rpb
const struct rdns_proposal *rpa = a, *rpb = b;
return (rpa->prio < rpb->prio) ? -1 : (rpa->prio > rpb->prio);
((struct rpb *)v1p->hwrpb)->rpb_phys;
((struct rpb *)HWRPB_ADDR)->rpb_phys;
((struct rpb *)HWRPB_ADDR)->rpb_size;
init_prom_interface((struct rpb *)
bootinfo.hwrpb_phys = ((struct rpb *)HWRPB_ADDR)->rpb_phys;
bootinfo.hwrpb_size = ((struct rpb *)HWRPB_ADDR)->rpb_size;
init_prom_interface((struct rpb *)HWRPB_ADDR);
hwrpb = (struct rpb *)ALPHA_PHYS_TO_K0SEG(bootinfo.hwrpb_phys);
i < (offsetof(struct rpb, rpb_checksum) / sizeof (u_int64_t));
struct rpb *hwrpb;
init_prom_interface(struct rpb *rpb)
c = (struct crb *)((char *)rpb + rpb->rpb_crb_off);
struct rpb;
void init_prom_interface(struct rpb *);
struct rpb;
extern struct rpb *hwrpb;
struct rpb *r;
r = (struct rpb *)HWRPB_ADDR;
struct rpb *r;
r = (struct rpb *)HWRPB_ADDR;
bootinfo_v1.hwrpbsize = ((struct rpb *)HWRPB_ADDR)->rpb_size;
struct rpb *hwrpb = (struct rpb *)HWRPB_ADDR;
bootinfo_v1.hwrpbsize = ((struct rpb *)HWRPB_ADDR)->rpb_size;
((struct rpb *)HWRPB_ADDR)->rpb_cc_freq) + 1;
((struct rpb *)HWRPB_ADDR)->rpb_cc_freq, wrapsecs);
tnsec += ((curpcc - lastpcc) * 1000000000) / ((struct rpb *)HWRPB_ADDR)->rpb_cc_freq;
struct rpb *r;
r = (struct rpb *)HWRPB_ADDR;
struct rpb *r;
r = (struct rpb *)HWRPB_ADDR;
((struct rpb *)HWRPB_ADDR)->rpb_cc_freq) + 1;
((struct rpb *)HWRPB_ADDR)->rpb_cc_freq, wrapsecs);
tnsec += ((curpcc - lastpcc) * 1000000000) / ((struct rpb *)HWRPB_ADDR)->rpb_cc_freq;
struct rpb *r;
r = (struct rpb *)HWRPB_ADDR;