Commit Graph

7697 Commits

Author SHA1 Message Date
152eceeb56 Use factory Clone for patch fields 2024-01-23 11:22:19 +00:00
7b7dde0a6d BUG: memory leak and interpolated fields not updated (fixes #3089)
- in singleCellMesh application:
  also remove the interpolated fields from the registry,
  which ensures they are correctly updated between time steps
2024-01-17 17:31:35 +01:00
bb16c493b7 Code adjustments to avoid gcc-13 warnings about dangling references 2024-01-11 10:08:45 +00:00
2190684914 STYLE: patch field Internal::null() instead of DimensionedField equivalent
- makes for more consistent coding

STYLE: use two-parameter clone when making a copy of patch fields
2024-01-09 11:56:45 +00:00
987dbe4589 ENH: use factory Clone method for handling member clone() methods
- reduces code clutter, simplifies modification for new types.
  Handled classes:

    Function1, PatchFunction1, coordinateRotation, coordinateSystem,
    particle, liquidProperties, solidProperties
2024-01-09 11:56:45 +00:00
ad85b684bb STYLE: remove unused/stray methods, fix stray deprecated usages
STYLE: use separate value/dimensions for GeometricField

- simplifies calling parameters

COMP: limit enumeration range when reporting chemkin error
2024-01-08 17:42:55 +01:00
28aad3a03e RELEASE: Updated headers to v2312 2023-12-20 19:42:55 +01:00
032a4519ff COMP: adjust link parameters (mingw)
- adjointOptimisation : missing link to fileFormats

- snappyHexMesh : add fvMotionSolvers link (#3058)

STYLE: remove remnant -DFULLDEBUG hints

- now more easily covered with wmake -debug ...
2023-12-20 19:22:19 +01:00
de133af526 FIX: redistributePar problems with lagrangian
- the fileHandler changes included setting cacheLevel(0) to avoid
  blocking with redistributePar. However, this meant if clouds
  were not uniformly present on all ranks the fileHandler would follow
  different code paths and lead to blocking.

  Now switch to distributed mode for the lagrangian operations within
  redistributePar based on the cacheLevel information.

FIX: avoid triggering a false processor check in argList

- when redistributing to few ranks
2023-12-20 15:18:55 +01:00
af43f9aa24 ENH: caseInfo - use OF dictionary as default writeFormat
STYLE: checkMesh - removed writeChecks uppercase JSON option
2023-12-19 20:31:08 +00:00
b5b48b66d1 ENH: enabled the postProcess option in adjointOptimisationFoam 2023-12-18 18:01:35 +00:00
b6a30fae61 ENH: overhaul of the adjoint optimisation library
Parts of the adjoint optimisation library were re-designed to generalise
the way sensitivity derivatives (SDs) are computed and to allow easier
extension to primal problems other than the ones governed by
incompressible flows. In specific:
- the adjoint solver now holds virtual functions returning the part of
  SDs that depends only on the primal and the adjoint fields.
- a new class named designVariables was introduced which, apart from
  defining the design variables of the optimisation problem and
  providing hooks for updating them in an optimisation loop, provides
  the part of the SDs that affects directly the flow residuals (e.g.
  geometric variations in shape optimisation, derivatives of source
  terms in topology optimisation, etc). The final assembly of the SDs
  happens here, with the updated sensitivity class acting as an
  intermediate.

With the new structure, when the primal problem changes (for instance,
passive scalars are included), the same design variables and sensitivity
classes can be re-used for all physics, with additional contributions to
the SDs being limited (and contained) to the new adjoint solver to be
implemented. The old code structure would require new SD classes for
each additional primal problem.

As a side-effect, setting up a case has arguably become a bit easier and
more intuitive.

Additional changes include:
---------------------------

- Changes in the formulation and computation of shape sensitivity derivatives
  using the E-SI approach. The latter is now derived directly from the
  FI approach, with proper discretization for the terms and boundary
  conditions that emerge from applying the Gauss divergence theorem used
  to transition from FI to E-SI. When E-SI and FI are based on the same
  Laplace grid displacement model, they are now numerically equivalent
  (the previous formulation proved the theoretical equivalence of the
  two approaches but numerical results could differ, depending on the
  case).
- Sensitivity maps at faces are now computed based (and are deriving
  from) sensitivity maps at points, with a constistent point-to-face
  interpolation (requires the differentiation of volPointInterpolation).
- The objective class now allocates only the member pointers that
  correspond to the non-zero derivatives of the objective w.r.t. the
  flow and geometric quantities, leading to a reduced memory footprint.
  Additionally, contributions from volume-based objectives to the
  adjoint equations have been re-worked, removing the need for
  objectiveManager to be virtual.
- In constrained optimisation, an adjoint solver needs to be present for
  each constraint function. For geometric constraints though, no adjoint
  equations need to solved. This is now accounted for through the null
  adjoint solver and the geometric objectives which do not allocate
  adjoint fields for this kind of constraints, reducing memory
  requirements and file clutter.
- Refactoring of the updateMethod to collaborate with the new
  designVariables. Additionally, all updateMethods can now read and
  write restart data in binary, facilitating exact continuation.
  Furthermore, code shared by various quasi-Newton methods (BFGS, DBFGS,
  LBFGS, SR1) has been organised in the namesake class. Over and above,
  an SQP variant capable of tackling inequality constraints has been
  added (ISQP, with I indicating that the QP problem in the presence of
  inequality constraints is solved through an interior point method).
  Inequality constraints can be one-sided (constraint < upper-value)
  or double-sided (lower-value < constraint < upper-value).
- Bounds can now be defined for the design variables.
  For volumetricBSplines in specific, these can be computed as the
  mid-points of the control points and their neighbouring ones. This
  usually leads to better-defined optimisation problems and reduces the
  chances of an invalid mesh during optimisation.
- Convergence criteria can now be defined for the optimisation loop
  which will stop if the relative objective function reduction over
  the last objective value is lower than a given threshold and
  constraints are satisfied within a give tolerance. If no criteria are
  defined, the optimisation will run for the max. given number of cycles
  provided in controlDict.
- Added a new grid displacement method based on the p-Laplacian
  equation, which seems to outperform other PDE-based approaches.

TUT: updated the shape optimisation tutorials and added a new one
showcasing the use of double-sided constraints, ISQP, applying
no-overlapping constraints to volumetric B-Splines control points
and defining convergence criteria for the optimisation loop.
2023-12-18 18:01:35 +00:00
88b3fb7c2d ENH: foamMonitor: modernise and refactor the script (fixes #2104)
- enhance POSIX compliance
- apply distinct colours and dash type for each line
- standardize the frame size to 1200x627
- dynamically replace the title with <function-object-name>/<file-name>
- address underscore character issues
- introduce legend components for tensors
- resolve a bug caused by parentheses in tensor files

BUG: particleTrackProperties: correct the typo (fixes #3050)
2023-12-15 22:20:27 +00:00
7e0acfa4ed ENH: handle 64-bit memory information (#3060)
- on large memory systems (eg, 6TB) the process information
  exceeds an 'int' range, so adjust parsing of the /proc/..
  to use int64

ENH: update/modernize OSspecific system information

ENH: minor update of profiling code

- std::string, noexcept, lazier evaluations

STYLE: use direct call of memInfo
2023-12-15 17:21:38 +01:00
432d65475c ENH: preserve origId in foamFormatConvert (fixes# #3051)
- previously read the cloud directly without any of the
  passiveParticle fields (origProcId, origId), which meant they would
  not actually be converted.
2023-12-15 16:17:16 +01:00
c9a9309b8c ENH: simplify construction of zero-sized Clouds
- use Foam::zero as a dispatch tag

FIX: return moleculeCloud::constProps() List by reference not copy

STYLE: range-for when iterating cloud parcels

STYLE: more consistent typedefs / declarations for Clouds
2023-12-15 16:17:15 +01:00
0352a224b7 COMP: access transformedElements by reference, not copy
- better code style and seems to avoid triggering a gcc warning about
  possibly uninitialized values

COMP: JSONformatter writeEntry missing a return value

STYLE: accept 'json' for checkMesh write format

- consistent with caseInfo functionObject
2023-12-15 16:17:15 +01:00
35c884971a BUG: redistributePar blocks with -ioRanks (#3005) 2023-12-12 20:35:09 +01:00
28b6a5b85a ENH: allow modification of tmp state (cached or uncached)
- simplifies handling.
  * enables unprotecting to avoid accidentally cloning.
  * removes the need for dedicated constructor or factory forms.
  * simplfies DimensionedField and GeometricField New factory methods

- update objectRegistry management method (internal use)

  old:  bool cacheTemporaryObject(...)
  new:  bool is_cacheTemporaryObject(...)

  to clarify that it is a query, not a request for caching etc.
2023-12-11 15:56:00 +01:00
05f2d54979 ENH: masterCoarsest: demo case for processorAgglom. See !645 2023-12-11 12:28:08 +00:00
ca80affe60 COMP: MapLagrangian: unused reference 2023-12-11 09:06:19 +00:00
8ae0056edd ENH: GAMG: processor agglomeration extended for all interfaces 2023-12-07 17:33:29 +00:00
13352861c8 ENH: improve consistency in handling of global IOobjects (#3045)
- replace typeGlobal() global function with is_globalIOobject
  traits for more consistent and easier overriding.

- relocate typeFilePath() global function as a member of IOobject
  for consistency with typeHeaderOk.

BUG: faSchemes, fvSchemes not marked as global file types

- caused issues with collated
2023-12-07 17:42:25 +01:00
ef44df91f2 ENH: support direct lookup of solver controls
OLD:
        pEqn.solve(mesh.solver(p.select(piso.finalInnerIter())));
        pEqn.solve(mesh.solver("Yi"));

    NEW:
        pEqn.solve(p.select(piso.finalInnerIter()));
        pEqn.solve("Yi");
2023-12-07 17:42:24 +01:00
ca25929372 ENH: minor simplifications for handling region meshes
- static version of polyMesh::meshDir(), which takes a region name

      polyMesh::meshDir(regionName)
  vs
      polyMesh::regionName(regionName)/polyMesh::meshSubDir

STYLE: use polyMesh::regionName(..) instead of comparing to defaultRegion

STYLE: use getOrDefault when retrieving various -region options

FIX: polyMesh::dbDir() now checks registry name, not full path (#3033)
2023-12-07 17:42:24 +01:00
149cd7042f ENH: use thisDb reference when referencing/creating finite-area fields
COMP: remove faMesh::operator()() in favour of mesh() or thisDb() instead

- makes the purpose and usage clearer
2023-12-07 17:42:24 +01:00
09fdeaa38a ENH: more consistent use of endEntry (issue #3035)
- enables capturing of end entry as an event
2023-12-07 17:42:24 +01:00
4609aa38e1 BUG: redistributePar: fix global object headerOk. See !605
- mesh/parallel/cavity not yet working since zero-sized mesh
  not written on new processors.
2023-12-04 14:40:32 +00:00
f8742146a7 ENH: checkMesh - added -writeChecks option
Added -writeChecks <format> option

- writes computed mesh metrics to file in using <format>
- currently supported formats are OpenFOAM dictionary and JSON
2023-12-01 15:04:41 +00:00
0ff86ee2e7 ENH: replaced fragile dict interactions by meshState functions 2023-12-01 11:54:35 +00:00
79cd147de0 STYLE: Refactoring use of meshState in {fv|faMesh}
{fv|fa}Mesh classes inherited the [old] data class (renamed meshState)
- meshState removed from inheritance list and added as data members
2023-12-01 11:54:35 +00:00
6c08e995ba BUG: redistributePar: handle lagrangian in decompose mode. See !605
- only affects recent develop
- fixed by supplying invalid casename for non-master ranks
2023-11-28 16:50:51 +00:00
c9d1f741ce ENH: createROMfields: new reduced-order model utility to reconstruct fields 2023-11-24 19:57:11 +00:00
c5e4b62df7 ENH: improve/simplify streaming of exprValue
- ensure that operator<< and operator>> behave symmetrically
2023-11-23 22:42:22 +01:00
2ab3490552 STYLE: invert ASCII/BINARY checks. Helps if adding other formats
STYLE: use globalIndex::totalSize()
2023-11-23 22:42:20 +01:00
2d042268ba ENH: shm: add unbalancing info printing. Fixes #3034. 2023-11-23 15:31:43 +00:00
31825dd981 BUG: redistributePar: cell/face/pointProcAddressing written to incorrect dir 2023-11-21 11:14:28 +00:00
910713398e ENH: redistributePar: loose matching of processors directories 2023-11-21 11:14:28 +00:00
9ed0bb1e4f ENH: redistributePar: update for distribute mode
- uses read&write handlers
- fixes initialisation of partial handlers
- 'uniform' copied to wrong place
- -overwrite not deleting old processors dirs
2023-11-21 11:14:28 +00:00
259e8c22a5 ENH: improve check for decomposedBlock and simpler startup 2023-11-21 11:14:28 +00:00
c880efb4a6 ENH: improve fileHandler support for redistributePar
- use file handlers to manage where meshes/fields are to be read and
  written.
2023-11-21 11:14:28 +00:00
bcd873ccfe ENH: Update redistribute clouds with readOnProc/writeOnProc
- when reading, detect all clouds on all processors and uses this when
  reading fields. Similarly, when writing it uses writeOnProc to skip
  clouds that are empty on any particular processor.

Co-authored-by: Mark Olesen <>
2023-11-21 11:14:28 +00:00
eea72282ab ENH: CHT solvers - avoid fvSolution persisting on time db 2023-11-20 14:32:11 +00:00
3fd1b74b26 ENH: globalIndex contains(), findProcAbove(), findProcBelow() methods
- these help when building upper or lower connected topologies.
  The new findProc() method is a non-failing whichProcID alternative
2023-11-20 09:36:23 +01:00
cfb752647a ENH: globalIndex and CompactListList improvements
- provide a globalIndex::calcOffsets() taking an indirect list, which
  enables convenient offsets calculation from a variety of inputs.

- new CompactListList unpack variant: copy_unpack()
  The copy_unpack() works somewhat like std::copy() in that it writes
  the generated sublists to iterator positions, which makes this
  type of code possible:

      CompactListList<label> compact = ...;
      DynamicList<face> extracted;

      compact.copy_unpack<face>
      (
          std::back_inserter(extracted),
          labelRange(4, 10)
      );

  -and-

      const label nOldFaces = allFaces.size();
      allFaces.resize(allFaces + nNewFaces);

      auto iter = allFaces.begin(nOldFaces);

      iter = compact.copy_unpack<face>(iter, /* selection 1 */);
      ...
      iter = compact.copy_unpack<face>(iter, /* selection 2 */);

ENH: globalIndex resize()

- can be used to shrink or grow the offsets table.
  Any extension of the offsets table corresponds to 'slots'
  with 0 local size.
2023-11-20 09:35:59 +01:00
d6d28ccfa2 ENH: make sliceRange modifiable - similar to labelRange 2023-11-18 17:25:22 +01:00
a0b9732321 ENH: add support for CHAR_DATA token
- allows construction of string tokens holding character content.
  For example, data that has been serialized and buffered and that
  now needs to be written or sent to another process.
2023-11-18 15:24:15 +01:00
b1f9fe9d79 STYLE: adjust ITstream naming for empty_stream() 2023-11-18 15:24:15 +01:00
636a654f4a ENH: add standard _byte access for exprValue
- allows UPstream::broadcast and direct read/write

- add operator== for exprValue
2023-11-18 15:24:01 +01:00
a81d757721 COMP: add missing include for SortList
- extend test to include partition + sort
2023-11-14 22:54:44 +01:00