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Added more MAC check functionality. TODO: implement CMAC-AES.
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parent
f882a16aed
commit
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1 changed files with 24 additions and 12 deletions
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@ -25,7 +25,7 @@ end
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---
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-- Used to send raw data to the firmware to subsequently forward the data to the card.
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function sendRaw(rawdata, crc, power)
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print((">> %s"):format(rawdata))
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print(("<sent>: %s"):format(rawdata))
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local flags = lib14a.ISO14A_COMMAND.ISO14A_RAW
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if crc then
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@ -45,7 +45,7 @@ function sendRaw(rawdata, crc, power)
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--unpack the first 4 parts of the result as longs, and the last as an extremely long string to later be cut down based on arg1, the number of bytes returned
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local count,cmd,arg1,arg2,arg3,data = bin.unpack('LLLLH512',result)
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returned_bytes = string.sub(data, 1, arg1 * 2)
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print(("<< %s"):format(returned_bytes)) -- need to multiply by 2 because the hex digits are actually two bytes when they are strings
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print(("<recvd>: %s"):format(returned_bytes)) -- need to multiply by 2 because the hex digits are actually two bytes when they are strings
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return returned_bytes
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else
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err = "Error sending the card raw data."
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@ -164,13 +164,13 @@ end
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function calculateMAC(MAC_input)
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-- Pad the input if it is not a multiple of 16 bytes (32 nibbles).
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if(string.len(MAC_input) % 32 != 0) then
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if(string.len(MAC_input) % 32 ~= 0) then
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MAC_input = MAC_input .. "80"
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end
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while(string.len(MAC_input) % 32 != 0) do
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while(string.len(MAC_input) % 32 ~= 0) do
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MAC_input = MAC_input .. "0"
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end
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print("Padded MAC Input = " .. MAC_input .. ", length = " .. string.len(MAC_input))
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print("Padded MAC Input = " .. MAC_input .. ", length (bytes) = " .. string.len(MAC_input) / 2)
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--The MAC would actually be calculated here, and the output stored in raw_output
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raw_output = "00010203040506070001020304050607" -- Dummy filler for now of 16-byte output. To be filled with actual MAC for testing purposes.
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@ -208,22 +208,30 @@ function proximityCheck()
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RndR = string.sub(response, 3, 18)
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print("RndC = " .. RndC .. " RndR = " .. RndR)
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commandString = VERIFYPC
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MAC_input = "FD" .. OPT .. pubRespTime
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if(pps_present == true) then
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MAC_input = MAC_input .. pps
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end
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concat = ""
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rnum_concat = ""
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j = 1
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for i = 1,8 do
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concat = concat .. string.sub(RndR, j, j + 1) .. string.sub(RndC, j, j + 1)
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rnum_concat = rnum_concat .. string.sub(RndR, j, j + 1) .. string.sub(RndC, j, j + 1)
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j = j + 2
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end
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MAC_input = MAC_input .. concat
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print("concat = " .. concat .. " MAC_input = " .. MAC_input)
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MAC_input = MAC_input .. rnum_concat
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print("Concatenation of random numbers = " .. rnum_concat)
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print("Final PCD concatenation before input into MAC function = " .. MAC_input)
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MAC_tag = calculateMAC(MAC_input)
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print(MAC_tag)
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print("8-byte PCD MAC_tag (placeholder - currently incorrect) = " .. MAC_tag)
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commandString = VERIFYPC .. MAC_tag
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response = sendRaw(commandString, true, true)
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PICC_MAC = string.sub(response, 5, 20)
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print("8-byte MAC returned by PICC = " .. PICC_MAC)
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MAC_input = "90" .. string.sub(MAC_input, 3)
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print("Final PICC concatenation before input into MAC function = " .. MAC_input)
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MAC_tag = calculateMAC(MAC_input)
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print("8-byte PICC MAC_tag (placeholder - currently incorrect) = " .. MAC_tag)
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end
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@ -250,6 +258,10 @@ function main(args)
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--getVersion()
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proximityCheck()
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--commandString = VERIFYPC .. "186EFDE8DDC7D30B"
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-- MAC = f5180d6e 40fdeae8 e9dd6ac7 bcd3350b
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-- response = sendRaw(commandString, true, true)
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-- attempt to read VCProximityKey at block A001
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-- commandString = READPLAINNOMACUNMACED .. "01A0" .. "01"
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-- response = sendRaw(commandString, true, true)
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