<le> x"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   553
  shows "x / (1 + x\<^sup>2) \<le> arctan x" (is "?l x \<le> _")
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   554
proof -
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   555
  have "?l x - arctan x \<le> ?l 0 - arctan 0"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   556
    using assms
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   557
    by (intro DERIV_nonpos_imp_nonincreasing[where f="\<lambda>x. ?l x - arctan x"])
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   558
      (auto intro!: derivative_eq_intros simp: add_nonneg_eq_0_iff field_simps)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   559
  thus ?thesis by simp
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   560
qed
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   561
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   562
lemma arctan_divide_mono: "0 < x \<Longrightarrow> x \<le> y \<Longrightarrow> arctan y / y \<le> arctan x / x"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   563
  by (rule DERIV_nonpos_imp_nonincreasing[where f="\<lambda>x. arctan x / x"])
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   564
    (auto intro!: derivative_eq_intros divide_nonpos_nonneg
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   565
      simp: inverse_eq_divide arctan_lower_bound)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   566
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   567
lemma arctan_mult_mono: "0 \<le> x \<Longrightarrow> x \<le> y \<Longrightarrow> x * arctan y \<le> y * arctan x"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   568
  using arctan_divide_mono[of x y] by (cases "x = 0") (simp_all add: field_simps)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   569
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   570
lemma arctan_mult_le:
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   571
  assumes "0 \<le> x" "x \<le> y" "y * z \<le> arctan y"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   572
  shows "x * z \<le> arctan x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   573
proof (cases "x = 0")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   574
  case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   575
  then show ?thesis by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   576
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   577
  case False
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   578
  with assms have "z \<le> arctan y / y" by (simp add: field_simps)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   579
  also have "\<dots> \<le> arctan x / x" using assms \<open>x \<noteq> 0\<close> by (auto intro!: arctan_divide_mono)
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   580
  finally show ?thesis using assms \<open>x \<noteq> 0\<close> by (simp add: field_simps)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   581
qed
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   582
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   583
lemma arctan_le_mult:
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   584
  assumes "0 < x" "x \<le> y" "arctan x \<le> x * z"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   585
  shows "arctan y \<le> y * z"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   586
proof -
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   587
  from assms have "arctan y / y \<le> arctan x / x" by (auto intro!: arctan_divide_mono)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   588
  also have "\<dots> \<le> z" using assms by (auto simp: field_simps)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   589
  finally show ?thesis using assms by (simp add: field_simps)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   590
qed
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   591
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   592
lemma arctan_0_1_bounds_le:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   593
  assumes "0 \<le> x" "x \<le> 1" "0 < real_of_float xl" "real_of_float xl \<le> x * x" "x * x \<le> real_of_float xu" "real_of_float xu \<le> 1"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   594
  shows "arctan x \<in>
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   595
      {x * lb_arctan_horner p1 (get_even n) 1 xu .. x * ub_arctan_horner p2 (get_odd n) 1 xl}"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   596
proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   597
  from assms have "real_of_float xl \<le> 1" "sqrt (real_of_float xl) \<le> x" "x \<le> sqrt (real_of_float xu)" "0 \<le> real_of_float xu"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   598
    "0 \<le> real_of_float xl" "0 < sqrt (real_of_float xl)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   599
    by (auto intro!: real_le_rsqrt real_le_lsqrt simp: power2_eq_square)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   600
  from arctan_0_1_bounds[OF \<open>0 \<le> real_of_float xu\<close>  \<open>real_of_float xu \<le> 1\<close>]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   601
  have "sqrt (real_of_float xu) * real_of_float (lb_arctan_horner p1 (get_even n) 1 xu) \<le> arctan (sqrt (real_of_float xu))"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   602
    by simp
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   603
  from arctan_mult_le[OF \<open>0 \<le> x\<close> \<open>x \<le> sqrt _\<close>  this]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   604
  have "x * real_of_float (lb_arctan_horner p1 (get_even n) 1 xu) \<le> arctan x" .
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   605
  moreover
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   606
  from arctan_0_1_bounds[OF \<open>0 \<le> real_of_float xl\<close>  \<open>real_of_float xl \<le> 1\<close>]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   607
  have "arctan (sqrt (real_of_float xl)) \<le> sqrt (real_of_float xl) * real_of_float (ub_arctan_horner p2 (get_odd n) 1 xl)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   608
    by simp
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   609
  from arctan_le_mult[OF \<open>0 < sqrt xl\<close> \<open>sqrt xl \<le> x\<close> this]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   610
  have "arctan x \<le> x * real_of_float (ub_arctan_horner p2 (get_odd n) 1 xl)" .
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   611
  ultimately show ?thesis by simp
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   612
qed
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   613
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   614
lemma arctan_0_1_bounds_round:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   615
  assumes "0 \<le> real_of_float x" "real_of_float x \<le> 1"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   616
  shows "arctan x \<in>
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   617
      {real_of_float x * lb_arctan_horner p1 (get_even n) 1 (float_round_up (Suc p2) (x * x)) ..
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   618
        real_of_float x * ub_arctan_horner p3 (get_odd n) 1 (float_round_down (Suc p4) (x * x))}"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   619
  using assms
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   620
  apply (cases "x > 0")
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   621
   apply (intro arctan_0_1_bounds_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   622
   apply (auto simp: float_round_down.rep_eq float_round_up.rep_eq
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   623
    intro!: truncate_up_le1 mult_le_one truncate_down_le truncate_up_le truncate_down_pos
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   624
      mult_pos_pos)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   625
  done
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   626
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   627
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   628
subsection "Compute \<pi>"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   629
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   630
definition ub_pi :: "nat \<Rightarrow> float" where
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   631
  "ub_pi prec =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   632
    (let
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   633
      A = rapprox_rat prec 1 5 ;
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   634
      B = lapprox_rat prec 1 239
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   635
    in ((Float 1 2) * float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   636
      ((Float 1 2) * float_round_up prec (A * (ub_arctan_horner prec (get_odd (prec div 4 + 1)) 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   637
        (float_round_down (Suc prec) (A * A)))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   638
      (- float_round_down prec (B * (lb_arctan_horner prec (get_even (prec div 14 + 1)) 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   639
        (float_round_up (Suc prec) (B * B)))))))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   640
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   641
definition lb_pi :: "nat \<Rightarrow> float" where
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   642
  "lb_pi prec =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   643
    (let
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   644
      A = lapprox_rat prec 1 5 ;
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   645
      B = rapprox_rat prec 1 239
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   646
    in ((Float 1 2) * float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   647
      ((Float 1 2) * float_round_down prec (A * (lb_arctan_horner prec (get_even (prec div 4 + 1)) 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   648
        (float_round_up (Suc prec) (A * A)))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   649
      (- float_round_up prec (B * (ub_arctan_horner prec (get_odd (prec div 14 + 1)) 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   650
        (float_round_down (Suc prec) (B * B)))))))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   651
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   652
lemma pi_boundaries: "pi \<in> {(lb_pi n) .. (ub_pi n)}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   653
proof -
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   654
  have machin_pi: "pi = 4 * (4 * arctan (1 / 5) - arctan (1 / 239))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   655
    unfolding machin[symmetric] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   656
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   657
  {
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   658
    fix prec n :: nat
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   659
    fix k :: int
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   660
    assume "1 < k" hence "0 \<le> k" and "0 < k" and "1 \<le> k" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   661
    let ?k = "rapprox_rat prec 1 k"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   662
    let ?kl = "float_round_down (Suc prec) (?k * ?k)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   663
    have "1 div k = 0" using div_pos_pos_trivial[OF _ \<open>1 < k\<close>] by auto
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   664
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   665
    have "0 \<le> real_of_float ?k" by (rule order_trans[OF _ rapprox_rat]) (auto simp add: \<open>0 \<le> k\<close>)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   666
    have "real_of_float ?k \<le> 1"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   667
      by (auto simp add: \<open>0 < k\<close> \<open>1 \<le> k\<close> less_imp_le
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   668
        intro!: mult_le_one order_trans[OF _ rapprox_rat] rapprox_rat_le1)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   669
    have "1 / k \<le> ?k" using rapprox_rat[where x=1 and y=k] by auto
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   670
    hence "arctan (1 / k) \<le> arctan ?k" by (rule arctan_monotone')
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   671
    also have "\<dots> \<le> (?k * ub_arctan_horner prec (get_odd n) 1 ?kl)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   672
      using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float ?k\<close> \<open>real_of_float ?k \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   673
      by auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   674
    finally have "arctan (1 / k) \<le> ?k * ub_arctan_horner prec (get_odd n) 1 ?kl" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   675
  } note ub_arctan = this
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   676
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   677
  {
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   678
    fix prec n :: nat
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   679
    fix k :: int
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   680
    assume "1 < k" hence "0 \<le> k" and "0 < k" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   681
    let ?k = "lapprox_rat prec 1 k"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   682
    let ?ku = "float_round_up (Suc prec) (?k * ?k)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   683
    have "1 div k = 0" using div_pos_pos_trivial[OF _ \<open>1 < k\<close>] by auto
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   684
    have "1 / k \<le> 1" using \<open>1 < k\<close> by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   685
    have "0 \<le> real_of_float ?k" using lapprox_rat_nonneg[where x=1 and y=k, OF zero_le_one \<open>0 \<le> k\<close>]
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   686
      by (auto simp add: \<open>1 div k = 0\<close>)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   687
    have "0 \<le> real_of_float (?k * ?k)" by simp
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   688
    have "real_of_float ?k \<le> 1" using lapprox_rat by (rule order_trans, auto simp add: \<open>1 / k \<le> 1\<close>)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   689
    hence "real_of_float (?k * ?k) \<le> 1" using \<open>0 \<le> real_of_float ?k\<close> by (auto intro!: mult_le_one)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   690
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   691
    have "?k \<le> 1 / k" using lapprox_rat[where x=1 and y=k] by auto
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   692
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   693
    have "?k * lb_arctan_horner prec (get_even n) 1 ?ku \<le> arctan ?k"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   694
      using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float ?k\<close> \<open>real_of_float ?k \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   695
      by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   696
    also have "\<dots> \<le> arctan (1 / k)" using \<open>?k \<le> 1 / k\<close> by (rule arctan_monotone')
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   697
    finally have "?k * lb_arctan_horner prec (get_even n) 1 ?ku \<le> arctan (1 / k)" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   698
  } note lb_arctan = this
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   699
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   700
  have "pi \<le> ub_pi n "
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   701
    unfolding ub_pi_def machin_pi Let_def times_float.rep_eq Float_num
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   702
    using lb_arctan[of 239] ub_arctan[of 5] powr_realpow[of 2 2]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   703
    by (intro mult_left_mono float_plus_up_le float_plus_down_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   704
      (auto intro!: mult_left_mono float_round_down_le float_round_up_le diff_mono)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   705
  moreover have "lb_pi n \<le> pi"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   706
    unfolding lb_pi_def machin_pi Let_def times_float.rep_eq Float_num
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   707
    using lb_arctan[of 5] ub_arctan[of 239]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   708
    by (intro mult_left_mono float_plus_up_le float_plus_down_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   709
      (auto intro!: mult_left_mono float_round_down_le float_round_up_le diff_mono)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   710
  ultimately show ?thesis by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   711
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   712
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   713
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   714
subsection "Compute arcus tangens in the entire domain"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   715
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   716
function lb_arctan :: "nat \<Rightarrow> float \<Rightarrow> float" and ub_arctan :: "nat \<Rightarrow> float \<Rightarrow> float" where
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   717
  "lb_arctan prec x =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   718
    (let
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   719
      ub_horner = \<lambda> x. float_round_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   720
        (x *
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   721
          ub_arctan_horner prec (get_odd (prec div 4 + 1)) 1 (float_round_down (Suc prec) (x * x)));
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   722
      lb_horner = \<lambda> x. float_round_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   723
        (x *
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   724
          lb_arctan_horner prec (get_even (prec div 4 + 1)) 1 (float_round_up (Suc prec) (x * x)))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   725
    in
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   726
      if x < 0 then - ub_arctan prec (-x)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   727
      else if x \<le> Float 1 (- 1) then lb_horner x
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   728
      else if x \<le> Float 1 1 then
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   729
        Float 1 1 *
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   730
        lb_horner
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   731
          (float_divl prec x
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   732
            (float_plus_up prec 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   733
              (ub_sqrt prec (float_plus_up prec 1 (float_round_up prec (x * x))))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   734
      else let inv = float_divr prec 1 x in
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   735
        if inv > 1 then 0
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   736
        else float_plus_down prec (lb_pi prec * Float 1 (- 1)) ( - ub_horner inv))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   737
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   738
| "ub_arctan prec x =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   739
    (let
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   740
      lb_horner = \<lambda> x. float_round_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   741
        (x *
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   742
          lb_arctan_horner prec (get_even (prec div 4 + 1)) 1 (float_round_up (Suc prec) (x * x))) ;
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   743
      ub_horner = \<lambda> x. float_round_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   744
        (x *
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   745
          ub_arctan_horner prec (get_odd (prec div 4 + 1)) 1 (float_round_down (Suc prec) (x * x)))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   746
    in if x < 0 then - lb_arctan prec (-x)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   747
    else if x \<le> Float 1 (- 1) then ub_horner x
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   748
    else if x \<le> Float 1 1 then
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   749
      let y = float_divr prec x
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   750
        (float_plus_down
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   751
          (Suc prec) 1 (lb_sqrt prec (float_plus_down prec 1 (float_round_down prec (x * x)))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   752
      in if y > 1 then ub_pi prec * Float 1 (- 1) else Float 1 1 * ub_horner y
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   753
    else float_plus_up prec (ub_pi prec * Float 1 (- 1)) ( - lb_horner (float_divl prec 1 x)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   754
by pat_completeness auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   755
termination
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   756
by (relation "measure (\<lambda> v. let (prec, x) = case_sum id id v in (if x < 0 then 1 else 0))", auto)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   757
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   758
declare ub_arctan_horner.simps[simp del]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   759
declare lb_arctan_horner.simps[simp del]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   760
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   761
lemma lb_arctan_bound':
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   762
  assumes "0 \<le> real_of_float x"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   763
  shows "lb_arctan prec x \<le> arctan x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   764
proof -
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   765
  have "\<not> x < 0" and "0 \<le> x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   766
    using \<open>0 \<le> real_of_float x\<close> by (auto intro!: truncate_up_le )
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   767
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   768
  let "?ub_horner x" =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   769
      "x * ub_arctan_horner prec (get_odd (prec div 4 + 1)) 1 (float_round_down (Suc prec) (x * x))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   770
    and "?lb_horner x" =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   771
      "x * lb_arctan_horner prec (get_even (prec div 4 + 1)) 1 (float_round_up (Suc prec) (x * x))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   772
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   773
  show ?thesis
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
   774
  proof (cases "x \<le> Float 1 (- 1)")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   775
    case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   776
    hence "real_of_float x \<le> 1" by simp
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   777
    from arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float x\<close> \<open>real_of_float x \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   778
    show ?thesis
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   779
      unfolding lb_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>] if_P[OF True] using \<open>0 \<le> x\<close>
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   780
      by (auto intro!: float_round_down_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   781
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   782
    case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   783
    hence "0 < real_of_float x" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   784
    let ?R = "1 + sqrt (1 + real_of_float x * real_of_float x)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   785
    let ?sxx = "float_plus_up prec 1 (float_round_up prec (x * x))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   786
    let ?fR = "float_plus_up prec 1 (ub_sqrt prec ?sxx)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   787
    let ?DIV = "float_divl prec x ?fR"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   788
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   789
    have divisor_gt0: "0 < ?R" by (auto intro: add_pos_nonneg)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   790
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   791
    have "sqrt (1 + x*x) \<le> sqrt ?sxx"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   792
      by (auto simp: float_plus_up.rep_eq plus_up_def float_round_up.rep_eq intro!: truncate_up_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   793
    also have "\<dots> \<le> ub_sqrt prec ?sxx"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   794
      using bnds_sqrt'[of ?sxx prec] by auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   795
    finally
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   796
    have "sqrt (1 + x*x) \<le> ub_sqrt prec ?sxx" .
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   797
    hence "?R \<le> ?fR" by (auto simp: float_plus_up.rep_eq plus_up_def intro!: truncate_up_le)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   798
    hence "0 < ?fR" and "0 < real_of_float ?fR" using \<open>0 < ?R\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   799
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   800
    have monotone: "?DIV \<le> x / ?R"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   801
    proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   802
      have "?DIV \<le> real_of_float x / ?fR" by (rule float_divl)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   803
      also have "\<dots> \<le> x / ?R" by (rule divide_left_mono[OF \<open>?R \<le> ?fR\<close> \<open>0 \<le> real_of_float x\<close> mult_pos_pos[OF order_less_le_trans[OF divisor_gt0 \<open>?R \<le> real_of_float ?fR\<close>] divisor_gt0]])
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   804
      finally show ?thesis .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   805
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   806
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   807
    show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   808
    proof (cases "x \<le> Float 1 1")
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   809
      case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   810
      have "x \<le> sqrt (1 + x * x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   811
        using real_sqrt_sum_squares_ge2[where x=1, unfolded numeral_2_eq_2] by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   812
      also note \<open>\<dots> \<le> (ub_sqrt prec ?sxx)\<close>
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   813
      finally have "real_of_float x \<le> ?fR"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   814
        by (auto simp: float_plus_up.rep_eq plus_up_def intro!: truncate_up_le)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   815
      moreover have "?DIV \<le> real_of_float x / ?fR"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   816
        by (rule float_divl)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   817
      ultimately have "real_of_float ?DIV \<le> 1"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   818
        unfolding divide_le_eq_1_pos[OF \<open>0 < real_of_float ?fR\<close>, symmetric] by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   819
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   820
      have "0 \<le> real_of_float ?DIV"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   821
        using float_divl_lower_bound[OF \<open>0 \<le> x\<close>] \<open>0 < ?fR\<close>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   822
        unfolding less_eq_float_def by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   823
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   824
      from arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float (?DIV)\<close> \<open>real_of_float (?DIV) \<le> 1\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   825
      have "Float 1 1 * ?lb_horner ?DIV \<le> 2 * arctan ?DIV"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   826
        by simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   827
      also have "\<dots> \<le> 2 * arctan (x / ?R)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   828
        using arctan_monotone'[OF monotone] by (auto intro!: mult_left_mono arctan_monotone')
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   829
      also have "2 * arctan (x / ?R) = arctan x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   830
        using arctan_half[symmetric] unfolding numeral_2_eq_2 power_Suc2 power_0 mult_1_left .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   831
      finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   832
        unfolding lb_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   833
          if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_P[OF True]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   834
        by (auto simp: float_round_down.rep_eq
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   835
          intro!: order_trans[OF mult_left_mono[OF truncate_down]])
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   836
    next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   837
      case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   838
      hence "2 < real_of_float x" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   839
      hence "1 \<le> real_of_float x" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   840
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   841
      let "?invx" = "float_divr prec 1 x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   842
      have "0 \<le> arctan x" using arctan_monotone'[OF \<open>0 \<le> real_of_float x\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   843
        using arctan_tan[of 0, unfolded tan_zero] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   844
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   845
      show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   846
      proof (cases "1 < ?invx")
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   847
        case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   848
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   849
          unfolding lb_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   850
            if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_not_P[OF False] if_P[OF True]
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   851
          using \<open>0 \<le> arctan x\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   852
      next
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   853
        case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   854
        hence "real_of_float ?invx \<le> 1" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   855
        have "0 \<le> real_of_float ?invx"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   856
          by (rule order_trans[OF _ float_divr]) (auto simp add: \<open>0 \<le> real_of_float x\<close>)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   857
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   858
        have "1 / x \<noteq> 0" and "0 < 1 / x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   859
          using \<open>0 < real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   860
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   861
        have "arctan (1 / x) \<le> arctan ?invx"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   862
          unfolding one_float.rep_eq[symmetric] by (rule arctan_monotone', rule float_divr)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   863
        also have "\<dots> \<le> ?ub_horner ?invx"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   864
          using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float ?invx\<close> \<open>real_of_float ?invx \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   865
          by (auto intro!: float_round_up_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   866
        also note float_round_up
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   867
        finally have "pi / 2 - float_round_up prec (?ub_horner ?invx) \<le> arctan x"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   868
          using \<open>0 \<le> arctan x\<close> arctan_inverse[OF \<open>1 / x \<noteq> 0\<close>]
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61610
diff changeset
   869
          unfolding sgn_pos[OF \<open>0 < 1 / real_of_float x\<close>] le_diff_eq by auto
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   870
        moreover
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
   871
        have "lb_pi prec * Float 1 (- 1) \<le> pi / 2"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   872
          unfolding Float_num times_divide_eq_right mult_1_left using pi_boundaries by simp
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   873
        ultimately
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   874
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   875
          unfolding lb_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   876
            if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_not_P[OF \<open>\<not> x \<le> Float 1 1\<close>] if_not_P[OF False]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   877
          by (auto intro!: float_plus_down_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   878
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   879
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   880
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   881
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   882
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   883
lemma ub_arctan_bound':
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   884
  assumes "0 \<le> real_of_float x"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   885
  shows "arctan x \<le> ub_arctan prec x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   886
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   887
  have "\<not> x < 0" and "0 \<le> x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   888
    using \<open>0 \<le> real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   889
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   890
  let "?ub_horner x" =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   891
    "float_round_up prec (x * ub_arctan_horner prec (get_odd (prec div 4 + 1)) 1 (float_round_down (Suc prec) (x * x)))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   892
  let "?lb_horner x" =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   893
    "float_round_down prec (x * lb_arctan_horner prec (get_even (prec div 4 + 1)) 1 (float_round_up (Suc prec) (x * x)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   894
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   895
  show ?thesis
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
   896
  proof (cases "x \<le> Float 1 (- 1)")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   897
    case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   898
    hence "real_of_float x \<le> 1" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   899
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   900
      unfolding ub_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>] if_P[OF True]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   901
      using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float x\<close> \<open>real_of_float x \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   902
      by (auto intro!: float_round_up_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   903
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   904
    case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   905
    hence "0 < real_of_float x" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   906
    let ?R = "1 + sqrt (1 + real_of_float x * real_of_float x)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   907
    let ?sxx = "float_plus_down prec 1 (float_round_down prec (x * x))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   908
    let ?fR = "float_plus_down (Suc prec) 1 (lb_sqrt prec ?sxx)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   909
    let ?DIV = "float_divr prec x ?fR"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   910
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   911
    have sqr_ge0: "0 \<le> 1 + real_of_float x * real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   912
      using sum_power2_ge_zero[of 1 "real_of_float x", unfolded numeral_2_eq_2] by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   913
    hence "0 \<le> real_of_float (1 + x*x)" by auto
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
   914
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   915
    hence divisor_gt0: "0 < ?R" by (auto intro: add_pos_nonneg)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   916
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   917
    have "lb_sqrt prec ?sxx \<le> sqrt ?sxx"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   918
      using bnds_sqrt'[of ?sxx] by auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   919
    also have "\<dots> \<le> sqrt (1 + x*x)"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   920
      by (auto simp: float_plus_down.rep_eq plus_down_def float_round_down.rep_eq truncate_down_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   921
    finally have "lb_sqrt prec ?sxx \<le> sqrt (1 + x*x)" .
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   922
    hence "?fR \<le> ?R"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   923
      by (auto simp: float_plus_down.rep_eq plus_down_def truncate_down_le)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   924
    have "0 < real_of_float ?fR"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   925
      by (auto simp: float_plus_down.rep_eq plus_down_def float_round_down.rep_eq
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   926
        intro!: truncate_down_ge1 lb_sqrt_lower_bound order_less_le_trans[OF zero_less_one]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   927
        truncate_down_nonneg add_nonneg_nonneg)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   928
    have monotone: "x / ?R \<le> (float_divr prec x ?fR)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   929
    proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   930
      from divide_left_mono[OF \<open>?fR \<le> ?R\<close> \<open>0 \<le> real_of_float x\<close> mult_pos_pos[OF divisor_gt0 \<open>0 < real_of_float ?fR\<close>]]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   931
      have "x / ?R \<le> x / ?fR" .
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   932
      also have "\<dots> \<le> ?DIV" by (rule float_divr)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   933
      finally show ?thesis .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   934
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   935
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   936
    show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   937
    proof (cases "x \<le> Float 1 1")
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   938
      case True
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   939
      show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   940
      proof (cases "?DIV > 1")
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   941
        case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   942
        have "pi / 2 \<le> ub_pi prec * Float 1 (- 1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   943
          unfolding Float_num times_divide_eq_right mult_1_left using pi_boundaries by auto
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   944
        from order_less_le_trans[OF arctan_ubound this, THEN less_imp_le]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   945
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   946
          unfolding ub_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   947
            if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_P[OF \<open>x \<le> Float 1 1\<close>] if_P[OF True] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   948
      next
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   949
        case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   950
        hence "real_of_float ?DIV \<le> 1" by auto
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   951
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   952
        have "0 \<le> x / ?R"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   953
          using \<open>0 \<le> real_of_float x\<close> \<open>0 < ?R\<close> unfolding zero_le_divide_iff by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   954
        hence "0 \<le> real_of_float ?DIV"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   955
          using monotone by (rule order_trans)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   956
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   957
        have "arctan x = 2 * arctan (x / ?R)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   958
          using arctan_half unfolding numeral_2_eq_2 power_Suc2 power_0 mult_1_left .
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   959
        also have "\<dots> \<le> 2 * arctan (?DIV)"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
   960
          using arctan_monotone'[OF monotone] by (auto intro!: mult_left_mono)
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
   961
        also have "\<dots> \<le> (Float 1 1 * ?ub_horner ?DIV)" unfolding Float_num
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   962
          using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float ?DIV\<close> \<open>real_of_float ?DIV \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   963
          by (auto intro!: float_round_up_le)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   964
        finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   965
          unfolding ub_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   966
            if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_P[OF \<open>x \<le> Float 1 1\<close>] if_not_P[OF False] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   967
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   968
    next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   969
      case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   970
      hence "2 < real_of_float x" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   971
      hence "1 \<le> real_of_float x" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   972
      hence "0 < real_of_float x" by auto
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
   973
      hence "0 < x" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   974
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   975
      let "?invx" = "float_divl prec 1 x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   976
      have "0 \<le> arctan x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   977
        using arctan_monotone'[OF \<open>0 \<le> real_of_float x\<close>] and arctan_tan[of 0, unfolded tan_zero] by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   978
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   979
      have "real_of_float ?invx \<le> 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   980
        unfolding less_float_def
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   981
        by (rule order_trans[OF float_divl])
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   982
          (auto simp add: \<open>1 \<le> real_of_float x\<close> divide_le_eq_1_pos[OF \<open>0 < real_of_float x\<close>])
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   983
      have "0 \<le> real_of_float ?invx"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   984
        using \<open>0 < x\<close> by (intro float_divl_lower_bound) auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   985
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   986
      have "1 / x \<noteq> 0" and "0 < 1 / x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   987
        using \<open>0 < real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   988
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   989
      have "(?lb_horner ?invx) \<le> arctan (?invx)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
   990
        using arctan_0_1_bounds_round[OF \<open>0 \<le> real_of_float ?invx\<close> \<open>real_of_float ?invx \<le> 1\<close>]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
   991
        by (auto intro!: float_round_down_le)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   992
      also have "\<dots> \<le> arctan (1 / x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   993
        unfolding one_float.rep_eq[symmetric] by (rule arctan_monotone') (rule float_divl)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
   994
      finally have "arctan x \<le> pi / 2 - (?lb_horner ?invx)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
   995
        using \<open>0 \<le> arctan x\<close> arctan_inverse[OF \<open>1 / x \<noteq> 0\<close>]
61649
268d88ec9087 Tweaks for "real": Removal of [iff] status for some lemmas, adding [simp] for others. Plus fixes.
paulson <lp15@cam.ac.uk>
parents: 61610
diff changeset
   996
        unfolding sgn_pos[OF \<open>0 < 1 / x\<close>] le_diff_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
   997
      moreover
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   998
      have "pi / 2 \<le> ub_pi prec * Float 1 (- 1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
   999
        unfolding Float_num times_divide_eq_right mult_1_right
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1000
        using pi_boundaries by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1001
      ultimately
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1002
      show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1003
        unfolding ub_arctan.simps Let_def if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1004
          if_not_P[OF \<open>\<not> x \<le> Float 1 (- 1)\<close>] if_not_P[OF False]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1005
        by (auto intro!: float_round_up_le float_plus_up_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1006
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1007
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1008
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1009
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1010
lemma arctan_boundaries: "arctan x \<in> {(lb_arctan prec x) .. (ub_arctan prec x)}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1011
proof (cases "0 \<le> x")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1012
  case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1013
  hence "0 \<le> real_of_float x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1014
  show ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1015
    using ub_arctan_bound'[OF \<open>0 \<le> real_of_float x\<close>] lb_arctan_bound'[OF \<open>0 \<le> real_of_float x\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1016
    unfolding atLeastAtMost_iff by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1017
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1018
  case False
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1019
  let ?mx = "-x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1020
  from False have "x < 0" and "0 \<le> real_of_float ?mx"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1021
    by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1022
  hence bounds: "lb_arctan prec ?mx \<le> arctan ?mx \<and> arctan ?mx \<le> ub_arctan prec ?mx"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1023
    using ub_arctan_bound'[OF \<open>0 \<le> real_of_float ?mx\<close>] lb_arctan_bound'[OF \<open>0 \<le> real_of_float ?mx\<close>] by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1024
  show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1025
    unfolding minus_float.rep_eq arctan_minus lb_arctan.simps[where x=x]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1026
      ub_arctan.simps[where x=x] Let_def if_P[OF \<open>x < 0\<close>]
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  1027
    unfolding atLeastAtMost_iff using bounds[unfolded minus_float.rep_eq arctan_minus]
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1028
    by (simp add: arctan_minus)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1029
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1030
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1031
lemma bnds_arctan: "\<forall> (x::real) lx ux. (l, u) = (lb_arctan prec lx, ub_arctan prec ux) \<and> x \<in> {lx .. ux} \<longrightarrow> l \<le> arctan x \<and> arctan x \<le> u"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1032
proof (rule allI, rule allI, rule allI, rule impI)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1033
  fix x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1034
  fix lx ux
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1035
  assume "(l, u) = (lb_arctan prec lx, ub_arctan prec ux) \<and> x \<in> {lx .. ux}"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1036
  hence l: "lb_arctan prec lx = l "
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1037
    and u: "ub_arctan prec ux = u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1038
    and x: "x \<in> {lx .. ux}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1039
    by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1040
  show "l \<le> arctan x \<and> arctan x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1041
  proof
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1042
    show "l \<le> arctan x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1043
    proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1044
      from arctan_boundaries[of lx prec, unfolded l]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1045
      have "l \<le> arctan lx" by (auto simp del: lb_arctan.simps)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1046
      also have "\<dots> \<le> arctan x" using x by (auto intro: arctan_monotone')
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1047
      finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1048
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1049
    show "arctan x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1050
    proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1051
      have "arctan x \<le> arctan ux" using x by (auto intro: arctan_monotone')
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1052
      also have "\<dots> \<le> u" using arctan_boundaries[of ux prec, unfolded u] by (auto simp del: ub_arctan.simps)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1053
      finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1054
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1055
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1056
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1057
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1058
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1059
section "Sinus and Cosinus"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1060
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1061
subsection "Compute the cosinus and sinus series"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1062
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1063
fun ub_sin_cos_aux :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1064
and lb_sin_cos_aux :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1065
  "ub_sin_cos_aux prec 0 i k x = 0"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1066
| "ub_sin_cos_aux prec (Suc n) i k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1067
    (rapprox_rat prec 1 k) (-
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1068
      float_round_down prec (x * (lb_sin_cos_aux prec n (i + 2) (k * i * (i + 1)) x)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1069
| "lb_sin_cos_aux prec 0 i k x = 0"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1070
| "lb_sin_cos_aux prec (Suc n) i k x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1071
    (lapprox_rat prec 1 k) (-
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1072
      float_round_up prec (x * (ub_sin_cos_aux prec n (i + 2) (k * i * (i + 1)) x)))"
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  1073
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1074
lemma cos_aux:
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1075
  shows "(lb_sin_cos_aux prec n 1 1 (x * x)) \<le> (\<Sum> i=0..<n. (- 1) ^ i * (1/(fact (2 * i))) * x ^(2 * i))" (is "?lb")
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1076
  and "(\<Sum> i=0..<n. (- 1) ^ i * (1/(fact (2 * i))) * x^(2 * i)) \<le> (ub_sin_cos_aux prec n 1 1 (x * x))" (is "?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1077
proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1078
  have "0 \<le> real_of_float (x * x)" by auto
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1079
  let "?f n" = "fact (2 * n) :: nat"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1080
  have f_eq: "?f (Suc n) = ?f n * ((\<lambda>i. i + 2) ^^ n) 1 * (((\<lambda>i. i + 2) ^^ n) 1 + 1)" for n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1081
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1082
    have "\<And>m. ((\<lambda>i. i + 2) ^^ n) m = m + 2 * n" by (induct n) auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1083
    then show ?thesis by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1084
  qed
31809
hoelzl
parents: 31790
diff changeset
  1085
  from horner_bounds[where lb="lb_sin_cos_aux prec" and ub="ub_sin_cos_aux prec" and j'=0,
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1086
    OF \<open>0 \<le> real_of_float (x * x)\<close> f_eq lb_sin_cos_aux.simps ub_sin_cos_aux.simps]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1087
  show ?lb and ?ub
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1088
    by (auto simp add: power_mult power2_eq_square[of "real_of_float x"])
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1089
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1090
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1091
lemma lb_sin_cos_aux_zero_le_one: "lb_sin_cos_aux prec n i j 0 \<le> 1"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1092
  by (cases j n rule: nat.exhaust[case_product nat.exhaust])
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1093
    (auto intro!: float_plus_down_le order_trans[OF lapprox_rat])
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1094
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1095
lemma one_le_ub_sin_cos_aux: "odd n \<Longrightarrow> 1 \<le> ub_sin_cos_aux prec n i (Suc 0) 0"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1096
  by (cases n) (auto intro!: float_plus_up_le order_trans[OF _ rapprox_rat])
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1097
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1098
lemma cos_boundaries:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1099
  assumes "0 \<le> real_of_float x" and "x \<le> pi / 2"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1100
  shows "cos x \<in> {(lb_sin_cos_aux prec (get_even n) 1 1 (x * x)) .. (ub_sin_cos_aux prec (get_odd n) 1 1 (x * x))}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1101
proof (cases "real_of_float x = 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1102
  case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1103
  hence "real_of_float x \<noteq> 0" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1104
  hence "0 < x" and "0 < real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1105
    using \<open>0 \<le> real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1106
  have "0 < x * x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1107
    using \<open>0 < x\<close> by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1108
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1109
  have morph_to_if_power: "(\<Sum> i=0..<n. (-1::real) ^ i * (1/(fact (2 * i))) * x ^ (2 * i)) =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1110
    (\<Sum> i = 0 ..< 2 * n. (if even(i) then ((- 1) ^ (i div 2))/((fact i)) else 0) * x ^ i)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1111
    (is "?sum = ?ifsum") for x n
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1112
  proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1113
    have "?sum = ?sum + (\<Sum> j = 0 ..< n. 0)" by auto
31809
hoelzl
parents: 31790
diff changeset
  1114
    also have "\<dots> =
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1115
      (\<Sum> j = 0 ..< n. (- 1) ^ ((2 * j) div 2) / ((fact (2 * j))) * x ^(2 * j)) + (\<Sum> j = 0 ..< n. 0)" by auto
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1116
    also have "\<dots> = (\<Sum> i = 0 ..< 2 * n. if even i then (- 1) ^ (i div 2) / ((fact i)) * x ^ i else 0)"
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  1117
      unfolding sum_split_even_odd atLeast0LessThan ..
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1118
    also have "\<dots> = (\<Sum> i = 0 ..< 2 * n. (if even i then (- 1) ^ (i div 2) / ((fact i)) else 0) * x ^ i)"
57418
6ab1c7cb0b8d fact consolidation
haftmann
parents: 56923
diff changeset
  1119
      by (rule setsum.cong) auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1120
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1121
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1122
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1123
  { fix n :: nat assume "0 < n"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1124
    hence "0 < 2 * n" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1125
    obtain t where "0 < t" and "t < real_of_float x" and
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1126
      cos_eq: "cos x = (\<Sum> i = 0 ..< 2 * n. (if even(i) then ((- 1) ^ (i div 2))/((fact i)) else 0) * (real_of_float x) ^ i)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1127
      + (cos (t + 1/2 * (2 * n) * pi) / (fact (2*n))) * (real_of_float x)^(2*n)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1128
      (is "_ = ?SUM + ?rest / ?fact * ?pow")
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1129
      using Maclaurin_cos_expansion2[OF \<open>0 < real_of_float x\<close> \<open>0 < 2 * n\<close>]
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  1130
      unfolding cos_coeff_def atLeast0LessThan by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1131
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1132
    have "cos t * (- 1) ^ n = cos t * cos (n * pi) + sin t * sin (n * pi)" by auto
59751
916c0f6c83e3 New material for complex sin, cos, tan, Ln, also some reorganisation
paulson <lp15@cam.ac.uk>
parents: 59741
diff changeset
  1133
    also have "\<dots> = cos (t + n * pi)" by (simp add: cos_add)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1134
    also have "\<dots> = ?rest" by auto
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1135
    finally have "cos t * (- 1) ^ n = ?rest" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1136
    moreover
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1137
    have "t \<le> pi / 2" using \<open>t < real_of_float x\<close> and \<open>x \<le> pi / 2\<close> by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1138
    hence "0 \<le> cos t" using \<open>0 < t\<close> and cos_ge_zero by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1139
    ultimately have even: "even n \<Longrightarrow> 0 \<le> ?rest" and odd: "odd n \<Longrightarrow> 0 \<le> - ?rest " by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1140
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1141
    have "0 < ?fact" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1142
    have "0 < ?pow" using \<open>0 < real_of_float x\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1143
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1144
    {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1145
      assume "even n"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1146
      have "(lb_sin_cos_aux prec n 1 1 (x * x)) \<le> ?SUM"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1147
        unfolding morph_to_if_power[symmetric] using cos_aux by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1148
      also have "\<dots> \<le> cos x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1149
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1150
        from even[OF \<open>even n\<close>] \<open>0 < ?fact\<close> \<open>0 < ?pow\<close>
56571
f4635657d66f added divide_nonneg_nonneg and co; made it a simp rule
hoelzl
parents: 56544
diff changeset
  1151
        have "0 \<le> (?rest / ?fact) * ?pow" by simp
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1152
        thus ?thesis unfolding cos_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1153
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1154
      finally have "(lb_sin_cos_aux prec n 1 1 (x * x)) \<le> cos x" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1155
    } note lb = this
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1156
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1157
    {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1158
      assume "odd n"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1159
      have "cos x \<le> ?SUM"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1160
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1161
        from \<open>0 < ?fact\<close> and \<open>0 < ?pow\<close> and odd[OF \<open>odd n\<close>]
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1162
        have "0 \<le> (- ?rest) / ?fact * ?pow"
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1163
          by (metis mult_nonneg_nonneg divide_nonneg_pos less_imp_le)
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1164
        thus ?thesis unfolding cos_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1165
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1166
      also have "\<dots> \<le> (ub_sin_cos_aux prec n 1 1 (x * x))"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1167
        unfolding morph_to_if_power[symmetric] using cos_aux by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1168
      finally have "cos x \<le> (ub_sin_cos_aux prec n 1 1 (x * x))" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1169
    } note ub = this and lb
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1170
  } note ub = this(1) and lb = this(2)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1171
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1172
  have "cos x \<le> (ub_sin_cos_aux prec (get_odd n) 1 1 (x * x))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1173
    using ub[OF odd_pos[OF get_odd] get_odd] .
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1174
  moreover have "(lb_sin_cos_aux prec (get_even n) 1 1 (x * x)) \<le> cos x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1175
  proof (cases "0 < get_even n")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1176
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1177
    show ?thesis using lb[OF True get_even] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1178
  next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1179
    case False
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1180
    hence "get_even n = 0" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1181
    have "- (pi / 2) \<le> x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1182
      by (rule order_trans[OF _ \<open>0 < real_of_float x\<close>[THEN less_imp_le]]) auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1183
    with \<open>x \<le> pi / 2\<close> show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1184
      unfolding \<open>get_even n = 0\<close> lb_sin_cos_aux.simps minus_float.rep_eq zero_float.rep_eq
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1185
      using cos_ge_zero by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1186
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1187
  ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1188
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1189
  case True
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1190
  hence "x = 0"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1191
    by transfer
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1192
  thus ?thesis
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1193
    using lb_sin_cos_aux_zero_le_one one_le_ub_sin_cos_aux
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1194
    by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1195
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1196
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1197
lemma sin_aux:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1198
  assumes "0 \<le> real_of_float x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1199
  shows "(x * lb_sin_cos_aux prec n 2 1 (x * x)) \<le>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1200
      (\<Sum> i=0..<n. (- 1) ^ i * (1/(fact (2 * i + 1))) * x^(2 * i + 1))" (is "?lb")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1201
    and "(\<Sum> i=0..<n. (- 1) ^ i * (1/(fact (2 * i + 1))) * x^(2 * i + 1)) \<le>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1202
      (x * ub_sin_cos_aux prec n 2 1 (x * x))" (is "?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1203
proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1204
  have "0 \<le> real_of_float (x * x)" by auto
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  1205
  let "?f n" = "fact (2 * n + 1) :: nat"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1206
  have f_eq: "?f (Suc n) = ?f n * ((\<lambda>i. i + 2) ^^ n) 2 * (((\<lambda>i. i + 2) ^^ n) 2 + 1)" for n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1207
  proof -
45129
1fce03e3e8ad tuned proofs -- eliminated vacuous "induct arbitrary: ..." situations;
wenzelm
parents: 44821
diff changeset
  1208
    have F: "\<And>m. ((\<lambda>i. i + 2) ^^ n) m = m + 2 * n" by (induct n) auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1209
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1210
      unfolding F by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1211
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1212
  from horner_bounds[where lb="lb_sin_cos_aux prec" and ub="ub_sin_cos_aux prec" and j'=0,
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1213
    OF \<open>0 \<le> real_of_float (x * x)\<close> f_eq lb_sin_cos_aux.simps ub_sin_cos_aux.simps]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1214
  show "?lb" and "?ub" using \<open>0 \<le> real_of_float x\<close>
63170
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
  1215
    apply (simp_all only: power_add power_one_right mult.assoc[symmetric] setsum_left_distrib[symmetric])
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
  1216
    apply (simp_all only: mult.commute[where 'a=real] of_nat_fact)
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
  1217
    apply (auto intro!: mult_left_mono simp add: power_mult power2_eq_square[of "real_of_float x"])
eae6549dbea2 tuned proofs, to allow unfold_abs_def;
wenzelm
parents: 63040
diff changeset
  1218
    done
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1219
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1220
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1221
lemma sin_boundaries:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1222
  assumes "0 \<le> real_of_float x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1223
    and "x \<le> pi / 2"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1224
  shows "sin x \<in> {(x * lb_sin_cos_aux prec (get_even n) 2 1 (x * x)) .. (x * ub_sin_cos_aux prec (get_odd n) 2 1 (x * x))}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1225
proof (cases "real_of_float x = 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1226
  case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1227
  hence "real_of_float x \<noteq> 0" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1228
  hence "0 < x" and "0 < real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1229
    using \<open>0 \<le> real_of_float x\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1230
  have "0 < x * x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1231
    using \<open>0 < x\<close> by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1232
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1233
  have setsum_morph: "(\<Sum>j = 0 ..< n. (- 1) ^ (((2 * j + 1) - Suc 0) div 2) / ((fact (2 * j + 1))) * x ^(2 * j + 1)) =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1234
    (\<Sum> i = 0 ..< 2 * n. (if even(i) then 0 else ((- 1) ^ ((i - Suc 0) div 2))/((fact i))) * x ^ i)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1235
    (is "?SUM = _") for x :: real and n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1236
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1237
    have pow: "!!i. x ^ (2 * i + 1) = x * x ^ (2 * i)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1238
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1239
    have "?SUM = (\<Sum> j = 0 ..< n. 0) + ?SUM"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1240
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1241
    also have "\<dots> = (\<Sum> i = 0 ..< 2 * n. if even i then 0 else (- 1) ^ ((i - Suc 0) div 2) / ((fact i)) * x ^ i)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1242
      unfolding sum_split_even_odd atLeast0LessThan ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1243
    also have "\<dots> = (\<Sum> i = 0 ..< 2 * n. (if even i then 0 else (- 1) ^ ((i - Suc 0) div 2) / ((fact i))) * x ^ i)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1244
      by (rule setsum.cong) auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1245
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1246
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1247
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1248
  { fix n :: nat assume "0 < n"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1249
    hence "0 < 2 * n + 1" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1250
    obtain t where "0 < t" and "t < real_of_float x" and
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1251
      sin_eq: "sin x = (\<Sum> i = 0 ..< 2 * n + 1. (if even(i) then 0 else ((- 1) ^ ((i - Suc 0) div 2))/((fact i))) * (real_of_float x) ^ i)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1252
      + (sin (t + 1/2 * (2 * n + 1) * pi) / (fact (2*n + 1))) * (real_of_float x)^(2*n + 1)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1253
      (is "_ = ?SUM + ?rest / ?fact * ?pow")
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1254
      using Maclaurin_sin_expansion3[OF \<open>0 < 2 * n + 1\<close> \<open>0 < real_of_float x\<close>]
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  1255
      unfolding sin_coeff_def atLeast0LessThan by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1256
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1257
    have "?rest = cos t * (- 1) ^ n"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1258
      unfolding sin_add cos_add of_nat_add distrib_right distrib_left by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1259
    moreover
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1260
    have "t \<le> pi / 2"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1261
      using \<open>t < real_of_float x\<close> and \<open>x \<le> pi / 2\<close> by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1262
    hence "0 \<le> cos t"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1263
      using \<open>0 < t\<close> and cos_ge_zero by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1264
    ultimately have even: "even n \<Longrightarrow> 0 \<le> ?rest" and odd: "odd n \<Longrightarrow> 0 \<le> - ?rest"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1265
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1266
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1267
    have "0 < ?fact"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1268
      by (simp del: fact_Suc)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1269
    have "0 < ?pow"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1270
      using \<open>0 < real_of_float x\<close> by (rule zero_less_power)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1271
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1272
    {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1273
      assume "even n"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1274
      have "(x * lb_sin_cos_aux prec n 2 1 (x * x)) \<le>
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1275
            (\<Sum> i = 0 ..< 2 * n. (if even(i) then 0 else ((- 1) ^ ((i - Suc 0) div 2))/((fact i))) * (real_of_float x) ^ i)"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1276
        using sin_aux[OF \<open>0 \<le> real_of_float x\<close>] unfolding setsum_morph[symmetric] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1277
      also have "\<dots> \<le> ?SUM" by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1278
      also have "\<dots> \<le> sin x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1279
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1280
        from even[OF \<open>even n\<close>] \<open>0 < ?fact\<close> \<open>0 < ?pow\<close>
56571
f4635657d66f added divide_nonneg_nonneg and co; made it a simp rule
hoelzl
parents: 56544
diff changeset
  1281
        have "0 \<le> (?rest / ?fact) * ?pow" by simp
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1282
        thus ?thesis unfolding sin_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1283
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1284
      finally have "(x * lb_sin_cos_aux prec n 2 1 (x * x)) \<le> sin x" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1285
    } note lb = this
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1286
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1287
    {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1288
      assume "odd n"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1289
      have "sin x \<le> ?SUM"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1290
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1291
        from \<open>0 < ?fact\<close> and \<open>0 < ?pow\<close> and odd[OF \<open>odd n\<close>]
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1292
        have "0 \<le> (- ?rest) / ?fact * ?pow"
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1293
          by (metis mult_nonneg_nonneg divide_nonneg_pos less_imp_le)
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1294
        thus ?thesis unfolding sin_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1295
      qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1296
      also have "\<dots> \<le> (\<Sum> i = 0 ..< 2 * n. (if even(i) then 0 else ((- 1) ^ ((i - Suc 0) div 2))/((fact i))) * (real_of_float x) ^ i)"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1297
         by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1298
      also have "\<dots> \<le> (x * ub_sin_cos_aux prec n 2 1 (x * x))"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1299
        using sin_aux[OF \<open>0 \<le> real_of_float x\<close>] unfolding setsum_morph[symmetric] by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1300
      finally have "sin x \<le> (x * ub_sin_cos_aux prec n 2 1 (x * x))" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1301
    } note ub = this and lb
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1302
  } note ub = this(1) and lb = this(2)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1303
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1304
  have "sin x \<le> (x * ub_sin_cos_aux prec (get_odd n) 2 1 (x * x))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1305
    using ub[OF odd_pos[OF get_odd] get_odd] .
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1306
  moreover have "(x * lb_sin_cos_aux prec (get_even n) 2 1 (x * x)) \<le> sin x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1307
  proof (cases "0 < get_even n")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1308
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1309
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1310
      using lb[OF True get_even] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1311
  next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1312
    case False
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1313
    hence "get_even n = 0" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1314
    with \<open>x \<le> pi / 2\<close> \<open>0 \<le> real_of_float x\<close>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1315
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1316
      unfolding \<open>get_even n = 0\<close> ub_sin_cos_aux.simps minus_float.rep_eq
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1317
      using sin_ge_zero by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1318
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1319
  ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1320
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1321
  case True
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1322
  show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1323
  proof (cases "n = 0")
31809
hoelzl
parents: 31790
diff changeset
  1324
    case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1325
    thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1326
      unfolding \<open>n = 0\<close> get_even_def get_odd_def
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1327
      using \<open>real_of_float x = 0\<close> lapprox_rat[where x="-1" and y=1] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1328
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1329
    case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1330
    with not0_implies_Suc obtain m where "n = Suc m" by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1331
    thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1332
      unfolding \<open>n = Suc m\<close> get_even_def get_odd_def
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1333
      using \<open>real_of_float x = 0\<close> rapprox_rat[where x=1 and y=1] lapprox_rat[where x=1 and y=1]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1334
      by (cases "even (Suc m)") auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1335
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1336
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1337
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1338
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1339
subsection "Compute the cosinus in the entire domain"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1340
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1341
definition lb_cos :: "nat \<Rightarrow> float \<Rightarrow> float" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1342
"lb_cos prec x = (let
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1343
    horner = \<lambda> x. lb_sin_cos_aux prec (get_even (prec div 4 + 1)) 1 1 (x * x) ;
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1344
    half = \<lambda> x. if x < 0 then - 1 else float_plus_down prec (Float 1 1 * x * x) (- 1)
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1345
  in if x < Float 1 (- 1) then horner x
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1346
else if x < 1          then half (horner (x * Float 1 (- 1)))
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1347
                       else half (half (horner (x * Float 1 (- 2)))))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1348
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1349
definition ub_cos :: "nat \<Rightarrow> float \<Rightarrow> float" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1350
"ub_cos prec x = (let
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1351
    horner = \<lambda> x. ub_sin_cos_aux prec (get_odd (prec div 4 + 1)) 1 1 (x * x) ;
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1352
    half = \<lambda> x. float_plus_up prec (Float 1 1 * x * x) (- 1)
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1353
  in if x < Float 1 (- 1) then horner x
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1354
else if x < 1          then half (horner (x * Float 1 (- 1)))
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1355
                       else half (half (horner (x * Float 1 (- 2)))))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1356
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1357
lemma lb_cos:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1358
  assumes "0 \<le> real_of_float x" and "x \<le> pi"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1359
  shows "cos x \<in> {(lb_cos prec x) .. (ub_cos prec x)}" (is "?cos x \<in> {(?lb x) .. (?ub x) }")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1360
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1361
  have x_half[symmetric]: "cos x = 2 * cos (x / 2) * cos (x / 2) - 1" for x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1362
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1363
    have "cos x = cos (x / 2 + x / 2)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1364
      by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1365
    also have "\<dots> = cos (x / 2) * cos (x / 2) + sin (x / 2) * sin (x / 2) - sin (x / 2) * sin (x / 2) + cos (x / 2) * cos (x / 2) - 1"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1366
      unfolding cos_add by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1367
    also have "\<dots> = 2 * cos (x / 2) * cos (x / 2) - 1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1368
      by algebra
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1369
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1370
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1371
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1372
  have "\<not> x < 0" using \<open>0 \<le> real_of_float x\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1373
  let "?ub_horner x" = "ub_sin_cos_aux prec (get_odd (prec div 4 + 1)) 1 1 (x * x)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1374
  let "?lb_horner x" = "lb_sin_cos_aux prec (get_even (prec div 4 + 1)) 1 1 (x * x)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1375
  let "?ub_half x" = "float_plus_up prec (Float 1 1 * x * x) (- 1)"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1376
  let "?lb_half x" = "if x < 0 then - 1 else float_plus_down prec (Float 1 1 * x * x) (- 1)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1377
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1378
  show ?thesis
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1379
  proof (cases "x < Float 1 (- 1)")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1380
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1381
    hence "x \<le> pi / 2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1382
      using pi_ge_two by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1383
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1384
      unfolding lb_cos_def[where x=x] ub_cos_def[where x=x]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1385
        if_not_P[OF \<open>\<not> x < 0\<close>] if_P[OF \<open>x < Float 1 (- 1)\<close>] Let_def
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1386
      using cos_boundaries[OF \<open>0 \<le> real_of_float x\<close> \<open>x \<le> pi / 2\<close>] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1387
  next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1388
    case False
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1389
    { fix y x :: float let ?x2 = "(x * Float 1 (- 1))"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1390
      assume "y \<le> cos ?x2" and "-pi \<le> x" and "x \<le> pi"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1391
      hence "- (pi / 2) \<le> ?x2" and "?x2 \<le> pi / 2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1392
        using pi_ge_two unfolding Float_num by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1393
      hence "0 \<le> cos ?x2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1394
        by (rule cos_ge_zero)
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1395
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1396
      have "(?lb_half y) \<le> cos x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1397
      proof (cases "y < 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1398
        case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1399
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1400
          using cos_ge_minus_one unfolding if_P[OF True] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1401
      next
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1402
        case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1403
        hence "0 \<le> real_of_float y" by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1404
        from mult_mono[OF \<open>y \<le> cos ?x2\<close> \<open>y \<le> cos ?x2\<close> \<open>0 \<le> cos ?x2\<close> this]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1405
        have "real_of_float y * real_of_float y \<le> cos ?x2 * cos ?x2" .
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1406
        hence "2 * real_of_float y * real_of_float y \<le> 2 * cos ?x2 * cos ?x2"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1407
          by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1408
        hence "2 * real_of_float y * real_of_float y - 1 \<le> 2 * cos (x / 2) * cos (x / 2) - 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1409
          unfolding Float_num by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1410
        thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1411
          unfolding if_not_P[OF False] x_half Float_num
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1412
          by (auto intro!: float_plus_down_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1413
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1414
    } note lb_half = this
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1415
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1416
    { fix y x :: float let ?x2 = "(x * Float 1 (- 1))"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1417
      assume ub: "cos ?x2 \<le> y" and "- pi \<le> x" and "x \<le> pi"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1418
      hence "- (pi / 2) \<le> ?x2" and "?x2 \<le> pi / 2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1419
        using pi_ge_two unfolding Float_num by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1420
      hence "0 \<le> cos ?x2" by (rule cos_ge_zero)
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1421
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1422
      have "cos x \<le> (?ub_half y)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1423
      proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1424
        have "0 \<le> real_of_float y"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1425
          using \<open>0 \<le> cos ?x2\<close> ub by (rule order_trans)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1426
        from mult_mono[OF ub ub this \<open>0 \<le> cos ?x2\<close>]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1427
        have "cos ?x2 * cos ?x2 \<le> real_of_float y * real_of_float y" .
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1428
        hence "2 * cos ?x2 * cos ?x2 \<le> 2 * real_of_float y * real_of_float y"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1429
          by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1430
        hence "2 * cos (x / 2) * cos (x / 2) - 1 \<le> 2 * real_of_float y * real_of_float y - 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1431
          unfolding Float_num by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1432
        thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1433
          unfolding x_half Float_num
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1434
          by (auto intro!: float_plus_up_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1435
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1436
    } note ub_half = this
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1437
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1438
    let ?x2 = "x * Float 1 (- 1)"
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1439
    let ?x4 = "x * Float 1 (- 1) * Float 1 (- 1)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1440
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1441
    have "-pi \<le> x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1442
      using pi_ge_zero[THEN le_imp_neg_le, unfolded minus_zero] \<open>0 \<le> real_of_float x\<close>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1443
      by (rule order_trans)
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1444
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1445
    show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1446
    proof (cases "x < 1")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1447
      case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1448
      hence "real_of_float x \<le> 1" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1449
      have "0 \<le> real_of_float ?x2" and "?x2 \<le> pi / 2"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1450
        using pi_ge_two \<open>0 \<le> real_of_float x\<close> using assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1451
      from cos_boundaries[OF this]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1452
      have lb: "(?lb_horner ?x2) \<le> ?cos ?x2" and ub: "?cos ?x2 \<le> (?ub_horner ?x2)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1453
        by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1454
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1455
      have "(?lb x) \<le> ?cos x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1456
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1457
        from lb_half[OF lb \<open>-pi \<le> x\<close> \<open>x \<le> pi\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1458
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1459
          unfolding lb_cos_def[where x=x] Let_def
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1460
          using \<open>\<not> x < 0\<close> \<open>\<not> x < Float 1 (- 1)\<close> \<open>x < 1\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1461
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1462
      moreover have "?cos x \<le> (?ub x)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1463
      proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1464
        from ub_half[OF ub \<open>-pi \<le> x\<close> \<open>x \<le> pi\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1465
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1466
          unfolding ub_cos_def[where x=x] Let_def
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1467
          using \<open>\<not> x < 0\<close> \<open>\<not> x < Float 1 (- 1)\<close> \<open>x < 1\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1468
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1469
      ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1470
    next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1471
      case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1472
      have "0 \<le> real_of_float ?x4" and "?x4 \<le> pi / 2"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1473
        using pi_ge_two \<open>0 \<le> real_of_float x\<close> \<open>x \<le> pi\<close> unfolding Float_num by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1474
      from cos_boundaries[OF this]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1475
      have lb: "(?lb_horner ?x4) \<le> ?cos ?x4" and ub: "?cos ?x4 \<le> (?ub_horner ?x4)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1476
        by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1477
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1478
      have eq_4: "?x2 * Float 1 (- 1) = x * Float 1 (- 2)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1479
        by transfer simp
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1480
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1481
      have "(?lb x) \<le> ?cos x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1482
      proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1483
        have "-pi \<le> ?x2" and "?x2 \<le> pi"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1484
          using pi_ge_two \<open>0 \<le> real_of_float x\<close> \<open>x \<le> pi\<close> by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1485
        from lb_half[OF lb_half[OF lb this] \<open>-pi \<le> x\<close> \<open>x \<le> pi\<close>, unfolded eq_4]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1486
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1487
          unfolding lb_cos_def[where x=x] if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1488
            if_not_P[OF \<open>\<not> x < Float 1 (- 1)\<close>] if_not_P[OF \<open>\<not> x < 1\<close>] Let_def .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1489
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1490
      moreover have "?cos x \<le> (?ub x)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1491
      proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1492
        have "-pi \<le> ?x2" and "?x2 \<le> pi"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1493
          using pi_ge_two \<open>0 \<le> real_of_float x\<close> \<open> x \<le> pi\<close> by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1494
        from ub_half[OF ub_half[OF ub this] \<open>-pi \<le> x\<close> \<open>x \<le> pi\<close>, unfolded eq_4]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1495
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1496
          unfolding ub_cos_def[where x=x] if_not_P[OF \<open>\<not> x < 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1497
            if_not_P[OF \<open>\<not> x < Float 1 (- 1)\<close>] if_not_P[OF \<open>\<not> x < 1\<close>] Let_def .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1498
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1499
      ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1500
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1501
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1502
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1503
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1504
lemma lb_cos_minus:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1505
  assumes "-pi \<le> x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1506
    and "real_of_float x \<le> 0"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1507
  shows "cos (real_of_float(-x)) \<in> {(lb_cos prec (-x)) .. (ub_cos prec (-x))}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1508
proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1509
  have "0 \<le> real_of_float (-x)" and "(-x) \<le> pi"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1510
    using \<open>-pi \<le> x\<close> \<open>real_of_float x \<le> 0\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1511
  from lb_cos[OF this] show ?thesis .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1512
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1513
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1514
definition bnds_cos :: "nat \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float * float" where
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1515
"bnds_cos prec lx ux = (let
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1516
    lpi = float_round_down prec (lb_pi prec) ;
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1517
    upi = float_round_up prec (ub_pi prec) ;
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1518
    k = floor_fl (float_divr prec (lx + lpi) (2 * lpi)) ;
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1519
    lx = float_plus_down prec lx (- k * 2 * (if k < 0 then lpi else upi)) ;
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1520
    ux = float_plus_up prec ux (- k * 2 * (if k < 0 then upi else lpi))
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1521
  in   if - lpi \<le> lx \<and> ux \<le> 0    then (lb_cos prec (-lx), ub_cos prec (-ux))
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1522
  else if 0 \<le> lx \<and> ux \<le> lpi      then (lb_cos prec ux, ub_cos prec lx)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1523
  else if - lpi \<le> lx \<and> ux \<le> lpi  then (min (lb_cos prec (-lx)) (lb_cos prec ux), Float 1 0)
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1524
  else if 0 \<le> lx \<and> ux \<le> 2 * lpi  then (Float (- 1) 0, max (ub_cos prec lx) (ub_cos prec (- (ux - 2 * lpi))))
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1525
  else if -2 * lpi \<le> lx \<and> ux \<le> 0 then (Float (- 1) 0, max (ub_cos prec (lx + 2 * lpi)) (ub_cos prec (-ux)))
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  1526
                                 else (Float (- 1) 0, Float 1 0))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1527
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1528
lemma floor_int: obtains k :: int where "real_of_int k = (floor_fl f)"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1529
  by (simp add: floor_fl_def)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1530
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1531
lemma cos_periodic_nat[simp]:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1532
  fixes n :: nat
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1533
  shows "cos (x + n * (2 * pi)) = cos x"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1534
proof (induct n arbitrary: x)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1535
  case 0
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1536
  then show ?case by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1537
next
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1538
  case (Suc n)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1539
  have split_pi_off: "x + (Suc n) * (2 * pi) = (x + n * (2 * pi)) + 2 * pi"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1540
    unfolding Suc_eq_plus1 of_nat_add of_int_1 distrib_right by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1541
  show ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1542
    unfolding split_pi_off using Suc by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1543
qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1544
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1545
lemma cos_periodic_int[simp]:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1546
  fixes i :: int
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1547
  shows "cos (x + i * (2 * pi)) = cos x"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1548
proof (cases "0 \<le> i")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1549
  case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1550
  hence i_nat: "real_of_int i = nat i" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1551
  show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1552
    unfolding i_nat by auto
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1553
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1554
  case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1555
    hence i_nat: "i = - real (nat (-i))" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1556
  have "cos x = cos (x + i * (2 * pi) - i * (2 * pi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1557
    by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1558
  also have "\<dots> = cos (x + i * (2 * pi))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1559
    unfolding i_nat mult_minus_left diff_minus_eq_add by (rule cos_periodic_nat)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1560
  finally show ?thesis by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1561
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1562
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1563
lemma bnds_cos: "\<forall>(x::real) lx ux. (l, u) =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1564
  bnds_cos prec lx ux \<and> x \<in> {lx .. ux} \<longrightarrow> l \<le> cos x \<and> cos x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1565
proof (rule allI | rule impI | erule conjE)+
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1566
  fix x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1567
  fix lx ux
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1568
  assume bnds: "(l, u) = bnds_cos prec lx ux" and x: "x \<in> {lx .. ux}"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1569
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1570
  let ?lpi = "float_round_down prec (lb_pi prec)"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1571
  let ?upi = "float_round_up prec (ub_pi prec)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1572
  let ?k = "floor_fl (float_divr prec (lx + ?lpi) (2 * ?lpi))"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1573
  let ?lx2 = "(- ?k * 2 * (if ?k < 0 then ?lpi else ?upi))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1574
  let ?ux2 = "(- ?k * 2 * (if ?k < 0 then ?upi else ?lpi))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1575
  let ?lx = "float_plus_down prec lx ?lx2"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1576
  let ?ux = "float_plus_up prec ux ?ux2"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1577
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1578
  obtain k :: int where k: "k = real_of_float ?k"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1579
    by (rule floor_int)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1580
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1581
  have upi: "pi \<le> ?upi" and lpi: "?lpi \<le> pi"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1582
    using float_round_up[of "ub_pi prec" prec] pi_boundaries[of prec]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1583
      float_round_down[of prec "lb_pi prec"]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1584
    by auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1585
  hence "lx + ?lx2 \<le> x - k * (2 * pi) \<and> x - k * (2 * pi) \<le> ux + ?ux2"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1586
    using x
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1587
    by (cases "k = 0")
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1588
      (auto intro!: add_mono
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1589
        simp add: k [symmetric] uminus_add_conv_diff [symmetric]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1590
        simp del: float_of_numeral uminus_add_conv_diff)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1591
  hence "?lx \<le> x - k * (2 * pi) \<and> x - k * (2 * pi) \<le> ?ux"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1592
    by (auto intro!: float_plus_down_le float_plus_up_le)
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1593
  note lx = this[THEN conjunct1] and ux = this[THEN conjunct2]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1594
  hence lx_less_ux: "?lx \<le> real_of_float ?ux" by (rule order_trans)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1595
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1596
  { assume "- ?lpi \<le> ?lx" and x_le_0: "x - k * (2 * pi) \<le> 0"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1597
    with lpi[THEN le_imp_neg_le] lx
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1598
    have pi_lx: "- pi \<le> ?lx" and lx_0: "real_of_float ?lx \<le> 0"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  1599
      by simp_all
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1600
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1601
    have "(lb_cos prec (- ?lx)) \<le> cos (real_of_float (- ?lx))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1602
      using lb_cos_minus[OF pi_lx lx_0] by simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1603
    also have "\<dots> \<le> cos (x + (-k) * (2 * pi))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1604
      using cos_monotone_minus_pi_0'[OF pi_lx lx x_le_0]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1605
      by (simp only: uminus_float.rep_eq of_int_minus
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  1606
        cos_minus mult_minus_left) simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1607
    finally have "(lb_cos prec (- ?lx)) \<le> cos x"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1608
      unfolding cos_periodic_int . }
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1609
  note negative_lx = this
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1610
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1611
  { assume "0 \<le> ?lx" and pi_x: "x - k * (2 * pi) \<le> pi"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1612
    with lx
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1613
    have pi_lx: "?lx \<le> pi" and lx_0: "0 \<le> real_of_float ?lx"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  1614
      by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1615
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1616
    have "cos (x + (-k) * (2 * pi)) \<le> cos ?lx"
59751
916c0f6c83e3 New material for complex sin, cos, tan, Ln, also some reorganisation
paulson <lp15@cam.ac.uk>
parents: 59741
diff changeset
  1617
      using cos_monotone_0_pi_le[OF lx_0 lx pi_x]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1618
      by (simp only: of_int_minus
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  1619
        cos_minus mult_minus_left) simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1620
    also have "\<dots> \<le> (ub_cos prec ?lx)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1621
      using lb_cos[OF lx_0 pi_lx] by simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1622
    finally have "cos x \<le> (ub_cos prec ?lx)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1623
      unfolding cos_periodic_int . }
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1624
  note positive_lx = this
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1625
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1626
  { assume pi_x: "- pi \<le> x - k * (2 * pi)" and "?ux \<le> 0"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1627
    with ux
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1628
    have pi_ux: "- pi \<le> ?ux" and ux_0: "real_of_float ?ux \<le> 0"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  1629
      by simp_all
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1630
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1631
    have "cos (x + (-k) * (2 * pi)) \<le> cos (real_of_float (- ?ux))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1632
      using cos_monotone_minus_pi_0'[OF pi_x ux ux_0]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1633
      by (simp only: uminus_float.rep_eq of_int_minus
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  1634
          cos_minus mult_minus_left) simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1635
    also have "\<dots> \<le> (ub_cos prec (- ?ux))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1636
      using lb_cos_minus[OF pi_ux ux_0, of prec] by simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1637
    finally have "cos x \<le> (ub_cos prec (- ?ux))"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1638
      unfolding cos_periodic_int . }
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1639
  note negative_ux = this
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1640
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1641
  { assume "?ux \<le> ?lpi" and x_ge_0: "0 \<le> x - k * (2 * pi)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1642
    with lpi ux
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1643
    have pi_ux: "?ux \<le> pi" and ux_0: "0 \<le> real_of_float ?ux"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  1644
      by simp_all
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1645
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1646
    have "(lb_cos prec ?ux) \<le> cos ?ux"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1647
      using lb_cos[OF ux_0 pi_ux] by simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1648
    also have "\<dots> \<le> cos (x + (-k) * (2 * pi))"
59751
916c0f6c83e3 New material for complex sin, cos, tan, Ln, also some reorganisation
paulson <lp15@cam.ac.uk>
parents: 59741
diff changeset
  1649
      using cos_monotone_0_pi_le[OF x_ge_0 ux pi_ux]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1650
      by (simp only: of_int_minus
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  1651
        cos_minus mult_minus_left) simp
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1652
    finally have "(lb_cos prec ?ux) \<le> cos x"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1653
      unfolding cos_periodic_int . }
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1654
  note positive_ux = this
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1655
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1656
  show "l \<le> cos x \<and> cos x \<le> u"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1657
  proof (cases "- ?lpi \<le> ?lx \<and> ?ux \<le> 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1658
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1659
    with bnds have l: "l = lb_cos prec (-?lx)" and u: "u = ub_cos prec (-?ux)"
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1660
      by (auto simp add: bnds_cos_def Let_def)
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1661
    from True lpi[THEN le_imp_neg_le] lx ux
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1662
    have "- pi \<le> x - k * (2 * pi)" and "x - k * (2 * pi) \<le> 0"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  1663
      by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1664
    with True negative_ux negative_lx show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1665
      unfolding l u by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1666
  next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1667
    case 1: False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1668
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1669
    proof (cases "0 \<le> ?lx \<and> ?ux \<le> ?lpi")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1670
      case True with bnds 1
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1671
      have l: "l = lb_cos prec ?ux"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1672
        and u: "u = ub_cos prec ?lx"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1673
        by (auto simp add: bnds_cos_def Let_def)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1674
      from True lpi lx ux
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1675
      have "0 \<le> x - k * (2 * pi)" and "x - k * (2 * pi) \<le> pi"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1676
        by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1677
      with True positive_ux positive_lx show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1678
        unfolding l u by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1679
    next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1680
      case 2: False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1681
      show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1682
      proof (cases "- ?lpi \<le> ?lx \<and> ?ux \<le> ?lpi")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1683
        case Cond: True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1684
        with bnds 1 2 have l: "l = min (lb_cos prec (-?lx)) (lb_cos prec ?ux)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1685
          and u: "u = Float 1 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1686
          by (auto simp add: bnds_cos_def Let_def)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1687
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1688
          unfolding u l using negative_lx positive_ux Cond
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1689
          by (cases "x - k * (2 * pi) < 0") (auto simp add: real_of_float_min)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1690
      next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1691
        case 3: False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1692
        show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1693
        proof (cases "0 \<le> ?lx \<and> ?ux \<le> 2 * ?lpi")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1694
          case Cond: True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1695
          with bnds 1 2 3
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1696
          have l: "l = Float (- 1) 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1697
            and u: "u = max (ub_cos prec ?lx) (ub_cos prec (- (?ux - 2 * ?lpi)))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1698
            by (auto simp add: bnds_cos_def Let_def)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1699
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1700
          have "cos x \<le> real_of_float u"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1701
          proof (cases "x - k * (2 * pi) < pi")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1702
            case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1703
            hence "x - k * (2 * pi) \<le> pi" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1704
            from positive_lx[OF Cond[THEN conjunct1] this] show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1705
              unfolding u by (simp add: real_of_float_max)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1706
          next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1707
            case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1708
            hence "pi \<le> x - k * (2 * pi)" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1709
            hence pi_x: "- pi \<le> x - k * (2 * pi) - 2 * pi" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1710
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1711
            have "?ux \<le> 2 * pi"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1712
              using Cond lpi by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1713
            hence "x - k * (2 * pi) - 2 * pi \<le> 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1714
              using ux by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1715
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1716
            have ux_0: "real_of_float (?ux - 2 * ?lpi) \<le> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1717
              using Cond by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1718
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1719
            from 2 and Cond have "\<not> ?ux \<le> ?lpi" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1720
            hence "- ?lpi \<le> ?ux - 2 * ?lpi" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1721
            hence pi_ux: "- pi \<le> (?ux - 2 * ?lpi)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1722
              using lpi[THEN le_imp_neg_le] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1723
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1724
            have x_le_ux: "x - k * (2 * pi) - 2 * pi \<le> (?ux - 2 * ?lpi)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1725
              using ux lpi by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1726
            have "cos x = cos (x + (-k) * (2 * pi) + (-1::int) * (2 * pi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1727
              unfolding cos_periodic_int ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1728
            also have "\<dots> \<le> cos ((?ux - 2 * ?lpi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1729
              using cos_monotone_minus_pi_0'[OF pi_x x_le_ux ux_0]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1730
              by (simp only: minus_float.rep_eq of_int_minus of_int_1
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1731
                mult_minus_left mult_1_left) simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1732
            also have "\<dots> = cos ((- (?ux - 2 * ?lpi)))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1733
              unfolding uminus_float.rep_eq cos_minus ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1734
            also have "\<dots> \<le> (ub_cos prec (- (?ux - 2 * ?lpi)))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1735
              using lb_cos_minus[OF pi_ux ux_0] by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1736
            finally show ?thesis unfolding u by (simp add: real_of_float_max)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1737
          qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1738
          thus ?thesis unfolding l by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1739
        next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1740
          case 4: False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1741
          show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1742
          proof (cases "-2 * ?lpi \<le> ?lx \<and> ?ux \<le> 0")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1743
            case Cond: True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1744
            with bnds 1 2 3 4 have l: "l = Float (- 1) 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1745
              and u: "u = max (ub_cos prec (?lx + 2 * ?lpi)) (ub_cos prec (-?ux))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1746
              by (auto simp add: bnds_cos_def Let_def)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1747
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1748
            have "cos x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1749
            proof (cases "-pi < x - k * (2 * pi)")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1750
              case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1751
              hence "-pi \<le> x - k * (2 * pi)" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1752
              from negative_ux[OF this Cond[THEN conjunct2]] show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1753
                unfolding u by (simp add: real_of_float_max)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1754
            next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1755
              case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1756
              hence "x - k * (2 * pi) \<le> -pi" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1757
              hence pi_x: "x - k * (2 * pi) + 2 * pi \<le> pi" by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1758
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1759
              have "-2 * pi \<le> ?lx" using Cond lpi by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1760
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1761
              hence "0 \<le> x - k * (2 * pi) + 2 * pi" using lx by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1762
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1763
              have lx_0: "0 \<le> real_of_float (?lx + 2 * ?lpi)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1764
                using Cond lpi by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1765
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1766
              from 1 and Cond have "\<not> -?lpi \<le> ?lx" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1767
              hence "?lx + 2 * ?lpi \<le> ?lpi" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1768
              hence pi_lx: "(?lx + 2 * ?lpi) \<le> pi"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1769
                using lpi[THEN le_imp_neg_le] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1770
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1771
              have lx_le_x: "(?lx + 2 * ?lpi) \<le> x - k * (2 * pi) + 2 * pi"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1772
                using lx lpi by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1773
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1774
              have "cos x = cos (x + (-k) * (2 * pi) + (1 :: int) * (2 * pi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1775
                unfolding cos_periodic_int ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1776
              also have "\<dots> \<le> cos ((?lx + 2 * ?lpi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1777
                using cos_monotone_0_pi_le[OF lx_0 lx_le_x pi_x]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1778
                by (simp only: minus_float.rep_eq of_int_minus of_int_1
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1779
                  mult_minus_left mult_1_left) simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1780
              also have "\<dots> \<le> (ub_cos prec (?lx + 2 * ?lpi))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1781
                using lb_cos[OF lx_0 pi_lx] by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1782
              finally show ?thesis unfolding u by (simp add: real_of_float_max)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1783
            qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1784
            thus ?thesis unfolding l by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1785
          next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1786
            case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1787
            with bnds 1 2 3 4 show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1788
              by (auto simp add: bnds_cos_def Let_def)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1789
          qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1790
        qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1791
      qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1792
    qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1793
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1794
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1795
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1796
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1797
section "Exponential function"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1798
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1799
subsection "Compute the series of the exponential function"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1800
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1801
fun ub_exp_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1802
  and lb_exp_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1803
where
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1804
"ub_exp_horner prec 0 i k x       = 0" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1805
"ub_exp_horner prec (Suc n) i k x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1806
    (rapprox_rat prec 1 (int k)) (float_round_up prec (x * lb_exp_horner prec n (i + 1) (k * i) x))" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1807
"lb_exp_horner prec 0 i k x       = 0" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1808
"lb_exp_horner prec (Suc n) i k x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1809
    (lapprox_rat prec 1 (int k)) (float_round_down prec (x * ub_exp_horner prec n (i + 1) (k * i) x))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1810
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1811
lemma bnds_exp_horner:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1812
  assumes "real_of_float x \<le> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1813
  shows "exp x \<in> {lb_exp_horner prec (get_even n) 1 1 x .. ub_exp_horner prec (get_odd n) 1 1 x}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1814
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1815
  have f_eq: "fact (Suc n) = fact n * ((\<lambda>i::nat. i + 1) ^^ n) 1" for n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1816
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1817
    have F: "\<And> m. ((\<lambda>i. i + 1) ^^ n) m = n + m"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1818
      by (induct n) auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1819
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1820
      unfolding F by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1821
  qed
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  1822
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1823
  note bounds = horner_bounds_nonpos[where f="fact" and lb="lb_exp_horner prec" and ub="ub_exp_horner prec" and j'=0 and s=1,
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1824
    OF assms f_eq lb_exp_horner.simps ub_exp_horner.simps]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1825
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1826
  have "lb_exp_horner prec (get_even n) 1 1 x \<le> exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1827
  proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1828
    have "lb_exp_horner prec (get_even n) 1 1 x \<le> (\<Sum>j = 0..<get_even n. 1 / (fact j) * real_of_float x ^ j)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1829
      using bounds(1) by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1830
    also have "\<dots> \<le> exp x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1831
    proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1832
      obtain t where "\<bar>t\<bar> \<le> \<bar>real_of_float x\<bar>" and "exp x = (\<Sum>m = 0..<get_even n. real_of_float x ^ m / (fact m)) + exp t / (fact (get_even n)) * (real_of_float x) ^ (get_even n)"
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  1833
        using Maclaurin_exp_le unfolding atLeast0LessThan by blast
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1834
      moreover have "0 \<le> exp t / (fact (get_even n)) * (real_of_float x) ^ (get_even n)"
56571
f4635657d66f added divide_nonneg_nonneg and co; made it a simp rule
hoelzl
parents: 56544
diff changeset
  1835
        by (auto simp: zero_le_even_power)
56536
aefb4a8da31f made mult_nonneg_nonneg a simp rule
nipkow
parents: 56483
diff changeset
  1836
      ultimately show ?thesis using get_odd exp_gt_zero by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1837
    qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1838
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1839
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1840
  moreover
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1841
  have "exp x \<le> ub_exp_horner prec (get_odd n) 1 1 x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1842
  proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1843
    have x_less_zero: "real_of_float x ^ get_odd n \<le> 0"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1844
    proof (cases "real_of_float x = 0")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1845
      case True
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1846
      have "(get_odd n) \<noteq> 0" using get_odd[THEN odd_pos] by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1847
      thus ?thesis unfolding True power_0_left by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1848
    next
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1849
      case False hence "real_of_float x < 0" using \<open>real_of_float x \<le> 0\<close> by auto
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  1850
      show ?thesis by (rule less_imp_le, auto simp add: \<open>real_of_float x < 0\<close>)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1851
    qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1852
    obtain t where "\<bar>t\<bar> \<le> \<bar>real_of_float x\<bar>"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1853
      and "exp x = (\<Sum>m = 0..<get_odd n. (real_of_float x) ^ m / (fact m)) + exp t / (fact (get_odd n)) * (real_of_float x) ^ (get_odd n)"
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  1854
      using Maclaurin_exp_le unfolding atLeast0LessThan by blast
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1855
    moreover have "exp t / (fact (get_odd n)) * (real_of_float x) ^ (get_odd n) \<le> 0"
46545
haftmann
parents: 45481
diff changeset
  1856
      by (auto intro!: mult_nonneg_nonpos divide_nonpos_pos simp add: x_less_zero)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1857
    ultimately have "exp x \<le> (\<Sum>j = 0..<get_odd n. 1 / (fact j) * real_of_float x ^ j)"
56536
aefb4a8da31f made mult_nonneg_nonneg a simp rule
nipkow
parents: 56483
diff changeset
  1858
      using get_odd exp_gt_zero by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1859
    also have "\<dots> \<le> ub_exp_horner prec (get_odd n) 1 1 x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1860
      using bounds(2) by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1861
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1862
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1863
  ultimately show ?thesis by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1864
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1865
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1866
lemma ub_exp_horner_nonneg: "real_of_float x \<le> 0 \<Longrightarrow>
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1867
  0 \<le> real_of_float (ub_exp_horner prec (get_odd n) (Suc 0) (Suc 0) x)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1868
  using bnds_exp_horner[of x prec n]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1869
  by (intro order_trans[OF exp_ge_zero]) auto
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1870
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1871
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1872
subsection "Compute the exponential function on the entire domain"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1873
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1874
function ub_exp :: "nat \<Rightarrow> float \<Rightarrow> float" and lb_exp :: "nat \<Rightarrow> float \<Rightarrow> float" where
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1875
"lb_exp prec x =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1876
  (if 0 < x then float_divl prec 1 (ub_exp prec (-x))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1877
  else
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1878
    let
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1879
      horner = (\<lambda> x. let  y = lb_exp_horner prec (get_even (prec + 2)) 1 1 x in
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1880
        if y \<le> 0 then Float 1 (- 2) else y)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1881
    in
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1882
      if x < - 1 then
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1883
        power_down_fl prec (horner (float_divl prec x (- floor_fl x))) (nat (- int_floor_fl x))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1884
      else horner x)" |
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1885
"ub_exp prec x =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1886
  (if 0 < x then float_divr prec 1 (lb_exp prec (-x))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1887
  else if x < - 1 then
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1888
    power_up_fl prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1889
      (ub_exp_horner prec (get_odd (prec + 2)) 1 1
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1890
        (float_divr prec x (- floor_fl x))) (nat (- int_floor_fl x))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1891
  else ub_exp_horner prec (get_odd (prec + 2)) 1 1 x)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1892
  by pat_completeness auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1893
termination
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1894
  by (relation "measure (\<lambda> v. let (prec, x) = case_sum id id v in (if 0 < x then 1 else 0))") auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1895
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1896
lemma exp_m1_ge_quarter: "(1 / 4 :: real) \<le> exp (- 1)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1897
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1898
  have eq4: "4 = Suc (Suc (Suc (Suc 0)))" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1899
  have "1 / 4 = (Float 1 (- 2))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1900
    unfolding Float_num by auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1901
  also have "\<dots> \<le> lb_exp_horner 3 (get_even 3) 1 1 (- 1)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1902
    by (subst less_eq_float.rep_eq [symmetric]) code_simp
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1903
  also have "\<dots> \<le> exp (- 1 :: float)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1904
    using bnds_exp_horner[where x="- 1"] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1905
  finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1906
    by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1907
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1908
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1909
lemma lb_exp_pos:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1910
  assumes "\<not> 0 < x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1911
  shows "0 < lb_exp prec x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1912
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1913
  let "?lb_horner x" = "lb_exp_horner prec (get_even (prec + 2)) 1 1 x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1914
  let "?horner x" = "let y = ?lb_horner x in if y \<le> 0 then Float 1 (- 2) else y"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1915
  have pos_horner: "0 < ?horner x" for x
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1916
    unfolding Let_def by (cases "?lb_horner x \<le> 0") auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1917
  moreover have "0 < real_of_float ((?horner x) ^ num)" for x :: float and num :: nat
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1918
  proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1919
    have "0 < real_of_float (?horner x) ^ num" using \<open>0 < ?horner x\<close> by simp
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1920
    also have "\<dots> = (?horner x) ^ num" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1921
    finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1922
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1923
  ultimately show ?thesis
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  1924
    unfolding lb_exp.simps if_not_P[OF \<open>\<not> 0 < x\<close>] Let_def
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1925
    by (cases "floor_fl x", cases "x < - 1")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1926
      (auto simp: real_power_up_fl real_power_down_fl intro!: power_up_less power_down_pos)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1927
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1928
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1929
lemma exp_boundaries':
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1930
  assumes "x \<le> 0"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1931
  shows "exp x \<in> { (lb_exp prec x) .. (ub_exp prec x)}"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1932
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1933
  let "?lb_exp_horner x" = "lb_exp_horner prec (get_even (prec + 2)) 1 1 x"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1934
  let "?ub_exp_horner x" = "ub_exp_horner prec (get_odd (prec + 2)) 1 1 x"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1935
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1936
  have "real_of_float x \<le> 0" and "\<not> x > 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1937
    using \<open>x \<le> 0\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1938
  show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1939
  proof (cases "x < - 1")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1940
    case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1941
    hence "- 1 \<le> real_of_float x" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1942
    show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1943
    proof (cases "?lb_exp_horner x \<le> 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1944
      case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1945
      from \<open>\<not> x < - 1\<close>
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1946
      have "- 1 \<le> real_of_float x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1947
      hence "exp (- 1) \<le> exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1948
        unfolding exp_le_cancel_iff .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1949
      from order_trans[OF exp_m1_ge_quarter this] have "Float 1 (- 2) \<le> exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1950
        unfolding Float_num .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1951
      with True show ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1952
        using bnds_exp_horner \<open>real_of_float x \<le> 0\<close> \<open>\<not> x > 0\<close> \<open>\<not> x < - 1\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1953
    next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1954
      case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1955
      thus ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1956
        using bnds_exp_horner \<open>real_of_float x \<le> 0\<close> \<open>\<not> x > 0\<close> \<open>\<not> x < - 1\<close> by (auto simp add: Let_def)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1957
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1958
  next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1959
    case True
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1960
    let ?num = "nat (- int_floor_fl x)"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1961
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1962
    have "real_of_int (int_floor_fl x) < - 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1963
      using int_floor_fl[of x] \<open>x < - 1\<close> by simp
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1964
    hence "real_of_int (int_floor_fl x) < 0" by simp
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1965
    hence "int_floor_fl x < 0" by auto
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1966
    hence "1 \<le> - int_floor_fl x" by auto
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1967
    hence "0 < nat (- int_floor_fl x)" by auto
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1968
    hence "0 < ?num"  by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1969
    hence "real ?num \<noteq> 0" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1970
    have num_eq: "real ?num = - int_floor_fl x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1971
      using \<open>0 < nat (- int_floor_fl x)\<close> by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1972
    have "0 < - int_floor_fl x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1973
      using \<open>0 < ?num\<close>[unfolded of_nat_less_iff[symmetric]] by simp
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1974
    hence "real_of_int (int_floor_fl x) < 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1975
      unfolding less_float_def by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1976
    have fl_eq: "real_of_int (- int_floor_fl x) = real_of_float (- floor_fl x)"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1977
      by (simp add: floor_fl_def int_floor_fl_def)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1978
    from \<open>0 < - int_floor_fl x\<close> have "0 \<le> real_of_float (- floor_fl x)"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1979
      by (simp add: floor_fl_def int_floor_fl_def)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1980
    from \<open>real_of_int (int_floor_fl x) < 0\<close> have "real_of_float (floor_fl x) < 0"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1981
      by (simp add: floor_fl_def int_floor_fl_def)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  1982
    have "exp x \<le> ub_exp prec x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  1983
    proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1984
      have div_less_zero: "real_of_float (float_divr prec x (- floor_fl x)) \<le> 0"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1985
        using float_divr_nonpos_pos_upper_bound[OF \<open>real_of_float x \<le> 0\<close> \<open>0 \<le> real_of_float (- floor_fl x)\<close>]
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  1986
        unfolding less_eq_float_def zero_float.rep_eq .
31809
hoelzl
parents: 31790
diff changeset
  1987
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1988
      have "exp x = exp (?num * (x / ?num))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1989
        using \<open>real ?num \<noteq> 0\<close> by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1990
      also have "\<dots> = exp (x / ?num) ^ ?num"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1991
        unfolding exp_real_of_nat_mult ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1992
      also have "\<dots> \<le> exp (float_divr prec x (- floor_fl x)) ^ ?num"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  1993
        unfolding num_eq fl_eq
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1994
        by (rule power_mono, rule exp_le_cancel_iff[THEN iffD2], rule float_divr) auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1995
      also have "\<dots> \<le> (?ub_exp_horner (float_divr prec x (- floor_fl x))) ^ ?num"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  1996
        unfolding real_of_float_power
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  1997
        by (rule power_mono, rule bnds_exp_horner[OF div_less_zero, unfolded atLeastAtMost_iff, THEN conjunct2], auto)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  1998
      also have "\<dots> \<le> real_of_float (power_up_fl prec (?ub_exp_horner (float_divr prec x (- floor_fl x))) ?num)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  1999
        by (auto simp add: real_power_up_fl intro!: power_up ub_exp_horner_nonneg div_less_zero)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2000
      finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2001
        unfolding ub_exp.simps if_not_P[OF \<open>\<not> 0 < x\<close>] if_P[OF \<open>x < - 1\<close>] floor_fl_def Let_def .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2002
    qed
31809
hoelzl
parents: 31790
diff changeset
  2003
    moreover
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2004
    have "lb_exp prec x \<le> exp x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2005
    proof -
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2006
      let ?divl = "float_divl prec x (- floor_fl x)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2007
      let ?horner = "?lb_exp_horner ?divl"
31809
hoelzl
parents: 31790
diff changeset
  2008
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2009
      show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2010
      proof (cases "?horner \<le> 0")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2011
        case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2012
        hence "0 \<le> real_of_float ?horner" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2013
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2014
        have div_less_zero: "real_of_float (float_divl prec x (- floor_fl x)) \<le> 0"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2015
          using \<open>real_of_float (floor_fl x) < 0\<close> \<open>real_of_float x \<le> 0\<close>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2016
          by (auto intro!: order_trans[OF float_divl] divide_nonpos_neg)
56479
91958d4b30f7 revert c1bbd3e22226, a14831ac3023, and 36489d77c484: divide_minus_left/right are again simp rules
hoelzl
parents: 56410
diff changeset
  2017
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2018
        have "(?lb_exp_horner (float_divl prec x (- floor_fl x))) ^ ?num \<le>
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2019
          exp (float_divl prec x (- floor_fl x)) ^ ?num"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2020
          using \<open>0 \<le> real_of_float ?horner\<close>[unfolded floor_fl_def[symmetric]]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2021
            bnds_exp_horner[OF div_less_zero, unfolded atLeastAtMost_iff, THEN conjunct1]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2022
          by (auto intro!: power_mono)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2023
        also have "\<dots> \<le> exp (x / ?num) ^ ?num"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2024
          unfolding num_eq fl_eq
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  2025
          using float_divl by (auto intro!: power_mono simp del: uminus_float.rep_eq)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2026
        also have "\<dots> = exp (?num * (x / ?num))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2027
          unfolding exp_real_of_nat_mult ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2028
        also have "\<dots> = exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2029
          using \<open>real ?num \<noteq> 0\<close> by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2030
        finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2031
          using False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2032
          unfolding lb_exp.simps if_not_P[OF \<open>\<not> 0 < x\<close>] if_P[OF \<open>x < - 1\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2033
            int_floor_fl_def Let_def if_not_P[OF False]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2034
          by (auto simp: real_power_down_fl intro!: power_down_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2035
      next
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2036
        case True
59741
5b762cd73a8e Lots of new material on complex-valued functions. Modified simplification of (x/n)^k
paulson <lp15@cam.ac.uk>
parents: 59730
diff changeset
  2037
        have "power_down_fl prec (Float 1 (- 2))  ?num \<le> (Float 1 (- 2)) ^ ?num"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2038
          by (metis Float_le_zero_iff less_imp_le linorder_not_less
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2039
            not_numeral_le_zero numeral_One power_down_fl)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2040
        then have "power_down_fl prec (Float 1 (- 2))  ?num \<le> real_of_float (Float 1 (- 2)) ^ ?num"
59741
5b762cd73a8e Lots of new material on complex-valued functions. Modified simplification of (x/n)^k
paulson <lp15@cam.ac.uk>
parents: 59730
diff changeset
  2041
          by simp
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2042
        also
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2043
        have "real_of_float (floor_fl x) \<noteq> 0" and "real_of_float (floor_fl x) \<le> 0"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2044
          using \<open>real_of_float (floor_fl x) < 0\<close> by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2045
        from divide_right_mono_neg[OF floor_fl[of x] \<open>real_of_float (floor_fl x) \<le> 0\<close>, unfolded divide_self[OF \<open>real_of_float (floor_fl x) \<noteq> 0\<close>]]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2046
        have "- 1 \<le> x / (- floor_fl x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2047
          unfolding minus_float.rep_eq by auto
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2048
        from order_trans[OF exp_m1_ge_quarter this[unfolded exp_le_cancel_iff[where x="- 1", symmetric]]]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2049
        have "Float 1 (- 2) \<le> exp (x / (- floor_fl x))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2050
          unfolding Float_num .
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2051
        hence "real_of_float (Float 1 (- 2)) ^ ?num \<le> exp (x / (- floor_fl x)) ^ ?num"
59741
5b762cd73a8e Lots of new material on complex-valued functions. Modified simplification of (x/n)^k
paulson <lp15@cam.ac.uk>
parents: 59730
diff changeset
  2052
          by (metis Float_num(5) power_mono zero_le_divide_1_iff zero_le_numeral)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2053
        also have "\<dots> = exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2054
          unfolding num_eq fl_eq exp_real_of_nat_mult[symmetric]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2055
          using \<open>real_of_float (floor_fl x) \<noteq> 0\<close> by auto
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2056
        finally show ?thesis
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2057
          unfolding lb_exp.simps if_not_P[OF \<open>\<not> 0 < x\<close>] if_P[OF \<open>x < - 1\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2058
            int_floor_fl_def Let_def if_P[OF True] real_of_float_power .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2059
      qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2060
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2061
    ultimately show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2062
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2063
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2064
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2065
lemma exp_boundaries: "exp x \<in> { lb_exp prec x .. ub_exp prec x }"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2066
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2067
  show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2068
  proof (cases "0 < x")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2069
    case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2070
    hence "x \<le> 0" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2071
    from exp_boundaries'[OF this] show ?thesis .
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2072
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2073
    case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2074
    hence "-x \<le> 0" by auto
31809
hoelzl
parents: 31790
diff changeset
  2075
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2076
    have "lb_exp prec x \<le> exp x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2077
    proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2078
      from exp_boundaries'[OF \<open>-x \<le> 0\<close>]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2079
      have ub_exp: "exp (- real_of_float x) \<le> ub_exp prec (-x)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2080
        unfolding atLeastAtMost_iff minus_float.rep_eq by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2081
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2082
      have "float_divl prec 1 (ub_exp prec (-x)) \<le> 1 / ub_exp prec (-x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2083
        using float_divl[where x=1] by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2084
      also have "\<dots> \<le> exp x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2085
        using ub_exp[unfolded inverse_le_iff_le[OF order_less_le_trans[OF exp_gt_zero ub_exp]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2086
          exp_gt_zero, symmetric]]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2087
        unfolding exp_minus nonzero_inverse_inverse_eq[OF exp_not_eq_zero] inverse_eq_divide
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2088
        by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2089
      finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2090
        unfolding lb_exp.simps if_P[OF True] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2091
    qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2092
    moreover
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2093
    have "exp x \<le> ub_exp prec x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2094
    proof -
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2095
      have "\<not> 0 < -x" using \<open>0 < x\<close> by auto
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2096
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2097
      from exp_boundaries'[OF \<open>-x \<le> 0\<close>]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2098
      have lb_exp: "lb_exp prec (-x) \<le> exp (- real_of_float x)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2099
        unfolding atLeastAtMost_iff minus_float.rep_eq by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2100
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2101
      have "exp x \<le> (1 :: float) / lb_exp prec (-x)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2102
        using lb_exp lb_exp_pos[OF \<open>\<not> 0 < -x\<close>, of prec]
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2103
        by (simp del: lb_exp.simps add: exp_minus field_simps)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2104
      also have "\<dots> \<le> float_divr prec 1 (lb_exp prec (-x))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2105
        using float_divr .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2106
      finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2107
        unfolding ub_exp.simps if_P[OF True] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2108
    qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2109
    ultimately show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2110
      by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2111
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2112
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2113
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2114
lemma bnds_exp: "\<forall>(x::real) lx ux. (l, u) =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2115
  (lb_exp prec lx, ub_exp prec ux) \<and> x \<in> {lx .. ux} \<longrightarrow> l \<le> exp x \<and> exp x \<le> u"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2116
proof (rule allI, rule allI, rule allI, rule impI)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2117
  fix x :: real and lx ux
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2118
  assume "(l, u) = (lb_exp prec lx, ub_exp prec ux) \<and> x \<in> {lx .. ux}"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2119
  hence l: "lb_exp prec lx = l " and u: "ub_exp prec ux = u" and x: "x \<in> {lx .. ux}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2120
    by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2121
  show "l \<le> exp x \<and> exp x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2122
  proof
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2123
    show "l \<le> exp x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2124
    proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2125
      from exp_boundaries[of lx prec, unfolded l]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2126
      have "l \<le> exp lx" by (auto simp del: lb_exp.simps)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2127
      also have "\<dots> \<le> exp x" using x by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2128
      finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2129
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2130
    show "exp x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2131
    proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2132
      have "exp x \<le> exp ux" using x by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2133
      also have "\<dots> \<le> u" using exp_boundaries[of ux prec, unfolded u] by (auto simp del: ub_exp.simps)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2134
      finally show ?thesis .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2135
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2136
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2137
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2138
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2139
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2140
section "Logarithm"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2141
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2142
subsection "Compute the logarithm series"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2143
31809
hoelzl
parents: 31790
diff changeset
  2144
fun ub_ln_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2145
and lb_ln_horner :: "nat \<Rightarrow> nat \<Rightarrow> nat \<Rightarrow> float \<Rightarrow> float" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2146
"ub_ln_horner prec 0 i x       = 0" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2147
"ub_ln_horner prec (Suc n) i x = float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2148
    (rapprox_rat prec 1 (int i)) (- float_round_down prec (x * lb_ln_horner prec n (Suc i) x))" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2149
"lb_ln_horner prec 0 i x       = 0" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2150
"lb_ln_horner prec (Suc n) i x = float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2151
    (lapprox_rat prec 1 (int i)) (- float_round_up prec (x * ub_ln_horner prec n (Suc i) x))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2152
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2153
lemma ln_bounds:
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2154
  assumes "0 \<le> x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2155
    and "x < 1"
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2156
  shows "(\<Sum>i=0..<2*n. (- 1) ^ i * (1 / real (i + 1)) * x ^ (Suc i)) \<le> ln (x + 1)" (is "?lb")
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2157
  and "ln (x + 1) \<le> (\<Sum>i=0..<2*n + 1. (- 1) ^ i * (1 / real (i + 1)) * x ^ (Suc i))" (is "?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2158
proof -
30952
7ab2716dd93b power operation on functions with syntax o^; power operation on relations with syntax ^^
haftmann
parents: 30886
diff changeset
  2159
  let "?a n" = "(1/real (n +1)) * x ^ (Suc n)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2160
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2161
  have ln_eq: "(\<Sum> i. (- 1) ^ i * ?a i) = ln (x + 1)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2162
    using ln_series[of "x + 1"] \<open>0 \<le> x\<close> \<open>x < 1\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2163
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2164
  have "norm x < 1" using assms by auto
61969
e01015e49041 more symbols;
wenzelm
parents: 61945
diff changeset
  2165
  have "?a \<longlonglongrightarrow> 0" unfolding Suc_eq_plus1[symmetric] inverse_eq_divide[symmetric]
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2166
    using tendsto_mult[OF LIMSEQ_inverse_real_of_nat LIMSEQ_Suc[OF LIMSEQ_power_zero[OF \<open>norm x < 1\<close>]]] by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2167
  have "0 \<le> ?a n" for n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2168
    by (rule mult_nonneg_nonneg) (auto simp: \<open>0 \<le> x\<close>)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2169
  have "?a (Suc n) \<le> ?a n" for n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2170
    unfolding inverse_eq_divide[symmetric]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2171
  proof (rule mult_mono)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2172
    show "0 \<le> x ^ Suc (Suc n)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2173
      by (auto simp add: \<open>0 \<le> x\<close>)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2174
    have "x ^ Suc (Suc n) \<le> x ^ Suc n * 1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2175
      unfolding power_Suc2 mult.assoc[symmetric]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2176
      by (rule mult_left_mono, fact less_imp_le[OF \<open>x < 1\<close>]) (auto simp: \<open>0 \<le> x\<close>)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2177
    thus "x ^ Suc (Suc n) \<le> x ^ Suc n" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2178
  qed auto
61969
e01015e49041 more symbols;
wenzelm
parents: 61945
diff changeset
  2179
  from summable_Leibniz'(2,4)[OF \<open>?a \<longlonglongrightarrow> 0\<close> \<open>\<And>n. 0 \<le> ?a n\<close>, OF \<open>\<And>n. ?a (Suc n) \<le> ?a n\<close>, unfolded ln_eq]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2180
  show ?lb and ?ub
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2181
    unfolding atLeast0LessThan by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2182
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2183
31809
hoelzl
parents: 31790
diff changeset
  2184
lemma ln_float_bounds:
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2185
  assumes "0 \<le> real_of_float x"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2186
    and "real_of_float x < 1"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2187
  shows "x * lb_ln_horner prec (get_even n) 1 x \<le> ln (x + 1)" (is "?lb \<le> ?ln")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2188
    and "ln (x + 1) \<le> x * ub_ln_horner prec (get_odd n) 1 x" (is "?ln \<le> ?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2189
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2190
  obtain ev where ev: "get_even n = 2 * ev" using get_even_double ..
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2191
  obtain od where od: "get_odd n = 2 * od + 1" using get_odd_double ..
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2192
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2193
  let "?s n" = "(- 1) ^ n * (1 / real (1 + n)) * (real_of_float x)^(Suc n)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2194
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2195
  have "?lb \<le> setsum ?s {0 ..< 2 * ev}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2196
    unfolding power_Suc2 mult.assoc[symmetric] times_float.rep_eq setsum_left_distrib[symmetric]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2197
    unfolding mult.commute[of "real_of_float x"] ev 
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2198
    using horner_bounds(1)[where G="\<lambda> i k. Suc k" and F="\<lambda>x. x" and f="\<lambda>x. x" 
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2199
                    and lb="\<lambda>n i k x. lb_ln_horner prec n k x" 
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2200
                    and ub="\<lambda>n i k x. ub_ln_horner prec n k x" and j'=1 and n="2*ev",
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2201
      OF \<open>0 \<le> real_of_float x\<close> refl lb_ln_horner.simps ub_ln_horner.simps] \<open>0 \<le> real_of_float x\<close>
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2202
    unfolding real_of_float_power
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2203
    by (rule mult_right_mono)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2204
  also have "\<dots> \<le> ?ln"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2205
    using ln_bounds(1)[OF \<open>0 \<le> real_of_float x\<close> \<open>real_of_float x < 1\<close>] by auto
31809
hoelzl
parents: 31790
diff changeset
  2206
  finally show "?lb \<le> ?ln" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2207
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2208
  have "?ln \<le> setsum ?s {0 ..< 2 * od + 1}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2209
    using ln_bounds(2)[OF \<open>0 \<le> real_of_float x\<close> \<open>real_of_float x < 1\<close>] by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2210
  also have "\<dots> \<le> ?ub"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2211
    unfolding power_Suc2 mult.assoc[symmetric] times_float.rep_eq setsum_left_distrib[symmetric]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2212
    unfolding mult.commute[of "real_of_float x"] od
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2213
    using horner_bounds(2)[where G="\<lambda> i k. Suc k" and F="\<lambda>x. x" and f="\<lambda>x. x" and lb="\<lambda>n i k x. lb_ln_horner prec n k x" and ub="\<lambda>n i k x. ub_ln_horner prec n k x" and j'=1 and n="2*od+1",
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2214
      OF \<open>0 \<le> real_of_float x\<close> refl lb_ln_horner.simps ub_ln_horner.simps] \<open>0 \<le> real_of_float x\<close>
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2215
    unfolding real_of_float_power
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2216
    by (rule mult_right_mono)
31809
hoelzl
parents: 31790
diff changeset
  2217
  finally show "?ln \<le> ?ub" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2218
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2219
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2220
lemma ln_add:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2221
  fixes x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2222
  assumes "0 < x" and "0 < y"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2223
  shows "ln (x + y) = ln x + ln (1 + y / x)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2224
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2225
  have "x \<noteq> 0" using assms by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2226
  have "x + y = x * (1 + y / x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2227
    unfolding distrib_left times_divide_eq_right nonzero_mult_divide_cancel_left[OF \<open>x \<noteq> 0\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2228
    by auto
31809
hoelzl
parents: 31790
diff changeset
  2229
  moreover
56541
0e3abadbef39 made divide_pos_pos a simp rule
nipkow
parents: 56536
diff changeset
  2230
  have "0 < y / x" using assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2231
  hence "0 < 1 + y / x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2232
  ultimately show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2233
    using ln_mult assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2234
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2235
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2236
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2237
subsection "Compute the logarithm of 2"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2238
31809
hoelzl
parents: 31790
diff changeset
  2239
definition ub_ln2 where "ub_ln2 prec = (let third = rapprox_rat (max prec 1) 1 3
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2240
                                        in float_plus_up prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2241
                                          ((Float 1 (- 1) * ub_ln_horner prec (get_odd prec) 1 (Float 1 (- 1))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2242
                                           (float_round_up prec (third * ub_ln_horner prec (get_odd prec) 1 third)))"
31809
hoelzl
parents: 31790
diff changeset
  2243
definition lb_ln2 where "lb_ln2 prec = (let third = lapprox_rat prec 1 3
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2244
                                        in float_plus_down prec
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2245
                                          ((Float 1 (- 1) * lb_ln_horner prec (get_even prec) 1 (Float 1 (- 1))))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2246
                                           (float_round_down prec (third * lb_ln_horner prec (get_even prec) 1 third)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2247
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2248
lemma ub_ln2: "ln 2 \<le> ub_ln2 prec" (is "?ub_ln2")
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2249
  and lb_ln2: "lb_ln2 prec \<le> ln 2" (is "?lb_ln2")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2250
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2251
  let ?uthird = "rapprox_rat (max prec 1) 1 3"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2252
  let ?lthird = "lapprox_rat prec 1 3"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2253
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
  2254
  have ln2_sum: "ln 2 = ln (1/2 + 1) + ln (1 / 3 + 1::real)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2255
    using ln_add[of "3 / 2" "1 / 2"] by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2256
  have lb3: "?lthird \<le> 1 / 3" using lapprox_rat[of prec 1 3] by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2257
  hence lb3_ub: "real_of_float ?lthird < 1" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2258
  have lb3_lb: "0 \<le> real_of_float ?lthird" using lapprox_rat_nonneg[of 1 3] by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2259
  have ub3: "1 / 3 \<le> ?uthird" using rapprox_rat[of 1 3] by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2260
  hence ub3_lb: "0 \<le> real_of_float ?uthird" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2261
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2262
  have lb2: "0 \<le> real_of_float (Float 1 (- 1))" and ub2: "real_of_float (Float 1 (- 1)) < 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2263
    unfolding Float_num by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2264
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2265
  have "0 \<le> (1::int)" and "0 < (3::int)" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2266
  have ub3_ub: "real_of_float ?uthird < 1"
58982
27e7e3f9e665 simplified computations based on round_up by reducing to round_down;
immler
parents: 58889
diff changeset
  2267
    by (simp add: Float.compute_rapprox_rat Float.compute_lapprox_rat rapprox_posrat_less1)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2268
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2269
  have third_gt0: "(0 :: real) < 1 / 3 + 1" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2270
  have uthird_gt0: "0 < real_of_float ?uthird + 1" using ub3_lb by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2271
  have lthird_gt0: "0 < real_of_float ?lthird + 1" using lb3_lb by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2272
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2273
  show ?ub_ln2
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2274
    unfolding ub_ln2_def Let_def ln2_sum Float_num(4)[symmetric]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2275
  proof (rule float_plus_up_le, rule add_mono, fact ln_float_bounds(2)[OF lb2 ub2])
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2276
    have "ln (1 / 3 + 1) \<le> ln (real_of_float ?uthird + 1)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2277
      unfolding ln_le_cancel_iff[OF third_gt0 uthird_gt0] using ub3 by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2278
    also have "\<dots> \<le> ?uthird * ub_ln_horner prec (get_odd prec) 1 ?uthird"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2279
      using ln_float_bounds(2)[OF ub3_lb ub3_ub] .
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2280
    also note float_round_up
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2281
    finally show "ln (1 / 3 + 1) \<le> float_round_up prec (?uthird * ub_ln_horner prec (get_odd prec) 1 ?uthird)" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2282
  qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2283
  show ?lb_ln2
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2284
    unfolding lb_ln2_def Let_def ln2_sum Float_num(4)[symmetric]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2285
  proof (rule float_plus_down_le, rule add_mono, fact ln_float_bounds(1)[OF lb2 ub2])
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2286
    have "?lthird * lb_ln_horner prec (get_even prec) 1 ?lthird \<le> ln (real_of_float ?lthird + 1)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2287
      using ln_float_bounds(1)[OF lb3_lb lb3_ub] .
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2288
    note float_round_down_le[OF this]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2289
    also have "\<dots> \<le> ln (1 / 3 + 1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2290
      unfolding ln_le_cancel_iff[OF lthird_gt0 third_gt0]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2291
      using lb3 by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2292
    finally show "float_round_down prec (?lthird * lb_ln_horner prec (get_even prec) 1 ?lthird) \<le>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2293
      ln (1 / 3 + 1)" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2294
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2295
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2296
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2297
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2298
subsection "Compute the logarithm in the entire domain"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2299
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2300
function ub_ln :: "nat \<Rightarrow> float \<Rightarrow> float option" and lb_ln :: "nat \<Rightarrow> float \<Rightarrow> float option" where
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2301
"ub_ln prec x = (if x \<le> 0          then None
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2302
            else if x < 1          then Some (- the (lb_ln prec (float_divl (max prec 1) 1 x)))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2303
            else let horner = \<lambda>x. float_round_up prec (x * ub_ln_horner prec (get_odd prec) 1 x) in
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2304
                 if x \<le> Float 3 (- 1) then Some (horner (x - 1))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2305
            else if x < Float 1 1  then Some (float_round_up prec (horner (Float 1 (- 1)) + horner (x * rapprox_rat prec 2 3 - 1)))
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2306
                                   else let l = bitlen (mantissa x) - 1 in
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2307
                                        Some (float_plus_up prec (float_round_up prec (ub_ln2 prec * (Float (exponent x + l) 0))) (horner (Float (mantissa x) (- l) - 1))))" |
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2308
"lb_ln prec x = (if x \<le> 0          then None
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2309
            else if x < 1          then Some (- the (ub_ln prec (float_divr prec 1 x)))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2310
            else let horner = \<lambda>x. float_round_down prec (x * lb_ln_horner prec (get_even prec) 1 x) in
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2311
                 if x \<le> Float 3 (- 1) then Some (horner (x - 1))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2312
            else if x < Float 1 1  then Some (float_round_down prec (horner (Float 1 (- 1)) +
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2313
                                              horner (max (x * lapprox_rat prec 2 3 - 1) 0)))
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2314
                                   else let l = bitlen (mantissa x) - 1 in
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2315
                                        Some (float_plus_down prec (float_round_down prec (lb_ln2 prec * (Float (exponent x + l) 0))) (horner (Float (mantissa x) (- l) - 1))))"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2316
  by pat_completeness auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2317
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2318
termination
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2319
proof (relation "measure (\<lambda> v. let (prec, x) = case_sum id id v in (if x < 1 then 1 else 0))", auto)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2320
  fix prec and x :: float
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2321
  assume "\<not> real_of_float x \<le> 0" and "real_of_float x < 1" and "real_of_float (float_divl (max prec (Suc 0)) 1 x) < 1"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2322
  hence "0 < real_of_float x" "1 \<le> max prec (Suc 0)" "real_of_float x < 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2323
    by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2324
  from float_divl_pos_less1_bound[OF \<open>0 < real_of_float x\<close> \<open>real_of_float x < 1\<close>[THEN less_imp_le] \<open>1 \<le> max prec (Suc 0)\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2325
  show False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2326
    using \<open>real_of_float (float_divl (max prec (Suc 0)) 1 x) < 1\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2327
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2328
  fix prec x
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2329
  assume "\<not> real_of_float x \<le> 0" and "real_of_float x < 1" and "real_of_float (float_divr prec 1 x) < 1"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2330
  hence "0 < x" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2331
  from float_divr_pos_less1_lower_bound[OF \<open>0 < x\<close>, of prec] \<open>real_of_float x < 1\<close> show False
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2332
    using \<open>real_of_float (float_divr prec 1 x) < 1\<close> by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2333
qed
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2334
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2335
lemma float_pos_eq_mantissa_pos: "x > 0 \<longleftrightarrow> mantissa x > 0"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2336
  apply (subst Float_mantissa_exponent[of x, symmetric])
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
  2337
  apply (auto simp add: zero_less_mult_iff zero_float_def  dest: less_zeroE)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2338
  apply (metis not_le powr_ge_pzero)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2339
  done
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2340
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2341
lemma Float_pos_eq_mantissa_pos: "Float m e > 0 \<longleftrightarrow> m > 0"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2342
  using powr_gt_zero[of 2 "e"]
54269
dcdfec41a325 tuned proofs in Approximation
hoelzl
parents: 54230
diff changeset
  2343
  by (auto simp add: zero_less_mult_iff zero_float_def simp del: powr_gt_zero dest: less_zeroE)
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2344
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2345
lemma Float_representation_aux:
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2346
  fixes m e
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2347
  defines "x \<equiv> Float m e"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2348
  assumes "x > 0"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2349
  shows "Float (exponent x + (bitlen (mantissa x) - 1)) 0 = Float (e + (bitlen m - 1)) 0" (is ?th1)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2350
    and "Float (mantissa x) (- (bitlen (mantissa x) - 1)) = Float m ( - (bitlen m - 1))"  (is ?th2)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2351
proof -
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2352
  from assms have mantissa_pos: "m > 0" "mantissa x > 0"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2353
    using Float_pos_eq_mantissa_pos[of m e] float_pos_eq_mantissa_pos[of x] by simp_all
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2354
  thus ?th1
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2355
    using bitlen_Float[of m e] assms
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2356
    by (auto simp add: zero_less_mult_iff intro!: arg_cong2[where f=Float])
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2357
  have "x \<noteq> float_of 0"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2358
    unfolding zero_float_def[symmetric] using \<open>0 < x\<close> by auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2359
  from denormalize_shift[OF assms(1) this] guess i . note i = this
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2360
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2361
  have "2 powr (1 - (real_of_int (bitlen (mantissa x)) + real_of_int i)) =
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2362
    2 powr (1 - (real_of_int (bitlen (mantissa x)))) * inverse (2 powr (real i))"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2363
    by (simp add: powr_minus[symmetric] powr_add[symmetric] field_simps)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2364
  hence "real_of_int (mantissa x) * 2 powr (1 - real_of_int (bitlen (mantissa x))) =
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2365
    (real_of_int (mantissa x) * 2 ^ i) * 2 powr (1 - real_of_int (bitlen (mantissa x * 2 ^ i)))"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2366
    using \<open>mantissa x > 0\<close> by (simp add: powr_realpow)
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2367
  then show ?th2
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  2368
    unfolding i by transfer auto
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2369
qed
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2370
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2371
lemma compute_ln[code]:
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2372
  fixes m e
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2373
  defines "x \<equiv> Float m e"
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2374
  shows "ub_ln prec x = (if x \<le> 0          then None
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2375
              else if x < 1          then Some (- the (lb_ln prec (float_divl (max prec 1) 1 x)))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2376
            else let horner = \<lambda>x. float_round_up prec (x * ub_ln_horner prec (get_odd prec) 1 x) in
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2377
                 if x \<le> Float 3 (- 1) then Some (horner (x - 1))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2378
            else if x < Float 1 1  then Some (float_round_up prec (horner (Float 1 (- 1)) + horner (x * rapprox_rat prec 2 3 - 1)))
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2379
                                   else let l = bitlen m - 1 in
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2380
                                        Some (float_plus_up prec (float_round_up prec (ub_ln2 prec * (Float (e + l) 0))) (horner (Float m (- l) - 1))))"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2381
    (is ?th1)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2382
  and "lb_ln prec x = (if x \<le> 0          then None
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2383
            else if x < 1          then Some (- the (ub_ln prec (float_divr prec 1 x)))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2384
            else let horner = \<lambda>x. float_round_down prec (x * lb_ln_horner prec (get_even prec) 1 x) in
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2385
                 if x \<le> Float 3 (- 1) then Some (horner (x - 1))
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2386
            else if x < Float 1 1  then Some (float_round_down prec (horner (Float 1 (- 1)) +
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2387
                                              horner (max (x * lapprox_rat prec 2 3 - 1) 0)))
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2388
                                   else let l = bitlen m - 1 in
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2389
                                        Some (float_plus_down prec (float_round_down prec (lb_ln2 prec * (Float (e + l) 0))) (horner (Float m (- l) - 1))))"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2390
    (is ?th2)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2391
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2392
  from assms Float_pos_eq_mantissa_pos have "x > 0 \<Longrightarrow> m > 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2393
    by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2394
  thus ?th1 ?th2
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2395
    using Float_representation_aux[of m e]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2396
    unfolding x_def[symmetric]
61824
dcbe9f756ae0 not_leE -> not_le_imp_less and other tidying
paulson <lp15@cam.ac.uk>
parents: 61649
diff changeset
  2397
    by (auto dest: not_le_imp_less)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2398
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2399
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2400
lemma ln_shifted_float:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2401
  assumes "0 < m"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2402
  shows "ln (Float m e) = ln 2 * (e + (bitlen m - 1)) + ln (Float m (- (bitlen m - 1)))"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2403
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2404
  let ?B = "2^nat (bitlen m - 1)"
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  2405
  define bl where "bl = bitlen m - 1"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2406
  have "0 < real_of_int m" and "\<And>X. (0 :: real) < 2^X" and "0 < (2 :: real)" and "m \<noteq> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2407
    using assms by auto
63248
414e3550e9c0 generalized bitlen to floor of log
immler
parents: 63170
diff changeset
  2408
  hence "0 \<le> bl" by (simp add: bitlen_alt_def bl_def)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2409
  show ?thesis
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2410
  proof (cases "0 \<le> e")
59751
916c0f6c83e3 New material for complex sin, cos, tan, Ln, also some reorganisation
paulson <lp15@cam.ac.uk>
parents: 59741
diff changeset
  2411
    case True
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2412
    thus ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2413
      unfolding bl_def[symmetric] using \<open>0 < real_of_int m\<close> \<open>0 \<le> bl\<close>
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2414
      apply (simp add: ln_mult)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2415
      apply (cases "e=0")
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2416
        apply (cases "bl = 0", simp_all add: powr_minus ln_inverse ln_powr)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2417
        apply (cases "bl = 0", simp_all add: powr_minus ln_inverse ln_powr field_simps)
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2418
      done
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2419
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2420
    case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2421
    hence "0 < -e" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2422
    have lne: "ln (2 powr real_of_int e) = ln (inverse (2 powr - e))"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2423
      by (simp add: powr_minus)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2424
    hence pow_gt0: "(0::real) < 2^nat (-e)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2425
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2426
    hence inv_gt0: "(0::real) < inverse (2^nat (-e))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2427
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2428
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2429
      using False unfolding bl_def[symmetric]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2430
      using \<open>0 < real_of_int m\<close> \<open>0 \<le> bl\<close>
56483
5b82c58b665c generalize ln/log_powr; add log_base_powr/pow
hoelzl
parents: 56479
diff changeset
  2431
      by (auto simp add: lne ln_mult ln_powr ln_div field_simps)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2432
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2433
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2434
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2435
lemma ub_ln_lb_ln_bounds':
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2436
  assumes "1 \<le> x"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2437
  shows "the (lb_ln prec x) \<le> ln x \<and> ln x \<le> the (ub_ln prec x)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2438
    (is "?lb \<le> ?ln \<and> ?ln \<le> ?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2439
proof (cases "x < Float 1 1")
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2440
  case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2441
  hence "real_of_float (x - 1) < 1" and "real_of_float x < 2" by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2442
  have "\<not> x \<le> 0" and "\<not> x < 1" using \<open>1 \<le> x\<close> by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2443
  hence "0 \<le> real_of_float (x - 1)" using \<open>1 \<le> x\<close> by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2444
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2445
  have [simp]: "(Float 3 (- 1)) = 3 / 2" by simp
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2446
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2447
  show ?thesis
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2448
  proof (cases "x \<le> Float 3 (- 1)")
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2449
    case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2450
    show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2451
      unfolding lb_ln.simps
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2452
      unfolding ub_ln.simps Let_def
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2453
      using ln_float_bounds[OF \<open>0 \<le> real_of_float (x - 1)\<close> \<open>real_of_float (x - 1) < 1\<close>, of prec]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2454
        \<open>\<not> x \<le> 0\<close> \<open>\<not> x < 1\<close> True
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2455
      by (auto intro!: float_round_down_le float_round_up_le)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2456
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2457
    case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2458
    hence *: "3 / 2 < x" by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2459
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2460
    with ln_add[of "3 / 2" "x - 3 / 2"]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2461
    have add: "ln x = ln (3 / 2) + ln (real_of_float x * 2 / 3)"
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2462
      by (auto simp add: algebra_simps diff_divide_distrib)
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2463
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2464
    let "?ub_horner x" = "float_round_up prec (x * ub_ln_horner prec (get_odd prec) 1 x)"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2465
    let "?lb_horner x" = "float_round_down prec (x * lb_ln_horner prec (get_even prec) 1 x)"
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2466
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2467
    { have up: "real_of_float (rapprox_rat prec 2 3) \<le> 1"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2468
        by (rule rapprox_rat_le1) simp_all
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2469
      have low: "2 / 3 \<le> rapprox_rat prec 2 3"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2470
        by (rule order_trans[OF _ rapprox_rat]) simp
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2471
      from mult_less_le_imp_less[OF * low] *
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2472
      have pos: "0 < real_of_float (x * rapprox_rat prec 2 3 - 1)" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2473
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2474
      have "ln (real_of_float x * 2/3)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2475
        \<le> ln (real_of_float (x * rapprox_rat prec 2 3 - 1) + 1)"
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2476
      proof (rule ln_le_cancel_iff[symmetric, THEN iffD1])
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2477
        show "real_of_float x * 2 / 3 \<le> real_of_float (x * rapprox_rat prec 2 3 - 1) + 1"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2478
          using * low by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2479
        show "0 < real_of_float x * 2 / 3" using * by simp
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2480
        show "0 < real_of_float (x * rapprox_rat prec 2 3 - 1) + 1" using pos by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2481
      qed
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2482
      also have "\<dots> \<le> ?ub_horner (x * rapprox_rat prec 2 3 - 1)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2483
      proof (rule float_round_up_le, rule ln_float_bounds(2))
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2484
        from mult_less_le_imp_less[OF \<open>real_of_float x < 2\<close> up] low *
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2485
        show "real_of_float (x * rapprox_rat prec 2 3 - 1) < 1" by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2486
        show "0 \<le> real_of_float (x * rapprox_rat prec 2 3 - 1)" using pos by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2487
      qed
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2488
     finally have "ln x \<le> ?ub_horner (Float 1 (-1))
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2489
          + ?ub_horner ((x * rapprox_rat prec 2 3 - 1))"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2490
        using ln_float_bounds(2)[of "Float 1 (- 1)" prec prec] add
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2491
        by (auto intro!: add_mono float_round_up_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2492
      note float_round_up_le[OF this, of prec]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2493
    }
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2494
    moreover
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2495
    { let ?max = "max (x * lapprox_rat prec 2 3 - 1) 0"
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2496
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2497
      have up: "lapprox_rat prec 2 3 \<le> 2/3"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2498
        by (rule order_trans[OF lapprox_rat], simp)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2499
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2500
      have low: "0 \<le> real_of_float (lapprox_rat prec 2 3)"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2501
        using lapprox_rat_nonneg[of 2 3 prec] by simp
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2502
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2503
      have "?lb_horner ?max
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2504
        \<le> ln (real_of_float ?max + 1)"
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2505
      proof (rule float_round_down_le, rule ln_float_bounds(1))
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2506
        from mult_less_le_imp_less[OF \<open>real_of_float x < 2\<close> up] * low
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2507
        show "real_of_float ?max < 1" by (cases "real_of_float (lapprox_rat prec 2 3) = 0",
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2508
          auto simp add: real_of_float_max)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2509
        show "0 \<le> real_of_float ?max" by (auto simp add: real_of_float_max)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2510
      qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2511
      also have "\<dots> \<le> ln (real_of_float x * 2/3)"
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2512
      proof (rule ln_le_cancel_iff[symmetric, THEN iffD1])
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2513
        show "0 < real_of_float ?max + 1" by (auto simp add: real_of_float_max)
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2514
        show "0 < real_of_float x * 2/3" using * by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2515
        show "real_of_float ?max + 1 \<le> real_of_float x * 2/3" using * up
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2516
          by (cases "0 < real_of_float x * real_of_float (lapprox_posrat prec 2 3) - 1",
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2517
              auto simp add: max_def)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2518
      qed
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2519
      finally have "?lb_horner (Float 1 (- 1)) + ?lb_horner ?max \<le> ln x"
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2520
        using ln_float_bounds(1)[of "Float 1 (- 1)" prec prec] add
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2521
        by (auto intro!: add_mono float_round_down_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2522
      note float_round_down_le[OF this, of prec]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2523
    }
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2524
    ultimately
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2525
    show ?thesis unfolding lb_ln.simps unfolding ub_ln.simps Let_def
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2526
      using \<open>\<not> x \<le> 0\<close> \<open>\<not> x < 1\<close> True False by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2527
  qed
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2528
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2529
  case False
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2530
  hence "\<not> x \<le> 0" and "\<not> x < 1" "0 < x" "\<not> x \<le> Float 3 (- 1)"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2531
    using \<open>1 \<le> x\<close> by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2532
  show ?thesis
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2533
  proof -
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  2534
    define m where "m = mantissa x"
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  2535
    define e where "e = exponent x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2536
    from Float_mantissa_exponent[of x] have Float: "x = Float m e"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2537
      by (simp add: m_def e_def)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2538
    let ?s = "Float (e + (bitlen m - 1)) 0"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2539
    let ?x = "Float m (- (bitlen m - 1))"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2540
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2541
    have "0 < m" and "m \<noteq> 0" using \<open>0 < x\<close> Float powr_gt_zero[of 2 e]
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
  2542
      apply (auto simp add: zero_less_mult_iff)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2543
      using not_le powr_ge_pzero apply blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2544
      done
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  2545
    define bl where "bl = bitlen m - 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2546
    hence "bl \<ge> 0"
63248
414e3550e9c0 generalized bitlen to floor of log
immler
parents: 63170
diff changeset
  2547
      using \<open>m > 0\<close> by (simp add: bitlen_alt_def)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2548
    have "1 \<le> Float m e"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2549
      using \<open>1 \<le> x\<close> Float unfolding less_eq_float_def by auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2550
    from bitlen_div[OF \<open>0 < m\<close>] float_gt1_scale[OF \<open>1 \<le> Float m e\<close>] \<open>bl \<ge> 0\<close>
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2551
    have x_bnds: "0 \<le> real_of_float (?x - 1)" "real_of_float (?x - 1) < 1"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2552
      unfolding bl_def[symmetric]
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2553
      by (auto simp: powr_realpow[symmetric] field_simps)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2554
         (auto simp : powr_minus field_simps)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2555
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2556
    {
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2557
      have "float_round_down prec (lb_ln2 prec * ?s) \<le> ln 2 * (e + (bitlen m - 1))"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2558
          (is "real_of_float ?lb2 \<le> _")
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2559
        apply (rule float_round_down_le)
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  2560
        unfolding nat_0 power_0 mult_1_right times_float.rep_eq
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2561
        using lb_ln2[of prec]
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2562
      proof (rule mult_mono)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2563
        from float_gt1_scale[OF \<open>1 \<le> Float m e\<close>]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2564
        show "0 \<le> real_of_float (Float (e + (bitlen m - 1)) 0)" by simp
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2565
      qed auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2566
      moreover
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2567
      from ln_float_bounds(1)[OF x_bnds]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2568
      have "float_round_down prec ((?x - 1) * lb_ln_horner prec (get_even prec) 1 (?x - 1)) \<le> ln ?x" (is "real_of_float ?lb_horner \<le> _")
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2569
        by (auto intro!: float_round_down_le)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2570
      ultimately have "float_plus_down prec ?lb2 ?lb_horner \<le> ln x"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2571
        unfolding Float ln_shifted_float[OF \<open>0 < m\<close>, of e] by (auto intro!: float_plus_down_le)
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2572
    }
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2573
    moreover
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2574
    {
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2575
      from ln_float_bounds(2)[OF x_bnds]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2576
      have "ln ?x \<le> float_round_up prec ((?x - 1) * ub_ln_horner prec (get_odd prec) 1 (?x - 1))"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2577
          (is "_ \<le> real_of_float ?ub_horner")
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2578
        by (auto intro!: float_round_up_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2579
      moreover
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2580
      have "ln 2 * (e + (bitlen m - 1)) \<le> float_round_up prec (ub_ln2 prec * ?s)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2581
          (is "_ \<le> real_of_float ?ub2")
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2582
        apply (rule float_round_up_le)
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  2583
        unfolding nat_0 power_0 mult_1_right times_float.rep_eq
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  2584
        using ub_ln2[of prec]
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2585
      proof (rule mult_mono)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2586
        from float_gt1_scale[OF \<open>1 \<le> Float m e\<close>]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2587
        show "0 \<le> real_of_int (e + (bitlen m - 1))" by auto
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
  2588
        have "0 \<le> ln (2 :: real)" by simp
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2589
        thus "0 \<le> real_of_float (ub_ln2 prec)" using ub_ln2[of prec] by arith
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2590
      qed auto
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2591
      ultimately have "ln x \<le> float_plus_up prec ?ub2 ?ub_horner"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2592
        unfolding Float ln_shifted_float[OF \<open>0 < m\<close>, of e]
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2593
        by (auto intro!: float_plus_up_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2594
    }
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2595
    ultimately show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2596
      unfolding lb_ln.simps
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2597
      unfolding ub_ln.simps
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2598
      unfolding if_not_P[OF \<open>\<not> x \<le> 0\<close>] if_not_P[OF \<open>\<not> x < 1\<close>]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2599
        if_not_P[OF False] if_not_P[OF \<open>\<not> x \<le> Float 3 (- 1)\<close>] Let_def
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2600
      unfolding plus_float.rep_eq e_def[symmetric] m_def[symmetric]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2601
      by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2602
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2603
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2604
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2605
lemma ub_ln_lb_ln_bounds:
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2606
  assumes "0 < x"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2607
  shows "the (lb_ln prec x) \<le> ln x \<and> ln x \<le> the (ub_ln prec x)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2608
    (is "?lb \<le> ?ln \<and> ?ln \<le> ?ub")
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2609
proof (cases "x < 1")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2610
  case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2611
  hence "1 \<le> x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2612
    unfolding less_float_def less_eq_float_def by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2613
  show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2614
    using ub_ln_lb_ln_bounds'[OF \<open>1 \<le> x\<close>] .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2615
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2616
  case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2617
  have "\<not> x \<le> 0" using \<open>0 < x\<close> by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2618
  from True have "real_of_float x \<le> 1" "x \<le> 1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2619
    by simp_all
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2620
  have "0 < real_of_float x" and "real_of_float x \<noteq> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2621
    using \<open>0 < x\<close> by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2622
  hence A: "0 < 1 / real_of_float x" by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2623
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2624
  {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2625
    let ?divl = "float_divl (max prec 1) 1 x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2626
    have A': "1 \<le> ?divl" using float_divl_pos_less1_bound[OF \<open>0 < real_of_float x\<close> \<open>real_of_float x \<le> 1\<close>] by auto
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2627
    hence B: "0 < real_of_float ?divl" by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2628
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2629
    have "ln ?divl \<le> ln (1 / x)" unfolding ln_le_cancel_iff[OF B A] using float_divl[of _ 1 x] by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2630
    hence "ln x \<le> - ln ?divl" unfolding nonzero_inverse_eq_divide[OF \<open>real_of_float x \<noteq> 0\<close>, symmetric] ln_inverse[OF \<open>0 < real_of_float x\<close>] by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2631
    from this ub_ln_lb_ln_bounds'[OF A', THEN conjunct1, THEN le_imp_neg_le]
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  2632
    have "?ln \<le> - the (lb_ln prec ?divl)" unfolding uminus_float.rep_eq by (rule order_trans)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2633
  } moreover
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2634
  {
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2635
    let ?divr = "float_divr prec 1 x"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2636
    have A': "1 \<le> ?divr" using float_divr_pos_less1_lower_bound[OF \<open>0 < x\<close> \<open>x \<le> 1\<close>] unfolding less_eq_float_def less_float_def by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2637
    hence B: "0 < real_of_float ?divr" by auto
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  2638
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2639
    have "ln (1 / x) \<le> ln ?divr" unfolding ln_le_cancel_iff[OF A B] using float_divr[of 1 x] by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2640
    hence "- ln ?divr \<le> ln x" unfolding nonzero_inverse_eq_divide[OF \<open>real_of_float x \<noteq> 0\<close>, symmetric] ln_inverse[OF \<open>0 < real_of_float x\<close>] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2641
    from ub_ln_lb_ln_bounds'[OF A', THEN conjunct2, THEN le_imp_neg_le] this
47601
050718fe6eee use real :: float => real as lifting-morphism so we can directlry use the rep_eq theorems
hoelzl
parents: 47600
diff changeset
  2642
    have "- the (ub_ln prec ?divr) \<le> ?ln" unfolding uminus_float.rep_eq by (rule order_trans)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2643
  }
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2644
  ultimately show ?thesis unfolding lb_ln.simps[where x=x]  ub_ln.simps[where x=x]
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  2645
    unfolding if_not_P[OF \<open>\<not> x \<le> 0\<close>] if_P[OF True] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2646
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2647
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2648
lemma lb_ln:
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2649
  assumes "Some y = lb_ln prec x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2650
  shows "y \<le> ln x" and "0 < real_of_float x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2651
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2652
  have "0 < x"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2653
  proof (rule ccontr)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2654
    assume "\<not> 0 < x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2655
    hence "x \<le> 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2656
      unfolding less_eq_float_def less_float_def by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2657
    thus False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2658
      using assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2659
  qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2660
  thus "0 < real_of_float x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2661
  have "the (lb_ln prec x) \<le> ln x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2662
    using ub_ln_lb_ln_bounds[OF \<open>0 < x\<close>] ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2663
  thus "y \<le> ln x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2664
    unfolding assms[symmetric] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2665
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2666
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2667
lemma ub_ln:
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  2668
  assumes "Some y = ub_ln prec x"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2669
  shows "ln x \<le> y" and "0 < real_of_float x"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2670
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2671
  have "0 < x"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2672
  proof (rule ccontr)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2673
    assume "\<not> 0 < x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2674
    hence "x \<le> 0" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2675
    thus False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2676
      using assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2677
  qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2678
  thus "0 < real_of_float x" by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2679
  have "ln x \<le> the (ub_ln prec x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2680
    using ub_ln_lb_ln_bounds[OF \<open>0 < x\<close>] ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2681
  thus "ln x \<le> y"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2682
    unfolding assms[symmetric] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2683
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2684
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2685
lemma bnds_ln: "\<forall>(x::real) lx ux. (Some l, Some u) =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2686
  (lb_ln prec lx, ub_ln prec ux) \<and> x \<in> {lx .. ux} \<longrightarrow> l \<le> ln x \<and> ln x \<le> u"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2687
proof (rule allI, rule allI, rule allI, rule impI)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2688
  fix x :: real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2689
  fix lx ux
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2690
  assume "(Some l, Some u) = (lb_ln prec lx, ub_ln prec ux) \<and> x \<in> {lx .. ux}"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2691
  hence l: "Some l = lb_ln prec lx " and u: "Some u = ub_ln prec ux" and x: "x \<in> {lx .. ux}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2692
    by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2693
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2694
  have "ln ux \<le> u" and "0 < real_of_float ux"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2695
    using ub_ln u by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2696
  have "l \<le> ln lx" and "0 < real_of_float lx" and "0 < x"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2697
    using lb_ln[OF l] x by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2698
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2699
  from ln_le_cancel_iff[OF \<open>0 < real_of_float lx\<close> \<open>0 < x\<close>] \<open>l \<le> ln lx\<close>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2700
  have "l \<le> ln x"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2701
    using x unfolding atLeastAtMost_iff by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2702
  moreover
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2703
  from ln_le_cancel_iff[OF \<open>0 < x\<close> \<open>0 < real_of_float ux\<close>] \<open>ln ux \<le> real_of_float u\<close>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2704
  have "ln x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2705
    using x unfolding atLeastAtMost_iff by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2706
  ultimately show "l \<le> ln x \<and> ln x \<le> u" ..
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2707
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2708
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2709
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2710
section \<open>Real power function\<close>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2711
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2712
definition bnds_powr :: "nat \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> (float \<times> float) option" where
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2713
  "bnds_powr prec l1 u1 l2 u2 = (
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2714
     if l1 = 0 \<and> u1 = 0 then
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2715
       Some (0, 0)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2716
     else if l1 = 0 \<and> l2 \<ge> 1 then
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2717
       let uln = the (ub_ln prec u1)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2718
       in  Some (0, ub_exp prec (float_round_up prec (uln * (if uln \<ge> 0 then u2 else l2))))
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2719
     else if l1 \<le> 0 then
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2720
       None
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2721
     else
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2722
       Some (map_bnds lb_exp ub_exp prec 
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2723
               (bnds_mult prec (the (lb_ln prec l1)) (the (ub_ln prec u1)) l2 u2)))"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2724
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2725
lemmas [simp del] = lb_exp.simps ub_exp.simps
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2726
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2727
lemma mono_exp_real: "mono (exp :: real \<Rightarrow> real)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2728
  by (auto simp: mono_def)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2729
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2730
lemma ub_exp_nonneg: "real_of_float (ub_exp prec x) \<ge> 0"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2731
proof -
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2732
  have "0 \<le> exp (real_of_float x)" by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2733
  also from exp_boundaries[of x prec] 
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2734
    have "\<dots> \<le> real_of_float (ub_exp prec x)" by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2735
  finally show ?thesis .
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2736
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2737
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2738
lemma bnds_powr:
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2739
  assumes lu: "Some (l, u) = bnds_powr prec l1 u1 l2 u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2740
  assumes x: "x \<in> {real_of_float l1..real_of_float u1}"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2741
  assumes y: "y \<in> {real_of_float l2..real_of_float u2}"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2742
  shows   "x powr y \<in> {real_of_float l..real_of_float u}"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2743
proof -
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2744
  consider "l1 = 0" "u1 = 0" | "l1 = 0" "u1 \<noteq> 0" "l2 \<ge> 1" | 
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2745
           "l1 \<le> 0" "\<not>(l1 = 0 \<and> (u1 = 0 \<or> l2 \<ge> 1))" | "l1 > 0" by force
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2746
  thus ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2747
  proof cases
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2748
    assume "l1 = 0" "u1 = 0"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2749
    with x lu show ?thesis by (auto simp: bnds_powr_def)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2750
  next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2751
    assume A: "l1 = 0" "u1 \<noteq> 0" "l2 \<ge> 1"
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  2752
    define uln where "uln = the (ub_ln prec u1)"
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2753
    show ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2754
    proof (cases "x = 0")
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2755
      case False
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2756
      with A x y have "x powr y = exp (ln x * y)" by (simp add: powr_def)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2757
      also {
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2758
        from A x False have "ln x \<le> ln (real_of_float u1)" by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2759
        also from ub_ln_lb_ln_bounds[of u1 prec] A y x False
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2760
          have "ln (real_of_float u1) \<le> real_of_float uln" by (simp add: uln_def del: lb_ln.simps)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2761
        also from A x y have "\<dots> * y \<le> real_of_float uln * (if uln \<ge> 0 then u2 else l2)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2762
          by (auto intro: mult_left_mono mult_left_mono_neg)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2763
        also have "\<dots> \<le> real_of_float (float_round_up prec (uln * (if uln \<ge> 0 then u2 else l2)))"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2764
          by (simp add: float_round_up_le)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2765
        finally have "ln x * y \<le> \<dots>" using A y by - simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2766
      }
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2767
      also have "exp (real_of_float (float_round_up prec (uln * (if uln \<ge> 0 then u2 else l2)))) \<le>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2768
                   real_of_float (ub_exp prec (float_round_up prec
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2769
                       (uln * (if uln \<ge> 0 then u2 else l2))))"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2770
        using exp_boundaries by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2771
      finally show ?thesis using A x y lu 
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2772
        by (simp add: bnds_powr_def uln_def Let_def del: lb_ln.simps ub_ln.simps)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2773
    qed (insert x y lu A, simp_all add: bnds_powr_def Let_def ub_exp_nonneg
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2774
                                   del: lb_ln.simps ub_ln.simps)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2775
  next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2776
    assume "l1 \<le> 0" "\<not>(l1 = 0 \<and> (u1 = 0 \<or> l2 \<ge> 1))"
62390
842917225d56 more canonical names
nipkow
parents: 62200
diff changeset
  2777
    with lu show ?thesis by (simp add: bnds_powr_def split: if_split_asm)
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2778
  next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2779
    assume l1: "l1 > 0"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2780
    obtain lm um where lmum:
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2781
      "(lm, um) = bnds_mult prec (the (lb_ln prec l1)) (the (ub_ln prec u1)) l2 u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2782
      by (cases "bnds_mult prec (the (lb_ln prec l1)) (the (ub_ln prec u1)) l2 u2") simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2783
    with l1 have "(l, u) = map_bnds lb_exp ub_exp prec (lm, um)"
62390
842917225d56 more canonical names
nipkow
parents: 62200
diff changeset
  2784
      using lu by (simp add: bnds_powr_def del: lb_ln.simps ub_ln.simps split: if_split_asm)
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2785
    hence "exp (ln x * y) \<in> {real_of_float l..real_of_float u}"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2786
    proof (rule map_bnds[OF _ mono_exp_real], goal_cases)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2787
      case 1
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2788
      let ?lln = "the (lb_ln prec l1)" and ?uln = "the (ub_ln prec u1)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2789
      from ub_ln_lb_ln_bounds[of l1 prec] ub_ln_lb_ln_bounds[of u1 prec] x l1
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2790
        have "real_of_float ?lln \<le> ln (real_of_float l1) \<and> 
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2791
              ln (real_of_float u1) \<le> real_of_float ?uln"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2792
        by (auto simp del: lb_ln.simps ub_ln.simps)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2793
      moreover from l1 x have "ln (real_of_float l1) \<le> ln x \<and> ln x \<le> ln (real_of_float u1)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2794
        by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2795
      ultimately have ln: "real_of_float ?lln \<le> ln x \<and> ln x \<le> real_of_float ?uln" by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2796
      from lmum show ?case
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2797
        by (rule bnds_mult) (insert y ln, simp_all)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2798
    qed (insert exp_boundaries[of lm prec] exp_boundaries[of um prec], simp_all)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2799
    with x l1 show ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2800
      by (simp add: powr_def mult_ac)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2801
  qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2802
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2803
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2804
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2805
section "Implement floatarith"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2806
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2807
subsection "Define syntax and semantics"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2808
58310
91ea607a34d8 updated news
blanchet
parents: 58249
diff changeset
  2809
datatype floatarith
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2810
  = Add floatarith floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2811
  | Minus floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2812
  | Mult floatarith floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2813
  | Inverse floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2814
  | Cos floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2815
  | Arctan floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2816
  | Abs floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2817
  | Max floatarith floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2818
  | Min floatarith floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2819
  | Pi
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2820
  | Sqrt floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2821
  | Exp floatarith
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2822
  | Powr floatarith floatarith
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2823
  | Ln floatarith
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2824
  | Power floatarith nat
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2825
  | Floor floatarith
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  2826
  | Var nat
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2827
  | Num float
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2828
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  2829
fun interpret_floatarith :: "floatarith \<Rightarrow> real list \<Rightarrow> real" where
31098
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2830
"interpret_floatarith (Add a b) vs   = (interpret_floatarith a vs) + (interpret_floatarith b vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2831
"interpret_floatarith (Minus a) vs    = - (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2832
"interpret_floatarith (Mult a b) vs   = (interpret_floatarith a vs) * (interpret_floatarith b vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2833
"interpret_floatarith (Inverse a) vs  = inverse (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2834
"interpret_floatarith (Cos a) vs      = cos (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2835
"interpret_floatarith (Arctan a) vs   = arctan (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2836
"interpret_floatarith (Min a b) vs    = min (interpret_floatarith a vs) (interpret_floatarith b vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2837
"interpret_floatarith (Max a b) vs    = max (interpret_floatarith a vs) (interpret_floatarith b vs)" |
61945
1135b8de26c3 more symbols;
wenzelm
parents: 61824
diff changeset
  2838
"interpret_floatarith (Abs a) vs      = \<bar>interpret_floatarith a vs\<bar>" |
31098
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2839
"interpret_floatarith Pi vs           = pi" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2840
"interpret_floatarith (Sqrt a) vs     = sqrt (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2841
"interpret_floatarith (Exp a) vs      = exp (interpret_floatarith a vs)" |
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2842
"interpret_floatarith (Powr a b) vs   = interpret_floatarith a vs powr interpret_floatarith b vs" |
31098
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2843
"interpret_floatarith (Ln a) vs       = ln (interpret_floatarith a vs)" |
73dd67adf90a replaced Ifloat => real_of_float and real, renamed ApproxEq => inequality, uneq => interpret_inequality, uneq' => approx_inequality, Ifloatarith => interpret_floatarith
hoelzl
parents: 30971
diff changeset
  2844
"interpret_floatarith (Power a n) vs  = (interpret_floatarith a vs)^n" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2845
"interpret_floatarith (Floor a) vs      = floor (interpret_floatarith a vs)" |
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  2846
"interpret_floatarith (Num f) vs      = f" |
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  2847
"interpret_floatarith (Var n) vs     = vs ! n"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2848
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2849
lemma interpret_floatarith_divide:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2850
  "interpret_floatarith (Mult a (Inverse b)) vs =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2851
    (interpret_floatarith a vs) / (interpret_floatarith b vs)"
36778
739a9379e29b avoid using real-specific versions of generic lemmas
huffman
parents: 36531
diff changeset
  2852
  unfolding divide_inverse interpret_floatarith.simps ..
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2853
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2854
lemma interpret_floatarith_diff:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2855
  "interpret_floatarith (Add a (Minus b)) vs =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2856
    (interpret_floatarith a vs) - (interpret_floatarith b vs)"
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  2857
  unfolding interpret_floatarith.simps by simp
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2858
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2859
lemma interpret_floatarith_sin:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2860
  "interpret_floatarith (Cos (Add (Mult Pi (Num (Float 1 (- 1)))) (Minus a))) vs =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2861
    sin (interpret_floatarith a vs)"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2862
  unfolding sin_cos_eq interpret_floatarith.simps
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2863
    interpret_floatarith_divide interpret_floatarith_diff
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2864
  by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2865
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2866
lemma interpret_floatarith_tan:
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  2867
  "interpret_floatarith (Mult (Cos (Add (Mult Pi (Num (Float 1 (- 1)))) (Minus a))) (Inverse (Cos a))) vs =
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2868
     tan (interpret_floatarith a vs)"
36778
739a9379e29b avoid using real-specific versions of generic lemmas
huffman
parents: 36531
diff changeset
  2869
  unfolding interpret_floatarith.simps(3,4) interpret_floatarith_sin tan_def divide_inverse
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2870
  by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2871
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2872
lemma interpret_floatarith_log:
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2873
  "interpret_floatarith ((Mult (Ln x) (Inverse (Ln b)))) vs =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2874
    log (interpret_floatarith b vs) (interpret_floatarith x vs)"
36778
739a9379e29b avoid using real-specific versions of generic lemmas
huffman
parents: 36531
diff changeset
  2875
  unfolding log_def interpret_floatarith.simps divide_inverse ..
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2876
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2877
lemma interpret_floatarith_num:
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2878
  shows "interpret_floatarith (Num (Float 0 0)) vs = 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2879
    and "interpret_floatarith (Num (Float 1 0)) vs = 1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2880
    and "interpret_floatarith (Num (Float (- 1) 0)) vs = - 1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2881
    and "interpret_floatarith (Num (Float (numeral a) 0)) vs = numeral a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2882
    and "interpret_floatarith (Num (Float (- numeral a) 0)) vs = - numeral a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2883
  by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2884
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2885
lemma interpret_floatarith_ceiling:
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2886
  "interpret_floatarith (Minus (Floor (Minus a))) vs = ceiling (interpret_floatarith a vs)"
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2887
  unfolding ceiling_def interpret_floatarith.simps of_int_minus ..
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2888
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2889
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2890
subsection "Implement approximation function"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2891
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2892
fun lift_bin :: "(float * float) option \<Rightarrow> (float * float) option \<Rightarrow> (float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> (float * float) option) \<Rightarrow> (float * float) option" where
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2893
"lift_bin (Some (l1, u1)) (Some (l2, u2)) f = f l1 u1 l2 u2" |
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2894
"lift_bin a b f = None"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2895
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2896
fun lift_bin' :: "(float * float) option \<Rightarrow> (float * float) option \<Rightarrow> (float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> float \<Rightarrow> (float * float)) \<Rightarrow> (float * float) option" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2897
"lift_bin' (Some (l1, u1)) (Some (l2, u2)) f = Some (f l1 u1 l2 u2)" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2898
"lift_bin' a b f = None"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2899
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2900
fun lift_un :: "(float * float) option \<Rightarrow> (float \<Rightarrow> float \<Rightarrow> ((float option) * (float option))) \<Rightarrow> (float * float) option" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2901
"lift_un (Some (l1, u1)) f = (case (f l1 u1) of (Some l, Some u) \<Rightarrow> Some (l, u)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2902
                                             | t \<Rightarrow> None)" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2903
"lift_un b f = None"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2904
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2905
fun lift_un' :: "(float * float) option \<Rightarrow> (float \<Rightarrow> float \<Rightarrow> (float * float)) \<Rightarrow> (float * float) option" where
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2906
"lift_un' (Some (l1, u1)) f = Some (f l1 u1)" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2907
"lift_un' b f = None"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2908
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2909
definition bounded_by :: "real list \<Rightarrow> (float \<times> float) option list \<Rightarrow> bool" where 
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2910
  "bounded_by xs vs \<longleftrightarrow>
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2911
  (\<forall> i < length vs. case vs ! i of None \<Rightarrow> True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2912
         | Some (l, u) \<Rightarrow> xs ! i \<in> { real_of_float l .. real_of_float u })"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2913
                                                                     
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2914
lemma bounded_byE:
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2915
  assumes "bounded_by xs vs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2916
  shows "\<And> i. i < length vs \<Longrightarrow> case vs ! i of None \<Rightarrow> True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2917
         | Some (l, u) \<Rightarrow> xs ! i \<in> { real_of_float l .. real_of_float u }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2918
  using assms bounded_by_def by blast
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2919
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2920
lemma bounded_by_update:
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2921
  assumes "bounded_by xs vs"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2922
    and bnd: "xs ! i \<in> { real_of_float l .. real_of_float u }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2923
  shows "bounded_by xs (vs[i := Some (l,u)])"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2924
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2925
  {
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2926
    fix j
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2927
    let ?vs = "vs[i := Some (l,u)]"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2928
    assume "j < length ?vs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2929
    hence [simp]: "j < length vs" by simp
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  2930
    have "case ?vs ! j of None \<Rightarrow> True | Some (l, u) \<Rightarrow> xs ! j \<in> { real_of_float l .. real_of_float u }"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2931
    proof (cases "?vs ! j")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2932
      case (Some b)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2933
      thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2934
      proof (cases "i = j")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2935
        case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2936
        thus ?thesis using \<open>?vs ! j = Some b\<close> and bnd by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2937
      next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2938
        case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2939
        thus ?thesis using \<open>bounded_by xs vs\<close> unfolding bounded_by_def by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2940
      qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2941
    qed auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2942
  }
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2943
  thus ?thesis unfolding bounded_by_def by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2944
qed
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2945
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  2946
lemma bounded_by_None: "bounded_by xs (replicate (length xs) None)"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2947
  unfolding bounded_by_def by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2948
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  2949
fun approx approx' :: "nat \<Rightarrow> floatarith \<Rightarrow> (float * float) option list \<Rightarrow> (float * float) option" where
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  2950
"approx' prec a bs          = (case (approx prec a bs) of Some (l, u) \<Rightarrow> Some (float_round_down prec l, float_round_up prec u) | None \<Rightarrow> None)" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2951
"approx prec (Add a b) bs   =
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2952
  lift_bin' (approx' prec a bs) (approx' prec b bs)
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2953
    (\<lambda> l1 u1 l2 u2. (float_plus_down prec l1 l2, float_plus_up prec u1 u2))" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2954
"approx prec (Minus a) bs   = lift_un' (approx' prec a bs) (\<lambda> l u. (-u, -l))" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2955
"approx prec (Mult a b) bs  =
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2956
  lift_bin' (approx' prec a bs) (approx' prec b bs) (bnds_mult prec)" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2957
"approx prec (Inverse a) bs = lift_un (approx' prec a bs) (\<lambda> l u. if (0 < l \<or> u < 0) then (Some (float_divl prec 1 u), Some (float_divr prec 1 l)) else (None, None))" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2958
"approx prec (Cos a) bs     = lift_un' (approx' prec a bs) (bnds_cos prec)" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2959
"approx prec Pi bs          = Some (lb_pi prec, ub_pi prec)" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2960
"approx prec (Min a b) bs   = lift_bin' (approx' prec a bs) (approx' prec b bs) (\<lambda> l1 u1 l2 u2. (min l1 l2, min u1 u2))" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2961
"approx prec (Max a b) bs   = lift_bin' (approx' prec a bs) (approx' prec b bs) (\<lambda> l1 u1 l2 u2. (max l1 l2, max u1 u2))" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2962
"approx prec (Abs a) bs     = lift_un' (approx' prec a bs) (\<lambda>l u. (if l < 0 \<and> 0 < u then 0 else min \<bar>l\<bar> \<bar>u\<bar>, max \<bar>l\<bar> \<bar>u\<bar>))" |
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2963
"approx prec (Arctan a) bs  = lift_un' (approx' prec a bs) (\<lambda> l u. (lb_arctan prec l, ub_arctan prec u))" |
31467
f7d2aa438bee Approximation: Implemented argument reduction for cosine. Sinus is now implemented in terms of cosine. Sqrt computes on the entire real numbers
hoelzl
parents: 31148
diff changeset
  2964
"approx prec (Sqrt a) bs    = lift_un' (approx' prec a bs) (\<lambda> l u. (lb_sqrt prec l, ub_sqrt prec u))" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2965
"approx prec (Exp a) bs     = lift_un' (approx' prec a bs) (\<lambda> l u. (lb_exp prec l, ub_exp prec u))" |
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2966
"approx prec (Powr a b) bs  = lift_bin (approx' prec a bs) (approx' prec b bs) (bnds_powr prec)" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2967
"approx prec (Ln a) bs      = lift_un (approx' prec a bs) (\<lambda> l u. (lb_ln prec l, ub_ln prec u))" |
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  2968
"approx prec (Power a n) bs = lift_un' (approx' prec a bs) (float_power_bnds prec n)" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  2969
"approx prec (Floor a) bs = lift_un' (approx' prec a bs) (\<lambda> l u. (floor_fl l, floor_fl u))" |
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2970
"approx prec (Num f) bs     = Some (f, f)" |
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  2971
"approx prec (Var i) bs    = (if i < length bs then bs ! i else None)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  2972
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2973
lemma approx_approx':
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2974
  assumes Pa: "\<And>l u. Some (l, u) = approx prec a vs \<Longrightarrow>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2975
      l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2976
    and approx': "Some (l, u) = approx' prec a vs"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2977
  shows "l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2978
proof -
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2979
  obtain l' u' where S: "Some (l', u') = approx prec a vs"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2980
    using approx' unfolding approx'.simps by (cases "approx prec a vs") auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2981
  have l': "l = float_round_down prec l'" and u': "u = float_round_up prec u'"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2982
    using approx' unfolding approx'.simps S[symmetric] by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2983
  show ?thesis unfolding l' u'
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2984
    using order_trans[OF Pa[OF S, THEN conjunct2] float_round_up[of u']]
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2985
    using order_trans[OF float_round_down[of _ l'] Pa[OF S, THEN conjunct1]] by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2986
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2987
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2988
lemma lift_bin_ex:
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2989
  assumes lift_bin_Some: "Some (l, u) = lift_bin a b f"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2990
  shows "\<exists> l1 u1 l2 u2. Some (l1, u1) = a \<and> Some (l2, u2) = b"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2991
proof (cases a)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2992
  case None
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2993
  hence "None = lift_bin a b f"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2994
    unfolding None lift_bin.simps ..
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2995
  thus ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2996
    using lift_bin_Some by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2997
next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2998
  case (Some a')
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  2999
  show ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3000
  proof (cases b)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3001
    case None
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3002
    hence "None = lift_bin a b f"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3003
      unfolding None lift_bin.simps ..
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3004
    thus ?thesis using lift_bin_Some by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3005
  next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3006
    case (Some b')
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3007
    obtain la ua where a': "a' = (la, ua)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3008
      by (cases a') auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3009
    obtain lb ub where b': "b' = (lb, ub)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3010
      by (cases b') auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3011
    thus ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3012
      unfolding \<open>a = Some a'\<close> \<open>b = Some b'\<close> a' b' by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3013
  qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3014
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3015
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3016
lemma lift_bin_f:
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3017
  assumes lift_bin_Some: "Some (l, u) = lift_bin (g a) (g b) f"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3018
    and Pa: "\<And>l u. Some (l, u) = g a \<Longrightarrow> P l u a"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3019
    and Pb: "\<And>l u. Some (l, u) = g b \<Longrightarrow> P l u b"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3020
  shows "\<exists> l1 u1 l2 u2. P l1 u1 a \<and> P l2 u2 b \<and> Some (l, u) = f l1 u1 l2 u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3021
proof -
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3022
  obtain l1 u1 l2 u2
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3023
    where Sa: "Some (l1, u1) = g a"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3024
      and Sb: "Some (l2, u2) = g b"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3025
    using lift_bin_ex[OF assms(1)] by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3026
  have lu: "Some (l, u) = f l1 u1 l2 u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3027
    using lift_bin_Some[unfolded Sa[symmetric] Sb[symmetric] lift_bin.simps] by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3028
  thus ?thesis
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3029
    using Pa[OF Sa] Pb[OF Sb] by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3030
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3031
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3032
lemma lift_bin:
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3033
  assumes lift_bin_Some: "Some (l, u) = lift_bin (approx' prec a bs) (approx' prec b bs) f"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3034
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3035
      real_of_float l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> real_of_float u" (is "\<And>l u. _ = ?g a \<Longrightarrow> ?P l u a")
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3036
    and Pb: "\<And>l u. Some (l, u) = approx prec b bs \<Longrightarrow>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3037
      real_of_float l \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> real_of_float u"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3038
  shows "\<exists>l1 u1 l2 u2. (real_of_float l1 \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> real_of_float u1) \<and>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3039
                       (real_of_float l2 \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> real_of_float u2) \<and>
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3040
                       Some (l, u) = (f l1 u1 l2 u2)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3041
proof -
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3042
  { fix l u assume "Some (l, u) = approx' prec a bs"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3043
    with approx_approx'[of prec a bs, OF _ this] Pa
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3044
    have "l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u" by auto } note Pa = this
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3045
  { fix l u assume "Some (l, u) = approx' prec b bs"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3046
    with approx_approx'[of prec b bs, OF _ this] Pb
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3047
    have "l \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> u" by auto } note Pb = this
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3048
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3049
  from lift_bin_f[where g="\<lambda>a. approx' prec a bs" and P = ?P, OF lift_bin_Some, OF Pa Pb]
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3050
  show ?thesis by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3051
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3052
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3053
lemma lift_bin'_ex:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3054
  assumes lift_bin'_Some: "Some (l, u) = lift_bin' a b f"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3055
  shows "\<exists> l1 u1 l2 u2. Some (l1, u1) = a \<and> Some (l2, u2) = b"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3056
proof (cases a)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3057
  case None
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3058
  hence "None = lift_bin' a b f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3059
    unfolding None lift_bin'.simps ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3060
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3061
    using lift_bin'_Some by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3062
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3063
  case (Some a')
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3064
  show ?thesis
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3065
  proof (cases b)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3066
    case None
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3067
    hence "None = lift_bin' a b f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3068
      unfolding None lift_bin'.simps ..
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3069
    thus ?thesis using lift_bin'_Some by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3070
  next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3071
    case (Some b')
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3072
    obtain la ua where a': "a' = (la, ua)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3073
      by (cases a') auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3074
    obtain lb ub where b': "b' = (lb, ub)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3075
      by (cases b') auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3076
    thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3077
      unfolding \<open>a = Some a'\<close> \<open>b = Some b'\<close> a' b' by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3078
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3079
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3080
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3081
lemma lift_bin'_f:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3082
  assumes lift_bin'_Some: "Some (l, u) = lift_bin' (g a) (g b) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3083
    and Pa: "\<And>l u. Some (l, u) = g a \<Longrightarrow> P l u a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3084
    and Pb: "\<And>l u. Some (l, u) = g b \<Longrightarrow> P l u b"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3085
  shows "\<exists> l1 u1 l2 u2. P l1 u1 a \<and> P l2 u2 b \<and> l = fst (f l1 u1 l2 u2) \<and> u = snd (f l1 u1 l2 u2)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3086
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3087
  obtain l1 u1 l2 u2
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3088
    where Sa: "Some (l1, u1) = g a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3089
      and Sb: "Some (l2, u2) = g b"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3090
    using lift_bin'_ex[OF assms(1)] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3091
  have lu: "(l, u) = f l1 u1 l2 u2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3092
    using lift_bin'_Some[unfolded Sa[symmetric] Sb[symmetric] lift_bin'.simps] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3093
  have "l = fst (f l1 u1 l2 u2)" and "u = snd (f l1 u1 l2 u2)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3094
    unfolding lu[symmetric] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3095
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3096
    using Pa[OF Sa] Pb[OF Sb] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3097
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3098
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3099
lemma lift_bin':
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3100
  assumes lift_bin'_Some: "Some (l, u) = lift_bin' (approx' prec a bs) (approx' prec b bs) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3101
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3102
      l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u" (is "\<And>l u. _ = ?g a \<Longrightarrow> ?P l u a")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3103
    and Pb: "\<And>l u. Some (l, u) = approx prec b bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3104
      l \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3105
  shows "\<exists>l1 u1 l2 u2. (l1 \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u1) \<and>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3106
                       (l2 \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> u2) \<and>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3107
                       l = fst (f l1 u1 l2 u2) \<and> u = snd (f l1 u1 l2 u2)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3108
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3109
  { fix l u assume "Some (l, u) = approx' prec a bs"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3110
    with approx_approx'[of prec a bs, OF _ this] Pa
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3111
    have "l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u" by auto } note Pa = this
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3112
  { fix l u assume "Some (l, u) = approx' prec b bs"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3113
    with approx_approx'[of prec b bs, OF _ this] Pb
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3114
    have "l \<le> interpret_floatarith b xs \<and> interpret_floatarith b xs \<le> u" by auto } note Pb = this
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3115
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3116
  from lift_bin'_f[where g="\<lambda>a. approx' prec a bs" and P = ?P, OF lift_bin'_Some, OF Pa Pb]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3117
  show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3118
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3119
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3120
lemma lift_un'_ex:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3121
  assumes lift_un'_Some: "Some (l, u) = lift_un' a f"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3122
  shows "\<exists> l u. Some (l, u) = a"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3123
proof (cases a)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3124
  case None
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3125
  hence "None = lift_un' a f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3126
    unfolding None lift_un'.simps ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3127
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3128
    using lift_un'_Some by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3129
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3130
  case (Some a')
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3131
  obtain la ua where a': "a' = (la, ua)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3132
    by (cases a') auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3133
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3134
    unfolding \<open>a = Some a'\<close> a' by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3135
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3136
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3137
lemma lift_un'_f:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3138
  assumes lift_un'_Some: "Some (l, u) = lift_un' (g a) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3139
    and Pa: "\<And>l u. Some (l, u) = g a \<Longrightarrow> P l u a"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3140
  shows "\<exists> l1 u1. P l1 u1 a \<and> l = fst (f l1 u1) \<and> u = snd (f l1 u1)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3141
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3142
  obtain l1 u1 where Sa: "Some (l1, u1) = g a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3143
    using lift_un'_ex[OF assms(1)] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3144
  have lu: "(l, u) = f l1 u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3145
    using lift_un'_Some[unfolded Sa[symmetric] lift_un'.simps] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3146
  have "l = fst (f l1 u1)" and "u = snd (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3147
    unfolding lu[symmetric] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3148
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3149
    using Pa[OF Sa] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3150
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3151
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3152
lemma lift_un':
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3153
  assumes lift_un'_Some: "Some (l, u) = lift_un' (approx' prec a bs) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3154
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3155
      l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3156
      (is "\<And>l u. _ = ?g a \<Longrightarrow> ?P l u a")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3157
  shows "\<exists>l1 u1. (l1 \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u1) \<and>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3158
    l = fst (f l1 u1) \<and> u = snd (f l1 u1)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3159
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3160
  have Pa: "l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3161
    if "Some (l, u) = approx' prec a bs" for l u
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3162
    using approx_approx'[of prec a bs, OF _ that] Pa
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3163
     by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3164
  from lift_un'_f[where g="\<lambda>a. approx' prec a bs" and P = ?P, OF lift_un'_Some, OF Pa]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3165
  show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3166
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3167
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3168
lemma lift_un'_bnds:
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3169
  assumes bnds: "\<forall> (x::real) lx ux. (l, u) = f lx ux \<and> x \<in> { lx .. ux } \<longrightarrow> l \<le> f' x \<and> f' x \<le> u"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3170
    and lift_un'_Some: "Some (l, u) = lift_un' (approx' prec a bs) f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3171
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3172
      l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3173
  shows "real_of_float l \<le> f' (interpret_floatarith a xs) \<and> f' (interpret_floatarith a xs) \<le> real_of_float u"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3174
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3175
  from lift_un'[OF lift_un'_Some Pa]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3176
  obtain l1 u1 where "l1 \<le> interpret_floatarith a xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3177
    and "interpret_floatarith a xs \<le> u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3178
    and "l = fst (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3179
    and "u = snd (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3180
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3181
  hence "(l, u) = f l1 u1" and "interpret_floatarith a xs \<in> {l1 .. u1}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3182
    by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3183
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3184
    using bnds by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3185
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3186
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3187
lemma lift_un_ex:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3188
  assumes lift_un_Some: "Some (l, u) = lift_un a f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3189
  shows "\<exists>l u. Some (l, u) = a"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3190
proof (cases a)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3191
  case None
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3192
  hence "None = lift_un a f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3193
    unfolding None lift_un.simps ..
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3194
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3195
    using lift_un_Some by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3196
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3197
  case (Some a')
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3198
  obtain la ua where a': "a' = (la, ua)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3199
    by (cases a') auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3200
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3201
    unfolding \<open>a = Some a'\<close> a' by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3202
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3203
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3204
lemma lift_un_f:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3205
  assumes lift_un_Some: "Some (l, u) = lift_un (g a) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3206
    and Pa: "\<And>l u. Some (l, u) = g a \<Longrightarrow> P l u a"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3207
  shows "\<exists> l1 u1. P l1 u1 a \<and> Some l = fst (f l1 u1) \<and> Some u = snd (f l1 u1)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3208
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3209
  obtain l1 u1 where Sa: "Some (l1, u1) = g a"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3210
    using lift_un_ex[OF assms(1)] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3211
  have "fst (f l1 u1) \<noteq> None \<and> snd (f l1 u1) \<noteq> None"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3212
  proof (rule ccontr)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3213
    assume "\<not> (fst (f l1 u1) \<noteq> None \<and> snd (f l1 u1) \<noteq> None)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3214
    hence or: "fst (f l1 u1) = None \<or> snd (f l1 u1) = None" by auto
31809
hoelzl
parents: 31790
diff changeset
  3215
    hence "lift_un (g a) f = None"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3216
    proof (cases "fst (f l1 u1) = None")
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3217
      case True
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3218
      then obtain b where b: "f l1 u1 = (None, b)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3219
        by (cases "f l1 u1") auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3220
      thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3221
        unfolding Sa[symmetric] lift_un.simps b by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3222
    next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3223
      case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3224
      hence "snd (f l1 u1) = None"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3225
        using or by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3226
      with False obtain b where b: "f l1 u1 = (Some b, None)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3227
        by (cases "f l1 u1") auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3228
      thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3229
        unfolding Sa[symmetric] lift_un.simps b by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3230
    qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3231
    thus False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3232
      using lift_un_Some by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3233
  qed
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3234
  then obtain a' b' where f: "f l1 u1 = (Some a', Some b')"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3235
    by (cases "f l1 u1") auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3236
  from lift_un_Some[unfolded Sa[symmetric] lift_un.simps f]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3237
  have "Some l = fst (f l1 u1)" and "Some u = snd (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3238
    unfolding f by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3239
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3240
    unfolding Sa[symmetric] lift_un.simps using Pa[OF Sa] by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3241
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3242
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3243
lemma lift_un:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3244
  assumes lift_un_Some: "Some (l, u) = lift_un (approx' prec a bs) f"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3245
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3246
        l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3247
      (is "\<And>l u. _ = ?g a \<Longrightarrow> ?P l u a")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3248
  shows "\<exists>l1 u1. (l1 \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u1) \<and>
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3249
                  Some l = fst (f l1 u1) \<and> Some u = snd (f l1 u1)"
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3250
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3251
  have Pa: "l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3252
    if "Some (l, u) = approx' prec a bs" for l u
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3253
    using approx_approx'[of prec a bs, OF _ that] Pa by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3254
  from lift_un_f[where g="\<lambda>a. approx' prec a bs" and P = ?P, OF lift_un_Some, OF Pa]
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3255
  show ?thesis by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3256
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3257
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3258
lemma lift_un_bnds:
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3259
  assumes bnds: "\<forall>(x::real) lx ux. (Some l, Some u) = f lx ux \<and> x \<in> { lx .. ux } \<longrightarrow> l \<le> f' x \<and> f' x \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3260
    and lift_un_Some: "Some (l, u) = lift_un (approx' prec a bs) f"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3261
    and Pa: "\<And>l u. Some (l, u) = approx prec a bs \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3262
      l \<le> interpret_floatarith a xs \<and> interpret_floatarith a xs \<le> u"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3263
  shows "real_of_float l \<le> f' (interpret_floatarith a xs) \<and> f' (interpret_floatarith a xs) \<le> real_of_float u"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3264
proof -
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3265
  from lift_un[OF lift_un_Some Pa]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3266
  obtain l1 u1 where "l1 \<le> interpret_floatarith a xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3267
    and "interpret_floatarith a xs \<le> u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3268
    and "Some l = fst (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3269
    and "Some u = snd (f l1 u1)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3270
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3271
  hence "(Some l, Some u) = f l1 u1" and "interpret_floatarith a xs \<in> {l1 .. u1}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3272
    by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3273
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3274
    using bnds by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3275
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3276
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3277
lemma approx:
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3278
  assumes "bounded_by xs vs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3279
    and "Some (l, u) = approx prec arith vs" (is "_ = ?g arith")
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3280
  shows "l \<le> interpret_floatarith arith xs \<and> interpret_floatarith arith xs \<le> u" (is "?P l u arith")
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3281
  using \<open>Some (l, u) = approx prec arith vs\<close>
45129
1fce03e3e8ad tuned proofs -- eliminated vacuous "induct arbitrary: ..." situations;
wenzelm
parents: 44821
diff changeset
  3282
proof (induct arith arbitrary: l u)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3283
  case (Add a b)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3284
  from lift_bin'[OF Add.prems[unfolded approx.simps]] Add.hyps
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3285
  obtain l1 u1 l2 u2 where "l = float_plus_down prec l1 l2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3286
    and "u = float_plus_up prec u1 u2" "l1 \<le> interpret_floatarith a xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3287
    and "interpret_floatarith a xs \<le> u1" "l2 \<le> interpret_floatarith b xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3288
    and "interpret_floatarith b xs \<le> u2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3289
    unfolding fst_conv snd_conv by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3290
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3291
    unfolding interpret_floatarith.simps by (auto intro!: float_plus_up_le float_plus_down_le)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3292
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3293
  case (Minus a)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3294
  from lift_un'[OF Minus.prems[unfolded approx.simps]] Minus.hyps
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3295
  obtain l1 u1 where "l = -u1" "u = -l1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3296
    and "l1 \<le> interpret_floatarith a xs" "interpret_floatarith a xs \<le> u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3297
    unfolding fst_conv snd_conv by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3298
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3299
    unfolding interpret_floatarith.simps using minus_float.rep_eq by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3300
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3301
  case (Mult a b)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3302
  from lift_bin'[OF Mult.prems[unfolded approx.simps]] Mult.hyps
31809
hoelzl
parents: 31790
diff changeset
  3303
  obtain l1 u1 l2 u2
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3304
    where l: "l = fst (bnds_mult prec l1 u1 l2 u2)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3305
    and u: "u = snd (bnds_mult prec l1 u1 l2 u2)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3306
    and a: "l1 \<le> interpret_floatarith a xs" "interpret_floatarith a xs \<le> u1"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3307
    and b: "l2 \<le> interpret_floatarith b xs" "interpret_floatarith b xs \<le> u2" unfolding fst_conv snd_conv by blast
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3308
  from l u have lu: "(l, u) = bnds_mult prec l1 u1 l2 u2" by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3309
  from bnds_mult[OF lu] a b show ?case by simp
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3310
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3311
  case (Inverse a)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3312
  from lift_un[OF Inverse.prems[unfolded approx.simps], unfolded if_distrib[of fst] if_distrib[of snd] fst_conv snd_conv] Inverse.hyps
31809
hoelzl
parents: 31790
diff changeset
  3313
  obtain l1 u1 where l': "Some l = (if 0 < l1 \<or> u1 < 0 then Some (float_divl prec 1 u1) else None)"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3314
    and u': "Some u = (if 0 < l1 \<or> u1 < 0 then Some (float_divr prec 1 l1) else None)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3315
    and l1: "l1 \<le> interpret_floatarith a xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3316
    and u1: "interpret_floatarith a xs \<le> u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3317
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3318
  have either: "0 < l1 \<or> u1 < 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3319
  proof (rule ccontr)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3320
    assume P: "\<not> (0 < l1 \<or> u1 < 0)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3321
    show False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3322
      using l' unfolding if_not_P[OF P] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3323
  qed
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3324
  moreover have l1_le_u1: "real_of_float l1 \<le> real_of_float u1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3325
    using l1 u1 by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3326
  ultimately have "real_of_float l1 \<noteq> 0" and "real_of_float u1 \<noteq> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3327
    by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3328
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3329
  have inv: "inverse u1 \<le> inverse (interpret_floatarith a xs)
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3330
           \<and> inverse (interpret_floatarith a xs) \<le> inverse l1"
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3331
  proof (cases "0 < l1")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3332
    case True
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3333
    hence "0 < real_of_float u1" and "0 < real_of_float l1" "0 < interpret_floatarith a xs"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  3334
      using l1_le_u1 l1 by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3335
    show ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3336
      unfolding inverse_le_iff_le[OF \<open>0 < real_of_float u1\<close> \<open>0 < interpret_floatarith a xs\<close>]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3337
        inverse_le_iff_le[OF \<open>0 < interpret_floatarith a xs\<close> \<open>0 < real_of_float l1\<close>]
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3338
      using l1 u1 by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3339
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3340
    case False
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3341
    hence "u1 < 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3342
      using either by blast
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3343
    hence "real_of_float u1 < 0" and "real_of_float l1 < 0" "interpret_floatarith a xs < 0"
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  3344
      using l1_le_u1 u1 by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3345
    show ?thesis
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3346
      unfolding inverse_le_iff_le_neg[OF \<open>real_of_float u1 < 0\<close> \<open>interpret_floatarith a xs < 0\<close>]
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3347
        inverse_le_iff_le_neg[OF \<open>interpret_floatarith a xs < 0\<close> \<open>real_of_float l1 < 0\<close>]
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3348
      using l1 u1 by auto
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3349
  qed
31468
b8267feaf342 Approximation: Corrected precision of ln on all real values
hoelzl
parents: 31467
diff changeset
  3350
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3351
  from l' have "l = float_divl prec 1 u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3352
    by (cases "0 < l1 \<or> u1 < 0") auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3353
  hence "l \<le> inverse u1"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3354
    unfolding nonzero_inverse_eq_divide[OF \<open>real_of_float u1 \<noteq> 0\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3355
    using float_divl[of prec 1 u1] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3356
  also have "\<dots> \<le> inverse (interpret_floatarith a xs)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3357
    using inv by auto
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3358
  finally have "l \<le> inverse (interpret_floatarith a xs)" .
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3359
  moreover
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3360
  from u' have "u = float_divr prec 1 l1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3361
    by (cases "0 < l1 \<or> u1 < 0") auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3362
  hence "inverse l1 \<le> u"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3363
    unfolding nonzero_inverse_eq_divide[OF \<open>real_of_float l1 \<noteq> 0\<close>]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3364
    using float_divr[of 1 l1 prec] by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3365
  hence "inverse (interpret_floatarith a xs) \<le> u"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3366
    by (rule order_trans[OF inv[THEN conjunct2]])
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3367
  ultimately show ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3368
    unfolding interpret_floatarith.simps using l1 u1 by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3369
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3370
  case (Abs x)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3371
  from lift_un'[OF Abs.prems[unfolded approx.simps], unfolded fst_conv snd_conv] Abs.hyps
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3372
  obtain l1 u1 where l': "l = (if l1 < 0 \<and> 0 < u1 then 0 else min \<bar>l1\<bar> \<bar>u1\<bar>)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3373
    and u': "u = max \<bar>l1\<bar> \<bar>u1\<bar>"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3374
    and l1: "l1 \<le> interpret_floatarith x xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3375
    and u1: "interpret_floatarith x xs \<le> u1"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3376
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3377
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3378
    unfolding l' u'
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3379
    by (cases "l1 < 0 \<and> 0 < u1") (auto simp add: real_of_float_min real_of_float_max)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3380
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3381
  case (Min a b)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3382
  from lift_bin'[OF Min.prems[unfolded approx.simps], unfolded fst_conv snd_conv] Min.hyps
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3383
  obtain l1 u1 l2 u2 where l': "l = min l1 l2" and u': "u = min u1 u2"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3384
    and l1: "l1 \<le> interpret_floatarith a xs" and u1: "interpret_floatarith a xs \<le> u1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3385
    and l1: "l2 \<le> interpret_floatarith b xs" and u1: "interpret_floatarith b xs \<le> u2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3386
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3387
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3388
    unfolding l' u' by (auto simp add: real_of_float_min)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3389
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3390
  case (Max a b)
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3391
  from lift_bin'[OF Max.prems[unfolded approx.simps], unfolded fst_conv snd_conv] Max.hyps
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3392
  obtain l1 u1 l2 u2 where l': "l = max l1 l2" and u': "u = max u1 u2"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3393
    and l1: "l1 \<le> interpret_floatarith a xs" and u1: "interpret_floatarith a xs \<le> u1"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3394
    and l1: "l2 \<le> interpret_floatarith b xs" and u1: "interpret_floatarith b xs \<le> u2"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3395
    by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3396
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3397
    unfolding l' u' by (auto simp add: real_of_float_max)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3398
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3399
  case (Cos a)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3400
  with lift_un'_bnds[OF bnds_cos] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3401
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3402
  case (Arctan a)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3403
  with lift_un'_bnds[OF bnds_arctan] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3404
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3405
  case Pi
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3406
  with pi_boundaries show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3407
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3408
  case (Sqrt a)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3409
  with lift_un'_bnds[OF bnds_sqrt] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3410
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3411
  case (Exp a)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3412
  with lift_un'_bnds[OF bnds_exp] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3413
next
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3414
  case (Powr a b)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3415
  from lift_bin[OF Powr.prems[unfolded approx.simps]] Powr.hyps
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3416
    obtain l1 u1 l2 u2 where lu: "Some (l, u) = bnds_powr prec l1 u1 l2 u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3417
      and l1: "l1 \<le> interpret_floatarith a xs" and u1: "interpret_floatarith a xs \<le> u1"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3418
      and l2: "l2 \<le> interpret_floatarith b xs" and u2: "interpret_floatarith b xs \<le> u2"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3419
      by blast
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3420
  from bnds_powr[OF lu] l1 u1 l2 u2
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3421
    show ?case by simp
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3422
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3423
  case (Ln a)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3424
  with lift_un_bnds[OF bnds_ln] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3425
next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3426
  case (Power a n)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3427
  with lift_un'_bnds[OF bnds_power] show ?case by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3428
next
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3429
  case (Floor a)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3430
  from lift_un'[OF Floor.prems[unfolded approx.simps] Floor.hyps]
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3431
  show ?case by (auto simp: floor_fl.rep_eq floor_mono)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3432
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3433
  case (Num f)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3434
  thus ?case by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3435
next
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3436
  case (Var n)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3437
  from this[symmetric] \<open>bounded_by xs vs\<close>[THEN bounded_byE, of n]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3438
  show ?case by (cases "n < length vs") auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3439
qed
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3440
58310
91ea607a34d8 updated news
blanchet
parents: 58249
diff changeset
  3441
datatype form = Bound floatarith floatarith floatarith form
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3442
              | Assign floatarith floatarith form
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3443
              | Less floatarith floatarith
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3444
              | LessEqual floatarith floatarith
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3445
              | AtLeastAtMost floatarith floatarith floatarith
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3446
              | Conj form form
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3447
              | Disj form form
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3448
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3449
fun interpret_form :: "form \<Rightarrow> real list \<Rightarrow> bool" where
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3450
"interpret_form (Bound x a b f) vs = (interpret_floatarith x vs \<in> { interpret_floatarith a vs .. interpret_floatarith b vs } \<longrightarrow> interpret_form f vs)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3451
"interpret_form (Assign x a f) vs  = (interpret_floatarith x vs = interpret_floatarith a vs \<longrightarrow> interpret_form f vs)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3452
"interpret_form (Less a b) vs      = (interpret_floatarith a vs < interpret_floatarith b vs)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3453
"interpret_form (LessEqual a b) vs = (interpret_floatarith a vs \<le> interpret_floatarith b vs)" |
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3454
"interpret_form (AtLeastAtMost x a b) vs = (interpret_floatarith x vs \<in> { interpret_floatarith a vs .. interpret_floatarith b vs })" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3455
"interpret_form (Conj f g) vs \<longleftrightarrow> interpret_form f vs \<and> interpret_form g vs" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3456
"interpret_form (Disj f g) vs \<longleftrightarrow> interpret_form f vs \<or> interpret_form g vs"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3457
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3458
fun approx_form' and approx_form :: "nat \<Rightarrow> form \<Rightarrow> (float * float) option list \<Rightarrow> nat list \<Rightarrow> bool" where
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3459
"approx_form' prec f 0 n l u bs ss = approx_form prec f (bs[n := Some (l, u)]) ss" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3460
"approx_form' prec f (Suc s) n l u bs ss =
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  3461
  (let m = (l + u) * Float 1 (- 1)
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3462
   in (if approx_form' prec f s n l m bs ss then approx_form' prec f s n m u bs ss else False))" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3463
"approx_form prec (Bound (Var n) a b f) bs ss =
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3464
   (case (approx prec a bs, approx prec b bs)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3465
   of (Some (l, _), Some (_, u)) \<Rightarrow> approx_form' prec f (ss ! n) n l u bs ss
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3466
    | _ \<Rightarrow> False)" |
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3467
"approx_form prec (Assign (Var n) a f) bs ss =
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3468
   (case (approx prec a bs)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3469
   of (Some (l, u)) \<Rightarrow> approx_form' prec f (ss ! n) n l u bs ss
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3470
    | _ \<Rightarrow> False)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3471
"approx_form prec (Less a b) bs ss =
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3472
   (case (approx prec a bs, approx prec b bs)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3473
   of (Some (l, u), Some (l', u')) \<Rightarrow> float_plus_up prec u (-l') < 0
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3474
    | _ \<Rightarrow> False)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3475
"approx_form prec (LessEqual a b) bs ss =
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3476
   (case (approx prec a bs, approx prec b bs)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3477
   of (Some (l, u), Some (l', u')) \<Rightarrow> float_plus_up prec u (-l') \<le> 0
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3478
    | _ \<Rightarrow> False)" |
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3479
"approx_form prec (AtLeastAtMost x a b) bs ss =
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3480
   (case (approx prec x bs, approx prec a bs, approx prec b bs)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3481
   of (Some (lx, ux), Some (l, u), Some (l', u')) \<Rightarrow> float_plus_up prec u (-lx) \<le> 0 \<and> float_plus_up prec ux (-l') \<le> 0
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3482
    | _ \<Rightarrow> False)" |
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3483
"approx_form prec (Conj a b) bs ss \<longleftrightarrow> approx_form prec a bs ss \<and> approx_form prec b bs ss" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3484
"approx_form prec (Disj a b) bs ss \<longleftrightarrow> approx_form prec a bs ss \<or> approx_form prec b bs ss" |
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3485
"approx_form _ _ _ _ = False"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3486
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3487
lemma lazy_conj: "(if A then B else False) = (A \<and> B)" by simp
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3488
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3489
lemma approx_form_approx_form':
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3490
  assumes "approx_form' prec f s n l u bs ss"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3491
    and "(x::real) \<in> { l .. u }"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3492
  obtains l' u' where "x \<in> { l' .. u' }"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3493
    and "approx_form prec f (bs[n := Some (l', u')]) ss"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3494
using assms proof (induct s arbitrary: l u)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3495
  case 0
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3496
  from this(1)[of l u] this(2,3)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3497
  show thesis by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3498
next
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3499
  case (Suc s)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3500
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  3501
  let ?m = "(l + u) * Float 1 (- 1)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3502
  have "real_of_float l \<le> ?m" and "?m \<le> real_of_float u"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  3503
    unfolding less_eq_float_def using Suc.prems by auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3504
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3505
  with \<open>x \<in> { l .. u }\<close>
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3506
  have "x \<in> { l .. ?m} \<or> x \<in> { ?m .. u }" by auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3507
  thus thesis
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3508
  proof (rule disjE)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3509
    assume *: "x \<in> { l .. ?m }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3510
    with Suc.hyps[OF _ _ *] Suc.prems
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3511
    show thesis by (simp add: Let_def lazy_conj)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3512
  next
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3513
    assume *: "x \<in> { ?m .. u }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3514
    with Suc.hyps[OF _ _ *] Suc.prems
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3515
    show thesis by (simp add: Let_def lazy_conj)
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3516
  qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3517
qed
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3518
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3519
lemma approx_form_aux:
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3520
  assumes "approx_form prec f vs ss"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3521
    and "bounded_by xs vs"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3522
  shows "interpret_form f xs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3523
using assms proof (induct f arbitrary: vs)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3524
  case (Bound x a b f)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3525
  then obtain n
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3526
    where x_eq: "x = Var n" by (cases x) auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3527
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3528
  with Bound.prems obtain l u' l' u
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3529
    where l_eq: "Some (l, u') = approx prec a vs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3530
    and u_eq: "Some (l', u) = approx prec b vs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3531
    and approx_form': "approx_form' prec f (ss ! n) n l u vs ss"
37411
c88c44156083 removed simplifier congruence rule of "prod_case"
haftmann
parents: 37391
diff changeset
  3532
    by (cases "approx prec a vs", simp) (cases "approx prec b vs", auto)
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3533
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3534
  have "interpret_form f xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3535
    if "xs ! n \<in> { interpret_floatarith a xs .. interpret_floatarith b xs }"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3536
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3537
    from approx[OF Bound.prems(2) l_eq] and approx[OF Bound.prems(2) u_eq] that
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3538
    have "xs ! n \<in> { l .. u}" by auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3539
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3540
    from approx_form_approx_form'[OF approx_form' this]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3541
    obtain lx ux where bnds: "xs ! n \<in> { lx .. ux }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3542
      and approx_form: "approx_form prec f (vs[n := Some (lx, ux)]) ss" .
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3543
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3544
    from \<open>bounded_by xs vs\<close> bnds have "bounded_by xs (vs[n := Some (lx, ux)])"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3545
      by (rule bounded_by_update)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3546
    with Bound.hyps[OF approx_form] show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3547
      by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3548
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3549
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3550
    using interpret_form.simps x_eq and interpret_floatarith.simps by simp
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3551
next
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3552
  case (Assign x a f)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3553
  then obtain n where x_eq: "x = Var n"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3554
    by (cases x) auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3555
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  3556
  with Assign.prems obtain l u
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3557
    where bnd_eq: "Some (l, u) = approx prec a vs"
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3558
    and x_eq: "x = Var n"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3559
    and approx_form': "approx_form' prec f (ss ! n) n l u vs ss"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3560
    by (cases "approx prec a vs") auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3561
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3562
  have "interpret_form f xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3563
    if bnds: "xs ! n = interpret_floatarith a xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3564
  proof -
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3565
    from approx[OF Assign.prems(2) bnd_eq] bnds
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3566
    have "xs ! n \<in> { l .. u}" by auto
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3567
    from approx_form_approx_form'[OF approx_form' this]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3568
    obtain lx ux where bnds: "xs ! n \<in> { lx .. ux }"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3569
      and approx_form: "approx_form prec f (vs[n := Some (lx, ux)]) ss" .
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3570
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3571
    from \<open>bounded_by xs vs\<close> bnds have "bounded_by xs (vs[n := Some (lx, ux)])"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3572
      by (rule bounded_by_update)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3573
    with Assign.hyps[OF approx_form] show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3574
      by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3575
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3576
  thus ?case
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3577
    using interpret_form.simps x_eq and interpret_floatarith.simps by simp
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3578
next
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3579
  case (Less a b)
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3580
  then obtain l u l' u'
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3581
    where l_eq: "Some (l, u) = approx prec a vs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3582
      and u_eq: "Some (l', u') = approx prec b vs"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3583
      and inequality: "real_of_float (float_plus_up prec u (-l')) < 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3584
    by (cases "approx prec a vs", auto, cases "approx prec b vs", auto)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3585
  from le_less_trans[OF float_plus_up inequality]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3586
    approx[OF Less.prems(2) l_eq] approx[OF Less.prems(2) u_eq]
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3587
  show ?case by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3588
next
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3589
  case (LessEqual a b)
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3590
  then obtain l u l' u'
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3591
    where l_eq: "Some (l, u) = approx prec a vs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3592
      and u_eq: "Some (l', u') = approx prec b vs"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3593
      and inequality: "real_of_float (float_plus_up prec u (-l')) \<le> 0"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3594
    by (cases "approx prec a vs", auto, cases "approx prec b vs", auto)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3595
  from order_trans[OF float_plus_up inequality]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3596
    approx[OF LessEqual.prems(2) l_eq] approx[OF LessEqual.prems(2) u_eq]
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3597
  show ?case by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3598
next
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3599
  case (AtLeastAtMost x a b)
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3600
  then obtain lx ux l u l' u'
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3601
    where x_eq: "Some (lx, ux) = approx prec x vs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3602
    and l_eq: "Some (l, u) = approx prec a vs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3603
    and u_eq: "Some (l', u') = approx prec b vs"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3604
    and inequality: "real_of_float (float_plus_up prec u (-lx)) \<le> 0" "real_of_float (float_plus_up prec ux (-l')) \<le> 0"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3605
    by (cases "approx prec x vs", auto,
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3606
      cases "approx prec a vs", auto,
56073
29e308b56d23 enhanced simplifier solver for preconditions of rewrite rule, can now deal with conjunctions
nipkow
parents: 55506
diff changeset
  3607
      cases "approx prec b vs", auto)
58985
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3608
  from order_trans[OF float_plus_up inequality(1)] order_trans[OF float_plus_up inequality(2)]
bf498e0af9e3 truncate intermediate results in horner to improve performance of approximate;
immler
parents: 58982
diff changeset
  3609
    approx[OF AtLeastAtMost.prems(2) l_eq] approx[OF AtLeastAtMost.prems(2) u_eq] approx[OF AtLeastAtMost.prems(2) x_eq]
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3610
  show ?case by auto
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  3611
qed auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3612
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3613
lemma approx_form:
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3614
  assumes "n = length xs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3615
    and "approx_form prec f (replicate n None) ss"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3616
  shows "interpret_form f xs"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  3617
  using approx_form_aux[OF _ bounded_by_None] assms by auto
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  3618
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3619
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3620
subsection \<open>Implementing Taylor series expansion\<close>
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3621
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3622
fun isDERIV :: "nat \<Rightarrow> floatarith \<Rightarrow> real list \<Rightarrow> bool" where
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3623
"isDERIV x (Add a b) vs         = (isDERIV x a vs \<and> isDERIV x b vs)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3624
"isDERIV x (Mult a b) vs        = (isDERIV x a vs \<and> isDERIV x b vs)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3625
"isDERIV x (Minus a) vs         = isDERIV x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3626
"isDERIV x (Inverse a) vs       = (isDERIV x a vs \<and> interpret_floatarith a vs \<noteq> 0)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3627
"isDERIV x (Cos a) vs           = isDERIV x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3628
"isDERIV x (Arctan a) vs        = isDERIV x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3629
"isDERIV x (Min a b) vs         = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3630
"isDERIV x (Max a b) vs         = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3631
"isDERIV x (Abs a) vs           = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3632
"isDERIV x Pi vs                = True" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3633
"isDERIV x (Sqrt a) vs          = (isDERIV x a vs \<and> interpret_floatarith a vs > 0)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3634
"isDERIV x (Exp a) vs           = isDERIV x a vs" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3635
"isDERIV x (Powr a b) vs        =
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3636
    (isDERIV x a vs \<and> isDERIV x b vs \<and> interpret_floatarith a vs > 0)" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3637
"isDERIV x (Ln a) vs            = (isDERIV x a vs \<and> interpret_floatarith a vs > 0)" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3638
"isDERIV x (Floor a) vs         = (isDERIV x a vs \<and> interpret_floatarith a vs \<notin> \<int>)" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3639
"isDERIV x (Power a 0) vs       = True" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3640
"isDERIV x (Power a (Suc n)) vs = isDERIV x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3641
"isDERIV x (Num f) vs           = True" |
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3642
"isDERIV x (Var n) vs          = True"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3643
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3644
fun DERIV_floatarith :: "nat \<Rightarrow> floatarith \<Rightarrow> floatarith" where
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3645
"DERIV_floatarith x (Add a b)         = Add (DERIV_floatarith x a) (DERIV_floatarith x b)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3646
"DERIV_floatarith x (Mult a b)        = Add (Mult a (DERIV_floatarith x b)) (Mult (DERIV_floatarith x a) b)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3647
"DERIV_floatarith x (Minus a)         = Minus (DERIV_floatarith x a)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3648
"DERIV_floatarith x (Inverse a)       = Minus (Mult (DERIV_floatarith x a) (Inverse (Power a 2)))" |
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  3649
"DERIV_floatarith x (Cos a)           = Minus (Mult (Cos (Add (Mult Pi (Num (Float 1 (- 1)))) (Minus a))) (DERIV_floatarith x a))" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3650
"DERIV_floatarith x (Arctan a)        = Mult (Inverse (Add (Num 1) (Power a 2))) (DERIV_floatarith x a)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3651
"DERIV_floatarith x (Min a b)         = Num 0" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3652
"DERIV_floatarith x (Max a b)         = Num 0" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3653
"DERIV_floatarith x (Abs a)           = Num 0" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3654
"DERIV_floatarith x Pi                = Num 0" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3655
"DERIV_floatarith x (Sqrt a)          = (Mult (Inverse (Mult (Sqrt a) (Num 2))) (DERIV_floatarith x a))" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3656
"DERIV_floatarith x (Exp a)           = Mult (Exp a) (DERIV_floatarith x a)" |
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3657
"DERIV_floatarith x (Powr a b)        =
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3658
   Mult (Powr a b) (Add (Mult (DERIV_floatarith x b) (Ln a)) (Mult (Mult (DERIV_floatarith x a) b) (Inverse a)))" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3659
"DERIV_floatarith x (Ln a)            = Mult (Inverse a) (DERIV_floatarith x a)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3660
"DERIV_floatarith x (Power a 0)       = Num 0" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3661
"DERIV_floatarith x (Power a (Suc n)) = Mult (Num (Float (int (Suc n)) 0)) (Mult (Power a n) (DERIV_floatarith x a))" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3662
"DERIV_floatarith x (Floor a)         = Num 0" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3663
"DERIV_floatarith x (Num f)           = Num 0" |
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3664
"DERIV_floatarith x (Var n)          = (if x = n then Num 1 else Num 0)"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3665
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3666
lemma has_real_derivative_powr':
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3667
  fixes f g :: "real \<Rightarrow> real"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3668
  assumes "(f has_real_derivative f') (at x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3669
  assumes "(g has_real_derivative g') (at x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3670
  assumes "f x > 0"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3671
  defines "h \<equiv> \<lambda>x. f x powr g x * (g' * ln (f x) + f' * g x / f x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3672
  shows   "((\<lambda>x. f x powr g x) has_real_derivative h x) (at x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3673
proof (subst DERIV_cong_ev[OF refl _ refl])
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3674
  from assms have "isCont f x"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3675
    by (simp add: DERIV_continuous)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3676
  hence "f \<midarrow>x\<rightarrow> f x" by (simp add: continuous_at)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3677
  with \<open>f x > 0\<close> have "eventually (\<lambda>x. f x > 0) (nhds x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3678
    by (auto simp: tendsto_at_iff_tendsto_nhds dest: order_tendstoD)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3679
  thus "eventually (\<lambda>x. f x powr g x = exp (g x * ln (f x))) (nhds x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3680
    by eventually_elim (simp add: powr_def)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3681
next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3682
  from assms show "((\<lambda>x. exp (g x * ln (f x))) has_real_derivative h x) (at x)"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3683
    by (auto intro!: derivative_eq_intros simp: h_def powr_def)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3684
qed
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3685
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3686
lemma DERIV_floatarith:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3687
  assumes "n < length vs"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3688
  assumes isDERIV: "isDERIV n f (vs[n := x])"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3689
  shows "DERIV (\<lambda> x'. interpret_floatarith f (vs[n := x'])) x :>
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3690
               interpret_floatarith (DERIV_floatarith n f) (vs[n := x])"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3691
   (is "DERIV (?i f) x :> _")
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3692
using isDERIV
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3693
proof (induct f arbitrary: x)
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3694
  case (Inverse a)
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3695
  thus ?case
56381
0556204bc230 merged DERIV_intros, has_derivative_intros into derivative_intros
hoelzl
parents: 56195
diff changeset
  3696
    by (auto intro!: derivative_eq_intros simp add: algebra_simps power2_eq_square)
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3697
next
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3698
  case (Cos a)
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3699
  thus ?case
56382
5a50109d51ab fix #0556204bc230
hoelzl
parents: 56381
diff changeset
  3700
    by (auto intro!: derivative_eq_intros
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3701
           simp del: interpret_floatarith.simps(5)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3702
           simp add: interpret_floatarith_sin interpret_floatarith.simps(5)[of a])
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3703
next
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3704
  case (Power a n)
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3705
  thus ?case
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3706
    by (cases n) (auto intro!: derivative_eq_intros simp del: power_Suc)
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3707
next
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3708
  case (Floor a)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3709
  thus ?case
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3710
    by (auto intro!: derivative_eq_intros DERIV_isCont floor_has_real_derivative)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3711
next
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3712
  case (Ln a)
56382
5a50109d51ab fix #0556204bc230
hoelzl
parents: 56381
diff changeset
  3713
  thus ?case by (auto intro!: derivative_eq_intros simp add: divide_inverse)
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3714
next
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3715
  case (Var i)
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3716
  thus ?case using \<open>n < length vs\<close> by auto
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3717
next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3718
  case (Powr a b)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3719
  note [derivative_intros] = has_real_derivative_powr'
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3720
  from Powr show ?case
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3721
    by (auto intro!: derivative_eq_intros simp: field_simps)
56381
0556204bc230 merged DERIV_intros, has_derivative_intros into derivative_intros
hoelzl
parents: 56195
diff changeset
  3722
qed (auto intro!: derivative_eq_intros)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3723
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3724
declare approx.simps[simp del]
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3725
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3726
fun isDERIV_approx :: "nat \<Rightarrow> nat \<Rightarrow> floatarith \<Rightarrow> (float * float) option list \<Rightarrow> bool" where
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3727
"isDERIV_approx prec x (Add a b) vs         = (isDERIV_approx prec x a vs \<and> isDERIV_approx prec x b vs)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3728
"isDERIV_approx prec x (Mult a b) vs        = (isDERIV_approx prec x a vs \<and> isDERIV_approx prec x b vs)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3729
"isDERIV_approx prec x (Minus a) vs         = isDERIV_approx prec x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3730
"isDERIV_approx prec x (Inverse a) vs       =
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3731
  (isDERIV_approx prec x a vs \<and> (case approx prec a vs of Some (l, u) \<Rightarrow> 0 < l \<or> u < 0 | None \<Rightarrow> False))" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3732
"isDERIV_approx prec x (Cos a) vs           = isDERIV_approx prec x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3733
"isDERIV_approx prec x (Arctan a) vs        = isDERIV_approx prec x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3734
"isDERIV_approx prec x (Min a b) vs         = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3735
"isDERIV_approx prec x (Max a b) vs         = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3736
"isDERIV_approx prec x (Abs a) vs           = False" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3737
"isDERIV_approx prec x Pi vs                = True" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3738
"isDERIV_approx prec x (Sqrt a) vs          =
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3739
  (isDERIV_approx prec x a vs \<and> (case approx prec a vs of Some (l, u) \<Rightarrow> 0 < l | None \<Rightarrow> False))" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3740
"isDERIV_approx prec x (Exp a) vs           = isDERIV_approx prec x a vs" |
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3741
"isDERIV_approx prec x (Powr a b) vs        =
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3742
  (isDERIV_approx prec x a vs \<and> isDERIV_approx prec x b vs \<and> (case approx prec a vs of Some (l, u) \<Rightarrow> 0 < l | None \<Rightarrow> False))" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3743
"isDERIV_approx prec x (Ln a) vs            =
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3744
  (isDERIV_approx prec x a vs \<and> (case approx prec a vs of Some (l, u) \<Rightarrow> 0 < l | None \<Rightarrow> False))" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3745
"isDERIV_approx prec x (Power a 0) vs       = True" |
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3746
"isDERIV_approx prec x (Floor a) vs         =
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3747
  (isDERIV_approx prec x a vs \<and> (case approx prec a vs of Some (l, u) \<Rightarrow> l > floor u \<and> u < ceiling l | None \<Rightarrow> False))" |
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3748
"isDERIV_approx prec x (Power a (Suc n)) vs = isDERIV_approx prec x a vs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3749
"isDERIV_approx prec x (Num f) vs           = True" |
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3750
"isDERIV_approx prec x (Var n) vs           = True"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3751
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3752
lemma isDERIV_approx:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3753
  assumes "bounded_by xs vs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3754
    and isDERIV_approx: "isDERIV_approx prec x f vs"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3755
  shows "isDERIV x f xs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3756
  using isDERIV_approx
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3757
proof (induct f)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3758
  case (Inverse a)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3759
  then obtain l u where approx_Some: "Some (l, u) = approx prec a vs"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3760
    and *: "0 < l \<or> u < 0"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3761
    by (cases "approx prec a vs") auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3762
  with approx[OF \<open>bounded_by xs vs\<close> approx_Some]
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  3763
  have "interpret_floatarith a xs \<noteq> 0" by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3764
  thus ?case using Inverse by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3765
next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3766
  case (Ln a)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3767
  then obtain l u where approx_Some: "Some (l, u) = approx prec a vs"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3768
    and *: "0 < l"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3769
    by (cases "approx prec a vs") auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3770
  with approx[OF \<open>bounded_by xs vs\<close> approx_Some]
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  3771
  have "0 < interpret_floatarith a xs" by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3772
  thus ?case using Ln by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3773
next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3774
  case (Sqrt a)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3775
  then obtain l u where approx_Some: "Some (l, u) = approx prec a vs"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3776
    and *: "0 < l"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3777
    by (cases "approx prec a vs") auto
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3778
  with approx[OF \<open>bounded_by xs vs\<close> approx_Some]
47600
e12289b5796b use lifting to introduce floating point numbers
hoelzl
parents: 47599
diff changeset
  3779
  have "0 < interpret_floatarith a xs" by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3780
  thus ?case using Sqrt by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3781
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3782
  case (Power a n)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3783
  thus ?case by (cases n) auto
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3784
next
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3785
  case (Powr a b)
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3786
  from Powr obtain l1 u1 where a: "Some (l1, u1) = approx prec a vs" and pos: "0 < l1"
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3787
    by (cases "approx prec a vs") auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3788
  with approx[OF \<open>bounded_by xs vs\<close> a]
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3789
    have "0 < interpret_floatarith a xs" by auto
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3790
  with Powr show ?case by auto
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3791
next
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3792
  case (Floor a)
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3793
  then obtain l u where approx_Some: "Some (l, u) = approx prec a vs"
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3794
    and "real_of_int \<lfloor>real_of_float u\<rfloor> < real_of_float l" "real_of_float u < real_of_int \<lceil>real_of_float l\<rceil>"
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3795
    and "isDERIV x a xs"
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3796
    by (cases "approx prec a vs") auto
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3797
  with approx[OF \<open>bounded_by xs vs\<close> approx_Some] le_floor_iff
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3798
  show ?case
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  3799
    by (force elim!: Ints_cases)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3800
qed auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3801
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3802
lemma bounded_by_update_var:
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3803
  assumes "bounded_by xs vs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3804
    and "vs ! i = Some (l, u)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3805
    and bnd: "x \<in> { real_of_float l .. real_of_float u }"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3806
  shows "bounded_by (xs[i := x]) vs"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3807
proof (cases "i < length xs")
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3808
  case False
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3809
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3810
    using \<open>bounded_by xs vs\<close> by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3811
next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3812
  case True
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3813
  let ?xs = "xs[i := x]"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3814
  from True have "i < length ?xs" by auto
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3815
  have "case vs ! j of None \<Rightarrow> True | Some (l, u) \<Rightarrow> ?xs ! j \<in> {real_of_float l .. real_of_float u}"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3816
    if "j < length vs" for j
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3817
  proof (cases "vs ! j")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3818
    case None
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3819
    then show ?thesis by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3820
  next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3821
    case (Some b)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3822
    thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3823
    proof (cases "i = j")
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3824
      case True
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3825
      thus ?thesis using \<open>vs ! i = Some (l, u)\<close> Some and bnd \<open>i < length ?xs\<close>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3826
        by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3827
    next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3828
      case False
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3829
      thus ?thesis
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3830
        using \<open>bounded_by xs vs\<close>[THEN bounded_byE, OF \<open>j < length vs\<close>] Some by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3831
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3832
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3833
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3834
    unfolding bounded_by_def by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3835
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3836
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3837
lemma isDERIV_approx':
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3838
  assumes "bounded_by xs vs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3839
    and vs_x: "vs ! x = Some (l, u)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3840
    and X_in: "X \<in> {real_of_float l .. real_of_float u}"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3841
    and approx: "isDERIV_approx prec x f vs"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3842
  shows "isDERIV x f (xs[x := X])"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3843
proof -
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3844
  from bounded_by_update_var[OF \<open>bounded_by xs vs\<close> vs_x X_in] approx
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3845
  show ?thesis by (rule isDERIV_approx)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3846
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3847
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3848
lemma DERIV_approx:
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3849
  assumes "n < length xs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3850
    and bnd: "bounded_by xs vs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3851
    and isD: "isDERIV_approx prec n f vs"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3852
    and app: "Some (l, u) = approx prec (DERIV_floatarith n f) vs" (is "_ = approx _ ?D _")
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3853
  shows "\<exists>(x::real). l \<le> x \<and> x \<le> u \<and>
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3854
             DERIV (\<lambda> x. interpret_floatarith f (xs[n := x])) (xs!n) :> x"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3855
         (is "\<exists> x. _ \<and> _ \<and> DERIV (?i f) _ :> _")
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3856
proof (rule exI[of _ "?i ?D (xs!n)"], rule conjI[OF _ conjI])
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3857
  let "?i f" = "\<lambda>x. interpret_floatarith f (xs[n := x])"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3858
  from approx[OF bnd app]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3859
  show "l \<le> ?i ?D (xs!n)" and "?i ?D (xs!n) \<le> u"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3860
    using \<open>n < length xs\<close> by auto
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3861
  from DERIV_floatarith[OF \<open>n < length xs\<close>, of f "xs!n"] isDERIV_approx[OF bnd isD]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3862
  show "DERIV (?i f) (xs!n) :> (?i ?D (xs!n))"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3863
    by simp
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3864
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3865
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3866
lemma lift_bin_aux:
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3867
  assumes lift_bin_Some: "Some (l, u) = lift_bin a b f"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3868
  obtains l1 u1 l2 u2
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3869
  where "a = Some (l1, u1)"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3870
    and "b = Some (l2, u2)"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3871
    and "f l1 u1 l2 u2 = Some (l, u)"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3872
  using assms by (cases a, simp, cases b, simp, auto)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3873
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3874
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3875
fun approx_tse where
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3876
"approx_tse prec n 0 c k f bs = approx prec f bs" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3877
"approx_tse prec n (Suc s) c k f bs =
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3878
  (if isDERIV_approx prec n f bs then
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3879
    lift_bin (approx prec f (bs[n := Some (c,c)]))
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3880
             (approx_tse prec n s c (Suc k) (DERIV_floatarith n f) bs)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3881
             (\<lambda> l1 u1 l2 u2. approx prec
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3882
                 (Add (Var 0)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3883
                      (Mult (Inverse (Num (Float (int k) 0)))
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3884
                                 (Mult (Add (Var (Suc (Suc 0))) (Minus (Num c)))
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  3885
                                       (Var (Suc 0))))) [Some (l1, u1), Some (l2, u2), bs!n])
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3886
  else approx prec f bs)"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3887
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3888
lemma bounded_by_Cons:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3889
  assumes bnd: "bounded_by xs vs"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3890
    and x: "x \<in> { real_of_float l .. real_of_float u }"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3891
  shows "bounded_by (x#xs) ((Some (l, u))#vs)"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3892
proof -
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3893
  have "case ((Some (l,u))#vs) ! i of Some (l, u) \<Rightarrow> (x#xs)!i \<in> { real_of_float l .. real_of_float u } | None \<Rightarrow> True"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3894
    if *: "i < length ((Some (l, u))#vs)" for i
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3895
  proof (cases i)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3896
    case 0
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3897
    with x show ?thesis by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3898
  next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3899
    case (Suc i)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3900
    with * have "i < length vs" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3901
    from bnd[THEN bounded_byE, OF this]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3902
    show ?thesis unfolding Suc nth_Cons_Suc .
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3903
  qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3904
  thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3905
    by (auto simp add: bounded_by_def)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3906
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3907
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3908
lemma approx_tse_generic:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3909
  assumes "bounded_by xs vs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3910
    and bnd_c: "bounded_by (xs[x := c]) vs"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3911
    and "x < length vs" and "x < length xs"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3912
    and bnd_x: "vs ! x = Some (lx, ux)"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3913
    and ate: "Some (l, u) = approx_tse prec x s c k f vs"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3914
  shows "\<exists> n. (\<forall> m < n. \<forall> (z::real) \<in> {lx .. ux}.
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3915
      DERIV (\<lambda> y. interpret_floatarith ((DERIV_floatarith x ^^ m) f) (xs[x := y])) z :>
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3916
            (interpret_floatarith ((DERIV_floatarith x ^^ (Suc m)) f) (xs[x := z])))
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3917
   \<and> (\<forall> (t::real) \<in> {lx .. ux}.  (\<Sum> i = 0..<n. inverse (real (\<Prod> j \<in> {k..<k+i}. j)) *
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3918
                  interpret_floatarith ((DERIV_floatarith x ^^ i) f) (xs[x := c]) *
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3919
                  (xs!x - c)^i) +
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3920
      inverse (real (\<Prod> j \<in> {k..<k+n}. j)) *
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3921
      interpret_floatarith ((DERIV_floatarith x ^^ n) f) (xs[x := t]) *
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3922
      (xs!x - c)^n \<in> {l .. u})" (is "\<exists> n. ?taylor f k l u n")
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3923
  using ate
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3924
proof (induct s arbitrary: k f l u)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3925
  case 0
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3926
  {
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3927
    fix t::real assume "t \<in> {lx .. ux}"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3928
    note bounded_by_update_var[OF \<open>bounded_by xs vs\<close> bnd_x this]
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3929
    from approx[OF this 0[unfolded approx_tse.simps]]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3930
    have "(interpret_floatarith f (xs[x := t])) \<in> {l .. u}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3931
      by (auto simp add: algebra_simps)
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3932
  }
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3933
  thus ?case by (auto intro!: exI[of _ 0])
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3934
next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3935
  case (Suc s)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3936
  show ?case
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3937
  proof (cases "isDERIV_approx prec x f vs")
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3938
    case False
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3939
    note ap = Suc.prems[unfolded approx_tse.simps if_not_P[OF False]]
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3940
    {
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3941
      fix t::real assume "t \<in> {lx .. ux}"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3942
      note bounded_by_update_var[OF \<open>bounded_by xs vs\<close> bnd_x this]
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3943
      from approx[OF this ap]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3944
      have "(interpret_floatarith f (xs[x := t])) \<in> {l .. u}"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  3945
        by (auto simp add: algebra_simps)
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3946
    }
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3947
    thus ?thesis by (auto intro!: exI[of _ 0])
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3948
  next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3949
    case True
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3950
    with Suc.prems
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3951
    obtain l1 u1 l2 u2
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3952
      where a: "Some (l1, u1) = approx prec f (vs[x := Some (c,c)])"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3953
        and ate: "Some (l2, u2) = approx_tse prec x s c (Suc k) (DERIV_floatarith x f) vs"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3954
        and final: "Some (l, u) = approx prec
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3955
          (Add (Var 0)
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3956
               (Mult (Inverse (Num (Float (int k) 0)))
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3957
                     (Mult (Add (Var (Suc (Suc 0))) (Minus (Num c)))
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  3958
                           (Var (Suc 0))))) [Some (l1, u1), Some (l2, u2), vs!x]"
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  3959
      by (auto elim!: lift_bin_aux)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3960
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  3961
    from bnd_c \<open>x < length xs\<close>
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3962
    have bnd: "bounded_by (xs[x:=c]) (vs[x:= Some (c,c)])"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3963
      by (auto intro!: bounded_by_update)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3964
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3965
    from approx[OF this a]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  3966
    have f_c: "interpret_floatarith ((DERIV_floatarith x ^^ 0) f) (xs[x := c]) \<in> { l1 .. u1 }"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3967
              (is "?f 0 (real_of_float c) \<in> _")
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3968
      by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3969
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3970
    have funpow_Suc[symmetric]: "(f ^^ Suc n) x = (f ^^ n) (f x)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3971
      for f :: "'a \<Rightarrow> 'a" and n :: nat and x :: 'a
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3972
      by (induct n) auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3973
    from Suc.hyps[OF ate, unfolded this] obtain n
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3974
      where DERIV_hyp: "\<And>m z. \<lbrakk> m < n ; (z::real) \<in> { lx .. ux } \<rbrakk> \<Longrightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3975
        DERIV (?f (Suc m)) z :> ?f (Suc (Suc m)) z"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  3976
      and hyp: "\<forall>t \<in> {real_of_float lx .. real_of_float ux}.
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3977
        (\<Sum> i = 0..<n. inverse (real (\<Prod> j \<in> {Suc k..<Suc k + i}. j)) * ?f (Suc i) c * (xs!x - c)^i) +
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3978
          inverse (real (\<Prod> j \<in> {Suc k..<Suc k + n}. j)) * ?f (Suc n) t * (xs!x - c)^n \<in> {l2 .. u2}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3979
          (is "\<forall> t \<in> _. ?X (Suc k) f n t \<in> _")
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3980
      by blast
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  3981
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3982
    have DERIV: "DERIV (?f m) z :> ?f (Suc m) z"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3983
      if "m < Suc n" and bnd_z: "z \<in> { lx .. ux }" for m and z::real
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3984
    proof (cases m)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3985
      case 0
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3986
      with DERIV_floatarith[OF \<open>x < length xs\<close>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3987
        isDERIV_approx'[OF \<open>bounded_by xs vs\<close> bnd_x bnd_z True]]
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3988
      show ?thesis by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3989
    next
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3990
      case (Suc m')
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3991
      hence "m' < n"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3992
        using \<open>m < Suc n\<close> by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3993
      from DERIV_hyp[OF this bnd_z] show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3994
        using Suc by simp
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3995
    qed
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3996
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3997
    have "\<And>k i. k < i \<Longrightarrow> {k ..< i} = insert k {Suc k ..< i}" by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3998
    hence setprod_head_Suc: "\<And>k i. \<Prod>{k ..< k + Suc i} = k * \<Prod>{Suc k ..< Suc k + i}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  3999
      by auto
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4000
    have setsum_move0: "\<And>k F. setsum F {0..<Suc k} = F 0 + setsum (\<lambda> k. F (Suc k)) {0..<k}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4001
      unfolding setsum_shift_bounds_Suc_ivl[symmetric]
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4002
      unfolding setsum_head_upt_Suc[OF zero_less_Suc] ..
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  4003
    define C where "C = xs!x - c"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4004
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4005
    {
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4006
      fix t::real assume t: "t \<in> {lx .. ux}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4007
      hence "bounded_by [xs!x] [vs!x]"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4008
        using \<open>bounded_by xs vs\<close>[THEN bounded_byE, OF \<open>x < length vs\<close>]
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4009
        by (cases "vs!x", auto simp add: bounded_by_def)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4010
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4011
      with hyp[THEN bspec, OF t] f_c
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4012
      have "bounded_by [?f 0 c, ?X (Suc k) f n t, xs!x] [Some (l1, u1), Some (l2, u2), vs!x]"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4013
        by (auto intro!: bounded_by_Cons)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4014
      from approx[OF this final, unfolded atLeastAtMost_iff[symmetric]]
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4015
      have "?X (Suc k) f n t * (xs!x - real_of_float c) * inverse k + ?f 0 c \<in> {l .. u}"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4016
        by (auto simp add: algebra_simps)
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4017
      also have "?X (Suc k) f n t * (xs!x - real_of_float c) * inverse (real k) + ?f 0 c =
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4018
               (\<Sum> i = 0..<Suc n. inverse (real (\<Prod> j \<in> {k..<k+i}. j)) * ?f i c * (xs!x - c)^i) +
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4019
               inverse (real (\<Prod> j \<in> {k..<k+Suc n}. j)) * ?f (Suc n) t * (xs!x - c)^Suc n" (is "_ = ?T")
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4020
        unfolding funpow_Suc C_def[symmetric] setsum_move0 setprod_head_Suc
35082
96a21dd3b349 rely less on ordered rewriting
haftmann
parents: 35028
diff changeset
  4021
        by (auto simp add: algebra_simps)
57512
cc97b347b301 reduced name variants for assoc and commute on plus and mult
haftmann
parents: 57418
diff changeset
  4022
          (simp only: mult.left_commute [of _ "inverse (real k)"] setsum_right_distrib [symmetric])
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4023
      finally have "?T \<in> {l .. u}" .
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4024
    }
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4025
    thus ?thesis using DERIV by blast
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4026
  qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4027
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4028
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4029
lemma setprod_fact: "real (\<Prod> {1..<1 + k}) = fact (k :: nat)"
63417
c184ec919c70 more lemmas to emphasize {0::nat..(<)n} as canonical representation of intervals on nat
haftmann
parents: 63263
diff changeset
  4030
  by (simp add: fact_setprod atLeastLessThanSuc_atLeastAtMost)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4031
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4032
lemma approx_tse:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4033
  assumes "bounded_by xs vs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4034
    and bnd_x: "vs ! x = Some (lx, ux)"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4035
    and bnd_c: "real_of_float c \<in> {lx .. ux}"
49351
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4036
    and "x < length vs" and "x < length xs"
0dd3449640b4 tuned proofs;
wenzelm
parents: 47621
diff changeset
  4037
    and ate: "Some (l, u) = approx_tse prec x s c 1 f vs"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4038
  shows "interpret_floatarith f xs \<in> {l .. u}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4039
proof -
63040
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  4040
  define F where [abs_def]: "F n z =
eb4ddd18d635 eliminated old 'def';
wenzelm
parents: 62390
diff changeset
  4041
    interpret_floatarith ((DERIV_floatarith x ^^ n) f) (xs[x := z])" for n z
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4042
  hence F0: "F 0 = (\<lambda> z. interpret_floatarith f (xs[x := z]))" by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4043
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4044
  hence "bounded_by (xs[x := c]) vs" and "x < length vs" "x < length xs"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4045
    using \<open>bounded_by xs vs\<close> bnd_x bnd_c \<open>x < length vs\<close> \<open>x < length xs\<close>
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4046
    by (auto intro!: bounded_by_update_var)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4047
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4048
  from approx_tse_generic[OF \<open>bounded_by xs vs\<close> this bnd_x ate]
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4049
  obtain n
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4050
    where DERIV: "\<forall> m z. m < n \<and> real_of_float lx \<le> z \<and> z \<le> real_of_float ux \<longrightarrow> DERIV (F m) z :> F (Suc m) z"
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4051
    and hyp: "\<And> (t::real). t \<in> {lx .. ux} \<Longrightarrow>
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4052
           (\<Sum> j = 0..<n. inverse(fact j) * F j c * (xs!x - c)^j) +
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4053
             inverse ((fact n)) * F n t * (xs!x - c)^n
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4054
             \<in> {l .. u}" (is "\<And> t. _ \<Longrightarrow> ?taylor t \<in> _")
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4055
    unfolding F_def atLeastAtMost_iff[symmetric] setprod_fact
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4056
    by blast
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4057
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4058
  have bnd_xs: "xs ! x \<in> { lx .. ux }"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4059
    using \<open>bounded_by xs vs\<close>[THEN bounded_byE, OF \<open>x < length vs\<close>] bnd_x by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4060
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4061
  show ?thesis
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4062
  proof (cases n)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4063
    case 0
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4064
    thus ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4065
      using hyp[OF bnd_xs] unfolding F_def by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4066
  next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4067
    case (Suc n')
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4068
    show ?thesis
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4069
    proof (cases "xs ! x = c")
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4070
      case True
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4071
      from True[symmetric] hyp[OF bnd_xs] Suc show ?thesis
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4072
        unfolding F_def Suc setsum_head_upt_Suc[OF zero_less_Suc] setsum_shift_bounds_Suc_ivl
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4073
        by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4074
    next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4075
      case False
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4076
      have "lx \<le> real_of_float c" "real_of_float c \<le> ux" "lx \<le> xs!x" "xs!x \<le> ux"
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4077
        using Suc bnd_c \<open>bounded_by xs vs\<close>[THEN bounded_byE, OF \<open>x < length vs\<close>] bnd_x by auto
63570
1826a90b9cbc simplified theory structure;
wenzelm
parents: 63417
diff changeset
  4078
      from taylor[OF zero_less_Suc, of F, OF F0 DERIV[unfolded Suc] this False]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4079
      obtain t::real where t_bnd: "if xs ! x < c then xs ! x < t \<and> t < c else c < t \<and> t < xs ! x"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4080
        and fl_eq: "interpret_floatarith f (xs[x := xs ! x]) =
59730
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4081
           (\<Sum>m = 0..<Suc n'. F m c / (fact m) * (xs ! x - c) ^ m) +
b7c394c7a619 The factorial function, "fact", now has type "nat => 'a"
paulson <lp15@cam.ac.uk>
parents: 59658
diff changeset
  4082
           F (Suc n') t / (fact (Suc n')) * (xs ! x - c) ^ Suc n'"
56195
c7dfd924a165 adapt to Isabelle/c726ecfb22b6
huffman
parents: 56073
diff changeset
  4083
        unfolding atLeast0LessThan by blast
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4084
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4085
      from t_bnd bnd_xs bnd_c have *: "t \<in> {lx .. ux}"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4086
        by (cases "xs ! x < c") auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4087
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4088
      have "interpret_floatarith f (xs[x := xs ! x]) = ?taylor t"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4089
        unfolding fl_eq Suc by (auto simp add: algebra_simps divide_inverse)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4090
      also have "\<dots> \<in> {l .. u}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4091
        using * by (rule hyp)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4092
      finally show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4093
        by simp
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4094
    qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4095
  qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4096
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4097
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4098
fun approx_tse_form' where
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4099
"approx_tse_form' prec t f 0 l u cmp =
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4100
  (case approx_tse prec 0 t ((l + u) * Float 1 (- 1)) 1 f [Some (l, u)]
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4101
     of Some (l, u) \<Rightarrow> cmp l u | None \<Rightarrow> False)" |
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4102
"approx_tse_form' prec t f (Suc s) l u cmp =
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4103
  (let m = (l + u) * Float 1 (- 1)
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4104
   in (if approx_tse_form' prec t f s l m cmp then
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4105
      approx_tse_form' prec t f s m u cmp else False))"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4106
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4107
lemma approx_tse_form':
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4108
  fixes x :: real
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4109
  assumes "approx_tse_form' prec t f s l u cmp"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4110
    and "x \<in> {l .. u}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4111
  shows "\<exists>l' u' ly uy. x \<in> {l' .. u'} \<and> real_of_float l \<le> l' \<and> u' \<le> real_of_float u \<and> cmp ly uy \<and>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4112
    approx_tse prec 0 t ((l' + u') * Float 1 (- 1)) 1 f [Some (l', u')] = Some (ly, uy)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4113
  using assms
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4114
proof (induct s arbitrary: l u)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4115
  case 0
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4116
  then obtain ly uy
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4117
    where *: "approx_tse prec 0 t ((l + u) * Float 1 (- 1)) 1 f [Some (l, u)] = Some (ly, uy)"
55413
a8e96847523c adapted theories to '{case,rec}_{list,option}' names
blanchet
parents: 54782
diff changeset
  4118
    and **: "cmp ly uy" by (auto elim!: case_optionE)
46545
haftmann
parents: 45481
diff changeset
  4119
  with 0 show ?case by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4120
next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4121
  case (Suc s)
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4122
  let ?m = "(l + u) * Float 1 (- 1)"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4123
  from Suc.prems
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4124
  have l: "approx_tse_form' prec t f s l ?m cmp"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4125
    and u: "approx_tse_form' prec t f s ?m u cmp"
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4126
    by (auto simp add: Let_def lazy_conj)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4127
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4128
  have m_l: "real_of_float l \<le> ?m" and m_u: "?m \<le> real_of_float u"
47599
400b158f1589 replace the float datatype by a type with unique representation
hoelzl
parents: 47108
diff changeset
  4129
    unfolding less_eq_float_def using Suc.prems by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4130
  with \<open>x \<in> { l .. u }\<close> consider "x \<in> { l .. ?m}" | "x \<in> {?m .. u}"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4131
    by atomize_elim auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4132
  thus ?case
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4133
  proof cases
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4134
    case 1
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4135
    from Suc.hyps[OF l this]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4136
    obtain l' u' ly uy where
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4137
      "x \<in> {l' .. u'} \<and> real_of_float l \<le> l' \<and> real_of_float u' \<le> ?m \<and> cmp ly uy \<and>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4138
        approx_tse prec 0 t ((l' + u') * Float 1 (- 1)) 1 f [Some (l', u')] = Some (ly, uy)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4139
      by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4140
    with m_u show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4141
      by (auto intro!: exI)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4142
  next
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4143
    case 2
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4144
    from Suc.hyps[OF u this]
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4145
    obtain l' u' ly uy where
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4146
      "x \<in> { l' .. u' } \<and> ?m \<le> real_of_float l' \<and> u' \<le> real_of_float u \<and> cmp ly uy \<and>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4147
        approx_tse prec 0 t ((l' + u') * Float 1 (- 1)) 1 f [Some (l', u')] = Some (ly, uy)"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4148
      by blast
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4149
    with m_u show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4150
      by (auto intro!: exI)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4151
  qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4152
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4153
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4154
lemma approx_tse_form'_less:
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4155
  fixes x :: real
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4156
  assumes tse: "approx_tse_form' prec t (Add a (Minus b)) s l u (\<lambda> l u. 0 < l)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4157
    and x: "x \<in> {l .. u}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4158
  shows "interpret_floatarith b [x] < interpret_floatarith a [x]"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4159
proof -
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4160
  from approx_tse_form'[OF tse x]
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4161
  obtain l' u' ly uy
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4162
    where x': "x \<in> {l' .. u'}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4163
    and "real_of_float l \<le> real_of_float l'"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4164
    and "real_of_float u' \<le> real_of_float u" and "0 < ly"
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4165
    and tse: "approx_tse prec 0 t ((l' + u') * Float 1 (- 1)) 1 (Add a (Minus b)) [Some (l', u')] = Some (ly, uy)"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4166
    by blast
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4167
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4168
  hence "bounded_by [x] [Some (l', u')]"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4169
    by (auto simp add: bounded_by_def)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4170
  from approx_tse[OF this _ _ _ _ tse[symmetric], of l' u'] x'
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4171
  have "ly \<le> interpret_floatarith a [x] - interpret_floatarith b [x]"
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  4172
    by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4173
  from order_less_le_trans[OF _ this, of 0] \<open>0 < ly\<close> show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4174
    by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4175
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4176
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4177
lemma approx_tse_form'_le:
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4178
  fixes x :: real
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4179
  assumes tse: "approx_tse_form' prec t (Add a (Minus b)) s l u (\<lambda> l u. 0 \<le> l)"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4180
    and x: "x \<in> {l .. u}"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4181
  shows "interpret_floatarith b [x] \<le> interpret_floatarith a [x]"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4182
proof -
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4183
  from approx_tse_form'[OF tse x]
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4184
  obtain l' u' ly uy
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4185
    where x': "x \<in> {l' .. u'}"
61609
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4186
    and "l \<le> real_of_float l'"
77b453bd616f Coercion "real" now has type nat => real only and is no longer overloaded. Type class "real_of" is gone. Many duplicate theorems removed.
paulson <lp15@cam.ac.uk>
parents: 60680
diff changeset
  4187
    and "real_of_float u' \<le> u" and "0 \<le> ly"
58410
6d46ad54a2ab explicit separation of signed and unsigned numerals using existing lexical categories num and xnum
haftmann
parents: 58310
diff changeset
  4188
    and tse: "approx_tse prec 0 t ((l' + u') * Float 1 (- 1)) 1 (Add a (Minus b)) [Some (l', u')] = Some (ly, uy)"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4189
    by blast
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4190
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4191
  hence "bounded_by [x] [Some (l', u')]" by (auto simp add: bounded_by_def)
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4192
  from approx_tse[OF this _ _ _ _ tse[symmetric], of l' u'] x'
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4193
  have "ly \<le> interpret_floatarith a [x] - interpret_floatarith b [x]"
54230
b1d955791529 more simplification rules on unary and binary minus
haftmann
parents: 53077
diff changeset
  4194
    by auto
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4195
  from order_trans[OF _ this, of 0] \<open>0 \<le> ly\<close> show ?thesis
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4196
    by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4197
qed
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4198
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4199
fun approx_tse_concl where
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4200
"approx_tse_concl prec t (Less lf rt) s l u l' u' \<longleftrightarrow>
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4201
    approx_tse_form' prec t (Add rt (Minus lf)) s l u' (\<lambda> l u. 0 < l)" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4202
"approx_tse_concl prec t (LessEqual lf rt) s l u l' u' \<longleftrightarrow>
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4203
    approx_tse_form' prec t (Add rt (Minus lf)) s l u' (\<lambda> l u. 0 \<le> l)" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4204
"approx_tse_concl prec t (AtLeastAtMost x lf rt) s l u l' u' \<longleftrightarrow>
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4205
    (if approx_tse_form' prec t (Add x (Minus lf)) s l u' (\<lambda> l u. 0 \<le> l) then
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4206
      approx_tse_form' prec t (Add rt (Minus x)) s l u' (\<lambda> l u. 0 \<le> l) else False)" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4207
"approx_tse_concl prec t (Conj f g) s l u l' u' \<longleftrightarrow>
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4208
    approx_tse_concl prec t f s l u l' u' \<and> approx_tse_concl prec t g s l u l' u'" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4209
"approx_tse_concl prec t (Disj f g) s l u l' u' \<longleftrightarrow>
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4210
    approx_tse_concl prec t f s l u l' u' \<or> approx_tse_concl prec t g s l u l' u'" |
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4211
"approx_tse_concl _ _ _ _ _ _ _ _ \<longleftrightarrow> False"
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4212
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4213
definition
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4214
  "approx_tse_form prec t s f =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4215
    (case f of
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4216
      Bound x a b f \<Rightarrow>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4217
        x = Var 0 \<and>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4218
        (case (approx prec a [None], approx prec b [None]) of
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4219
          (Some (l, u), Some (l', u')) \<Rightarrow> approx_tse_concl prec t f s l u l' u'
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4220
        | _ \<Rightarrow> False)
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4221
    | _ \<Rightarrow> False)"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4222
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4223
lemma approx_tse_form:
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4224
  assumes "approx_tse_form prec t s f"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4225
  shows "interpret_form f [x]"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4226
proof (cases f)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4227
  case f_def: (Bound i a b f')
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4228
  with assms obtain l u l' u'
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4229
    where a: "approx prec a [None] = Some (l, u)"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4230
    and b: "approx prec b [None] = Some (l', u')"
55413
a8e96847523c adapted theories to '{case,rec}_{list,option}' names
blanchet
parents: 54782
diff changeset
  4231
    unfolding approx_tse_form_def by (auto elim!: case_optionE)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4232
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4233
  from f_def assms have "i = Var 0"
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4234
    unfolding approx_tse_form_def by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4235
  hence i: "interpret_floatarith i [x] = x" by auto
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4236
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4237
  {
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4238
    let ?f = "\<lambda>z. interpret_floatarith z [x]"
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4239
    assume "?f i \<in> { ?f a .. ?f b }"
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4240
    with approx[OF _ a[symmetric], of "[x]"] approx[OF _ b[symmetric], of "[x]"]
40881
e84f82418e09 Use coercions in Approximation (by Dmitriy Traytel).
hoelzl
parents: 39556
diff changeset
  4241
    have bnd: "x \<in> { l .. u'}" unfolding bounded_by_def i by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4242
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4243
    have "interpret_form f' [x]"
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4244
      using assms[unfolded f_def]
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4245
    proof (induct f')
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4246
      case (Less lf rt)
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4247
      with a b
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4248
      have "approx_tse_form' prec t (Add rt (Minus lf)) s l u' (\<lambda> l u. 0 < l)"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4249
        unfolding approx_tse_form_def by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4250
      from approx_tse_form'_less[OF this bnd]
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4251
      show ?case using Less by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4252
    next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4253
      case (LessEqual lf rt)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4254
      with f_def a b assms
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4255
      have "approx_tse_form' prec t (Add rt (Minus lf)) s l u' (\<lambda> l u. 0 \<le> l)"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4256
        unfolding approx_tse_form_def by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4257
      from approx_tse_form'_le[OF this bnd]
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4258
      show ?case using LessEqual by auto
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4259
    next
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4260
      case (AtLeastAtMost x lf rt)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4261
      with f_def a b assms
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4262
      have "approx_tse_form' prec t (Add rt (Minus x)) s l u' (\<lambda> l u. 0 \<le> l)"
32960
69916a850301 eliminated hard tabulators, guessing at each author's individual tab-width;
wenzelm
parents: 32920
diff changeset
  4263
        and "approx_tse_form' prec t (Add x (Minus lf)) s l u' (\<lambda> l u. 0 \<le> l)"
62390
842917225d56 more canonical names
nipkow
parents: 62200
diff changeset
  4264
        unfolding approx_tse_form_def lazy_conj by (auto split: if_split_asm)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4265
      from approx_tse_form'_le[OF this(1) bnd] approx_tse_form'_le[OF this(2) bnd]
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4266
      show ?case using AtLeastAtMost by auto
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4267
    qed (auto simp: f_def approx_tse_form_def elim!: case_optionE)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4268
  }
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4269
  thus ?thesis unfolding f_def by auto
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4270
qed (insert assms, auto simp add: approx_tse_form_def)
31863
e391eee8bf14 Implemented taylor series expansion for approximation
hoelzl
parents: 31811
diff changeset
  4271
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4272
text \<open>@{term approx_form_eval} is only used for the {\tt value}-command.\<close>
32919
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4273
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4274
fun approx_form_eval :: "nat \<Rightarrow> form \<Rightarrow> (float * float) option list \<Rightarrow> (float * float) option list" where
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4275
"approx_form_eval prec (Bound (Var n) a b f) bs =
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4276
   (case (approx prec a bs, approx prec b bs)
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4277
   of (Some (l, _), Some (_, u)) \<Rightarrow> approx_form_eval prec f (bs[n := Some (l, u)])
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4278
    | _ \<Rightarrow> bs)" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4279
"approx_form_eval prec (Assign (Var n) a f) bs =
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4280
   (case (approx prec a bs)
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4281
   of (Some (l, u)) \<Rightarrow> approx_form_eval prec f (bs[n := Some (l, u)])
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4282
    | _ \<Rightarrow> bs)" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4283
"approx_form_eval prec (Less a b) bs = bs @ [approx prec a bs, approx prec b bs]" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4284
"approx_form_eval prec (LessEqual a b) bs = bs @ [approx prec a bs, approx prec b bs]" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4285
"approx_form_eval prec (AtLeastAtMost x a b) bs =
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4286
   bs @ [approx prec x bs, approx prec a bs, approx prec b bs]" |
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4287
"approx_form_eval _ _ bs = bs"
37adfa07b54b approximation now fails earlier when using interval splitting; value [approximate] now supports bounded variables; renamed Var -> Atom for better readability
hoelzl
parents: 32650
diff changeset
  4288
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4289
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4290
subsection \<open>Implement proof method \texttt{approximation}\<close>
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  4291
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4292
lemmas interpret_form_equations = interpret_form.simps interpret_floatarith.simps interpret_floatarith_num
60017
b785d6d06430 Overloading of ln and powr, but "approximation" no longer works for powr. Code generation also fails due to type ambiguity in scala.
paulson <lp15@cam.ac.uk>
parents: 59850
diff changeset
  4293
  interpret_floatarith_divide interpret_floatarith_diff interpret_floatarith_tan interpret_floatarith_log
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  4294
  interpret_floatarith_sin interpret_floatarith_ceiling
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  4295
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4296
oracle approximation_oracle = \<open>fn (thy, t) =>
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4297
let
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4298
  fun bad t = error ("Bad term: " ^ Syntax.string_of_term_global thy t);
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4299
38716
3c3b4ad683d5 approximation_oracle: actually match true/false in ML, not arbitrary values;
wenzelm
parents: 38558
diff changeset
  4300
  fun term_of_bool true = @{term True}
3c3b4ad683d5 approximation_oracle: actually match true/false in ML, not arbitrary values;
wenzelm
parents: 38558
diff changeset
  4301
    | term_of_bool false = @{term False};
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4302
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4303
  val mk_int = HOLogic.mk_number @{typ int} o @{code integer_of_int};
58988
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4304
  fun dest_int (@{term int_of_integer} $ j) = @{code int_of_integer} (snd (HOLogic.dest_number j))
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4305
    | dest_int i = @{code int_of_integer} (snd (HOLogic.dest_number i));
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4306
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4307
  fun term_of_float (@{code Float} (k, l)) =
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4308
    @{term Float} $ mk_int k $ mk_int l;
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4309
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4310
  fun term_of_float_float_option NONE = @{term "None :: (float \<times> float) option"}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4311
    | term_of_float_float_option (SOME ff) = @{term "Some :: float \<times> float \<Rightarrow> _"}
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58988
diff changeset
  4312
        $ HOLogic.mk_prod (apply2 term_of_float ff);
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4313
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4314
  val term_of_float_float_option_list =
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4315
    HOLogic.mk_list @{typ "(float \<times> float) option"} o map term_of_float_float_option;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4316
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4317
  fun nat_of_term t = @{code nat_of_integer}
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4318
    (HOLogic.dest_nat t handle TERM _ => snd (HOLogic.dest_number t));
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4319
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4320
  fun float_of_term (@{term Float} $ k $ l) =
51143
0a2371e7ced3 two target language numeral types: integer and natural, as replacement for code_numeral;
haftmann
parents: 49962
diff changeset
  4321
        @{code Float} (dest_int k, dest_int l)
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4322
    | float_of_term t = bad t;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4323
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4324
  fun floatarith_of_term (@{term Add} $ a $ b) = @{code Add} (floatarith_of_term a, floatarith_of_term b)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4325
    | floatarith_of_term (@{term Minus} $ a) = @{code Minus} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4326
    | floatarith_of_term (@{term Mult} $ a $ b) = @{code Mult} (floatarith_of_term a, floatarith_of_term b)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4327
    | floatarith_of_term (@{term Inverse} $ a) = @{code Inverse} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4328
    | floatarith_of_term (@{term Cos} $ a) = @{code Cos} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4329
    | floatarith_of_term (@{term Arctan} $ a) = @{code Arctan} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4330
    | floatarith_of_term (@{term Abs} $ a) = @{code Abs} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4331
    | floatarith_of_term (@{term Max} $ a $ b) = @{code Max} (floatarith_of_term a, floatarith_of_term b)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4332
    | floatarith_of_term (@{term Min} $ a $ b) = @{code Min} (floatarith_of_term a, floatarith_of_term b)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4333
    | floatarith_of_term @{term Pi} = @{code Pi}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4334
    | floatarith_of_term (@{term Sqrt} $ a) = @{code Sqrt} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4335
    | floatarith_of_term (@{term Exp} $ a) = @{code Exp} (floatarith_of_term a)
62200
67792e4a5486 Made Approximation work for powr again
Manuel Eberl <eberlm@in.tum.de>
parents: 61969
diff changeset
  4336
    | floatarith_of_term (@{term Powr} $ a $ b) = @{code Powr} (floatarith_of_term a, floatarith_of_term b)
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4337
    | floatarith_of_term (@{term Ln} $ a) = @{code Ln} (floatarith_of_term a)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4338
    | floatarith_of_term (@{term Power} $ a $ n) =
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4339
        @{code Power} (floatarith_of_term a, nat_of_term n)
63263
c6c95d64607a approximation, derivative, and continuity of floor and ceiling
immler
parents: 63248
diff changeset
  4340
    | floatarith_of_term (@{term Floor} $ a) = @{code Floor} (floatarith_of_term a)
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4341
    | floatarith_of_term (@{term Var} $ n) = @{code Var} (nat_of_term n)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4342
    | floatarith_of_term (@{term Num} $ m) = @{code Num} (float_of_term m)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4343
    | floatarith_of_term t = bad t;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4344
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4345
  fun form_of_term (@{term Bound} $ a $ b $ c $ p) = @{code Bound}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4346
        (floatarith_of_term a, floatarith_of_term b, floatarith_of_term c, form_of_term p)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4347
    | form_of_term (@{term Assign} $ a $ b $ p) = @{code Assign}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4348
        (floatarith_of_term a, floatarith_of_term b, form_of_term p)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4349
    | form_of_term (@{term Less} $ a $ b) = @{code Less}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4350
        (floatarith_of_term a, floatarith_of_term b)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4351
    | form_of_term (@{term LessEqual} $ a $ b) = @{code LessEqual}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4352
        (floatarith_of_term a, floatarith_of_term b)
58986
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4353
    | form_of_term (@{term Conj} $ a $ b) = @{code Conj}
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4354
        (form_of_term a, form_of_term b)
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4355
    | form_of_term (@{term Disj} $ a $ b) = @{code Disj}
ec7373051a6c disjunction and conjunction for forms
immler
parents: 58985
diff changeset
  4356
        (form_of_term a, form_of_term b)
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4357
    | form_of_term (@{term AtLeastAtMost} $ a $ b $ c) = @{code AtLeastAtMost}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4358
        (floatarith_of_term a, floatarith_of_term b, floatarith_of_term c)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4359
    | form_of_term t = bad t;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4360
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4361
  fun float_float_option_of_term @{term "None :: (float \<times> float) option"} = NONE
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4362
    | float_float_option_of_term (@{term "Some :: float \<times> float \<Rightarrow> _"} $ ff) =
59058
a78612c67ec0 renamed "pairself" to "apply2", in accordance to @{apply 2};
wenzelm
parents: 58988
diff changeset
  4363
        SOME (apply2 float_of_term (HOLogic.dest_prod ff))
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4364
    | float_float_option_of_term (@{term approx'} $ n $ a $ ffs) = @{code approx'}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4365
        (nat_of_term n) (floatarith_of_term a) (float_float_option_list_of_term ffs)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4366
    | float_float_option_of_term t = bad t
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4367
  and float_float_option_list_of_term
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4368
        (@{term "replicate :: _ \<Rightarrow> (float \<times> float) option \<Rightarrow> _"} $ n $ @{term "None :: (float \<times> float) option"}) =
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4369
          @{code replicate} (nat_of_term n) NONE
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4370
    | float_float_option_list_of_term (@{term approx_form_eval} $ n $ p $ ffs) =
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4371
        @{code approx_form_eval} (nat_of_term n) (form_of_term p) (float_float_option_list_of_term ffs)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4372
    | float_float_option_list_of_term t = map float_float_option_of_term
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4373
        (HOLogic.dest_list t);
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4374
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4375
  val nat_list_of_term = map nat_of_term o HOLogic.dest_list ;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4376
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4377
  fun bool_of_term (@{term approx_form} $ n $ p $ ffs $ ms) = @{code approx_form}
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4378
        (nat_of_term n) (form_of_term p) (float_float_option_list_of_term ffs) (nat_list_of_term ms)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4379
    | bool_of_term (@{term approx_tse_form} $ m $ n $ q $ p) =
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4380
        @{code approx_tse_form} (nat_of_term m) (nat_of_term n) (nat_of_term q) (form_of_term p)
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4381
    | bool_of_term t = bad t;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4382
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4383
  fun eval t = case fastype_of t
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4384
   of @{typ bool} =>
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4385
        (term_of_bool o bool_of_term) t
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4386
    | @{typ "(float \<times> float) option"} =>
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4387
        (term_of_float_float_option o float_float_option_of_term) t
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4388
    | @{typ "(float \<times> float) option list"} =>
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4389
        (term_of_float_float_option_list o float_float_option_list_of_term) t
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4390
    | _ => bad t;
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4391
52131
366fa32ee2a3 tuned signature;
wenzelm
parents: 52090
diff changeset
  4392
  val normalize = eval o Envir.beta_norm o Envir.eta_long [];
36985
41c5d4002f60 spelt out normalizer explicitly -- avoid dynamic reference to code generator configuration; avoid using old Codegen.eval_term
haftmann
parents: 36960
diff changeset
  4393
59621
291934bac95e Thm.cterm_of and Thm.ctyp_of operate on local context;
wenzelm
parents: 59582
diff changeset
  4394
in Thm.global_cterm_of thy (Logic.mk_equals (t, normalize t)) end
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4395
\<close>
31099
03314c427b34 optimized Approximation by precompiling approx_inequality
hoelzl
parents: 31098
diff changeset
  4396
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4397
lemma intervalE: "a \<le> x \<and> x \<le> b \<Longrightarrow> \<lbrakk> x \<in> { a .. b } \<Longrightarrow> P\<rbrakk> \<Longrightarrow> P"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4398
  by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4399
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4400
lemma meta_eqE: "x \<equiv> a \<Longrightarrow> \<lbrakk> x = a \<Longrightarrow> P\<rbrakk> \<Longrightarrow> P"
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4401
  by auto
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4402
59850
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4403
ML_file "approximation.ML"
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4404
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4405
method_setup approximation = \<open>
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4406
  let
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4407
    val free =
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4408
      Args.context -- Args.term >> (fn (_, Free (n, _)) => n | (ctxt, t) =>
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4409
        error ("Bad free variable: " ^ Syntax.string_of_term ctxt t));
59850
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4410
  in
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4411
    Scan.lift Parse.nat --
59850
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4412
    Scan.optional (Scan.lift (Args.$$$ "splitting" |-- Args.colon)
60680
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4413
      |-- Parse.and_list' (free --| Scan.lift (Args.$$$ "=") -- Scan.lift Parse.nat)) [] --
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4414
    Scan.option (Scan.lift (Args.$$$ "taylor" |-- Args.colon) |--
589ed01b94fe tuned proofs;
wenzelm
parents: 60533
diff changeset
  4415
    (free |-- Scan.lift (Args.$$$ "=") |-- Scan.lift Parse.nat)) >>
59850
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4416
    (fn ((prec, splitting), taylor) => fn ctxt =>
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4417
      SIMPLE_METHOD' (Approximation.approximation_tac prec splitting taylor ctxt))
f339ff48a6ee exposed approximation in ML
eberlm
parents: 59751
diff changeset
  4418
  end
60533
1e7ccd864b62 isabelle update_cartouches;
wenzelm
parents: 60017
diff changeset
  4419
\<close> "real number approximation"
31811
64dea9a15031 Improved computation of bounds and implemented interval splitting for 'approximation'.
hoelzl
parents: 31810
diff changeset
  4420
58988
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4421
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4422
section "Quickcheck Generator"
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4423
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4424
ML_file "approximation_generator.ML"
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4425
setup "Approximation_Generator.setup"
6ebf918128b9 added quickcheck[approximation]
immler
parents: 58986
diff changeset
  4426
29805
a5da150bd0ab Add approximation method
hoelzl
parents:
diff changeset
  4427
end