Updated day 14 algorithm to not operate directly on the strings
This commit is contained in:
parent
3501f6f574
commit
515d39da40
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@ -31,48 +31,64 @@ const
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CMaxSpinCount = 1000000000;
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type
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TIntegers = specialize TList<Integer>;
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TIntegersList = specialize TObjectList<TIntegers>;
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{ TRockPile }
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{ TCubeRockInterval }
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TRockPile = class
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private
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FStart, FLength: Integer;
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public
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constructor Create(const AStart: Integer);
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procedure AddRock;
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function Any: Boolean;
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procedure SetStart(const AStart: Integer);
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function CalcWeight(const ALineCount: Integer): Integer;
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TCubeRockInterval = record
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Start, Stop: Integer;
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end;
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TRockPiles = specialize TObjectList<TRockPile>;
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TCubeRockIntervals = specialize TList<TCubeRockInterval>;
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TCubeRockIntervalsList = specialize TObjectList<TCubeRockIntervals>;
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{ TRoundRockFormation }
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TRoundRockFormation = class
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private
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FColumns, FRows: TIntegersList;
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public
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property Columns: TIntegersList read FColumns;
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property Rows: TIntegersList read FRows;
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constructor Create(const AWidth, AHeight: Integer);
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destructor Destroy; override;
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procedure AddRock(const AColumn, ARow: Integer);
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function CalcWeight: Integer;
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function IsEqualTo(const AOther: TRoundRockFormation): Boolean;
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function Clone: TRoundRockFormation;
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end;
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TRoundRockFormations = specialize TObjectList<TRoundRockFormation>;
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{ TPlatform }
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TPlatform = class
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private
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FLines: TStringList;
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procedure TiltNorth;
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procedure TiltSouth;
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procedure TiltWest;
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procedure TiltEast;
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function IsEqualTo(const FOther: TStringList): Boolean;
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procedure SwapRockLocation(const AColumn, ARockLineIndex, AEmptyLineIndex: Integer);
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FFormation: TRoundRockFormation;
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FColumnIntervals, FRowIntervals: TCubeRockIntervalsList;
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procedure Tilt(constref AIntervals: TCubeRockIntervalsList; constref ASource, ATarget: TIntegersList;
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const AUp: Boolean);
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procedure InitIntervals(var AIntervalsList: TCubeRockIntervalsList; const ACount, ALength: Integer);
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procedure UpdateIntervals(constref AIntervals: TCubeRockIntervals; const AIndex, AMax: Integer; const ALines:
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TStringList; const APreviousCharLineIndex, APreviousCharIndex, ANextCharLineIndex, ANextCharIndex: Integer);
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public
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constructor Create;
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property CurrentFormation: TRoundRockFormation read FFormation;
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constructor Create(const ALines: TStringList);
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destructor Destroy; override;
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procedure Add(const ALine: string);
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procedure Spin;
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function CalcWeight: Integer;
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procedure TiltNorth;
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procedure TiltWest;
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procedure TiltSouth;
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procedure TiltEast;
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procedure WriteLnFormation;
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procedure WriteLnIntervals;
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end;
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{ TParabolicReflectorDish }
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TParabolicReflectorDish = class(TSolver)
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private
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FLineIndex: Integer;
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FActivePiles, FFinishedPiles: TRockPiles;
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FPlatform: TPlatform;
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FLines: TStringList;
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public
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constructor Create;
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destructor Destroy; override;
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@ -84,205 +100,335 @@ type
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implementation
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{ TRockPile }
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{ TRoundRockFormation }
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constructor TRockPile.Create(const AStart: Integer);
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begin
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FStart := AStart;
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FLength := 0;
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end;
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procedure TRockPile.AddRock;
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begin
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Inc(FLength);
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end;
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function TRockPile.Any: Boolean;
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begin
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Result := (FLength > 0);
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end;
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procedure TRockPile.SetStart(const AStart: Integer);
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begin
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FStart := AStart;
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end;
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function TRockPile.CalcWeight(const ALineCount: Integer): Integer;
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begin
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Result := FLength * (2 * (ALineCount - FStart) - FLength + 1) div 2;
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end;
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{ TPlatform }
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procedure TPlatform.TiltNorth;
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var
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i, j, k: Integer;
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begin
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for i := 0 to FLines.Count - 1 do
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for j := 1 to Length(FLines[i]) do
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if FLines[i][j] = CRoundRockChar then
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begin
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k := i - 1;
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while (k >= 0) and (FLines[k][j] = CEmptyChar) do
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Dec(k);
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Inc(k);
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if k < i then
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SwapRockLocation(j, i, k);
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end;
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end;
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procedure TPlatform.TiltSouth;
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var
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i, j, k: Integer;
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begin
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for i := FLines.Count - 1 downto 0 do
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for j := 1 to Length(FLines[i]) do
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if FLines[i][j] = CRoundRockChar then
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begin
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k := i + 1;
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while (k < FLines.Count) and (FLines[k][j] = CEmptyChar) do
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Inc(k);
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Dec(k);
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if k > i then
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SwapRockLocation(j, i, k);
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end;
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end;
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procedure TPlatform.TiltWest;
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var
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i, j, k: Integer;
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s: string;
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begin
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for i := 0 to FLines.Count - 1 do
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begin
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s := FLines[i];
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k := 1;
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for j := 1 to Length(s) do
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begin
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case s[j] of
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CEmptyChar:
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if k <= 0 then
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k := j;
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CRoundRockChar: begin
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if (k > 0) and (k < j) then
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begin
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s[k] := CRoundRockChar;
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s[j] := CEmptyChar;
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Inc(k);
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end
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else
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k := 0;
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end;
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CCubeRockChar: k := 0;
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end;
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end;
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FLines[i] := s;
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end;
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end;
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procedure TPlatform.TiltEast;
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var
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i, j, k: Integer;
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s: string;
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begin
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for i := 0 to FLines.Count - 1 do
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begin
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s := FLines[i];
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k := Length(s) + 1;
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for j := Length(s) downto 1 do
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begin
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case s[j] of
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CEmptyChar:
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if k > Length(s) then
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k := j;
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CRoundRockChar: begin
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if (k <= Length(s)) and (j < k) then
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begin
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s[k] := CRoundRockChar;
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s[j] := CEmptyChar;
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Dec(k);
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end
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else
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k := Length(s) + 1;
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end;
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CCubeRockChar: k := Length(s) + 1;
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end;
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end;
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FLines[i] := s;
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end;
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end;
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function TPlatform.IsEqualTo(const FOther: TStringList): Boolean;
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constructor TRoundRockFormation.Create(const AWidth, AHeight: Integer);
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var
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i: Integer;
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begin
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if FLines.Count = FOther.Count then
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FColumns := TIntegersList.Create;
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FColumns.Count := AWidth;
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for i := 0 to FColumns.Count - 1 do
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FColumns[i] := TIntegers.Create;
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FRows := TIntegersList.Create;
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FRows.Count := AHeight;
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for i := 0 to FRows.Count - 1 do
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FRows[i] := TIntegers.Create;
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end;
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destructor TRoundRockFormation.Destroy;
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begin
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FColumns.Free;
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FRows.Free;
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inherited Destroy;
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end;
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procedure TRoundRockFormation.AddRock(const AColumn, ARow: Integer);
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begin
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FColumns[AColumn].Add(ARow);
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end;
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function TRoundRockFormation.CalcWeight: Integer;
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var
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i, j: Integer;
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begin
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Result := 0;
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for i := 0 to FColumns.Count - 1 do
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for j := 0 to FColumns[i].Count - 1 do
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Inc(Result, FRows.Count - FColumns[i][j]);
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for i := 0 to FRows.Count - 1 do
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Inc(Result, (FRows.Count - i) * FRows[i].Count);
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end;
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function TRoundRockFormation.IsEqualTo(const AOther: TRoundRockFormation): Boolean;
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var
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i, j: Integer;
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begin
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Result := (FColumns.Count = AOther.FColumns.Count) and (FRows.Count = AOther.FRows.Count);
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if not Result then
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Exit;
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for i := 0 to FColumns.Count - 1 do
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begin
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Result := True;
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for i := 0 to FLines.Count - 1 do
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if FLines[i] <> FOther[i] then
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if FColumns[i].Count <> AOther.FColumns[i].Count then
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begin
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Result := False;
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Exit;
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end;
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end
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else
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for j := 0 to FColumns[i].Count - 1 do
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if FColumns[i][j] <> AOther.FColumns[i][j] then
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begin
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Result := False;
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Exit;
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end;
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end;
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for i := 0 to FRows.Count - 1 do
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begin
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if FRows[i].Count <> AOther.FRows[i].Count then
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begin
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Result := False;
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Exit;
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end;
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for j := 0 to FRows[i].Count - 1 do
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if FRows[i][j] <> AOther.FRows[i][j] then
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begin
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Result := False;
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Exit;
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end;
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end;
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end;
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procedure TPlatform.SwapRockLocation(const AColumn, ARockLineIndex, AEmptyLineIndex: Integer);
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function TRoundRockFormation.Clone: TRoundRockFormation;
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var
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s: string;
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i, rock: Integer;
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begin
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s := FLines[ARockLineIndex];
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s[AColumn] := CEmptyChar;
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FLines[ARockLineIndex] := s;
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s := FLines[AEmptyLineIndex];
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s[AColumn] := CRoundRockChar;
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FLines[AEmptyLineIndex] := s;
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Result := TRoundRockFormation.Create(FColumns.Count, FRows.Count);
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for i := 0 to FColumns.Count - 1 do
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for rock in FColumns[i] do
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Result.FColumns[i].Add(rock);
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for i := 0 to FRows.Count - 1 do
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for rock in FRows[i] do
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Result.FRows[i].Add(rock);
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end;
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constructor TPlatform.Create;
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{ TPlatform }
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procedure TPlatform.Tilt(constref AIntervals: TCubeRockIntervalsList; constref ASource, ATarget:
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TIntegersList; const AUp: Boolean);
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var
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i, rock, nextFree, step: Integer;
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interval: TCubeRockInterval;
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begin
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if AUp then
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step := 1
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else
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step := -1;
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for i := 0 to AIntervals.Count - 1 do
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begin
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for interval in AIntervals[i] do
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begin
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if AUp then
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nextFree := interval.Start
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else
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nextFree := interval.Stop;
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for rock in ASource[i] do
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if (interval.Start <= rock) and (rock <= interval.Stop) then
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begin
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ATarget[nextFree].Add(i);
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Inc(nextFree, step);
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end;
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end;
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ASource[i].Clear;
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end;
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end;
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procedure TPlatform.InitIntervals(var AIntervalsList: TCubeRockIntervalsList; const ACount, ALength: Integer);
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var
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i: Integer;
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interval: TCubeRockInterval;
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begin
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AIntervalsList := TCubeRockIntervalsList.Create;
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AIntervalsList.Count := ACount;
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interval.Start := 0;
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interval.Stop := ALength - 1;
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for i := 0 to ACount - 1 do
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begin
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AIntervalsList[i] := TCubeRockIntervals.Create;
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AIntervalsList[i].Add(interval);
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end;
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end;
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procedure TPlatform.UpdateIntervals(constref AIntervals: TCubeRockIntervals; const AIndex, AMax: Integer; const ALines:
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TStringList; const APreviousCharLineIndex, APreviousCharIndex, ANextCharLineIndex, ANextCharIndex: Integer);
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var
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interval: TCubeRockInterval;
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begin
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if (AIndex > 0) and (ALines[APreviousCharLineIndex][APreviousCharIndex] <> CCubeRockChar) then
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begin
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// Finishes previous interval.
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interval := AIntervals.Last;
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interval.Stop := AIndex - 1;
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AIntervals[AIntervals.Count - 1] := interval;
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end;
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if (AIntervals.Count = 1) and (AIntervals[0].Start = AIndex) then
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begin
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// Shifts first interval if not yet started.
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interval := AIntervals[0];
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interval.Start := AIndex + 1;
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AIntervals[0] := interval;
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end
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else if (AIndex < AMax) and (ALines[ANextCharLineIndex][ANextCharIndex] <> CCubeRockChar) then
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begin
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// Starts interval.
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interval.Start := AIndex + 1;
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interval.Stop := AMax;
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AIntervals.Add(interval);
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end;
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end;
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constructor TPlatform.Create(const ALines: TStringList);
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var
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i, j, width: Integer;
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begin
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width := Length(ALines[0]);
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FFormation := TRoundRockFormation.Create(width, ALines.Count);
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InitIntervals(FColumnIntervals, width, ALines.Count);
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InitIntervals(FRowIntervals, ALines.Count, width);
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for i := 0 to ALines.Count - 1 do
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for j := 1 to width do
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case ALines[i][j] of
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CRoundRockChar: FFormation.AddRock(j - 1, i);
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CCubeRockChar: begin
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UpdateIntervals(FRowIntervals[i], j - 1, width - 1, ALines, i, j - 1, i, j + 1);
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UpdateIntervals(FColumnIntervals[j - 1], i, ALines.Count - 1, ALines, i - 1 , j, i + 1, j);
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end;
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end;
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end;
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destructor TPlatform.Destroy;
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begin
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FFormation.Free;
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FColumnIntervals.Free;
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FRowIntervals.Free;
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inherited Destroy;
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end;
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procedure TPlatform.TiltNorth;
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begin
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Tilt(FColumnIntervals, FFormation.Columns, FFormation.Rows, True);
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end;
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procedure TPlatform.TiltWest;
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begin
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Tilt(FRowIntervals, FFormation.Rows, FFormation.Columns, True);
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end;
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procedure TPlatform.TiltSouth;
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begin
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Tilt(FColumnIntervals, FFormation.Columns, FFormation.Rows, False);
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end;
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procedure TPlatform.TiltEast;
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begin
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Tilt(FRowIntervals, FFormation.Rows, FFormation.Columns, False);
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end;
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procedure TPlatform.WriteLnFormation;
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var
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i, j: Integer;
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begin
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WriteLn;
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WriteLn('Formation:');
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WriteLn(' Columns:');
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for i := 0 to FFormation.FColumns.Count - 1 do
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begin
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Write(' ', i, ': ');
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for j := 0 to FFormation.FColumns[i].Count - 1 do
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begin
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Write(FFormation.FColumns[i][j], ' ');
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end;
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WriteLn;
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end;
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WriteLn(' Rows:');
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for i := 0 to FFormation.FRows.Count - 1 do
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begin
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Write(' ', i, ': ');
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for j := 0 to FFormation.FRows[i].Count - 1 do
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begin
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Write(FFormation.FRows[i][j], ' ');
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end;
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WriteLn;
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end;
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WriteLn(' Weight: ', FFormation.CalcWeight);
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end;
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procedure TPlatform.WriteLnIntervals;
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var
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i, j: Integer;
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begin
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WriteLn;
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WriteLn('Intervals:');
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WriteLn(' Columns:');
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for i := 0 to FColumnIntervals.Count - 1 do
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begin
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Write(' ', i, ': ');
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for j := 0 to FColumnIntervals[i].Count - 1 do
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begin
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Write(FColumnIntervals[i][j].Start, '-', FColumnIntervals[i][j].Stop, ' ');
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end;
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WriteLn;
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end;
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WriteLn(' Rows:');
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for i := 0 to FRowIntervals.Count - 1 do
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begin
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Write(' ', i, ': ');
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for j := 0 to FRowIntervals[i].Count - 1 do
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begin
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Write(FRowIntervals[i][j].Start, '-', FRowIntervals[i][j].Stop, ' ');
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end;
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WriteLn;
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end;
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end;
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{ TParabolicReflectorDish }
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|
||||
constructor TParabolicReflectorDish.Create;
|
||||
begin
|
||||
FLines := TStringList.Create;
|
||||
end;
|
||||
|
||||
destructor TPlatform.Destroy;
|
||||
destructor TParabolicReflectorDish.Destroy;
|
||||
begin
|
||||
FLines.Free;
|
||||
inherited Destroy;
|
||||
end;
|
||||
|
||||
procedure TPlatform.Add(const ALine: string);
|
||||
procedure TParabolicReflectorDish.ProcessDataLine(const ALine: string);
|
||||
begin
|
||||
FLines.Add(ALine);
|
||||
end;
|
||||
|
||||
procedure TPlatform.Spin;
|
||||
procedure TParabolicReflectorDish.Finish;
|
||||
var
|
||||
platform: TPlatform;
|
||||
history: TRoundRockFormations;
|
||||
i, j, x: Integer;
|
||||
match: Boolean;
|
||||
history: specialize TObjectList<TStringList>;
|
||||
begin
|
||||
// Intializes history of platform rock configurations.
|
||||
history := specialize TObjectList<TStringList>.Create;
|
||||
history.Add(TStringList.Create);
|
||||
history[0].AddStrings(FLines);
|
||||
// Initializes platform.
|
||||
platform := TPlatform.Create(FLines);
|
||||
|
||||
// Performs spins until a configuration from the history is encountered again.
|
||||
// Intializes history of platform rock formation.
|
||||
history := TRoundRockFormations.Create;
|
||||
history.Add(platform.CurrentFormation.Clone);
|
||||
|
||||
// Performs spins until a rock formation from the history is encountered again.
|
||||
for i := 1 to CMaxSpinCount do
|
||||
begin
|
||||
TiltNorth;
|
||||
TiltWest;
|
||||
TiltSouth;
|
||||
TiltEast;
|
||||
platform.TiltNorth;
|
||||
if FPart1 = 0 then
|
||||
FPart1 := platform.CurrentFormation.CalcWeight;
|
||||
platform.TiltWest;
|
||||
platform.TiltSouth;
|
||||
platform.TiltEast;
|
||||
|
||||
// Searches history for the current configuration.
|
||||
// Searches history for the current rock formation.
|
||||
j := 0;
|
||||
match := False;
|
||||
while (j < history.Count) and not match do
|
||||
// history.Count - 1 because current rock formation will never be equal to the last one.
|
||||
while (j < history.Count - 1) and not match do
|
||||
begin
|
||||
match := IsEqualTo(history[j]);
|
||||
match := platform.CurrentFormation.IsEqualTo(history[j]);
|
||||
if not match then
|
||||
Inc(j);
|
||||
end;
|
||||
|
@ -292,97 +438,16 @@ begin
|
|||
x := CMaxSpinCount mod (i - j);
|
||||
while x < j do
|
||||
Inc(x, i - j);
|
||||
FLines.Free;
|
||||
FLines := history.ExtractIndex(x);
|
||||
FPart2 := history[x].CalcWeight;
|
||||
Break;
|
||||
end
|
||||
else begin
|
||||
history.Add(TStringList.Create);
|
||||
history[i].AddStrings(FLines);
|
||||
history.Add(platform.CurrentFormation.Clone);
|
||||
end;
|
||||
end;
|
||||
|
||||
history.Free;
|
||||
end;
|
||||
|
||||
function TPlatform.CalcWeight: Integer;
|
||||
var
|
||||
i, j, len, count: Integer;
|
||||
begin
|
||||
Result := 0;
|
||||
len := Length(FLines[0]);
|
||||
for i := 0 to FLines.Count - 1 do
|
||||
begin
|
||||
count := 0;
|
||||
for j := 1 to len do
|
||||
if FLines[i][j] = CRoundRockChar then
|
||||
Inc(count);
|
||||
Inc(Result, count * (FLines.Count - i));
|
||||
end;
|
||||
end;
|
||||
|
||||
{ TParabolicReflectorDish }
|
||||
|
||||
constructor TParabolicReflectorDish.Create;
|
||||
begin
|
||||
FLineIndex := 0;
|
||||
FActivePiles := TRockPiles.Create;
|
||||
FFinishedPiles := TRockPiles.Create;
|
||||
FPlatform := TPlatform.Create;
|
||||
end;
|
||||
|
||||
destructor TParabolicReflectorDish.Destroy;
|
||||
begin
|
||||
FActivePiles.Free;
|
||||
FFinishedPiles.Free;
|
||||
FPlatform.Free;
|
||||
inherited Destroy;
|
||||
end;
|
||||
|
||||
procedure TParabolicReflectorDish.ProcessDataLine(const ALine: string);
|
||||
var
|
||||
i: Integer;
|
||||
begin
|
||||
Inc(FLineIndex);
|
||||
|
||||
// Initializes the list of active piles, one per column.
|
||||
if FActivePiles.Count = 0 then
|
||||
begin
|
||||
FActivePiles.Count := Length(ALine);
|
||||
for i:= 0 to FActivePiles.Count - 1 do
|
||||
FActivePiles[i] := TRockPile.Create(0);
|
||||
end;
|
||||
|
||||
// Updates the active piles from the current line.
|
||||
for i := 1 to Length(ALine) do
|
||||
begin
|
||||
case ALine[i] of
|
||||
CRoundRockChar: FActivePiles[i - 1].AddRock;
|
||||
CCubeRockChar:
|
||||
if FActivePiles[i - 1].Any then
|
||||
begin
|
||||
FFinishedPiles.Add(FActivePiles.ExtractIndex(i - 1));
|
||||
FActivePiles.Insert(i - 1, TRockPile.Create(FLineIndex));
|
||||
end
|
||||
else
|
||||
FActivePiles[i - 1].SetStart(FLineIndex);
|
||||
end;
|
||||
end;
|
||||
|
||||
FPlatform.Add(ALine);
|
||||
end;
|
||||
|
||||
procedure TParabolicReflectorDish.Finish;
|
||||
var
|
||||
pile: TRockPile;
|
||||
begin
|
||||
for pile in FFinishedPiles do
|
||||
Inc(FPart1, pile.CalcWeight(FLineIndex));
|
||||
for pile in FActivePiles do
|
||||
Inc(FPart1, pile.CalcWeight(FLineIndex));
|
||||
|
||||
// Spins the platform and weighs the rocks.
|
||||
FPlatform.Spin;
|
||||
FPart2 := FPlatform.CalcWeight;
|
||||
platform.Free;
|
||||
end;
|
||||
|
||||
function TParabolicReflectorDish.GetDataFileName: string;
|
||||
|
|
Loading…
Reference in New Issue