fdt64_to_cpu
return fdt64_to_cpu(*p);
*regs = fdt64_to_cpu(*(const uint64*)addressPtr);
*len = fdt64_to_cpu(*(const uint64*)sizePtr);
fdt64_to_cpu(*it), fdt64_to_cpu(*(it + 1)));
kind, fdt64_to_cpu(*(uint64_t*)(it + 1)), fdt64_to_cpu(*(uint64_t*)(it + 3)), fdt64_to_cpu(*(uint64_t*)(it + 5)));
case 2: range.start = fdt64_to_cpu(*(uint64*)prop); prop += 8; break;
case 2: range.size = fdt64_to_cpu(*(uint64*)prop); prop += 8; break;
childAddress = fdt64_to_cpu(*(uint64*)(ranges+rangesPos));
parentAddress = fdt64_to_cpu(*(uint64*)(ranges+rangesPos));
rangeSize = fdt64_to_cpu(*(uint64*)(ranges+rangesPos));
gMemBase = (uint8*)fdt64_to_cpu(*((uint64*)fdt_getprop(fdt, node,
gTotalMem = fdt64_to_cpu(*((uint64*)fdt_getprop(fdt, node,
sClint.start = fdt64_to_cpu(*(reg + 0));
sClint.size = fdt64_to_cpu(*(reg + 1));
fdt64_to_cpu(*(reg + 0)), fdt64_to_cpu(*(reg + 1)),
sUart.regs.start = fdt64_to_cpu(*(reg + 0));
sUart.regs.size = fdt64_to_cpu(*(reg + 1));
fdt64_to_cpu(*(uint64*)fdt_getprop(fdt, node, "reg", NULL));
gFramebuf.colors = (uint32*)fdt64_to_cpu(
case 2: range.start = fdt64_to_cpu(*(uint64*)prop); prop += 8; break;
case 2: range.size = fdt64_to_cpu(*(uint64*)prop); prop += 8; break;