461 lines
17 KiB
C++
461 lines
17 KiB
C++
///////////////////////////////////////////////////////////////////////////////
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// Name: wx/confbase.h
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// Purpose: declaration of the base class of all config implementations
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// (see also: fileconf.h and msw/regconf.h and iniconf.h)
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// Author: Karsten Ballueder & Vadim Zeitlin
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// Modified by:
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// Created: 07.04.98 (adapted from appconf.h)
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// Copyright: (c) 1997 Karsten Ballueder Ballueder@usa.net
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// Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr>
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// Licence: wxWindows licence
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///////////////////////////////////////////////////////////////////////////////
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#ifndef _WX_CONFBASE_H_
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#define _WX_CONFBASE_H_
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#include "wx/defs.h"
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#include "wx/string.h"
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#include "wx/object.h"
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#include "wx/base64.h"
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class WXDLLIMPEXP_FWD_BASE wxArrayString;
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// ----------------------------------------------------------------------------
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// constants
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// ----------------------------------------------------------------------------
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/// shall we be case sensitive in parsing variable names?
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#ifndef wxCONFIG_CASE_SENSITIVE
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#define wxCONFIG_CASE_SENSITIVE 0
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#endif
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/// separates group and entry names (probably shouldn't be changed)
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#ifndef wxCONFIG_PATH_SEPARATOR
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#define wxCONFIG_PATH_SEPARATOR wxT('/')
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#endif
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/// introduces immutable entries
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// (i.e. the ones which can't be changed from the local config file)
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#ifndef wxCONFIG_IMMUTABLE_PREFIX
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#define wxCONFIG_IMMUTABLE_PREFIX wxT('!')
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#endif
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#if wxUSE_CONFIG
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/// should we use registry instead of configuration files under Windows?
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// (i.e. whether wxConfigBase::Create() will create a wxFileConfig (if it's
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// false) or wxRegConfig (if it's true and we're under Win32))
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#ifndef wxUSE_CONFIG_NATIVE
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#define wxUSE_CONFIG_NATIVE 1
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#endif
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// not all compilers can deal with template Read/Write() methods, define this
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// symbol if the template functions are available
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#if !defined( __VMS ) && \
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!(defined(__HP_aCC) && defined(__hppa))
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#define wxHAS_CONFIG_TEMPLATE_RW
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#endif
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// Style flags for constructor style parameter
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enum
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{
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wxCONFIG_USE_LOCAL_FILE = 1,
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wxCONFIG_USE_GLOBAL_FILE = 2,
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wxCONFIG_USE_RELATIVE_PATH = 4,
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wxCONFIG_USE_NO_ESCAPE_CHARACTERS = 8,
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wxCONFIG_USE_SUBDIR = 16
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};
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// ----------------------------------------------------------------------------
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// abstract base class wxConfigBase which defines the interface for derived
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// classes
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//
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// wxConfig organizes the items in a tree-like structure (modelled after the
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// Unix/Dos filesystem). There are groups (directories) and keys (files).
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// There is always one current group given by the current path.
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//
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// Keys are pairs "key_name = value" where value may be of string or integer
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// (long) type (TODO doubles and other types such as wxDate coming soon).
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// ----------------------------------------------------------------------------
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class WXDLLIMPEXP_BASE wxConfigBase : public wxObject
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{
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public:
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// constants
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// the type of an entry
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enum EntryType
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{
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Type_Unknown,
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Type_String,
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Type_Boolean,
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Type_Integer, // use Read(long *)
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Type_Float // use Read(double *)
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};
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// static functions
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// sets the config object, returns the previous pointer
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static wxConfigBase *Set(wxConfigBase *pConfig);
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// get the config object, creates it on demand unless DontCreateOnDemand
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// was called
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static wxConfigBase *Get(bool createOnDemand = true)
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{ if ( createOnDemand && (!ms_pConfig) ) Create(); return ms_pConfig; }
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// create a new config object: this function will create the "best"
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// implementation of wxConfig available for the current platform, see
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// comments near definition wxUSE_CONFIG_NATIVE for details. It returns
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// the created object and also sets it as ms_pConfig.
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static wxConfigBase *Create();
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// should Get() try to create a new log object if the current one is NULL?
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static void DontCreateOnDemand() { ms_bAutoCreate = false; }
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// ctor & virtual dtor
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// ctor (can be used as default ctor too)
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//
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// Not all args will always be used by derived classes, but including
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// them all in each class ensures compatibility. If appName is empty,
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// uses wxApp name
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wxConfigBase(const wxString& appName = wxEmptyString,
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const wxString& vendorName = wxEmptyString,
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const wxString& localFilename = wxEmptyString,
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const wxString& globalFilename = wxEmptyString,
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long style = 0);
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// empty but ensures that dtor of all derived classes is virtual
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virtual ~wxConfigBase();
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// path management
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// set current path: if the first character is '/', it's the absolute path,
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// otherwise it's a relative path. '..' is supported. If the strPath
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// doesn't exist it is created.
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virtual void SetPath(const wxString& strPath) = 0;
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// retrieve the current path (always as absolute path)
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virtual const wxString& GetPath() const = 0;
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// enumeration: all functions here return false when there are no more items.
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// you must pass the same lIndex to GetNext and GetFirst (don't modify it)
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// enumerate subgroups
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virtual bool GetFirstGroup(wxString& str, long& lIndex) const = 0;
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virtual bool GetNextGroup (wxString& str, long& lIndex) const = 0;
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// enumerate entries
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virtual bool GetFirstEntry(wxString& str, long& lIndex) const = 0;
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virtual bool GetNextEntry (wxString& str, long& lIndex) const = 0;
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// get number of entries/subgroups in the current group, with or without
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// it's subgroups
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virtual size_t GetNumberOfEntries(bool bRecursive = false) const = 0;
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virtual size_t GetNumberOfGroups(bool bRecursive = false) const = 0;
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// tests of existence
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// returns true if the group by this name exists
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virtual bool HasGroup(const wxString& strName) const = 0;
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// same as above, but for an entry
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virtual bool HasEntry(const wxString& strName) const = 0;
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// returns true if either a group or an entry with a given name exist
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bool Exists(const wxString& strName) const
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{ return HasGroup(strName) || HasEntry(strName); }
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// get the entry type
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virtual EntryType GetEntryType(const wxString& name) const
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{
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// by default all entries are strings
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return HasEntry(name) ? Type_String : Type_Unknown;
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}
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// key access: returns true if value was really read, false if default used
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// (and if the key is not found the default value is returned.)
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// read a string from the key
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bool Read(const wxString& key, wxString *pStr) const;
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bool Read(const wxString& key, wxString *pStr, const wxString& defVal) const;
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// read a number (long)
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bool Read(const wxString& key, long *pl) const;
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bool Read(const wxString& key, long *pl, long defVal) const;
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// read an int (wrapper around `long' version)
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bool Read(const wxString& key, int *pi) const;
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bool Read(const wxString& key, int *pi, int defVal) const;
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// read a double
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bool Read(const wxString& key, double* val) const;
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bool Read(const wxString& key, double* val, double defVal) const;
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// read a float
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bool Read(const wxString& key, float* val) const;
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bool Read(const wxString& key, float* val, float defVal) const;
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// read a bool
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bool Read(const wxString& key, bool* val) const;
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bool Read(const wxString& key, bool* val, bool defVal) const;
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#if wxUSE_BASE64
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// read a binary data block
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bool Read(const wxString& key, wxMemoryBuffer* data) const
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{ return DoReadBinary(key, data); }
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// no default version since it does not make sense for binary data
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#endif // wxUSE_BASE64
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#ifdef wxHAS_CONFIG_TEMPLATE_RW
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// read other types, for which wxFromString is defined
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template <typename T>
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bool Read(const wxString& key, T* value) const
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{
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wxString s;
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if ( !Read(key, &s) )
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return false;
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return wxFromString(s, value);
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}
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template <typename T>
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bool Read(const wxString& key, T* value, const T& defVal) const
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{
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const bool found = Read(key, value);
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if ( !found )
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{
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if (IsRecordingDefaults())
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const_cast<wxConfigBase*>(this)->Write(key, defVal);
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*value = defVal;
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}
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return found;
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}
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#endif // wxHAS_CONFIG_TEMPLATE_RW
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// convenience functions returning directly the value
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wxString Read(const wxString& key,
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const wxString& defVal = wxEmptyString) const
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{ wxString s; (void)Read(key, &s, defVal); return s; }
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// we have to provide a separate version for C strings as otherwise the
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// template Read() would be used
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#ifndef wxNO_IMPLICIT_WXSTRING_ENCODING
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wxString Read(const wxString& key, const char* defVal) const
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{ return Read(key, wxString(defVal)); }
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#endif
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wxString Read(const wxString& key, const wchar_t* defVal) const
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{ return Read(key, wxString(defVal)); }
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long ReadLong(const wxString& key, long defVal) const
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{ long l; (void)Read(key, &l, defVal); return l; }
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double ReadDouble(const wxString& key, double defVal) const
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{ double d; (void)Read(key, &d, defVal); return d; }
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bool ReadBool(const wxString& key, bool defVal) const
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{ bool b; (void)Read(key, &b, defVal); return b; }
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template <typename T>
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T ReadObject(const wxString& key, T const& defVal) const
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{ T t; (void)Read(key, &t, defVal); return t; }
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// for compatibility with wx 2.8
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long Read(const wxString& key, long defVal) const
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{ return ReadLong(key, defVal); }
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// write the value (return true on success)
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bool Write(const wxString& key, const wxString& value)
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{ return DoWriteString(key, value); }
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bool Write(const wxString& key, long value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, double value)
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{ return DoWriteDouble(key, value); }
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bool Write(const wxString& key, bool value)
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{ return DoWriteBool(key, value); }
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#if wxUSE_BASE64
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bool Write(const wxString& key, const wxMemoryBuffer& buf)
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{ return DoWriteBinary(key, buf); }
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#endif // wxUSE_BASE64
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// we have to provide a separate version for C strings as otherwise they
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// would be converted to bool and not to wxString as expected!
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#ifndef wxNO_IMPLICIT_WXSTRING_ENCODING
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bool Write(const wxString& key, const char *value)
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{ return Write(key, wxString(value)); }
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bool Write(const wxString& key, const unsigned char *value)
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{ return Write(key, wxString(value)); }
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#endif
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bool Write(const wxString& key, const wchar_t *value)
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{ return Write(key, wxString(value)); }
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// we also have to provide specializations for other types which we want to
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// handle using the specialized DoWriteXXX() instead of the generic template
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// version below
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bool Write(const wxString& key, char value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, unsigned char value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, short value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, unsigned short value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, unsigned int value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, int value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, unsigned long value)
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{ return DoWriteLong(key, value); }
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bool Write(const wxString& key, float value)
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{ return DoWriteDouble(key, double(value)); }
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// Causes ambiguities in under OpenVMS
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#if !defined( __VMS )
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// for other types, use wxToString()
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template <typename T>
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bool Write(const wxString& key, T const& value)
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{ return Write(key, wxToString(value)); }
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#endif
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// permanently writes all changes
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virtual bool Flush(bool bCurrentOnly = false) = 0;
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// renaming, all functions return false on failure (probably because the new
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// name is already taken by an existing entry)
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// rename an entry
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virtual bool RenameEntry(const wxString& oldName,
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const wxString& newName) = 0;
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// rename a group
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virtual bool RenameGroup(const wxString& oldName,
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const wxString& newName) = 0;
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// delete entries/groups
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// deletes the specified entry and the group it belongs to if
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// it was the last key in it and the second parameter is true
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virtual bool DeleteEntry(const wxString& key,
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bool bDeleteGroupIfEmpty = true) = 0;
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// delete the group (with all subgroups)
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virtual bool DeleteGroup(const wxString& key) = 0;
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// delete the whole underlying object (disk file, registry key, ...)
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// primarily for use by uninstallation routine.
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virtual bool DeleteAll() = 0;
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// options
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// we can automatically expand environment variables in the config entries
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// (this option is on by default, you can turn it on/off at any time)
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bool IsExpandingEnvVars() const { return m_bExpandEnvVars; }
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void SetExpandEnvVars(bool bDoIt = true) { m_bExpandEnvVars = bDoIt; }
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// recording of default values
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void SetRecordDefaults(bool bDoIt = true) { m_bRecordDefaults = bDoIt; }
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bool IsRecordingDefaults() const { return m_bRecordDefaults; }
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// does expansion only if needed
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wxString ExpandEnvVars(const wxString& str) const;
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// misc accessors
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wxString GetAppName() const { return m_appName; }
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wxString GetVendorName() const { return m_vendorName; }
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// Used wxIniConfig to set members in constructor
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void SetAppName(const wxString& appName) { m_appName = appName; }
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void SetVendorName(const wxString& vendorName) { m_vendorName = vendorName; }
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void SetStyle(long style) { m_style = style; }
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long GetStyle() const { return m_style; }
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protected:
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static bool IsImmutable(const wxString& key)
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{ return !key.IsEmpty() && key[0] == wxCONFIG_IMMUTABLE_PREFIX; }
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// return the path without trailing separator, if any: this should be called
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// to sanitize paths referring to the group names before passing them to
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// wxConfigPathChanger as "/foo/bar/" should be the same as "/foo/bar" and it
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// isn't interpreted in the same way by it (and this can't be changed there
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// as it's not the same for the entries names)
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static wxString RemoveTrailingSeparator(const wxString& key);
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// do read/write the values of different types
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virtual bool DoReadString(const wxString& key, wxString *pStr) const = 0;
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virtual bool DoReadLong(const wxString& key, long *pl) const = 0;
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virtual bool DoReadDouble(const wxString& key, double* val) const;
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virtual bool DoReadBool(const wxString& key, bool* val) const;
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#if wxUSE_BASE64
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virtual bool DoReadBinary(const wxString& key, wxMemoryBuffer* buf) const = 0;
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#endif // wxUSE_BASE64
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virtual bool DoWriteString(const wxString& key, const wxString& value) = 0;
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virtual bool DoWriteLong(const wxString& key, long value) = 0;
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virtual bool DoWriteDouble(const wxString& key, double value);
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virtual bool DoWriteBool(const wxString& key, bool value);
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#if wxUSE_BASE64
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virtual bool DoWriteBinary(const wxString& key, const wxMemoryBuffer& buf) = 0;
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#endif // wxUSE_BASE64
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private:
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// are we doing automatic environment variable expansion?
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bool m_bExpandEnvVars;
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// do we record default values?
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bool m_bRecordDefaults;
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// static variables
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static wxConfigBase *ms_pConfig;
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static bool ms_bAutoCreate;
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// Application name and organisation name
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wxString m_appName;
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wxString m_vendorName;
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// Style flag
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long m_style;
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wxDECLARE_ABSTRACT_CLASS(wxConfigBase);
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};
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// a handy little class which changes current path to the path of given entry
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// and restores it in dtor: so if you declare a local variable of this type,
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// you work in the entry directory and the path is automatically restored
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// when the function returns
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// Taken out of wxConfig since not all compilers can cope with nested classes.
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class WXDLLIMPEXP_BASE wxConfigPathChanger
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{
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public:
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// ctor/dtor do path changing/restoring of the path
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wxConfigPathChanger(const wxConfigBase *pContainer, const wxString& strEntry);
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~wxConfigPathChanger();
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// get the key name
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const wxString& Name() const { return m_strName; }
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// this method must be called if the original path (i.e. the current path at
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// the moment of creation of this object) could have been deleted to prevent
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// us from restoring the not existing (any more) path
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//
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// if the original path doesn't exist any more, the path will be restored to
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// the deepest still existing component of the old path
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void UpdateIfDeleted();
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private:
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wxConfigBase *m_pContainer; // object we live in
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wxString m_strName, // name of entry (i.e. name only)
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m_strOldPath; // saved path
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bool m_bChanged; // was the path changed?
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wxDECLARE_NO_COPY_CLASS(wxConfigPathChanger);
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};
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#endif // wxUSE_CONFIG
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/*
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Replace environment variables ($SOMETHING) with their values. The format is
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$VARNAME or ${VARNAME} where VARNAME contains alphanumeric characters and
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'_' only. '$' must be escaped ('\$') in order to be taken literally.
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*/
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WXDLLIMPEXP_BASE wxString wxExpandEnvVars(const wxString &sz);
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/*
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Split path into parts removing '..' in progress
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*/
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WXDLLIMPEXP_BASE void wxSplitPath(wxArrayString& aParts, const wxString& path);
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#endif // _WX_CONFBASE_H_
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