Added pc_math.h
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h/.distr
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h/.distr
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@ -18,6 +18,7 @@ out.h
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stb.h
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pc_err.h
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pc_file.h
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pc_math.h
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ranlib.h
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ocm_chan.h
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ocm_parco.h
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h/pc_math.h
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h/pc_math.h
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/*
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* localmath.h - This header is used by the mathematical library.
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*/
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/* $Header$ */
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/* some constants (Hart & Cheney) */
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#define M_PI 3.14159265358979323846264338327950288
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#define M_2PI 6.28318530717958647692528676655900576
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#define M_3PI_4 2.35619449019234492884698253745962716
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#define M_PI_2 1.57079632679489661923132169163975144
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#define M_3PI_8 1.17809724509617246442349126872981358
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#define M_PI_4 0.78539816339744830961566084581987572
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#define M_PI_8 0.39269908169872415480783042290993786
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#define M_1_PI 0.31830988618379067153776752674502872
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#define M_2_PI 0.63661977236758134307553505349005744
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#define M_4_PI 1.27323954473516268615107010698011488
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#define M_E 2.71828182845904523536028747135266250
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#define M_LOG2E 1.44269504088896340735992468100189213
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#define M_LOG10E 0.43429448190325182765112891891660508
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#define M_LN2 0.69314718055994530941723212145817657
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#define M_LN10 2.30258509299404568401799145468436421
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#define M_SQRT2 1.41421356237309504880168872420969808
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#define M_1_SQRT2 0.70710678118654752440084436210484904
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#define M_EULER 0.57721566490153286060651209008240243
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/* macros for constructing polynomials */
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#define POLYNOM1(x, a) ((a)[1]*(x)+(a)[0])
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#define POLYNOM2(x, a) (POLYNOM1((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM3(x, a) (POLYNOM2((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM4(x, a) (POLYNOM3((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM5(x, a) (POLYNOM4((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM6(x, a) (POLYNOM5((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM7(x, a) (POLYNOM6((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM8(x, a) (POLYNOM7((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM9(x, a) (POLYNOM8((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM10(x, a) (POLYNOM9((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM11(x, a) (POLYNOM10((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM12(x, a) (POLYNOM11((x),(a)+1)*(x)+(a)[0])
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#define POLYNOM13(x, a) (POLYNOM12((x),(a)+1)*(x)+(a)[0])
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#define M_LN_MAX_D (M_LN2 * DBL_MAX_EXP)
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#define M_LN_MIN_D (M_LN2 * (DBL_MIN_EXP - 1))
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