400 lines
10 KiB
C++
400 lines
10 KiB
C++
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// ZipRegistry.cpp
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#include "StdAfx.h"
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#include "../../../Common/IntToString.h"
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#include "../../../Windows/FileDir.h"
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#include "../../../Windows/Registry.h"
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#include "../../../Windows/Synchronization.h"
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#include "ZipRegistry.h"
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using namespace NWindows;
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using namespace NRegistry;
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static NSynchronization::CCriticalSection g_CS;
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#define CS_LOCK NSynchronization::CCriticalSectionLock lock(g_CS);
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static const TCHAR *kCuPrefix = TEXT("Software") TEXT(STRING_PATH_SEPARATOR) TEXT("7-Zip") TEXT(STRING_PATH_SEPARATOR);
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static CSysString GetKeyPath(const CSysString &path) { return kCuPrefix + path; }
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static LONG OpenMainKey(CKey &key, LPCTSTR keyName)
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{
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return key.Open(HKEY_CURRENT_USER, GetKeyPath(keyName), KEY_READ);
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}
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static LONG CreateMainKey(CKey &key, LPCTSTR keyName)
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{
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return key.Create(HKEY_CURRENT_USER, GetKeyPath(keyName));
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}
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static void Key_Set_BoolPair(CKey &key, LPCTSTR name, const CBoolPair &b)
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{
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if (b.Def)
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key.SetValue(name, b.Val);
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}
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static void Key_Get_BoolPair(CKey &key, LPCTSTR name, CBoolPair &b)
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{
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b.Val = false;
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b.Def = (key.GetValue_IfOk(name, b.Val) == ERROR_SUCCESS);
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}
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static void Key_Get_BoolPair_true(CKey &key, LPCTSTR name, CBoolPair &b)
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{
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b.Val = true;
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b.Def = (key.GetValue_IfOk(name, b.Val) == ERROR_SUCCESS);
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}
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namespace NExtract
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{
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static const TCHAR *kKeyName = TEXT("Extraction");
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static const TCHAR *kExtractMode = TEXT("ExtractMode");
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static const TCHAR *kOverwriteMode = TEXT("OverwriteMode");
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static const TCHAR *kShowPassword = TEXT("ShowPassword");
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static const TCHAR *kPathHistory = TEXT("PathHistory");
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static const TCHAR *kSplitDest = TEXT("SplitDest");
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static const TCHAR *kElimDup = TEXT("ElimDup");
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// static const TCHAR *kAltStreams = TEXT("AltStreams");
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static const TCHAR *kNtSecur = TEXT("Security");
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void CInfo::Save() const
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{
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CS_LOCK
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CKey key;
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CreateMainKey(key, kKeyName);
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if (PathMode_Force)
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key.SetValue(kExtractMode, (UInt32)PathMode);
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if (OverwriteMode_Force)
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key.SetValue(kOverwriteMode, (UInt32)OverwriteMode);
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Key_Set_BoolPair(key, kSplitDest, SplitDest);
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Key_Set_BoolPair(key, kElimDup, ElimDup);
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// Key_Set_BoolPair(key, kAltStreams, AltStreams);
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Key_Set_BoolPair(key, kNtSecur, NtSecurity);
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Key_Set_BoolPair(key, kShowPassword, ShowPassword);
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key.RecurseDeleteKey(kPathHistory);
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key.SetValue_Strings(kPathHistory, Paths);
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}
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void Save_ShowPassword(bool showPassword)
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{
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CS_LOCK
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CKey key;
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CreateMainKey(key, kKeyName);
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key.SetValue(kShowPassword, showPassword);
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}
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void CInfo::Load()
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{
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PathMode = NPathMode::kCurPaths;
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PathMode_Force = false;
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OverwriteMode = NOverwriteMode::kAsk;
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OverwriteMode_Force = false;
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SplitDest.Val = true;
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Paths.Clear();
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CS_LOCK
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CKey key;
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if (OpenMainKey(key, kKeyName) != ERROR_SUCCESS)
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return;
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key.GetValue_Strings(kPathHistory, Paths);
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UInt32 v;
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if (key.QueryValue(kExtractMode, v) == ERROR_SUCCESS && v <= NPathMode::kAbsPaths)
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{
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PathMode = (NPathMode::EEnum)v;
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PathMode_Force = true;
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}
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if (key.QueryValue(kOverwriteMode, v) == ERROR_SUCCESS && v <= NOverwriteMode::kRenameExisting)
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{
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OverwriteMode = (NOverwriteMode::EEnum)v;
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OverwriteMode_Force = true;
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}
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Key_Get_BoolPair_true(key, kSplitDest, SplitDest);
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Key_Get_BoolPair(key, kElimDup, ElimDup);
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// Key_Get_BoolPair(key, kAltStreams, AltStreams);
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Key_Get_BoolPair(key, kNtSecur, NtSecurity);
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Key_Get_BoolPair(key, kShowPassword, ShowPassword);
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}
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bool Read_ShowPassword()
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{
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CS_LOCK
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CKey key;
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bool showPassword = false;
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if (OpenMainKey(key, kKeyName) != ERROR_SUCCESS)
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return showPassword;
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key.GetValue_IfOk(kShowPassword, showPassword);
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return showPassword;
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}
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}
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namespace NCompression
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{
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static const TCHAR *kKeyName = TEXT("Compression");
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static const TCHAR *kArcHistory = TEXT("ArcHistory");
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static const WCHAR *kArchiver = L"Archiver";
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static const TCHAR *kShowPassword = TEXT("ShowPassword");
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static const TCHAR *kEncryptHeaders = TEXT("EncryptHeaders");
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static const TCHAR *kOptionsKeyName = TEXT("Options");
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static const TCHAR *kLevel = TEXT("Level");
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static const TCHAR *kDictionary = TEXT("Dictionary");
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static const TCHAR *kOrder = TEXT("Order");
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static const TCHAR *kBlockSize = TEXT("BlockSize");
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static const TCHAR *kNumThreads = TEXT("NumThreads");
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static const WCHAR *kMethod = L"Method";
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static const WCHAR *kOptions = L"Options";
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static const WCHAR *kEncryptionMethod = L"EncryptionMethod";
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static const TCHAR *kNtSecur = TEXT("Security");
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static const TCHAR *kAltStreams = TEXT("AltStreams");
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static const TCHAR *kHardLinks = TEXT("HardLinks");
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static const TCHAR *kSymLinks = TEXT("SymLinks");
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static void SetRegString(CKey &key, const WCHAR *name, const UString &value)
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{
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if (value.IsEmpty())
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key.DeleteValue(name);
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else
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key.SetValue(name, value);
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}
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static void SetRegUInt32(CKey &key, const TCHAR *name, UInt32 value)
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{
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if (value == (UInt32)(Int32)-1)
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key.DeleteValue(name);
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else
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key.SetValue(name, value);
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}
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static void GetRegString(CKey &key, const WCHAR *name, UString &value)
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{
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if (key.QueryValue(name, value) != ERROR_SUCCESS)
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value.Empty();
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}
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static void GetRegUInt32(CKey &key, const TCHAR *name, UInt32 &value)
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{
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if (key.QueryValue(name, value) != ERROR_SUCCESS)
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value = (UInt32)(Int32)-1;
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}
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void CInfo::Save() const
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{
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CS_LOCK
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CKey key;
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CreateMainKey(key, kKeyName);
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Key_Set_BoolPair(key, kNtSecur, NtSecurity);
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Key_Set_BoolPair(key, kAltStreams, AltStreams);
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Key_Set_BoolPair(key, kHardLinks, HardLinks);
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Key_Set_BoolPair(key, kSymLinks, SymLinks);
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key.SetValue(kShowPassword, ShowPassword);
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key.SetValue(kLevel, (UInt32)Level);
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key.SetValue(kArchiver, ArcType);
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key.SetValue(kShowPassword, ShowPassword);
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key.SetValue(kEncryptHeaders, EncryptHeaders);
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key.RecurseDeleteKey(kArcHistory);
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key.SetValue_Strings(kArcHistory, ArcPaths);
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key.RecurseDeleteKey(kOptionsKeyName);
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{
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CKey optionsKey;
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optionsKey.Create(key, kOptionsKeyName);
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FOR_VECTOR (i, Formats)
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{
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const CFormatOptions &fo = Formats[i];
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CKey fk;
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fk.Create(optionsKey, fo.FormatID);
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SetRegUInt32(fk, kLevel, fo.Level);
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SetRegUInt32(fk, kDictionary, fo.Dictionary);
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SetRegUInt32(fk, kOrder, fo.Order);
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SetRegUInt32(fk, kBlockSize, fo.BlockLogSize);
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SetRegUInt32(fk, kNumThreads, fo.NumThreads);
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SetRegString(fk, kMethod, fo.Method);
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SetRegString(fk, kOptions, fo.Options);
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SetRegString(fk, kEncryptionMethod, fo.EncryptionMethod);
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}
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}
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}
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void CInfo::Load()
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{
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ArcPaths.Clear();
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Formats.Clear();
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Level = 5;
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ArcType = L"7z";
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ShowPassword = false;
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EncryptHeaders = false;
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CS_LOCK
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CKey key;
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if (OpenMainKey(key, kKeyName) != ERROR_SUCCESS)
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return;
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Key_Get_BoolPair(key, kNtSecur, NtSecurity);
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Key_Get_BoolPair(key, kAltStreams, AltStreams);
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Key_Get_BoolPair(key, kHardLinks, HardLinks);
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Key_Get_BoolPair(key, kSymLinks, SymLinks);
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key.GetValue_Strings(kArcHistory, ArcPaths);
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{
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CKey optionsKey;
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if (optionsKey.Open(key, kOptionsKeyName, KEY_READ) == ERROR_SUCCESS)
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{
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CSysStringVector formatIDs;
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optionsKey.EnumKeys(formatIDs);
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FOR_VECTOR (i, formatIDs)
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{
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CKey fk;
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CFormatOptions fo;
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fo.FormatID = formatIDs[i];
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if (fk.Open(optionsKey, fo.FormatID, KEY_READ) == ERROR_SUCCESS)
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{
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GetRegString(fk, kOptions, fo.Options);
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GetRegString(fk, kMethod, fo.Method);
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GetRegString(fk, kEncryptionMethod, fo.EncryptionMethod);
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GetRegUInt32(fk, kLevel, fo.Level);
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GetRegUInt32(fk, kDictionary, fo.Dictionary);
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GetRegUInt32(fk, kOrder, fo.Order);
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GetRegUInt32(fk, kBlockSize, fo.BlockLogSize);
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GetRegUInt32(fk, kNumThreads, fo.NumThreads);
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Formats.Add(fo);
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}
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}
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}
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}
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UString a;
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if (key.QueryValue(kArchiver, a) == ERROR_SUCCESS)
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ArcType = a;
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key.GetValue_IfOk(kLevel, Level);
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key.GetValue_IfOk(kShowPassword, ShowPassword);
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key.GetValue_IfOk(kEncryptHeaders, EncryptHeaders);
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}
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}
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static const TCHAR *kOptionsInfoKeyName = TEXT("Options");
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namespace NWorkDir
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{
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static const TCHAR *kWorkDirType = TEXT("WorkDirType");
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static const WCHAR *kWorkDirPath = L"WorkDirPath";
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static const TCHAR *kTempRemovableOnly = TEXT("TempRemovableOnly");
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void CInfo::Save()const
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{
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CS_LOCK
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CKey key;
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CreateMainKey(key, kOptionsInfoKeyName);
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key.SetValue(kWorkDirType, (UInt32)Mode);
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key.SetValue(kWorkDirPath, fs2us(Path));
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key.SetValue(kTempRemovableOnly, ForRemovableOnly);
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}
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void CInfo::Load()
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{
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SetDefault();
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CS_LOCK
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CKey key;
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if (OpenMainKey(key, kOptionsInfoKeyName) != ERROR_SUCCESS)
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return;
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UInt32 dirType;
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if (key.QueryValue(kWorkDirType, dirType) != ERROR_SUCCESS)
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return;
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switch (dirType)
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{
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case NMode::kSystem:
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case NMode::kCurrent:
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case NMode::kSpecified:
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Mode = (NMode::EEnum)dirType;
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}
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UString pathU;
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if (key.QueryValue(kWorkDirPath, pathU) == ERROR_SUCCESS)
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Path = us2fs(pathU);
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else
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{
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Path.Empty();
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if (Mode == NMode::kSpecified)
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Mode = NMode::kSystem;
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}
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key.GetValue_IfOk(kTempRemovableOnly, ForRemovableOnly);
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}
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}
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static const TCHAR *kCascadedMenu = TEXT("CascadedMenu");
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static const TCHAR *kContextMenu = TEXT("ContextMenu");
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static const TCHAR *kMenuIcons = TEXT("MenuIcons");
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static const TCHAR *kElimDup = TEXT("ElimDupExtract");
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void CContextMenuInfo::Save() const
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{
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CS_LOCK
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CKey key;
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CreateMainKey(key, kOptionsInfoKeyName);
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Key_Set_BoolPair(key, kCascadedMenu, Cascaded);
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Key_Set_BoolPair(key, kMenuIcons, MenuIcons);
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Key_Set_BoolPair(key, kElimDup, ElimDup);
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if (Flags_Def)
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key.SetValue(kContextMenu, Flags);
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}
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void CContextMenuInfo::Load()
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{
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Cascaded.Val = true;
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Cascaded.Def = false;
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MenuIcons.Val = false;
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MenuIcons.Def = false;
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ElimDup.Val = true;
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ElimDup.Def = false;
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Flags = (UInt32)(Int32)-1;
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Flags_Def = false;
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CS_LOCK
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CKey key;
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if (OpenMainKey(key, kOptionsInfoKeyName) != ERROR_SUCCESS)
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return;
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Key_Get_BoolPair_true(key, kCascadedMenu, Cascaded);
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Key_Get_BoolPair_true(key, kElimDup, ElimDup);
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Key_Get_BoolPair(key, kMenuIcons, MenuIcons);
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Flags_Def = (key.GetValue_IfOk(kContextMenu, Flags) == ERROR_SUCCESS);
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}
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