src/HOL/Multivariate_Analysis/ex/Approximations.thy
author wenzelm
Sat, 23 May 2015 17:19:37 +0200
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section {* Binary Approximations to Constants *}
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theory Approximations
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imports "~~/src/HOL/Multivariate_Analysis/Complex_Transcendental"
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begin
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declare of_real_numeral [simp]
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subsection{*Approximation to pi*}
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lemma sin_pi6_straddle:
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  assumes "0 \<le> a" "a \<le> b" "b \<le> 4" "sin(a/6) \<le> 1/2" "1/2 \<le> sin(b/6)"
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    shows "a \<le> pi \<and> pi \<le> b"
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proof -
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  have *: "\<And>x::real. 0 < x & x < 7/5 \<Longrightarrow> 0 < sin x"
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    using pi_ge_two
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    by (auto intro: sin_gt_zero)
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  have ab: "(b \<le> pi * 3 \<Longrightarrow> pi \<le> b)" "(a \<le> pi * 3 \<Longrightarrow> a \<le> pi)"
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    using sin_mono_le_eq [of "pi/6" "b/6"] sin_mono_le_eq [of "a/6" "pi/6"] assms
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    by (simp_all add: sin_30 power.power_Suc norm_divide)
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  show ?thesis
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    using assms Taylor_sin [of "a/6" 0] pi_ge_two
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    by (auto simp: sin_30 power.power_Suc norm_divide intro: ab)
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qed
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(*32-bit approximation. SLOW simplification steps: big calculations with the rewriting engine*)
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lemma pi_approx_32: "abs(pi - 13493037705/4294967296) \<le> inverse(2 ^ 32)"
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  apply (simp only: abs_diff_le_iff)
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  apply (rule sin_pi6_straddle, simp_all)
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  using Taylor_sin [of "1686629713/3221225472" 11]
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  apply (simp add: in_Reals_norm sin_coeff_def Re_sin atMost_nat_numeral fact_numeral)
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  apply (simp only: pos_le_divide_eq [symmetric])
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  using Taylor_sin [of "6746518853/12884901888" 11]
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  apply (simp add: in_Reals_norm sin_coeff_def Re_sin atMost_nat_numeral fact_numeral)
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  apply (simp only: pos_le_divide_eq [symmetric] pos_divide_le_eq [symmetric])
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  done
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end