mirror of
https://salsa.debian.org/gnuk-team/gnuk/gnuk.git
synced 2024-09-21 03:10:08 +00:00
467 lines
16 KiB
Python
Executable File
467 lines
16 KiB
Python
Executable File
#! /usr/bin/python
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"""
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gnuk_upgrade.py - a tool to upgrade firmware of Gnuk Token
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Copyright (C) 2012 Free Software Initiative of Japan
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Author: NIIBE Yutaka <gniibe@fsij.org>
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This file is a part of Gnuk, a GnuPG USB Token implementation.
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Gnuk is free software: you can redistribute it and/or modify it
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under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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Gnuk is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
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License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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"""
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from intel_hex import *
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from struct import *
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import sys, time, os, binascii, string
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# INPUT: binary file
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# Assume only single CCID device is attached to computer, and it's Gnuk Token
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import usb
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# USB class, subclass, protocol
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CCID_CLASS = 0x0B
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CCID_SUBCLASS = 0x00
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CCID_PROTOCOL_0 = 0x00
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def icc_compose(msg_type, data_len, slot, seq, param, data):
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return pack('<BiBBBH', msg_type, data_len, slot, seq, 0, param) + data
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def iso7816_compose(ins, p1, p2, data, cls=0x00):
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data_len = len(data)
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if data_len == 0:
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return pack('>BBBB', cls, ins, p1, p2)
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else:
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return pack('>BBBBB', cls, ins, p1, p2, data_len) + data
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class regnual:
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def __init__(self, dev):
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conf = dev.configurations[0]
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intf_alt = conf.interfaces[0]
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intf = intf_alt[0]
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if intf.interfaceClass != 0xff:
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raise ValueError, "Wrong interface class"
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self.__devhandle = dev.open()
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try:
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self.__devhandle.setConfiguration(conf)
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except:
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pass
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self.__devhandle.claimInterface(intf)
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self.__devhandle.setAltInterface(intf)
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def mem_info(self):
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mem = self.__devhandle.controlMsg(requestType = 0xc0, request = 0,
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value = 0, index = 0, buffer = 8,
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timeout = 10000)
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start = ((mem[3]*256 + mem[2])*256 + mem[1])*256 + mem[0]
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end = ((mem[7]*256 + mem[6])*256 + mem[5])*256 + mem[4]
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return (start, end)
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def download(self, start, data):
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addr = start
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addr_end = (start + len(data)) & 0xffffff00
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i = (addr - 0x08000000) / 0x100
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j = 0
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print "start %08x" % addr
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print "end %08x" % addr_end
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while addr < addr_end:
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print "# %08x: %d: %d : %d" % (addr, i, j, 256)
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self.__devhandle.controlMsg(requestType = 0x40, request = 1,
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value = 0, index = 0,
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buffer = data[j*256:j*256+256],
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timeout = 10000)
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self.__devhandle.controlMsg(requestType = 0x40, request = 3,
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value = i, index = 0,
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buffer = None,
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timeout = 10000)
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time.sleep(0.010)
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res = self.__devhandle.controlMsg(requestType = 0xc0, request = 2,
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value = 0, index = 0, buffer = 4,
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timeout = 10000)
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r_value = ((res[3]*256 + res[2])*256 + res[1])*256 + res[0]
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if r_value == 0:
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print "failure"
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i = i+1
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j = j+1
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addr = addr + 256
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residue = len(data) % 256
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if residue != 0:
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print "# %08x: %d : %d" % (addr, i, residue)
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self.__devhandle.controlMsg(requestType = 0x40, request = 1,
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value = 0, index = 0,
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buffer = data[j*256:],
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timeout = 10000)
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self.__devhandle.controlMsg(requestType = 0x40, request = 3,
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value = i, index = 0,
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buffer = None,
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timeout = 10000)
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time.sleep(0.010)
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res = self.__devhandle.controlMsg(requestType = 0xc0, request = 2,
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value = 0, index = 0, buffer = 4,
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timeout = 10000)
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r_value = ((res[3]*256 + res[2])*256 + res[1])*256 + res[0]
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if r_value == 0:
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print "failure"
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def protect(self):
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self.__devhandle.controlMsg(requestType = 0x40, request = 4,
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value = 0, index = 0, buffer = None,
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timeout = 10000)
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time.sleep(0.100)
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res = self.__devhandle.controlMsg(requestType = 0xc0, request = 2,
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value = 0, index = 0, buffer = 4,
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timeout = 10000)
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r_value = ((res[3]*256 + res[2])*256 + res[1])*256 + res[0]
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if r_value == 0:
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print "protection failure"
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def finish(self):
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self.__devhandle.controlMsg(requestType = 0x40, request = 5,
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value = 0, index = 0, buffer = None,
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timeout = 10000)
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def reset_device(self):
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try:
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self.__devhandle.reset()
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except:
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pass
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# This class only supports Gnuk (for now)
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class gnuk_token:
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def __init__(self, device, configuration, interface):
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"""
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__init__(device, configuration, interface) -> None
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Initialize the device.
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device: usb.Device object.
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configuration: configuration number.
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interface: usb.Interface object representing the interface and altenate setting.
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"""
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if interface.interfaceClass != CCID_CLASS:
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raise ValueError, "Wrong interface class"
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if interface.interfaceSubClass != CCID_SUBCLASS:
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raise ValueError, "Wrong interface sub class"
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self.__devhandle = device.open()
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try:
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self.__devhandle.setConfiguration(configuration)
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except:
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pass
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self.__devhandle.claimInterface(interface)
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self.__devhandle.setAltInterface(interface)
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self.__intf = interface.interfaceNumber
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self.__alt = interface.alternateSetting
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self.__conf = configuration
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self.__bulkout = 1
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self.__bulkin = 0x81
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self.__timeout = 10000
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self.__seq = 0
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def reset_device(self):
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try:
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self.__devhandle.reset()
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except:
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pass
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def stop_gnuk(self):
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self.__devhandle.releaseInterface()
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self.__devhandle.setConfiguration(0)
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return
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def mem_info(self):
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mem = self.__devhandle.controlMsg(requestType = 0xc0, request = 0,
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value = 0, index = 0, buffer = 8,
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timeout = 10)
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start = ((mem[3]*256 + mem[2])*256 + mem[1])*256 + mem[0]
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end = ((mem[7]*256 + mem[6])*256 + mem[5])*256 + mem[4]
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return (start, end)
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def download(self, start, data):
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addr = start
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addr_end = (start + len(data)) & 0xffffff00
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i = (addr - 0x20000000) / 0x100
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j = 0
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print "start %08x" % addr
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print "end %08x" % addr_end
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while addr < addr_end:
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print "# %08x: %d : %d" % (addr, i, 256)
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self.__devhandle.controlMsg(requestType = 0x40, request = 1,
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value = i, index = 0,
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buffer = data[j*256:j*256+256],
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timeout = 10)
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i = i+1
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j = j+1
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addr = addr + 256
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residue = len(data) % 256
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if residue != 0:
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print "# %08x: %d : %d" % (addr, i, residue)
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self.__devhandle.controlMsg(requestType = 0x40, request = 1,
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value = i, index = 0,
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buffer = data[j*256:],
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timeout = 10)
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def execute(self, last_addr):
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i = (last_addr - 0x20000000) / 0x100
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o = (last_addr - 0x20000000) % 0x100
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self.__devhandle.controlMsg(requestType = 0x40, request = 2,
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value = i, index = o, buffer = None,
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timeout = 10)
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def icc_get_result(self):
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msg = self.__devhandle.bulkRead(self.__bulkin, 1024, self.__timeout)
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if len(msg) < 10:
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raise ValueError, "icc_get_result"
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msg_type = msg[0]
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data_len = msg[1] + (msg[2]<<8) + (msg[3]<<16) + (msg[4]<<24)
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slot = msg[5]
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seq = msg[6]
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status = msg[7]
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error = msg[8]
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chain = msg[9]
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data = msg[10:]
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# XXX: check msg_type, data_len, slot, seq, error
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return (status, chain, data)
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def icc_get_status(self):
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msg = icc_compose(0x65, 0, 0, self.__seq, 0, "")
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self.__devhandle.bulkWrite(self.__bulkout, msg, self.__timeout)
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self.__seq += 1
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status, chain, data = self.icc_get_result()
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# XXX: check chain, data
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return status
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def icc_power_on(self):
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msg = icc_compose(0x62, 0, 0, self.__seq, 0, "")
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self.__devhandle.bulkWrite(self.__bulkout, msg, self.__timeout)
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self.__seq += 1
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status, chain, data = self.icc_get_result()
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# XXX: check status, chain
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return data # ATR
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def icc_power_off(self):
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msg = icc_compose(0x63, 0, 0, self.__seq, 0, "")
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self.__devhandle.bulkWrite(self.__bulkout, msg, self.__timeout)
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self.__seq += 1
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status, chain, data = self.icc_get_result()
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# XXX: check chain, data
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return status
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def icc_send_data_block(self, data):
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msg = icc_compose(0x6f, len(data), 0, self.__seq, 0, data)
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self.__devhandle.bulkWrite(self.__bulkout, msg, self.__timeout)
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self.__seq += 1
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return self.icc_get_result()
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def icc_send_cmd(self, data):
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status, chain, data_rcv = self.icc_send_data_block(data)
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if chain == 0:
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return data_rcv
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elif chain == 1:
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d = data_rcv
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while True:
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msg = icc_compose(0x6f, 0, 0, self.__seq, 0x10, "")
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self.__devhandle.bulkWrite(self.__bulkout, msg, self.__timeout)
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self.__seq += 1
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status, chain, data_rcv = self.icc_get_result()
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# XXX: check status
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d += data_rcv
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if chain == 2:
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break
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elif chain == 3:
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continue
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else:
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raise ValueError, "icc_send_cmd chain"
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return d
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else:
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raise ValueError, "icc_send_cmd"
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def cmd_get_response(self, expected_len):
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cmd_data = iso7816_compose(0xc0, 0x00, 0x00, '') + pack('>B', expected_len)
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response = self.icc_send_cmd(cmd_data)
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return response[:-2]
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def cmd_verify(self, who, passwd):
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cmd_data = iso7816_compose(0x20, 0x00, 0x80+who, passwd)
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sw = self.icc_send_cmd(cmd_data)
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if len(sw) != 2:
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raise ValueError, sw
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if not (sw[0] == 0x90 and sw[1] == 0x00):
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raise ValueError, sw
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def cmd_select_openpgp(self):
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cmd_data = iso7816_compose(0xa4, 0x04, 0x0c, "\xD2\x76\x00\x01\x24\x01")
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sw = self.icc_send_cmd(cmd_data)
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if len(sw) != 2:
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raise ValueError, sw
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if not (sw[0] == 0x90 and sw[1] == 0x00):
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raise ValueError, ("%02x%02x" % (sw[0], sw[1]))
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def cmd_external_authenticate(self, signed):
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cmd_data = iso7816_compose(0x82, 0x00, 0x00, signed[0:128], cls=0x10)
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sw = self.icc_send_cmd(cmd_data)
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if len(sw) != 2:
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raise ValueError, sw
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if not (sw[0] == 0x90 and sw[1] == 0x00):
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raise ValueError, ("%02x%02x" % (sw[0], sw[1]))
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cmd_data = iso7816_compose(0x82, 0x00, 0x00, signed[128:])
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sw = self.icc_send_cmd(cmd_data)
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if len(sw) != 2:
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raise ValueError, sw
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if not (sw[0] == 0x90 and sw[1] == 0x00):
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raise ValueError, ("%02x%02x" % (sw[0], sw[1]))
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def cmd_get_challenge(self):
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cmd_data = iso7816_compose(0x84, 0x00, 0x00, '')
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sw = self.icc_send_cmd(cmd_data)
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if len(sw) != 2:
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raise ValueError, sw
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if sw[0] != 0x61:
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raise ValueError, ("%02x%02x" % (sw[0], sw[1]))
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return self.cmd_get_response(sw[1])
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def compare(data_original, data_in_device):
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i = 0
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for d in data_original:
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if ord(d) != data_in_device[i]:
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raise ValueError, "verify failed at %08x" % i
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i += 1
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def ccid_devices():
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busses = usb.busses()
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for bus in busses:
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devices = bus.devices
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for dev in devices:
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for config in dev.configurations:
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for intf in config.interfaces:
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for alt in intf:
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if alt.interfaceClass == CCID_CLASS and \
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alt.interfaceSubClass == CCID_SUBCLASS and \
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alt.interfaceProtocol == CCID_PROTOCOL_0:
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yield dev, config, alt
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USB_VENDOR_FSIJ=0x234b
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USB_PRODUCT_GNUK=0x0000
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def gnuk_devices():
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busses = usb.busses()
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for bus in busses:
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devices = bus.devices
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for dev in devices:
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if dev.idVendor != USB_VENDOR_FSIJ:
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continue
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if dev.idProduct != USB_PRODUCT_GNUK:
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continue
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yield dev
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def to_string(t):
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result = ""
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for c in t:
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result += chr(c)
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return result
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from subprocess import check_output
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def gpg_sign(keygrip, hash):
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result = check_output(["gpg-connect-agent",
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"SIGKEY %s" % keygrip,
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"SETHASH --hash=sha1 %s" % hash,
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"PKSIGN", "/bye"])
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signed = ""
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while True:
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i = result.find('%')
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if i < 0:
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signed += result
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break
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hex_str = result[i+1:i+3]
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signed += result[0:i]
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signed += chr(int(hex_str,16))
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result = result[i+3:]
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pos = signed.index("D (7:sig-val(3:rsa(1:s256:") + 26
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signed = signed[pos:-7]
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if len(signed) != 256:
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raise ValueError, binascii.hexlify(signed)
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return signed
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def main(keygrip, data_regnual, data_upgrade):
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data_regnual += pack('<i', binascii.crc32(data_regnual))
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for (dev, config, intf) in ccid_devices():
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try:
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icc = gnuk_token(dev, config, intf)
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print "Device: ", dev.filename
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print "Configuration: ", config.value
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print "Interface: ", intf.interfaceNumber
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break
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except:
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icc = None
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if icc.icc_get_status() == 2:
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raise ValueError, "No ICC present"
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elif icc.icc_get_status() == 1:
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icc.icc_power_on()
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icc.cmd_select_openpgp()
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challenge = icc.cmd_get_challenge()
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signed = gpg_sign(keygrip, binascii.hexlify(to_string(challenge)))
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icc.cmd_external_authenticate(signed)
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icc.stop_gnuk()
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mem_info = icc.mem_info()
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print "%08x:%08x" % mem_info
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print "Downloading flash upgrade program..."
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icc.download(mem_info[0], data_regnual)
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print "Run flash upgrade program..."
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icc.execute(mem_info[1] + len(data_regnual))
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#
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time.sleep(2)
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icc.reset_device()
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del icc
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icc = None
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#
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print "Wait 3 seconds..."
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time.sleep(3)
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# Then, send upgrade program...
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reg = None
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for dev in gnuk_devices():
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try:
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reg = regnual(dev)
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print "Device: ", dev.filename
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break
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except:
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pass
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mem_info = reg.mem_info()
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print "%08x:%08x" % mem_info
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print "Downloading the program"
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reg.download(mem_info[0], data_upgrade)
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reg.protect()
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reg.finish()
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reg.reset_device()
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return 0
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if __name__ == '__main__':
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keygrip = sys.argv[1]
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filename_regnual = sys.argv[2]
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filename_upgrade = sys.argv[3]
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f = open(filename_regnual)
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data_regnual = f.read()
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f.close()
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print "%s: %d" % (filename_regnual, len(data_regnual))
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f = open(filename_upgrade)
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data_upgrade = f.read()
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f.close()
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print "%s: %d" % (filename_upgrade, len(data_upgrade))
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main(keygrip, data_regnual, data_upgrade[4096:])
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