#pragma once #include <forstio/codec/data.hpp> #include <forstio/codec/schema_factory.hpp> namespace kel { namespace lbm { namespace sch { using namespace saw::schema; template<uint64_t DV, uint64_t QV> struct Descriptor { static constexpr uint64_t D = DV; static constexpr uint64_t Q = QV; }; template<typename Sch, typename Desc, uint64_t SC_V, uint64_t DC_V, uint64_t QC_V> struct Cell { using Descriptor = Desc; static constexpr uint64_t SC = SC_V; static constexpr uint64_t DC = DC_V; static constexpr uint64_t QC = QC_V; static constexpr uint64_t Size = SC + Desc::D * DC + Desc::Q * QC; }; template<typename Desc, typename Cell> struct CellField; template<typename Desc, typename... CellFieldTypes, saw::string_literal... CellFieldNames> struct CellField< Desc, Struct< Member<CellFieldTypes, CellFieldNames>... > >; } template<typename T, typename Desc> class df_info{}; template<typename T> class df_info<T,sch::Descriptor<1,3>> { public: using Descriptor = sch::Descriptor<1,3>; static constexpr uint64_t D = 1u; static constexpr uint64_t Q = 3u; static constexpr std::array<std::array<int32_t,D>,Q> directions = {{ { 0}, {-1}, { 1} }}; static constexpr std::array<typename saw::native_data_type<T>::type, Q> weights = { 2./3., 1./6., 1./6. }; static constexpr std::array<uint64_t,Q> opposite_index = { 0,2,1 }; static constexpr typename saw::native_data_type<T>::type inv_cs2 = 3.0; static constexpr typename saw::native_data_type<T>::type cs2 = 1./3.; }; /** * D2Q5 Descriptor */ template<typename T> class df_info<T,sch::Descriptor<2, 5>> { public: using Descriptor = sch::Descriptor<2,5>; static constexpr uint64_t D = 2u; static constexpr uint64_t Q = 5u; static constexpr std::array<std::array<int32_t, D>, Q> directions = {{ { 0, 0}, {-1, 0}, { 1, 0}, { 0,-1}, { 0, 1}, }}; static constexpr std::array<typename saw::native_data_type<T>::type,Q> weights = { 1./3., 1./6., 1./6., 1./6., 1./6. }; static constexpr std::array<uint64_t,Q> opposite_index = { 0, 2, 1, 4, 3 }; static constexpr typename saw::native_data_type<T>::type inv_cs2 = 3.0; static constexpr typename saw::native_data_type<T>::type cs2 = 1./3.; }; template<typename T> class df_info<T,sch::Descriptor<2, 9>> { public: using Descriptor = sch::Descriptor<2,9>; static constexpr uint64_t D = 2u; static constexpr uint64_t Q = 9u; static constexpr std::array<std::array<int32_t, D>, Q> directions = {{ { 0, 0}, {-1, 0}, { 1, 0}, { 0,-1}, { 0, 1}, {-1,-1}, { 1, 1}, {-1, 1}, { 1,-1} }}; static constexpr std::array<typename saw::native_data_type<T>::type,Q> weights = { 4./9., 1./9., 1./9., 1./9., 1./9., 1./36., 1./36., 1./36., 1./36. }; static constexpr std::array<uint64_t,Q> opposite_index = { 0, 2, 1, 4, 3, 6, 5, 8, 7 }; static constexpr typename saw::native_data_type<T>::type inv_cs2 = 3.0; static constexpr typename saw::native_data_type<T>::type cs2 = 1./3.; }; template<typename Schema> class cell_schema_builder { private: saw::schema_factory<Schema> factory_struct_; public: cell_schema_builder() = default; cell_schema_builder(saw::schema_factory<Schema> inp): factory_struct_{inp} {} /* template<typename TA, saw::string_literal KA> constexpr auto require() const noexcept { return {factory_struct_.add_maybe()}; } */ }; } } namespace saw { template<typename T, typename Desc, uint64_t S, uint64_t D, uint64_t Q> struct meta_schema<kel::lbm::sch::Cell<T,Desc,S,D,Q>> { using MetaSchema = schema::Void; using Schema = kel::lbm::sch::Cell<T,Desc,S,D,Q>; }; template<typename Desc, typename CellT> struct meta_schema<kel::lbm::sch::CellField<Desc, CellT>> { using MetaSchema = schema::FixedArray<schema::UInt64,Desc::D>; using Schema = kel::lbm::sch::CellField<Desc, CellT>; }; template<typename Sch, typename Desc, uint64_t S, uint64_t D, uint64_t Q, typename Encode> class data<kel::lbm::sch::Cell<Sch, Desc, S, D, Q>, Encode> final { public: using Schema = kel::lbm::sch::Cell<Sch,Desc,S,D,Q>; using MetaSchema = typename meta_schema<Schema>::MetaSchema; private: data<schema::FixedArray<Sch, Schema::Size>, Encode> inner_; public: data() = default; data<Sch, Encode>& operator()(const data<schema::UInt64>& index){ return inner_.at(index); } const data<Sch, Encode>& operator()(const data<schema::UInt64>& index)const{ return inner_.at(index); } }; template<typename Desc, typename CellT, typename Encode> class data<kel::lbm::sch::CellField<Desc, CellT>, Encode> final { public: using Schema = kel::lbm::sch::CellField<Desc,CellT>; using MetaSchema = typename meta_schema<Schema>::MetaSchema; private: data<schema::Array<CellT,Desc::D>, Encode> inner_; public: data() = default; data(const data<MetaSchema,Encode>& inner_meta__): inner_{inner_meta__} {} const data<MetaSchema, Encode> meta() const { return inner_.get_dims(); } template<uint64_t i> data<schema::UInt64,Encode> get_dim_size() const { static_assert(i < Desc::D, "Not enough dimensions"); return inner_.template get_dim_size<i>(); } const data<CellT>& operator()(const data<schema::FixedArray<schema::UInt64, Desc::D>, Encode>& index)const{ return inner_.at(index); } data<CellT>& operator()(const data<schema::FixedArray<schema::UInt64, Desc::D>, Encode>& index){ return inner_.at(index); } }; }