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gdcmUtil.cxx

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00001 /*=========================================================================
00002                                                                                 
00003   Program:   gdcm
00004   Module:    $RCSfile: gdcmUtil.cxx,v $
00005   Language:  C++
00006   Date:      $Date: 2006/01/10 15:54:03 $
00007   Version:   $Revision: 1.182 $
00008                                                                                 
00009   Copyright (c) CREATIS (Centre de Recherche et d'Applications en Traitement de
00010   l'Image). All rights reserved. See Doc/License.txt or
00011   http://www.creatis.insa-lyon.fr/Public/Gdcm/License.html for details.
00012                                                                                 
00013      This software is distributed WITHOUT ANY WARRANTY; without even
00014      the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
00015      PURPOSE.  See the above copyright notices for more information.
00016                                                                                 
00017 =========================================================================*/
00018 
00019 #include "gdcmUtil.h"
00020 #include "gdcmDebug.h"
00021 
00022 #include <iostream>
00023 #include <stdarg.h> // for va_list
00024 
00025 // For GetCurrentDate, GetCurrentTime
00026 #include <time.h>
00027 #include <sys/types.h>
00028 #include <sys/stat.h>
00029 
00030 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
00031 #include <sys/timeb.h>
00032 #else
00033 #include <sys/time.h>
00034 #endif
00035 
00036 #include <stdarg.h>  //only included in implementation file
00037 #include <stdio.h>   //only included in implementation file
00038 
00039 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
00040    #include <winsock.h>  // for gethostname and gethostbyname and GetTickCount...
00041 // I haven't find a way to determine wether we need to under GetCurrentTime or not...
00042 // I think the best solution would simply to get rid of this problematic function
00043 // and use a 'less' common name...
00044 #if !defined(__BORLANDC__) || (__BORLANDC__ >= 0x0560)
00045    #undef GetCurrentTime
00046 #endif
00047 #else
00048    #include <unistd.h>  // for gethostname
00049    #include <netdb.h>   // for gethostbyname
00050 #endif
00051 
00052 // For GetMACAddress
00053 #ifdef _WIN32
00054    #include <snmp.h>
00055    #include <conio.h>
00056 #else
00057    #include <unistd.h>
00058    #include <stdlib.h>
00059    #include <string.h>
00060    #include <sys/types.h>
00061 #endif
00062 
00063 #ifdef CMAKE_HAVE_SYS_IOCTL_H
00064    #include <sys/ioctl.h>  // For SIOCGIFCONF on Linux
00065 #endif
00066 #ifdef CMAKE_HAVE_SYS_SOCKET_H
00067    #include <sys/socket.h>
00068 #endif
00069 #ifdef CMAKE_HAVE_SYS_SOCKIO_H
00070    #include <sys/sockio.h>  // For SIOCGIFCONF on SunOS
00071 #endif
00072 #ifdef CMAKE_HAVE_NET_IF_H
00073    #include <net/if.h>
00074 #endif
00075 #ifdef CMAKE_HAVE_NETINET_IN_H
00076    #include <netinet/in.h>   //For IPPROTO_IP
00077 #endif
00078 #ifdef CMAKE_HAVE_NET_IF_DL_H
00079    #include <net/if_dl.h>
00080 #endif
00081 #if defined(CMAKE_HAVE_NET_IF_ARP_H) && defined(__sun)
00082    // This is absolutely necessary on SunOS
00083    #include <net/if_arp.h>
00084 #endif
00085 
00086 // For GetCurrentThreadID()
00087 #ifdef __linux__
00088    #include <sys/types.h>
00089    #include <linux/unistd.h>
00090 #endif
00091 #ifdef __sun
00092    #include <thread.h>
00093 #endif
00094 
00095 namespace gdcm 
00096 {
00097 //-------------------------------------------------------------------------
00098 const std::string Util::GDCM_UID = "1.2.826.0.1.3680043.2.1143";
00099 std::string Util::RootUID        = GDCM_UID;
00100 /*
00101  * File Meta Information Version (0002,0001) shall contain a two byte OB 
00102  * value consisting of a 0x00 byte, followed by 0x01 byte, and not the 
00103  * value 0x0001 encoded as a little endian 16 bit short value, 
00104  * which would be the other way around...
00105  */
00106 const uint16_t Util::FMIV = 0x0100;
00107 uint8_t *Util::FileMetaInformationVersion = (uint8_t *)&FMIV;
00108 std::string Util::GDCM_MAC_ADRESS = GetMACAddress();
00109 
00110 //-------------------------------------------------------------------------
00111 // Public
00129 std::string Util::Format(const char *format, ...)
00130 {
00131    char buffer[2048]; // hope 2048 is enough
00132    va_list args;
00133    va_start(args, format);
00134    vsprintf(buffer, format, args);  //might be a security flaw
00135    va_end(args); // Each invocation of va_start should be matched 
00136                  // by a corresponding invocation of va_end
00137                  // args is then 'undefined'
00138    return buffer;
00139 }
00140 
00141 
00149 void Util::Tokenize (const std::string &str,
00150                      std::vector<std::string> &tokens,
00151                      const std::string &delimiters)
00152 {
00153    std::string::size_type lastPos = str.find_first_not_of(delimiters,0);
00154    std::string::size_type pos     = str.find_first_of    (delimiters,lastPos);
00155    while (std::string::npos != pos || std::string::npos != lastPos)
00156    {
00157       tokens.push_back(str.substr(lastPos, pos - lastPos));
00158       lastPos = str.find_first_not_of(delimiters, pos);
00159       pos     = str.find_first_of    (delimiters, lastPos);
00160    }
00161 }
00162 
00170 int Util::CountSubstring (const std::string &str,
00171                           const std::string &subStr)
00172 {
00173    int count = 0;                 // counts how many times it appears
00174    std::string::size_type x = 0;  // The index position in the string
00175 
00176    do
00177    {
00178       x = str.find(subStr,x);     // Find the substring
00179       if (x != std::string::npos) // If present
00180       {
00181          count++;                 // increase the count
00182          x += subStr.length();    // Skip this word
00183       }
00184    }
00185    while (x != std::string::npos);// Carry on until not present
00186 
00187    return count;
00188 }
00189 
00195 bool Util::IsCleanString(std::string const &s)
00196 {
00197    for(unsigned int i=0; i<s.size(); i++)
00198    {
00199       if (!isprint((unsigned char)s[i]) )
00200       {
00201          return false;
00202       }
00203    }
00204    return true;   
00205 }
00206 
00213 bool Util::IsCleanArea(uint8_t *s, int l)
00214 {
00215    for( int i=0; i<l; i++)
00216    {
00217       if (!isprint((unsigned char)s[i]) )
00218       {
00219          return false;
00220       }
00221    }
00222    return true;   
00223 }
00229 std::string Util::CreateCleanString(std::string const &s)
00230 {
00231    std::string str = s;
00232 
00233    for(unsigned int i=0; i<str.size(); i++)
00234    {
00235       if (!isprint((unsigned char)str[i]) )
00236       {
00237          str[i] = '.';
00238       }
00239    }
00240 
00241    if (str.size() > 0 )
00242    {
00243       if (!isprint((unsigned char)s[str.size()-1]) )
00244       {
00245          if (s[str.size()-1] == 0 )
00246          {
00247             str[str.size()-1] = ' ';
00248          }
00249       }
00250    }
00251 
00252    return str;
00253 }
00254 
00261 std::string Util::CreateCleanString(uint8_t *s, int l)
00262 {
00263    std::string str;
00264 
00265    for( int i=0; i<l; i++)
00266    {
00267       if (!isprint((unsigned char)s[i]) )
00268       {
00269          str = str + '.';
00270       }
00271    else
00272       {
00273          str = str + (char )s[i];
00274       }
00275    }
00276 
00277    return str;
00278 }
00283 std::string Util::NormalizePath(std::string const &pathname)
00284 {
00285 /*
00286    const char SEPARATOR_X      = '/';
00287    const char SEPARATOR_WIN    = '\\';
00288 #ifdef _WIN32
00289    const std::string SEPARATOR = "\\";
00290 #else
00291    const std::string SEPARATOR = "/";
00292 #endif
00293 */
00294    std::string name = pathname;
00295    int size = name.size();
00296 
00297 //   if ( name[size-1] != SEPARATOR_X && name[size-1] != SEPARATOR_WIN )
00298    if ( name[size-1] != GDCM_FILESEPARATOR )
00299    {
00300       name += GDCM_FILESEPARATOR;
00301    }
00302    return name;
00303 }
00304 
00309 std::string Util::GetPath(std::string const &fullName)
00310 {
00311    std::string res = fullName;
00312 /*
00313    
00314    int pos1 = res.rfind("/");
00315    int pos2 = res.rfind("\\");
00316    if ( pos1 > pos2 )
00317    {
00318       res.resize(pos1);
00319    }
00320    else
00321    {
00322       res.resize(pos2);
00323    }
00324 */
00325    int pos = res.rfind(GDCM_FILESEPARATOR);
00326    res.resize(pos);
00327    return res;
00328 }
00329 
00334 std::string Util::GetName(std::string const &fullName)
00335 {   
00336   std::string filename = fullName;
00337 /*
00338   std::string::size_type slash_pos = filename.rfind("/");
00339   std::string::size_type backslash_pos = filename.rfind("\\");
00340   // At least with my gcc4.0.1, unfound char results in pos =4294967295 ...
00341   //slash_pos = slash_pos > backslash_pos ? slash_pos : backslash_pos;  
00342   slash_pos = slash_pos < backslash_pos ? slash_pos : backslash_pos;
00343 */
00344   std::string::size_type slash_pos = filename.rfind(GDCM_FILESEPARATOR);
00345   if (slash_pos != std::string::npos )
00346     {
00347     return filename.substr(slash_pos + 1);
00348     }
00349   else
00350     {
00351     return filename;
00352     }
00353 } 
00354 
00358 std::string Util::GetCurrentDate()
00359 {
00360     char tmp[512];
00361     time_t tloc;
00362     time (&tloc);    
00363     strftime(tmp,512,"%Y%m%d", localtime(&tloc) );
00364     return tmp;
00365 }
00366 
00370 std::string Util::GetCurrentTime()
00371 {
00372     char tmp[512];
00373     time_t tloc;
00374     time (&tloc);
00375     strftime(tmp,512,"%H%M%S", localtime(&tloc) );
00376     return tmp;  
00377 }
00378 
00383 std::string Util::GetCurrentDateTime()
00384 {
00385    char tmp[40];
00386    long milliseconds;
00387    time_t timep;
00388   
00389    // We need implementation specific functions to obtain millisecond precision
00390 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
00391    struct timeb tb;
00392    ::ftime(&tb);
00393    timep = tb.time;
00394    milliseconds = tb.millitm;
00395 #else
00396    struct timeval tv;
00397    gettimeofday (&tv, NULL);
00398    timep = tv.tv_sec;
00399    // Compute milliseconds from microseconds.
00400    milliseconds = tv.tv_usec / 1000;
00401 #endif
00402    // Obtain the time of day, and convert it to a tm struct.
00403    struct tm *ptm = localtime (&timep);
00404    // Format the date and time, down to a single second.
00405    strftime (tmp, sizeof (tmp), "%Y%m%d%H%M%S", ptm);
00406 
00407    // Add milliseconds
00408    // Don't use Util::Format to accelerate execution of code
00409    char tmpAll[80];
00410    sprintf(tmpAll,"%s%03ld",tmp,milliseconds);
00411 
00412    return tmpAll;
00413 }
00414 
00415 unsigned int Util::GetCurrentThreadID()
00416 {
00417 // FIXME the implementation is far from complete
00418 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
00419   return (unsigned int)GetCurrentThreadId();
00420 #else
00421 #ifdef __linux__
00422    return 0;
00423    // Doesn't work on fedora, but is in the man page...
00424    //return (unsigned int)gettid();
00425 #else
00426 #ifdef __sun
00427    return (unsigned int)thr_self();
00428 #else
00429    //default implementation
00430    return 0;
00431 #endif // __sun
00432 #endif // __linux__
00433 #endif // Win32
00434 }
00435 
00436 unsigned int Util::GetCurrentProcessID()
00437 {
00438 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
00439   // NOTE: There is also a _getpid()...
00440   return (unsigned int)GetCurrentProcessId();
00441 #else
00442   // get process identification, POSIX
00443   return (unsigned int)getpid();
00444 #endif
00445 }
00446 
00450 bool Util::IsCurrentProcessorBigEndian()
00451 {
00452 #if defined(GDCM_WORDS_BIGENDIAN)
00453    return true;
00454 #else
00455    return false;
00456 #endif
00457 }
00458 
00467 std::string Util::DicomString(const char *s, size_t l)
00468 {
00469    std::string r(s, s+l);
00470    gdcmAssertMacro( !(r.size() % 2) ); // == basically 'l' is even
00471    return r;
00472 }
00473 
00485 std::string Util::DicomString(const char *s)
00486 {
00487    size_t l = strlen(s);
00488    if ( l%2 )
00489    {
00490       l++;
00491    }
00492    std::string r(s, s+l);
00493    gdcmAssertMacro( !(r.size() % 2) );
00494    return r;
00495 }
00496 
00503 bool Util::DicomStringEqual(const std::string &s1, const char *s2)
00504 {
00505   // s2 is the string from the DICOM reference e.g. : 'MONOCHROME1'
00506   std::string s1_even = s1; //Never change input parameter
00507   std::string s2_even = DicomString( s2 );
00508   if ( s1_even[s1_even.size()-1] == ' ' )
00509   {
00510     s1_even[s1_even.size()-1] = '\0'; //replace space character by null
00511   }
00512   return s1_even == s2_even;
00513 }
00514 
00521 bool Util::CompareDicomString(const std::string &s1, const char *s2, int op)
00522 {
00523   // s2 is the string from the DICOM reference e.g. : 'MONOCHROME1'
00524   std::string s1_even = s1; //Never change input parameter
00525   std::string s2_even = DicomString( s2 );
00526   if ( s1_even[s1_even.size()-1] == ' ' )
00527   {
00528     s1_even[s1_even.size()-1] = '\0'; //replace space character by null
00529   }
00530   switch (op)
00531   {
00532      case GDCM_EQUAL :
00533         return s1_even == s2_even;
00534      case GDCM_DIFFERENT :  
00535         return s1_even != s2_even;
00536      case GDCM_GREATER :  
00537         return s1_even >  s2_even;  
00538      case GDCM_GREATEROREQUAL :  
00539         return s1_even >= s2_even;
00540      case GDCM_LESS :
00541         return s1_even <  s2_even;
00542      case GDCM_LESSOREQUAL :
00543         return s1_even <= s2_even;
00544      default :
00545         gdcmDebugMacro(" Wrong operator : " << op);
00546         return false;
00547   }
00548 }
00549 
00550 #ifdef _WIN32
00551    typedef BOOL(WINAPI * pSnmpExtensionInit) (
00552            IN DWORD dwTimeZeroReference,
00553            OUT HANDLE * hPollForTrapEvent,
00554            OUT AsnObjectIdentifier * supportedView);
00555 
00556    typedef BOOL(WINAPI * pSnmpExtensionTrap) (
00557            OUT AsnObjectIdentifier * enterprise,
00558            OUT AsnInteger * genericTrap,
00559            OUT AsnInteger * specificTrap,
00560            OUT AsnTimeticks * timeStamp,
00561            OUT RFC1157VarBindList * variableBindings);
00562 
00563    typedef BOOL(WINAPI * pSnmpExtensionQuery) (
00564            IN BYTE requestType,
00565            IN OUT RFC1157VarBindList * variableBindings,
00566            OUT AsnInteger * errorStatus,
00567            OUT AsnInteger * errorIndex);
00568 
00569    typedef BOOL(WINAPI * pSnmpExtensionInitEx) (
00570            OUT AsnObjectIdentifier * supportedView);
00571 #endif //_WIN32
00572 
00574 int GetMacAddrSys ( unsigned char *addr );
00575 int GetMacAddrSys ( unsigned char *addr )
00576 {
00577 #ifdef _WIN32
00578    WSADATA WinsockData;
00579    if ( (WSAStartup(MAKEWORD(2, 0), &WinsockData)) != 0 ) 
00580    {
00581       std::cerr << "in Get MAC Adress (internal) : This program requires Winsock 2.x!" 
00582              << std::endl;
00583       return -1;
00584    }
00585 
00586    HANDLE PollForTrapEvent;
00587    AsnObjectIdentifier SupportedView;
00588    UINT OID_ifEntryType[]  = { 1, 3, 6, 1, 2, 1, 2, 2, 1, 3 };
00589    UINT OID_ifEntryNum[]   = { 1, 3, 6, 1, 2, 1, 2, 1 };
00590    UINT OID_ipMACEntAddr[] = { 1, 3, 6, 1, 2, 1, 2, 2, 1, 6 };
00591    AsnObjectIdentifier MIB_ifMACEntAddr = {
00592        sizeof(OID_ipMACEntAddr) / sizeof(UINT), OID_ipMACEntAddr };
00593    AsnObjectIdentifier MIB_ifEntryType = {
00594        sizeof(OID_ifEntryType) / sizeof(UINT), OID_ifEntryType };
00595    AsnObjectIdentifier MIB_ifEntryNum = {
00596        sizeof(OID_ifEntryNum) / sizeof(UINT), OID_ifEntryNum };
00597    RFC1157VarBindList varBindList;
00598    RFC1157VarBind varBind[2];
00599    AsnInteger errorStatus;
00600    AsnInteger errorIndex;
00601    AsnObjectIdentifier MIB_NULL = { 0, 0 };
00602    int ret;
00603    int dtmp;
00604    int j = 0;
00605 
00606    // Load the SNMP dll and get the addresses of the functions necessary
00607    HINSTANCE m_hInst = LoadLibrary("inetmib1.dll");
00608    if (m_hInst < (HINSTANCE) HINSTANCE_ERROR)
00609    {
00610       return -1;
00611    }
00612    pSnmpExtensionInit m_Init =
00613        (pSnmpExtensionInit) GetProcAddress(m_hInst, "SnmpExtensionInit");
00614    pSnmpExtensionQuery m_Query =
00615        (pSnmpExtensionQuery) GetProcAddress(m_hInst, "SnmpExtensionQuery");
00616    m_Init(GetTickCount(), &PollForTrapEvent, &SupportedView);
00617 
00618    /* Initialize the variable list to be retrieved by m_Query */
00619    varBindList.list = varBind;
00620    varBind[0].name = MIB_NULL;
00621    varBind[1].name = MIB_NULL;
00622 
00623    // Copy in the OID to find the number of entries in the
00624    // Inteface table
00625    varBindList.len = 1;        // Only retrieving one item
00626    SNMP_oidcpy(&varBind[0].name, &MIB_ifEntryNum);
00627    m_Query(ASN_RFC1157_GETNEXTREQUEST, &varBindList, &errorStatus,
00628                  &errorIndex);
00629 //   printf("# of adapters in this system : %i\n",
00630 //          varBind[0].value.asnValue.number);
00631    varBindList.len = 2;
00632 
00633    // Copy in the OID of ifType, the type of interface
00634    SNMP_oidcpy(&varBind[0].name, &MIB_ifEntryType);
00635 
00636    // Copy in the OID of ifPhysAddress, the address
00637    SNMP_oidcpy(&varBind[1].name, &MIB_ifMACEntAddr);
00638 
00639    do
00640    {
00641       // Submit the query.  Responses will be loaded into varBindList.
00642       // We can expect this call to succeed a # of times corresponding
00643       // to the # of adapters reported to be in the system
00644       ret = m_Query(ASN_RFC1157_GETNEXTREQUEST, &varBindList, &errorStatus,
00645                     &errorIndex); 
00646       if (!ret)
00647       {
00648          ret = 1;
00649       }
00650       else
00651       {
00652          // Confirm that the proper type has been returned
00653          ret = SNMP_oidncmp(&varBind[0].name, &MIB_ifEntryType,
00654                             MIB_ifEntryType.idLength);
00655       }
00656       if (!ret)
00657       {
00658          j++;
00659          dtmp = varBind[0].value.asnValue.number;
00660 
00661          // Type 6 describes ethernet interfaces
00662          if (dtmp == 6)
00663          {
00664             // Confirm that we have an address here
00665             ret = SNMP_oidncmp(&varBind[1].name, &MIB_ifMACEntAddr,
00666                                MIB_ifMACEntAddr.idLength);
00667             if ( !ret && varBind[1].value.asnValue.address.stream != NULL )
00668             {
00669                if ( (varBind[1].value.asnValue.address.stream[0] == 0x44)
00670                  && (varBind[1].value.asnValue.address.stream[1] == 0x45)
00671                  && (varBind[1].value.asnValue.address.stream[2] == 0x53)
00672                  && (varBind[1].value.asnValue.address.stream[3] == 0x54)
00673                  && (varBind[1].value.asnValue.address.stream[4] == 0x00) )
00674                {
00675                    // Ignore all dial-up networking adapters
00676                    std::cerr << "in Get MAC Adress (internal) : Interface #" 
00677                              << j << " is a DUN adapter\n";
00678                    continue;
00679                }
00680                if ( (varBind[1].value.asnValue.address.stream[0] == 0x00)
00681                  && (varBind[1].value.asnValue.address.stream[1] == 0x00)
00682                  && (varBind[1].value.asnValue.address.stream[2] == 0x00)
00683                  && (varBind[1].value.asnValue.address.stream[3] == 0x00)
00684                  && (varBind[1].value.asnValue.address.stream[4] == 0x00)
00685                  && (varBind[1].value.asnValue.address.stream[5] == 0x00) )
00686                {
00687                   // Ignore NULL addresses returned by other network
00688                   // interfaces
00689                   std::cerr << "in Get MAC Adress (internal) :  Interface #" 
00690                             << j << " is a NULL address\n";
00691                   continue;
00692                }
00693                memcpy( addr, varBind[1].value.asnValue.address.stream, 6);
00694             }
00695          }
00696       }
00697    } while (!ret);
00698 
00699    // Free the bindings
00700    SNMP_FreeVarBind(&varBind[0]);
00701    SNMP_FreeVarBind(&varBind[1]);
00702    return 0;
00703 #endif //Win32 version
00704 
00705 
00706 // implementation for POSIX system
00707 #if defined(CMAKE_HAVE_NET_IF_ARP_H) && defined(__sun)
00708    //The POSIX version is broken anyway on Solaris, plus would require full
00709    //root power
00710    struct  arpreq          parpreq;
00711    struct  sockaddr_in     *psa;
00712    struct  hostent         *phost;
00713    char                    hostname[MAXHOSTNAMELEN];
00714    char                    **paddrs;
00715    int                     sock, status=0;
00716 
00717    if (gethostname(hostname,  MAXHOSTNAMELEN) != 0 )
00718    {
00719       perror("in Get MAC Adress (internal) : gethostname");
00720       return -1;
00721    }
00722    phost = gethostbyname(hostname);
00723    paddrs = phost->h_addr_list;
00724 
00725    sock = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP);
00726    if (sock == -1 )
00727    {
00728       perror("in Get MAC Adress (internal) : sock");
00729       return -1;
00730    }
00731    memset(&parpreq, 0, sizeof(struct arpreq));
00732    psa = (struct sockaddr_in *) &parpreq.arp_pa;
00733 
00734    memset(psa, 0, sizeof(struct sockaddr_in));
00735    psa->sin_family = AF_INET;
00736    memcpy(&psa->sin_addr, *paddrs, sizeof(struct in_addr));
00737 
00738    status = ioctl(sock, SIOCGARP, &parpreq);
00739    if (status == -1 )
00740    {
00741       perror("in Get MAC Adress (internal) : SIOCGARP");
00742       return -1;
00743    }
00744    memcpy(addr, parpreq.arp_ha.sa_data, 6);
00745 
00746    return 0;
00747 #else
00748 #ifdef CMAKE_HAVE_NET_IF_H
00749    int       sd;
00750    struct ifreq    ifr, *ifrp;
00751    struct ifconf    ifc;
00752    char buf[1024];
00753    int      n, i;
00754    unsigned char    *a;
00755 #if defined(AF_LINK) && (!defined(SIOCGIFHWADDR) && !defined(SIOCGENADDR))
00756    struct sockaddr_dl *sdlp;
00757 #endif
00758 
00759 //
00760 // BSD 4.4 defines the size of an ifreq to be
00761 // max(sizeof(ifreq), sizeof(ifreq.ifr_name)+ifreq.ifr_addr.sa_len
00762 // However, under earlier systems, sa_len isn't present, so the size is 
00763 // just sizeof(struct ifreq)
00764 // We should investigate the use of SIZEOF_ADDR_IFREQ
00765 //
00766 #ifdef HAVE_SA_LEN
00767    #ifndef max
00768       #define max(a,b) ((a) > (b) ? (a) : (b))
00769    #endif
00770    #define ifreq_size(i) max(sizeof(struct ifreq),\
00771         sizeof((i).ifr_name)+(i).ifr_addr.sa_len)
00772 #else
00773    #define ifreq_size(i) sizeof(struct ifreq)
00774 #endif // HAVE_SA_LEN
00775 
00776    if ( (sd = socket(AF_INET, SOCK_DGRAM, IPPROTO_IP)) < 0 )
00777    {
00778       return -1;
00779    }
00780    memset(buf, 0, sizeof(buf));
00781    ifc.ifc_len = sizeof(buf);
00782    ifc.ifc_buf = buf;
00783    if (ioctl (sd, SIOCGIFCONF, (char *)&ifc) < 0)
00784    {
00785       close(sd);
00786       return -1;
00787    }
00788    n = ifc.ifc_len;
00789    for (i = 0; i < n; i+= ifreq_size(*ifrp) )
00790    {
00791       ifrp = (struct ifreq *)((char *) ifc.ifc_buf+i);
00792       strncpy(ifr.ifr_name, ifrp->ifr_name, IFNAMSIZ);
00793 #ifdef SIOCGIFHWADDR
00794       if (ioctl(sd, SIOCGIFHWADDR, &ifr) < 0)
00795          continue;
00796       a = (unsigned char *) &ifr.ifr_hwaddr.sa_data;
00797 #else
00798 #ifdef SIOCGENADDR
00799       // In theory this call should also work on Sun Solaris, but apparently
00800       // SIOCGENADDR is not implemented properly thus the call 
00801       // ioctl(sd, SIOCGENADDR, &ifr) always returns errno=2 
00802       // (No such file or directory)
00803       // Furthermore the DLAPI seems to require full root access
00804       if (ioctl(sd, SIOCGENADDR, &ifr) < 0)
00805          continue;
00806       a = (unsigned char *) ifr.ifr_enaddr;
00807 #else
00808 #ifdef AF_LINK
00809       sdlp = (struct sockaddr_dl *) &ifrp->ifr_addr;
00810       if ((sdlp->sdl_family != AF_LINK) || (sdlp->sdl_alen != 6))
00811          continue;
00812       a = (unsigned char *) &sdlp->sdl_data[sdlp->sdl_nlen];
00813 #else
00814       perror("in Get MAC Adress (internal) : No way to access hardware");
00815       close(sd);
00816       return -1;
00817 #endif // AF_LINK
00818 #endif // SIOCGENADDR
00819 #endif // SIOCGIFHWADDR
00820       if (!a[0] && !a[1] && !a[2] && !a[3] && !a[4] && !a[5]) continue;
00821 
00822       if (addr) 
00823       {
00824          memcpy(addr, a, 6);
00825          close(sd);
00826          return 0;
00827       }
00828    }
00829    close(sd);
00830 #endif
00831    // Not implemented platforms (or no cable !)
00832    perror("in Get MAC Adress (internal) : There was a configuration problem (or no cable !) on your plateform");
00833    memset(addr,0,6);
00834    return -1;
00835 #endif //__sun
00836 }
00837 
00843 inline int getlastdigit(unsigned char *data)
00844 {
00845   int extended, carry = 0;
00846   for(int i=0;i<6;i++)
00847     {
00848     extended = (carry << 8) + data[i];
00849     data[i] = extended / 10;
00850     carry = extended % 10;
00851     }
00852   return carry;
00853 }
00854 
00859 std::string Util::GetMACAddress()
00860 {
00861    // This code is the result of a long internet search to find something
00862    // as compact as possible (not OS independant). We only have to separate
00863    // 3 OS: Win32, SunOS and 'real' POSIX
00864    // http://groups-beta.google.com/group/comp.unix.solaris/msg/ad36929d783d63be
00865    // http://bdn.borland.com/article/0,1410,26040,00.html
00866    unsigned char addr[6];
00867 
00868    int stat = GetMacAddrSys(addr);
00869    if (stat == 0)
00870    {
00871       // We need to convert a 6 digit number from base 256 to base 10, using integer
00872       // would requires a 48bits one. To avoid this we have to reimplement the div + modulo 
00873       // with string only
00874       bool zero = false;
00875       int res;
00876       std::string sres;
00877       while(!zero)
00878       {
00879          res = getlastdigit(addr);
00880          sres.insert(sres.begin(), '0' + res);
00881          zero = (addr[0] == 0) && (addr[1] == 0) && (addr[2] == 0) 
00882              && (addr[3] == 0) && (addr[4] == 0) && (addr[5] == 0);
00883       }
00884 
00885       return sres;
00886    }
00887    else
00888    {
00889       gdcmStaticWarningMacro("Problem in finding the MAC Address");
00890       return "";
00891    }
00892 }
00893 
00900 std::string Util::CreateUniqueUID(const std::string &root)
00901 {
00902    std::string prefix;
00903    std::string append;
00904    if ( root.empty() )
00905    {
00906       // gdcm UID prefix, as supplied by http://www.medicalconnections.co.uk
00907       prefix = RootUID; 
00908    }
00909    else
00910    {
00911       prefix = root;
00912    }
00913 
00914    // A root was specified use it to forge our new UID:
00915    append += ".";
00916    //append += Util::GetMACAddress(); // to save CPU time
00917    append += Util::GDCM_MAC_ADRESS;
00918    append += ".";
00919    append += Util::GetCurrentDateTime();
00920    append += ".";
00921    //Also add a mini random number just in case:
00922    char tmp[10];
00923    int r = (int) (100.0*rand()/RAND_MAX);
00924    // Don't use Util::Format to accelerate the execution
00925    sprintf(tmp,"%02d", r);
00926    append += tmp;
00927 
00928    // If append is too long we need to rehash it
00929    if ( (prefix + append).size() > 64 )
00930    {
00931       gdcmStaticErrorMacro( "Size of UID is too long." );
00932       // we need a hash function to truncate this number
00933       // if only md5 was cross plateform
00934       // MD5(append);
00935    }
00936 
00937    return prefix + append;
00938 }
00939 
00940 void Util::SetRootUID(const std::string &root)
00941 {
00942    if ( root.empty() )
00943       RootUID = GDCM_UID;
00944    else
00945       RootUID = root;
00946 }
00947 
00948 const std::string &Util::GetRootUID()
00949 {
00950    return RootUID;
00951 }
00952 
00953 //-------------------------------------------------------------------------
00959 std::ostream &binary_write(std::ostream &os, const uint16_t &val)
00960 {
00961 #if defined(GDCM_WORDS_BIGENDIAN) || defined(GDCM_FORCE_BIGENDIAN_EMULATION)
00962    uint16_t swap;
00963    swap = ( val << 8 | val >> 8 );
00964 
00965    return os.write(reinterpret_cast<const char*>(&swap), 2);
00966 #else
00967    return os.write(reinterpret_cast<const char*>(&val), 2);
00968 #endif //GDCM_WORDS_BIGENDIAN
00969 }
00970 
00976 std::ostream &binary_write(std::ostream &os, const uint32_t &val)
00977 {
00978 #if defined(GDCM_WORDS_BIGENDIAN) || defined(GDCM_FORCE_BIGENDIAN_EMULATION)
00979    uint32_t swap;
00980    swap = (  (val<<24)               | ((val<<8)  & 0x00ff0000) | 
00981             ((val>>8)  & 0x0000ff00) |  (val>>24)               );
00982    return os.write(reinterpret_cast<const char*>(&swap), 4);
00983 #else
00984    return os.write(reinterpret_cast<const char*>(&val), 4);
00985 #endif //GDCM_WORDS_BIGENDIAN
00986 }
00987 
00988 
00994 std::ostream &binary_write(std::ostream &os, const double &val)
00995 {
00996 #if defined(GDCM_WORDS_BIGENDIAN) || defined(GDCM_FORCE_BIGENDIAN_EMULATION)    
00997    double swap = val;
00998    
00999    char *beg = (char *)&swap;
01000    char *end = beg + 7;
01001    char t;
01002    for (unsigned int i = 0; i<7; i++)
01003    {
01004       t    = *beg;
01005       *beg = *end;
01006       *end = t;
01007       beg++,
01008       end--;  
01009    }  
01010    return os.write(reinterpret_cast<const char*>(&swap), 8);
01011 #else
01012    return os.write(reinterpret_cast<const char*>(&val), 8);
01013 #endif //GDCM_WORDS_BIGENDIAN
01014 }
01015 
01016 
01022 std::ostream &binary_write(std::ostream &os, const char *val)
01023 {
01024    return os.write(val, strlen(val));
01025 }
01026 
01032 std::ostream &binary_write(std::ostream &os, std::string const &val)
01033 {
01034    return os.write(val.c_str(), val.size());
01035 }
01036 
01043 std::ostream &binary_write(std::ostream &os, const uint8_t *val, size_t len)
01044 {
01045    // We are writting sizeof(char) thus no need to swap bytes
01046    return os.write(reinterpret_cast<const char*>(val), len);
01047 }
01048 
01055 std::ostream &binary_write(std::ostream &os, const uint16_t *val, size_t len)
01056 {
01057 // This is tricky since we are writting two bytes buffer. 
01058 // Be carefull with little endian vs big endian. 
01059 // Also this other trick is to allocate a small (efficient) buffer that store
01060 // intermediate result before writting it.
01061 #if defined(GDCM_WORDS_BIGENDIAN) || defined(GDCM_FORCE_BIGENDIAN_EMULATION)
01062    const int BUFFER_SIZE = 4096;
01063    static char buffer[BUFFER_SIZE];
01064    uint16_t *binArea16 = (uint16_t*)val; //for the const
01065  
01066    // how many BUFFER_SIZE long pieces in binArea ?
01067    int nbPieces = len/BUFFER_SIZE; //(16 bits = 2 Bytes)
01068    int remainingSize = len%BUFFER_SIZE;
01069 
01070    for (int j=0;j<nbPieces;j++)
01071    {
01072       uint16_t *pbuffer  = (uint16_t*)buffer; //reinitialize pbuffer
01073       for (int i = 0; i < BUFFER_SIZE/2; i++)
01074       {
01075          *pbuffer = *binArea16 >> 8 | *binArea16 << 8;
01076          pbuffer++;
01077          binArea16++;
01078       }
01079       os.write ( buffer, BUFFER_SIZE );
01080    }
01081    if ( remainingSize > 0)
01082    {
01083       uint16_t *pbuffer  = (uint16_t*)buffer; //reinitialize pbuffer
01084       for (int i = 0; i < remainingSize/2; i++)
01085       {
01086          *pbuffer = *binArea16 >> 8 | *binArea16 << 8;
01087          pbuffer++;
01088          binArea16++;
01089       }
01090       os.write ( buffer, remainingSize );
01091    }
01092    return os;
01093 #else
01094    return os.write(reinterpret_cast<const char*>(val), len);
01095 #endif
01096 }
01097 
01098 //-------------------------------------------------------------------------
01099 // Protected
01100 
01101 //-------------------------------------------------------------------------
01102 // Private
01106 std::string Util::GetIPAddress()
01107 {
01108    // This is a rip from 
01109    // http://www.codeguru.com/Cpp/I-N/internet/network/article.php/c3445/
01110 #ifndef HOST_NAME_MAX
01111    // SUSv2 guarantees that `Host names are limited to 255 bytes'.
01112    // POSIX 1003.1-2001 guarantees that `Host names (not including the
01113    // terminating NUL) are limited to HOST_NAME_MAX bytes'.
01114 #define HOST_NAME_MAX 255
01115    // In this case we should maybe check the string was not truncated.
01116    // But I don't known how to check that...
01117 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
01118    // with WinSock DLL we need to initialize the WinSock before using gethostname
01119    WORD wVersionRequested = MAKEWORD(1,0);
01120    WSADATA WSAData;
01121    int err = WSAStartup(wVersionRequested,&WSAData);
01122    if (err != 0)
01123    {
01124       // Tell the user that we could not find a usable
01125       // WinSock DLL.
01126       WSACleanup();
01127       return "127.0.0.1";
01128    }
01129 #endif
01130   
01131 #endif //HOST_NAME_MAX
01132 
01133    std::string str;
01134    char szHostName[HOST_NAME_MAX+1];
01135    int r = gethostname(szHostName, HOST_NAME_MAX);
01136  
01137    if ( r == 0 )
01138    {
01139       // Get host adresses
01140       struct hostent *pHost = gethostbyname(szHostName);
01141  
01142       for( int i = 0; pHost!= NULL && pHost->h_addr_list[i]!= NULL; i++ )
01143       {
01144          for( int j = 0; j<pHost->h_length; j++ )
01145          {
01146             if ( j > 0 ) str += ".";
01147  
01148             str += Util::Format("%u", 
01149                 (unsigned int)((unsigned char*)pHost->h_addr_list[i])[j]);
01150          }
01151          // str now contains one local IP address 
01152  
01153 #if defined(_MSC_VER) || defined(__BORLANDC__) || defined(__MINGW32__)
01154    WSACleanup();
01155 #endif
01156 
01157       }
01158    }
01159    // If an error occur r == -1
01160    // Most of the time it will return 127.0.0.1...
01161    return str;
01162 }
01163 
01164 void Util::hfpswap(double *a, double *b)
01165 {
01166    double tmp;
01167    tmp=*a;
01168    *a=*b;
01169    *b=tmp;
01170 }
01171 
01172 //-------------------------------------------------------------------------
01173 } // end namespace gdcm
01174 

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