h_segv.c revision 1.11
11.11Smartin/*	$NetBSD: h_segv.c,v 1.11 2019/01/26 16:44:30 martin Exp $	*/
21.1Schristos
31.1Schristos/*-
41.1Schristos * Copyright (c) 2017 The NetBSD Foundation, Inc.
51.1Schristos * All rights reserved.
61.1Schristos *
71.1Schristos * This code is derived from software contributed to The NetBSD Foundation
81.1Schristos * by Christos Zoulas.
91.1Schristos *
101.1Schristos * Redistribution and use in source and binary forms, with or without
111.1Schristos * modification, are permitted provided that the following conditions
121.1Schristos * are met:
131.1Schristos * 1. Redistributions of source code must retain the above copyright
141.1Schristos *    notice, this list of conditions and the following disclaimer.
151.1Schristos * 2. Redistributions in binary form must reproduce the above copyright
161.1Schristos *    notice, this list of conditions and the following disclaimer in the
171.1Schristos *    documentation and/or other materials provided with the distribution.
181.1Schristos *
191.1Schristos * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
201.1Schristos * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
211.1Schristos * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
221.1Schristos * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
231.1Schristos * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
241.1Schristos * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
251.1Schristos * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
261.1Schristos * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
271.1Schristos * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
281.1Schristos * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
291.1Schristos * POSSIBILITY OF SUCH DAMAGE.
301.1Schristos */
311.1Schristos#include <sys/cdefs.h>
321.11Smartin__RCSID("$NetBSD: h_segv.c,v 1.11 2019/01/26 16:44:30 martin Exp $");
331.10Sriastrad
341.10Sriastrad#define	__TEST_FENV
351.1Schristos
361.4Skamil#include <sys/types.h>
371.5Skamil#include <sys/mman.h>
381.4Skamil#include <sys/ptrace.h>
391.8Sriastrad
401.8Sriastrad#include <err.h>
411.9Sriastrad#include <fenv.h>
421.11Smartin#include <ieeefp.h> /* only need for ARM Cortex/Neon hack */
431.8Sriastrad#include <signal.h>
441.1Schristos#include <stdio.h>
451.8Sriastrad#include <stdlib.h>
461.1Schristos#include <string.h>
471.1Schristos#include <unistd.h>
481.1Schristos
491.1Schristosstatic int flags;
501.1Schristos#define F_RECURSE 	1
511.1Schristos#define F_HANDLE	2
521.1Schristos#define F_MASK		4
531.3Skamil#define F_IGNORE	8
541.11Smartin#define	F_CHECK		16
551.1Schristos
561.1Schristosstatic struct {
571.1Schristos	const char *n;
581.1Schristos	int v;
591.1Schristos} nv[] = {
601.1Schristos	{ "recurse",	F_RECURSE },
611.1Schristos	{ "handle",	F_HANDLE },
621.1Schristos	{ "mask",	F_MASK },
631.11Smartin	{ "ignore",	F_IGNORE },
641.11Smartin	{ "check",	F_CHECK }
651.1Schristos};
661.1Schristos
671.4Skamilstatic int sig;
681.4Skamilstatic struct {
691.4Skamil	const char *n;
701.4Skamil	int v;
711.4Skamil} sn[] = {
721.4Skamil	{ "segv",	SIGSEGV },
731.5Skamil	{ "trap",	SIGTRAP },
741.5Skamil	{ "ill",	SIGILL },
751.5Skamil	{ "fpe",	SIGFPE },
761.5Skamil	{ "bus",	SIGBUS }
771.4Skamil};
781.4Skamil
791.1Schristosstatic void
801.5Skamiltrigger_segv(void)
811.5Skamil{
821.5Skamil	volatile int *p = (int *)(intptr_t)atoi("0");
831.5Skamil
841.5Skamil	*p = 1;
851.5Skamil}
861.5Skamil
871.5Skamilstatic void
881.5Skamiltrigger_trap(void)
891.1Schristos{
901.5Skamil
911.4Skamil#ifdef PTRACE_BREAKPOINT_ASM
921.5Skamil	PTRACE_BREAKPOINT_ASM;
931.5Skamil#else
941.5Skamil	/* port me */
951.5Skamil#endif
961.5Skamil}
971.5Skamil
981.5Skamilstatic void
991.5Skamiltrigger_ill(void)
1001.5Skamil{
1011.5Skamil
1021.5Skamil#ifdef PTRACE_ILLEGAL_ASM
1031.5Skamil	PTRACE_ILLEGAL_ASM;
1041.4Skamil#else
1051.5Skamil	/* port me */
1061.5Skamil#endif
1071.5Skamil}
1081.5Skamil
1091.5Skamilstatic void
1101.11Smartincheck_fpe(void)
1111.11Smartin{
1121.11Smartin#if (__arm__ && !__SOFTFP__) || __aarch64__
1131.11Smartin	/*
1141.11Smartin	 * Some NEON fpus do not implement IEEE exception handling,
1151.11Smartin	 * skip these tests if running on them and compiled for
1161.11Smartin	 * hard float.
1171.11Smartin	 */
1181.11Smartin	if (0 == fpsetmask(fpsetmask(FP_X_INV))) {
1191.11Smartin		printf("FPU does not implement exception handling\n");
1201.11Smartin		exit(EXIT_FAILURE);
1211.11Smartin	}
1221.11Smartin#endif
1231.11Smartin	exit(EXIT_SUCCESS);
1241.11Smartin}
1251.11Smartin
1261.11Smartinstatic void
1271.5Skamiltrigger_fpe(void)
1281.5Skamil{
1291.9Sriastrad	volatile double a = getpid();
1301.9Sriastrad	volatile double b = strtol("0", NULL, 0);
1311.5Skamil
1321.10Sriastrad#ifdef __HAVE_FENV
1331.9Sriastrad	feenableexcept(FE_ALL_EXCEPT);
1341.10Sriastrad#endif
1351.9Sriastrad
1361.9Sriastrad	usleep((int)(a/b));
1371.5Skamil}
1381.5Skamil
1391.5Skamilstatic void
1401.5Skamiltrigger_bus(void)
1411.5Skamil{
1421.5Skamil	FILE *fp;
1431.5Skamil	char *p;
1441.5Skamil
1451.5Skamil	/* Open an empty file for writing. */
1461.5Skamil	fp = tmpfile();
1471.5Skamil	if (fp == NULL)
1481.5Skamil		err(EXIT_FAILURE, "tmpfile");
1491.5Skamil
1501.7Skamil	/*
1511.7Skamil	 * Map an empty file with mmap(2) to a pointer.
1521.7Skamil	 *
1531.7Skamil	 * PROT_READ handles read-modify-write sequences emitted for
1541.7Skamil	 * certain combinations of CPUs and compilers (e.g. Alpha AXP).
1551.7Skamil	 */
1561.6Skamil	p = mmap(0, 1, PROT_READ|PROT_WRITE, MAP_PRIVATE, fileno(fp), 0);
1571.5Skamil	if (p == MAP_FAILED)
1581.5Skamil		err(EXIT_FAILURE, "mmap");
1591.5Skamil
1601.5Skamil	/* Invalid memory access causes CPU trap, translated to SIGBUS */
1611.5Skamil	*p = 'a';
1621.5Skamil}
1631.5Skamil
1641.5Skamilstatic void
1651.5Skamiltrigger(void)
1661.5Skamil{
1671.5Skamil
1681.5Skamil	switch (sig) {
1691.5Skamil	case SIGSEGV:
1701.5Skamil		trigger_segv();
1711.5Skamil		break;
1721.5Skamil	case SIGTRAP:
1731.5Skamil		trigger_trap();
1741.5Skamil		break;
1751.5Skamil	case SIGILL:
1761.5Skamil		trigger_ill();
1771.5Skamil		break;
1781.5Skamil	case SIGFPE:
1791.5Skamil		trigger_fpe();
1801.5Skamil		break;
1811.5Skamil	case SIGBUS:
1821.5Skamil		trigger_bus();
1831.5Skamil		break;
1841.5Skamil	default:
1851.5Skamil		break;
1861.4Skamil	}
1871.5Skamil}
1881.5Skamil
1891.5Skamilstatic void
1901.5Skamilfoo(int s)
1911.5Skamil{
1921.5Skamil	char buf[64];
1931.5Skamil	int i = snprintf(buf, sizeof(buf), "got %d\n", s);
1941.5Skamil	write(2, buf, i);
1951.5Skamil
1961.5Skamil	if (flags & F_RECURSE)
1971.5Skamil		trigger();
1981.5Skamil
1991.5Skamil	exit(EXIT_SUCCESS);
2001.1Schristos}
2011.1Schristos
2021.1Schristosstatic __dead void
2031.1Schristosusage(void)
2041.1Schristos{
2051.4Skamil	const char *pname = getprogname();
2061.4Skamil
2071.5Skamil	fprintf(stderr, "Usage: %s segv|trap|ill|fpe|bus "
2081.11Smartin	                "[recurse|mask|handle|ignore|check] ...\n", pname);
2091.5Skamil
2101.1Schristos	exit(EXIT_FAILURE);
2111.1Schristos}
2121.1Schristos
2131.1Schristosint
2141.1Schristosmain(int argc, char *argv[])
2151.1Schristos{
2161.5Skamil
2171.1Schristos	if (argc == 1)
2181.1Schristos	    usage();
2191.1Schristos
2201.1Schristos	for (int i = 1; i < argc; i++) {
2211.1Schristos		size_t j;
2221.4Skamil		for (j = 0; j < __arraycount(nv); j++) {
2231.1Schristos			if (strcmp(nv[j].n, argv[i]) == 0) {
2241.1Schristos				flags |= nv[j].v;
2251.5Skamil				goto consumed;
2261.1Schristos			}
2271.5Skamil		}
2281.5Skamil		for (j = 0; j < __arraycount(sn); j++) {
2291.4Skamil			if (strcmp(sn[j].n, argv[i]) == 0) {
2301.4Skamil				sig = sn[j].v;
2311.5Skamil				goto consumed;
2321.4Skamil			}
2331.4Skamil		}
2341.5Skamil
2351.5Skamil		usage();
2361.5Skamil
2371.5Skamil	consumed:
2381.5Skamil		continue;
2391.1Schristos	}
2401.1Schristos
2411.4Skamil	if (flags == 0 || sig == 0)
2421.1Schristos		usage();
2431.1Schristos
2441.11Smartin	if (flags & F_CHECK && sig != SIGFPE) {
2451.11Smartin		fprintf(stderr, "can only check for fpe support\n");
2461.11Smartin		return 1;
2471.11Smartin	}
2481.11Smartin	if (flags & F_CHECK)
2491.11Smartin		check_fpe();
2501.11Smartin
2511.1Schristos	if (flags & F_HANDLE) {
2521.1Schristos		struct sigaction sa;
2531.1Schristos
2541.1Schristos		sa.sa_flags = SA_RESTART;
2551.1Schristos		sa.sa_handler = foo;
2561.1Schristos		sigemptyset(&sa.sa_mask);
2571.4Skamil		if (sigaction(sig, &sa, NULL) == -1)
2581.1Schristos			err(EXIT_FAILURE, "sigaction");
2591.1Schristos	}
2601.1Schristos
2611.1Schristos	if (flags & F_MASK) {
2621.1Schristos		sigset_t set;
2631.1Schristos
2641.1Schristos		sigemptyset(&set);
2651.4Skamil		sigaddset(&set, sig);
2661.1Schristos		if (sigprocmask(SIG_BLOCK, &set, NULL) == -1)
2671.1Schristos			err(EXIT_FAILURE, "sigprocmask");
2681.1Schristos	}
2691.1Schristos
2701.3Skamil	if (flags & F_IGNORE) {
2711.3Skamil		struct sigaction sa;
2721.3Skamil
2731.3Skamil		memset(&sa, 0, sizeof(sa));
2741.3Skamil		sa.sa_handler = SIG_IGN;
2751.3Skamil		sigemptyset(&sa.sa_mask);
2761.4Skamil		if (sigaction(sig, &sa, NULL) == -1)
2771.3Skamil			err(EXIT_FAILURE, "sigaction");
2781.3Skamil	}
2791.3Skamil
2801.5Skamil	trigger();
2811.5Skamil
2821.1Schristos	return EXIT_SUCCESS;
2831.1Schristos}
284