pfsync_state
print_state(struct pfsync_state *s, int opts)
struct pfsync_state *p;
void print_state(struct pfsync_state *, int);
sizeof(struct pfsync_state);
sc->sc_maxcount * sizeof(struct pfsync_state);
len = (sc->sc_maxcount * sizeof(struct pfsync_state)) +
struct pfsync_state *sp = NULL;
int pfsync_insert_net_state(struct pfsync_state *, u_int8_t);
struct pfsync_state *usp =
sc->sc_mbuf->m_len += sizeof(struct pfsync_state);
pfsync_insert_net_state(struct pfsync_state *sp, u_int8_t chksum_flag)
struct pfsync_state *sp;
for (i = 0, sp = (struct pfsync_state *)(mp->m_data + offp);
for (i = 0, sp = (struct pfsync_state *)(mp->m_data + offp);
for (i = 0, sp = (struct pfsync_state *)(mp->m_data + offp);
struct pfsync_state *s;
pf_state_export(struct pfsync_state *sp, struct pf_state_key *sk,
bzero(sp, sizeof(struct pfsync_state));
pf_state_import(struct pfsync_state *sp, struct pf_state_key *sk,
pf_state_add(struct pfsync_state* sp)
void pf_state_export(struct pfsync_state *,
void pf_state_import(struct pfsync_state *,
static int pf_state_add(struct pfsync_state*);
struct pfsync_state *sp = (struct pfsync_state *)ps->state;
struct pfsync_state *p = (struct pfsync_state *) ps->ps_states;
struct pfsync_state *pk;
if (copyin(p, pk, sizeof(struct pfsync_state)))
pf_state_export((struct pfsync_state *)&ps->state,
struct pfsync_state *p, *pstore;
ps->ps_len = sizeof(struct pfsync_state) * nr;
ps->ps_len = sizeof(struct pfsync_state) * nr;
struct pfsync_state *psu_states;
states->ps_buf = malloc(allocated * sizeof(struct pfsync_state));
if (allocated == (states->ps_len / sizeof(struct pfsync_state))) {
buf = realloc(states->ps_buf, allocated * sizeof(struct pfsync_state));
struct pfsync_state global_state;
return (ps->ps_len / sizeof(struct pfsync_state));
struct pfsync_state *p = NULL;
struct pfsync_state *p;
ps.ps_len = nb_states * sizeof(struct pfsync_state);
struct pfsync_state *p = NULL;
nb_states = ps->ps_len / sizeof(struct pfsync_state);