Files
NetworkManager/include/nm-test-utils.h
Thomas Haller 7a7dd9203d nmtst: add nmtst_reexec_sudo() function
Interpret environment variable NMTST_DEBUG which allows
to specify 'sudo-cmd=CMD'. If the test program calls
nmtst_reexec_sudo(), it will `exec CMD "$0" "$@"`.

Signed-off-by: Thomas Haller <thaller@redhat.com>
2014-06-05 18:12:57 +02:00

538 lines
13 KiB
C

/* -*- Mode: C; tab-width: 4; indent-tabs-mode: t; c-basic-offset: 4 -*- */
/*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
* Boston, MA 02110-1301 USA.
*
* (C) Copyright 2014 Red Hat, Inc.
*/
#ifndef __NM_TEST_UTILS_H__
#define __NM_TEST_UTILS_H__
#include <arpa/inet.h>
#include <stdio.h>
#include <unistd.h>
#include <stdlib.h>
#include <glib.h>
#include <glib-object.h>
#include <string.h>
#include <errno.h>
struct __nmtst_internal
{
GRand *rand0;
guint32 rand_seed;
GRand *rand;
gboolean is_debug;
char *sudo_cmd;
char **orig_argv;
};
extern struct __nmtst_internal __nmtst_internal;
#define NMTST_DEFINE() \
struct __nmtst_internal __nmtst_internal = { 0 };
inline static gboolean
nmtst_initialized (void)
{
return !!__nmtst_internal.rand0;
}
/* split the string inplace at specific delimiters, allowing escaping with '\\'.
* Returns a zero terminated array of pointers into @str.
*
* The caller must g_free() the returned argv array.
**/
inline static char **
nmtst_str_split (char *str, const char *delimiters)
{
const char *d;
GArray *result = g_array_sized_new (TRUE, FALSE, sizeof (char *), 3);
g_assert (str);
g_assert (delimiters && !strchr (delimiters, '\\'));
while (*str) {
gsize i = 0, j = 0;
while (TRUE) {
char c = str[i];
if (c == '\0') {
str[j++] = 0;
break;
} else if (c == '\\') {
str[j++] = str[++i];
if (!str[i])
break;
} else {
for (d = delimiters; *d; d++) {
if (c == *d) {
str[j++] = 0;
i++;
goto BREAK_INNER_LOOPS;
}
}
str[j++] = c;
}
i++;
}
BREAK_INNER_LOOPS:
g_array_append_val (result, str);
str = &str[i];
}
return (char **) g_array_free (result, FALSE);
}
/* free instances allocated by nmtst (especially nmtst_init()) on shutdown
* to release memory. After nmtst_free(), the test is uninitialized again. */
inline static void
nmtst_free (void)
{
if (!nmtst_initialized ())
return;
g_rand_free (__nmtst_internal.rand0);
if (__nmtst_internal.rand)
g_rand_free (__nmtst_internal.rand);
g_free (__nmtst_internal.sudo_cmd);
g_strfreev (__nmtst_internal.orig_argv);
memset (&__nmtst_internal, 0, sizeof (__nmtst_internal));
}
inline static void
nmtst_init (int *argc, char ***argv, const char *log_level, const char *log_domains)
{
static gsize atexit_registered = 0;
const char *nmtst_debug;
gboolean is_debug = FALSE;
char *c_log_level = NULL, *c_log_domains = NULL;
char *sudo_cmd = NULL;
GArray *debug_messages = g_array_new (TRUE, FALSE, sizeof (char *));
int i;
g_assert (!nmtst_initialized ());
g_assert (!((!!argc) ^ (!!argv)));
g_assert (!argc || (g_strv_length (*argv) == *argc));
if (argc)
__nmtst_internal.orig_argv = g_strdupv (*argv);
if (argc && !g_test_initialized ()) {
/* g_test_init() is a variadic function, so we cannot pass it
* (variadic) arguments. If you need to pass additional parameters,
* call nmtst_init() with argc==NULL and call g_test_init() yourself. */
g_test_init (argc, argv, NULL);
}
#if !GLIB_CHECK_VERSION (2, 35, 0)
g_type_init ();
#endif
is_debug = g_test_verbose ();
nmtst_debug = g_getenv ("NMTST_DEBUG");
if (nmtst_debug) {
char **d_argv, **i_argv, *nmtst_debug_copy;
/* By setting then NMTST_DEBUG variable, @is_debug is set automatically.
* This can be reverted with no-debug (on command line or environment variable). */
is_debug = TRUE;
nmtst_debug_copy = g_strdup (nmtst_debug);
d_argv = nmtst_str_split (nmtst_debug_copy, ",; \t\r\n");
for (i_argv = d_argv; *i_argv; i_argv++) {
const char *debug = *i_argv;
if (!g_ascii_strcasecmp (debug, "debug"))
is_debug = TRUE;
else if (!g_ascii_strcasecmp (debug, "no-debug")) {
/* when specifying the NMTST_DEBUG variable, we set is_debug to true. Use this flag to disable this
* (e.g. for only setting the log-level, but not is_debug). */
is_debug = FALSE;
} else if (!g_ascii_strncasecmp (debug, "log-level=", strlen ("log-level="))) {
g_free (c_log_level);
log_level = c_log_level = g_strdup (&debug[strlen ("log-level=")]);
} else if (!g_ascii_strncasecmp (debug, "log-domains=", strlen ("log-domains="))) {
g_free (c_log_domains);
log_domains = c_log_domains = g_strdup (&debug[strlen ("log-domains=")]);
} else if (!g_ascii_strncasecmp (debug, "sudo-cmd=", strlen ("sudo-cmd="))) {
g_free (sudo_cmd);
sudo_cmd = g_strdup (&debug[strlen ("sudo-cmd=")]);
} else {
char *msg = g_strdup_printf (">>> nmtst: ignore unrecognized NMTST_DEBUG option \"%s\"", debug);
g_array_append_val (debug_messages, msg);
}
}
g_free (d_argv);
g_free (nmtst_debug_copy);
}
if (argv && *argv) {
char **a = *argv;
for (; *a; a++) {
if (!g_ascii_strcasecmp (*a, "--debug"))
is_debug = TRUE;
else if (!g_ascii_strcasecmp (*a, "--no-debug"))
is_debug = FALSE;
}
}
__nmtst_internal.is_debug = is_debug;
__nmtst_internal.rand0 = g_rand_new_with_seed (0);
__nmtst_internal.sudo_cmd = sudo_cmd;
if (!log_level && log_domains) {
/* if the log level is not specified (but the domain is), we assume
* the caller wants to set it depending on is_debug */
log_level = is_debug ? "DEBUG" : "WARN";
}
if (log_level || log_domains) {
gboolean success = FALSE;
#ifdef NM_LOGGING_H
success = nm_logging_setup (log_level, log_domains, NULL, NULL);
#endif
g_assert (success);
}
/* Delay messages until we setup logging. */
for (i = 0; i < debug_messages->len; i++)
g_message ("%s", g_array_index (debug_messages, const char *, i));
g_strfreev ((char **) g_array_free (debug_messages, FALSE));
g_free (c_log_level);
g_free (c_log_domains);
if (g_once_init_enter (&atexit_registered)) {
atexit (nmtst_free);
g_once_init_leave (&atexit_registered, 1);
}
}
inline static gboolean
nmtst_is_debug (void)
{
g_assert (nmtst_initialized ());
return __nmtst_internal.is_debug;
}
inline static GRand *
nmtst_get_rand0 ()
{
g_assert (nmtst_initialized ());
return __nmtst_internal.rand0;
}
inline static GRand *
nmtst_get_rand ()
{
g_assert (nmtst_initialized ());
if (G_UNLIKELY (!__nmtst_internal.rand)) {
guint32 seed;
const char *str;
if ((str = g_getenv ("NMTST_SEED_RAND"))) {
gchar *s;
gint64 i;
i = g_ascii_strtoll (str, &s, 0);
g_assert (s[0] == '\0' && i >= 0 && i < G_MAXINT32);
seed = i;
__nmtst_internal.rand = g_rand_new_with_seed (seed);
} else {
__nmtst_internal.rand = g_rand_new ();
seed = g_rand_int (__nmtst_internal.rand);
g_rand_set_seed (__nmtst_internal.rand, seed);
}
__nmtst_internal.rand_seed = seed;
g_message (">> initialize nmtst_get_rand() with seed=%u", seed);
}
return __nmtst_internal.rand;
}
inline static const char *
nmtst_get_sudo_cmd (void)
{
g_assert (nmtst_initialized ());
return __nmtst_internal.sudo_cmd;
}
inline static void
nmtst_reexec_sudo (void)
{
char *str;
char **argv;
int i;
int errsv;
g_assert (nmtst_initialized ());
g_assert (__nmtst_internal.orig_argv);
if (!__nmtst_internal.sudo_cmd)
return;
str = g_strjoinv (" ", __nmtst_internal.orig_argv);
g_message (">> exec %s %s", __nmtst_internal.sudo_cmd, str);
argv = g_new0 (char *, 1 + g_strv_length (__nmtst_internal.orig_argv) + 1);
argv[0] = __nmtst_internal.sudo_cmd;
for (i = 0; __nmtst_internal.orig_argv[i]; i++)
argv[i+1] = __nmtst_internal.orig_argv[i];
execvp (__nmtst_internal.sudo_cmd, argv);
errsv = errno;
g_error (">> exec %s failed: %d - %s", __nmtst_internal.sudo_cmd, errsv, strerror (errsv));
}
#define __define_nmtst_static(NUM,SIZE) \
inline static const char * \
nmtst_static_##SIZE##_##NUM (const char *str) \
{ \
gsize l; \
static char buf[SIZE]; \
\
if (!str) \
return NULL; \
l = g_strlcpy (buf, str, sizeof (buf)); \
g_assert (l < sizeof (buf)); \
return buf; \
}
__define_nmtst_static(01, 1024)
__define_nmtst_static(02, 1024)
__define_nmtst_static(03, 1024)
#undef __define_nmtst_static
#define NMTST_SWAP(x,y) \
G_STMT_START { \
char __nmtst_swap_temp[sizeof(x) == sizeof(y) ? (signed) sizeof(x) : -1]; \
memcpy(__nmtst_swap_temp, &y, sizeof(x)); \
memcpy(&y, &x, sizeof(x)); \
memcpy(&x, __nmtst_swap_temp, sizeof(x)); \
} G_STMT_END
inline static guint32
nmtst_inet4_from_string (const char *str)
{
guint32 addr;
int success;
if (!str)
return 0;
success = inet_pton (AF_INET, str, &addr);
g_assert (success == 1);
return addr;
}
inline static const struct in6_addr *
nmtst_inet6_from_string (const char *str)
{
static struct in6_addr addr;
int success;
if (!str)
addr = in6addr_any;
else {
success = inet_pton (AF_INET6, str, &addr);
g_assert (success == 1);
}
return &addr;
}
inline static void
FAIL(const char *test_name, const char *fmt, ...)
{
va_list args;
char buf[500];
g_snprintf (buf, 500, "FAIL: (%s) %s\n", test_name, fmt);
va_start (args, fmt);
vfprintf (stderr, buf, args);
va_end (args);
_exit (1);
}
#define ASSERT(x, test_name, fmt, ...) \
if (!(x)) { \
FAIL (test_name, fmt, ## __VA_ARGS__); \
}
/*******************************************************************************/
#ifdef NM_PLATFORM_H
inline static NMPlatformIP6Address *
nmtst_platform_ip6_address (const char *address, const char *peer_address, guint plen)
{
static NMPlatformIP6Address addr;
memset (&addr, 0, sizeof (addr));
addr.address = *nmtst_inet6_from_string (address);
addr.peer_address = *nmtst_inet6_from_string (peer_address);
addr.plen = plen;
return &addr;
}
inline static NMPlatformIP6Address *
nmtst_platform_ip6_address_full (const char *address, const char *peer_address, guint plen,
int ifindex, NMPlatformSource source, guint32 timestamp,
guint32 lifetime, guint32 preferred, guint flags)
{
NMPlatformIP6Address *addr = nmtst_platform_ip6_address (address, peer_address, plen);
addr->ifindex = ifindex;
addr->source = source;
addr->timestamp = timestamp;
addr->lifetime = lifetime;
addr->preferred = preferred;
addr->flags = flags;
return addr;
}
inline static NMPlatformIP6Route *
nmtst_platform_ip6_route (const char *network, guint plen, const char *gateway)
{
static NMPlatformIP6Route route;
memset (&route, 0, sizeof (route));
route.network = *nmtst_inet6_from_string (network);
route.plen = plen;
route.gateway = *nmtst_inet6_from_string (gateway);
return &route;
}
inline static NMPlatformIP6Route *
nmtst_platform_ip6_route_full (const char *network, guint plen, const char *gateway,
int ifindex, NMPlatformSource source,
guint metric, guint mss)
{
NMPlatformIP6Route *route = nmtst_platform_ip6_route (network, plen, gateway);
route->ifindex = ifindex;
route->source = source;
route->metric = metric;
route->mss = mss;
return route;
}
inline static void
nmtst_platform_ip4_routes_equal (const NMPlatformIP4Route *a, const NMPlatformIP4Route *b, gsize len)
{
gsize i;
g_assert (a);
g_assert (b);
for (i = 0; i < len; i++) {
if (nm_platform_ip4_route_cmp (&a[i], &b[i]) != 0) {
g_error ("Error comparing IPv4 route[%lu]: %s vs %s", (long unsigned) i,
nmtst_static_1024_01 (nm_platform_ip4_route_to_string (&a[i])),
nmtst_static_1024_02 (nm_platform_ip4_route_to_string (&b[i])));
g_assert_not_reached ();
}
/* also check with memcmp, though this might fail for valid programs (due to field alignment) */
g_assert_cmpint (memcmp (&a[i], &b[i], sizeof (a[i])), ==, 0);
}
}
inline static void
nmtst_platform_ip6_routes_equal (const NMPlatformIP6Route *a, const NMPlatformIP6Route *b, gsize len)
{
gsize i;
g_assert (a);
g_assert (b);
for (i = 0; i < len; i++) {
if (nm_platform_ip6_route_cmp (&a[i], &b[i]) != 0) {
g_error ("Error comparing IPv6 route[%lu]: %s vs %s", (long unsigned) i,
nmtst_static_1024_01 (nm_platform_ip6_route_to_string (&a[i])),
nmtst_static_1024_02 (nm_platform_ip6_route_to_string (&b[i])));
g_assert_not_reached ();
}
/* also check with memcmp, though this might fail for valid programs (due to field alignment) */
g_assert_cmpint (memcmp (&a[i], &b[i], sizeof (a[i])), ==, 0);
}
}
#endif
#ifdef NM_IP4_CONFIG_H
inline static NMIP4Config *
nmtst_ip4_config_clone (NMIP4Config *config)
{
NMIP4Config *copy = nm_ip4_config_new ();
g_assert (copy);
g_assert (config);
nm_ip4_config_replace (copy, config, NULL);
return copy;
}
#endif
#ifdef NM_IP6_CONFIG_H
inline static NMIP6Config *
nmtst_ip6_config_clone (NMIP6Config *config)
{
NMIP6Config *copy = nm_ip6_config_new ();
g_assert (copy);
g_assert (config);
nm_ip6_config_replace (copy, config, NULL);
return copy;
}
#endif
#endif /* __NM_TEST_UTILS_H__ */