restore proper boot chain for samsung s7
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@ -650,7 +650,6 @@ class ExynosDevice():
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DEBUGGER_ADDR = 0x11200000
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# Load bootloader stages
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bl1 = open("../S7/g930f_latest/g930f_sboot.bin.1.bin", "rb").read()
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bl31 = open("../S7/g930f_latest/g930f_sboot.bin.2.bin", "rb").read()
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bl2 = open("../S7/g930f_latest/g930f_sboot.bin.3.bin", "rb").read()
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@ -725,7 +724,7 @@ class ExynosDevice():
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assert self.usb_read(0x200) == b"GiAs", "Failed to jump back to debugger"
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# Get current LR, and store it. Then set LR to debugger.
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lr = self.cd.arch_dbg.state.LR
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BL1_RA = self.cd.arch_dbg.state.LR
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self.cd.arch_dbg.state.LR = DEBUGGER_ADDR
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self.cd.restore_stack_and_jump(hijacked_fun) # will jump back to debugger after downloading the next stage (before executing it)
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@ -741,32 +740,32 @@ class ExynosDevice():
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# self.cd.memwrite_region(0x020200dc, p32(hijacked_fun)) # to restore the oginal boot flow, without getting back to the debugger
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# Set LR to continue boot flow
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self.cd.restore_stack_and_jump(lr)
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self.cd.restore_stack_and_jump(BL1_RA)
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# Assure return to debugger
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time.sleep(2)
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self.usb_read(0x200) # GiAs
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# self.cd.memwrite_region(0x02031008, b"ELH")
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# self.cd.memwrite_region(0x02031008, b"ELH") # Patch something in BL31
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# Get pointer to BL31
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BL31_POINTER = self.cd.arch_dbg.state.LR
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# Get pointer to where BL31 returns to
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BL31_RA_PTR = self.cd.arch_dbg.state.LR
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self.cd.arch_dbg.state.LR = DEBUGGER_ADDR
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TTBR0_EL3 = 0x02035600 # Zeroed out
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# Modifies/disables setting up MMU (but is set up eventually) -> MMU says 0x0 instead of 0x1, but still little access (and proper USB recovyer boot!?)
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MMU_CHECK = 0x020244e8
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if args.MIB3:
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MMU_CHECK = 0x0202a314
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self.cd.memwrite_region(MMU_CHECK, struct.pack('>I', 0x1f0c00f1)) # Change check to always be false
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MMU_CHECK = 0x0202a314
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if not args.MIB3:
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MMU_CHECK = 0x020244e8
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self.cd.memwrite_region(MMU_CHECK, struct.pack('>I', 0x1f0c00f1)) # Change check to always be false
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# DWC3 OTG update mode -> Might be useful at some point?
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# self.cd.memwrite_region(0x02021580, struct.pack('>I', 0x00000000))
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# Jump into BL31 and execute it
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#BL31_POINTER = 0x02024010
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#if args.MIB3:
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# BL31_POINTER = 0x020c0000
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BL31_POINTER = 0x02024010
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if args.MIB3:
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BL31_POINTER = 0x020c0000
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self.cd.restore_stack_and_jump(BL31_POINTER)
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# Obligatory reconnect and check of debugger
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@ -784,14 +783,20 @@ class ExynosDevice():
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print(f'MAIR_EL3: {hex(self.cd.arch_dbg.state.MAIR_EL3)}, MAIR_EL2: {hex(self.cd.arch_dbg.state.MAIR_EL2)}, MAIR_EL1: {hex(self.cd.arch_dbg.state.MAIR_EL1)}')
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print(f'Current EL: {hex(self.cd.arch_dbg.state.CURRENT_EL)}')
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# self.cd.arch_dbg.fetch_special_regs() # -> Does not work with original debugger (?->memory overlap somewhere). Only with relocated debugger.
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# self.cd.arch_dbg.fetch_special_regs() # -> Does not work with, "--MIB3" original debugger (?->memory overlap somewhere). Only with relocated debugger.
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VBAR_EL3 = self.cd.arch_dbg.state.VBAR_EL3
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self.test_write_execute(0x11207010)
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#if args.MIB3:
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# self.cd.arch_dbg.state.LR = DEBUGGER_ADDR
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self.cd.restore_stack_and_jump(hijacked_fun) # Jumps to function that waits for next boot stage
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# In BL2, find string 'APOLLO' and modify it
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if args.MIB3:
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self.cd.arch_dbg.state.LR = DEBUGGER_ADDR
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self.cd.restore_stack_and_jump(hijacked_fun)
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off = bl2.find(b'APOLLO')
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bl2 = bl2[:off] + b'GUPJE' + bl2[off+6:]
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# ==== Stage 4 BL2 ====
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self.send_normal_stage(bl2)
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@ -816,7 +821,7 @@ class ExynosDevice():
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# self.cd.memwrite_region(0x020200dc, p32(hijacked_fun)
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# Disable this to keep access to the debugger after senindg the next stage
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self.cd.arch_dbg.state.X23 = DEBUGGER_ADDR # TEMPORARY
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#self.cd.arch_dbg.state.X23 = DEBUGGER_ADDR # TEMPORARY
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self.cd.restore_stack_and_jump(hijacked_fun)
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time.sleep(1)
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