DoorKeeper/include/implem/tyler.inl

51 lines
2 KiB
C++

namespace dk {
///--------------------------------------------------------------------------
///--------------------------------------------------------------------------
template <size_t D>
Tyler<D>::Tyler (const coords& parSize, const coords& parTileSize) :
m_size(parSize),
m_tilesize(parTileSize)
{
assert(m_size.x() > 0 and m_size.y() > 0);
}
///--------------------------------------------------------------------------
///--------------------------------------------------------------------------
template <size_t D>
typename Tyler<D>::coords::value_type Tyler<D>::tiles_count() const {
typename coords::value_type retval = 1;
for (size_t d = 0; d < D; ++d) {
retval *= m_size[d];
}
return retval;
}
///--------------------------------------------------------------------------
///--------------------------------------------------------------------------
template <size_t D>
template <typename T>
Layer<T, D>& Tyler<D>::push_layer (typename Layer<T, D>::streamer_type&& parStreamer) {
auto newLayer = new Layer<T, D>(m_size, m_tilesize, m_tilesize, std::move(parStreamer));
m_layers.push_back(LayerPtr(newLayer));
return *newLayer;
}
///--------------------------------------------------------------------------
///--------------------------------------------------------------------------
template <size_t D>
template <typename T>
Layer<T, D>& Tyler<D>::push_layer (typename Layer<T, D>::streamer_type&& parStreamer, const coords& parSubdiv) {
auto newLayer = new Layer<T, D>(m_size * parSubdiv, m_tilesize / parSubdiv, m_tilesize, std::move(parStreamer));
m_layers.push_back(LayerPtr(newLayer));
return *newLayer;
}
///--------------------------------------------------------------------------
///--------------------------------------------------------------------------
template <size_t D>
void Tyler<D>::preload (const coords& parFrom, const coords& parTo) {
for (auto& layer : m_layers) {
layer->preload(parFrom, parTo);
}
}
} //namespace dk