lemon/error.h
author alpar
Wed, 20 Jul 2005 08:01:16 +0000
changeset 1570 da93692e6537
parent 1435 8e85e6bbefdf
child 1746 874e4bc21435
permissions -rw-r--r--
docfix
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/* -*- C++ -*-
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 * lemon/error.h - Part of LEMON, a generic C++ optimization library
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 *
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 * Copyright (C) 2005 Egervary Jeno Kombinatorikus Optimalizalasi
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 * Kutatocsoport (Egervary Research Group on Combinatorial Optimization,
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 * EGRES).
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 *
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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#ifndef LEMON_ERROR_H
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#define LEMON_ERROR_H
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//! \ingroup exceptions
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//! \file
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//! \brief Basic exception classes and error handling.
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#include <exception>
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#include <string>
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#include <sstream>
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#include <iostream>
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#include <cstdlib>
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#include <memory>
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namespace lemon {
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  /// \addtogroup exceptions
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  /// @{
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  /// \brief Exception safe wrapper class.
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  ///
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  /// Exception safe wrapper class to implement the members of exceptions.
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  template <typename _Type>
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  class ExceptionMember {
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  public:
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    typedef _Type Type;
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    ExceptionMember() throw () {
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      try {
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	ptr.reset(new Type());
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      } catch (...) {}
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    }
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    ExceptionMember(const Type& type) throw () {
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      try {
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	ptr.reset(new Type());
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	if (ptr.get() == 0) return;
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	*ptr = type;
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      } catch (...) {}
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    }
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    ExceptionMember(const ExceptionMember& copy) throw() {
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      try {
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	if (!copy.valid()) return;
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	ptr.reset(new Type());
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	if (ptr.get() == 0) return;
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	*ptr = copy.get();
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      } catch (...) {}
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    }
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    ExceptionMember& operator=(const ExceptionMember& copy) {
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      if (ptr.get() == 0) return;
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      try {
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	if (!copy.valid()) return;
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 	*ptr = copy.get();
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      } catch (...) {}
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    }
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    void set(const Type& type) {
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      if (ptr.get() == 0) return;
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      try {
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	*ptr = type;
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      } catch (...) {}
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    }
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    const Type& get() const {
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      return *ptr;
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    }
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    bool valid() const {
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      return ptr.get() != 0;
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    }
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  private:
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    std::auto_ptr<_Type> ptr;
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  };
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  /// Exception-safe convenient "error message" class.
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  /// Helper class which provides a convenient ostream-like (operator <<
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  /// based) interface to create a string message. Mostly useful in
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  /// exception classes (therefore the name).
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  class ErrorMessage {
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  protected:
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    ///\e 
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    ///\todo The good solution is boost::shared_ptr...
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    ///
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    mutable
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    std::auto_ptr<std::ostringstream> buf;
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    ///\e 
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    bool init() throw() {
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      try {
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	buf.reset(new std::ostringstream);
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      }
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      catch(...) {
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	buf.reset();
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      }
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      return buf.get();
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    }
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  public:
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    ///\e 
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    ErrorMessage() throw() { init(); }
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    ErrorMessage(const ErrorMessage& em) throw() : buf(em.buf) { }
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    ///\e 
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    ErrorMessage(const char *message) throw() {
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      init();
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      *this << message;
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    }
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    ///\e 
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    ErrorMessage(const std::string &message) throw() {
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      init();
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      *this << message;
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    }
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    ///\e 
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    template <typename T>
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    ErrorMessage& operator<<(const T &t) throw() {
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      if( ! buf.get() ) return *this;
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      try {
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	*buf << t;
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      }
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      catch(...) {
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	buf.reset();
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      }
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      return *this;
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    }
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    ///\e 
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    const char* message() throw() {
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      if( ! buf.get() ) return 0;
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      const char* mes = 0;
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      try {
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	mes = buf->str().c_str();
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      }
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      catch(...) {}
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      return mes;
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    }
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  };
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  /**
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   * \brief Generic exception class.
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   *
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   * Base class for exceptions used in LEMON.
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   */
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  class Exception : public std::exception {
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  public:
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    ///\e 
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    Exception() {}
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    ///\e 
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    virtual ~Exception() throw() {}
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    ///\e
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    virtual const char* exceptionName() const {
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      return "lemon::Exception";
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    }
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    ///\e 
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    virtual const char* what() const throw() {
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      return exceptionName();
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    }
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  };
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  /**
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   * \brief One of the two main subclasses of \ref Exception.
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   *
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   * Logic errors represent problems in the internal logic of a program;
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   * in theory, these are preventable, and even detectable before the
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   * program runs (e.g., violations of class invariants).
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   *
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   * A typical example for this is \ref UninitializedParameter.
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   */
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  class LogicError : public Exception {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::LogicError";
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    }
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  };
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  /**
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   * \brief \ref Exception for uninitialized parameters.
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   *
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   * This error represents problems in the initialization
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   * of the parameters of the algorithms.
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   */
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  class UninitializedParameter : public LogicError {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::UninitializedParameter";
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    }
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  };
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  /**
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   * \brief One of the two main subclasses of \ref Exception.
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   *
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   * Runtime errors represent problems outside the scope of a program;
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   * they cannot be easily predicted and can generally only be caught as
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   * the program executes.
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   */
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  class RuntimeError : public Exception {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::RuntimeError";
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    }
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  };
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  ///\e
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  class RangeError : public RuntimeError {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::RangeError";
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    }
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  };
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  ///\e 
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  class IOError : public RuntimeError {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::IOError";
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    }
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  };
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  ///\e 
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  class DataFormatError : public IOError {
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  protected:
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    ExceptionMember<std::string> _message;
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    ExceptionMember<std::string> _file;
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    int _line;
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    mutable ExceptionMember<std::string> _message_holder;
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  public:
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    DataFormatError(const DataFormatError &dfe) : 
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      IOError(dfe), _message(dfe._message), _file(dfe._file),
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      _line(dfe._line) {}
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    ///\e 
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    explicit DataFormatError(const char *the_message)
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      : _message(the_message), _line(0) {}
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    ///\e 
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    DataFormatError(const std::string &file_name, int line_num,
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		    const char *the_message)
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      : _message(the_message), _line(line_num) { file(file_name); }
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    ///\e 
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    void line(int line) { _line = line; }
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    ///\e 
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    void message(const std::string& message) { _message.set(message); }
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    ///\e 
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    void file(const std::string &file) { _file.set(file); }
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    ///\e
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    int line() const { return _line; }
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    ///\e
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    const char* message() const { 
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      if (_message.valid() && !_message.get().empty()) {
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	return _message.get().c_str();
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      } else {
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	return 0;
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      }
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    }
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    /// \brief Returns the filename.
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    ///
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    /// Returns \e null if the filename was not specified.
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    const char* file() const {
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      if (_file.valid() && !_file.get().empty()) {
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	return _file.get().c_str();
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      } else {
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	return 0;
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      }
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    }
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    ///\e 
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    virtual const char* what() const throw() {
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      try {
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	std::ostringstream ostr;
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	ostr << exceptionName() << ": ";
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	if (message()) ostr << message();
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	if( file() || line() != 0 ) {
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	  ostr << " (";
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	  if( file() ) ostr << "in file '" << file() << "'";
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	  if( file() && line() != 0 ) ostr << " ";
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	  if( line() != 0 ) ostr << "at line " << line();
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	  ostr << ")";
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	}
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	_message_holder.set(ostr.str());
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      }
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      catch (...) {}
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      if( _message_holder.valid()) return _message_holder.get().c_str();
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      return exceptionName();
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    }
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    virtual const char* exceptionName() const {
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      return "lemon::DataFormatError";
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    }
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    virtual ~DataFormatError() throw() {}
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  };
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  class IOParameterError : public LogicError {
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  protected:
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    ExceptionMember<std::string> _message;
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    ExceptionMember<std::string> _file;
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    mutable ExceptionMember<std::string> _message_holder;
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  public:
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    IOParameterError(const IOParameterError &ile) : 
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      LogicError(ile), _message(ile._message), _file(ile._file) {}
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    ///\e 
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    explicit IOParameterError(const char *the_message)
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      : _message(the_message) {}
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    ///\e 
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    IOParameterError(const char *file_name, const char *the_message)
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      : _message(the_message), _file(file_name) {}
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     ///\e 
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    void message(const std::string& message) { _message.set(message); }
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    ///\e 
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    void file(const std::string &file) { _file.set(file); }
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     ///\e
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    const char* message() const { 
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      if (_message.valid()) {
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	return _message.get().c_str();
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      } else {
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	return 0;
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      }
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    }
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    /// \brief Returns the filename.
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    ///
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    /// Returns \e null if the filename was not specified.
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    const char* file() const {
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      if (_file.valid()) {
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	return _file.get().c_str();
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      } else {
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	return 0;
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      }
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    }
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    ///\e 
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    virtual const char* what() const throw() {
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      try {
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	std::ostringstream ostr;
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	if (message()) ostr << message();
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	if (file()) ostr << "(when reading file '" << file() << "')";
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	_message_holder.set(ostr.str());
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      }
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      catch (...) {}
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      if( _message_holder.valid() ) return _message_holder.get().c_str();
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      return exceptionName();
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    }
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    virtual const char* exceptionName() const {
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      return "lemon::IOParameterError";
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    }
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    virtual ~IOParameterError() throw() {}
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  };
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  ///\e
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  class AssertionFailedError : public LogicError {
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  protected:
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    const char *assertion;
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    const char *file;
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    int line;
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    const char *function;
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    const char *message;
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    mutable ExceptionMember<std::string> _message_holder;
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  public:
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    ///\e
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    AssertionFailedError(const char *_file, int _line, const char *func,
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			 const char *msg, const char *_assertion = 0) :
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      assertion(_assertion), file(_file), line(_line), function(func),
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      message(msg) {}
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   411
    ///\e
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    const char* get_assertion() const { return assertion; }
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    ///\e
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    const char* get_message() const { return message; }
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    ///\e
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   416
    const char* get_file() const { return file; }
klao@1067
   417
    ///\e
klao@1067
   418
    const char* get_function() const { return function; }
klao@1067
   419
    ///\e
klao@1067
   420
    int get_line() const { return line; }
klao@1067
   421
klao@1067
   422
klao@1067
   423
    virtual const char* what() const throw() {
klao@1067
   424
      try {
klao@1067
   425
	std::ostringstream ostr;
klao@1067
   426
	ostr << file << ":" << line << ": ";
klao@1067
   427
	if( function )
klao@1067
   428
	  ostr << function << ": ";
klao@1067
   429
	ostr << message;
klao@1067
   430
	if( assertion )
deba@1213
   431
	   ostr << " (assertion '" << assertion << "' failed)";
deba@1213
   432
	_message_holder.set(ostr.str());
klao@1209
   433
	return ostr.str().c_str();
klao@1067
   434
      }
klao@1067
   435
      catch(...) {}
deba@1213
   436
      if( _message_holder.valid() ) return _message_holder.get().c_str();
klao@1120
   437
      return exceptionName();
klao@1120
   438
    }
klao@1120
   439
klao@1120
   440
    virtual const char* exceptionName() const {
klao@1067
   441
      return "lemon::AssertionFailedError";
klao@1067
   442
    }
klao@1067
   443
klao@1067
   444
    virtual ~AssertionFailedError() throw() {}
klao@1067
   445
  };
klao@1067
   446
klao@1056
   447
klao@1056
   448
  /****************  Macros  ****************/
klao@1056
   449
klao@1056
   450
klao@1067
   451
  inline
klao@1067
   452
  void assert_fail(const char *file, int line, const char *func,
klao@1067
   453
		   const char *message, const char *assertion = 0,
klao@1067
   454
		   bool do_abort=true)
klao@1067
   455
  {
klao@1067
   456
    using namespace std;
klao@1067
   457
    cerr << file << ":" << line << ": ";
klao@1067
   458
    if( func )
klao@1067
   459
      cerr << func << ": ";
klao@1067
   460
    cerr << message;
klao@1067
   461
    if( assertion )
klao@1067
   462
      cerr << " (assertion '" << assertion << "' failed)";
klao@1067
   463
    cerr << endl;
klao@1067
   464
    if(do_abort)
klao@1067
   465
      abort();
klao@1067
   466
  }
klao@1056
   467
klao@1067
   468
  inline
klao@1067
   469
  void assert_fail_throw(const char *file, int line, const char *func,
klao@1067
   470
		   const char *message, const char *assertion = 0,
klao@1067
   471
		   bool = true)
klao@1067
   472
  {
klao@1067
   473
    throw AssertionFailedError(file, line, func, message, assertion);
klao@1067
   474
  }
klao@1056
   475
alpar@1151
   476
/// @}
alpar@883
   477
alpar@883
   478
}
alpar@921
   479
#endif // LEMON_ERROR_H
klao@1067
   480
klao@1067
   481
#undef LEMON_ASSERT
klao@1067
   482
#undef LEMON_FIXME
klao@1067
   483
klao@1067
   484
#ifndef LEMON_ASSERT_ABORT
klao@1067
   485
#  define LEMON_ASSERT_ABORT 1
klao@1067
   486
#endif
klao@1067
   487
klao@1067
   488
#ifndef LEMON_ASSERT_HANDLER
klao@1120
   489
#  ifdef LEMON_ASSERT_EXCEPTION
klao@1120
   490
#    define LEMON_ASSERT_HANDLER ::lemon::assert_fail_throw
klao@1120
   491
#  else
klao@1120
   492
#    define LEMON_ASSERT_HANDLER ::lemon::assert_fail
klao@1120
   493
#  endif
klao@1067
   494
#endif
klao@1067
   495
klao@1067
   496
#if defined(NDEBUG) || defined(LEMON_DISABLE_ASSERTS)
klao@1067
   497
klao@1067
   498
#  define LEMON_ASSERT(exp, msg)  (static_cast<void> (0))
klao@1067
   499
klao@1067
   500
#else
klao@1067
   501
klao@1067
   502
/**
klao@1067
   503
 * \brief Macro for assertions with customizable message
klao@1067
   504
 *
klao@1120
   505
 * Macro for assertions with customizable message.
klao@1120
   506
 *
klao@1120
   507
 * The behaviour can be customized with LEMON_ASSERT_HANDLER,
klao@1120
   508
 * LEMON_ASSERT_EXCEPTION and LEMON_ASSERT_ABORT defines. Asserts can be
klao@1120
   509
 * disabled by defining either NDEBUG or LEMON_DISABLE_ASSERTS macros.
klao@1120
   510
 *
klao@1120
   511
 * \todo We should provide some way to reset to the default behaviour,
klao@1120
   512
 * shouldn't we?
klao@1120
   513
 *
klao@1120
   514
 * \todo This whole 'assert' business should be placed in a separate
klao@1120
   515
 * include file.
klao@1120
   516
 *
klao@1067
   517
 * \todo __PRETTY_FUNCTION__ should be replaced by something
zsuzska@1274
   518
 * compiler-independent, like BOOST_CURRENT_FUNCTION
klao@1067
   519
 */
klao@1067
   520
klao@1067
   521
#  define LEMON_ASSERT(exp, msg)                 \
klao@1067
   522
     (static_cast<void> (!!(exp) ? 0 : (         \
klao@1067
   523
       LEMON_ASSERT_HANDLER(__FILE__, __LINE__,  \
klao@1067
   524
                            __PRETTY_FUNCTION__, \
klao@1067
   525
			    (msg), #exp, LEMON_ASSERT_ABORT), 0)))
klao@1067
   526
klao@1120
   527
#endif // NDEBUG || LEMON_DISABLE_ASSERTS
klao@1067
   528
klao@1067
   529
/**
klao@1067
   530
 * \brief Macro for mark not yet implemented features.
klao@1067
   531
 *
klao@1067
   532
 * \todo Is this the right place for this? It should be used only in
klao@1067
   533
 * modules under development.
klao@1067
   534
 *
klao@1067
   535
 * \todo __PRETTY_FUNCTION__ should be replaced by something
zsuzska@1274
   536
 * compiler-independent, like BOOST_CURRENT_FUNCTION
klao@1067
   537
 */
klao@1067
   538
klao@1067
   539
# define LEMON_FIXME(msg) \
klao@1067
   540
    (LEMON_ASSERT_HANDLER(__FILE__, __LINE__, __PRETTY_FUNCTION__, \
klao@1067
   541
			  "FIXME: " msg))