libstdc++
formatter.h
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00001 // Debug-mode error formatting implementation -*- C++ -*-
00002 
00003 // Copyright (C) 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011
00004 // Free Software Foundation, Inc.
00005 //
00006 // This file is part of the GNU ISO C++ Library.  This library is free
00007 // software; you can redistribute it and/or modify it under the
00008 // terms of the GNU General Public License as published by the
00009 // Free Software Foundation; either version 3, or (at your option)
00010 // any later version.
00011 
00012 // This library is distributed in the hope that it will be useful,
00013 // but WITHOUT ANY WARRANTY; without even the implied warranty of
00014 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
00015 // GNU General Public License for more details.
00016 
00017 // Under Section 7 of GPL version 3, you are granted additional
00018 // permissions described in the GCC Runtime Library Exception, version
00019 // 3.1, as published by the Free Software Foundation.
00020 
00021 // You should have received a copy of the GNU General Public License and
00022 // a copy of the GCC Runtime Library Exception along with this program;
00023 // see the files COPYING3 and COPYING.RUNTIME respectively.  If not, see
00024 // <http://www.gnu.org/licenses/>.
00025 
00026 /** @file debug/formatter.h
00027  *  This file is a GNU debug extension to the Standard C++ Library.
00028  */
00029 
00030 #ifndef _GLIBCXX_DEBUG_FORMATTER_H
00031 #define _GLIBCXX_DEBUG_FORMATTER_H 1
00032 
00033 #include <bits/c++config.h>
00034 #include <bits/cpp_type_traits.h>
00035 #include <typeinfo>
00036 
00037 namespace __gnu_debug
00038 {
00039   using std::type_info;
00040 
00041   template<typename _Iterator>
00042     bool __check_singular(_Iterator&);
00043 
00044   class _Safe_sequence_base;
00045 
00046   template<typename _Iterator, typename _Sequence>
00047     class _Safe_iterator;
00048 
00049   template<typename _Iterator, typename _Sequence>
00050     class _Safe_local_iterator;
00051 
00052   template<typename _Sequence>
00053     class _Safe_sequence;
00054 
00055   enum _Debug_msg_id
00056   {
00057     // General checks
00058     __msg_valid_range,
00059     __msg_insert_singular,
00060     __msg_insert_different,
00061     __msg_erase_bad,
00062     __msg_erase_different,
00063     __msg_subscript_oob,
00064     __msg_empty,
00065     __msg_unpartitioned,
00066     __msg_unpartitioned_pred,
00067     __msg_unsorted,
00068     __msg_unsorted_pred,
00069     __msg_not_heap,
00070     __msg_not_heap_pred,
00071     // std::bitset checks
00072     __msg_bad_bitset_write,
00073     __msg_bad_bitset_read,
00074     __msg_bad_bitset_flip,
00075     // std::list checks
00076     __msg_self_splice,
00077     __msg_splice_alloc,
00078     __msg_splice_bad,
00079     __msg_splice_other,
00080     __msg_splice_overlap,
00081     // iterator checks
00082     __msg_init_singular,
00083     __msg_init_copy_singular,
00084     __msg_init_const_singular,
00085     __msg_copy_singular,
00086     __msg_bad_deref,
00087     __msg_bad_inc,
00088     __msg_bad_dec,
00089     __msg_iter_subscript_oob,
00090     __msg_advance_oob,
00091     __msg_retreat_oob,
00092     __msg_iter_compare_bad,
00093     __msg_compare_different,
00094     __msg_iter_order_bad,
00095     __msg_order_different,
00096     __msg_distance_bad,
00097     __msg_distance_different,
00098     // istream_iterator
00099     __msg_deref_istream,
00100     __msg_inc_istream,
00101     // ostream_iterator
00102     __msg_output_ostream,
00103     // istreambuf_iterator
00104     __msg_deref_istreambuf,
00105     __msg_inc_istreambuf,
00106     // forward_list
00107     __msg_insert_after_end,
00108     __msg_erase_after_bad,
00109     __msg_valid_range2,
00110     // unordered sequence local iterators
00111     __msg_local_iter_compare_bad,
00112     __msg_non_empty_range
00113   };
00114 
00115   class _Error_formatter
00116   {
00117     /// Whether an iterator is constant, mutable, or unknown
00118     enum _Constness
00119     {
00120       __unknown_constness,
00121       __const_iterator,
00122       __mutable_iterator,
00123       __last_constness
00124     };
00125 
00126     // The state of the iterator (fine-grained), if we know it.
00127     enum _Iterator_state
00128     {
00129       __unknown_state,
00130       __singular,      // singular, may still be attached to a sequence
00131       __begin,         // dereferenceable, and at the beginning
00132       __middle,        // dereferenceable, not at the beginning
00133       __end,           // past-the-end, may be at beginning if sequence empty
00134       __before_begin,  // before begin
00135       __last_state
00136     };
00137 
00138     // Tags denoting the type of parameter for construction
00139     struct _Is_iterator { };
00140     struct _Is_sequence { };
00141 
00142     // A parameter that may be referenced by an error message
00143     struct _Parameter
00144     {
00145       enum
00146       {
00147     __unused_param,
00148     __iterator,
00149     __sequence,
00150     __integer,
00151     __string
00152       } _M_kind;
00153 
00154       union
00155       {
00156     // When _M_kind == __iterator
00157     struct
00158     {
00159       const char*      _M_name;
00160       const void*      _M_address;
00161       const type_info* _M_type;
00162       _Constness       _M_constness;
00163       _Iterator_state  _M_state;
00164       const void*      _M_sequence;
00165       const type_info* _M_seq_type;
00166     } _M_iterator;
00167 
00168     // When _M_kind == __sequence
00169     struct
00170     {
00171       const char*      _M_name;
00172       const void*      _M_address;
00173       const type_info* _M_type;
00174     } _M_sequence;
00175 
00176     // When _M_kind == __integer
00177     struct
00178     {
00179       const char* _M_name;
00180       long        _M_value;
00181     } _M_integer;
00182 
00183     // When _M_kind == __string
00184     struct
00185     {
00186       const char* _M_name;
00187       const char* _M_value;
00188     } _M_string;
00189       } _M_variant;
00190 
00191       _Parameter() : _M_kind(__unused_param), _M_variant() { }
00192 
00193       _Parameter(long __value, const char* __name) 
00194       : _M_kind(__integer), _M_variant()
00195       {
00196     _M_variant._M_integer._M_name = __name;
00197     _M_variant._M_integer._M_value = __value;
00198       }
00199 
00200       _Parameter(const char* __value, const char* __name) 
00201       : _M_kind(__string), _M_variant()
00202       {
00203     _M_variant._M_string._M_name = __name;
00204     _M_variant._M_string._M_value = __value;
00205       }
00206 
00207       template<typename _Iterator, typename _Sequence>
00208         _Parameter(const _Safe_iterator<_Iterator, _Sequence>& __it,
00209            const char* __name, _Is_iterator)
00210     : _M_kind(__iterator),  _M_variant()
00211         {
00212       _M_variant._M_iterator._M_name = __name;
00213       _M_variant._M_iterator._M_address = &__it;
00214 #ifdef __GXX_RTTI
00215       _M_variant._M_iterator._M_type = &typeid(__it);
00216 #else
00217       _M_variant._M_iterator._M_type = 0;
00218 #endif
00219       _M_variant._M_iterator._M_constness =
00220         std::__are_same<_Safe_iterator<_Iterator, _Sequence>,
00221                         typename _Sequence::iterator>::
00222           __value ? __mutable_iterator : __const_iterator;
00223       _M_variant._M_iterator._M_sequence = __it._M_get_sequence();
00224 #ifdef __GXX_RTTI
00225       _M_variant._M_iterator._M_seq_type = &typeid(_Sequence);
00226 #else
00227       _M_variant._M_iterator._M_seq_type = 0;
00228 #endif
00229 
00230       if (__it._M_singular())
00231         _M_variant._M_iterator._M_state = __singular;
00232       else
00233         {
00234           if (__it._M_is_before_begin())
00235         _M_variant._M_iterator._M_state = __before_begin;
00236           else if (__it._M_is_end())
00237         _M_variant._M_iterator._M_state = __end;
00238           else if (__it._M_is_begin())
00239         _M_variant._M_iterator._M_state = __begin;
00240           else
00241         _M_variant._M_iterator._M_state = __middle;
00242         }
00243     }
00244 
00245       template<typename _Iterator, typename _Sequence>
00246     _Parameter(const _Safe_local_iterator<_Iterator, _Sequence>& __it,
00247            const char* __name, _Is_iterator)
00248     : _M_kind(__iterator),  _M_variant()
00249     {
00250       _M_variant._M_iterator._M_name = __name;
00251       _M_variant._M_iterator._M_address = &__it;
00252 #ifdef __GXX_RTTI
00253       _M_variant._M_iterator._M_type = &typeid(__it);
00254 #else
00255       _M_variant._M_iterator._M_type = 0;
00256 #endif
00257       _M_variant._M_iterator._M_constness =
00258         std::__are_same<_Safe_local_iterator<_Iterator, _Sequence>,
00259                         typename _Sequence::local_iterator>::
00260           __value ? __mutable_iterator : __const_iterator;
00261       _M_variant._M_iterator._M_sequence = __it._M_get_sequence();
00262 #ifdef __GXX_RTTI
00263       _M_variant._M_iterator._M_seq_type = &typeid(_Sequence);
00264 #else
00265       _M_variant._M_iterator._M_seq_type = 0;
00266 #endif
00267 
00268       if (__it._M_singular())
00269         _M_variant._M_iterator._M_state = __singular;
00270       else
00271         {
00272           if (__it._M_is_end())
00273         _M_variant._M_iterator._M_state = __end;
00274           else if (__it._M_is_begin())
00275         _M_variant._M_iterator._M_state = __begin;
00276           else
00277         _M_variant._M_iterator._M_state = __middle;
00278         }
00279     }
00280 
00281       template<typename _Type>
00282         _Parameter(const _Type*& __it, const char* __name, _Is_iterator)
00283         : _M_kind(__iterator), _M_variant()
00284         {
00285       _M_variant._M_iterator._M_name = __name;
00286       _M_variant._M_iterator._M_address = &__it;
00287 #ifdef __GXX_RTTI
00288       _M_variant._M_iterator._M_type = &typeid(__it);
00289 #else
00290       _M_variant._M_iterator._M_type = 0;
00291 #endif
00292       _M_variant._M_iterator._M_constness = __mutable_iterator;
00293       _M_variant._M_iterator._M_state = __it? __unknown_state : __singular;
00294       _M_variant._M_iterator._M_sequence = 0;
00295       _M_variant._M_iterator._M_seq_type = 0;
00296     }
00297 
00298       template<typename _Type>
00299         _Parameter(_Type*& __it, const char* __name, _Is_iterator)
00300         : _M_kind(__iterator), _M_variant()
00301         {
00302       _M_variant._M_iterator._M_name = __name;
00303       _M_variant._M_iterator._M_address = &__it;
00304 #ifdef __GXX_RTTI
00305       _M_variant._M_iterator._M_type = &typeid(__it);
00306 #else
00307       _M_variant._M_iterator._M_type = 0;
00308 #endif
00309       _M_variant._M_iterator._M_constness = __const_iterator;
00310       _M_variant._M_iterator._M_state = __it? __unknown_state : __singular;
00311       _M_variant._M_iterator._M_sequence = 0;
00312       _M_variant._M_iterator._M_seq_type = 0;
00313     }
00314 
00315       template<typename _Iterator>
00316         _Parameter(const _Iterator& __it, const char* __name, _Is_iterator)
00317         : _M_kind(__iterator), _M_variant()
00318         {
00319       _M_variant._M_iterator._M_name = __name;
00320       _M_variant._M_iterator._M_address = &__it;
00321 #ifdef __GXX_RTTI
00322       _M_variant._M_iterator._M_type = &typeid(__it);
00323 #else
00324       _M_variant._M_iterator._M_type = 0;
00325 #endif
00326       _M_variant._M_iterator._M_constness = __unknown_constness;
00327       _M_variant._M_iterator._M_state =
00328         __gnu_debug::__check_singular(__it)? __singular : __unknown_state;
00329       _M_variant._M_iterator._M_sequence = 0;
00330       _M_variant._M_iterator._M_seq_type = 0;
00331     }
00332 
00333       template<typename _Sequence>
00334         _Parameter(const _Safe_sequence<_Sequence>& __seq,
00335            const char* __name, _Is_sequence)
00336         : _M_kind(__sequence), _M_variant()
00337         {
00338       _M_variant._M_sequence._M_name = __name;
00339       _M_variant._M_sequence._M_address =
00340         static_cast<const _Sequence*>(&__seq);
00341 #ifdef __GXX_RTTI
00342       _M_variant._M_sequence._M_type = &typeid(_Sequence);
00343 #else
00344       _M_variant._M_sequence._M_type = 0;
00345 #endif
00346     }
00347 
00348       template<typename _Sequence>
00349         _Parameter(const _Sequence& __seq, const char* __name, _Is_sequence)
00350         : _M_kind(__sequence), _M_variant()
00351         {
00352       _M_variant._M_sequence._M_name = __name;
00353       _M_variant._M_sequence._M_address = &__seq;
00354 #ifdef __GXX_RTTI
00355       _M_variant._M_sequence._M_type = &typeid(_Sequence);
00356 #else
00357       _M_variant._M_sequence._M_type = 0;
00358 #endif
00359     }
00360 
00361       void
00362       _M_print_field(const _Error_formatter* __formatter,
00363              const char* __name) const;
00364 
00365       void
00366       _M_print_description(const _Error_formatter* __formatter) const;
00367     };
00368 
00369     friend struct _Parameter;
00370 
00371   public:
00372     template<typename _Iterator>
00373       const _Error_formatter&
00374       _M_iterator(const _Iterator& __it, const char* __name = 0)  const
00375       {
00376     if (_M_num_parameters < std::size_t(__max_parameters))
00377       _M_parameters[_M_num_parameters++] = _Parameter(__it, __name,
00378                               _Is_iterator());
00379     return *this;
00380       }
00381 
00382     const _Error_formatter&
00383     _M_integer(long __value, const char* __name = 0) const
00384     {
00385       if (_M_num_parameters < std::size_t(__max_parameters))
00386     _M_parameters[_M_num_parameters++] = _Parameter(__value, __name);
00387       return *this;
00388     }
00389 
00390     const _Error_formatter&
00391     _M_string(const char* __value, const char* __name = 0) const
00392     {
00393       if (_M_num_parameters < std::size_t(__max_parameters))
00394     _M_parameters[_M_num_parameters++] = _Parameter(__value, __name);
00395       return *this;
00396     }
00397 
00398     template<typename _Sequence>
00399       const _Error_formatter&
00400       _M_sequence(const _Sequence& __seq, const char* __name = 0) const
00401       {
00402     if (_M_num_parameters < std::size_t(__max_parameters))
00403       _M_parameters[_M_num_parameters++] = _Parameter(__seq, __name,
00404                               _Is_sequence());
00405     return *this;
00406       }
00407 
00408     const _Error_formatter&
00409     _M_message(const char* __text) const
00410     { _M_text = __text; return *this; }
00411 
00412     const _Error_formatter&
00413     _M_message(_Debug_msg_id __id) const throw ();
00414 
00415     _GLIBCXX_NORETURN void
00416     _M_error() const;
00417 
00418   private:
00419     _Error_formatter(const char* __file, std::size_t __line)
00420     : _M_file(__file), _M_line(__line), _M_num_parameters(0), _M_text(0),
00421       _M_max_length(78), _M_column(1), _M_first_line(true), _M_wordwrap(false)
00422     { _M_get_max_length(); }
00423 
00424     template<typename _Tp>
00425       void
00426       _M_format_word(char*, int, const char*, _Tp) const throw ();
00427 
00428     void
00429     _M_print_word(const char* __word) const;
00430 
00431     void
00432     _M_print_string(const char* __string) const;
00433 
00434     void
00435     _M_get_max_length() const throw ();
00436 
00437     enum { __max_parameters = 9 };
00438 
00439     const char*         _M_file;
00440     std::size_t         _M_line;
00441     mutable _Parameter  _M_parameters[__max_parameters];
00442     mutable std::size_t _M_num_parameters;
00443     mutable const char* _M_text;
00444     mutable std::size_t _M_max_length;
00445     enum { _M_indent = 4 } ;
00446     mutable std::size_t _M_column;
00447     mutable bool        _M_first_line;
00448     mutable bool        _M_wordwrap;
00449 
00450   public:
00451     static _Error_formatter
00452     _M_at(const char* __file, std::size_t __line)
00453     { return _Error_formatter(__file, __line); }
00454   };
00455 } // namespace __gnu_debug
00456 
00457 #endif