n_floor.c revision 1.9 1 1.9 riastrad /* $NetBSD: n_floor.c,v 1.9 2024/05/08 02:08:11 riastradh Exp $ */
2 1.1 ragge /*
3 1.1 ragge * Copyright (c) 1985, 1993
4 1.1 ragge * The Regents of the University of California. All rights reserved.
5 1.1 ragge *
6 1.1 ragge * Redistribution and use in source and binary forms, with or without
7 1.1 ragge * modification, are permitted provided that the following conditions
8 1.1 ragge * are met:
9 1.1 ragge * 1. Redistributions of source code must retain the above copyright
10 1.1 ragge * notice, this list of conditions and the following disclaimer.
11 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 ragge * notice, this list of conditions and the following disclaimer in the
13 1.1 ragge * documentation and/or other materials provided with the distribution.
14 1.5 agc * 3. Neither the name of the University nor the names of its contributors
15 1.1 ragge * may be used to endorse or promote products derived from this software
16 1.1 ragge * without specific prior written permission.
17 1.1 ragge *
18 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
19 1.1 ragge * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20 1.1 ragge * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 1.1 ragge * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
22 1.1 ragge * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23 1.1 ragge * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24 1.1 ragge * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 1.1 ragge * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26 1.1 ragge * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27 1.1 ragge * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28 1.1 ragge * SUCH DAMAGE.
29 1.1 ragge */
30 1.1 ragge
31 1.1 ragge #ifndef lint
32 1.2 ragge #if 0
33 1.1 ragge static char sccsid[] = "@(#)floor.c 8.1 (Berkeley) 6/4/93";
34 1.2 ragge #endif
35 1.1 ragge #endif /* not lint */
36 1.1 ragge
37 1.4 matt #define _LIBM_STATIC
38 1.1 ragge #include "mathimpl.h"
39 1.1 ragge
40 1.1 ragge vc(L, 4503599627370496.0E0 ,0000,5c00,0000,0000, 55, 1.0) /* 2**55 */
41 1.1 ragge
42 1.1 ragge ic(L, 4503599627370496.0E0, 52, 1.0) /* 2**52 */
43 1.1 ragge
44 1.1 ragge #ifdef vccast
45 1.1 ragge #define L vccast(L)
46 1.1 ragge #endif
47 1.1 ragge
48 1.9 riastrad __weak_alias(ceill, ceil)
49 1.9 riastrad __weak_alias(floorl, floor)
50 1.9 riastrad __weak_alias(truncl, trunc)
51 1.9 riastrad __weak_alias(rintl, rint)
52 1.8 martin
53 1.1 ragge /*
54 1.1 ragge * floor(x) := the largest integer no larger than x;
55 1.1 ragge * ceil(x) := -floor(-x), for all real x.
56 1.1 ragge *
57 1.1 ragge * Note: Inexact will be signaled if x is not an integer, as is
58 1.1 ragge * customary for IEEE 754. No other signal can be emitted.
59 1.1 ragge */
60 1.1 ragge double
61 1.4 matt floor(double x)
62 1.1 ragge {
63 1.1 ragge volatile double y;
64 1.1 ragge
65 1.1 ragge if (
66 1.3 matt #if !defined(__vax__)&&!defined(tahoe)
67 1.1 ragge x != x || /* NaN */
68 1.3 matt #endif /* !defined(__vax__)&&!defined(tahoe) */
69 1.1 ragge x >= L) /* already an even integer */
70 1.1 ragge return x;
71 1.1 ragge else if (x < (double)0)
72 1.1 ragge return -ceil(-x);
73 1.1 ragge else { /* now 0 <= x < L */
74 1.1 ragge y = L+x; /* destructive store must be forced */
75 1.1 ragge y -= L; /* an integer, and |x-y| < 1 */
76 1.1 ragge return x < y ? y-(double)1 : y;
77 1.1 ragge }
78 1.1 ragge }
79 1.1 ragge
80 1.6 mhitch float
81 1.6 mhitch floorf(float x)
82 1.6 mhitch {
83 1.6 mhitch return floor((double)x);
84 1.6 mhitch }
85 1.6 mhitch
86 1.1 ragge double
87 1.4 matt ceil(double x)
88 1.1 ragge {
89 1.1 ragge volatile double y;
90 1.1 ragge
91 1.1 ragge if (
92 1.3 matt #if !defined(__vax__)&&!defined(tahoe)
93 1.1 ragge x != x || /* NaN */
94 1.3 matt #endif /* !defined(__vax__)&&!defined(tahoe) */
95 1.1 ragge x >= L) /* already an even integer */
96 1.1 ragge return x;
97 1.1 ragge else if (x < (double)0)
98 1.1 ragge return -floor(-x);
99 1.1 ragge else { /* now 0 <= x < L */
100 1.1 ragge y = L+x; /* destructive store must be forced */
101 1.1 ragge y -= L; /* an integer, and |x-y| < 1 */
102 1.1 ragge return x > y ? y+(double)1 : y;
103 1.1 ragge }
104 1.1 ragge }
105 1.1 ragge
106 1.6 mhitch float
107 1.6 mhitch ceilf(float x)
108 1.6 mhitch {
109 1.6 mhitch return ceil((double)x);
110 1.6 mhitch }
111 1.6 mhitch
112 1.1 ragge /*
113 1.1 ragge * algorithm for rint(x) in pseudo-pascal form ...
114 1.1 ragge *
115 1.1 ragge * real rint(x): real x;
116 1.1 ragge * ... delivers integer nearest x in direction of prevailing rounding
117 1.1 ragge * ... mode
118 1.1 ragge * const L = (last consecutive integer)/2
119 1.1 ragge * = 2**55; for VAX D
120 1.1 ragge * = 2**52; for IEEE 754 Double
121 1.1 ragge * real s,t;
122 1.1 ragge * begin
123 1.1 ragge * if x != x then return x; ... NaN
124 1.1 ragge * if |x| >= L then return x; ... already an integer
125 1.1 ragge * s := copysign(L,x);
126 1.1 ragge * t := x + s; ... = (x+s) rounded to integer
127 1.1 ragge * return t - s
128 1.1 ragge * end;
129 1.1 ragge *
130 1.1 ragge * Note: Inexact will be signaled if x is not an integer, as is
131 1.1 ragge * customary for IEEE 754. No other signal can be emitted.
132 1.1 ragge */
133 1.1 ragge double
134 1.4 matt rint(double x)
135 1.1 ragge {
136 1.1 ragge double s;
137 1.1 ragge volatile double t;
138 1.1 ragge const double one = 1.0;
139 1.1 ragge
140 1.3 matt #if !defined(__vax__)&&!defined(tahoe)
141 1.1 ragge if (x != x) /* NaN */
142 1.1 ragge return (x);
143 1.3 matt #endif /* !defined(__vax__)&&!defined(tahoe) */
144 1.1 ragge if (copysign(x,one) >= L) /* already an integer */
145 1.1 ragge return (x);
146 1.1 ragge s = copysign(L,x);
147 1.1 ragge t = x + s; /* x+s rounded to integer */
148 1.1 ragge return (t - s);
149 1.1 ragge }
150 1.9 riastrad
151 1.9 riastrad float
152 1.9 riastrad rintf(float x)
153 1.9 riastrad {
154 1.9 riastrad return rint((double)x);
155 1.9 riastrad }
156 1.7 abs
157 1.7 abs long
158 1.7 abs lrint(double x)
159 1.7 abs {
160 1.7 abs double s;
161 1.7 abs volatile double t;
162 1.7 abs const double one = 1.0;
163 1.7 abs
164 1.7 abs #if !defined(__vax__)&&!defined(tahoe)
165 1.7 abs if (x != x) /* NaN */
166 1.7 abs return (x);
167 1.7 abs #endif /* !defined(__vax__)&&!defined(tahoe) */
168 1.7 abs if (copysign(x,one) >= L) /* already an integer */
169 1.7 abs return (x);
170 1.7 abs s = copysign(L,x);
171 1.7 abs t = x + s; /* x+s rounded to integer */
172 1.7 abs return (t - s);
173 1.7 abs }
174 1.7 abs
175 1.7 abs long long
176 1.7 abs llrint(double x)
177 1.7 abs {
178 1.7 abs double s;
179 1.7 abs volatile double t;
180 1.7 abs const double one = 1.0;
181 1.7 abs
182 1.7 abs #if !defined(__vax__)&&!defined(tahoe)
183 1.7 abs if (x != x) /* NaN */
184 1.7 abs return (x);
185 1.7 abs #endif /* !defined(__vax__)&&!defined(tahoe) */
186 1.7 abs if (copysign(x,one) >= L) /* already an integer */
187 1.7 abs return (x);
188 1.7 abs s = copysign(L,x);
189 1.7 abs t = x + s; /* x+s rounded to integer */
190 1.7 abs return (t - s);
191 1.7 abs }
192 1.7 abs
193 1.7 abs long
194 1.7 abs lrintf(float x)
195 1.7 abs {
196 1.7 abs float s;
197 1.7 abs volatile float t;
198 1.7 abs const float one = 1.0;
199 1.7 abs
200 1.7 abs #if !defined(__vax__)&&!defined(tahoe)
201 1.7 abs if (x != x) /* NaN */
202 1.7 abs return (x);
203 1.7 abs #endif /* !defined(__vax__)&&!defined(tahoe) */
204 1.7 abs if (copysign(x,one) >= L) /* already an integer */
205 1.7 abs return (x);
206 1.7 abs s = copysign(L,x);
207 1.7 abs t = x + s; /* x+s rounded to integer */
208 1.7 abs return (t - s);
209 1.7 abs }
210 1.7 abs
211 1.7 abs long long
212 1.7 abs llrintf(float x)
213 1.7 abs {
214 1.7 abs float s;
215 1.7 abs volatile float t;
216 1.7 abs const float one = 1.0;
217 1.7 abs
218 1.7 abs #if !defined(__vax__)&&!defined(tahoe)
219 1.7 abs if (x != x) /* NaN */
220 1.7 abs return (x);
221 1.7 abs #endif /* !defined(__vax__)&&!defined(tahoe) */
222 1.7 abs if (copysign(x,one) >= L) /* already an integer */
223 1.7 abs return (x);
224 1.7 abs s = copysign(L,x);
225 1.7 abs t = x + s; /* x+s rounded to integer */
226 1.7 abs return (t - s);
227 1.7 abs }
228 1.8 martin
229 1.8 martin double
230 1.8 martin trunc(double x)
231 1.8 martin {
232 1.8 martin return x < 0 ? ceil(x) : floor(x);
233 1.8 martin }
234 1.8 martin
235 1.8 martin float
236 1.8 martin truncf(float x)
237 1.8 martin {
238 1.8 martin return x < 0 ? ceilf(x) : floorf(x);
239 1.8 martin }
240