259 lines
6.0 KiB
C
259 lines
6.0 KiB
C
/*
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* Written by Maya Rashish <maya@NetBSD.org>
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* Public domain.
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*
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* Testing IEEE-754 rounding modes (and lrint)
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*/
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#include <atf-c.h>
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#include <fenv.h>
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#ifdef __HAVE_FENV
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#include <math.h>
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#include <stdio.h>
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#include <stdlib.h>
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/*#pragma STDC FENV_ACCESS ON gcc?? */
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#define INT 9223L
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#define EPSILON 0.001
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static const struct {
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int round_mode;
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double input;
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long int expected;
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} values[] = {
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{ FE_DOWNWARD, 3.7, 3},
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{ FE_DOWNWARD, -3.7, -4},
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{ FE_DOWNWARD, +0, 0},
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{ FE_DOWNWARD, -INT-0.01, -INT-1},
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{ FE_DOWNWARD, +INT-0.01, INT-1},
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{ FE_DOWNWARD, -INT+0.01, -INT},
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{ FE_DOWNWARD, +INT+0.01, INT},
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#if 0 /* cpu bugs? */
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{ FE_DOWNWARD, -0, -1},
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{ FE_UPWARD, +0, 1},
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#endif
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{ FE_UPWARD, -0, 0},
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{ FE_UPWARD, -123.7, -123},
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{ FE_UPWARD, 123.999, 124},
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{ FE_UPWARD, -INT-0.01, -INT},
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{ FE_UPWARD, +INT-0.01, INT},
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{ FE_UPWARD, -INT+0.01, -INT+1},
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{ FE_UPWARD, +INT+0.01, INT+1},
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{ FE_TOWARDZERO, 1.99, 1},
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{ FE_TOWARDZERO, -1.99, -1},
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{ FE_TOWARDZERO, 0.2, 0},
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{ FE_TOWARDZERO, INT+0.01, INT},
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{ FE_TOWARDZERO, INT-0.01, INT - 1},
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{ FE_TOWARDZERO, -INT+0.01, -INT + 1},
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{ FE_TOWARDZERO, +0, 0},
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{ FE_TOWARDZERO, -0, 0},
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{ FE_TONEAREST, -INT-0.01, -INT},
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{ FE_TONEAREST, +INT-0.01, INT},
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{ FE_TONEAREST, -INT+0.01, -INT},
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{ FE_TONEAREST, +INT+0.01, INT},
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{ FE_TONEAREST, -INT-0.501, -INT-1},
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{ FE_TONEAREST, +INT-0.501, INT-1},
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{ FE_TONEAREST, -INT+0.501, -INT+1},
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{ FE_TONEAREST, +INT+0.501, INT+1},
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{ FE_TONEAREST, +0, 0},
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{ FE_TONEAREST, -0, 0},
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};
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ATF_TC(fe_round);
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ATF_TC_HEAD(fe_round, tc)
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{
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atf_tc_set_md_var(tc, "descr","Checking IEEE 754 rounding modes using lrint");
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}
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ATF_TC_BODY(fe_round, tc)
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{
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long int received;
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for (unsigned int i = 0; i < __arraycount(values); i++) {
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fesetround(values[i].round_mode);
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received = lrint(values[i].input);
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ATF_CHECK_MSG(
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(labs(received - values[i].expected) < EPSILON),
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"lrint rounding wrong, difference too large\n"
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"input: %f (index %d): got %ld, expected %ld\n",
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values[i].input, i, received, values[i].expected);
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/* Do we get the same rounding mode out? */
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ATF_CHECK_MSG(
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(fegetround() == values[i].round_mode),
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"Didn't get the same rounding mode out!\n"
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"(index %d) fed in %d rounding mode, got %d out\n",
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i, values[i].round_mode, fegetround());
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}
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}
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ATF_TC(fe_nearbyint);
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ATF_TC_HEAD(fe_nearbyint, tc)
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{
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atf_tc_set_md_var(tc, "descr","Checking IEEE 754 rounding modes using nearbyint");
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}
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ATF_TC_BODY(fe_nearbyint, tc)
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{
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double received;
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for (unsigned int i = 0; i < __arraycount(values); i++) {
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fesetround(values[i].round_mode);
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received = nearbyint(values[i].input);
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ATF_CHECK_MSG(
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(fabs(received - values[i].expected) < EPSILON),
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"nearbyint rounding wrong, difference too large\n"
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"input: %f (index %d): got %f, expected %ld\n",
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values[i].input, i, received, values[i].expected);
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/* Do we get the same rounding mode out? */
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ATF_CHECK_MSG(
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(fegetround() == values[i].round_mode),
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"Didn't get the same rounding mode out!\n"
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"(index %d) fed in %d rounding mode, got %d out\n",
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i, values[i].round_mode, fegetround());
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}
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}
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static const struct {
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double input;
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double toward;
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double expected;
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} values2[] = {
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{ 10.0, 11.0, 10.0 },
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{ -5.0, -6.0, -5.0 },
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};
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ATF_TC(fe_nextafter);
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ATF_TC_HEAD(fe_nextafter, tc)
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{
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atf_tc_set_md_var(tc, "descr", "Checking IEEE 754 rounding using nextafter()");
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}
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ATF_TC_BODY(fe_nextafter, tc)
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{
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double received;
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int res;
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for (unsigned int i = 0; i < __arraycount(values2); i++) {
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received = nextafter(values2[i].input, values2[i].toward);
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if (values2[i].input < values2[i].toward) {
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res = (received > values2[i].input);
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} else {
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res = (received < values2[i].input);
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}
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ATF_CHECK_MSG(
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res && (fabs(received - values2[i].expected) < EPSILON),
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"nextafter() rounding wrong, difference too large\n"
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"input: %f (index %d): got %f, expected %f, res %d\n",
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values2[i].input, i, received, values2[i].expected, res);
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}
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}
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ATF_TC(fe_nexttoward);
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ATF_TC_HEAD(fe_nexttoward, tc)
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{
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atf_tc_set_md_var(tc, "descr", "Checking IEEE 754 rounding using nexttoward()");
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}
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ATF_TC_BODY(fe_nexttoward, tc)
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{
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double received;
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int res;
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for (unsigned int i = 0; i < __arraycount(values2); i++) {
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received = nexttoward(values2[i].input, values2[i].toward);
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if (values2[i].input < values2[i].toward) {
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res = (received > values2[i].input);
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} else {
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res = (received < values2[i].input);
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}
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ATF_CHECK_MSG(
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res && (fabs(received - values2[i].expected) < EPSILON),
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"nexttoward() rounding wrong, difference too large\n"
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"input: %f (index %d): got %f, expected %f, res %d\n",
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values2[i].input, i, received, values2[i].expected, res);
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}
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}
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ATF_TP_ADD_TCS(tp)
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{
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ATF_TP_ADD_TC(tp, fe_round);
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ATF_TP_ADD_TC(tp, fe_nearbyint);
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ATF_TP_ADD_TC(tp, fe_nextafter);
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ATF_TP_ADD_TC(tp, fe_nexttoward);
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return atf_no_error();
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}
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#else
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ATF_TC(t_nofe_round);
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ATF_TC_HEAD(t_nofe_round, tc)
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{
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atf_tc_set_md_var(tc, "descr",
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"dummy test case - no fenv.h support");
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}
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ATF_TC_BODY(t_nofe_round, tc)
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{
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atf_tc_skip("no fenv.h support on this architecture");
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}
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ATF_TC(t_nofe_nearbyint);
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ATF_TC_HEAD(t_nofe_nearbyint, tc)
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{
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atf_tc_set_md_var(tc, "descr",
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"dummy test case - no fenv.h support");
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}
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ATF_TC_BODY(t_nofe_nearbyint, tc)
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{
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atf_tc_skip("no fenv.h support on this architecture");
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}
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ATF_TC(t_nofe_nextafter);
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ATF_TC_HEAD(t_nofe_nextafter, tc)
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{
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atf_tc_set_md_var(tc, "descr",
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"dummy test case - no fenv.h support");
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}
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ATF_TC_BODY(t_nofe_nextafter, tc)
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{
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atf_tc_skip("no fenv.h support on this architecture");
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}
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ATF_TC(t_nofe_nexttoward);
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ATF_TC_HEAD(t_nofe_nexttoward, tc)
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{
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atf_tc_set_md_var(tc, "descr",
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"dummy test case - no fenv.h support");
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}
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ATF_TC_BODY(t_nofe_nexttoward, tc)
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{
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atf_tc_skip("no fenv.h support on this architecture");
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}
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ATF_TP_ADD_TCS(tp)
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{
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ATF_TP_ADD_TC(tp, t_nofe_round);
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ATF_TP_ADD_TC(tp, t_nofe_nearbyint);
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ATF_TP_ADD_TC(tp, t_nofe_nextafter);
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ATF_TP_ADD_TC(tp, t_nofe_nexttoward);
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return atf_no_error();
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}
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#endif
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