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130 lines
3.8 KiB
Haskell
130 lines
3.8 KiB
Haskell
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-- Sample code to demonstrate how to emulate Mips code (big endian)
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import Unicorn
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import Unicorn.Hook
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import qualified Unicorn.CPU.Mips as Mips
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import qualified Data.ByteString as BS
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import Data.Word
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import qualified Numeric as N (showHex)
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-- Code to be emulated
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--
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-- ori $at, $at, 0x3456
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mipsCodeEb :: BS.ByteString
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mipsCodeEb = BS.pack [0x34, 0x21, 0x34, 0x56]
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-- ori $at, $at, 0x3456
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mipsCodeEl :: BS.ByteString
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mipsCodeEl = BS.pack [0x56, 0x34, 0x21, 0x34]
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-- Memory address where emulation starts
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address :: Word64
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address = 0x10000
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-- Pretty-print integral as hex
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showHex :: (Integral a, Show a) => a -> String
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showHex =
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flip N.showHex ""
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-- Calculate code length
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codeLength :: Num a => BS.ByteString -> a
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codeLength =
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fromIntegral . BS.length
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hookBlock :: BlockHook ()
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hookBlock _ addr size _ =
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putStrLn $ ">>> Tracing basic block at 0x" ++ showHex addr ++
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", block size = 0x" ++ (maybe "0" showHex size)
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hookCode :: CodeHook ()
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hookCode _ addr size _ =
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putStrLn $ ">>> Tracing instruction at 0x" ++ showHex addr ++
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", instruction size = 0x" ++ (maybe "0" showHex size)
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testMipsEb :: IO ()
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testMipsEb = do
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putStrLn "Emulate MIPS code (big-endian)"
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result <- runEmulator $ do
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-- Initialize emulator in MIPS mode
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uc <- open ArchMips [ModeMips32, ModeBigEndian]
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-- Map 2MB memory for this emulation
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memMap uc address (2 * 1024 * 1024) [ProtAll]
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-- Write machine code to be emulated to memory
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memWrite uc address mipsCodeEb
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-- Initialise machine registers
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regWrite uc Mips.Reg1 0x6789
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-- Tracing all basic blocks with customized callback
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blockHookAdd uc hookBlock () 1 0
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-- Tracing one instruction at address with customized callback
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codeHookAdd uc hookCode () address address
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-- Emulate machine code in infinite time (last param = Nothing), or
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-- when finishing all the code
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let codeLen = codeLength mipsCodeEb
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start uc address (address + codeLen) Nothing Nothing
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-- Return the results
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r1 <- regRead uc Mips.Reg1
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return r1
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case result of
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Right r1 -> do
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-- Now print out some registers
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putStrLn ">>> Emulation done. Below is the CPU context"
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putStrLn $ ">>> R1 = 0x" ++ showHex r1
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Left err -> putStrLn $ "Failed with error: " ++ show err ++ " (" ++
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strerror err ++ ")"
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testMipsEl :: IO ()
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testMipsEl = do
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putStrLn "==========================="
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putStrLn "Emulate MIPS code (little-endian)"
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result <- runEmulator $ do
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-- Initialize emulator in MIPS mode
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uc <- open ArchMips [ModeMips32, ModeLittleEndian]
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-- Map 2MB memory for this emulation
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memMap uc address (2 * 1024 * 1024) [ProtAll]
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-- Write machine code to be emulated to memory
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memWrite uc address mipsCodeEl
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-- Initialize machine registers
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regWrite uc Mips.Reg1 0x6789
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-- Tracing all basic blocks with customized callback
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blockHookAdd uc hookBlock () 1 0
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-- Tracing one instruction at address with customized callback
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codeHookAdd uc hookCode () address address
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-- Emulate machine code in infinite time (last param = Nothing), or
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-- when finishing all the code
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let codeLen = codeLength mipsCodeEl
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start uc address (address + codeLen) Nothing Nothing
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-- Return the results
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r1 <- regRead uc Mips.Reg1
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return r1
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case result of
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Right r1 -> do
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-- Now print out some registers
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putStrLn ">>> Emulation done. Below is the CPU context"
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putStrLn $ ">>> R1 = 0x" ++ showHex r1
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Left err -> putStrLn $ "Failed with error: " ++ show err ++ " (" ++
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strerror err ++ ")"
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main :: IO ()
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main = do
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testMipsEb
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testMipsEl
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