ES-DE/es-core/src/components/ImageGridComponent.h

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#pragma once
#ifndef ES_CORE_COMPONENTS_IMAGE_GRID_COMPONENT_H
#define ES_CORE_COMPONENTS_IMAGE_GRID_COMPONENT_H
#include "components/IList.h"
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#include "resources/TextureResource.h"
struct ImageGridData
{
std::shared_ptr<TextureResource> texture;
};
template<typename T>
class ImageGridComponent : public IList<ImageGridData, T>
{
protected:
using IList<ImageGridData, T>::mEntries;
using IList<ImageGridData, T>::listUpdate;
using IList<ImageGridData, T>::listInput;
using IList<ImageGridData, T>::listRenderTitleOverlay;
using IList<ImageGridData, T>::getTransform;
using IList<ImageGridData, T>::mSize;
using IList<ImageGridData, T>::mCursor;
using IList<ImageGridData, T>::Entry;
using IList<ImageGridData, T>::mWindow;
public:
using IList<ImageGridData, T>::size;
using IList<ImageGridData, T>::isScrolling;
using IList<ImageGridData, T>::stopScrolling;
ImageGridComponent(Window* window);
void add(const std::string& name, const std::string& imagePath, const T& obj);
void onSizeChanged() override;
bool input(InputConfig* config, Input input) override;
void update(int deltaTime) override;
void render(const Transform4x4f& parentTrans) override;
private:
Vector2f getSquareSize(std::shared_ptr<TextureResource> tex = nullptr) const
{
Vector2f aspect(1, 1);
if(tex)
{
const Vector2i& texSize = tex->getSize();
if(texSize.x() > texSize.y())
aspect[0] = (float)texSize.x() / texSize.y();
else
aspect[1] = (float)texSize.y() / texSize.x();
}
return Vector2f(156 * aspect.x(), 156 * aspect.y());
};
Vector2f getMaxSquareSize() const
{
Vector2f squareSize(32, 32);
// calc biggest square size
for(auto it = mEntries.begin(); it != mEntries.end(); it++)
{
Vector2f chkSize = getSquareSize(it->data.texture);
if(chkSize.x() > squareSize.x())
squareSize[0] = chkSize[0];
if(chkSize.y() > squareSize.y())
squareSize[1] = chkSize[1];
}
return squareSize;
};
Vector2i getGridSize() const
{
Vector2f squareSize = getMaxSquareSize();
Vector2i gridSize(mSize.x() / (squareSize.x() + getPadding().x()), mSize.y() / (squareSize.y() + getPadding().y()));
return gridSize;
};
Vector2f getPadding() const { return Vector2f(24, 24); }
void buildImages();
void updateImages();
virtual void onCursorChanged(const CursorState& state);
bool mEntriesDirty;
std::vector<ImageComponent> mImages;
};
template<typename T>
ImageGridComponent<T>::ImageGridComponent(Window* window) : IList<ImageGridData, T>(window)
{
mEntriesDirty = true;
}
template<typename T>
void ImageGridComponent<T>::add(const std::string& name, const std::string& imagePath, const T& obj)
{
typename IList<ImageGridData, T>::Entry entry;
entry.name = name;
entry.object = obj;
entry.data.texture = ResourceManager::getInstance()->fileExists(imagePath) ? TextureResource::get(imagePath) : TextureResource::get(":/button.png");
static_cast<IList< ImageGridData, T >*>(this)->add(entry);
mEntriesDirty = true;
}
template<typename T>
bool ImageGridComponent<T>::input(InputConfig* config, Input input)
{
if(input.value != 0)
{
Vector2i dir = Vector2i::Zero();
if(config->isMappedTo("up", input))
dir[1] = -1;
else if(config->isMappedTo("down", input))
dir[1] = 1;
else if(config->isMappedTo("left", input))
dir[0] = -1;
else if(config->isMappedTo("right", input))
dir[0] = 1;
if(dir != Vector2i::Zero())
{
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listInput(dir.x() + dir.y() * getGridSize().x());
return true;
}
}else{
if(config->isMappedTo("up", input) || config->isMappedTo("down", input) || config->isMappedTo("left", input) || config->isMappedTo("right", input))
{
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stopScrolling();
}
}
return GuiComponent::input(config, input);
}
template<typename T>
void ImageGridComponent<T>::update(int deltaTime)
{
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listUpdate(deltaTime);
}
template<typename T>
void ImageGridComponent<T>::render(const Transform4x4f& parentTrans)
{
Transform4x4f trans = getTransform() * parentTrans;
if(mEntriesDirty)
{
buildImages();
updateImages();
mEntriesDirty = false;
}
for(auto it = mImages.begin(); it != mImages.end(); it++)
{
it->render(trans);
}
GuiComponent::renderChildren(trans);
}
template<typename T>
void ImageGridComponent<T>::onCursorChanged(const CursorState& state)
{
updateImages();
}
template<typename T>
void ImageGridComponent<T>::onSizeChanged()
{
buildImages();
updateImages();
}
// create and position imagecomponents (mImages)
template<typename T>
void ImageGridComponent<T>::buildImages()
{
mImages.clear();
Vector2i gridSize = getGridSize();
Vector2f squareSize = getMaxSquareSize();
Vector2f padding = getPadding();
// attempt to center within our size
Vector2f totalSize(gridSize.x() * (squareSize.x() + padding.x()), gridSize.y() * (squareSize.y() + padding.y()));
Vector2f offset(mSize.x() - totalSize.x(), mSize.y() - totalSize.y());
offset /= 2;
for(int y = 0; y < gridSize.y(); y++)
{
for(int x = 0; x < gridSize.x(); x++)
{
mImages.push_back(ImageComponent(mWindow));
ImageComponent& image = mImages.at(y * gridSize.x() + x);
image.setPosition((squareSize.x() + padding.x()) * (x + 0.5f) + offset.x(), (squareSize.y() + padding.y()) * (y + 0.5f) + offset.y());
image.setOrigin(0.5f, 0.5f);
image.setResize(squareSize.x(), squareSize.y());
image.setImage("");
}
}
}
template<typename T>
void ImageGridComponent<T>::updateImages()
{
if(mImages.empty())
buildImages();
Vector2i gridSize = getGridSize();
int cursorRow = mCursor / gridSize.x();
int start = (cursorRow - (gridSize.y() / 2)) * gridSize.x();
//if we're at the end put the row as close as we can and no higher
if(start + (gridSize.x() * gridSize.y()) >= (int)mEntries.size())
start = gridSize.x() * ((int)mEntries.size()/gridSize.x() - gridSize.y() + 1);
if(start < 0)
start = 0;
unsigned int i = (unsigned int)start;
for(unsigned int img = 0; img < mImages.size(); img++)
{
ImageComponent& image = mImages.at(img);
if(i >= (unsigned int)size())
{
image.setImage("");
continue;
}
Vector2f squareSize = getSquareSize(mEntries.at(i).data.texture);
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if(i == (unsigned int)mCursor)
{
image.setColorShift(0xFFFFFFFF);
image.setResize(squareSize.x() + getPadding().x() * 0.95f, squareSize.y() + getPadding().y() * 0.95f);
}else{
image.setColorShift(0xAAAAAABB);
image.setResize(squareSize.x(), squareSize.y());
}
image.setImage(mEntries.at(i).data.texture);
i++;
}
}
#endif // ES_CORE_COMPONENTS_IMAGE_GRID_COMPONENT_H