libstdc++
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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