1 // Copyright (C) 1988-1994 Sun Microsystems, Inc. 2550 Garcia Avenue
2 // Mountain View, California 94043 All rights reserved.
4 // Any person is hereby authorized to download, copy, use, create bug fixes,
5 // and distribute, subject to the following conditions:
7 // 1. the software may not be redistributed for a fee except as
8 // reasonable to cover media costs;
9 // 2. any copy of the software must include this notice, as well as
10 // any other embedded copyright notices; and
11 // 3. any distribution of this software or derivative works thereof
12 // must comply with all applicable U.S. export control laws.
14 // THE SOFTWARE IS MADE AVAILABLE "AS IS" AND WITHOUT EXPRESS OR IMPLIED
15 // WARRANTY OF ANY KIND, INCLUDING BUT NOT LIMITED TO THE IMPLIED
16 // WARRANTIES OF DESIGN, MERCHANTIBILITY, FITNESS FOR A PARTICULAR
17 // PURPOSE, NON-INFRINGEMENT, PERFORMANCE OR CONFORMANCE TO
20 // BY DOWNLOADING AND/OR USING THIS SOFTWARE, THE USER WAIVES ALL CLAIMS
21 // AGAINST SUN MICROSYSTEMS, INC. AND ITS AFFILIATED COMPANIES IN ANY
22 // JURISDICTION, INCLUDING BUT NOT LIMITED TO CLAIMS FOR DAMAGES OR
23 // EQUITABLE RELIEF BASED ON LOSS OF DATA, AND SPECIFICALLY WAIVES EVEN
24 // UNKNOWN OR UNANTICIPATED CLAIMS OR LOSSES, PRESENT AND FUTURE.
26 // IN NO EVENT WILL SUN MICROSYSTEMS, INC. OR ANY OF ITS AFFILIATED
27 // COMPANIES BE LIABLE FOR ANY LOST REVENUE OR PROFITS OR OTHER SPECIAL,
28 // INDIRECT AND CONSEQUENTIAL DAMAGES, EVEN IF IT HAS BEEN ADVISED OF THE
29 // POSSIBILITY OF SUCH DAMAGES.
31 // This file is provided with no support and without any obligation on the
32 // part of Sun Microsystems, Inc. ("Sun") or any of its affiliated
33 // companies to assist in its use, correction, modification or
34 // enhancement. Nevertheless, and without creating any obligation on its
35 // part, Sun welcomes your comments concerning the software and requests
36 // that they be sent to fdlibm-comments@sunpro.sun.com.
38 T(RN
, 0x1.633ce8fb9f87dp
+9, 0x1.ffffffffffd3bp
+1023, 0x1.a6b164p
-4, INEXACT
)
39 T(RZ
, 0x1.633ce8fb9f87dp
+9, 0x1.ffffffffffd3ap
+1023, -0x1.cb29d4p
-1, INEXACT
)
40 T(RU
, 0x1.633ce8fb9f87dp
+9, 0x1.ffffffffffd3bp
+1023, 0x1.a6b164p
-4, INEXACT
)
41 T(RD
, 0x1.633ce8fb9f87dp
+9, 0x1.ffffffffffd3ap
+1023, -0x1.cb29d4p
-1, INEXACT
)
42 T(RN
, -0x1.633ce8fb9f87dp
+9, 0x1.ffffffffffd3bp
+1023, 0x1.a6b164p
-4, INEXACT
)
43 T(RN
, 0x1.633ce8fb9f87ep
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
44 T(RN
, -0x1.633ce8fb9f87ep
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
45 T(RZ
, -0x1.633ce8fb9f87ep
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
46 T(RU
, -0x1.633ce8fb9f87ep
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
47 T(RD
, -0x1.633ce8fb9f87ep
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
48 // coshd(0 or tiny) :=: 1.0
49 T(RN
, 0x1p
-67, 0x1p
+0, 0x0p
+0, INEXACT
)
50 T(RN
, -0x1p
-67, 0x1p
+0, 0x0p
+0, INEXACT
)
51 T(RN
, 0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
52 T(RN
, -0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
53 T(RN
, 0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
54 T(RN
, -0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
55 T(RN
, 0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
56 T(RN
, -0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
57 // random arguments between -50,50
58 T(RN
, -0x1.adeefb2b5006dp
+3, 0x1.4de3262eea3cap
+18, 0x1.e30caep
-3, INEXACT
)
59 T(RN
, 0x1.1ce3efb825911p
+5, 0x1.4c46db4f09332p
+50, -0x1.1bee26p
-3, INEXACT
)
60 T(RN
, 0x1.602e109de7505p
+5, 0x1.6cd152f852538p
+62, 0x1.432474p
-2, INEXACT
)
61 T(RN
, -0x1.0b245fba96889p
+5, 0x1.2121104afc5efp
+47, 0x1.b8303p
-2, INEXACT
)
62 T(RN
, -0x1.b171ee27084ddp
+3, 0x1.749cc0eb38f31p
+18, 0x1.1a3cf8p
-3, INEXACT
)
63 T(RN
, -0x1.f6eff1b093c41p
+0, 0x1.d16cbf8794c45p
+1, -0x1.6a0662p
-3, INEXACT
)
64 T(RN
, 0x1.ceaa3d18455f5p
+4, 0x1.a507cd0be14cdp
+40, 0x1.40d57cp
-4, INEXACT
)
65 T(RN
, 0x1.560914a51b239p
+5, 0x1.9a9b0ddd8b0c7p
+60, 0x1.5db126p
-2, INEXACT
)
66 T(RN
, -0x1.0ce901079de4dp
+3, 0x1.16e676fb41d68p
+11, 0x1.5681cap
-3, INEXACT
)
67 T(RN
, -0x1.7f35b3103b871p
+5, 0x1.13ae32648dd07p
+68, 0x1.ebb6p
-4, INEXACT
)
69 T(RN
, nan
, nan
, 0x0p
+0, 0)
70 T(RN
, nan
, nan
, 0x0p
+0, 0)
71 T(RN
, inf
, inf
, 0x0p
+0, 0)
72 T(RN
, -inf
, inf
, 0x0p
+0, 0)
73 T(RD
, inf
, inf
, 0x0p
+0, 0)
74 T(RD
, -0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
75 T(RD
, -inf
, inf
, 0x0p
+0, 0)
76 T(RD
, 0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
77 T(RD
, 0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
78 T(RD
, 0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
79 T(RD
, 0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
80 T(RD
, 0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
81 T(RD
, 0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
82 T(RD
, 0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
83 T(RD
, 0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
84 T(RD
, 0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
85 T(RD
, 0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
86 T(RD
, 0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
87 T(RD
, 0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
88 T(RD
, -0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
89 T(RD
, -0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
90 T(RD
, -0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
91 T(RD
, -0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
92 T(RD
,-0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
93 T(RD
,-0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
94 T(RD
, -0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
95 T(RD
,-0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
96 T(RD
,-0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
97 T(RD
, -0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
98 T(RD
, -0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
99 T(RD
, -0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
100 T(RD
, 0x1.634p
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
101 T(RD
, 0x1p
+1022, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
102 T(RD
, 0x1p
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
103 T(RD
, 0x1.ffffffffffffep
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
104 T(RD
, 0x1.fffffffffffffp
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
105 T(RD
, -0x1.634p
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
106 T(RD
, -0x1p
+1022, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
107 T(RD
, -0x1p
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
108 T(RD
,-0x1.ffffffffffffep
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
109 T(RD
,-0x1.fffffffffffffp
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
110 T(RD
, nan
, nan
, 0x0p
+0, 0)
111 T(RD
, nan
, nan
, 0x0p
+0, 0)
112 T(RD
, 0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)
113 T(RD
, -0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)
114 T(RN
, 0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
115 T(RN
, 0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
116 T(RN
, 0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
117 T(RN
, 0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
118 T(RN
, 0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
119 T(RN
, 0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
120 T(RN
, 0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
121 T(RN
, 0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
122 T(RN
, 0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
123 T(RN
, 0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
124 T(RN
, 0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)
125 T(RN
, -0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
126 T(RN
, -0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
127 T(RN
, -0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
128 T(RN
,-0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
129 T(RN
,-0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
130 T(RN
,-0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
131 T(RN
,-0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
132 T(RN
, -0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
133 T(RN
, -0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
134 T(RN
, -0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
135 T(RN
, -0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)
136 T(RN
, 0x1.634p
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
137 T(RN
, 0x1p
+1022, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
138 T(RN
, 0x1p
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
139 T(RN
, 0x1.ffffffffffffep
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
140 T(RN
, 0x1.fffffffffffffp
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
141 T(RN
, -0x1.634p
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
142 T(RN
, -0x1p
+1022, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
143 T(RN
, -0x1p
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
144 T(RN
,-0x1.ffffffffffffep
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
145 T(RN
,-0x1.fffffffffffffp
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
146 T(RU
, 0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
147 T(RU
, inf
, inf
, 0x0p
+0, 0)
148 T(RU
, -0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
149 T(RU
, -inf
, inf
, 0x0p
+0, 0)
150 T(RU
, 0x1.634p
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
151 T(RU
, 0x1p
+1022, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
152 T(RU
, 0x1p
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
153 T(RU
, 0x1.ffffffffffffep
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
154 T(RU
, 0x1.fffffffffffffp
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
155 T(RU
, -0x1.634p
+9, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
156 T(RU
, -0x1p
+1022, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
157 T(RU
, -0x1p
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
158 T(RU
,-0x1.ffffffffffffep
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
159 T(RU
,-0x1.fffffffffffffp
+1023, inf
, 0x0p
+0, INEXACT
|OVERFLOW
)
160 T(RU
, nan
, nan
, 0x0p
+0, 0)
161 T(RU
, nan
, nan
, 0x0p
+0, 0)
162 T(RU
, 0x1p
-1074, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
163 T(RU
, 0x1p
-1073, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
164 T(RU
, 0x1p
-1024, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
165 T(RU
, 0x1p
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
166 T(RU
, 0x1.ffffffffffffcp
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
167 T(RU
, 0x1.ffffffffffffep
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
168 T(RU
, 0x1p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
169 T(RU
, 0x1.0000000000001p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
170 T(RU
, 0x1.0000000000002p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
171 T(RU
, 0x1p
-1021, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
172 T(RU
, 0x1p
-1020, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
173 T(RU
, 0x1p
-27, 0x1.0000000000001p
+0, 0x1.cp
-1, INEXACT
)
174 T(RU
, 0x1p
-25, 0x1.0000000000003p
+0, 0x1p
+0, INEXACT
)
175 T(RU
, -0x1p
-1074, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
176 T(RU
, -0x1p
-1073, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
177 T(RU
, -0x1p
-1024, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
178 T(RU
, -0x1p
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
179 T(RU
,-0x1.ffffffffffffcp
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
180 T(RU
,-0x1.ffffffffffffep
-1023, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
181 T(RU
, -0x1p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
182 T(RU
,-0x1.0000000000001p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
183 T(RU
,-0x1.0000000000002p
-1022, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
184 T(RU
, -0x1p
-1021, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
185 T(RU
, -0x1p
-1020, 0x1.0000000000001p
+0, 0x1p
+0, INEXACT
)
186 T(RU
, -0x1p
-27, 0x1.0000000000001p
+0, 0x1.cp
-1, INEXACT
)
187 T(RU
, -0x1p
-25, 0x1.0000000000003p
+0, 0x1p
+0, INEXACT
)
188 T(RZ
, 0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
189 T(RZ
, inf
, inf
, 0x0p
+0, 0)
190 T(RZ
, -0x0p
+0, 0x1p
+0, 0x0p
+0, 0)
191 T(RZ
, -inf
, inf
, 0x0p
+0, 0)
192 T(RZ
, 0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
193 T(RZ
, 0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
194 T(RZ
, 0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
195 T(RZ
, 0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
196 T(RZ
, 0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
197 T(RZ
, 0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
198 T(RZ
, 0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
199 T(RZ
, 0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
200 T(RZ
, 0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
201 T(RZ
, 0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
202 T(RZ
, 0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
203 T(RZ
, 0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
204 T(RZ
, -0x1p
-1074, 0x1p
+0, 0x0p
+0, INEXACT
)
205 T(RZ
, -0x1p
-1073, 0x1p
+0, 0x0p
+0, INEXACT
)
206 T(RZ
, -0x1p
-1024, 0x1p
+0, 0x0p
+0, INEXACT
)
207 T(RZ
, -0x1p
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
208 T(RZ
,-0x1.ffffffffffffcp
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
209 T(RZ
,-0x1.ffffffffffffep
-1023, 0x1p
+0, 0x0p
+0, INEXACT
)
210 T(RZ
, -0x1p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
211 T(RZ
,-0x1.0000000000001p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
212 T(RZ
,-0x1.0000000000002p
-1022, 0x1p
+0, 0x0p
+0, INEXACT
)
213 T(RZ
, -0x1p
-1021, 0x1p
+0, 0x0p
+0, INEXACT
)
214 T(RZ
, -0x1p
-1020, 0x1p
+0, 0x0p
+0, INEXACT
)
215 T(RZ
, -0x1p
-27, 0x1p
+0, -0x1p
-3, INEXACT
)
216 T(RZ
, 0x1.634p
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
217 T(RZ
, 0x1p
+1022, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
218 T(RZ
, 0x1p
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
219 T(RZ
, 0x1.ffffffffffffep
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
220 T(RZ
, 0x1.fffffffffffffp
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
221 T(RZ
, -0x1.634p
+9, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
222 T(RZ
, -0x1p
+1022, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
223 T(RZ
, -0x1p
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
224 T(RZ
,-0x1.ffffffffffffep
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
225 T(RZ
,-0x1.fffffffffffffp
+1023, 0x1.fffffffffffffp
+1023, -0x1p
+0, INEXACT
|OVERFLOW
)
226 T(RZ
, nan
, nan
, 0x0p
+0, 0)
227 T(RZ
, nan
, nan
, 0x0p
+0, 0)
228 T(RZ
, 0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)
229 T(RZ
, -0x1p
-25, 0x1.0000000000002p
+0, -0x1.555554p
-53, INEXACT
)