csm_return(regs);
}
+static int csm_prio_to_seabios(u16 csm_prio)
+{
+ switch (csm_prio) {
+ case BBS_DO_NOT_BOOT_FROM:
+ case BBS_IGNORE_ENTRY:
+ return -1;
+
+ case BBS_LOWEST_PRIORITY:
+ case BBS_UNPRIORITIZED_ENTRY:
+ default:
+ // SeaBIOS default priorities start at 1, with 0 being used for
+ // an item explicitly selected from interactive_bootmenu().
+ // As in find_prio(), add 1 to the value being returned.
+ return csm_prio + 1;
+ }
+}
+
int csm_bootprio_ata(struct pci_device *pci, int chanid, int slave)
{
if (!csm_boot_table)
int index = 1 + (chanid * 2) + slave;
dprintf(3, "CSM bootprio for ATA%d,%d (index %d) is %d\n", chanid, slave,
index, bbs[index].BootPriority);
- return bbs[index].BootPriority;
+ return csm_prio_to_seabios(bbs[index].BootPriority);
}
int csm_bootprio_fdc(struct pci_device *pci, int port, int fdid)
return -1;
BBS_TABLE *bbs = (void *)csm_boot_table->BbsTable;
dprintf(3, "CSM bootprio for FDC is %d\n", bbs[0].BootPriority);
- return bbs[0].BootPriority;
+ return csm_prio_to_seabios(bbs[0].BootPriority);
}
int csm_bootprio_pci(struct pci_device *pci)
if (pci->bdf == pci_to_bdf(bbs[i].Bus, bbs[i].Device, bbs[i].Function)) {
dprintf(3, "CSM bootprio for PCI(%d,%d,%d) is %d\n", bbs[i].Bus,
bbs[i].Device, bbs[i].Function, bbs[i].BootPriority);
- return bbs[i].BootPriority;
+ return csm_prio_to_seabios(bbs[i].BootPriority);
}
}
return -1;