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float.c held bit patterns for special float64 values, hiding from the real uses. Rewrite Go code not to refer to those values directly. Convert library routines in runtime.c and string.c. LGTM=r R=r, dave CC=austin, dvyukov, golang-codereviews, iant, khr https://golang.org/cl/170330043
71 lines
1.7 KiB
Go
71 lines
1.7 KiB
Go
// Copyright 2010 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package runtime
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func isposinf(f float64) bool { return f > maxFloat64 }
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func isneginf(f float64) bool { return f < -maxFloat64 }
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func isnan(f float64) bool { return f != f }
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func nan() float64 {
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var f float64 = 0
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return f / f
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}
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func posinf() float64 {
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var f float64 = maxFloat64
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return f * f
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}
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func neginf() float64 {
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var f float64 = maxFloat64
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return -f * f
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}
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func complex128div(n complex128, d complex128) complex128 {
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// Special cases as in C99.
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ninf := isposinf(real(n)) || isneginf(real(n)) ||
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isposinf(imag(n)) || isneginf(imag(n))
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dinf := isposinf(real(d)) || isneginf(real(d)) ||
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isposinf(imag(d)) || isneginf(imag(d))
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nnan := !ninf && (isnan(real(n)) || isnan(imag(n)))
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dnan := !dinf && (isnan(real(d)) || isnan(imag(d)))
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switch {
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case nnan || dnan:
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return complex(nan(), nan())
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case ninf && !dinf:
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return complex(posinf(), posinf())
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case !ninf && dinf:
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return complex(0, 0)
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case real(d) == 0 && imag(d) == 0:
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if real(n) == 0 && imag(n) == 0 {
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return complex(nan(), nan())
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} else {
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return complex(posinf(), posinf())
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}
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default:
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// Standard complex arithmetic, factored to avoid unnecessary overflow.
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a := real(d)
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if a < 0 {
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a = -a
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}
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b := imag(d)
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if b < 0 {
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b = -b
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}
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if a <= b {
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ratio := real(d) / imag(d)
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denom := real(d)*ratio + imag(d)
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return complex((real(n)*ratio+imag(n))/denom,
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(imag(n)*ratio-real(n))/denom)
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} else {
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ratio := imag(d) / real(d)
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denom := imag(d)*ratio + real(d)
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return complex((imag(n)*ratio+real(n))/denom,
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(imag(n)-real(n)*ratio)/denom)
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}
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}
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}
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