1 | // This may look like C code, but it is really -*- C++ -*-
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2 |
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3 | #ifndef PPFBINSTREAM_H_SEEN
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4 | #define PPFBINSTREAM_H_SEEN
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5 |
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6 | // PPF (Portable Persistence Format) Input/Output streams
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7 | //
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8 | // E. Aubourg CEA DAPNIA/SPP 1999
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9 | // R. Ansari LAL IN2P3/CNRS 2000-2003
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10 |
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11 |
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12 | #include "machdefs.h"
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13 | #include "rawstream.h"
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14 |
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15 | #include <time.h>
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16 |
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17 | #include <complex>
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18 | #include <string>
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19 | #include <map>
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20 | #include <vector>
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21 |
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22 |
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23 |
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24 | namespace SOPHYA {
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25 |
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26 | class PPFBinaryIOStream {
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27 | public:
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28 |
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29 | enum PPFByteOrdering {PPS_NATIVE = -1, PPS_LITTLE_ENDIAN = 0, PPS_BIG_ENDIAN = 1};
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30 |
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31 | // Value of item identification tags in PPF binary streams
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32 | enum PPFItemTag {
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33 | PPS_NULL = 0, // this is a null object
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34 | PPS_STRING = 1, // string, length (4b) + data
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35 | PPS_OBJECT = 2, // classId, data...
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36 | PPS_REFERENCE = 3, // objectId
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37 | PPS_NAMETAG_TABLE = 4, // Name tag table (Written at the end of file/stream)
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38 | PPS_EOF = 5, // Just before tag infomation, offset to PPS_TAG
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39 | PPS_ENDOBJECT = 6, // marks the end of a given object information
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40 | PPS_NAMETAG_MARK = 7, // To have a name tag, position marker in a file
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41 | PPS_POSTAG_MARK = 8, // Position tag mark + 8 bytes (=stream position)
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42 | PPS_POSTAG_TABLE = 9, // Position tag table + 8 bytes (=stream position)
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43 | PPS_SIMPLE = 16, // 16 + number of bytes, up to 8 bytes
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44 | PPS_SIMPLE_ARRAY4 = 32, // 32 + number of bytes, up to 8 bytes, then 4 bytes of length
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45 | PPS_SIMPLE_ARRAY8 = 48 // 48 + number of bytes, up to 8 bytes, then 8 bytes of length
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46 | };
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47 |
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48 | // The following values are used with PPS_SIMPLE and PPS_SIMPLE_ARRAY (Using OR)
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49 | enum PPFItemTagDataType {
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50 | PPS_DATATYPE_CHAR = 0, // 0 : DataType=character
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51 | PPS_DATATYPE_FLOAT = 64, // 64 : DataType=float
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52 | PPS_DATATYPE_COMPLEX = 65, // 65 : DataType=complex
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53 | PPS_DATATYPE_INTEGER = 128, // 128 :DataType=integer
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54 | PPS_DATATYPE_UNSIGNED = 192 // 192 :DataType=Unsigned integer
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55 | };
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56 |
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57 | PPFBinaryIOStream();
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58 | virtual ~PPFBinaryIOStream();
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59 |
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60 | inline int Version() {return version;} // PIn/OutPersist version number
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61 | inline time_t CreationDate() { return creationdate; }
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62 | string CreationDateStr();
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63 | string InfoString();
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64 |
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65 | inline int_8 NbPosTags() {return _nbpostag; }
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66 | inline int_8 NbNameTags() {return tags.size(); }
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67 | inline int_8 NbObjects() {return _nbobjs; }
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68 | inline int_8 NbTopLevelObjects() {return _nbtlobjs; }
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69 | inline int_8 NbReferences() {return _nbrefs; }
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70 | inline int_4 MaxNestedObjsLevel() {return _maxnestlevel; }
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71 |
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72 | string GetTagName(int itag); // 0..NbTags-1
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73 | vector<string> const & GetNameTags();
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74 |
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75 | protected:
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76 | // La liste des NameTag ds le flot
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77 | map<string, int_8> tags;
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78 | int version; // PPersist(In/Out) version
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79 | time_t creationdate; // Date de creation du fichier
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80 |
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81 | // Variables pour garder le compte des objets et des tags
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82 | // Le nombre d'objets a l'ecriture est mis a jour par la classe
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83 | // derivee POutPersist
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84 | int_8 _nbpostag; // Nb de tag de positionnement
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85 | int_8 _nbobjs; // Nb total d'objets
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86 | int_8 _nbtlobjs; // Nb d'objets de niveau 1
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87 | int_8 _nbrefs; // Nb de references PPS_REFERENCE
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88 | int_4 _maxnestlevel; // Niveau maximum d'objets emboites
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89 | };
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90 |
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91 |
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92 | //! Input PPF (Portable Persist Format) streams
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93 | class PPFBinaryInputStream : public PPFBinaryIOStream {
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94 | public:
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95 | PPFBinaryInputStream(RawInOutStream * is, bool ad, bool scan=false);
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96 | PPFBinaryInputStream(string const& flnm, bool scan=true);
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97 | virtual ~PPFBinaryInputStream();
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98 |
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99 | inline string FileName() { return s->getFileName(); } // Retourne le nom de fichier
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100 |
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101 | // Gestion des tags
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102 | bool GotoPositionTag(int_8 pos);
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103 | bool GotoNameTag(string const& name);
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104 | bool GotoNameTagNum(int itag); // 0..NbTags-1
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105 |
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106 | // Saut jusqu'au prochain objet
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107 | bool SkipToNextObject();
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108 | // Saut d'un item de base (tag+donnees correspondantes), le suivant ds le flot
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109 | bool SkipNextItem();
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110 | // Lecture du tag de type next item + infos correspondantes
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111 | // Le stream est re-positionne avant le tag
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112 | char NextItemTag(short & datasz, size_t & sz);
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113 |
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114 | // Lecture donnees de base et tableaux de donnees de base
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115 | // Basic data type (and corresponding arrays) reading
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116 | void GetByte (char& c);
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117 | void GetBytes(void* ptr, size_t bytes);
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118 | void GetR4 (r_4&);
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119 | void GetR4s (r_4*, size_t);
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120 | void GetR8 (r_8&);
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121 | void GetR8s (r_8*, size_t);
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122 | void GetI1 (int_1&);
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123 | void GetI1s (int_1*, size_t);
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124 | void GetU1 (uint_1&);
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125 | void GetU1s (uint_1*, size_t);
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126 | void GetI2 (int_2&);
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127 | void GetI2s (int_2*, size_t);
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128 | void GetU2 (uint_2&);
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129 | void GetU2s (uint_2*, size_t);
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130 | void GetI4 (int_4&);
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131 | void GetI4s (int_4*, size_t);
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132 | void GetU4 (uint_4&);
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133 | void GetU4s (uint_4*, size_t);
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134 | void GetI8 (int_8&);
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135 | void GetI8s (int_8*, size_t);
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136 | void GetU8 (uint_8&);
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137 | void GetU8s (uint_8*, size_t);
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138 | void GetLine (char* ptr, size_t len);
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139 | void GetStr (string&);
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140 | void GetZ4 (complex<r_4> &);
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141 | void GetZ4s (complex<r_4> *, size_t);
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142 | void GetZ8 (complex<r_8> &);
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143 | void GetZ8s (complex<r_8> *, size_t);
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144 |
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145 | inline void Get(char& c) {GetByte(c);}
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146 | inline void Get(r_4& x) {GetR4(x);}
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147 | inline void Get(r_8& x) {GetR8(x);}
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148 | inline void Get(uint_1& x) {GetU1(x);}
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149 | inline void Get(int_1& x) {GetI1(x);}
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150 | inline void Get(uint_2& x) {GetU2(x);}
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151 | inline void Get(int_2& x) {GetI2(x);}
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152 | inline void Get(uint_4& x) {GetU4(x);}
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153 | inline void Get(int_4& x) {GetI4(x);}
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154 | inline void Get(uint_8& x) {GetU8(x);}
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155 | inline void Get(int_8& x) {GetI8(x);}
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156 | inline void Get(complex<r_4> & x) {GetZ4(x);}
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157 | inline void Get(complex<r_8> & x) {GetZ8(x);}
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158 |
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159 | inline void Get(r_4* x, size_t n) {GetR4s(x,n);}
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160 | inline void Get(r_8* x, size_t n) {GetR8s(x,n);}
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161 | inline void Get(uint_1* x, size_t n) {GetU1s(x,n);}
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162 | inline void Get(int_1* x, size_t n) {GetI1s(x,n);}
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163 | inline void Get(uint_2* x, size_t n) {GetU2s(x,n);}
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164 | inline void Get(int_2* x, size_t n) {GetI2s(x,n);}
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165 | inline void Get(uint_4* x, size_t n) {GetU4s(x,n);}
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166 | inline void Get(int_4* x, size_t n) {GetI4s(x,n);}
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167 | inline void Get(uint_8* x, size_t n) {GetU8s(x,n);}
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168 | inline void Get(int_8* x, size_t n) {GetI8s(x,n);}
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169 | inline void Get(string& x) {GetStr(x);}
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170 | inline void Get(complex<r_4> * x, size_t n) { GetZ4s(x, n); }
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171 | inline void Get(complex<r_8> * x, size_t n) { GetZ8s(x, n); }
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172 |
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173 | // Reading a list (table) of position tags
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174 | void GetPosTagTable(int_8*, size_t);
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175 | void GetPosTagTable(vector<int_8>&);
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176 |
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177 | void AnalyseTags(int lev=0); // List (all or some) tags ...
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178 |
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179 | protected:
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180 | void Init(bool scan);
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181 | void ReadNameTagTableV2();
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182 | void ReadNameTagTable();
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183 |
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184 | void SkipItem(bool fgrdi=true, unsigned char itag=0);
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185 |
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186 | void CheckTag (short datasz, short datatype);
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187 | void CheckArrayTag(short datasz, size_t sz, short datatype);
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188 | void GetTypeTag (unsigned char& c);
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189 | void GetRawByte (char& c);
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190 | void GetRawUByte (unsigned char& c);
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191 | void GetRawBytes(void* ptr, size_t bytes);
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192 | void GetRawI2 (int_2&);
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193 | void GetRawI4 (int_4&);
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194 | void GetRawI8 (int_8&);
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195 | void GetRawU8 (uint_8&);
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196 |
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197 | RawInOutStream* s;
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198 | bool _ads; // delete/close the stream at the end
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199 |
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200 | bool bigEndian;
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201 | // Si on a fait une lecture non sequentielle -> seqread = false
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202 | bool seqread;
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203 | };
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204 |
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205 | //! Output stream for PPersit objects.
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206 | class PPFBinaryOutputStream : public PPFBinaryIOStream {
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207 | public:
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208 | PPFBinaryOutputStream(RawInOutStream* os, bool ad, int endianness = PPS_NATIVE);
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209 | PPFBinaryOutputStream(string const& flnm, int endianness = PPS_NATIVE);
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210 | virtual ~PPFBinaryOutputStream();
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211 |
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212 | inline string FileName() { return s->getFileName(); } // Retourne le nom de fichier
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213 |
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214 | // Ecriture de tags
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215 | int_8 WritePositionTag();
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216 | void WriteNameTag(string const& name);
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217 | inline void WriteTag(string const& name) { WriteNameTag(name); }
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218 |
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219 | void PutByte (char c);
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220 | void PutBytes(void const* ptr, size_t bytes);
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221 | void PutR4 (r_4);
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222 | void PutR4s (r_4 const*, size_t);
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223 | void PutR8 (r_8);
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224 | void PutR8s (r_8 const*, size_t);
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225 | void PutI1 (int_1);
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226 | void PutI1s (int_1 const*, size_t);
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227 | void PutU1 (uint_1);
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228 | void PutU1s (uint_1 const*, size_t);
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229 | void PutI2 (int_2);
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230 | void PutI2s (int_2 const*, size_t);
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231 | void PutU2 (uint_2);
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232 | void PutU2s (uint_2 const*, size_t);
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233 | void PutI4 (int_4);
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234 | void PutI4s (int_4 const*, size_t);
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235 | void PutU4 (uint_4);
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236 | void PutU4s (uint_4 const*, size_t);
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237 | void PutI8 (int_8);
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238 | void PutI8s (int_8 const*, size_t);
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239 | void PutU8 (uint_8);
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240 | void PutU8s (uint_8 const*, size_t);
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241 | void PutLine (char const* ptr, size_t len=0); // deprecated ?
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242 | void PutStr (string const&);
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243 | void PutZ4 (complex<r_4>);
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244 | void PutZ4s (complex<r_4> const*, size_t);
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245 | void PutZ8 (complex<r_8>);
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246 | void PutZ8s (complex<r_8> const*, size_t);
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247 |
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248 |
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249 | void Put(char c) {PutByte(c);}
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250 | void Put(r_4 x) {PutR4(x);}
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251 | void Put(r_8 x) {PutR8(x);}
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252 | void Put(complex<r_4> x) {PutZ4(x);}
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253 | void Put(complex<r_8> x) {PutZ8(x);}
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254 | void Put(uint_1 x) {PutU1(x);}
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255 | void Put(int_1 x) {PutI1(x);}
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256 | void Put(uint_2 x) {PutU2(x);}
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257 | void Put(int_2 x) {PutI2(x);}
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258 | void Put(uint_4 x) {PutU4(x);}
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259 | void Put(int_4 x) {PutI4(x);}
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260 | void Put(uint_8 x) {PutU8(x);}
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261 | void Put(int_8 x) {PutI8(x);}
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262 | void Put(r_4 const* x, size_t n) {PutR4s(x,n);}
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263 | void Put(r_8 const* x, size_t n) {PutR8s(x,n);}
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264 | void Put(complex<r_4> const* x, size_t n) {PutZ4s(x,n);}
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265 | void Put(complex<r_8> const* x, size_t n) {PutZ8s(x,n);}
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266 | void Put(uint_1 const* x, size_t n) {PutU1s(x,n);}
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267 | void Put(int_1 const* x, size_t n) {PutI1s(x,n);}
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268 | void Put(uint_2 const* x, size_t n) {PutU2s(x,n);}
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269 | void Put(int_2 const* x, size_t n) {PutI2s(x,n);}
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270 | void Put(uint_4 const* x, size_t n) {PutU4s(x,n);}
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271 | void Put(int_4 const* x, size_t n) {PutI4s(x,n);}
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272 | void Put(uint_8 const* x, size_t n) {PutU8s(x,n);}
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273 | void Put(int_8 const* x, size_t n) {PutI8s(x,n);}
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274 | void Put(string const& s) {PutStr(s);}
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275 |
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276 | // Writing a list of position tag table
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277 | void PutPosTagTable(int_8 const *, size_t);
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278 | void PutPosTagTable(vector<int_8> const&);
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279 |
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280 |
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281 | protected:
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282 | void Init(int endianness);
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283 | void WriteNameTagTable();
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284 | void WriteNameTagTableV2();
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285 |
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286 | void PutArrayTag(short datasz, size_t sz, short datatype);
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287 | void PutRawByte (char);
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288 | void PutRawUByte (unsigned char);
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289 | void PutRawI2 (int_2);
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290 | void PutRawI4 (int_4);
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291 | void PutRawI8 (int_8);
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292 | void PutRawU8 (uint_8);
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293 | void PutRawBytes(void const* ptr, size_t bytes);
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294 |
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295 | // Attributs, variables
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296 | RawInOutStream* s;
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297 | bool _ads; // delete/close the stream at the end
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298 |
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299 | bool bigEndian;
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300 | };
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301 |
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302 |
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303 |
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304 | } // namespace
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305 |
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306 | #endif
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