mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2024-11-11 18:33:18 +08:00
218 lines
6.7 KiB
Lua
218 lines
6.7 KiB
Lua
local getopt = require('getopt')
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local lib14a = require('read14a')
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local cmds = require('commands')
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local utils = require('utils')
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copyright = ''
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author = "Martin Holst Swende"
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version = 'v1.0.2'
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desc = [[
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This is a script which automates cracking and dumping mifare classic cards. It sets itself into
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'listening'-mode, after which it cracks and dumps any mifare classic card that you
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place by the device.
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]]
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example = [[
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script run mifare_autopwn
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]]
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usage = [[
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Arguments:
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-h this help
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-d debug logging on
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-k known key for Sector 0 , keytype A
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Output files from this operation:
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<uid>.eml - emulator file
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<uid>.html - html file containing card data
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dumpkeys.bin - keys are dumped here. OBS! This file is volatile, as other commands overwrite it sometimes.
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dumpdata.bin - card data in binary form. OBS! This file is volatile, as other commands (hf mf dump) overwrite it.
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]]
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-------------------------------
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-- Some utilities
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-------------------------------
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local DEBUG = false
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---
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-- A debug printout-function
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local function dbg(args)
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if not DEBUG then return end
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if type(args) == 'table' then
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local i = 1
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while result[i] do
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dbg(result[i])
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i = i+1
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end
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else
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print('###', args)
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end
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end
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---
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-- This is only meant to be used when errors occur
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local function oops(err)
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print('ERROR:', err)
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core.clearCommandBuffer()
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return nil, err
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end
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---
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-- Usage help
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local function help()
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print(copyright)
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print(author)
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print(version)
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print(desc)
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print('Example usage')
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print(example)
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print(usage)
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end
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---
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-- Waits for a mifare card to be placed within the vicinity of the reader.
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-- @return if successfull: an table containing card info
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-- @return if unsuccessfull : nil, error
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local function wait_for_mifare()
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while not core.ukbhit() do
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res, err = lib14a.read()
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if res then return res end
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-- err means that there was no response from card
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end
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return nil, 'Aborted by user'
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end
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local function nested(key,sak)
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local typ = 1
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if 0x18 == sak then --NXP MIFARE Classic 4k | Plus 4k | Ev1 4k
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typ = 4
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elseif 0x08 == sak then -- NXP MIFARE CLASSIC 1k | Plus 2k | Ev1 1K
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typ = 1
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elseif 0x09 == sak then -- NXP MIFARE Mini 0.3k
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typ = 0
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elseif 0x10 == sak then-- "NXP MIFARE Plus 2k"
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typ = 2
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elseif 0x01 == sak then-- "NXP MIFARE TNP3xxx 1K"
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typ = 1
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else
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print("I don't know how many sectors there are on this type of card, defaulting to 16")
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end
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local cmd = string.format('hf mf nested %d 0 A %s d', typ, key)
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core.console(cmd)
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end
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local function dump(uid, numsectors)
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dbg('dumping tag memory')
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local typ = 1
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if 0x18 == sak then --NXP MIFARE Classic 4k | Plus 4k | Ev1 4k
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typ = 4
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elseif 0x08 == sak then -- NXP MIFARE CLASSIC 1k | Plus 2k | Ev1 1K
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typ = 1
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elseif 0x09 == sak then -- NXP MIFARE Mini 0.3k
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typ = 0
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elseif 0x10 == sak then-- "NXP MIFARE Plus 2k"
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typ = 2
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elseif 0x01 == sak then-- "NXP MIFARE TNP3xxx 1K"
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typ = 1
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end
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if utils.confirm('Do you wish to create a memory dump of tag?') then
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local dumpfile = 'hf-mf-'..uid..'-data'
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local dmp = ('hf mf dump %s f %s'):format(typ, dumpfile)
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core.console(dmp)
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-- Save the global args, those are *our* arguments
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local myargs = args
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-- Set the arguments for htmldump script
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args =('-i %s.bin -o %s.html'):format(dumpfile, dumpfile)
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-- call it
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require('htmldump')
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-- Set back args. Not that it's used, just for the karma...
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args = myargs
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end
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end
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--
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-- performs a test if tag nonce uses weak or hardend prng
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local function perform_prng_test()
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local isweak = core.detect_prng()
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if isweak == 1 then
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dbg('PRNG detection : WEAK nonce detected')
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elseif isweak == 0 then
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dbg('PRNG detection : HARDEND nonce detected')
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else
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dbg('PRNG detection : failed')
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end
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return isweak
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end
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---
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-- The main entry point
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local function main(args)
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local verbose, _exit, res, uid, err, _, sak
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local seen_uids = {}
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local key = ''
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local print_message = true
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-- Read the parameters
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for o, a in getopt.getopt(args, 'hdk:') do
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if o == 'h' then help() return end
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if o == 'd' then DEBUG = true end
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if o == 'k' then key = a end
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end
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while not _exit do
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if print_message then
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print('Waiting for card or press any key to stop')
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print_message = false
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end
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res, err = wait_for_mifare()
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if err then return oops(err) end
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-- Seen already?
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uid = res.uid
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sak = res.sak
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if not seen_uids[uid] then
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-- Store it
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seen_uids[uid] = uid
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-- check if PRNG is WEAK
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if perform_prng_test() == 1 then
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print('Card found, commencing crack on UID', uid)
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if #key == 12 then
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print('Using key: '..key);
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else
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-- Crack it
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local cnt
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err, res = core.mfDarkside()
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if err == -1 then return oops('Button pressed. Aborted.')
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elseif err == -2 then return oops([[Card is not vulnerable to Darkside attack (doesn't send NACK on authentication requests).]])
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elseif err == -3 then return oops([[Card is not vulnerable to Darkside attack (its random number generator is not predictable).]])
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elseif err == -4 then return oops([[
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Card is not vulnerable to Darkside attack (its random number generator seems to be based on the wellknown
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generating polynomial with 16 effective bits only, but shows unexpected behaviour.]])
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elseif err == -5 then return oops('Aborted via keyboard.')
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end
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-- The key is actually 8 bytes, so a
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-- 6-byte key is sent as 00XXXXXX
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-- This means we unpack it as first
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-- two bytes, then six bytes actual key data
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-- We can discard first and second return values
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_,_,key = bin.unpack('H2H6',res)
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print('Found valid key: '..key);
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end
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-- Use nested attack
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nested(key, sak)
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-- Dump info
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dump(uid, sak)
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if #key == 12 then _exit = true end
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else
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print('Card found, darkside attack useless PRNG hardend on UID', uid)
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end
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print_message = true
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end
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end
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end
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-- Call the main
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main(args)
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