Documentation for the rest
Former-commit-id: b6f401370127679db397da0039cb5e98477e90db
This commit is contained in:
@@ -46,7 +46,7 @@ namespace Nz
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* \brief Utility class that measure the elapsed time
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*/
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/*!
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/*!
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* \brief Constructs a Clock object
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*
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* \param startingValue The starting time value, in microseconds
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@@ -16,13 +16,36 @@
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namespace Nz
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{
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/*!
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* \class Nz::GuillotineBinPack
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* \brief Core class that represents the "Guillotine problem", combination of the "Bin packing problem" and the "cutting stock"
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*/
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namespace
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{
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/*!
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* \brief Gets the score for fitting the area
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* \return Score of the fitting
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreBestAreaFit(int width, int height, const Rectui& freeRectSize)
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{
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return freeRectSize.width * freeRectSize.height - width * height;
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}
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/*!
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* \brief Gets the score for fitting the area following long side
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* \return Score of the fitting following long side
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreBestLongSideFit(int width, int height, const Rectui& freeRectSize)
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{
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int leftoverHoriz = std::abs(static_cast<int>(freeRectSize.width - width));
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@@ -32,6 +55,15 @@ namespace Nz
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return leftover;
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}
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/*!
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* \brief Gets the score for fitting the area following short side
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* \return Score of the fitting following short side
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreBestShortSideFit(int width, int height, const Rectui& freeRectSize)
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{
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int leftoverHoriz = std::abs(static_cast<int>(freeRectSize.width - width));
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@@ -41,37 +73,85 @@ namespace Nz
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return leftover;
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}
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/*!
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* \brief Gets the worst score for fitting the area
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* \return Worst score of the fitting
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreWorstAreaFit(int width, int height, const Rectui& freeRectSize)
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{
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return -ScoreBestAreaFit(width, height, freeRectSize);
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}
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/*!
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* \brief Gets the worst score for fitting the area following long side
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* \return Worst score of the fitting following long side
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreWorstLongSideFit(int width, int height, const Rectui& freeRectSize)
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{
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return -ScoreBestLongSideFit(width, height, freeRectSize);
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}
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/*!
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* \brief Gets the worst score for fitting the area following short side
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* \return Worst score of the fitting following short side
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*
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* \param width Width
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* \param height Height
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* \param freeRectSize Free area
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*/
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int ScoreWorstShortSideFit(int width, int height, const Rectui& freeRectSize)
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{
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return -ScoreBestShortSideFit(width, height, freeRectSize);
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}
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}
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/*!
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* \brief Constructs a GuillotineBinPack object by default
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*/
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GuillotineBinPack::GuillotineBinPack()
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{
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Reset();
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}
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/*!
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* \brief Constructs a GuillotineBinPack object with width and height
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*
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* \param width Width
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* \param height Height
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*/
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GuillotineBinPack::GuillotineBinPack(unsigned int width, unsigned int height)
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{
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Reset(width, height);
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}
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/*!
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* \brief Constructs a GuillotineBinPack object with area
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*
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* \param size Vector2 representing the area (width, height)
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*/
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GuillotineBinPack::GuillotineBinPack(const Vector2ui& size)
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{
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Reset(size);
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}
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/*!
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* \brief Clears the content
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*/
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void GuillotineBinPack::Clear()
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{
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m_freeRectangles.clear();
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@@ -80,6 +160,15 @@ namespace Nz
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m_usedArea = 0;
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}
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/*!
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* \brief Expands the content
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*
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* \param newWidth New width for the expansion
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* \param newHeight New height for the expansion
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*
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* \see Expand
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*/
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void GuillotineBinPack::Expand(unsigned int newWidth, unsigned newHeight)
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{
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unsigned int oldWidth = m_width;
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@@ -98,52 +187,123 @@ namespace Nz
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while (MergeFreeRectangles());
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}
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/*!
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* \brief Expands the content
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*
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* \param newSize New area for the expansion
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*
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* \see Expand
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*/
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void GuillotineBinPack::Expand(const Vector2ui& newSize)
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{
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Expand(newSize.x, newSize.y);
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}
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/*!
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* \brief Frees the rectangle
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*
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* \param rect Area to free
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*
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* \remark This method should only be called with computed rectangles by the method Insert and can produce fragmentation
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*/
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void GuillotineBinPack::FreeRectangle(const Rectui& rect)
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{
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///DOC: Cette méthode ne devrait recevoir que des rectangles calculés par la méthode Insert et peut provoquer de la fragmentation
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m_freeRectangles.push_back(rect);
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m_usedArea -= rect.width * rect.height;
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}
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/*!
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* \brief Gets the height
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* \return Height of the area
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*/
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unsigned int GuillotineBinPack::GetHeight() const
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{
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return m_height;
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}
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/*!
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* \brief Gets percentage of occupation
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* \return Percentage of the already occupied area
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*/
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float GuillotineBinPack::GetOccupancy() const
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{
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return static_cast<float>(m_usedArea)/(m_width*m_height);
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}
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/*!
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* \brief Gets the size of the area
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* \return Size of the area
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*/
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Vector2ui GuillotineBinPack::GetSize() const
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{
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return Vector2ui(m_width, m_height);
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}
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/*!
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* \brief Gets the width
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* \return Width of the area
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*/
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unsigned int GuillotineBinPack::GetWidth() const
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{
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return m_width;
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}
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/*!
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* \brief Inserts rectangles in the area
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* \return true if each rectangle could be inserted
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*
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* \param rects List of rectangles
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* \param count Count of rectangles
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* \param merge Merge possible
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* \param rectChoice Heuristic to use to free
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* \param splitMethod Heuristic to use to split
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*/
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bool GuillotineBinPack::Insert(Rectui* rects, unsigned int count, bool merge, FreeRectChoiceHeuristic rectChoice, GuillotineSplitHeuristic splitMethod)
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{
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return Insert(rects, nullptr, nullptr, count, merge, rectChoice, splitMethod);
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}
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/*!
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* \brief Inserts rectangles in the area
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* \return true if each rectangle could be inserted
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*
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* \param rects List of rectangles
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* \param flipped List of flipped rectangles
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* \param count Count of rectangles
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* \param merge Merge possible
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* \param rectChoice Heuristic to use to free
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* \param splitMethod Heuristic to use to split
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*/
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bool GuillotineBinPack::Insert(Rectui* rects, bool* flipped, unsigned int count, bool merge, FreeRectChoiceHeuristic rectChoice, GuillotineSplitHeuristic splitMethod)
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{
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return Insert(rects, flipped, nullptr, count, merge, rectChoice, splitMethod);
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}
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/*!
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* \brief Inserts rectangles in the area
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* \return true if each rectangle could be inserted
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*
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* \param rects List of rectangles
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* \param flipped List of flipped rectangles
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* \param flipped List of inserted rectangles
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* \param count Count of rectangles
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* \param merge Merge possible
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* \param rectChoice Heuristic to use to free
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* \param splitMethod Heuristic to use to split
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*/
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bool GuillotineBinPack::Insert(Rectui* rects, bool* flipped, bool* inserted, unsigned int count, bool merge, FreeRectChoiceHeuristic rectChoice, GuillotineSplitHeuristic splitMethod)
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{
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std::vector<Rectui*> remainingRects(count); // La position du rectangle
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std::vector<Rectui*> remainingRects(count); // Position of the rectangle
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for (unsigned int i = 0; i < count; ++i)
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remainingRects[i] = &rects[i];
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@@ -214,7 +374,7 @@ namespace Nz
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// If we didn't manage to find any rectangle to pack, abort.
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if (bestScore == std::numeric_limits<int>::max())
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{
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// Si nous le pouvons, on marque les rectangles n'ayant pas pu être insérés
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// If we can do it, we mark the rectangle could be inserted
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if (inserted)
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{
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for (Rectui* rect : remainingRects)
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@@ -259,9 +419,13 @@ namespace Nz
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return true;
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}
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/*!
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* \brief Merges free rectangles together
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* \return true if there was a merge (and thus if a merge is still possible)
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*/
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bool GuillotineBinPack::MergeFreeRectangles()
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{
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///DOC: Renvoie true s'il y a eu fusion (et donc si une fusion est encore possible)
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std::size_t oriSize = m_freeRectangles.size();
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// Do a Theta(n^2) loop to see if any pair of free rectangles could me merged into one.
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@@ -312,6 +476,10 @@ namespace Nz
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return m_freeRectangles.size() < oriSize;
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}
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/*!
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* \brief Resets the area
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*/
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void GuillotineBinPack::Reset()
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{
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m_height = 0;
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@@ -320,6 +488,13 @@ namespace Nz
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Clear();
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}
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/*!
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* \brief Resets the area
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*
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* \param width Width
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* \param height Height
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*/
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void GuillotineBinPack::Reset(unsigned int width, unsigned int height)
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{
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m_height = height;
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@@ -328,11 +503,25 @@ namespace Nz
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Clear();
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}
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/*!
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* \brief Resets the area
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*
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* \param size Size of the area
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*/
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void GuillotineBinPack::Reset(const Vector2ui& size)
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{
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Reset(size.x, size.y);
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}
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/*!
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* \brief Splits the free rectangle along axis
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*
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* \param freeRect Free rectangle to split
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* \param placedRect Already placed rectangle
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* \param splitHorizontal Split horizontally (or vertically)
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*/
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void GuillotineBinPack::SplitFreeRectAlongAxis(const Rectui& freeRect, const Rectui& placedRect, bool splitHorizontal)
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{
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// Form the two new rectangles.
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@@ -365,50 +554,60 @@ namespace Nz
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m_freeRectangles.push_back(right);
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}
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/*!
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* \brief Splits the free rectangle using the heuristic
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*
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* \param freeRect Free rectangle to split
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* \param placedRect Already placed rectangle
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* \param method Method used to split
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*
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* \remark Produces a NazaraError if enumeration GuillotineSplitHeuristic is invalid
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*/
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void GuillotineBinPack::SplitFreeRectByHeuristic(const Rectui& freeRect, const Rectui& placedRect, GuillotineSplitHeuristic method)
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{
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// Compute the lengths of the leftover area.
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// Compute the lengths of the leftover area
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const int w = freeRect.width - placedRect.width;
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const int h = freeRect.height - placedRect.height;
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// Placing placedRect into freeRect results in an L-shaped free area, which must be split into
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// two disjoint rectangles. This can be achieved with by splitting the L-shape using a single line.
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// We have two choices: horizontal or vertical.
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// two disjoint rectangles. This can be achieved with by splitting the L-shape using a single line
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// We have two choices: horizontal or vertical
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// Use the given heuristic to decide which choice to make.
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// Use the given heuristic to decide which choice to make
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bool splitHorizontal;
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switch (method)
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{
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case SplitLongerAxis:
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// Split along the longer total axis.
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// Split along the longer total axis
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splitHorizontal = (freeRect.width > freeRect.height);
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break;
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case SplitLongerLeftoverAxis:
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// Split along the longer leftover axis.
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// Split along the longer leftover axis
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splitHorizontal = (w > h);
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break;
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case SplitMaximizeArea:
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// Maximize the smaller area == minimize the larger area.
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// Tries to make the rectangles more even-sized.
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// Maximize the smaller area == minimize the larger area
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// Tries to make the rectangles more even-sized
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splitHorizontal = (placedRect.width * h <= w * placedRect.height);
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break;
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case SplitMinimizeArea:
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// Maximize the larger area == minimize the smaller area.
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// Tries to make the single bigger rectangle.
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// Maximize the larger area == minimize the smaller area
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// Tries to make the single bigger rectangle
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splitHorizontal = (placedRect.width * h > w * placedRect.height);
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break;
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case SplitShorterAxis:
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// Split along the shorter total axis.
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// Split along the shorter total axis
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splitHorizontal = (freeRect.width <= freeRect.height);
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break;
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case SplitShorterLeftoverAxis:
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// Split along the shorter leftover axis.
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// Split along the shorter leftover axis
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splitHorizontal = (w <= h);
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break;
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@@ -417,10 +616,22 @@ namespace Nz
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splitHorizontal = true;
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}
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// Perform the actual split.
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// Perform the actual split
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SplitFreeRectAlongAxis(freeRect, placedRect, splitHorizontal);
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}
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/*!
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* \brief Gets the score using heuristic
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* \return Score of the heuristic
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*
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* \param width Width
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* \param height Height
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* \param freeRect Free area
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* \param rectChoice Heuristic to get score
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*
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* \remark Produces a NazaraError if enumeration FreeRectChoiceHeuristic is invalid
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*/
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int GuillotineBinPack::ScoreByHeuristic(int width, int height, const Rectui& freeRect, FreeRectChoiceHeuristic rectChoice)
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{
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switch (rectChoice)
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@@ -82,11 +82,31 @@ namespace Nz
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char s_brandString[48] = "Not initialized";
|
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}
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/*!
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* \class Nz::HardwareInfo
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* \brief Core class that represents the info we can get from hardware
|
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*/
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|
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/*!
|
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* \brief Generates the cpuid instruction (available on x86 & x64)
|
||||
*
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* \param functionId Information to retrieve
|
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* \param subFunctionId Additional code for information retrieval
|
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* \param result Supported features of the CPU
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*/
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||||
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void HardwareInfo::Cpuid(UInt32 functionId, UInt32 subFunctionId, UInt32 result[4])
|
||||
{
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return HardwareInfoImpl::Cpuid(functionId, subFunctionId, result);
|
||||
}
|
||||
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||||
/*!
|
||||
* \brief Gets the brand of the processor
|
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* \return String of the brand
|
||||
*
|
||||
* \remark Produces a NazaraError if not Initialize
|
||||
*/
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||||
|
||||
String HardwareInfo::GetProcessorBrandString()
|
||||
{
|
||||
if (!Initialize())
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||||
@@ -95,13 +115,26 @@ namespace Nz
|
||||
return s_brandString;
|
||||
}
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||||
|
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/*!
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* \brief Gets the number of threads
|
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* \return Number of threads available on the CPU
|
||||
*
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||||
* \remark Doesn't need the initialization of HardwareInfo
|
||||
*/
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||||
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unsigned int HardwareInfo::GetProcessorCount()
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||||
{
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///DOC: Ne nécessite pas l'initialisation de HardwareInfo pour fonctionner
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||||
static unsigned int processorCount = std::max(HardwareInfoImpl::GetProcessorCount(), 1U);
|
||||
return processorCount;
|
||||
}
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||||
|
||||
/*!
|
||||
* \brief Gets the processor vendor
|
||||
* \return ProcessorVendor containing information the vendor
|
||||
*
|
||||
* \remark Produces a NazaraError if not Initialize
|
||||
*/
|
||||
|
||||
ProcessorVendor HardwareInfo::GetProcessorVendor()
|
||||
{
|
||||
if (!Initialize())
|
||||
@@ -110,6 +143,13 @@ namespace Nz
|
||||
return s_vendorEnum;
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Gets the vendor of the processor
|
||||
* \return String of the vendor
|
||||
*
|
||||
* \remark Produces a NazaraError if not Initialize
|
||||
*/
|
||||
|
||||
String HardwareInfo::GetProcessorVendorName()
|
||||
{
|
||||
if (!Initialize())
|
||||
@@ -118,13 +158,26 @@ namespace Nz
|
||||
return vendorNames[s_vendorEnum+1];
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Gets the amount of total memory
|
||||
* \return Number of total memory available
|
||||
*
|
||||
* \remark Doesn't need the initialization of HardwareInfo
|
||||
*/
|
||||
|
||||
UInt64 HardwareInfo::GetTotalMemory()
|
||||
{
|
||||
///DOC: Ne nécessite pas l'initialisation de HardwareInfo pour fonctionner
|
||||
static UInt64 totalMemory = HardwareInfoImpl::GetTotalMemory();
|
||||
return totalMemory;
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Checks whether the processor owns the capacity to handle certain instructions
|
||||
* \return true If instructions supported
|
||||
*
|
||||
* \remark Produces a NazaraError if capability is a wrong enum with NAZARA_DEBUG defined
|
||||
*/
|
||||
|
||||
bool HardwareInfo::HasCapability(ProcessorCap capability)
|
||||
{
|
||||
#ifdef NAZARA_DEBUG
|
||||
@@ -138,9 +191,16 @@ namespace Nz
|
||||
return s_capabilities[capability];
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Initializes the HardwareInfo class
|
||||
* \return true if successful
|
||||
*
|
||||
* \remark Produces a NazaraError if cpuid is not supported
|
||||
*/
|
||||
|
||||
bool HardwareInfo::Initialize()
|
||||
{
|
||||
if (s_initialized)
|
||||
if (IsInitialized())
|
||||
return true;
|
||||
|
||||
if (!HardwareInfoImpl::IsCpuidSupported())
|
||||
@@ -151,21 +211,21 @@ namespace Nz
|
||||
|
||||
s_initialized = true;
|
||||
|
||||
UInt32 registers[4]; // Récupère les quatre registres (EAX, EBX, ECX et EDX)
|
||||
UInt32 registers[4]; // Get the four registers (EAX, EBX, ECX et EDX)
|
||||
|
||||
// Pour plus de clarté
|
||||
// To make it more clear
|
||||
UInt32& eax = registers[0];
|
||||
UInt32& ebx = registers[1];
|
||||
UInt32& ecx = registers[2];
|
||||
UInt32& edx = registers[3];
|
||||
|
||||
// Pour commencer, on va récupérer l'identifiant du constructeur ainsi que l'id de fonction maximal supporté par le CPUID
|
||||
// To begin, we get the id of the constructor and the id of maximal functions supported by the CPUID
|
||||
HardwareInfoImpl::Cpuid(0, 0, registers);
|
||||
|
||||
// Attention à l'ordre : EBX, EDX, ECX
|
||||
// Watchout to the order : EBX, EDX, ECX
|
||||
UInt32 manufacturerId[3] = {ebx, edx, ecx};
|
||||
|
||||
// Identification du concepteur
|
||||
// Identification of conceptor
|
||||
s_vendorEnum = ProcessorVendor_Unknown;
|
||||
for (const VendorString& vendorString : vendorStrings)
|
||||
{
|
||||
@@ -178,7 +238,7 @@ namespace Nz
|
||||
|
||||
if (eax >= 1)
|
||||
{
|
||||
// Récupération de certaines capacités du processeur (ECX et EDX, fonction 1)
|
||||
// Recuperation of certain capacities of the processor (ECX et EDX, function 1)
|
||||
HardwareInfoImpl::Cpuid(1, 0, registers);
|
||||
|
||||
s_capabilities[ProcessorCap_AVX] = (ecx & (1U << 28)) != 0;
|
||||
@@ -192,53 +252,67 @@ namespace Nz
|
||||
s_capabilities[ProcessorCap_SSE42] = (ecx & (1U << 20)) != 0;
|
||||
}
|
||||
|
||||
// Récupération de la plus grande fonction étendue supportée (EAX, fonction 0x80000000)
|
||||
// Recuperation of biggest extended function handled (EAX, fonction 0x80000000)
|
||||
HardwareInfoImpl::Cpuid(0x80000000, 0, registers);
|
||||
|
||||
UInt32 maxSupportedExtendedFunction = eax;
|
||||
if (maxSupportedExtendedFunction >= 0x80000001)
|
||||
{
|
||||
// Récupération des capacités étendues du processeur (ECX et EDX, fonction 0x80000001)
|
||||
// Recuperation of extended capabilities of the processor (ECX et EDX, fonction 0x80000001)
|
||||
HardwareInfoImpl::Cpuid(0x80000001, 0, registers);
|
||||
|
||||
s_capabilities[ProcessorCap_x64] = (edx & (1U << 29)) != 0; // Support du 64bits, indépendant de l'OS
|
||||
s_capabilities[ProcessorCap_x64] = (edx & (1U << 29)) != 0; // Support of 64bits, independant of the OS
|
||||
s_capabilities[ProcessorCap_FMA4] = (ecx & (1U << 16)) != 0;
|
||||
s_capabilities[ProcessorCap_SSE4a] = (ecx & (1U << 6)) != 0;
|
||||
s_capabilities[ProcessorCap_XOP] = (ecx & (1U << 11)) != 0;
|
||||
|
||||
if (maxSupportedExtendedFunction >= 0x80000004)
|
||||
{
|
||||
// Récupération d'une chaîne de caractère décrivant le processeur (EAX, EBX, ECX et EDX,
|
||||
// fonctions de 0x80000002 à 0x80000004 compris)
|
||||
// Recuperation of the string describing the processor (EAX, EBX, ECX et EDX,
|
||||
// functions from 0x80000002 to 0x80000004 inclusive)
|
||||
char* ptr = &s_brandString[0];
|
||||
for (UInt32 code = 0x80000002; code <= 0x80000004; ++code)
|
||||
{
|
||||
HardwareInfoImpl::Cpuid(code, 0, registers);
|
||||
std::memcpy(ptr, ®isters[0], 4*sizeof(UInt32)); // On rajoute les 16 octets à la chaîne
|
||||
std::memcpy(ptr, ®isters[0], 4*sizeof(UInt32)); // We add the 16 bytes to the string
|
||||
|
||||
ptr += 4*sizeof(UInt32);
|
||||
}
|
||||
|
||||
// Le caractère nul faisant partie de la chaîne retournée par le CPUID, pas besoin de le rajouter
|
||||
// The character '\0' is already returned
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Checks whether the instruction of cpuid is supported
|
||||
* \return true if it the case
|
||||
*/
|
||||
|
||||
bool HardwareInfo::IsCpuidSupported()
|
||||
{
|
||||
return HardwareInfoImpl::IsCpuidSupported();
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Checks whether the class HardwareInfo is initialized
|
||||
* \return true if it is initialized
|
||||
*/
|
||||
|
||||
bool HardwareInfo::IsInitialized()
|
||||
{
|
||||
return s_initialized;
|
||||
}
|
||||
|
||||
/*!
|
||||
* \brief Unitializes the class HardwareInfo
|
||||
*/
|
||||
|
||||
void HardwareInfo::Uninitialize()
|
||||
{
|
||||
// Rien à faire
|
||||
// Nothing to do
|
||||
s_initialized = false;
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user