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d38cd08c 1/* ix87 specific implementation of arctanh function.
04277e02 2 Copyright (C) 1996-2019 Free Software Foundation, Inc.
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3 This file is part of the GNU C Library.
4 Contributed by Ulrich Drepper <drepper@cygnus.com>, 1996.
5
6 The GNU C Library is free software; you can redistribute it and/or
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7 modify it under the terms of the GNU Lesser General Public
8 License as published by the Free Software Foundation; either
9 version 2.1 of the License, or (at your option) any later version.
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10
11 The GNU C Library is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
41bdb6e2 14 Lesser General Public License for more details.
d38cd08c 15
41bdb6e2 16 You should have received a copy of the GNU Lesser General Public
59ba27a6 17 License along with the GNU C Library; if not, see
5a82c748 18 <https://www.gnu.org/licenses/>. */
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19
20#include <machine/asm.h>
37825319 21#include <i386-math-asm.h>
d38cd08c 22
d38cd08c 23 .section .rodata
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24
25 .align ALIGNARG(4)
b67e9372 26 .type half,@object
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27half: .double 0.5
28 ASM_SIZE_DIRECTIVE(half)
b67e9372 29 .type one,@object
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30one: .double 1.0
31 ASM_SIZE_DIRECTIVE(one)
b67e9372 32 .type limit,@object
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33limit: .double 0.29
34 ASM_SIZE_DIRECTIVE(limit)
b67e9372 35 .type ln2_2,@object
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36ln2_2: .tfloat 0.3465735902799726547086160
37 ASM_SIZE_DIRECTIVE(ln2_2)
38
37825319 39DEFINE_DBL_MIN
8020a808 40
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41#ifdef PIC
42#define MO(op) op##@GOTOFF(%edx)
43#else
44#define MO(op) op
45#endif
46
47 .text
48ENTRY(__ieee754_atanh)
49 movl 8(%esp), %ecx
50
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51 movl %ecx, %eax
52 andl $0x7fffffff, %eax
53 cmpl $0x7ff00000, %eax
54 jae 5f
557:
56
d38cd08c 57#ifdef PIC
1a19b889 58 LOAD_PIC_REG (dx)
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59#endif
60
61 andl $0x80000000, %ecx // ECX == 0 iff X >= 0
62
63 fldt MO(ln2_2) // 0.5*ln2
64 xorl %ecx, 8(%esp)
65 fldl 4(%esp) // |x| : 0.5*ln2
66 fcoml MO(half) // |x| : 0.5*ln2
67 fld %st // |x| : |x| : 0.5*ln2
68 fnstsw // |x| : |x| : 0.5*ln2
69 sahf
70 jae 2f
71 fadd %st, %st(1) // |x| : 2*|x| : 0.5*ln2
72 fld %st // |x| : |x| : 2*|x| : 0.5*ln2
73 fsubrl MO(one) // 1-|x| : |x| : 2*|x| : 0.5*ln2
74 fxch // |x| : 1-|x| : 2*|x| : 0.5*ln2
75 fmul %st(2) // 2*|x|^2 : 1-|x| : 2*|x| : 0.5*ln2
76 fdivp // (2*|x|^2)/(1-|x|) : 2*|x| : 0.5*ln2
77 faddp // 2*|x|+(2*|x|^2)/(1-|x|) : 0.5*ln2
78 fcoml MO(limit) // 2*|x|+(2*|x|^2)/(1-|x|) : 0.5*ln2
79 fnstsw // 2*|x|+(2*|x|^2)/(1-|x|) : 0.5*ln2
80 sahf
81 jae 4f
82 fyl2xp1 // 0.5*ln2*ld(1+2*|x|+(2*|x|^2)/(1-|x|))
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83 DBL_CHECK_FORCE_UFLOW_NONNEG
84 jecxz 3f
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85 fchs // 0.5*ln2*ld(1+2*x+(2*x^2)/(1-x))
863: ret
87
88 .align ALIGNARG(4)
894: faddl MO(one) // 1+2*|x|+(2*|x|^2)/(1-|x|) : 0.5*ln2
90 fyl2x // 0.5*ln2*ld(1+2*|x|+(2*|x|^2)/(1-|x|))
91 jecxz 3f
92 fchs // 0.5*ln2*ld(1+2*x+(2*x^2)/(1-x))
933: ret
94
95 .align ALIGNARG(4)
962: faddl MO(one) // 1+|x| : |x| : 0.5*ln2
97 fxch // |x| : 1+|x| : 0.5*ln2
98 fsubrl MO(one) // 1-|x| : 1+|x| : 0.5*ln2
99 fdivrp // (1+|x|)/(1-|x|) : 0.5*ln2
100 fyl2x // 0.5*ln2*ld((1+|x|)/(1-|x|))
101 jecxz 3f
102 fchs // 0.5*ln2*ld((1+x)/(1-x))
1033: ret
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104
105