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KratosMultiphysics.Communicator
KratosMultiphysics.Communicator = class Communicator(pybind11_builtins.pybind11_object)
Method resolution order:
[Communicator](KratosMultiphysics.Communicator)
pybind11_builtins.pybind11_object
[builtins.object](builtins.html#object)
Methods defined here:
AssembleCurrentData(...)
`AssembleCurrentData(*args, **kwargs)
Overloaded function.
1. AssembleCurrentData(self: Kratos.Communicator, arg0: Kratos.IntegerVariable) -> bool
2. AssembleCurrentData(self: Kratos.Communicator, arg0: Kratos.DoubleVariable) -> bool
3. AssembleCurrentData(self: Kratos.Communicator, arg0: Kratos.Array1DVariable3) -> bool
4. AssembleCurrentData(self: Kratos.Communicator, arg0: Kratos.VectorVariable) -> bool
5. AssembleCurrentData(self: Kratos.Communicator, arg0: Kratos.MatrixVariable) -> bool`
AssembleNonHistoricalData(...)
`AssembleNonHistoricalData(*args, **kwargs)
Overloaded function.
1. AssembleNonHistoricalData(self: Kratos.Communicator, arg0: Kratos.IntegerVariable) -> bool
2. AssembleNonHistoricalData(self: Kratos.Communicator, arg0: Kratos.DoubleVariable) -> bool
3. AssembleNonHistoricalData(self: Kratos.Communicator, arg0: Kratos.Array1DVariable3) -> bool
4. AssembleNonHistoricalData(self: Kratos.Communicator, arg0: Kratos.VectorVariable) -> bool
5. AssembleNonHistoricalData(self: Kratos.Communicator, arg0: Kratos.MatrixVariable) -> bool`
Barrier(...)
Barrier(self: Kratos.Communicator) -> None
GetNumberOfColors(...)
GetNumberOfColors(self: Kratos.Communicator) -> int
GhostMesh(...)
`GhostMesh(*args, **kwargs)
Overloaded function.
1. GhostMesh(self: Kratos.Communicator) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>
2. GhostMesh(self: Kratos.Communicator, arg0: int) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>`
InterfaceMesh(...)
`InterfaceMesh(*args, **kwargs)
Overloaded function.
1. InterfaceMesh(self: Kratos.Communicator) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>
2. InterfaceMesh(self: Kratos.Communicator, arg0: int) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>`
LocalMesh(...)
`LocalMesh(*args, **kwargs)
Overloaded function.
1. LocalMesh(self: Kratos.Communicator) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>
2. LocalMesh(self: Kratos.Communicator, arg0: int) -> Kratos::Mesh<Kratos::Node<3ul, Kratos::Dof >, Kratos::Properties, Kratos::Element, Kratos::Condition>`
MaxAll(...)
`MaxAll(*args, **kwargs)
Overloaded function.
1. MaxAll(self: Kratos.Communicator, arg0: int) -> int
2. MaxAll(self: Kratos.Communicator, arg0: float) -> float`
MinAll(...)
`MinAll(*args, **kwargs)
Overloaded function.
1. MinAll(self: Kratos.Communicator, arg0: int) -> int
2. MinAll(self: Kratos.Communicator, arg0: float) -> float`
MyPID(...)
MyPID(self: Kratos.Communicator) -> int
NeighbourIndices(...)
NeighbourIndices(self: Kratos.Communicator) -> boost::numeric::ublas::vector<int, boost::numeric::ublas::unbounded_array<int, std::allocator<int> > >
ScanSum(...)
`ScanSum(*args, **kwargs)
Overloaded function.
1. ScanSum(self: Kratos.Communicator, arg0: int, arg1: int) -> int
2. ScanSum(self: Kratos.Communicator, arg0: float, arg1: float) -> float`
SumAll(...)
`SumAll(*args, **kwargs)
Overloaded function.
1. SumAll(self: Kratos.Communicator, arg0: int) -> int
2. SumAll(self: Kratos.Communicator, arg0: float) -> float
3. SumAll(self: Kratos.Communicator, arg0: Kratos.Array3) -> Kratos.Array3`
SynchronizeDofs(...)
SynchronizeDofs(self: Kratos.Communicator) -> bool
SynchronizeNodalSolutionStepsData(...)
SynchronizeNodalSolutionStepsData(self: Kratos.Communicator) -> bool
SynchronizeNonHistoricalVariable(...)
`SynchronizeNonHistoricalVariable(*args, **kwargs)
Overloaded function.
1. SynchronizeNonHistoricalVariable(self: Kratos.Communicator, arg0: Kratos.IntegerVariable) -> bool
2. SynchronizeNonHistoricalVariable(self: Kratos.Communicator, arg0: Kratos.DoubleVariable) -> bool
3. SynchronizeNonHistoricalVariable(self: Kratos.Communicator, arg0: Kratos.Array1DVariable3) -> bool
4. SynchronizeNonHistoricalVariable(self: Kratos.Communicator, arg0: Kratos.VectorVariable) -> bool
5. SynchronizeNonHistoricalVariable(self: Kratos.Communicator, arg0: Kratos.MatrixVariable) -> bool`
SynchronizeVariable(...)
`SynchronizeVariable(*args, **kwargs)
Overloaded function.
1. SynchronizeVariable(self: Kratos.Communicator, arg0: Kratos.IntegerVariable) -> bool
2. SynchronizeVariable(self: Kratos.Communicator, arg0: Kratos.DoubleVariable) -> bool
3. SynchronizeVariable(self: Kratos.Communicator, arg0: Kratos.Array1DVariable3) -> bool
4. SynchronizeVariable(self: Kratos.Communicator, arg0: Kratos.VectorVariable) -> bool
5. SynchronizeVariable(self: Kratos.Communicator, arg0: Kratos.MatrixVariable) -> bool`
TotalProcesses(...)
TotalProcesses(self: Kratos.Communicator) -> int
init(...)
__init__(self: Kratos.Communicator) -> None
str(...)
__str__(self: Kratos.Communicator) -> str
Static methods inherited from pybind11_builtins.pybind11_object:
new(*args, **kwargs) from pybind11_builtins.pybind11_type
Create and return a new object. See help(type) for accurate signature.
- Getting Kratos (Last compiled Release)
- Compiling Kratos
- Running an example from GiD
- Kratos input files and I/O
- Data management
- Solving strategies
- Manipulating solution values
- Multiphysics
- Video tutorials
- Style Guide
- Authorship of Kratos files
- Configure .gitignore
- How to configure clang-format
- How to use smart pointer in Kratos
- How to define adjoint elements and response functions
- Visibility and Exposure
- Namespaces and Static Classes
Kratos structure
Conventions
Solvers
Debugging, profiling and testing
- Compiling Kratos in debug mode
- Debugging Kratos using GDB
- Cross-debugging Kratos under Windows
- Debugging Kratos C++ under Windows
- Checking memory usage with Valgind
- Profiling Kratos with MAQAO
- Creating unitary tests
- Using ThreadSanitizer to detect OMP data race bugs
- Debugging Memory with ASAN
HOW TOs
- How to create applications
- Python Tutorials
- Kratos For Dummies (I)
- List of classes and variables accessible via python
- How to use Logger
- How to Create a New Application using cmake
- How to write a JSON configuration file
- How to Access DataBase
- How to use quaternions in Kratos
- How to do Mapping between nonmatching meshes
- How to use Clang-Tidy to automatically correct code
- How to use the Constitutive Law class
- How to use Serialization
- How to use GlobalPointerCommunicator
- How to use PointerMapCommunicator
- How to use the Geometry
- How to use processes for BCs
- How to use Parallel Utilities in futureproofing the code
- Porting to Pybind11 (LEGACY CODE)
- Porting to AMatrix
- How to use Cotire
- Applications: Python-modules
- How to run multiple cases using PyCOMPSs
- How to apply a function to a list of variables
- How to use Kratos Native sparse linear algebra
Utilities
Kratos API
Kratos Structural Mechanics API