The atexit test has been atf-ified.
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# $NetBSD: Makefile,v 1.71 2011/01/02 22:10:23 pgoyette Exp $
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# $NetBSD: Makefile,v 1.72 2011/01/04 14:22:06 pgoyette Exp $
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SUBDIR+= atexit citrus db divrem getaddrinfo int_fmtio locale \
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SUBDIR+= citrus db divrem getaddrinfo int_fmtio locale \
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nsdispatch regex rpc sys time
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.include <bsd.own.mk>
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# $NetBSD: Makefile,v 1.1 2003/03/01 04:20:54 thorpej Exp $
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NOMAN= # defined
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PROG= atexit
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CLEANFILES+= output
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regress: ${PROG}
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./${PROG} > output
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if cmp ${.CURDIR}/expected output; then \
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echo PASSED; \
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else \
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echo FAILED; exit 1; \
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fi
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.include <bsd.prog.mk>
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@ -1,152 +0,0 @@
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/* $NetBSD: atexit.c,v 1.2 2009/01/30 23:19:12 ad Exp $ */
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/*
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* Program to test atexit(3) and __cxa_atexit()/__cxa_finalize().
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*
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* Written by Jason R. Thorpe, February 2003.
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* Public domain.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <signal.h>
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#include <string.h>
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#include <unistd.h>
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extern int __cxa_atexit(void (*func)(void *), void *, void *);
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extern void __cxa_finalize(void *);
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static int dso_handle_1;
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static int dso_handle_2;
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static int dso_handle_3;
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static int arg_1;
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static int arg_2;
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static int arg_3;
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static int exiting_state;
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#define ASSERT(expr) \
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do { \
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if ((expr) == 0) { \
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write(STDERR_FILENO, __func__, strlen(__func__)); \
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write(STDERR_FILENO, ": ", 2); \
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write(STDERR_FILENO, __STRING(expr), \
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strlen(__STRING(expr))); \
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write(STDERR_FILENO, "\n", 1); \
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my_abort(); \
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} \
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} while (/*CONSTCOND*/0)
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#define SUCCESS() \
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do { \
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write(STDOUT_FILENO, __func__, strlen(__func__)); \
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write(STDOUT_FILENO, "\n", 1); \
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} while (/*CONSTCOND*/0)
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static void
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my_abort(void)
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{
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(void)raise(SIGABRT);
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/* NOTREACHED */
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}
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static void
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cxa_handler_5(void *arg)
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{
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static int cxa_handler_5_called;
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ASSERT(arg == (void *)&arg_1);
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ASSERT(cxa_handler_5_called == 0);
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ASSERT(exiting_state == 5);
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exiting_state--;
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cxa_handler_5_called = 1;
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SUCCESS();
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}
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static void
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cxa_handler_4(void *arg)
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{
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static int cxa_handler_4_called;
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ASSERT(arg == (void *)&arg_1);
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ASSERT(cxa_handler_4_called == 0);
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ASSERT(exiting_state == 4);
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exiting_state--;
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cxa_handler_4_called = 1;
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SUCCESS();
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}
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static void
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cxa_handler_3(void *arg)
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{
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static int cxa_handler_3_called;
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ASSERT(arg == (void *)&arg_2);
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ASSERT(cxa_handler_3_called == 0);
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ASSERT(exiting_state == 3);
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exiting_state--;
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cxa_handler_3_called = 1;
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SUCCESS();
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}
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static void
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cxa_handler_2(void *arg)
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{
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static int cxa_handler_2_called;
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ASSERT(arg == (void *)&arg_3);
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ASSERT(cxa_handler_2_called == 0);
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ASSERT(exiting_state == 2);
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exiting_state--;
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cxa_handler_2_called = 1;
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SUCCESS();
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}
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static void
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normal_handler_1(void)
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{
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static int normal_handler_1_called;
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ASSERT(normal_handler_1_called == 0);
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ASSERT(exiting_state == 1);
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exiting_state--;
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normal_handler_1_called = 1;
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SUCCESS();
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}
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static void
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normal_handler_0(void)
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{
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static int normal_handler_0_called;
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ASSERT(normal_handler_0_called == 0);
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ASSERT(exiting_state == 0);
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normal_handler_0_called = 1;
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SUCCESS();
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}
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int
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main(int argc, char *argv[])
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{
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exiting_state = 5;
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ASSERT(0 == atexit(normal_handler_0));
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ASSERT(0 == atexit(normal_handler_1));
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ASSERT(0 == __cxa_atexit(cxa_handler_4, &arg_1, &dso_handle_1));
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ASSERT(0 == __cxa_atexit(cxa_handler_5, &arg_1, &dso_handle_1));
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ASSERT(0 == __cxa_atexit(cxa_handler_3, &arg_2, &dso_handle_2));
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ASSERT(0 == __cxa_atexit(cxa_handler_2, &arg_3, &dso_handle_3));
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__cxa_finalize(&dso_handle_1);
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__cxa_finalize(&dso_handle_2);
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exit(0);
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}
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@ -1,6 +0,0 @@
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cxa_handler_5
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cxa_handler_4
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cxa_handler_3
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cxa_handler_2
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normal_handler_1
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normal_handler_0
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