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Added the PDS file to extract the HTML Help files using PasDoc Added more XML documentation Fixed some XML errors. Removed the license copy from the pas units. Updated the LICENSE.md file
190 lines
3.8 KiB
ObjectPascal
190 lines
3.8 KiB
ObjectPascal
unit uCEFWorkSchedulerThread;
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{$IFDEF FPC}
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{$MODE OBJFPC}{$H+}
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{$ENDIF}
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{$I cef.inc}
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{$IFNDEF TARGET_64BITS}{$ALIGN ON}{$ENDIF}
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{$MINENUMSIZE 4}
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interface
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uses
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{$IFDEF DELPHI16_UP}
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System.Classes, System.SyncObjs,
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{$ELSE}
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Classes, SyncObjs,
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{$ENDIF}
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uCEFConstants;
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type
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TCEFWorkSchedulerThread = class(TThread)
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protected
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FCritSect : TCriticalSection;
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FInterval : integer;
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FEvent : TEvent;
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FOnPulse : TNotifyEvent;
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FPulsing : boolean;
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FMustReset : boolean;
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FDefaultInterval : integer;
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function Lock : boolean;
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procedure Unlock;
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function CanPulse(var aInterval : integer) : boolean;
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procedure DoOnPulseEvent;
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procedure EventTimeOut;
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procedure SignaledEvent;
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procedure Execute; override;
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public
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constructor Create;
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destructor Destroy; override;
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procedure AfterConstruction; override;
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procedure NextPulse(aInterval : integer);
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property DefaultInterval : integer read FDefaultInterval write FDefaultInterval default CEF_TIMER_MAXDELAY;
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property OnPulse : TNotifyEvent read FOnPulse write FOnPulse;
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end;
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implementation
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uses
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uCEFMiscFunctions,
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{$IFDEF DELPHI16_UP}
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System.SysUtils, System.Math;
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{$ELSE}
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SysUtils, Math;
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{$ENDIF}
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constructor TCEFWorkSchedulerThread.Create;
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begin
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FOnPulse := nil;
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FCritSect := nil;
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FPulsing := False;
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FEvent := nil;
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FDefaultInterval := CEF_TIMER_MAXDELAY;
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FInterval := FDefaultInterval;
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FMustReset := False;
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inherited Create(True);
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FreeOnTerminate := False;
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end;
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destructor TCEFWorkSchedulerThread.Destroy;
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begin
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if (FEvent <> nil) then FreeAndNil(FEvent);
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if (FCritSect <> nil) then FreeAndNil(FCritSect);
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inherited Destroy;
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end;
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procedure TCEFWorkSchedulerThread.AfterConstruction;
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begin
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inherited AfterConstruction;
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FEvent := TEvent.Create(nil, False, False, '');
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FCritSect := TCriticalSection.Create;
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end;
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procedure TCEFWorkSchedulerThread.DoOnPulseEvent;
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begin
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if assigned(FOnPulse) then FOnPulse(self);
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end;
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function TCEFWorkSchedulerThread.Lock : boolean;
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begin
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if not(Terminated) and (FCritSect <> nil) then
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begin
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FCritSect.Acquire;
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Result := True;
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end
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else
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Result := False;
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end;
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procedure TCEFWorkSchedulerThread.Unlock;
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begin
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if (FCritSect <> nil) then FCritSect.Release;
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end;
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procedure TCEFWorkSchedulerThread.NextPulse(aInterval : integer);
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begin
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if Lock then
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try
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FInterval := min(aInterval, CEF_TIMER_MAXDELAY);
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FMustReset := True;
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if FPulsing then
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begin
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FPulsing := False;
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FEvent.SetEvent;
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end;
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finally
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Unlock;
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end;
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end;
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procedure TCEFWorkSchedulerThread.EventTimeOut;
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begin
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if Lock then
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try
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if FMustReset then
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begin
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FInterval := FDefaultInterval;
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FMustReset := False;
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end;
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FPulsing := False;
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finally
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Unlock;
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if not(Terminated) then
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Synchronize({$IFDEF FPC}self, @{$ENDIF}DoOnPulseEvent);
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end;
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end;
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procedure TCEFWorkSchedulerThread.SignaledEvent;
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begin
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if Lock then
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try
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FPulsing := False;
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finally
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Unlock;
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end;
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end;
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function TCEFWorkSchedulerThread.CanPulse(var aInterval : integer) : boolean;
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begin
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Result := False;
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if Lock then
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try
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aInterval := FInterval;
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if (aInterval > 0) then
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begin
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Result := True;
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FPulsing := True;
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FEvent.ResetEvent;
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end;
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finally
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Unlock;
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end;
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end;
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procedure TCEFWorkSchedulerThread.Execute;
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var
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TempInterval : integer;
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begin
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while CanPulse(TempInterval) do
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if (FEvent.WaitFor(TempInterval) = wrTimeout) then
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EventTimeOut
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else
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SignaledEvent;
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end;
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end.
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