WarpX
WarpXParticleContainer.H
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1 /* Copyright 2019-2020 Andrew Myers, Axel Huebl, David Grote
2  * Jean-Luc Vay, Junmin Gu, Luca Fedeli
3  * Maxence Thevenet, Remi Lehe, Revathi Jambunathan
4  * Weiqun Zhang, Yinjian Zhao
5  *
6  * This file is part of WarpX.
7  *
8  * License: BSD-3-Clause-LBNL
9  */
10 #ifndef WARPX_WarpXParticleContainer_H_
11 #define WARPX_WarpXParticleContainer_H_
12 
14 
15 #include "Evolve/WarpXDtType.H"
19 
20 #ifdef WARPX_QED
23 #endif
26 
27 #include <AMReX_Array.H>
28 #include <AMReX_FArrayBox.H>
29 #include <AMReX_GpuAllocators.H>
30 #include <AMReX_GpuContainers.H>
31 #include <AMReX_INT.H>
32 #include <AMReX_ParIter.H>
33 #include <AMReX_Particles.H>
34 #include <AMReX_Random.H>
35 #include <AMReX_REAL.H>
36 #include <AMReX_StructOfArrays.H>
37 #include <AMReX_Vector.H>
38 
39 #include <AMReX_BaseFwd.H>
40 #include <AMReX_AmrCoreFwd.H>
41 
42 #include <array>
43 #include <iosfwd>
44 #include <map>
45 #include <memory>
46 #include <string>
47 #include <utility>
48 
49 using namespace amrex::literals;
50 
52  : public amrex::ParIter<0,0,PIdx::nattribs>
53 {
54 public:
56 
57  WarpXParIter (ContainerType& pc, int level);
58 
59  WarpXParIter (ContainerType& pc, int level, amrex::MFItInfo& info);
60 
61  const std::array<RealVector, PIdx::nattribs>& GetAttribs () const {
62  return GetStructOfArrays().GetRealData();
63  }
64 
65  std::array<RealVector, PIdx::nattribs>& GetAttribs () {
66  return GetStructOfArrays().GetRealData();
67  }
68 
69  const RealVector& GetAttribs (int comp) const {
70  return GetStructOfArrays().GetRealData(comp);
71  }
72 
73  RealVector& GetAttribs (int comp) {
74  return GetStructOfArrays().GetRealData(comp);
75  }
76 
77  IntVector& GetiAttribs (int comp) {
78  return GetStructOfArrays().GetIntData(comp);
79  }
80 };
81 
104  : public NamedComponentParticleContainer<amrex::DefaultAllocator>
105 {
106 public:
108 
109  // amrex::StructOfArrays with DiagIdx::nattribs amrex::ParticleReal components
110  // and 0 int components for the particle data.
112  // DiagnosticParticles is a vector, with one element per MR level.
113  // DiagnosticParticles[lev] is typically a key-value pair where the key is
114  // a pair [grid_index, tile_index], and the value is the corresponding
115  // DiagnosticParticleData (see above) on this tile.
117 
118  WarpXParticleContainer (amrex::AmrCore* amr_core, int ispecies);
120 
121  virtual void InitData () = 0;
122 
123  virtual void InitIonizationModule () {}
124 
125  /*
126  * \brief Virtual function that returns a pointer to the plasma injector,
127  * for derived classes that define one (PhysicalParticleContainer).
128  */
129  virtual PlasmaInjector* GetPlasmaInjector () { return nullptr; }
130 
136  virtual void Evolve (int lev,
137  const amrex::MultiFab& Ex, const amrex::MultiFab& Ey, const amrex::MultiFab& Ez,
138  const amrex::MultiFab& Bx, const amrex::MultiFab& By, const amrex::MultiFab& Bz,
141  amrex::MultiFab* rho, amrex::MultiFab* crho,
142  const amrex::MultiFab* cEx, const amrex::MultiFab* cEy, const amrex::MultiFab* cEz,
143  const amrex::MultiFab* cBx, const amrex::MultiFab* cBy, const amrex::MultiFab* cBz,
144  amrex::Real t, amrex::Real dt, DtType a_dt_type=DtType::Full, bool skip_deposition=false) = 0;
145 
146  virtual void PostRestart () = 0;
147 
148  void AllocData ();
149 
156  NArrayReal, NArrayInt,
157  amrex::PinnedArenaAllocator>& pinned_tile,
158  const int n_external_attr_real,
159  const int n_external_attr_int,
160  const amrex::RandomEngine& engine) = 0;
161 
167  void PushX ( amrex::Real dt);
168  void PushX (int lev, amrex::Real dt);
169 
173  virtual void PushP (int lev, amrex::Real dt,
174  const amrex::MultiFab& Ex,
175  const amrex::MultiFab& Ey,
176  const amrex::MultiFab& Ez,
177  const amrex::MultiFab& Bx,
178  const amrex::MultiFab& By,
179  const amrex::MultiFab& Bz) = 0;
180 
192  void DepositCurrent (amrex::Vector<std::array< std::unique_ptr<amrex::MultiFab>, 3 > >& J,
193  const amrex::Real dt, const amrex::Real relative_time);
194 
205  void DepositCharge (amrex::Vector<std::unique_ptr<amrex::MultiFab> >& rho,
206  const bool local = false, const bool reset = false,
207  const bool apply_boundary_and_scale_volume = false,
208  const bool interpolate_across_levels = true,
209  const int icomp = 0);
210 
211  std::unique_ptr<amrex::MultiFab> GetChargeDensity(int lev, bool local = false);
212 
213  virtual void DepositCharge (WarpXParIter& pti,
214  RealVector const & wp,
215  const int * const ion_lev,
216  amrex::MultiFab* rho,
217  const int icomp,
218  const long offset,
219  const long np_to_depose,
220  const int thread_num,
221  const int lev,
222  const int depos_lev);
223 
224  virtual void DepositCurrent (WarpXParIter& pti,
225  RealVector const & wp,
226  RealVector const & uxp,
227  RealVector const & uyp,
228  RealVector const & uzp,
229  int const * const ion_lev,
230  amrex::MultiFab* const jx,
231  amrex::MultiFab* const jy,
232  amrex::MultiFab* const jz,
233  long const offset,
234  long const np_to_depose,
235  int const thread_num,
236  int const lev,
237  int const depos_lev,
238  amrex::Real const dt,
239  amrex::Real const relative_time);
240 
241  // If particles start outside of the domain, ContinuousInjection
242  // makes sure that they are initialized when they enter the domain, and
243  // NOT before. Virtual function, overriden by derived classes.
244  // Current status:
245  // PhysicalParticleContainer: implemented.
246  // LaserParticleContainer: implemented.
247  // RigidInjectedParticleContainer: not implemented.
248  virtual void ContinuousInjection(const amrex::RealBox& /*injection_box*/) {}
249  // Update optional sub-class-specific injection location.
250  virtual void UpdateContinuousInjectionPosition(amrex::Real /*dt*/) {}
251  bool doContinuousInjection() const {return do_continuous_injection;}
252 
253  // Inject a continuous flux of particles from a defined plane
254  virtual void ContinuousFluxInjection(amrex::Real /*t*/, amrex::Real /*dt*/) {}
255 
256  int getSpeciesId() const {return species_id;}
257 
262  amrex::ParticleReal sumParticleCharge(bool local = false);
263 
264  std::array<amrex::ParticleReal, 3> meanParticleVelocity(bool local = false);
265 
266  amrex::ParticleReal maxParticleVelocity(bool local = false);
267 
292  void AddNParticles (int lev,
293  int n, const amrex::ParticleReal* x, const amrex::ParticleReal* y, const amrex::ParticleReal* z,
294  const amrex::ParticleReal* ux, const amrex::ParticleReal* uy, const amrex::ParticleReal* uz,
295  const int nattr_real, const amrex::ParticleReal* attr_real,
296  const int nattr_int, const int* attr_int,
297  int uniqueparticles, amrex::Long id=-1);
298 
299  virtual void ReadHeader (std::istream& is) = 0;
300 
301  virtual void WriteHeader (std::ostream& os) const = 0;
302 
303  static void ReadParameters ();
304 
305  static void BackwardCompatibility ();
306 
309  void ApplyBoundaryConditions ();
310 
311  bool do_splitting = false;
312  int do_not_deposit = 0;
313  bool initialize_self_fields = false;
314  amrex::Real self_fields_required_precision = amrex::Real(1.e-11);
315  amrex::Real self_fields_absolute_tolerance = amrex::Real(0.0);
316  int self_fields_max_iters = 200;
317  int self_fields_verbosity = 2;
318 
321 
322  // split along diagonals (0) or axes (1)
323  int split_type = 0;
324 
329  void SetDoBackTransformedParticles(const bool do_back_transformed_particles) {
330  m_do_back_transformed_particles = do_back_transformed_particles;
331  }
332 
333  //amrex::Real getCharge () {return charge;}
334  amrex::ParticleReal getCharge () const {return charge;}
335  //amrex::Real getMass () {return mass;}
336  amrex::ParticleReal getMass () const {return mass;}
337 
338  int DoFieldIonization() const { return do_field_ionization; }
339 
340 #ifdef WARPX_QED
341  //Species for which QED effects are relevant should override these methods
342  virtual bool has_quantum_sync() const {return false;}
343  virtual bool has_breit_wheeler() const {return false;}
344 
345  int DoQED() const { return has_quantum_sync() || has_breit_wheeler(); }
346 #else
347  int DoQED() const { return false; }
348 #endif
349 
350  /* \brief This function tests if the current species
351  * is of a given PhysicalSpecies (specified as a template parameter).
352  * @tparam PhysSpec the PhysicalSpecies to test against
353  * @return the result of the test
354  */
355  template<PhysicalSpecies PhysSpec>
356  bool AmIA () const noexcept {return (physical_species == PhysSpec);}
357 
361  std::string getSpeciesTypeName () const {return species::get_name(physical_species);}
362 
369  virtual void resample (const int /*timestep*/) {}
370 
377  void defineAllParticleTiles () noexcept;
378 
379 protected:
380  int species_id;
381 
382  amrex::ParticleReal charge;
383  amrex::ParticleReal mass;
384  PhysicalSpecies physical_species;
385 
386  // Controls boundaries for particles exiting the domain
387  ParticleBoundaries m_boundary_conditions;
388 
390  bool m_deposit_on_main_grid = false;
391 
393  bool m_gather_from_main_grid = false;
394 
395  int do_not_push = 0;
396  int do_not_gather = 0;
397 
398  // Whether to allow particles outside of the simulation domain to be
399  // initialized when they enter the domain.
400  // This is currently required because continuous injection does not
401  // support all features allowed by direct injection.
402  int do_continuous_injection = 0;
403 
404  int do_field_ionization = 0;
405  int ionization_product;
406  std::string ionization_product_name;
407  int ion_atomic_number;
408  int ionization_initial_level = 0;
409  amrex::Gpu::DeviceVector<amrex::Real> ionization_energies;
410  amrex::Gpu::DeviceVector<amrex::Real> adk_power;
411  amrex::Gpu::DeviceVector<amrex::Real> adk_prefactor;
412  amrex::Gpu::DeviceVector<amrex::Real> adk_exp_prefactor;
413  std::string physical_element;
414 
415  int do_resampling = 0;
416 
418  bool m_do_back_transformed_particles = false;
419 
420 #ifdef WARPX_QED
421  //Species can receive a shared pointer to a QED engine (species for
422  //which this is relevant should override these functions)
423  virtual void
424  set_breit_wheeler_engine_ptr(std::shared_ptr<BreitWheelerEngine>){}
425  virtual void
426  set_quantum_sync_engine_ptr(std::shared_ptr<QuantumSynchrotronEngine>){}
427 
434 
435 #endif
440 
441 public:
442  using PairIndex = std::pair<int, int>;
443  using TmpParticleTile = std::array<amrex::Gpu::DeviceVector<amrex::ParticleReal>,
446 
447  TmpParticles getTmpParticleData () const noexcept {return tmp_particle_data;}
448 protected:
450 
451 private:
452  virtual void particlePostLocate(ParticleType& p, const amrex::ParticleLocData& pld,
453  const int lev) override;
454 
455 };
456 
457 #endif
PhysicalSpecies
Definition: SpeciesPhysicalProperties.H:16
DtType
Definition: WarpXDtType.H:11
Definition: NamedComponentParticleContainer.H:47
Definition: PlasmaInjector.H:41
Definition: WarpXParticleContainer.H:53
std::array< RealVector, PIdx::nattribs > & GetAttribs()
Definition: WarpXParticleContainer.H:65
const RealVector & GetAttribs(int comp) const
Definition: WarpXParticleContainer.H:69
IntVector & GetiAttribs(int comp)
Definition: WarpXParticleContainer.H:77
RealVector & GetAttribs(int comp)
Definition: WarpXParticleContainer.H:73
const std::array< RealVector, PIdx::nattribs > & GetAttribs() const
Definition: WarpXParticleContainer.H:61
Definition: WarpXParticleContainer.H:105
bool AmIA() const noexcept
Definition: WarpXParticleContainer.H:356
virtual void PostRestart()=0
virtual void ReadHeader(std::istream &is)=0
virtual void Evolve(int lev, const amrex::MultiFab &Ex, const amrex::MultiFab &Ey, const amrex::MultiFab &Ez, const amrex::MultiFab &Bx, const amrex::MultiFab &By, const amrex::MultiFab &Bz, amrex::MultiFab &jx, amrex::MultiFab &jy, amrex::MultiFab &jz, amrex::MultiFab *cjx, amrex::MultiFab *cjy, amrex::MultiFab *cjz, amrex::MultiFab *rho, amrex::MultiFab *crho, const amrex::MultiFab *cEx, const amrex::MultiFab *cEy, const amrex::MultiFab *cEz, const amrex::MultiFab *cBx, const amrex::MultiFab *cBy, const amrex::MultiFab *cBz, amrex::Real t, amrex::Real dt, DtType a_dt_type=DtType::Full, bool skip_deposition=false)=0
amrex::Real m_current_injection_position
Current injection position.
Definition: WarpXParticleContainer.H:320
std::string m_qed_breit_wheeler_ele_product_name
Definition: WarpXParticleContainer.H:429
virtual void WriteHeader(std::ostream &os) const =0
virtual void set_quantum_sync_engine_ptr(std::shared_ptr< QuantumSynchrotronEngine >)
Definition: WarpXParticleContainer.H:426
virtual void ContinuousFluxInjection(amrex::Real, amrex::Real)
Definition: WarpXParticleContainer.H:254
std::string getSpeciesTypeName() const
This function returns a string containing the name of the species type.
Definition: WarpXParticleContainer.H:361
int m_qed_quantum_sync_phot_product
Definition: WarpXParticleContainer.H:432
virtual void InitIonizationModule()
Definition: WarpXParticleContainer.H:123
virtual void InitData()=0
void SetDoBackTransformedParticles(const bool do_back_transformed_particles)
Definition: WarpXParticleContainer.H:329
amrex::Vector< amrex::FArrayBox > local_jx
Definition: WarpXParticleContainer.H:437
bool doContinuousInjection() const
Definition: WarpXParticleContainer.H:251
amrex::Vector< amrex::FArrayBox > local_jy
Definition: WarpXParticleContainer.H:438
std::array< amrex::Gpu::DeviceVector< amrex::ParticleReal >, TmpIdx::nattribs > TmpParticleTile
Definition: WarpXParticleContainer.H:444
virtual ~WarpXParticleContainer()
Definition: WarpXParticleContainer.H:119
amrex::Vector< amrex::FArrayBox > local_jz
Definition: WarpXParticleContainer.H:439
virtual void resample(const int)
Virtual method to resample the species. Overriden by PhysicalParticleContainer only....
Definition: WarpXParticleContainer.H:369
amrex::ParticleReal getCharge() const
Definition: WarpXParticleContainer.H:334
TmpParticles tmp_particle_data
Definition: WarpXParticleContainer.H:449
virtual void set_breit_wheeler_engine_ptr(std::shared_ptr< BreitWheelerEngine >)
Definition: WarpXParticleContainer.H:424
virtual bool has_breit_wheeler() const
Definition: WarpXParticleContainer.H:343
virtual void PushP(int lev, amrex::Real dt, const amrex::MultiFab &Ex, const amrex::MultiFab &Ey, const amrex::MultiFab &Ez, const amrex::MultiFab &Bx, const amrex::MultiFab &By, const amrex::MultiFab &Bz)=0
virtual void UpdateContinuousInjectionPosition(amrex::Real)
Definition: WarpXParticleContainer.H:250
std::string m_qed_breit_wheeler_pos_product_name
Definition: WarpXParticleContainer.H:431
std::string m_qed_quantum_sync_phot_product_name
Definition: WarpXParticleContainer.H:433
virtual void ContinuousInjection(const amrex::RealBox &)
Definition: WarpXParticleContainer.H:248
int m_qed_breit_wheeler_pos_product
Definition: WarpXParticleContainer.H:430
int m_qed_breit_wheeler_ele_product
Definition: WarpXParticleContainer.H:428
virtual void DefaultInitializeRuntimeAttributes(amrex::ParticleTile< amrex::Particle< NStructReal, NStructInt >, NArrayReal, NArrayInt, amrex::PinnedArenaAllocator > &pinned_tile, const int n_external_attr_real, const int n_external_attr_int, const amrex::RandomEngine &engine)=0
Virtual method to initialize runtime attributes. Must be overriden by each derived class.
virtual bool has_quantum_sync() const
Definition: WarpXParticleContainer.H:342
TmpParticles getTmpParticleData() const noexcept
Definition: WarpXParticleContainer.H:447
friend MultiParticleContainer
Definition: WarpXParticleContainer.H:107
virtual PlasmaInjector * GetPlasmaInjector()
Definition: WarpXParticleContainer.H:129
int getSpeciesId() const
Definition: WarpXParticleContainer.H:256
int DoFieldIonization() const
Definition: WarpXParticleContainer.H:338
amrex::ParticleReal getMass() const
Definition: WarpXParticleContainer.H:336
int DoQED() const
Definition: WarpXParticleContainer.H:345
static void BackwardCompatibility()
amrex::Vector< amrex::FArrayBox > local_rho
Definition: WarpXParticleContainer.H:436
std::pair< int, int > PairIndex
Definition: WarpXParticleContainer.H:442
typename SoA::RealVector RealVector
typename SoA::IntVector IntVector
typename SoA::RealVector RealVector
PODVector< T, ArenaAllocator< T > > DeviceVector
int n
Definition: run_libensemble_on_warpx.py:70
std::string get_name(const PhysicalSpecies &ps)
Returns the name associated to a PhysicalSpecies.
Definition: SpeciesPhysicalProperties.cpp:294
int dt
Definition: stencil.py:440
Definition: ParticleBoundaries.H:19
@ nattribs
Definition: WarpXParticleContainer_fwd.H:39