mirror of https://gerrit.osmocom.org/simtrace2
383 lines
15 KiB
C
383 lines
15 KiB
C
/* ----------------------------------------------------------------------------
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* ATMEL Microcontroller Software Support
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* ----------------------------------------------------------------------------
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* Copyright (c) 2008, Atmel Corporation
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*
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* - Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the disclaimer below.
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*
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* Atmel's name may not be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* DISCLAIMER: THIS SOFTWARE IS PROVIDED BY ATMEL "AS IS" AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE
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* DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA,
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* OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
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* EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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* ----------------------------------------------------------------------------
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*/
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//------------------------------------------------------------------------------
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/// \unit
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///
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/// !Purpose
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///
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/// Definition of methods for using a CCID device driver.
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///
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/// !Usage
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///
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/// -# CCIDDriver_Initialize
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/// -# CCID_Read
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/// -# CCID_Write
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/// -# CCID_SmartCardRequest
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/// -# CCID_Insertion
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/// -# CCID_Removal
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/// -# RDRtoPCHardwareError
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//------------------------------------------------------------------------------
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#ifndef CCID_DRIVER_H
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#define CCID_DRIVER_H
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#include "USBD.h"
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/// For reference, the absolute maximum block size
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/// for a TPDU T=0 block is 260 bytes (5 bytes command; 255 bytes data), or
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/// for a TPDU T=1 block is 259 bytes, or
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/// for a short APDU T=1 block is 261 bytes, or
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/// for an extended APDU T=1 block is 65544 bytes.
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#define ABDATA_SIZE 260
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/// define protocol T=0
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#define PROTOCOL_TO 0
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/// define protocol T=1
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#define PROTOCOL_T1 1
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/// define for dwFeatures see Table 5.1-1 Smart Card Device Class Descriptors
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/// No special characteristics
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#define CCID_FEATURES_NADA 0x00000000
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/// Automatic parameter configuration based on ATR data
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#define CCID_FEATURES_AUTO_PCONF 0x00000002
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/// Automatic activation of ICC on inserting
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#define CCID_FEATURES_AUTO_ACTIV 0x00000004
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/// Automatic ICC voltage selection
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#define CCID_FEATURES_AUTO_VOLT 0x00000008
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/// Automatic ICC clock frequency change according to active parameters provided
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/// by the Host or self determined
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#define CCID_FEATURES_AUTO_CLOCK 0x00000010
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/// Automatic baud rate change according to active parameters provided by the
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/// Host or self determined
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#define CCID_FEATURES_AUTO_BAUD 0x00000020
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/// Automatic parameters negotiation made by the CCID (use of warm or cold
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/// resets or PPS according to a manufacturer proprietary algorithm to select
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/// the communication parameters with the ICC)
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#define CCID_FEATURES_AUTO_PNEGO 0x00000040
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/// Automatic PPS made by the CCID according to the active parameters
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#define CCID_FEATURES_AUTO_PPS 0x00000080
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/// CCID can set ICC in clock stop mode
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#define CCID_FEATURES_ICCSTOP 0x00000100
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/// NAD value other than 00 accepted (T=1 protocol in use)
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#define CCID_FEATURES_NAD 0x00000200
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/// Automatic IFSD exchange as first exchange (T=1 protocol in use)
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#define CCID_FEATURES_AUTO_IFSD 0x00000400
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/// TPDU level exchanges with CCID
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#define CCID_FEATURES_EXC_TPDU 0x00010000
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/// Short APDU level exchange with CCID
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#define CCID_FEATURES_EXC_SAPDU 0x00020000
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/// Short and Extended APDU level exchange with CCID
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#define CCID_FEATURES_EXC_APDU 0x00040000
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/// USB Wake up signaling supported on card insertion and removal
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#define CCID_FEATURES_WAKEUP 0x00100000
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//------------------------------------------------------------------------------
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// Types
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//------------------------------------------------------------------------------
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/// Bulk CCID Message header structure
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typedef struct
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{
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unsigned char bMessageType;
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/// Message-specific data length
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unsigned long wLength;
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/// Identifies the slot number for this command
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unsigned char bSlot;
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/// Sequence number for command.
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unsigned char bSeq;
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/// Slot status register
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unsigned char bStatus;
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/// Slot error
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unsigned char bError;
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/// specific register
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unsigned char bSpecific;
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/// Data block sent to the CCID.
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unsigned char abData[ABDATA_SIZE];
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unsigned char bSizeToSend;
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} __attribute__ ((packed)) S_ccid_bulk_in_header;
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/// 6.1 Bulk Transfers
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typedef struct
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{
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unsigned char bMessageType;
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/// Message-specific data length
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unsigned long wLength;
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/// Identifies the slot number for this command
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unsigned char bSlot;
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/// Sequence number for command.
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unsigned char bSeq;
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/// specific register
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unsigned char bSpecific_0;
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unsigned char bSpecific_1;
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unsigned char bSpecific_2;
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/// Application Protocol Data Unit
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unsigned char APDU[ABDATA_SIZE];
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} __attribute__ ((packed)) S_ccid_bulk_out_header;
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/// 6.1.11.2 PIN Verification Data Structure
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typedef struct
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{
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/// Number of seconds.
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unsigned char bTimerOut;
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/// Several parameters for the PIN format options
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unsigned char bmFormatString;
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/// Define the length of the PIN to present in the APDU command
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unsigned char bmPINBlockString;
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/// Allows the length PIN insertion in the APDU command
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unsigned char bmPINLengthFormat;
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/// Minimum PIN size in digit and Maximum PIN size in digit
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unsigned char wPINMaxExtraDigit;
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/// The value is a bit wise OR operation.
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unsigned char bEntryValidationCondition;
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/// Number of messages to display for the PIN modify command
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unsigned char bNumberMessage;
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/// Language used to display the messages.
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unsigned char wLangId;
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/// Message index in the Reader message table
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unsigned char bMsgIndex;
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/// T=1 I-block prologue field to use
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unsigned char bTeoPrologue[3];
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/// APDU to send to the ICC
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unsigned char abPINApdu[255];
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}__attribute__ ((packed)) S_ccid_PIN_Verification;
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/// 6.1.11.7 PIN Modification Data Structure
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typedef struct
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{
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/// Number of seconds. If 00h then CCID default value is used.
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unsigned char bTimeOut;
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/// Several parameters for the PIN format options (defined in § 6.1.11.4)
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unsigned char bmFormatString4;
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/// Define the length of the PIN to present in the APDU command
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unsigned char bmPINBlockString;
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/// Allows the length PIN insertion in the APDU command (defined in § 6.1.11.6)
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unsigned char bmPinLengthFormat;
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/// Insertion position offset in byte for the current PIN
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unsigned char bInsertionOffsetOld;
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/// Insertion position offset in byte for the new PIN
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unsigned char bInsertionOffsetNew;
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/// XXYYh
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/// XX: Minimum PIN size in digit
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/// YY: Maximum PIN size in digit
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unsigned char wPINMaxExtraDigit;
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/// 00h,01h,02h,03h
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/// Indicates if a confirmation is requested before acceptance of a new PIN (meaning that the user has to enter this new PIN twice before it is accepted)
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/// Indicates if the current PIN must be entered and set in the same APDU field of not.
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unsigned char bConfirmPIN;
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/// The value is a bit wise OR operation.
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/// 01h Max size reached
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/// 02h Validation key pressed
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/// 04h Timeout occurred
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unsigned char bEntryValidationCondition;
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/// 00h,01h,02h,03h,or FFh
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/// Number of messages to display for the PIN modify command.
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unsigned char bNumberMessage;
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/// Language used to display the messages. The 16 bit
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unsigned char wLangId;
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/// Message index in the Reader message table (should be 00h or 01h).
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unsigned char bMsgIndex1;
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/// Message index in the Reader message table (should be 01h or 02h).
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unsigned char bMsgIndex2;
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/// Message index in the Reader message table (should be 02h).
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unsigned char bMsgIndex3;
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/// T=1 I-block prologue field to use. Significant only if protocol in use is T=1.
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unsigned char bTeoPrologue[3];
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/// Byte array APDU to send to the ICC
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unsigned char abPINApdu[255];
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}__attribute__ ((packed)) S_ccid_PIN_Modification;
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/// Protocol Data Structure for Protocol T=0 (bProtocolNum=0, dwLength=00000005h)
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typedef struct
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{
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/// B7-4 - FI - Index into the table 7 in ISO/IEC 7816-3:1997 selecting a
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/// clock rate conversion factor
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/// B3-0 - DI - Index into the table 8 in ISO/IEC 7816-3:1997 selecting a
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/// baud rate conversion factor
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unsigned char bmFindexDindex;
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/// For T=0 ,B0 - 0b, B7-2 - 000000b
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/// B1 - Convention used (b1=0 for direct, b1=1 for inverse)
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unsigned char bmTCCKST0; // 0 to 2
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/// Extra Guardtime between two characters. Add 0 to 254 etu to the normal
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/// guardtime of 12etu. FFh is the same as 00h.
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unsigned char bGuardTimeT0; // 0 to FF
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/// WI for T=0 used to define WWT
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unsigned char bWaitingIntegerT0; // 0 to FF
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/// ICC Clock Stop Support
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/// 00 = Stopping the Clock is not allowed
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/// 01 = Stop with Clock signal Low
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/// 02 = Stop with Clock signal High
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/// 03 = Stop with Clock either High or Low
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unsigned char bClockStop; // 0 to 3
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} __attribute__ ((packed)) S_ccid_protocol_t0;
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/// Protocol Data Structure for Protocol T=1 (bProtocolNum=1, dwLength=00000007h)
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typedef struct
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{
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/// B7-4 - FI - Index into the table 7 in ISO/IEC 7816-3:1997 selecting a
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/// clock rate conversion factor
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/// B3-0 - DI - Index into the table 8 in ISO/IEC 7816-3:1997 selecting a
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/// baud rate conversion factor
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unsigned char bmFindexDindex;
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/// For T=1, B7-2 - 000100b
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/// B0 - Checksum type (b0=0 for LRC, b0=1 for CRC
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/// B1 - Convention used (b1=0 for direct, b1=1 for inverse)
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unsigned char bmTCCKST1; // 10h, 11h, 12h, 13h
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/// Extra Guardtime (0 to 254 etu between two characters).
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/// If value is FFh, then guardtime is reduced by 1.
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unsigned char bGuardTimeT1; // 0 to FF
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/// B7-4 = BWI
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/// B3-0 = CWI
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unsigned char bmWaitingIntegersT1; // 0 to 9
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/// ICC Clock Stop Support
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/// 00 = Stopping the Clock is not allowed
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/// 01 = Stop with Clock signal Low
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/// 02 = Stop with Clock signal High
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/// 03 = Stop with Clock either High or Low
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unsigned char bClockStop; // 0 to 3
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/// Size of negotiated IFSC
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unsigned char bIFSC; // 0 to FE
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/// Nad value used by CCID
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unsigned char bNadValue; // 0 to FF
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} __attribute__ ((packed)) S_ccid_protocol_t1;
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/// Identifies the length of type of subordinate descriptors of a CCID device
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/// Table 5.1-1 Smart Card Device Class descriptors
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typedef struct
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{
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/// Size of this descriptor, in bytes.
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unsigned char bLength;
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/// Functional Descriptor type
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unsigned char bDescriptorType;
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/// Integrated Circuit(s) Cards Interface Devices (CCID) Specification
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/// Release Number
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unsigned short bcdCCID;
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/// Index of the highest available slot. An USB-ICC is regarded as a single
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/// slot CCID.
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unsigned char bMaxSlotIndex;
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/// This value indicates what voltages the CCID can supply to its slots.
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/// It is a bitwise OR operation performed on the following values:
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/// - 01h 5.0V
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/// - 02h 3.0V
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/// - 04h 1.8V
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/// Other bits are RFU.
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unsigned char bVoltageSupport;
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/// RRRR -Upper Word- is RFU = 0000h
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/// PPPP -Lower Word- Encodes the supported protocol types. A "1" in a given
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/// bit position indicates support for the associated ISO protocol.
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/// 0001h = Protocol T=0
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/// 0002h = Protocol T=1
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/// All other bits are reserved and must be set to zero. The field is
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/// intended to correspond to the PCSC specification definitions.
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unsigned long dwProtocols;
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/// Default ICC clock frequency in KHz. This is an integer value.
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unsigned long dwDefaultClock;
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/// Maximum supported ICC clock frequency in KHz. This is an integer value.
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unsigned long dwMaximumClock;
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/// The number of clock frequencies that are supported by the CCID. If the
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/// value is 00h, the supported clock frequencies are assumed to be the
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/// default clock frequency defined by dwDefaultClock and the maximum clock
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/// frequency defined by dwMaximumClock.
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unsigned char bNumClockSupported;
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/// Default ICC I/O data rate in bps. This is an integer value
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unsigned long dwDataRate;
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/// Maximum supported ICC I/O data rate in bps
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unsigned long dwMaxDataRate;
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/// The number of data rates that are supported by the CCID.
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unsigned char bNumDataRatesSupported;
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/// Indicates the maximum IFSD supported by CCID for protocol T=1.
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unsigned long dwMaxIFSD;
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/// - RRRR-Upper Word- is RFU = 0000h
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/// - PPPP-Lower Word- encodes the supported protocol types. A "1" in a given
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/// bit position indicates support for the associated protocol.
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/// 0001h indicates support for the 2-wire protocol 1
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/// 0002h indicates support for the 3-wire protocol 1
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/// 0004h indicates support for the I2C protocol 1
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/// All other values are outside of this specification, and must be handled
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/// by vendor-supplied drivers.
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unsigned long dwSynchProtocols;
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/// The value is a bitwise OR operation performed on the following values:
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/// - 00000000h No special characteristics
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/// - 00000001h Card accept mechanism 2
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/// - 00000002h Card ejection mechanism 2
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/// - 00000004h Card capture mechanism 2
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/// - 00000008h Card lock/unlock mechanism
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unsigned long dwMechanical;
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/// This value indicates what intelligent features the CCID has.
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unsigned long dwFeatures;
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/// For extended APDU level the value shall be between 261 + 10 (header) and
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/// 65544 +10, otherwise the minimum value is the wMaxPacketSize of the
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/// Bulk-OUT endpoint.
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unsigned long dwMaxCCIDMessageLength;
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/// Significant only for CCID that offers an APDU level for exchanges.
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unsigned char bClassGetResponse;
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/// Significant only for CCID that offers an extended APDU level for exchanges.
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unsigned char bClassEnvelope;
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/// Number of lines and characters for the LCD display used to send messages for PIN entry.
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unsigned short wLcdLayout;
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/// This value indicates what PIN support features the CCID has.
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unsigned char bPINSupport;
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/// Maximum number of slots which can be simultaneously busy.
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unsigned char bMaxCCIDBusySlots;
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} __attribute__ ((packed)) CCIDDescriptor;
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//------------------------------------------------------------------------------
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// Exported functions
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//------------------------------------------------------------------------------
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extern unsigned char RDRtoPCHardwareError( unsigned char bSlot,
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unsigned char bSeq,
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unsigned char bHardwareErrorCode );
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/*
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#if !defined(NOAUTOCALLBACK)
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extern void USBDCallbacks_RequestReceived(const USBGenericRequest *request);
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#endif
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*/
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extern void CCID_SmartCardRequest( void );
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extern void CCIDDriver_Initialize( void );
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extern unsigned char CCID_Read(void *pBuffer,
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unsigned int dLength,
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TransferCallback fCallback,
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void *pArgument);
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extern unsigned char CCID_Write(void *pBuffer,
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unsigned int dLength,
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TransferCallback fCallback,
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void *pArgument);
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extern unsigned char CCID_Insertion( void );
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extern unsigned char CCID_Removal( void );
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#endif //#ifndef CCID_DRIVER_H
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