a44ba2f2a7
Files correlati : Ricompilazione Demo : [ ] Commento : Eliminata caterva di roba deprecated: praticamente sono state decimate le stringhe C a favore delle TString C++ Corretta gestione bottone "pagina precedente" in anteprima report git-svn-id: svn://10.65.10.50/trunk@14922 c028cbd2-c16b-5b4b-a496-9718f37d4682
511 lines
13 KiB
C++
Executable File
511 lines
13 KiB
C++
Executable File
#define __SMARTCARD_CPP
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#define XVT_INCL_NATIVE
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#include <xvt.h>
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#include <config.h>
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#include <diction.h>
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#include <recarray.h>
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#include <smartcard.h>
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#include <tabutil.h>
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#include <utility.h>
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#ifdef WIN32
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#include <ase/include/ASEMemCard.h>
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typedef unsigned long (ASEMEM_API FASEListReaders)(char * readersList, unsigned long * length);
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typedef unsigned long (ASEMEM_API FASEWaitForCardEvent)(char * reader, unsigned char inOut, unsigned long timeOut);
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typedef unsigned long (ASEMEM_API FASEMemConnect)(ASEMEM_HANDLE * hCard, char * reader, unsigned long connectMode, unsigned long * cardType);
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typedef unsigned long (ASEMEM_API FASEMemDisconnect)(ASEMEM_HANDLE hCard, char mode);
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typedef unsigned long (ASEMEM_API FASEMemWrite)(ASEMEM_HANDLE hCard, unsigned long address, unsigned char * writeBuffer, unsigned long lenWrite, char protect);
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typedef unsigned long (ASEMEM_API FASEMemRead)(ASEMEM_HANDLE hCard, unsigned long address, unsigned char * readBuffer, unsigned char * protReadBuffer, unsigned long lenRead);
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typedef unsigned long (ASEMEM_API FASEMemVerifyPassword)(ASEMEM_HANDLE hCard, unsigned char * password, unsigned long length, int * attempts);
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typedef unsigned long (ASEMEM_API FASEMemChangePassword)(ASEMEM_HANDLE hCard,unsigned char * oldPassword, unsigned char * newPassword, unsigned long length, int * attempts);
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typedef FASEListReaders * LPASEListReaders;
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typedef FASEWaitForCardEvent * LPASEWaitForCardEvent;
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typedef FASEMemConnect * LPASEMemConnect;
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typedef FASEMemDisconnect * LPASEMemDisconnect;
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typedef FASEMemWrite * LPASEMemWrite;
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typedef FASEMemRead * LPASEMemRead;
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typedef FASEMemVerifyPassword * LPASEMemVerifyPassword;
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typedef FASEMemChangePassword * LPASEMemChangePassword;
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HINSTANCE _hlibASE = NULL;
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LPASEListReaders lpfnASEListReaders = NULL;
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LPASEWaitForCardEvent lpfnASEWaitForCardEvent = NULL;
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LPASEMemConnect lpfnASEMemConnect = NULL;
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LPASEMemDisconnect lpfnASEMemDisconnect = NULL;
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LPASEMemWrite lpfnASEMemWrite = NULL;
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LPASEMemRead lpfnASEMemRead = NULL;
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LPASEMemVerifyPassword lpfnASEMemVerifyPassword = NULL;
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LPASEMemChangePassword lpfnASEMemChangePassword = NULL;
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#endif
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bool TSmart_card::ASEloadlibrary()
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{
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#ifdef WIN32
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if (_hlibASE) // Check in already loaded
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return TRUE;
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UINT fuError = SetErrorMode(SEM_NOOPENFILEERRORBOX);
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_hlibASE = LoadLibrary("ASEMemory.dll");
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SetErrorMode(fuError);
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if (_hlibASE == NULL)
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return error_box(TR("ASEMemory.dll mancante"));
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if (_hlibASE < (HINSTANCE)HINSTANCE_ERROR)
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{
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DWORD err = *((DWORD*)_hlibASE) & 0xFFFF;
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_hlibASE = NULL;
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return error_box(FR("Errore di caricamento di ASEMemory.dll: %lu"), err);
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}
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if (!(lpfnASEListReaders = (LPASEListReaders)GetProcAddress (_hlibASE, "ASEListReaders"))) return FALSE;
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if (!(lpfnASEWaitForCardEvent = (LPASEWaitForCardEvent)GetProcAddress (_hlibASE, "ASEWaitForCardEvent"))) return FALSE;
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if (!(lpfnASEMemConnect = (LPASEMemConnect)GetProcAddress (_hlibASE, "ASEMemConnect"))) return FALSE;
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if (!(lpfnASEMemDisconnect = (LPASEMemDisconnect)GetProcAddress (_hlibASE, "ASEMemDisconnect"))) return FALSE;
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if (!(lpfnASEMemWrite = (LPASEMemWrite)GetProcAddress (_hlibASE, "ASEMemWrite"))) return FALSE;
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if (!(lpfnASEMemRead = (LPASEMemRead)GetProcAddress (_hlibASE, "ASEMemRead"))) return FALSE;
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if (!(lpfnASEMemVerifyPassword = (LPASEMemVerifyPassword)GetProcAddress (_hlibASE, "ASEMemVerifyPassword"))) return FALSE;
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if (!(lpfnASEMemChangePassword = (LPASEMemChangePassword)GetProcAddress (_hlibASE, "ASEMemChangePassword"))) return FALSE;
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#endif
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return TRUE;
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}
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TSmart_card::TSmart_card()
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{
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init();
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}
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unsigned long TSmart_card::ASEsearch()
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{
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_ASE_reader_name.cut(0);
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unsigned long len;
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unsigned long status = lpfnASEListReaders(NULL, &len);
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if (status != ASEMEM_S_SUCCESS)
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return status;
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char * readerList = new(char[len]);
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if (readerList == NULL)
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return ASEMEM_E_NO_MEMORY;
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status = lpfnASEListReaders(readerList, &len);
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if (status == ASEMEM_S_SUCCESS)
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{
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_ASE_reader_name = readerList;
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if (_ASE_reader_name.empty())
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status = ASEMEM_E_NO_READERS_AVAILABLE;
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}
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_has_pwd = false;
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delete readerList;
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return status;
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}
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unsigned long TSmart_card::ASEread(char ** buffer)
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{
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ASEMEM_HANDLE hcard;
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unsigned long type;
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unsigned long status = lpfnASEMemConnect(&hcard, (char *)(const char *)_ASE_reader_name, ASEMEM_SHARE_SHARED, &type);
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unsigned char stdpassword[3] = {0xFF, 0xFF, 0xFF};
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if (status != ASEMEM_S_SUCCESS)
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return status;
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_has_pwd = type == ASEMEM_CARD_TYPE_2BUS || type != ASEMEM_CARD_TYPE_3BUS;
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if (_has_pwd)
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{
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unsigned long passwordLength = (type == ASEMEM_CARD_TYPE_2BUS) ? ASEMEM_2BUS_PASSWORD_LENGTH : ASEMEM_3BUS_PASSWORD_LENGTH;
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int attempts = 0;
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status = lpfnASEMemVerifyPassword(hcard, stdpassword, passwordLength, &attempts);
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if (status == ASEMEM_E_PASSWORD_VERIFICATION_FAILED)
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{
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lpfnASEMemDisconnect(&hcard, ASEMEM_RESET_CARD);
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return status;
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}
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}
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unsigned char len;
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const int offset = _has_pwd ? 32 : 0;
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status = lpfnASEMemRead(hcard, offset, &len, NULL, 1);
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if (status == ASEMEM_S_SUCCESS && len == 1)
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{
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status = lpfnASEMemRead(hcard, offset+1, &len, NULL, 1);
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if (status == ASEMEM_S_SUCCESS)
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{
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if (*buffer == NULL)
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*buffer = new(char[len+1]);
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status = lpfnASEMemRead(hcard, offset+2, (unsigned char *) *buffer, NULL, (int) len);
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if (status == ASEMEM_S_SUCCESS)
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(*buffer)[len] = '\0';
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else
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(*buffer)[0] = '\0';
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}
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}
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else
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ASEwrite("0");
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lpfnASEMemDisconnect(&hcard, ASEMEM_LEAVE_CARD);
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return status;
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}
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unsigned long TSmart_card::ASEwrite(char * buffer) const
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{
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ASEMEM_HANDLE hcard;
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unsigned long type;
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unsigned long status = lpfnASEMemConnect(&hcard, (char *)(const char *)_ASE_reader_name, ASEMEM_SHARE_SHARED, &type);
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if (status != ASEMEM_S_SUCCESS)
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return status;
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unsigned char len = 1;
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const int offset = _has_pwd ? 32 : 0;
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status = lpfnASEMemWrite(hcard, offset, &len, 1, ASEMEM_WRITE_MODE);
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if (status == ASEMEM_S_SUCCESS)
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{
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len = strlen(buffer);
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status = lpfnASEMemWrite(hcard, offset+1, &len, 1, ASEMEM_WRITE_MODE);
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if (status == ASEMEM_S_SUCCESS)
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status = lpfnASEMemWrite(hcard, offset+2, (unsigned char *)buffer, (int) len, ASEMEM_WRITE_MODE);
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}
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lpfnASEMemDisconnect(&hcard, ASEMEM_LEAVE_CARD);
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return status;
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}
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static smartcard_error ASEmap_error(unsigned long error)
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{
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switch (error)
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{
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case ASEMEM_S_SUCCESS:
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return no_smarterror;
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case ASEMEM_E_FUNCTION_NOT_SUPPORTED:
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return wrong_function;
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case ASEMEM_E_REMOVED_CARD:
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return card_removed;
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case ASEMEM_E_UNPOWERED_CARD:
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return no_power;
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case ASEMEM_E_UNSUPPORTED_CARD:
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return wrong_card;
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case ASEMEM_E_PASSWORD_VERIFICATION_FAILED:
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return wrong_password;
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case ASEMEM_E_PASSWORD_BLOCKED:
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return password_blocked;
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case ASEMEM_E_INVALID_HANDLE:
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return invelid_handle;
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case ASEMEM_E_INVALID_PARAMETER:
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return invalid_parameter;
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case ASEMEM_E_NO_SMARTCARD:
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return no_card;
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case ASEMEM_E_RESET_CARD:
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return reset_card;
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case ASEMEM_E_SHARING_VIOLATION:
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return protection_error;
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case ASEMEM_E_UNKNOWN_READER:
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return unknown_reader;
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case ASEMEM_E_NO_READERS_AVAILABLE:
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return no_reader;
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case ASEMEM_E_INSUFFICIENT_BUFFER:
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return buffer_overflow;
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case ASEMEM_E_SERVICE_STOPPED:
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return sevice_stopped;
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case ASEMEM_E_TIMEOUT :
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return timeout_err;
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case ASEMEM_E_NO_MEMORY:
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return no_memory;
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case ASEMEM_E_UNKNOWN_ERROR:
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default:
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return unknown_err;
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}
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}
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void TSmart_card::display_error(smartcard_error error) const
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{
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switch (error)
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{
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case no_smarterror:
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break;
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case wrong_function:
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error_box(TR("Funzione errata"));
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break;
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case card_removed:
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error_box(TR("Smartcard rimossa"));
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break;
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case no_power:
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error_box(TR("Smartcard non alimentata"));
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break;
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case wrong_card:
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error_box(TR("Smartcard errata"));
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break;
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case wrong_password:
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error_box(TR("Password errata"));
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break;
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case password_blocked:
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error_box(TR("Password bloccata"));
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break;
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case invelid_handle:
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error_box(TR("Handle errata"));
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break;
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case invalid_parameter:
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error_box(TR("Parametro errato"));
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break;
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case no_card:
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error_box(TR("Smartcard rimossa"));
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break;
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case reset_card:
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error_box(TR("Smartcard rinizializzata"));
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break;
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case protection_error:
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error_box(TR("Errore di protezione"));
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break;
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case unknown_reader:
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error_box(TR("Lettore sconosciuto"));
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break;
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case no_reader:
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error_box(TR("Nessun lettore rilevato"));
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break;
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case buffer_overflow:
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error_box(TR("Buffer overflow"));
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break;
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case sevice_stopped:
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error_box(TR("Servizio fermato"));
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break;
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case timeout_err:
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error_box(TR("Timeout"));
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break;
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case no_memory:
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error_box(TR("No memory"));
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break;
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case new_card:
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message_box(TR("Smartcard nuova"));
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break;
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case unknown_err:
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error_box(TR("Errore sconosciuto"));
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default:
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break;
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}
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}
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smartcard_error TSmart_card::read()
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{
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_values.destroy();
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smartcard_error error = no_smarterror;
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if (_type == ase_smartcard)
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{
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char * buffer = NULL;
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error = ASEmap_error(ASEread(&buffer));
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if (error == no_smarterror)
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{
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TToken_string t((const char *)buffer);
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for (const char * s = t.get(); s && *s != '\0'; s = t.get())
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_values.add(s);
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if (t.empty())
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error = new_card;
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}
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int i;
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for (i = _values.items(); i < _last_smart_field; i++)
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_values.add("");
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const TRectype & tabrec = cache().get("SMC", _values.row(_key_field));
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for (; i < _num_fields; i++)
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{
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const TString & val = tabrec.get(_tab_field.row(i));
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_values.add(val);
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}
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if (buffer != NULL)
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delete buffer;
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}
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_card_connected = (error == no_smarterror || error == new_card);
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return error;
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}
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smartcard_error TSmart_card::connect_card()
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{
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return read();
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}
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smartcard_error TSmart_card::disconnect_card()
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{
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_card_connected = false;
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return no_smarterror;
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}
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smartcard_error TSmart_card::write() const
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{
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TToken_string t;
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int i;
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smartcard_error error;
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for (i = 0; i < _last_smart_field; i++)
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t.add(_values.row(i));
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TTable tab("SMC");
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tab.put("CODTAB", _values.row(_key_field));
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bool new_rec = tab.read(_isequal, _lock) != NOERR;
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for (i = 0 ; i < _num_fields; i++)
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if (!_tab_field.row(i).empty())
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{
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if (i == _anno_field || i == _ndoc_field)
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{
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if (tab.get_int(_tab_field.row(i)) < atoi(_values.row(i)))
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tab.put(_tab_field.row(i), _values.row(i));
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}
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else
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tab.put(_tab_field.row(i), _values.row(i));
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}
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if (new_rec)
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tab.write();
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else
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tab.rewrite();
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if (_type == ase_smartcard)
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error = ASEmap_error(ASEwrite((char *)(const char *)t));
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return error;
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}
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void TSmart_card::mask2card(const TMask & m)
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{
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_values.destroy();
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for (int i = 0; i < _num_fields; i++)
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{
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const TString & val = m.get(_output_field[i]);
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_values.add(val, i);
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}
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}
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smartcard_error TSmart_card::check_key(const TMask & m)
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{
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const TString & card_key = _values.row(_key_field);
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const TString & mask_key = m.get(_input_field[_key_field]);
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const bool ok = (mask_key.empty() || card_key == mask_key);
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if (!ok)
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disconnect_card();
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return ok ? no_smarterror : wrong_card;
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}
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void TSmart_card::card2mask(TMask & m)
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{
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for (int i = 0; i < _num_fields; i++)
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if (_input_field[i] >= 0)
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{
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if (_prog_field[i] > 0)
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{
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const int anno_fld = anno_field();
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const int ndoc_fld = ndoc_field();
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const int last_anno = get_int(anno_fld);
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const int last_ndoc = get_int(ndoc_fld);
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const int anno = m.get_int(_output_field[anno_fld]);
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const int ndoc = m.get_int(_output_field[ndoc_fld]);
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if (anno > last_anno)
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sub2field(i, m.get_real(_prog_field[i]));
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if (anno == last_anno && ndoc <= last_ndoc)
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sub2field(i, m.get_real(_prog_field[i]));
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}
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const TString & val = _values.row(i);
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m.set(_input_field[i], val, 3);
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}
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m.set(_check_field, card_connected());
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}
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void TSmart_card::enable_prot_fields(TMask & m, bool on) const
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{
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for (int i = 0; i < _num_fields; i++)
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if (_prot_field[i])
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m.enable(_input_field[i], on);
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}
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void TSmart_card::add2field(int field, real & val)
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{
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real field_val(_values.row(field));
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field_val += val;
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_values.add(field_val.string(), field);
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}
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bool TSmart_card::init()
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{
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// Identify card
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_card_connected = false;
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TFilename f("smartcard.ini");
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if (f.custom_path())
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{
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TConfig c(f, "ve0100");
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switch (c.get_int("Type"))
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{
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case 0:
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_type = no_smartcard;
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break;
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case 1:
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{
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if (ASEloadlibrary())
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{
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smartcard_error err = ASEmap_error(ASEsearch());
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if (err == no_reader)
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_type = no_smartcard;
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else
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_type = ase_smartcard;
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}
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else
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_type = no_smartcard;
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}
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break;
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default:
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_type = no_smartcard;
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break;
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}
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_last_smart_field = c.get_int("FieldsOnCard");
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_password = c.get("Password").left(3);
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_anno_field = c.get_int("AnnoField");
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_ndoc_field = c.get_int("NDocField");
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_check_field = c.get_int("CheckField");
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for (_num_fields = 0; _num_fields < MAX_SM_FIELDS; _num_fields++)
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{
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_input_field[_num_fields] = c.get_int("InputFld", NULL, _num_fields);
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if (_input_field[_num_fields] != 0)
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{
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_output_field[_num_fields] = c.get_int("OutputFld", NULL, _num_fields, _input_field[_num_fields]);
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_prog_field[_num_fields] = c.get_int("ProgFld", NULL, _num_fields);
|
|
_prot_field.set(_num_fields, c.get_bool("ProtFld", NULL, _num_fields));
|
|
_tab_field.add(c.get("TabFld", NULL, _num_fields, ""), _num_fields);
|
|
if (_tab_field.row(_num_fields) == "CODTAB")
|
|
_key_field = _num_fields;
|
|
}
|
|
else
|
|
break;
|
|
}
|
|
}
|
|
return true;
|
|
}
|