1*7f8c6829SSascha Wildner /*-
2*7f8c6829SSascha Wildner * Copyright (c) 2004 David Schultz <das@FreeBSD.org>
3*7f8c6829SSascha Wildner * All rights reserved.
4*7f8c6829SSascha Wildner *
5*7f8c6829SSascha Wildner * Redistribution and use in source and binary forms, with or without
6*7f8c6829SSascha Wildner * modification, are permitted provided that the following conditions
7*7f8c6829SSascha Wildner * are met:
8*7f8c6829SSascha Wildner * 1. Redistributions of source code must retain the above copyright
9*7f8c6829SSascha Wildner * notice, this list of conditions and the following disclaimer.
10*7f8c6829SSascha Wildner * 2. Redistributions in binary form must reproduce the above copyright
11*7f8c6829SSascha Wildner * notice, this list of conditions and the following disclaimer in the
12*7f8c6829SSascha Wildner * documentation and/or other materials provided with the distribution.
13*7f8c6829SSascha Wildner *
14*7f8c6829SSascha Wildner * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15*7f8c6829SSascha Wildner * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16*7f8c6829SSascha Wildner * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17*7f8c6829SSascha Wildner * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18*7f8c6829SSascha Wildner * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19*7f8c6829SSascha Wildner * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20*7f8c6829SSascha Wildner * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21*7f8c6829SSascha Wildner * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22*7f8c6829SSascha Wildner * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23*7f8c6829SSascha Wildner * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24*7f8c6829SSascha Wildner * SUCH DAMAGE.
25*7f8c6829SSascha Wildner *
26*7f8c6829SSascha Wildner * $FreeBSD: src/tools/regression/lib/msun/test-fenv.c,v 1.4 2005/03/16 19:04:45 das Exp $
27*7f8c6829SSascha Wildner */
28*7f8c6829SSascha Wildner
29*7f8c6829SSascha Wildner /*
30*7f8c6829SSascha Wildner * Test the correctness and C99-compliance of various fenv.h features.
31*7f8c6829SSascha Wildner */
32*7f8c6829SSascha Wildner
33*7f8c6829SSascha Wildner #include <sys/types.h>
34*7f8c6829SSascha Wildner #include <sys/wait.h>
35*7f8c6829SSascha Wildner #include <assert.h>
36*7f8c6829SSascha Wildner #include <err.h>
37*7f8c6829SSascha Wildner #include <fenv.h>
38*7f8c6829SSascha Wildner #include <float.h>
39*7f8c6829SSascha Wildner #include <math.h>
40*7f8c6829SSascha Wildner #include <signal.h>
41*7f8c6829SSascha Wildner #include <stdio.h>
42*7f8c6829SSascha Wildner #include <string.h>
43*7f8c6829SSascha Wildner #include <unistd.h>
44*7f8c6829SSascha Wildner
45*7f8c6829SSascha Wildner /*
46*7f8c6829SSascha Wildner * Implementations are permitted to define additional exception flags
47*7f8c6829SSascha Wildner * not specified in the standard, so it is not necessarily true that
48*7f8c6829SSascha Wildner * FE_ALL_EXCEPT == ALL_STD_EXCEPT.
49*7f8c6829SSascha Wildner */
50*7f8c6829SSascha Wildner #define ALL_STD_EXCEPT (FE_DIVBYZERO | FE_INEXACT | FE_INVALID | \
51*7f8c6829SSascha Wildner FE_OVERFLOW | FE_UNDERFLOW)
52*7f8c6829SSascha Wildner
53*7f8c6829SSascha Wildner #define NEXCEPTS (sizeof(std_excepts) / sizeof(std_excepts[0]))
54*7f8c6829SSascha Wildner
55*7f8c6829SSascha Wildner static const int std_excepts[] = {
56*7f8c6829SSascha Wildner FE_INVALID,
57*7f8c6829SSascha Wildner FE_DIVBYZERO,
58*7f8c6829SSascha Wildner FE_OVERFLOW,
59*7f8c6829SSascha Wildner FE_UNDERFLOW,
60*7f8c6829SSascha Wildner FE_INEXACT,
61*7f8c6829SSascha Wildner };
62*7f8c6829SSascha Wildner
63*7f8c6829SSascha Wildner /* init_exceptsets() initializes this to the power set of std_excepts[] */
64*7f8c6829SSascha Wildner static int std_except_sets[1 << NEXCEPTS];
65*7f8c6829SSascha Wildner
66*7f8c6829SSascha Wildner static void init_exceptsets(void);
67*7f8c6829SSascha Wildner
68*7f8c6829SSascha Wildner static void test_dfl_env(void);
69*7f8c6829SSascha Wildner static void test_fegsetenv(void);
70*7f8c6829SSascha Wildner static void test_fegsetexceptflag(void);
71*7f8c6829SSascha Wildner static void test_masking(void);
72*7f8c6829SSascha Wildner static void test_fegsetround(void);
73*7f8c6829SSascha Wildner static void test_feholdupdate(void);
74*7f8c6829SSascha Wildner static void test_feraiseexcept(void);
75*7f8c6829SSascha Wildner static void test_fetestclearexcept(void);
76*7f8c6829SSascha Wildner
77*7f8c6829SSascha Wildner static int getround(void);
78*7f8c6829SSascha Wildner static void raiseexcept(int excepts);
79*7f8c6829SSascha Wildner static void trap_handler(int sig);
80*7f8c6829SSascha Wildner
81*7f8c6829SSascha Wildner #pragma STDC FENV_ACCESS ON
82*7f8c6829SSascha Wildner
83*7f8c6829SSascha Wildner int
main(int argc,char * argv[])84*7f8c6829SSascha Wildner main(int argc, char *argv[])
85*7f8c6829SSascha Wildner {
86*7f8c6829SSascha Wildner
87*7f8c6829SSascha Wildner printf("1..8\n");
88*7f8c6829SSascha Wildner init_exceptsets();
89*7f8c6829SSascha Wildner test_dfl_env();
90*7f8c6829SSascha Wildner printf("ok 1 - fenv\n");
91*7f8c6829SSascha Wildner test_fetestclearexcept();
92*7f8c6829SSascha Wildner printf("ok 2 - fenv\n");
93*7f8c6829SSascha Wildner test_fegsetexceptflag();
94*7f8c6829SSascha Wildner printf("ok 3 - fenv\n");
95*7f8c6829SSascha Wildner test_feraiseexcept();
96*7f8c6829SSascha Wildner printf("ok 4 - fenv\n");
97*7f8c6829SSascha Wildner test_fegsetround();
98*7f8c6829SSascha Wildner printf("ok 5 - fenv\n");
99*7f8c6829SSascha Wildner test_fegsetenv();
100*7f8c6829SSascha Wildner printf("ok 6 - fenv\n");
101*7f8c6829SSascha Wildner test_masking();
102*7f8c6829SSascha Wildner printf("ok 7 - fenv\n");
103*7f8c6829SSascha Wildner test_feholdupdate();
104*7f8c6829SSascha Wildner printf("ok 8 - fenv\n");
105*7f8c6829SSascha Wildner
106*7f8c6829SSascha Wildner return (0);
107*7f8c6829SSascha Wildner }
108*7f8c6829SSascha Wildner
109*7f8c6829SSascha Wildner /*
110*7f8c6829SSascha Wildner * Initialize std_except_sets[] to the power set of std_excepts[]
111*7f8c6829SSascha Wildner */
112*7f8c6829SSascha Wildner void
init_exceptsets(void)113*7f8c6829SSascha Wildner init_exceptsets(void)
114*7f8c6829SSascha Wildner {
115*7f8c6829SSascha Wildner int i, j, sr;
116*7f8c6829SSascha Wildner
117*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++) {
118*7f8c6829SSascha Wildner for (sr = i, j = 0; sr != 0; sr >>= 1, j++)
119*7f8c6829SSascha Wildner std_except_sets[i] |= std_excepts[j] & ((~sr & 1) - 1);
120*7f8c6829SSascha Wildner }
121*7f8c6829SSascha Wildner }
122*7f8c6829SSascha Wildner
123*7f8c6829SSascha Wildner /*
124*7f8c6829SSascha Wildner * This tests checks the default FP environment, so it must be first.
125*7f8c6829SSascha Wildner * The memcmp() test below may be too much to ask for, since there
126*7f8c6829SSascha Wildner * could be multiple machine-specific default environments.
127*7f8c6829SSascha Wildner */
128*7f8c6829SSascha Wildner static void
test_dfl_env(void)129*7f8c6829SSascha Wildner test_dfl_env(void)
130*7f8c6829SSascha Wildner {
131*7f8c6829SSascha Wildner #ifndef NO_STRICT_DFL_ENV
132*7f8c6829SSascha Wildner fenv_t env;
133*7f8c6829SSascha Wildner
134*7f8c6829SSascha Wildner fegetenv(&env);
135*7f8c6829SSascha Wildner assert(memcmp(&env, FE_DFL_ENV, sizeof(env)) == 0);
136*7f8c6829SSascha Wildner #endif
137*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
138*7f8c6829SSascha Wildner }
139*7f8c6829SSascha Wildner
140*7f8c6829SSascha Wildner /*
141*7f8c6829SSascha Wildner * Test fetestexcept() and feclearexcept().
142*7f8c6829SSascha Wildner */
143*7f8c6829SSascha Wildner static void
test_fetestclearexcept(void)144*7f8c6829SSascha Wildner test_fetestclearexcept(void)
145*7f8c6829SSascha Wildner {
146*7f8c6829SSascha Wildner int excepts, i;
147*7f8c6829SSascha Wildner
148*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++)
149*7f8c6829SSascha Wildner assert(fetestexcept(std_except_sets[i]) == 0);
150*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++) {
151*7f8c6829SSascha Wildner excepts = std_except_sets[i];
152*7f8c6829SSascha Wildner
153*7f8c6829SSascha Wildner /* FE_ALL_EXCEPT might be special-cased, as on i386. */
154*7f8c6829SSascha Wildner raiseexcept(excepts);
155*7f8c6829SSascha Wildner assert(fetestexcept(excepts) == excepts);
156*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
157*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
158*7f8c6829SSascha Wildner
159*7f8c6829SSascha Wildner raiseexcept(excepts);
160*7f8c6829SSascha Wildner assert(fetestexcept(excepts) == excepts);
161*7f8c6829SSascha Wildner if ((excepts & (FE_UNDERFLOW | FE_OVERFLOW)) != 0) {
162*7f8c6829SSascha Wildner excepts |= FE_INEXACT;
163*7f8c6829SSascha Wildner assert((fetestexcept(ALL_STD_EXCEPT) | FE_INEXACT) ==
164*7f8c6829SSascha Wildner excepts);
165*7f8c6829SSascha Wildner } else {
166*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == excepts);
167*7f8c6829SSascha Wildner }
168*7f8c6829SSascha Wildner assert(feclearexcept(excepts) == 0);
169*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == 0);
170*7f8c6829SSascha Wildner }
171*7f8c6829SSascha Wildner }
172*7f8c6829SSascha Wildner
173*7f8c6829SSascha Wildner /*
174*7f8c6829SSascha Wildner * Test fegetexceptflag() and fesetexceptflag().
175*7f8c6829SSascha Wildner *
176*7f8c6829SSascha Wildner * Prerequisites: fetestexcept(), feclearexcept()
177*7f8c6829SSascha Wildner */
178*7f8c6829SSascha Wildner static void
test_fegsetexceptflag(void)179*7f8c6829SSascha Wildner test_fegsetexceptflag(void)
180*7f8c6829SSascha Wildner {
181*7f8c6829SSascha Wildner fexcept_t flag;
182*7f8c6829SSascha Wildner int excepts, i;
183*7f8c6829SSascha Wildner
184*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
185*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++) {
186*7f8c6829SSascha Wildner excepts = std_except_sets[i];
187*7f8c6829SSascha Wildner
188*7f8c6829SSascha Wildner assert(fegetexceptflag(&flag, excepts) == 0);
189*7f8c6829SSascha Wildner raiseexcept(ALL_STD_EXCEPT);
190*7f8c6829SSascha Wildner assert(fesetexceptflag(&flag, excepts) == 0);
191*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) ==
192*7f8c6829SSascha Wildner (ALL_STD_EXCEPT ^ excepts));
193*7f8c6829SSascha Wildner
194*7f8c6829SSascha Wildner assert(fegetexceptflag(&flag, FE_ALL_EXCEPT) == 0);
195*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
196*7f8c6829SSascha Wildner assert(fesetexceptflag(&flag, excepts) == 0);
197*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == 0);
198*7f8c6829SSascha Wildner assert(fesetexceptflag(&flag, ALL_STD_EXCEPT ^ excepts) == 0);
199*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) ==
200*7f8c6829SSascha Wildner (ALL_STD_EXCEPT ^ excepts));
201*7f8c6829SSascha Wildner
202*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
203*7f8c6829SSascha Wildner }
204*7f8c6829SSascha Wildner }
205*7f8c6829SSascha Wildner
206*7f8c6829SSascha Wildner /*
207*7f8c6829SSascha Wildner * Test feraiseexcept().
208*7f8c6829SSascha Wildner *
209*7f8c6829SSascha Wildner * Prerequisites: fetestexcept(), feclearexcept()
210*7f8c6829SSascha Wildner */
211*7f8c6829SSascha Wildner static void
test_feraiseexcept(void)212*7f8c6829SSascha Wildner test_feraiseexcept(void)
213*7f8c6829SSascha Wildner {
214*7f8c6829SSascha Wildner int excepts, i;
215*7f8c6829SSascha Wildner
216*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++) {
217*7f8c6829SSascha Wildner excepts = std_except_sets[i];
218*7f8c6829SSascha Wildner
219*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
220*7f8c6829SSascha Wildner assert(feraiseexcept(excepts) == 0);
221*7f8c6829SSascha Wildner if ((excepts & (FE_UNDERFLOW | FE_OVERFLOW)) != 0) {
222*7f8c6829SSascha Wildner excepts |= FE_INEXACT;
223*7f8c6829SSascha Wildner assert((fetestexcept(ALL_STD_EXCEPT) | FE_INEXACT) ==
224*7f8c6829SSascha Wildner excepts);
225*7f8c6829SSascha Wildner } else {
226*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == excepts);
227*7f8c6829SSascha Wildner }
228*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
229*7f8c6829SSascha Wildner }
230*7f8c6829SSascha Wildner assert(feraiseexcept(FE_INVALID | FE_DIVBYZERO) == 0);
231*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == (FE_INVALID | FE_DIVBYZERO));
232*7f8c6829SSascha Wildner assert(feraiseexcept(FE_OVERFLOW | FE_UNDERFLOW | FE_INEXACT) == 0);
233*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == ALL_STD_EXCEPT);
234*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
235*7f8c6829SSascha Wildner }
236*7f8c6829SSascha Wildner
237*7f8c6829SSascha Wildner /*
238*7f8c6829SSascha Wildner * Test fegetround() and fesetround().
239*7f8c6829SSascha Wildner */
240*7f8c6829SSascha Wildner static void
test_fegsetround(void)241*7f8c6829SSascha Wildner test_fegsetround(void)
242*7f8c6829SSascha Wildner {
243*7f8c6829SSascha Wildner
244*7f8c6829SSascha Wildner assert(fegetround() == FE_TONEAREST);
245*7f8c6829SSascha Wildner assert(getround() == FE_TONEAREST);
246*7f8c6829SSascha Wildner assert(FLT_ROUNDS == 1);
247*7f8c6829SSascha Wildner
248*7f8c6829SSascha Wildner assert(fesetround(FE_DOWNWARD) == 0);
249*7f8c6829SSascha Wildner assert(fegetround() == FE_DOWNWARD);
250*7f8c6829SSascha Wildner assert(getround() == FE_DOWNWARD);
251*7f8c6829SSascha Wildner assert(FLT_ROUNDS == 3);
252*7f8c6829SSascha Wildner
253*7f8c6829SSascha Wildner assert(fesetround(FE_UPWARD) == 0);
254*7f8c6829SSascha Wildner assert(getround() == FE_UPWARD);
255*7f8c6829SSascha Wildner assert(fegetround() == FE_UPWARD);
256*7f8c6829SSascha Wildner assert(FLT_ROUNDS == 2);
257*7f8c6829SSascha Wildner
258*7f8c6829SSascha Wildner assert(fesetround(FE_TOWARDZERO) == 0);
259*7f8c6829SSascha Wildner assert(getround() == FE_TOWARDZERO);
260*7f8c6829SSascha Wildner assert(fegetround() == FE_TOWARDZERO);
261*7f8c6829SSascha Wildner assert(FLT_ROUNDS == 0);
262*7f8c6829SSascha Wildner
263*7f8c6829SSascha Wildner assert(fesetround(FE_TONEAREST) == 0);
264*7f8c6829SSascha Wildner assert(getround() == FE_TONEAREST);
265*7f8c6829SSascha Wildner assert(FLT_ROUNDS == 1);
266*7f8c6829SSascha Wildner
267*7f8c6829SSascha Wildner assert(feclearexcept(FE_ALL_EXCEPT) == 0);
268*7f8c6829SSascha Wildner }
269*7f8c6829SSascha Wildner
270*7f8c6829SSascha Wildner /*
271*7f8c6829SSascha Wildner * Test fegetenv() and fesetenv().
272*7f8c6829SSascha Wildner *
273*7f8c6829SSascha Wildner * Prerequisites: fetestexcept(), feclearexcept(), fegetround(), fesetround()
274*7f8c6829SSascha Wildner */
275*7f8c6829SSascha Wildner static void
test_fegsetenv(void)276*7f8c6829SSascha Wildner test_fegsetenv(void)
277*7f8c6829SSascha Wildner {
278*7f8c6829SSascha Wildner fenv_t env1, env2;
279*7f8c6829SSascha Wildner int excepts, i;
280*7f8c6829SSascha Wildner
281*7f8c6829SSascha Wildner for (i = 0; i < 1 << NEXCEPTS; i++) {
282*7f8c6829SSascha Wildner excepts = std_except_sets[i];
283*7f8c6829SSascha Wildner
284*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
285*7f8c6829SSascha Wildner assert(fegetround() == FE_TONEAREST);
286*7f8c6829SSascha Wildner assert(fegetenv(&env1) == 0);
287*7f8c6829SSascha Wildner
288*7f8c6829SSascha Wildner /*
289*7f8c6829SSascha Wildner * fe[gs]etenv() should be able to save and restore
290*7f8c6829SSascha Wildner * exception flags without the spurious inexact
291*7f8c6829SSascha Wildner * exceptions that afflict raiseexcept().
292*7f8c6829SSascha Wildner */
293*7f8c6829SSascha Wildner raiseexcept(excepts);
294*7f8c6829SSascha Wildner if ((excepts & (FE_UNDERFLOW | FE_OVERFLOW)) != 0 &&
295*7f8c6829SSascha Wildner (excepts & FE_INEXACT) == 0)
296*7f8c6829SSascha Wildner assert(feclearexcept(FE_INEXACT) == 0);
297*7f8c6829SSascha Wildner
298*7f8c6829SSascha Wildner fesetround(FE_DOWNWARD);
299*7f8c6829SSascha Wildner assert(fegetenv(&env2) == 0);
300*7f8c6829SSascha Wildner assert(fesetenv(&env1) == 0);
301*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
302*7f8c6829SSascha Wildner assert(fegetround() == FE_TONEAREST);
303*7f8c6829SSascha Wildner
304*7f8c6829SSascha Wildner assert(fesetenv(&env2) == 0);
305*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == excepts);
306*7f8c6829SSascha Wildner assert(fegetround() == FE_DOWNWARD);
307*7f8c6829SSascha Wildner assert(fesetenv(&env1) == 0);
308*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
309*7f8c6829SSascha Wildner assert(fegetround() == FE_TONEAREST);
310*7f8c6829SSascha Wildner }
311*7f8c6829SSascha Wildner }
312*7f8c6829SSascha Wildner
313*7f8c6829SSascha Wildner /*
314*7f8c6829SSascha Wildner * Test fegetexcept(), fedisableexcept(), and feenableexcept().
315*7f8c6829SSascha Wildner *
316*7f8c6829SSascha Wildner * Prerequisites: fetestexcept(), feraiseexcept()
317*7f8c6829SSascha Wildner */
318*7f8c6829SSascha Wildner static void
test_masking(void)319*7f8c6829SSascha Wildner test_masking(void)
320*7f8c6829SSascha Wildner {
321*7f8c6829SSascha Wildner struct sigaction act;
322*7f8c6829SSascha Wildner int except, i, pass, raise, status;
323*7f8c6829SSascha Wildner
324*7f8c6829SSascha Wildner assert((fegetexcept() & ALL_STD_EXCEPT) == 0);
325*7f8c6829SSascha Wildner assert((feenableexcept(FE_INVALID|FE_OVERFLOW) & ALL_STD_EXCEPT) == 0);
326*7f8c6829SSascha Wildner assert((feenableexcept(FE_UNDERFLOW) & ALL_STD_EXCEPT) ==
327*7f8c6829SSascha Wildner (FE_INVALID | FE_OVERFLOW));
328*7f8c6829SSascha Wildner assert((fedisableexcept(FE_OVERFLOW) & ALL_STD_EXCEPT) ==
329*7f8c6829SSascha Wildner (FE_INVALID | FE_OVERFLOW | FE_UNDERFLOW));
330*7f8c6829SSascha Wildner assert((fegetexcept() & ALL_STD_EXCEPT) == (FE_INVALID | FE_UNDERFLOW));
331*7f8c6829SSascha Wildner assert((fedisableexcept(FE_ALL_EXCEPT) & ALL_STD_EXCEPT) ==
332*7f8c6829SSascha Wildner (FE_INVALID | FE_UNDERFLOW));
333*7f8c6829SSascha Wildner assert((fegetexcept() & ALL_STD_EXCEPT) == 0);
334*7f8c6829SSascha Wildner
335*7f8c6829SSascha Wildner sigemptyset(&act.sa_mask);
336*7f8c6829SSascha Wildner act.sa_flags = 0;
337*7f8c6829SSascha Wildner act.sa_handler = trap_handler;
338*7f8c6829SSascha Wildner for (pass = 0; pass < 2; pass++) {
339*7f8c6829SSascha Wildner for (i = 0; i < NEXCEPTS; i++) {
340*7f8c6829SSascha Wildner except = std_excepts[i];
341*7f8c6829SSascha Wildner /* over/underflow may also raise inexact */
342*7f8c6829SSascha Wildner if (except == FE_INEXACT)
343*7f8c6829SSascha Wildner raise = FE_DIVBYZERO | FE_INVALID;
344*7f8c6829SSascha Wildner else
345*7f8c6829SSascha Wildner raise = ALL_STD_EXCEPT ^ except;
346*7f8c6829SSascha Wildner
347*7f8c6829SSascha Wildner /*
348*7f8c6829SSascha Wildner * We need to fork a child process because
349*7f8c6829SSascha Wildner * there isn't a portable way to recover from
350*7f8c6829SSascha Wildner * a floating-point exception.
351*7f8c6829SSascha Wildner */
352*7f8c6829SSascha Wildner switch(fork()) {
353*7f8c6829SSascha Wildner case 0: /* child */
354*7f8c6829SSascha Wildner assert((fegetexcept() & ALL_STD_EXCEPT) == 0);
355*7f8c6829SSascha Wildner assert((feenableexcept(except)
356*7f8c6829SSascha Wildner & ALL_STD_EXCEPT) == 0);
357*7f8c6829SSascha Wildner assert(fegetexcept() == except);
358*7f8c6829SSascha Wildner raiseexcept(raise);
359*7f8c6829SSascha Wildner assert(feraiseexcept(raise) == 0);
360*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) == raise);
361*7f8c6829SSascha Wildner
362*7f8c6829SSascha Wildner assert(sigaction(SIGFPE, &act, NULL) == 0);
363*7f8c6829SSascha Wildner switch (pass) {
364*7f8c6829SSascha Wildner case 0:
365*7f8c6829SSascha Wildner raiseexcept(except);
366*7f8c6829SSascha Wildner case 1:
367*7f8c6829SSascha Wildner feraiseexcept(except);
368*7f8c6829SSascha Wildner default:
369*7f8c6829SSascha Wildner assert(0);
370*7f8c6829SSascha Wildner }
371*7f8c6829SSascha Wildner assert(0);
372*7f8c6829SSascha Wildner default: /* parent */
373*7f8c6829SSascha Wildner assert(wait(&status) > 0);
374*7f8c6829SSascha Wildner /*
375*7f8c6829SSascha Wildner * Avoid assert() here so that it's possible
376*7f8c6829SSascha Wildner * to examine a failed child's core dump.
377*7f8c6829SSascha Wildner */
378*7f8c6829SSascha Wildner if (!WIFEXITED(status))
379*7f8c6829SSascha Wildner errx(1, "child aborted\n");
380*7f8c6829SSascha Wildner assert(WEXITSTATUS(status) == 0);
381*7f8c6829SSascha Wildner break;
382*7f8c6829SSascha Wildner case -1: /* error */
383*7f8c6829SSascha Wildner assert(0);
384*7f8c6829SSascha Wildner }
385*7f8c6829SSascha Wildner }
386*7f8c6829SSascha Wildner }
387*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
388*7f8c6829SSascha Wildner }
389*7f8c6829SSascha Wildner
390*7f8c6829SSascha Wildner /*
391*7f8c6829SSascha Wildner * Test feholdexcept() and feupdateenv().
392*7f8c6829SSascha Wildner *
393*7f8c6829SSascha Wildner * Prerequisites: fetestexcept(), fegetround(), fesetround(),
394*7f8c6829SSascha Wildner * fedisableexcept(), feenableexcept()
395*7f8c6829SSascha Wildner */
396*7f8c6829SSascha Wildner static void
test_feholdupdate(void)397*7f8c6829SSascha Wildner test_feholdupdate(void)
398*7f8c6829SSascha Wildner {
399*7f8c6829SSascha Wildner fenv_t env;
400*7f8c6829SSascha Wildner
401*7f8c6829SSascha Wildner struct sigaction act;
402*7f8c6829SSascha Wildner int except, i, pass, status, raise;
403*7f8c6829SSascha Wildner
404*7f8c6829SSascha Wildner sigemptyset(&act.sa_mask);
405*7f8c6829SSascha Wildner act.sa_flags = 0;
406*7f8c6829SSascha Wildner act.sa_handler = trap_handler;
407*7f8c6829SSascha Wildner for (pass = 0; pass < 2; pass++) {
408*7f8c6829SSascha Wildner for (i = 0; i < NEXCEPTS; i++) {
409*7f8c6829SSascha Wildner except = std_excepts[i];
410*7f8c6829SSascha Wildner /* over/underflow may also raise inexact */
411*7f8c6829SSascha Wildner if (except == FE_INEXACT)
412*7f8c6829SSascha Wildner raise = FE_DIVBYZERO | FE_INVALID;
413*7f8c6829SSascha Wildner else
414*7f8c6829SSascha Wildner raise = ALL_STD_EXCEPT ^ except;
415*7f8c6829SSascha Wildner
416*7f8c6829SSascha Wildner /*
417*7f8c6829SSascha Wildner * We need to fork a child process because
418*7f8c6829SSascha Wildner * there isn't a portable way to recover from
419*7f8c6829SSascha Wildner * a floating-point exception.
420*7f8c6829SSascha Wildner */
421*7f8c6829SSascha Wildner switch(fork()) {
422*7f8c6829SSascha Wildner case 0: /* child */
423*7f8c6829SSascha Wildner /*
424*7f8c6829SSascha Wildner * We don't want to cause a fatal exception in
425*7f8c6829SSascha Wildner * the child until the second pass, so we can
426*7f8c6829SSascha Wildner * check other properties of feupdateenv().
427*7f8c6829SSascha Wildner */
428*7f8c6829SSascha Wildner if (pass == 1)
429*7f8c6829SSascha Wildner assert((feenableexcept(except) &
430*7f8c6829SSascha Wildner ALL_STD_EXCEPT) == 0);
431*7f8c6829SSascha Wildner raiseexcept(raise);
432*7f8c6829SSascha Wildner assert(fesetround(FE_DOWNWARD) == 0);
433*7f8c6829SSascha Wildner assert(feholdexcept(&env) == 0);
434*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
435*7f8c6829SSascha Wildner raiseexcept(except);
436*7f8c6829SSascha Wildner assert(fesetround(FE_UPWARD) == 0);
437*7f8c6829SSascha Wildner
438*7f8c6829SSascha Wildner if (pass == 1)
439*7f8c6829SSascha Wildner assert(sigaction(SIGFPE, &act, NULL) ==
440*7f8c6829SSascha Wildner 0);
441*7f8c6829SSascha Wildner assert(feupdateenv(&env) == 0);
442*7f8c6829SSascha Wildner assert(fegetround() == FE_DOWNWARD);
443*7f8c6829SSascha Wildner assert(fetestexcept(ALL_STD_EXCEPT) ==
444*7f8c6829SSascha Wildner (except | raise));
445*7f8c6829SSascha Wildner
446*7f8c6829SSascha Wildner assert(pass == 0);
447*7f8c6829SSascha Wildner _exit(0);
448*7f8c6829SSascha Wildner default: /* parent */
449*7f8c6829SSascha Wildner assert(wait(&status) > 0);
450*7f8c6829SSascha Wildner /*
451*7f8c6829SSascha Wildner * Avoid assert() here so that it's possible
452*7f8c6829SSascha Wildner * to examine a failed child's core dump.
453*7f8c6829SSascha Wildner */
454*7f8c6829SSascha Wildner if (!WIFEXITED(status))
455*7f8c6829SSascha Wildner errx(1, "child aborted\n");
456*7f8c6829SSascha Wildner assert(WEXITSTATUS(status) == 0);
457*7f8c6829SSascha Wildner break;
458*7f8c6829SSascha Wildner case -1: /* error */
459*7f8c6829SSascha Wildner assert(0);
460*7f8c6829SSascha Wildner }
461*7f8c6829SSascha Wildner }
462*7f8c6829SSascha Wildner }
463*7f8c6829SSascha Wildner assert(fetestexcept(FE_ALL_EXCEPT) == 0);
464*7f8c6829SSascha Wildner }
465*7f8c6829SSascha Wildner
466*7f8c6829SSascha Wildner /*
467*7f8c6829SSascha Wildner * Raise a floating-point exception without relying on the standard
468*7f8c6829SSascha Wildner * library routines, which we are trying to test.
469*7f8c6829SSascha Wildner *
470*7f8c6829SSascha Wildner * XXX We can't raise an {over,under}flow without also raising an
471*7f8c6829SSascha Wildner * inexact exception.
472*7f8c6829SSascha Wildner */
473*7f8c6829SSascha Wildner static void
raiseexcept(int excepts)474*7f8c6829SSascha Wildner raiseexcept(int excepts)
475*7f8c6829SSascha Wildner {
476*7f8c6829SSascha Wildner volatile double d;
477*7f8c6829SSascha Wildner
478*7f8c6829SSascha Wildner /*
479*7f8c6829SSascha Wildner * With a compiler that supports the FENV_ACCESS pragma
480*7f8c6829SSascha Wildner * properly, simple expressions like '0.0 / 0.0' should
481*7f8c6829SSascha Wildner * be sufficient to generate traps. Unfortunately, we
482*7f8c6829SSascha Wildner * need to bring a volatile variable into the equation
483*7f8c6829SSascha Wildner * to prevent incorrect optimizations.
484*7f8c6829SSascha Wildner */
485*7f8c6829SSascha Wildner if (excepts & FE_INVALID) {
486*7f8c6829SSascha Wildner d = 0.0;
487*7f8c6829SSascha Wildner d = 0.0 / d;
488*7f8c6829SSascha Wildner }
489*7f8c6829SSascha Wildner if (excepts & FE_DIVBYZERO) {
490*7f8c6829SSascha Wildner d = 0.0;
491*7f8c6829SSascha Wildner d = 1.0 / d;
492*7f8c6829SSascha Wildner }
493*7f8c6829SSascha Wildner if (excepts & FE_OVERFLOW) {
494*7f8c6829SSascha Wildner d = DBL_MAX;
495*7f8c6829SSascha Wildner d *= 2.0;
496*7f8c6829SSascha Wildner }
497*7f8c6829SSascha Wildner if (excepts & FE_UNDERFLOW) {
498*7f8c6829SSascha Wildner d = DBL_MIN;
499*7f8c6829SSascha Wildner d /= DBL_MAX;
500*7f8c6829SSascha Wildner }
501*7f8c6829SSascha Wildner if (excepts & FE_INEXACT) {
502*7f8c6829SSascha Wildner d = DBL_MIN;
503*7f8c6829SSascha Wildner d += 1.0;
504*7f8c6829SSascha Wildner }
505*7f8c6829SSascha Wildner
506*7f8c6829SSascha Wildner /*
507*7f8c6829SSascha Wildner * On the x86 (and some other architectures?) the FPU and
508*7f8c6829SSascha Wildner * integer units are decoupled. We need to execute an FWAIT
509*7f8c6829SSascha Wildner * or a floating-point instruction to get synchronous exceptions.
510*7f8c6829SSascha Wildner */
511*7f8c6829SSascha Wildner d = 1.0;
512*7f8c6829SSascha Wildner d += 1.0;
513*7f8c6829SSascha Wildner }
514*7f8c6829SSascha Wildner
515*7f8c6829SSascha Wildner /*
516*7f8c6829SSascha Wildner * Determine the current rounding mode without relying on the fenv
517*7f8c6829SSascha Wildner * routines. This function may raise an inexact exception.
518*7f8c6829SSascha Wildner */
519*7f8c6829SSascha Wildner static int
getround(void)520*7f8c6829SSascha Wildner getround(void)
521*7f8c6829SSascha Wildner {
522*7f8c6829SSascha Wildner volatile double d;
523*7f8c6829SSascha Wildner
524*7f8c6829SSascha Wildner /*
525*7f8c6829SSascha Wildner * This test works just as well with 0.0 - 0.0, except on ia64
526*7f8c6829SSascha Wildner * where 0.0 - 0.0 gives the wrong sign when rounding downwards.
527*7f8c6829SSascha Wildner */
528*7f8c6829SSascha Wildner d = 1.0;
529*7f8c6829SSascha Wildner d -= 1.0;
530*7f8c6829SSascha Wildner if (copysign(1.0, d) < 0.0)
531*7f8c6829SSascha Wildner return (FE_DOWNWARD);
532*7f8c6829SSascha Wildner
533*7f8c6829SSascha Wildner d = 1.0;
534*7f8c6829SSascha Wildner if (d + (DBL_EPSILON * 3.0 / 4.0) == 1.0)
535*7f8c6829SSascha Wildner return (FE_TOWARDZERO);
536*7f8c6829SSascha Wildner if (d + (DBL_EPSILON * 1.0 / 4.0) > 1.0)
537*7f8c6829SSascha Wildner return (FE_UPWARD);
538*7f8c6829SSascha Wildner
539*7f8c6829SSascha Wildner return (FE_TONEAREST);
540*7f8c6829SSascha Wildner }
541*7f8c6829SSascha Wildner
542*7f8c6829SSascha Wildner static void
trap_handler(int sig)543*7f8c6829SSascha Wildner trap_handler(int sig)
544*7f8c6829SSascha Wildner {
545*7f8c6829SSascha Wildner
546*7f8c6829SSascha Wildner assert(sig == SIGFPE);
547*7f8c6829SSascha Wildner _exit(0);
548*7f8c6829SSascha Wildner }
549