},
};
- signal_init (master, Q_SIGC(babel_signals), babel_signals);
+ signal_init (master, array_size(babel_signals), babel_signals);
}
static void
{ BGP_ATTR_AS4_AGGREGATOR, "AS4_AGGREGATOR" },
{ BGP_ATTR_AS_PATHLIMIT, "AS_PATHLIMIT" },
};
-static const int attr_str_max = sizeof(attr_str)/sizeof(attr_str[0]);
+static const int attr_str_max = array_size(attr_str);
static const struct message attr_flag_str[] =
{
/* bgp_attr_flags_diagnose() relies on this bit being last in this list */
{ BGP_ATTR_FLAG_EXTLEN, "Extended Length" },
};
-static const size_t attr_flag_str_max =
- sizeof (attr_flag_str) / sizeof (attr_flag_str[0]);
+static const size_t attr_flag_str_max = array_size(attr_flag_str);
\f
static struct hash *cluster_hash;
.vty_group = VTY_GROUP,
#endif
.caps_p = _caps_p,
- .cap_num_p = sizeof(_caps_p)/sizeof(_caps_p[0]),
+ .cap_num_p = array_size(_caps_p),
.cap_num_i = 0,
};
/* Initializations. */
srand (time (NULL));
- signal_init (master, Q_SIGC(bgp_signals), bgp_signals);
+ signal_init (master, array_size(bgp_signals), bgp_signals);
zprivs_init (&bgpd_privs);
cmd_init (1);
vty_init (master);
{ ORF_TYPE_PREFIX, "Prefixlist" },
{ ORF_TYPE_PREFIX_OLD, "Prefixlist (old)" },
};
-static const int orf_type_str_max
- = sizeof(orf_type_str)/sizeof(orf_type_str[0]);
+static const int orf_type_str_max = array_size(orf_type_str);
static const struct message orf_mode_str[] =
{
{ ORF_MODE_SEND, "Send" },
{ ORF_MODE_BOTH, "Both" },
};
-static const int orf_mode_str_max
- = sizeof(orf_mode_str)/sizeof(orf_mode_str[0]);
+static const int orf_mode_str_max = array_size(orf_mode_str);
static int
bgp_capability_orf_entry (struct peer *peer, struct capability_header *hdr)
{ CAPABILITY_CODE_REFRESH_OLD, "Route Refresh (Old)" },
{ CAPABILITY_CODE_ORF_OLD, "ORF (Old)" },
};
-static const int capcode_str_max = sizeof(capcode_str)/sizeof(capcode_str[0]);
+static const int capcode_str_max = array_size(capcode_str);
/* Minimum sizes for length field of each cap (so not inc. the header) */
static const size_t cap_minsizes[] =
* initializations
*/
zprivs_init (&isisd_privs);
- signal_init (master, Q_SIGC (isisd_signals), isisd_signals);
+ signal_init (master, array_size (isisd_signals), isisd_signals);
cmd_init (1);
vty_init (master);
memory_init ();
/* For erase and more data add two to b's buffer_data count.*/
if (b->head->next == NULL)
{
- iov_alloc = sizeof(small_iov)/sizeof(small_iov[0]);
+ iov_alloc = array_size(small_iov);
iov = small_iov;
}
else
#define LOC s,buf+sizeof(buf)-s
#ifdef HAVE_GLIBC_BACKTRACE
- if (((size = backtrace(array,sizeof(array)/sizeof(array[0]))) <= 0) ||
- ((size_t)size > sizeof(array)/sizeof(array[0])))
+ if (((size = backtrace(array,array_size(array)) <= 0) ||
+ ((size_t)size > array_size(array))))
return;
#define DUMP(FD) { \
int size, i;
char **strings;
- if (((size = backtrace(array,sizeof(array)/sizeof(array[0]))) <= 0) ||
- ((size_t)size > sizeof(array)/sizeof(array[0])))
+ if (((size = backtrace(array,array_size(array))) <= 0) ||
+ ((size_t)size > array_size(array)))
{
zlog_err("Cannot get backtrace, returned invalid # of frames %d "
"(valid range is between 1 and %lu)",
- size, (unsigned long)(sizeof(array)/sizeof(array[0])));
+ size, (unsigned long)(array_size(array)));
return;
}
zlog(NULL, priority, "Backtrace for %d stack frames:", size);
zl->syslog_options = syslog_flags;
/* Set default logging levels. */
- for (i = 0; i < sizeof(zl->maxlvl)/sizeof(zl->maxlvl[0]); i++)
+ for (i = 0; i < array_size(zl->maxlvl); i++)
zl->maxlvl[i] = ZLOG_DISABLED;
zl->maxlvl[ZLOG_DEST_MONITOR] = LOG_DEBUG;
zl->default_lvl = LOG_DEBUG;
{
u_int i;
- if (zroute >= sizeof(route_types)/sizeof(route_types[0]))
+ if (zroute >= array_size(route_types))
{
zlog_err("unknown zebra route type: %u", zroute);
return &unknown;
}
if (zroute == route_types[zroute].type)
return &route_types[zroute];
- for (i = 0; i < sizeof(route_types)/sizeof(route_types[0]); i++)
+ for (i = 0; i < array_size(route_types); i++)
{
if (zroute == route_types[i].type)
{
const char *
zserv_command_string (unsigned int command)
{
- if (command >= sizeof(command_types)/sizeof(command_types[0]))
+ if (command >= array_size(command_types))
{
zlog_err ("unknown zserv command type: %u", command);
return unknown.string;
return command_types[command].string;
}
-#define RTSIZE (sizeof(route_types)/sizeof(route_types[0]))
-
int
proto_name2num(const char *s)
{
unsigned i;
- for (i=0; i<RTSIZE; ++i)
+ for (i=0; i<array_size(route_types); ++i)
if (strcasecmp(s, route_types[i].string) == 0)
return route_types[i].type;
return -1;
}
-#undef RTSIZE
-
int
proto_redistnum(int afi, const char *s)
{
#include <zebra.h>
#include <sigevent.h>
#include <log.h>
+#include <memory.h>
#ifdef SA_SIGINFO
#ifdef HAVE_UCONTEXT_H
#endif
);
} sigmap[] = {
- { core_signals, sizeof(core_signals)/sizeof(core_signals[0]), core_handler},
- { exit_signals, sizeof(exit_signals)/sizeof(exit_signals[0]), exit_handler},
- { ignore_signals, sizeof(ignore_signals)/sizeof(ignore_signals[0]), NULL},
+ { core_signals, array_size(core_signals), core_handler},
+ { exit_signals, array_size(exit_signals), exit_handler},
+ { ignore_signals, array_size(ignore_signals), NULL},
};
u_int i;
- for (i = 0; i < sizeof(sigmap)/sizeof(sigmap[0]); i++)
+ for (i = 0; i < array_size(sigmap); i++)
{
u_int j;
#include <thread.h>
#define QUAGGA_SIGNAL_TIMER_INTERVAL 2L
-#define Q_SIGC(sig) (sizeof(sig)/sizeof(sig[0]))
struct quagga_signal_t
{
LOG_DAEMON);
zprivs_init (&ospf6d_privs);
/* initialize zebra libraries */
- signal_init (master, Q_SIGC(ospf6_signals), ospf6_signals);
+ signal_init (master, array_size(ospf6_signals), ospf6_signals);
cmd_init (1);
vty_init (master);
memory_init ();
{ OSPF6_MESSAGE_TYPE_LSUPDATE, "LSUpdate" },
{ OSPF6_MESSAGE_TYPE_LSACK, "LSAck" },
};
-static const size_t ospf6_message_type_str_max =
- sizeof (ospf6_message_type_str) / sizeof (ospf6_message_type_str[0]);
+static const size_t ospf6_message_type_str_max = array_size(ospf6_message_type_str);
/* Minimum (besides the standard OSPF packet header) lengths for OSPF
packets of particular types, offset is the "type" field. */
{ MSG_NSM_CHANGE, "NSM change", },
};
- int i, n = sizeof (NameTab) / sizeof (NameTab[0]);
+ int i, n = array_size(NameTab);
const char *name = NULL;
for (i = 0; i < n; i++)
{ OSPF_API_UNDEF, "Undefined", },
};
- int i, n = sizeof (NameTab) / sizeof (NameTab[0]);
+ int i, n = array_size(NameTab);
const char *name = NULL;
for (i = 0; i < n; i++)
.vty_group = VTY_GROUP,
#endif
.caps_p = _caps_p,
- .cap_num_p = sizeof(_caps_p)/sizeof(_caps_p[0]),
+ .cap_num_p = array_size(_caps_p),
.cap_num_i = 0
};
/* Library inits. */
zprivs_init (&ospfd_privs);
- signal_init (master, Q_SIGC(ospf_signals), ospf_signals);
+ signal_init (master, array_size(ospf_signals), ospf_signals);
cmd_init (1);
debug_init ();
vty_init (master);
/* Library initialization. */
zprivs_init (&ripd_privs);
- signal_init (master, Q_SIGC(ripd_signals), ripd_signals);
+ signal_init (master, array_size(ripd_signals), ripd_signals);
cmd_init (1);
vty_init (master);
memory_init ();
/* Library inits. */
zprivs_init (&ripngd_privs);
- signal_init (master, Q_SIGC(ripng_signals), ripng_signals);
+ signal_init (master, array_size(ripng_signals), ripng_signals);
cmd_init (1);
vty_init (master);
memory_init ();
main (void)
{
master = thread_master_create ();
- signal_init (master, Q_SIGC(sigs), sigs);
+ signal_init (master, array_size(sigs), sigs);
zlog_default = openzlog("testsig", ZLOG_NONE,
LOG_CONS|LOG_NDELAY|LOG_PID, LOG_DAEMON);
{ .fd = -1, .name = "babeld", .flag = VTYSH_BABELD, .path = BABEL_VTYSH_PATH},
};
-#define VTYSH_INDEX_MAX (sizeof(vtysh_client)/sizeof(vtysh_client[0]))
/* We need direct access to ripd to implement vtysh_exit_ripd_only. */
static struct vtysh_client *ripd_client = NULL;
if (! strcmp(cmd->string,"configure terminal"))
{
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
{
cmd_stat = vtysh_client_execute(&vtysh_client[i], line, fp);
if (cmd_stat == CMD_WARNING)
}
cmd_stat = CMD_SUCCESS;
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
{
if (cmd->daemon & vtysh_client[i].flag)
{
u_int i;
int cmd_stat = CMD_SUCCESS;
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
{
if (cmd->daemon & vtysh_client[i].flag)
{
int ret = CMD_SUCCESS;
char line[] = "show memory\n";
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
if ( vtysh_client[i].fd >= 0 )
{
fprintf (stdout, "Memory statistics for %s:\n",
int ret = CMD_SUCCESS;
char line[] = "show logging\n";
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
if ( vtysh_client[i].fd >= 0 )
{
fprintf (stdout,"Logging configuration for %s:\n",
VTY_NEWLINE);
vty_out (vty, "!%s", VTY_NEWLINE);
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
ret = vtysh_client_config (&vtysh_client[i], line);
/* Integrate vtysh specific configuration. */
return CMD_SUCCESS;
}
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
ret = vtysh_client_config (&vtysh_client[i], line);
vtysh_config_dump (fp);
fprintf (stdout,"Building Configuration...\n");
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
ret = vtysh_client_execute (&vtysh_client[i], line, stdout);
fprintf (stdout,"[OK]\n");
{
u_int i;
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
if ( vtysh_client[i].fd >= 0 )
vty_out(vty, " %s", vtysh_client[i].name);
vty_out(vty, "%s", VTY_NEWLINE);
int rc = 0;
int matches = 0;
- for (i = 0; i < VTYSH_INDEX_MAX; i++)
+ for (i = 0; i < array_size(vtysh_client); i++)
{
if (!daemon_name || !strcmp(daemon_name, vtysh_client[i].name))
{
#include <getopt.h>
#include <sys/un.h>
#include <sys/wait.h>
+#include <memory.h>
#ifndef MIN
#define MIN(X,Y) (((X) <= (Y)) ? (X) : (Y))
gs.restart.interval = gs.min_restart_interval;
master = thread_master_create();
- signal_init (master, Q_SIGC(my_signals), my_signals);
+ signal_init (master, array_size(my_signals), my_signals);
srandom(time(NULL));
{
.vty_group = VTY_GROUP,
#endif
.caps_p = _caps_p,
- .cap_num_p = sizeof(_caps_p)/sizeof(_caps_p[0]),
+ .cap_num_p = array_size(_caps_p),
.cap_num_i = 0
};
zprivs_init (&zserv_privs);
/* Vty related initialize. */
- signal_init (zebrad.master, Q_SIGC(zebra_signals), zebra_signals);
+ signal_init (zebrad.master, array_size(zebra_signals), zebra_signals);
cmd_init (1);
vty_init (zebrad.master);
memory_init ();
};
struct sock_fprog prog = {
- .len = sizeof(filter) / sizeof(filter[0]),
+ .len = array_size(filter),
.filter = filter,
};
zebrad.master = thread_master_create ();
/* Vty related initialize. */
- signal_init (zebrad.master, Q_SIGC(zebra_signals), zebra_signals);
+ signal_init (zebrad.master, array_size(zebra_signals), zebra_signals);
cmd_init (1);
vty_init (zebrad.master);
memory_init ();
/* Set default distance by route type. */
if (distance == 0)
{
- if ((unsigned)type >= sizeof(route_info) / sizeof(route_info[0]))
+ if ((unsigned)type >= array_size(route_info))
distance = 150;
else
distance = route_info[type].distance;