m1n1/proxyclient/tools/chainload.py

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#!/usr/bin/env python3
# SPDX-License-Identifier: MIT
import sys, pathlib
sys.path.append(str(pathlib.Path(__file__).resolve().parents[1]))
import argparse, pathlib, time
parser = argparse.ArgumentParser(description='Mach-O loader for m1n1')
parser.add_argument('-q', '--quiet', action="store_true", help="Disable framebuffer")
parser.add_argument('-n', '--no-sepfw', action="store_true", help="Do not preserve SEPFW")
parser.add_argument('-c', '--call', action="store_true", help="Use call mode")
parser.add_argument('-r', '--raw', action="store_true", help="Image is raw")
parser.add_argument('payload', type=pathlib.Path)
parser.add_argument('boot_args', default=[], nargs="*")
args = parser.parse_args()
from m1n1.setup import *
from m1n1.tgtypes import BootArgs
from m1n1.macho import MachO
from m1n1 import asm
new_base = u.base
if args.raw:
image = args.payload.read_bytes()
image += b"\x00\x00\x00\x00"
entry = new_base + 0x800
else:
macho = MachO(args.payload.read_bytes())
image = macho.prepare_image()
image += b"\x00\x00\x00\x00"
entry = macho.entry
entry -= macho.vmin
entry += new_base
if args.quiet:
p.iodev_set_usage(IODEV.FB, 0)
if args.no_sepfw:
sepfw_start, sepfw_length = 0, 0
else:
sepfw_start, sepfw_length = u.adt["chosen"]["memory-map"].SEPFW
image_size = align(len(image))
sepfw_off = image_size
image_size += align(sepfw_length)
bootargs_off = image_size
bootargs_size = 0x4000
image_size += bootargs_size
print(f"Total region size: 0x{image_size:x} bytes")
image_addr = u.malloc(image_size)
print(f"Loading kernel image (0x{len(image):x} bytes)...")
u.compressed_writemem(image_addr, image, True)
p.dc_cvau(image_addr, len(image))
if not args.no_sepfw:
print(f"Copying SEPFW (0x{sepfw_length:x} bytes)...")
p.memcpy8(image_addr + sepfw_off, sepfw_start, sepfw_length)
print(f"Adjusting addresses in ADT...")
u.adt["chosen"]["memory-map"].SEPFW = (new_base + sepfw_off, sepfw_length)
u.adt["chosen"]["memory-map"].BootArgs = (image_addr + bootargs_off, bootargs_size)
u.push_adt()
print("Setting secondary CPU RVBARs...")
rvbar = entry & ~0xfff
for cpu in u.adt["cpus"][1:]:
addr, size = cpu.cpu_impl_reg
print(f" {cpu.name}: [0x{addr:x}] = 0x{rvbar:x}")
p.write64(addr, rvbar)
print("Setting up bootargs...")
tba = u.ba.copy()
tba.top_of_kernel_data = new_base + image_size
if len(args.boot_args) > 0:
boot_args = " ".join(args.boot_args)
if "-v" in boot_args.split():
tba.video.display = 0
else:
tba.video.display = 1
print(f"Setting boot arguments to {boot_args!r}")
tba.cmdline = boot_args
iface.writemem(image_addr + bootargs_off, BootArgs.build(tba))
print(f"Copying stub...")
stub = asm.ARMAsm(f"""
1:
ldp x4, x5, [x1], #16
stp x4, x5, [x2]
dc cvau, x2
ic ivau, x2
add x2, x2, #16
sub x3, x3, #16
cbnz x3, 1b
ldr x1, ={entry}
br x1
""", image_addr + image_size)
iface.writemem(stub.addr, stub.data)
p.dc_cvau(stub.addr, stub.len)
p.ic_ivau(stub.addr, stub.len)
print(f"Entry point: 0x{entry:x}")
if args.call:
print(f"Shutting down MMU...")
try:
p.mmu_shutdown()
except ProxyCommandError:
pass
print(f"Jumping to stub at 0x{stub.addr:x}")
p.call(stub.addr, new_base + bootargs_off, image_addr, new_base, image_size, reboot=True)
else:
print(f"Reloading into stub at 0x{stub.addr:x}")
p.reload(stub.addr, new_base + bootargs_off, image_addr, new_base, image_size)
iface.nop()
print("Proxy is alive again")