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x2utils/X2UtPersistRegistry.pas

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{
:: X2UtPersistRegistry implements persistency to the Windows Registry.
::
:: Last changed: $Date$
:: Revision: $Rev$
:: Author: $Author$
}
unit X2UtPersistRegistry;
interface
uses
Classes,
Registry,
Windows,
X2UtPersist,
X2UtPersistIntf;
type
TX2UtPersistRegistry = class(TX2CustomPersist)
private
FKey: String;
FRootKey: HKEY;
protected
function CreateFiler(AIsReader: Boolean): IX2PersistFiler; override;
public
constructor Create;
property Key: String read FKey write FKey;
property RootKey: HKEY read FRootKey write FRootKey;
end;
TX2UtPersistRegistryFiler = class(TX2CustomPersistFiler)
private
FKey: String;
FRegistry: TRegistry;
protected
function OpenKey(const ANewKey: String): Boolean;
public
function BeginSection(const AName: String): Boolean; override;
procedure EndSection; override;
procedure GetKeys(const ADest: TStrings); override;
procedure GetSections(const ADest: TStrings); override;
function ReadInteger(const AName: String; out AValue: Integer): Boolean; override;
function ReadFloat(const AName: String; out AValue: Extended): Boolean; override;
function ReadString(const AName: String; out AValue: String): Boolean; override;
function ReadInt64(const AName: String; out AValue: Int64): Boolean; override;
function ReadStream(const AName: string; AStream: TStream): Boolean; override;
function WriteInteger(const AName: String; AValue: Integer): Boolean; override;
function WriteFloat(const AName: String; AValue: Extended): Boolean; override;
function WriteString(const AName, AValue: String): Boolean; override;
function WriteInt64(const AName: String; AValue: Int64): Boolean; override;
function WriteStream(const AName: string; AStream: TStream): Boolean; override;
procedure DeleteKey(const AName: string); override;
procedure DeleteSection(const AName: string); override;
property Key: String read FKey;
property Registry: TRegistry read FRegistry;
public
constructor Create(AIsReader: Boolean; ARootKey: HKEY; const AKey: String);
destructor Destroy; override;
end;
{ Wrapper functions }
function ReadFromRegistry(AObject: TObject; const AKey: String; ARootKey: HKEY = HKEY_CURRENT_USER): Boolean;
procedure WriteToRegistry(AObject: TObject; const AKey: String; ARootKey: HKEY = HKEY_CURRENT_USER);
implementation
uses
SysUtils,
X2UtStrings;
const
RegistrySeparator = '\';
{ Wrapper functions }
function ReadFromRegistry(AObject: TObject; const AKey: String; ARootKey: HKEY): Boolean;
begin
with TX2UtPersistRegistry.Create do
try
RootKey := ARootKey;
Key := AKey;
Result := Read(AObject);
finally
Free;
end;
end;
procedure WriteToRegistry(AObject: TObject; const AKey: String; ARootKey: HKEY);
begin
with TX2UtPersistRegistry.Create do
try
RootKey := ARootKey;
Key := AKey;
Write(AObject);
finally
Free;
end;
end;
{ TX2UtPersistRegistry }
constructor TX2UtPersistRegistry.Create;
begin
inherited;
FRootKey := HKEY_CURRENT_USER;
end;
function TX2UtPersistRegistry.CreateFiler(AIsReader: Boolean): IX2PersistFiler;
begin
Result := TX2UtPersistRegistryFiler.Create(AIsReader, Self.RootKey, Self.Key);
end;
{ TX2UtPersistRegistry }
constructor TX2UtPersistRegistryFiler.Create(AIsReader: Boolean; ARootKey: HKEY; const AKey: String);
begin
inherited Create(AIsReader);
if AIsReader then
FRegistry := TRegistry.Create(KEY_READ)
else
FRegistry := TRegistry.Create;
FRegistry.RootKey := ARootKey;
FKey := AKey;
OpenKey('');
end;
destructor TX2UtPersistRegistryFiler.Destroy;
begin
FreeAndNil(FRegistry);
inherited;
end;
function TX2UtPersistRegistryFiler.OpenKey(const ANewKey: String): Boolean;
var
keyName: String;
sectionIndex: Integer;
begin
keyName := Self.Key;
if (Length(keyName) > 0) and (keyName[Length(keyName)] = RegistrySeparator) then
SetLength(keyName, Pred(Length(keyName)));
for sectionIndex := 0 to Pred(Sections.Count) do
keyName := keyName + RegistrySeparator + Sections[sectionIndex];
if Length(ANewKey) > 0 then
keyName := keyName + RegistrySeparator + ANewKey;
if Length(keyName) > 0 then
begin
if IsReader then
Result := FRegistry.OpenKeyReadOnly(keyName)
else
Result := FRegistry.OpenKey(keyName, True);
end else
Result := False;
end;
function TX2UtPersistRegistryFiler.BeginSection(const AName: String): Boolean;
begin
Result := OpenKey(AName);
if Result then
inherited BeginSection(AName);
end;
procedure TX2UtPersistRegistryFiler.EndSection;
begin
inherited;
{ Re-open the previous section }
OpenKey('');
end;
procedure TX2UtPersistRegistryFiler.GetKeys(const ADest: TStrings);
begin
Registry.GetValueNames(ADest);
end;
procedure TX2UtPersistRegistryFiler.GetSections(const ADest: TStrings);
begin
Registry.GetKeyNames(ADest);
end;
function TX2UtPersistRegistryFiler.ReadInteger(const AName: String; out AValue: Integer): Boolean;
begin
AValue := 0;
Result := Registry.ValueExists(AName);
if Result then
AValue := Registry.ReadInteger(AName);
end;
function TX2UtPersistRegistryFiler.ReadFloat(const AName: String; out AValue: Extended): Boolean;
begin
AValue := 0;
Result := Registry.ValueExists(AName);
if Result then
AValue := Registry.ReadFloat(AName);
end;
function TX2UtPersistRegistryFiler.ReadStream(const AName: string; AStream: TStream): Boolean;
var
bufferSize: Integer;
buffer: PChar;
begin
Result := Registry.ValueExists(AName);
if Result then
begin
bufferSize := Registry.GetDataSize(AName);
if bufferSize > 0 then
begin
AStream.Size := 0;
GetMem(buffer, bufferSize);
try
Registry.ReadBinaryData(AName, buffer^, bufferSize);
AStream.WriteBuffer(buffer^, bufferSize);
finally
FreeMem(buffer, bufferSize);
end;
end;
end;
end;
function TX2UtPersistRegistryFiler.ReadString(const AName: String; out AValue: String): Boolean;
begin
AValue := '';
Result := Registry.ValueExists(AName);
if Result then
begin
{ Required for conversion of integer-based booleans }
if Registry.GetDataType(AName) = rdInteger then
AValue := BoolToStr(Registry.ReadBool(AName), True)
else
AValue := Registry.ReadString(AName);
end;
end;
function TX2UtPersistRegistryFiler.ReadInt64(const AName: String; out AValue: Int64): Boolean;
begin
AValue := 0;
Result := (Registry.GetDataSize(AName) = SizeOf(AValue));
if Result then
Registry.ReadBinaryData(AName, AValue, SizeOf(AValue));
end;
function TX2UtPersistRegistryFiler.WriteInteger(const AName: String; AValue: Integer): Boolean;
begin
Registry.WriteInteger(AName, AValue);
Result := True;
end;
function TX2UtPersistRegistryFiler.WriteFloat(const AName: String; AValue: Extended): Boolean;
begin
Registry.WriteFloat(AName, AValue);
Result := True;
end;
function TX2UtPersistRegistryFiler.WriteStream(const AName: string; AStream: TStream): Boolean;
var
bufferSize: Integer;
buffer: PChar;
begin
Result := False;
AStream.Position := 0;
bufferSize := AStream.Size;
if bufferSize > 0 then
begin
GetMem(buffer, bufferSize);
try
AStream.ReadBuffer(buffer^, bufferSize);
Registry.WriteBinaryData(AName, buffer^, bufferSize);
finally
FreeMem(buffer, bufferSize);
end;
Result := True;
end;
end;
function TX2UtPersistRegistryFiler.WriteString(const AName, AValue: String): Boolean;
begin
Registry.WriteString(AName, AValue);
Result := True;
end;
function TX2UtPersistRegistryFiler.WriteInt64(const AName: String; AValue: Int64): Boolean;
begin
Registry.WriteBinaryData(AName, AValue, SizeOf(AValue));
Result := True;
end;
procedure TX2UtPersistRegistryFiler.DeleteKey(const AName: string);
begin
Registry.DeleteValue(AName);
end;
procedure TX2UtPersistRegistryFiler.DeleteSection(const AName: string);
begin
Registry.DeleteKey(AName);
end;
end.