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authorClaudius "keldu" Holeksa <mail@keldu.de>2026-07-30 22:00:25 +0200
committerClaudius "keldu" Holeksa <mail@keldu.de>2026-07-30 22:00:25 +0200
commita5c654598544f2a33289664ba73a77343d301ce2 (patch)
treef902e06419efc0175aca4c6fd5fc390650724182 /modules/core
parentf8071e48dcafc4ecefcfdaece2feeebe4d7c8bf6 (diff)
parentea3564475a0e8431c553fb34d4b680e05c451c8a (diff)
downloadlibs-lbm-a5c654598544f2a33289664ba73a77343d301ce2.tar.gz
Merge branch 'dev'
Diffstat (limited to 'modules/core')
-rw-r--r--modules/core/c++/fplbm.hpp171
1 files changed, 87 insertions, 84 deletions
diff --git a/modules/core/c++/fplbm.hpp b/modules/core/c++/fplbm.hpp
index 34806aa..cfb0062 100644
--- a/modules/core/c++/fplbm.hpp
+++ b/modules/core/c++/fplbm.hpp
@@ -1,6 +1,8 @@
#pragma once
#include "common.hpp"
+#include "particle/particle.hpp"
+#include "iterator.hpp"
namespace kel {
namespace lbm {
@@ -28,6 +30,24 @@ public:
auto& por = por_f.at(index);
por.at({}) = 1.0;
+
+ auto& force_f = macros.template get<"force">();
+ auto& force = force_f.at(index);
+ for(uint64_t i{0u}; i < Descriptor::D; ++i){
+ force.at({{i}}) = 0.0;
+ }
+
+ bool is_even = ((time_step.get() % 2) == 0);
+
+ auto& dfs_old_f = (is_even) ? field.template get<"dfs_old">() : field.template get<"dfs">();
+ auto& dfs = dfs_old_f.at(index);
+
+ auto& rho_f = macros.template get<"density">();
+ auto& rho = rho_f.at(index);
+ auto& vel_f = macros.template get<"velocity">();
+ auto& vel = vel_f.at(index);
+
+ compute_rho_u<T,Descriptor>(dfs,rho,vel);
}
};
@@ -52,19 +72,18 @@ public:
template<typename CellFieldSchema, typename MacroFieldSchema>
void apply(const saw::data<CellFieldSchema, Encode>& field, const saw::data<MacroFieldSchema,Encode>& macros, saw::data<sch::FixedArray<sch::UInt64,Descriptor::D>> index, saw::data<sch::UInt64> time_step) const {
- // void apply(saw::data<CellFieldSchema, Encode>& field, saw::data<sch::FixedArray<sch::UInt64, Descriptor::D>> index, saw::data<sch::UInt64> time_step){
bool is_even = ((time_step.get() % 2) == 0);
auto& dfs_old_f = (is_even) ? field.template get<"dfs_old">() : field.template get<"dfs">();
auto& dfs = dfs_old_f.at(index);
auto& rho_f = macros.template get<"density">();
- auto& vel_f = macros.template get<"velocity">();
-
saw::data<sch::Scalar<T>>& rho = rho_f.at(index);
+
+ auto& vel_f = macros.template get<"velocity">();
saw::data<sch::Vector<T,Descriptor::D>>& vel = vel_f.at(index);
- compute_rho_u<T,Descriptor>(dfs_old_f.at(index),rho,vel);
+ compute_rho_u<T,Descriptor>(dfs,rho,vel);
auto eq = equilibrium<T,Descriptor>(rho,vel);
using dfi = df_info<T,Descriptor>;
@@ -72,36 +91,34 @@ public:
auto& force_f = macros.template get<"force">();
auto& force = force_f.at(index);
- auto& porosity_f = macros.template get<"porosity">();
- auto& porosity = porosity_f.at(index);
+ auto& por_f = macros.template get<"porosity">();
+ auto& por = por_f.at(index);
saw::data<sch::Scalar<T>> dfi_inv_cs2;
dfi_inv_cs2.at({}).set(dfi::inv_cs2);
- for(uint64_t i = 0u; i < Descriptor::Q; ++i){
- // saw::data<T> ci_min_u{0};
+ for(uint64_t i{0u}; i < Descriptor::Q; ++i){
saw::data<sch::Vector<T,Descriptor::D>> ci;
- for(uint64_t d = 0u; d < Descriptor::D; ++d){
+ for(uint64_t d{0u}; d < Descriptor::D; ++d){
ci.at({{d}}).set(static_cast<typename saw::native_data_type<T>::type>(dfi::directions[i][d]));
}
auto ci_dot_u = saw::math::dot(ci,vel);
- // saw::data<sch::Vector<T,Descriptor::D>> F_i;
- // F_i = f * (c_i - u * ics2 + <c_i,u> * c_i * ics2 * ics2) * w_i;
saw::data<sch::Scalar<T>> w;
w.at({}).set(dfi::weights[i]);
- auto F_i_d = saw::math::dot(force * w, (ci - vel * dfi_inv_cs2 + ci * ci_dot_u * dfi_inv_cs2 * dfi_inv_cs2 ));
- /*
- saw::data<sch::Scalar<T>> F_i_sum;
- for(uint64_t d = 0u; d < Descriptor::D; ++d){
- saw::data<sch::Scalar<T>> F_i_d;
- F_i_d.at({}) = F_i.at({{d}});
- F_i_sum = F_i_sum + F_i_d;
- }
- */
+ auto term1 = (ci-vel) * dfi_inv_cs2;
+ auto term2 = ci * (ci_dot_u * dfi_inv_cs2 * dfi_inv_cs2);
+
+ auto force_projection = saw::math::dot(term1 + term2, force);
- dfs.at({i}) = dfs.at({i}) + frequency_ * (eq.at(i) - dfs.at({i}) ) + F_i_d.at({}) * (saw::data<T>{1} - saw::data<T>{0.5f} * frequency_);
+ auto F_i = w * force_projection;
+
+ dfs.at({i}) = dfs.at({i})
+ + frequency_
+ * (eq.at(i) - dfs.at({i}) )
+ + F_i.at({})
+ * (saw::data<T>{1} - saw::data<T>{0.5f} * frequency_);
}
}
};
@@ -114,91 +131,80 @@ private:
public:
component() = default;
- template<typename CellFieldSchema, typename MacroFieldSchema>
- void apply(const saw::data<CellFieldSchema, Encode>& field, const saw::data<MacroFieldSchema,Encode>& macros, saw::data<sch::FixedArray<sch::UInt64,Descriptor::D>> index, saw::data<sch::UInt64> time_step) const {
+ template<typename CellFieldSchema, typename MacroFieldSchema, typename ParticleSchema>
+ void apply(const saw::data<CellFieldSchema, Encode>& field, const saw::data<MacroFieldSchema,Encode>& macros, const saw::data<ParticleSchema,Encode>& pg, saw::data<sch::FixedArray<sch::UInt64,1u>> index, saw::data<sch::UInt64> time_step, saw::data<sch::UInt64> sub_steps) const {
// void apply(saw::data<CellFieldSchema, Encode>& field, saw::data<sch::FixedArray<sch::UInt64, Descriptor::D>> index, saw::data<sch::UInt64> time_step){
bool is_even = ((time_step.get() % 2) == 0);
- auto& dfs_old_f = (is_even) ? field.template get<"dfs_old">() : field.template get<"dfs">();
- auto& dfs = dfs_old_f.at(index);
+ //auto& dfs_old_f = (is_even) ? field.template get<"dfs_old">() : field.template get<"dfs">();
+ // auto& dfs = dfs_old_f.at(index);
auto& rho_f = macros.template get<"density">();
auto& vel_f = macros.template get<"velocity">();
auto& por_f = macros.template get<"porosity">();
-
- // Temporary find a better way
auto& force_f = macros.template get<"force">();
-
/**
* The other methods all work with a flipped porosity.
* For compat reasons this is also flipped
*/
- auto porosity = por_f.at(index);
- saw::data<sch::Scalar<T>> one;
- one.at({}) = 1.0;
- auto flip_porosity = one - porosity;
+ // TODO - Change to tuple later
+ auto parts = pg.template get<"particles">();
+
+ auto parts_size = parts.meta().at({0u});
+ auto& pi = parts.at(index);
+
+ auto& pirb = pi.template get<"rigid_body">();
+ auto& pirb_pos = pirb.template get<"position">();
+ auto& pirb_pos_old = pirb.template get<"position_old">();
+
+ saw::data<sch::Scalar<T>> sss;
+ sss.at({}) = sub_steps.template cast_to<T>();
+ auto vel_s = (pirb_pos-pirb_pos_old) / sss;
+
+ auto& p_coll = pg.template get<"collision">().at({});
+ auto& p_rad = p_coll.template get<"radius">();
+
+ auto eo_aabb = particle_aabb<typename ParticleSchema::ValueType>::calculate(pg,{{0u}},vel_f.meta());
+ if(eo_aabb.is_error()){
+ return;
+ }
+ auto& aabb = eo_aabb.get_value();
- saw::data<sch::Scalar<T>>& rho = rho_f.at(index);
+ saw::data<sch::Scalar<T>> two;
+ two.at({}).set(2);
- saw::data<sch::Scalar<T>> half;
- half.at({}).set(0.5);
- saw::data<sch::Vector<T,Descriptor::D>>& vel = vel_f.at(index);// + total_force * ( half / rho );
+ saw::data<sch::Scalar<T>> one;
+ one.at({}) = 1.0;
+
+ saw::data<sch::Scalar<T>> eps;
+ eps.at({}) = 1.5f;
- compute_rho_u<T,Descriptor>(dfs_old_f.at(index),rho,vel);
- auto eq = equilibrium<T,Descriptor>(rho,vel);
+ saw::data<sch::Vector<T,Descriptor::D>> force_p;
- using dfi = df_info<T,Descriptor>;
+ iterator<Descriptor::D>::apply([&](const auto& index_f) -> void {
+ auto& force = force_f.at(index_f);
+ auto& vel = vel_f.at(index_f);
+ auto& por = por_f.at(index_f);
+ auto& rho = rho_f.at(index_f);
- saw::data<sch::Scalar<T>> min_two;
- min_two.at({}).set(-2);
+ saw::data<sch::Vector<T,Descriptor::D>> rel_dist = saw::math::vectorize_data(index_f).template cast_to<T>() - pirb_pos;
- // Maybe ?
- auto& force = force_f.at(index);
- force = vel * rho * min_two * flip_porosity;
+ por = particle_porosity<T,Descriptor::D,1u,por::ParticleSpheroid<T>>::calculate(rel_dist,p_rad,eps);
+ auto flip_por = one - por;
- saw::data<sch::Scalar<T>> dfi_inv_cs2;
- dfi_inv_cs2.at({}).set(dfi::inv_cs2);
+ force = ( vel_s * rho - vel * rho ) * two * flip_por;
- // auto vel = vel_f.at(index);
+ force_p = force_p + force;
+ }, aabb.template get<"a">(), aabb.template get<"b">());
- for(uint64_t i = 0u; i < Descriptor::Q; ++i){
- // saw::data<T> ci_min_u{0};
- saw::data<sch::Vector<T,Descriptor::D>> ci;
- for(uint64_t d = 0u; d < Descriptor::D; ++d){
- ci.at({{d}}).set(static_cast<typename saw::native_data_type<T>::type>(dfi::directions[i][d]));
- }
- auto ci_dot_u = saw::math::dot(ci,vel);
+ auto& pirb_acc = pirb.template get<"acceleration">();
+ pirb_acc = - force_p / pg.template get<"total_mass">().at({});
- // saw::data<sch::Vector<T,Descriptor::D>> F_i;
- // F_i = f * ((c_i - u) * ics2 + <c_i,u> * c_i * ics2 * ics2) * w_i;
- saw::data<sch::Scalar<T>> w;
- w.at({}).set(dfi::weights[i]);
-
- /*
- saw::data<sch::Scalar<T>> F_i_sum;
- for(uint64_t d = 0u; d < Descriptor::D; ++d){
- saw::data<sch::Scalar<T>> F_i_d;
- F_i_d.at({}) = F_i.at({{d}});
- F_i_sum = F_i_sum + F_i_d;
- }
- */
- auto term1 = (ci-vel) * dfi_inv_cs2;
- auto term2 = ci * (ci_dot_u * dfi_inv_cs2 * dfi_inv_cs2);
-
- auto force_projection = saw::math::dot(term1 + term2, force);
-
- auto F_i = w * force_projection;
-
- dfs.at({i}) = dfs.at({i})
- + frequency_
- * (eq.at(i) - dfs.at({i}) )
- + F_i.at({})
- * (saw::data<T>{1} - saw::data<T>{0.5f} * frequency_);
+ for(saw::data<sch::UInt64> i{0u}; i < sub_steps; ++i){
+ verlet_step_lambda<T,Descriptor::D>(pi,sss);
}
}
-
-
};
template<typename T, typename Descriptor, typename Encode>
@@ -258,15 +264,12 @@ public:
saw::data<sch::Scalar<T>> min_two;
min_two.at({}).set(-2);
- // Maybe ?
auto& force = force_f.at(index);
force = vel * rho * min_two * flip_porosity;
saw::data<sch::Scalar<T>> dfi_inv_cs2;
dfi_inv_cs2.at({}).set(dfi::inv_cs2);
- // auto vel = vel_f.at(index);
-
for(uint64_t i = 0u; i < Descriptor::Q; ++i){
// saw::data<T> ci_min_u{0};
saw::data<sch::Vector<T,Descriptor::D>> ci;