DataRecord

This commit is contained in:
Michael Schimmel
2025-07-17 23:00:56 +02:00
parent a896b7fcf0
commit d2c47843a7
6 changed files with 752 additions and 3 deletions
+1 -1
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@@ -13,7 +13,7 @@ uses
Myc.FMX.Chart.Series in '..\Src\Myc.FMX.Chart.Series.pas',
Myc.Trade.Indicators in '..\Src\Myc.Trade.Indicators.pas',
Myc.Trade.Types in '..\Src\Myc.Trade.Types.pas',
Myc.DirectoryMonitor in '..\Src\Myc.DirectoryMonitor.pas';
Myc.DataRecord in '..\Src\Myc.DataRecord.pas';
{$R *.res}
+1 -1
View File
@@ -141,7 +141,7 @@
<DCCReference Include="..\Src\Myc.FMX.Chart.Series.pas"/>
<DCCReference Include="..\Src\Myc.Trade.Indicators.pas"/>
<DCCReference Include="..\Src\Myc.Trade.Types.pas"/>
<DCCReference Include="..\Src\Myc.DirectoryMonitor.pas"/>
<DCCReference Include="..\Src\Myc.DataRecord.pas"/>
<BuildConfiguration Include="Base">
<Key>Base</Key>
</BuildConfiguration>
+8
View File
@@ -199,6 +199,14 @@ object Form1: TForm1
AllowDrag = True
Viewport.Width = 165.000000000000000000
Viewport.Height = 682.000000000000000000
object Button1: TButton
Position.X = 56.000000000000000000
Position.Y = 72.000000000000000000
TabOrder = 0
Text = 'Button1'
TextSettings.Trimming = None
OnClick = Button1Click
end
end
end
end
+9 -1
View File
@@ -79,11 +79,13 @@ type
FlowLayout: TFlowLayout;
StrategyButton: TSpeedButton;
Strat2Button: TSpeedButton;
Button1: TButton;
procedure FormCreate(Sender: TObject);
procedure FormDestroy(Sender: TObject);
procedure StopButtonClick(Sender: TObject);
procedure TreeViewDblClick(Sender: TObject);
procedure AddWorkspaceActionExecute(Sender: TObject);
procedure Button1Click(Sender: TObject);
procedure Strat2ButtonClick(Sender: TObject);
procedure TestActionExecute(Sender: TObject);
procedure StrategyButtonClick(Sender: TObject);
@@ -129,7 +131,8 @@ implementation
uses
TestModule,
Myc.Trade.Indicators;
Myc.Trade.Indicators,
Myc.DataRecord;
{$R *.fmx}
@@ -289,6 +292,11 @@ begin
Control.Align := TAlignLayout.Top;
end;
procedure TForm1.Button1Click(Sender: TObject);
begin
Myc.DataRecord.Testfunc;
end;
function TForm1.CreateStrategy2(Timeframe: TTimeframe): IMycProcessor<TDataPoint<TOhlcItem>>;
type
TSignal = record
+361
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@@ -0,0 +1,361 @@
unit Myc.DataRecord;
interface
uses
System.Rtti,
System.SysUtils,
System.Generics.Collections,
System.Generics.Defaults;
type
// Provides generic access to a value of type T.
IAccess<T> = interface
['{1D422E3A-25C8-459B-A480-2E246942CF56}']
function GetValue: T;
procedure SetValue(const Value: T);
property Value: T read GetValue write SetValue;
end;
// A record that provides field-level access to data, stored in a sorted array.
TDataRecord = record
public
type
// Builder for dynamically creating a TDataRecord.
TBuilder = record
private
// Use a list for efficient additions. Will be sorted on creation.
FStagedValues: TList<TPair<string, TValue>>;
class operator Initialize(out Dest: TBuilder);
class operator Finalize(var Dest: TBuilder);
public
procedure AddField<T>(const Name: String; const Value: T);
function CreateRec: TDataRecord;
end;
private
FValues: TArray<TPair<string, TValue>>;
class operator Initialize(out Dest: TDataRecord);
class operator Finalize(var Dest: TDataRecord);
public
function GetAccess<T>(const Name: String): IAccess<T>;
class function CreateFromRec<T>(const Rec: T): TDataRecord; static;
class function CreateBuilder: TDataRecord.TBuilder; static;
class function CreateFromJSON(const JSON: string): TDataRecord; static;
end;
TValueAccessor<T> = class(TInterfacedObject, IAccess<T>)
private
FValues: TArray<TPair<string, TValue>>;
FKey: string;
function FindIndex: Integer;
public
constructor Create(AValues: TArray<TPair<string, TValue>>; const AKey: string);
function GetValue: T;
procedure SetValue(const Value: T);
end;
// Comparer for sorting and searching pairs by their string key (Singleton).
TPairKeyComparer = class(TComparer<TPair<string, TValue>>)
strict private
class var
FDefault: IComparer<TPair<string, TValue>>;
class constructor CreateClass;
class destructor DestroyClass;
public
function Compare(const Left, Right: TPair<string, TValue>): Integer; override;
class property Default: IComparer<TPair<string, TValue>> read FDefault;
end;
procedure Testfunc;
implementation
uses
System.TypInfo,
System.JSON;
{$region 'TPairKeyComparer'}
class constructor TPairKeyComparer.CreateClass;
begin
FDefault := TPairKeyComparer.Create;
end;
class destructor TPairKeyComparer.DestroyClass;
begin
FDefault := nil;
end;
function TPairKeyComparer.Compare(const Left, Right: TPair<string, TValue>): Integer;
begin
Result := TComparer<string>.Default.Compare(Left.Key, Right.Key);
end;
{$endregion}
{$region 'TValueAccessor<T>'}
constructor TValueAccessor<T>.Create(AValues: TArray<TPair<string, TValue>>; const AKey: string);
begin
inherited Create;
FValues := AValues;
FKey := AKey;
end;
function TValueAccessor<T>.FindIndex: Integer;
var
dummyPair: TPair<string, TValue>;
begin
// Find the index of the key using binary search with the singleton comparer.
dummyPair := TPair<string, TValue>.Create(FKey, TValue.Empty);
if not TArray.BinarySearch<TPair<string, TValue>>(FValues, dummyPair, Result, TPairKeyComparer.Default) then
Result := -1;
end;
function TValueAccessor<T>.GetValue: T;
var
idx: Integer;
begin
idx := FindIndex;
if idx > -1 then
Result := FValues[idx].Value.AsType<T>
else
raise EArgumentException.CreateFmt('Key not found: %s', [FKey]);
end;
procedure TValueAccessor<T>.SetValue(const Value: T);
var
idx: Integer;
begin
idx := FindIndex;
if idx > -1 then
// Directly modify the TValue within the TPair in the array.
FValues[idx].Value := TValue.From<T>(Value)
else
raise EArgumentException.CreateFmt('Key not found: %s', [FKey]);
end;
{$endregion}
{$region 'TDataRecord'}
function TDataRecord.GetAccess<T>(const Name: String): IAccess<T>;
var
dummyPair: TPair<string, TValue>;
val: TValue;
index: Integer;
targetTypeInfo: PTypeInfo;
begin
Result := nil;
// Use a binary search on the sorted array with the singleton comparer.
dummyPair := TPair<string, TValue>.Create(Name, TValue.Empty);
if TArray.BinarySearch<TPair<string, TValue>>(FValues, dummyPair, index, TPairKeyComparer.Default) then
begin
val := FValues[index].Value;
targetTypeInfo := System.TypeInfo(T);
if (val.TypeInfo <> nil) and (val.TypeInfo = targetTypeInfo) then
begin
Result := TValueAccessor<T>.Create(FValues, Name);
end;
end;
end;
class function TDataRecord.CreateFromRec<T>(const Rec: T): TDataRecord;
var
ctx: TRttiContext;
recType: TRttiRecordType;
field: TRttiField;
recValue: TValue;
stagedValues: TList<TPair<string, TValue>>;
begin
stagedValues := TList<TPair<string, TValue>>.Create;
try
ctx := TRttiContext.Create;
recType := ctx.GetType(TypeInfo(T)) as TRttiRecordType;
recValue := TValue.From<T>(Rec);
for field in recType.GetFields do
stagedValues.Add(TPair<string, TValue>.Create(field.Name, field.GetValue(recValue.GetReferenceToRawData)));
// Sort the list and assign it to the result array.
stagedValues.Sort(TPairKeyComparer.Default);
Result.FValues := stagedValues.ToArray;
finally
stagedValues.Free;
end;
end;
class function TDataRecord.CreateFromJSON(const JSON: string): TDataRecord;
var
jsonValue: TJSONValue;
jsonObject: TJSONObject;
pair: TJSONPair;
pairValue: TJSONValue;
s: string;
b: Boolean;
i64: Int64;
dbl: Double;
stagedValues: TList<TPair<string, TValue>>;
begin
stagedValues := TList<TPair<string, TValue>>.Create;
try
jsonValue := TJSONObject.ParseJSONValue(JSON);
if not Assigned(jsonValue) or not (jsonValue is TJSONObject) then
begin
Result.FValues := [];
Exit;
end;
try
jsonObject := jsonValue as TJSONObject;
for pair in jsonObject do
begin
pairValue := pair.JsonValue;
if pairValue is TJSONNumber then
begin
if pairValue.TryGetValue<Int64>(i64) then
stagedValues.Add(TPair<string, TValue>.Create(pair.JsonString.Value, TValue.From<Int64>(i64)))
else if pairValue.TryGetValue<Double>(dbl) then
stagedValues.Add(TPair<string, TValue>.Create(pair.JsonString.Value, TValue.From<Double>(dbl)));
end
else if pairValue is TJSONString then
begin
if pairValue.TryGetValue<string>(s) then
stagedValues.Add(TPair<string, TValue>.Create(pair.JsonString.Value, TValue.From<string>(s)));
end
else if pairValue is TJSONBool then
begin
if pairValue.TryGetValue<Boolean>(b) then
stagedValues.Add(TPair<string, TValue>.Create(pair.JsonString.Value, TValue.From<Boolean>(b)));
end
else if pairValue is TJSONNull then
stagedValues.Add(TPair<string, TValue>.Create(pair.JsonString.Value, TValue.Empty));
end;
finally
jsonValue.Free;
end;
// Sort the list and assign it to the result array.
stagedValues.Sort(TPairKeyComparer.Default);
Result.FValues := stagedValues.ToArray;
finally
stagedValues.Free;
end;
end;
class function TDataRecord.CreateBuilder: TDataRecord.TBuilder;
begin
Result := Default(TDataRecord.TBuilder);
end;
class operator TDataRecord.Initialize(out Dest: TDataRecord);
begin
// Initialize the array for a new TDataRecord instance.
Dest.FValues := nil;
end;
class operator TDataRecord.Finalize(var Dest: TDataRecord);
begin
// Finalize the array.
Dest.FValues := nil;
end;
{$endregion}
{$region 'TDataRecord.TBuilder'}
procedure TDataRecord.TBuilder.AddField<T>(const Name: String; const Value: T);
begin
FStagedValues.Add(TPair<string, TValue>.Create(Name, TValue.From<T>(Value)));
end;
function TDataRecord.TBuilder.CreateRec: TDataRecord;
begin
// Sort the staged list and create the final record's array from it.
FStagedValues.Sort(TPairKeyComparer.Default);
Result.FValues := FStagedValues.ToArray;
FStagedValues.Clear; // Clear the list after consuming it.
end;
class operator TDataRecord.TBuilder.Initialize(out Dest: TBuilder);
begin
Dest.FStagedValues := TList<TPair<string, TValue>>.Create;
end;
class operator TDataRecord.TBuilder.Finalize(var Dest: TBuilder);
begin
Dest.FStagedValues.Free;
end;
{$endregion}
type
TTestRec = record
A, B, C: Integer;
Name: String;
Val: Double;
end;
procedure Testfunc;
var
testRec: TTestRec;
R: TDataRecord;
nameAccess: IAccess<String>;
bAccess: IAccess<Integer>;
const
JSON_DATA = '{"IntValue": 123, "StringValue": "Hello JSON", "FloatValue": 99.9, "BoolValue": true, "NullValue": null}';
begin
testRec.A := 1;
testRec.B := 5;
testRec.C := 10;
testRec.Name := 'Hi';
testRec.Val := 3.14;
R := TDataRecord.CreateFromRec<TTestRec>(testRec);
// Test reading a string value
nameAccess := R.GetAccess<String>('Name');
Assert(Assigned(nameAccess));
Assert(nameAccess.Value = 'Hi');
// Test reading an integer value
bAccess := R.GetAccess<Integer>('B');
Assert(Assigned(bAccess));
Assert(bAccess.Value = 5);
// Test writing a value
bAccess.Value := 99;
Assert(bAccess.Value = 99);
// Verify that a request for a wrong type returns nil
var aAccess := R.GetAccess<String>('A');
Assert(not Assigned(aAccess));
// Test the builder pattern
var RecBuilder: TDataRecord.TBuilder := TDataRecord.CreateBuilder;
RecBuilder.AddField<Double>('ZValue', 222.0); // Changed key to test sorting
RecBuilder.AddField<string>('AValue', 'Builder Test');
var S := RecBuilder.CreateRec;
var dblAccess := S.GetAccess<Double>('ZValue');
Assert(Assigned(dblAccess));
Assert(dblAccess.Value = 222.0);
var strAccess := S.GetAccess<String>('AValue');
Assert(Assigned(strAccess));
Assert(strAccess.Value = 'Builder Test');
// Test JSON parsing
var jsonRec := TDataRecord.CreateFromJSON(JSON_DATA);
var intAccess := jsonRec.GetAccess<Int64>('IntValue');
Assert(Assigned(intAccess));
Assert(intAccess.Value = 123);
strAccess := jsonRec.GetAccess<string>('StringValue');
Assert(Assigned(strAccess));
Assert(strAccess.Value = 'Hello JSON');
dblAccess := jsonRec.GetAccess<Double>('FloatValue');
Assert(Assigned(dblAccess));
Assert(dblAccess.Value = 99.9);
var boolAccess := jsonRec.GetAccess<Boolean>('BoolValue');
Assert(Assigned(boolAccess));
Assert(boolAccess.Value = true);
end;
end.
+372
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@@ -0,0 +1,372 @@
unit Tests.Myc.DirectoryMonitor;
interface
uses
DUnitX.TestFramework,
System.SysUtils,
System.IOUtils,
System.Classes,
System.Generics.Collections,
System.SyncObjs,
Myc.DirectoryMonitor,
Myc.TaskManager,
Myc.Signals;
type
[TestFixture]
TTestDirectoryMonitor = class(TObject)
private
// Class fields for paths, shared across all tests in the fixture
class var
FTestDir: string;
FSubDir1: string;
FMultiDir1: string;
FMultiDir1a: string;
FMultiDir2: string;
FMultiDir2a: string;
FMonitorFactory: IDirectoryMonitorFactory;
procedure CreateEmptyFile(const AFileName: string);
class procedure CleanDirectoryContent(const Path: string);
class procedure ForceDeleteDirectory(const Path: string);
public
[SetupFixture]
class procedure FixtureSetup;
[TearDownFixture]
class procedure FixtureTearDown;
[Setup]
procedure Setup;
[TearDown]
procedure TearDown;
[Test]
procedure TestInitialization_Finds_Correct_Initial_Files;
[Test]
[IgnoreMemoryLeaks]
procedure TestFile_Triggers_Changed_Notification;
[Test]
procedure TestMultiDirectory_MultiExtension_And_Subdirs;
[Test]
[IgnoreMemoryLeaks]
procedure TestFile_Rename_And_Move_Triggers_Correct_Notifications;
[Test]
procedure TestRapid_CreateDelete_IsHandledCorrectly;
[Test]
[Timeout(30000)] // 30 second timeout for this potentially slow test
procedure TestStress_BufferOverflowRecovery;
end;
implementation
{ TTestDirectoryMonitor }
class procedure TTestDirectoryMonitor.FixtureSetup;
begin
// This runs once before any tests in this class.
// Initialize all paths
// FTestDir := TPath.Combine(TPath.GetTempPath, 'DirectoryMonitorTest');
FTestDir := TPath.Combine('\\COFFEE\TickData\Test', 'DirectoryMonitorTest');
FSubDir1 := TPath.Combine(FTestDir, 'Sub1');
FMultiDir1 := TPath.Combine(FTestDir, 'Dir1');
FMultiDir1a := TPath.Combine(FMultiDir1, 'Sub1A');
FMultiDir2 := TPath.Combine(FTestDir, 'Dir2');
FMultiDir2a := TPath.Combine(FMultiDir2, 'Sub2A');
// Ensure a clean state from previous runs
ForceDeleteDirectory(FTestDir);
Sleep(200); // Give network file system time to process deletion
// Create the entire directory structure needed for all tests
TDirectory.CreateDirectory(FTestDir);
TDirectory.CreateDirectory(FSubDir1);
TDirectory.CreateDirectory(FMultiDir1);
TDirectory.CreateDirectory(FMultiDir1a);
TDirectory.CreateDirectory(FMultiDir2);
TDirectory.CreateDirectory(FMultiDir2a);
end;
class procedure TTestDirectoryMonitor.FixtureTearDown;
begin
end;
procedure TTestDirectoryMonitor.Setup;
begin
// This runs before each individual test.
// Clean files from previous test, but leave directory structure intact.
CleanDirectoryContent(FTestDir);
// Get a fresh factory instance for each test.
FMonitorFactory := CreateDirectoryMonitorFactory;
end;
procedure TTestDirectoryMonitor.TearDown;
begin
// This runs after each individual test.
// Release the factory and the monitor it created.
FMonitorFactory := nil;
end;
class procedure TTestDirectoryMonitor.CleanDirectoryContent(const Path: string);
begin
// Helper to delete all files and recursively clean subdirectories,
// leaving the directory structure itself in place.
if not TDirectory.Exists(Path) then
exit;
for var dir in TDirectory.GetDirectories(Path) do
CleanDirectoryContent(dir);
for var f in TDirectory.GetFiles(Path) do
TFile.Delete(f);
end;
class procedure TTestDirectoryMonitor.ForceDeleteDirectory(const Path: string);
begin
if not TDirectory.Exists(Path) then
exit;
CleanDirectoryContent(Path);
// Finally, delete the now-empty directory
TDirectory.Delete(Path, false);
end;
procedure TTestDirectoryMonitor.CreateEmptyFile(const AFileName: string);
begin
TFile.WriteAllText(AFileName, '', TEncoding.UTF8);
end;
procedure TTestDirectoryMonitor.TestInitialization_Finds_Correct_Initial_Files;
var
monitor: IDirectoryMonitor;
file1_txt: string;
file2_log: string;
file3_sub_txt: string;
begin
// Arrange: The directories exist; we only need to create the files.
file1_txt := TPath.Combine(FTestDir, 'file1.txt');
file2_log := TPath.Combine(FTestDir, 'file2.log');
file3_sub_txt := TPath.Combine(FSubDir1, 'file3.txt');
CreateEmptyFile(file1_txt);
CreateEmptyFile(file2_log);
CreateEmptyFile(file3_sub_txt);
FMonitorFactory.AddDirectory(FTestDir, TSubDirectoryHandling.Recursive);
FMonitorFactory.AddExtension('.txt');
FMonitorFactory.SetChangeKinds([TFileChangeKind.FileNameChange]);
// Act
monitor := FMonitorFactory.CreateMonitor;
// Assert
Assert.AreEqual(2, monitor.FileCount, 'Should find exactly 2 .txt files');
Assert.IsNotNull(monitor.Files[file1_txt], 'file1.txt should be found.');
Assert.IsNotNull(monitor.Files[file3_sub_txt], 'file3.txt should be found.');
Assert.IsNull(monitor.Files[file2_log], 'file2.log should be ignored.');
end;
procedure TTestDirectoryMonitor.TestFile_Triggers_Changed_Notification;
var
monitor: IDirectoryMonitor;
fileToChange: string;
initialFileInfo: IFileInfo;
notificationReceived: System.SyncObjs.TEvent;
notifiedState: TFileState;
receivedFileInfo: IFileInfo;
waitResult: TWaitResult;
begin
// Arrange
fileToChange := TPath.Combine(FTestDir, 'change_me.txt');
CreateEmptyFile(fileToChange);
FMonitorFactory.AddDirectory(FTestDir, TSubDirectoryHandling.Ignore);
FMonitorFactory.AddExtension('.txt');
FMonitorFactory.SetChangeKinds([TFileChangeKind.LastWriteChange, TFileChangeKind.SizeChange]);
monitor := FMonitorFactory.CreateMonitor;
initialFileInfo := monitor.Files[fileToChange];
Assert.IsNotNull(initialFileInfo, 'File to change should be present after initialization.');
notificationReceived := System.SyncObjs.TEvent.Create(nil, true, false, '');
try
notifiedState := TFileState.Unchanged;
receivedFileInfo := nil;
initialFileInfo.AddChangeNotification(
function(AFileInfo: IFileInfo; ANewState: TFileState): Boolean
begin
receivedFileInfo := AFileInfo;
notifiedState := ANewState;
notificationReceived.SetEvent;
Result := false;
end
);
// Act
TFile.AppendAllText(fileToChange, 'some new content');
// Assert
waitResult := notificationReceived.WaitFor(2000);
Assert.AreEqual(TWaitResult.wrSignaled, waitResult, 'Notification event was not signaled in time.');
Assert.AreEqual(TFileState.Changed, notifiedState, 'Notification state should be "Changed".');
finally
notificationReceived.Free;
end;
end;
procedure TTestDirectoryMonitor.TestMultiDirectory_MultiExtension_And_Subdirs;
var
monitor: IDirectoryMonitor;
f1_log, f3_tmp, f5_log: string;
f2_txt, f6_ignored_tmp: string;
begin
// Arrange: Directories are pre-created. We just create files.
f1_log := TPath.Combine(FMultiDir1, 'file1.log');
f2_txt := TPath.Combine(FMultiDir1, 'file2.txt');
f3_tmp := TPath.Combine(FMultiDir1a, 'file3.tmp');
f5_log := TPath.Combine(FMultiDir2, 'file5.log');
f6_ignored_tmp := TPath.Combine(FMultiDir2a, 'file6.tmp');
CreateEmptyFile(f1_log);
CreateEmptyFile(f2_txt);
CreateEmptyFile(f3_tmp);
CreateEmptyFile(f5_log);
CreateEmptyFile(f6_ignored_tmp);
FMonitorFactory.AddDirectory(FMultiDir1, TSubDirectoryHandling.Recursive);
FMonitorFactory.AddDirectory(FMultiDir2, TSubDirectoryHandling.Ignore);
FMonitorFactory.AddExtension('.log');
FMonitorFactory.AddExtension('.tmp');
FMonitorFactory.SetChangeKinds([TFileChangeKind.FileNameChange]);
// Act
monitor := FMonitorFactory.CreateMonitor;
// Assert
Assert.AreEqual(3, monitor.FileCount, 'Should find 3 files (.log or .tmp) respecting recursion rules.');
Assert.IsNotNull(monitor.Files[f1_log], 'f1.log should be found in Dir1.');
Assert.IsNotNull(monitor.Files[f3_tmp], 'f3.tmp should be found in recursive Dir1/Sub1A.');
Assert.IsNotNull(monitor.Files[f5_log], 'f5.log should be found in Dir2.');
Assert.IsNull(monitor.Files[f2_txt], 'f2.txt should be ignored due to extension mismatch.');
Assert.IsNull(monitor.Files[f6_ignored_tmp], 'f6.tmp should be ignored because Dir2 is not monitored recursively.');
end;
procedure TTestDirectoryMonitor.TestFile_Rename_And_Move_Triggers_Correct_Notifications;
var
monitor: IDirectoryMonitor;
originalFile, renamedFile, movedFile: string;
countdown: TCountdownEvent;
initialInfo: IFileInfo;
waitResult: TWaitResult;
begin
// Arrange
originalFile := TPath.Combine(FTestDir, 'original.txt');
renamedFile := TPath.Combine(FTestDir, 'renamed.txt');
movedFile := TPath.Combine(FSubDir1, 'moved.txt');
CreateEmptyFile(originalFile);
FMonitorFactory.AddDirectory(FTestDir, TSubDirectoryHandling.Recursive);
FMonitorFactory.AddExtension('.txt');
FMonitorFactory.SetChangeKinds([TFileChangeKind.FileNameChange]);
monitor := FMonitorFactory.CreateMonitor;
countdown := TCountdownEvent.Create(1);
try
initialInfo := monitor.Files[originalFile];
Assert.IsNotNull(initialInfo, 'Initial file must exist in monitor.');
initialInfo.AddChangeNotification(
function(AFileInfo: IFileInfo; ANewState: TFileState): Boolean
begin
if ANewState = TFileState.Deleted then
countdown.Signal;
Result := true;
end
);
// Act & Assert 1: Rename
TFile.Move(originalFile, renamedFile);
waitResult := countdown.WaitFor(2000);
Assert.AreEqual(TWaitResult.wrSignaled, waitResult, 'Delete notification for original file did not arrive in time.');
Sleep(100);
Assert.IsNotNull(monitor.Files[renamedFile], 'Renamed file should be present in monitor.');
// Arrange 2
countdown.Reset(1);
var renamedInfo := monitor.Files[renamedFile];
Assert.IsNotNull(renamedInfo);
renamedInfo.AddChangeNotification(
function(AFileInfo: IFileInfo; ANewState: TFileState): Boolean
begin
if ANewState = TFileState.Deleted then
countdown.Signal;
Result := true;
end
);
// Act & Assert 2: Move
TFile.Move(renamedFile, movedFile);
waitResult := countdown.WaitFor(2000);
Assert.AreEqual(TWaitResult.wrSignaled, waitResult, 'Delete notification for renamed file did not arrive in time.');
Sleep(100);
Assert.IsNotNull(monitor.Files[movedFile], 'Moved file should be present in monitor.');
Assert.AreEqual(1, monitor.FileCount, 'Monitor should only contain one file at the end.');
finally
countdown.Free;
end;
end;
procedure TTestDirectoryMonitor.TestRapid_CreateDelete_IsHandledCorrectly;
var
monitor: IDirectoryMonitor;
rapidFile: string;
begin
// Arrange
rapidFile := TPath.Combine(FTestDir, 'rapid.txt');
FMonitorFactory.AddDirectory(FTestDir, TSubDirectoryHandling.Ignore);
FMonitorFactory.AddExtension('.txt');
FMonitorFactory.SetChangeKinds([TFileChangeKind.FileNameChange]);
monitor := FMonitorFactory.CreateMonitor;
// Act
CreateEmptyFile(rapidFile);
TFile.Delete(rapidFile);
Sleep(500);
// Assert
Assert.AreEqual(0, monitor.FileCount, 'Monitor should be empty after rapid create/delete.');
Assert.IsNull(monitor.Files[rapidFile], 'The rapidly created/deleted file should not exist in the monitor.');
end;
procedure TTestDirectoryMonitor.TestStress_BufferOverflowRecovery;
const
NumFiles = 4000;
var
monitor: IDirectoryMonitor;
i: Integer;
filePath: string;
begin
// Arrange
FMonitorFactory.AddDirectory(FTestDir, TSubDirectoryHandling.Ignore);
FMonitorFactory.AddExtension('.tmp');
FMonitorFactory.SetChangeKinds([TFileChangeKind.FileNameChange]);
monitor := FMonitorFactory.CreateMonitor;
// Act
for i := 1 to NumFiles do
begin
filePath := TPath.Combine(FTestDir, IntToStr(i) + '.tmp');
CreateEmptyFile(filePath);
end;
Sleep(5000);
// Assert
Assert.AreEqual(NumFiles, monitor.FileCount, 'Monitor should recover from overflow and report the correct file count.');
end;
end.