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gdcmDataEntry.cxx

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00001 /*=========================================================================
00002                                                                                 
00003   Program:   gdcm
00004   Module:    $RCSfile: gdcmDataEntry.cxx,v $
00005   Language:  C++
00006   Date:      $Date: 2005/12/23 10:26:41 $
00007   Version:   $Revision: 1.27 $
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 "gdcmDataEntry.h"
00020 #include "gdcmVR.h"
00021 #include "gdcmTS.h"
00022 #include "gdcmGlobal.h"
00023 #include "gdcmUtil.h"
00024 #include "gdcmDebug.h"
00025 
00026 #include <fstream>
00027 
00028 namespace gdcm 
00029 {
00030 //-----------------------------------------------------------------------------
00031 #define MAX_SIZE_PRINT_ELEMENT_VALUE 0x7fffffff
00032 uint32_t DataEntry::MaxSizePrintEntry = MAX_SIZE_PRINT_ELEMENT_VALUE;
00033 
00034 //-----------------------------------------------------------------------------
00035 // Constructor / Destructor
00040 DataEntry::DataEntry(DictEntry *e) 
00041             : DocEntry(e)
00042 {
00043    State = STATE_LOADED;
00044    Flag = FLAG_NONE;
00045 
00046    BinArea = 0;
00047    SelfArea = true;
00048 }
00049 
00054 DataEntry::DataEntry(DocEntry *e)
00055             : DocEntry(e->GetDictEntry())
00056 {
00057    Flag = FLAG_NONE;
00058    BinArea = 0;
00059    SelfArea = true;
00060 
00061    Copy(e);
00062 }
00063 
00067 DataEntry::~DataEntry ()
00068 {
00069    DeleteBinArea();
00070 }
00071 
00072 //-----------------------------------------------------------------------------
00073 // Print
00074 
00075 //-----------------------------------------------------------------------------
00076 // Public
00082 void DataEntry::SetBinArea( uint8_t *area, bool self )  
00083 { 
00084    DeleteBinArea();
00085 
00086    BinArea = area;
00087    SelfArea = self;
00088 
00089    State = STATE_LOADED;
00090 }
00096 void DataEntry::CopyBinArea( uint8_t *area, uint32_t length )
00097 {
00098    DeleteBinArea();
00099 
00100    uint32_t lgh = length + length%2;
00101    SetLength(lgh);
00102 
00103    if( area && length > 0 )
00104    {
00105       NewBinArea();
00106       memcpy(BinArea,area,length);
00107       if( length!=lgh )
00108          BinArea[length]=0;
00109 
00110       State = STATE_LOADED;
00111    }
00112 }
00113 
00119 void DataEntry::SetValue(const uint32_t &id, const double &val)
00120 {
00121    if( !BinArea )
00122       NewBinArea();
00123    State = STATE_LOADED;
00124 
00125    if( id > GetValueCount() )
00126    {
00127       gdcmErrorMacro("Index (" << id << ")is greater than the data size");
00128       return;
00129    }
00130 
00131    const VRKey &vr = GetVR();
00132    if( vr == "US" || vr == "SS" )
00133    {
00134       uint16_t *data = (uint16_t *)BinArea;
00135       data[id] = (uint16_t)val;
00136    }
00137    else if( vr == "UL" || vr == "SL" )
00138    {
00139       uint32_t *data = (uint32_t *)BinArea;
00140       data[id] = (uint32_t)val;
00141    }
00142    else if( vr == "FL" )
00143    {
00144       float *data = (float *)BinArea;
00145       data[id] = (float)val;
00146    }
00147    else if( vr == "FD" )
00148    {
00149       double *data = (double *)BinArea;
00150       data[id] = (double)val;
00151    }
00152    else if( Global::GetVR()->IsVROfStringRepresentable(vr) )
00153    {
00154       gdcmErrorMacro("SetValue on String representable not implemented yet");
00155    }
00156    else
00157    {
00158       BinArea[id] = (uint8_t)val;
00159    }
00160 }
00168 double DataEntry::GetValue(const uint32_t &id) const
00169 {
00170    if( !BinArea )
00171    {
00172       gdcmErrorMacro("BinArea not set. Can't get the value");
00173       return 0.0;
00174    }
00175 
00176    uint32_t count = GetValueCount();
00177    if( id > count )
00178    {
00179       gdcmErrorMacro("Index (" << id << ")is greater than the data size");
00180       return 0.0;
00181    }
00182 
00183    // FIX the API : user *knows* that entry contains a US
00184    //               and he receives a double ?!?
00185    
00186    const VRKey &vr = GetVR();
00187    if( vr == "US" || vr == "SS" )
00188       return ((uint16_t *)BinArea)[id];
00189    else if( vr == "UL" || vr == "SL" )
00190       return ((uint32_t *)BinArea)[id];
00191    else if( vr == "FL" )
00192       return ((float *)BinArea)[id];
00193    else if( vr == "FD" )
00194       return ((double *)BinArea)[id];
00195    else if( Global::GetVR()->IsVROfStringRepresentable(vr) )
00196    {
00197       if( GetLength() )
00198       {
00199          // Don't use std::string to accelerate processing
00200          double val;
00201          char *tmp = new char[GetLength()+1];
00202          memcpy(tmp,BinArea,GetLength());
00203          tmp[GetLength()]=0;
00204 
00205          if( count == 0 )
00206          {
00207             val = atof(tmp);
00208          }
00209          else
00210          {
00211             count = id;
00212             char *beg = tmp;
00213             for(uint32_t i=0;i<GetLength();i++)
00214             {
00215                if( tmp[i] == '\\' )
00216                {
00217                   if( count == 0 )
00218                   {
00219                      tmp[i] = 0;
00220                      break;
00221                   }
00222                   else
00223                   {
00224                      count--;
00225                      beg = &(tmp[i+1]);
00226                   }
00227                }
00228             }
00229             val = atof(beg);
00230          }
00231 
00232          delete[] tmp;
00233          return val;
00234       }
00235       else 
00236          return 0.0;
00237    }
00238    else
00239       return BinArea[id];
00240 }
00241 
00245 bool DataEntry::IsValueCountValid() const
00246 {
00247   uint32_t vm;
00248   const std::string &strVM = GetVM();
00249   uint32_t vc = GetValueCount();
00250   bool valid = vc == 0;
00251   if( valid )
00252     return true;
00253   
00254   // FIXME : what shall we do with VM = "2-n", "3-n", etc
00255   
00256   if( strVM == "1-n" )
00257   {
00258     // make sure there is at least one ??? FIXME
00259     valid = vc >= 1;
00260   }
00261   else
00262   {
00263     std::istringstream os;
00264     os.str( strVM );
00265     os >> vm;
00266     // Two cases:
00267     // vm respects the one from the dict
00268     // vm is 0 (we need to check if this element is allowed to be empty) FIXME
00269 
00270     // note  (JPR)
00271     // ----    
00272     // Entries whose type is 1 are mandatory, with a mandatory value.
00273     // Entries whose type is 1c are mandatory-inside-a-Sequence,
00274     //                          with a mandatory value.
00275     // Entries whose type is 2 are mandatory, with an optional value.
00276     // Entries whose type is 2c are mandatory-inside-a-Sequence,
00277     //                          with an optional value.
00278     // Entries whose type is 3 are optional.
00279 
00280     // case vc == 0 is only applicable for 'type 2' entries.
00281     // Problem : entry type may depend on the modality and/or the Sequence
00282     //           it's embedded in !
00283     //          (Get the information in the 'Conformance Statements' ...)  
00284     valid = vc == vm;
00285   }
00286   return valid;
00287 }
00288 
00292 uint32_t DataEntry::GetValueCount( ) const
00293 {
00294    const VRKey &vr = GetVR();
00295    if( vr == "US" || vr == "SS" )
00296       return GetLength()/sizeof(uint16_t);
00297    else if( vr == "UL" || vr == "SL" )
00298       return GetLength()/sizeof(uint32_t);
00299    else if( vr == "FL" || vr == "OF" )
00300       return GetLength()/4 ; // FL has a *4* length! sizeof(float);
00301    else if( vr == "FD" )
00302       return GetLength()/8;  // FD has a *8* length! sizeof(double);
00303    else if( Global::GetVR()->IsVROfStringRepresentable(vr) )
00304    {
00305       // Some element in DICOM are allowed to be empty
00306       if( !GetLength() ) 
00307          return 0;
00308       // Don't use std::string to accelerate processing
00309       uint32_t count = 1;
00310       for(uint32_t i=0;i<GetLength();i++)
00311       {
00312          if( BinArea[i] == '\\')
00313             count++;
00314       }
00315       return count;
00316    }
00317    return GetLength();
00318 }
00323 void DataEntry::SetString(std::string const &value)
00324 {
00325    DeleteBinArea();
00326 
00327    const VRKey &vr = GetVR();
00328    if ( vr == "US" || vr == "SS" )
00329    {
00330       std::vector<std::string> tokens;
00331       Util::Tokenize (value, tokens, "\\");
00332       SetLength(tokens.size()*sizeof(uint16_t));
00333       NewBinArea();
00334 
00335       uint16_t *data = (uint16_t *)BinArea;
00336       for (unsigned int i=0; i<tokens.size();i++)
00337          data[i] = atoi(tokens[i].c_str());
00338       tokens.clear();
00339    }
00340    else if ( vr == "UL" || vr == "SL" )
00341    {
00342       std::vector<std::string> tokens;
00343       Util::Tokenize (value, tokens, "\\");
00344       SetLength(tokens.size()*sizeof(uint32_t));
00345       NewBinArea();
00346 
00347       uint32_t *data = (uint32_t *)BinArea;
00348       for (unsigned int i=0; i<tokens.size();i++)
00349          data[i] = atoi(tokens[i].c_str());
00350       tokens.clear();
00351    }
00352    else if ( vr == "FL" )
00353    {
00354       std::vector<std::string> tokens;
00355       Util::Tokenize (value, tokens, "\\");
00356       SetLength(tokens.size()*sizeof(float));
00357       NewBinArea();
00358 
00359       float *data = (float *)BinArea;
00360       for (unsigned int i=0; i<tokens.size();i++)
00361          data[i] = (float)atof(tokens[i].c_str());
00362       tokens.clear();
00363    }
00364    else if ( vr == "FD" )
00365    {
00366       std::vector<std::string> tokens;
00367       Util::Tokenize (value, tokens, "\\");
00368       SetLength(tokens.size()*sizeof(double));
00369       NewBinArea();
00370 
00371       double *data = (double *)BinArea;
00372       for (unsigned int i=0; i<tokens.size();i++)
00373          data[i] = atof(tokens[i].c_str());
00374       tokens.clear();
00375    }
00376    else
00377    {
00378       if( value.size() > 0 )
00379       {
00380          size_t l =  value.size();    
00381          SetLength(l + l%2);
00382          NewBinArea();
00383          memcpy(BinArea, value.c_str(), l);
00384          if (l%2)
00385             BinArea[l] = '\0';
00386       }
00387    }
00388    State = STATE_LOADED;
00389 }
00393 std::string const &DataEntry::GetString() const
00394 {
00395    static std::ostringstream s;
00396    const VRKey &vr = GetVR();
00397 
00398    s.str("");
00399    StrArea="";
00400 
00401    if( !BinArea )
00402       return StrArea;
00403       
00404    // When short integer(s) are stored, convert the following (n * 2) characters 
00405    // as a displayable string, the values being separated by a back-slash
00406 
00407    if( vr == "US" || vr == "SS" )
00408    {
00409       uint16_t *data=(uint16_t *)BinArea;
00410 
00411       for (unsigned int i=0; i < GetValueCount(); i++)
00412       {
00413          if( i!=0 )
00414             s << '\\';
00415          s << data[i];
00416       }
00417       StrArea=s.str();
00418    }
00419    // See above comment on multiple short integers (mutatis mutandis).
00420    else if( vr == "UL" || vr == "SL" )
00421    {
00422       uint32_t *data=(uint32_t *)BinArea;
00423 
00424       for (unsigned int i=0; i < GetValueCount(); i++)
00425       {
00426          if( i!=0 )
00427             s << '\\';
00428          s << data[i];
00429       }
00430       StrArea=s.str();
00431    }
00432    else if( vr == "FL" )
00433    {
00434       float *data=(float *)BinArea;
00435 
00436       for (unsigned int i=0; i < GetValueCount(); i++)
00437       {
00438          if( i!=0 )
00439             s << '\\';
00440          s << data[i];
00441       }
00442       StrArea=s.str();
00443    }
00444    else if( vr == "FD" )
00445    {
00446       double *data=(double *)BinArea;
00447 
00448       for (unsigned int i=0; i < GetValueCount(); i++)
00449       {
00450          if( i!=0 )
00451             s << '\\';
00452          s << data[i];
00453       }
00454       StrArea=s.str();
00455    }
00456    else
00457    {
00458       StrArea.append((const char *)BinArea,GetLength());
00459       // to avoid gdcm propagate oddities in lengthes
00460       if ( GetLength()%2)
00461          StrArea.append(" ",1);  
00462    }
00463    return StrArea;
00464 }
00465 
00471 void DataEntry::Copy(DocEntry *doc)
00472 {
00473    DocEntry::Copy(doc);
00474 
00475    DataEntry *entry = dynamic_cast<DataEntry *>(doc);
00476    if ( entry )
00477    {
00478       State = entry->State;
00479       Flag = entry->Flag;
00480       CopyBinArea(entry->BinArea,entry->GetLength());
00481    }
00482 }
00483 
00489 void DataEntry::WriteContent(std::ofstream *fp, FileType filetype)
00490 { 
00491    DocEntry::WriteContent(fp, filetype);
00492 
00493    if ( GetGroup() == 0xfffe )
00494    {
00495       return; //delimitors have NO value
00496    }
00497    
00498    // --> We only deal with Little Endian writting.
00499    // --> forget Big Endian Transfer Syntax writting!
00500    //     Next DICOM version will give it up ...
00501  
00502    // WARNING - For Implicit VR private element,
00503    //           we have *no choice* but considering them as
00504    //           something like 'OB' values.
00505    //           we rewrite them as we found them on disc.
00506    //           Some trouble will occur if element was 
00507    //           *actually* OW, if image was produced 
00508    //           on Big endian based processor, read and writen 
00509    //           on Little endian based processor
00510    //           and, later on, somebody needs
00511    //           this 'OW' Implicit VR private element (?!?)
00512    //           (Same stuff, mutatis mutandis, for Little/Big)
00513  
00514    // 8/16 bits Pixels problem should be solved automatiquely,
00515    // since we ensure the VR (OB vs OW) is conform to Pixel size.
00516         
00517    uint8_t *data = BinArea; //safe notation
00518    size_t l = GetLength(); 
00519    gdcmDebugMacro("in DataEntry::WriteContent " << GetKey() << " AtomicLength: "
00520               << Global::GetVR()->GetAtomicElementLength(this->GetVR() ) // << " BinArea in :" << &BinArea
00521              );
00522    if (BinArea) // the binArea was *actually* loaded
00523    {
00524 #if defined(GDCM_WORDS_BIGENDIAN) || defined(GDCM_FORCE_BIGENDIAN_EMULATION)
00525       unsigned short vrLgth = 
00526                         Global::GetVR()->GetAtomicElementLength(this->GetVR());
00527       unsigned int i;
00528       switch(vrLgth)
00529       {
00530          case 1:
00531          {
00532             binary_write (*fp, data, l );           
00533             break;
00534          }     
00535          case 2:
00536          {
00537             uint16_t *data16 = (uint16_t *)data;
00538             for(i=0;i<l/vrLgth;i++)
00539                binary_write( *fp, data16[i]);
00540             break;
00541          }
00542          case 4:
00543          {
00544             uint32_t *data32 = (uint32_t *)data;
00545             for(i=0;i<l/vrLgth;i++)
00546                binary_write( *fp, data32[i]);
00547             break;
00548          }
00549          case 8:
00550          {
00551             double *data64 = (double *)data;
00552             for(i=0;i<l/vrLgth;i++)
00553                binary_write( *fp, data64[i]);
00554             break;
00555          }
00556       }
00557 #else
00558    binary_write (*fp, data, l );
00559 #endif //GDCM_WORDS_BIGENDIAN
00560 
00561    }
00562    else
00563    {
00564       // nothing was loaded, but we need to skip space on disc     
00565       if (l != 0)
00566       {
00567       //  --> WARNING : nothing is written; 
00568       //  --> the initial data (on the the source image) is lost
00569       //  --> user is *not* informed !      
00570          gdcmDebugMacro ("Nothing was loaded, but we need to skip space on disc. "
00571                       << "Length =" << l << " for " << GetKey() );   
00572          fp->seekp(l, std::ios::cur);
00573       }
00574    }
00575    // to avoid gdcm to propagate oddities
00576    // (length was already modified)  
00577    if (l%2)
00578       fp->seekp(1, std::ios::cur);  
00579 }
00580 
00585 uint32_t DataEntry::ComputeFullLength()
00586 {
00587    return GetFullLength();
00588 }
00589 
00590 //-----------------------------------------------------------------------------
00591 // Protected
00593 void DataEntry::NewBinArea( )
00594 {
00595    DeleteBinArea();
00596    if( GetLength() > 0 )
00597       BinArea = new uint8_t[GetLength()];
00598    SelfArea = true;
00599 }
00601 void DataEntry::DeleteBinArea(void)
00602 {
00603    if (BinArea && SelfArea)
00604    {
00605       delete[] BinArea;
00606       BinArea = NULL;
00607    }
00608 }
00609 
00610 //-----------------------------------------------------------------------------
00611 // Private
00612 
00613 //-----------------------------------------------------------------------------
00614 // Print
00620 void DataEntry::Print(std::ostream &os, std::string const & )
00621 {
00622    os << "D ";
00623    DocEntry::Print(os);
00624 
00625    uint16_t g = GetGroup();
00626    if (g == 0xfffe) // delimiters have NO value
00627    {          
00628       return; // just to avoid identing all the remaining code 
00629    }
00630 
00631    std::ostringstream s;
00632    TSAtr v;
00633 
00634    if( BinArea )
00635    {
00636       v = GetString();
00637       const VRKey &vr = GetVR();
00638 
00639       if( vr == "US" || vr == "SS" )
00640          s << " [" << GetString() << "]";
00641       else if( vr == "UL" || vr == "SL" )
00642          s << " [" << GetString() << "]";
00643       else if ( vr == "FL" )
00644          s << " [" << GetString() << "]";
00645       else if ( vr == "FD" )
00646          s << " [" << GetString() << "]";
00647       else
00648       { 
00649          if(Global::GetVR()->IsVROfStringRepresentable(vr))
00650          {
00651             // replace non printable characters by '.'
00652             std::string cleanString = Util::CreateCleanString(v);
00653             if ( cleanString.length() <= GetMaxSizePrintEntry()
00654               || PrintLevel >= 3
00655               || IsNotLoaded() )
00656            // FIXME : when IsNotLoaded(), you create a Clean String ?!?
00657            // FIXME : PrintLevel<2 *does* print the values 
00658            //        (3 is only for extra offsets printing)
00659            // What do you wanted to do ? JPR
00660             {
00661                s << " [" << cleanString << "]";
00662             }
00663             else
00664             {
00665                s << " [gdcm::too long for print (" << cleanString.length() << ") ]";
00666             }
00667          }
00668          else
00669          {
00670             // A lot of Private elements (with no VR) contain actually 
00671             // only printable characters;
00672             // Let's deal with them as is they were VR std::string representable
00673     
00674             if ( Util::IsCleanArea( GetBinArea(), GetLength()  ) )
00675             {
00676                // FIXME : since the 'Area' *is* clean, just use
00677                //         a 'CreateString' method, to save CPU time.
00678                std::string cleanString = 
00679                      Util::CreateCleanString( BinArea,GetLength()  );
00680                s << " [" << cleanString << "]";
00681             }
00682             else
00683             {
00684                s << " [" << GDCM_BINLOADED << ";"
00685                << "length = " << GetLength() << "]";
00686             }
00687          }
00688       }
00689    }
00690    else
00691    {
00692       if( IsNotLoaded() )
00693          s << " [" << GDCM_NOTLOADED << "]";
00694       else if( IsUnfound() )
00695          s << " [" << GDCM_UNFOUND << "]";
00696       else if( IsUnread() )
00697          s << " [" << GDCM_UNREAD << "]";
00698       else if ( GetLength() == 0 )
00699          s << " []";
00700    }
00701 
00702    if( IsPixelData() )
00703       s << " (" << GDCM_PIXELDATA << ")";
00704 
00705    // Display the UID value (instead of displaying only the rough code)
00706    // First 'clean' trailing character (space or zero) 
00707    if(BinArea)
00708    {
00709       const uint16_t &gr = GetGroup();
00710       const uint16_t &elt = GetElement();
00711       TS *ts = Global::GetTS();
00712 
00713       if (gr == 0x0002)
00714       {
00715          // Any more to be displayed ?
00716          if ( elt == 0x0010 || elt == 0x0002 )
00717          {
00718             if ( v.length() != 0 )  // for brain damaged headers
00719             {
00720                if ( ! isdigit((unsigned char)v[v.length()-1]) )
00721                {
00722                   v.erase(v.length()-1, 1);
00723                }
00724             }
00725             s << "  ==>\t[" << ts->GetValue(v) << "]";
00726          }
00727       }
00728       else if (gr == 0x0008)
00729       {
00730          if ( elt == 0x0016 || elt == 0x1150 )
00731          {
00732             if ( v.length() != 0 )  // for brain damaged headers
00733             {
00734                if ( ! isdigit((unsigned char)v[v.length()-1]) )
00735                {
00736                   v.erase(v.length()-1, 1);
00737                }
00738             }
00739             s << "  ==>\t[" << ts->GetValue(v) << "]";
00740          }
00741       }
00742       else if (gr == 0x0004)
00743       {
00744          if ( elt == 0x1510 || elt == 0x1512  )
00745          {
00746             if ( v.length() != 0 )  // for brain damaged headers  
00747             {
00748                if ( ! isdigit((unsigned char)v[v.length()-1]) )
00749                {
00750                   v.erase(v.length()-1, 1);  
00751                }
00752             }
00753             s << "  ==>\t[" << ts->GetValue(v) << "]";
00754          }
00755       }
00756    }
00757 
00758    os << s.str();
00759 }
00760 
00761 //-----------------------------------------------------------------------------
00762 } // end namespace gdcm
00763 

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