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source: svn/trunk/Utilities/HepMC/interface/IO_BaseClass.h@ 591

Last change on this file since 591 was 572, checked in by cp3-support, 13 years ago

upgrade HepMC to version 2.06.05

File size: 3.7 KB
Line 
1//--------------------------------------------------------------------------
2#ifndef HEPMC_IO_BASECLASS_H
3#define HEPMC_IO_BASECLASS_H
4
5//////////////////////////////////////////////////////////////////////////
6// Matt.Dobbs@Cern.CH, November 1999, refer to:
7// M. Dobbs and J.B. Hansen, "The HepMC C++ Monte Carlo Event Record for
8// High Energy Physics", Computer Physics Communications (to be published).
9//
10// event input/output base class
11//////////////////////////////////////////////////////////////////////////
12//
13// class from which all input/output classes shall inherit from.
14// i.e.: if you want to write events to hbook ntuples,
15// then inherit from this class and re-define read_event()
16// and write_event()
17//
18// (Possible extension: Could make this an input iterator)
19//
20
21#include <iostream>
22#include "GenEvent.h"
23
24namespace HepMC {
25
26 //! all input/output classes inherit from IO_BaseClass
27
28 ///
29 /// \class IO_BaseClass
30 /// If you want to write a new IO class,
31 /// then inherit from this class and re-define read_event()
32 /// and write_event()
33 ///
34 class IO_BaseClass {
35 public:
36 virtual ~IO_BaseClass() {}
37
38 /// write this GenEvent
39 virtual void write_event( const GenEvent* ) =0;
40 /// fill this GenEvent
41 virtual bool fill_next_event( GenEvent* ) =0;
42 /// write output to ostr
43 virtual void print( std::ostream& ostr = std::cout ) const;
44 //
45 // the read_next_event() differs from
46 // the fill_***() methods in that it creates a new event
47 // before calling the corresponding fill_*** method
48 // (they are not intended to be over-ridden)
49 GenEvent* read_next_event(); //!< do not over-ride
50 //
51 // The overloaded stream operators >>,<< are identical to
52 // read_next_event and write_event methods respectively.
53 // (or read_particle_data_table and write_particle_data_table)
54 // the event argument for the overloaded stream operators is a pointer,
55 // which is passed by reference.
56 // i.e. GenEvent* evt;
57 // io >> evt;
58 // will give the expected result.
59 // (note: I don't see any reason to have separate const and non-const
60 // versions of operator<<, but the pedantic ansi standard insists
61 // on it)
62 /// the same as read_next_event
63 virtual GenEvent*& operator>>( GenEvent*& );
64 /// the same as write_event
65 virtual const GenEvent*& operator<<( const GenEvent*& );
66 /// the same as write_event
67 virtual GenEvent*& operator<<( GenEvent*& );
68 };
69
70 //////////////
71 // Inlines //
72 //////////////
73
74 inline GenEvent* IO_BaseClass::read_next_event() {
75 /// creates a new event and fills it by calling
76 /// the sister method read_next_event( GenEvent* )
77 //
78 // 1. create an empty event container
79 GenEvent* evt = new GenEvent();
80 // 2. fill the evt container - if the read is successful, return the
81 // pointer, otherwise return null and delete the evt
82 if ( fill_next_event( evt ) ) return evt;
83 // note: the below delete is only reached if read fails
84 // ... thus there is not much overhead in new then delete
85 // since this statement is rarely reached
86 delete evt;
87 return 0;
88 }
89
90 inline void IO_BaseClass::print( std::ostream& ostr ) const {
91 ostr << "IO_BaseClass: abstract parent I/O class. " << std::endl;
92 }
93
94 inline GenEvent*& IO_BaseClass::operator>>( GenEvent*& evt ){
95 evt = read_next_event();
96 return evt;
97 }
98
99 inline const GenEvent*& IO_BaseClass::operator<<(
100 const GenEvent*& evt ) {
101 write_event( evt );
102 return evt;
103 }
104
105 inline GenEvent*& IO_BaseClass::operator<<( GenEvent*& evt ) {
106 write_event( evt );
107 return evt;
108 }
109
110} // HepMC
111
112#endif // HEPMC_IO_BASECLASS_H
113//--------------------------------------------------------------------------
114
115
116
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