1bcb2dfaeSJed Brown# Changes/Release Notes 2bcb2dfaeSJed Brown 3f374d6a3SJeremy L ThompsonOn this page we provide a summary of the main API changes, new features and examples for each release of libCEED. 4bcb2dfaeSJed Brown 5bcb2dfaeSJed Brown(main)= 6bcb2dfaeSJed Brown 7bcb2dfaeSJed Brown## Current `main` branch 8bcb2dfaeSJed Brown 9*ca567da4SJeremy L Thompson### Interface changes 10*ca567da4SJeremy L Thompson 11*ca567da4SJeremy L Thompson- Update `CeedOperatorContext*` functions to `CeedOperator*Context*` functions for consistency. 12*ca567da4SJeremy L ThompsonFor example, `CeedOperatorContextGetFieldLabel` was renamed to `CeedOperatorGetContextFieldLabel`. 13*ca567da4SJeremy L Thompson 14de5900adSJames Wright### New features 15*ca567da4SJeremy L Thompson 16de5900adSJames Wright- Added {c:func}`CeedOperatorGetFieldByName` to access a specific `CeedOperatorField` by its name 17*ca567da4SJeremy L Thompson- Update `/cpu/self/memcheck/*` backends to help verify `CeedVector` array access assumptions and `CeedQFunction` user output assumptions. 18*ca567da4SJeremy L Thompson- Update {c:func}`CeedOperatorLinearAssembleDiagonal` to provide default implementation that supports `CeedOperator` with multiple active bases. 19de5900adSJames Wright 208ec64e9aSJed Brown(v0-11)= 218ec64e9aSJed Brown 228ec64e9aSJed Brown## v0.11 (Dec 24, 2022) 238ec64e9aSJed Brown 247e7773b5SJeremy L Thompson### Interface changes 257e7773b5SJeremy L Thompson 26ea6b5821SJeremy L Thompson- Added {c:func}`CeedOperatorSetName` for more readable {c:func}`CeedOperatorView` output. 27f113e5dcSJeremy L Thompson- Added {c:func}`CeedBasisCreateProjection` to facilitate interpolation between nodes for separate `CeedBases`. 28a00f0c56SJeremy L Thompson- Rename and move {c:func}`CeedCompositeOperatorGetNumSub` and {c:func}`CeedCompositeOperatorGetSubList` to public interface. 29ea6b5821SJeremy L Thompson 300f58c348SJeremy L Thompson### New features 316cccb8e4SJeremy L Thompson 320f58c348SJeremy L Thompson- Update `/cpu/self/memcheck/*` backends to help verify `CeedQFunctionContext` data sizes provided by user. 338ec64e9aSJed Brown- Improved support for $H(\text{div})$ bases. 34de5900adSJames Wright- Added `CeedInt_FMT` to support potential future use of larger integer sizes. 358ec64e9aSJed Brown- Added `CEED_QFUNCTION_ATTR` for setting compiler attributes/pragmas to `CEED_QFUNCTION_HELPER` and `CEED_QFUNCTION`. 360be03a92SJeremy L Thompson- OCCA backend updated to latest OCCA release; DPC++ and OMP OCCA modes enabled. 370be03a92SJeremy L ThompsonDue to a limitation of the OCCA parser, typedefs are required to use pointers to arrays in QFunctions with the OCCA backend. 380be03a92SJeremy L ThompsonThis issue will be fixed in a future OCCA release. 390f58c348SJeremy L Thompson 4044d7a66cSJeremy L Thompson### Bugfix 4144d7a66cSJeremy L Thompson 42f113e5dcSJeremy L Thompson- Fix bug in setting device id for GPU backends. 4344d7a66cSJeremy L Thompson- Fix storing of indices for `CeedElemRestriction` on the host with GPU backends. 447b63f5c6SJed Brown- Fix `CeedElemRestriction` sizing for {c:func}`CeedOperatorAssemblePointBlockDiagonal`. 456cccb8e4SJeremy L Thompson- Fix bugs in CPU implementation of {c:func}`CeedOperatorLinearAssemble` when there are different number of active input modes and active output modes. 466cccb8e4SJeremy L Thompson 47e0e35436SJeremy L Thompson### Examples 48e0e35436SJeremy L Thompson 498ec64e9aSJed Brown#### {ref}`example-petsc-navier-stokes` 508ec64e9aSJed Brown 518ec64e9aSJed Brown- Various performance enhancements, analytic matrix-free and assembled Jacobian, and PETSc solver configurations for GPUs. 528ec64e9aSJed Brown- Refactored to improve code reuse and modularity. 538ec64e9aSJed Brown- Support for primitive variables for more accurate boundary layers and all-speed flow. 548ec64e9aSJed Brown- Added $YZ\beta$ shock capturing scheme and Shock Tube example. 558ec64e9aSJed Brown- Added Channel example, with comparison to analytic solutions. 568ec64e9aSJed Brown- Added Flat Plate with boundary layer mesh and compressible Blasius inflow condition based on Chebyshev collocation solution of the Blasius equations. 578ec64e9aSJed Brown- Added strong and weak synthetic turbulence generation (STG) inflow boundary conditions. 588ec64e9aSJed Brown- Added "freestream" boundary conditions based on HLLC Riemann solver. 598ec64e9aSJed Brown- Automated stabilization coefficients for different basis degree. 608ec64e9aSJed Brown 618ec64e9aSJed Brown#### {ref}`example-petsc-bps` 628ec64e9aSJed Brown 638ec64e9aSJed Brown- Support for convergence studies. 64e0e35436SJeremy L Thompson 659e201c85SYohann### Maintainability 669e201c85SYohann 679e201c85SYohann- Refactored `/gpu/cuda/shared` and `/gpu/cuda/gen` as well as `/gpu/hip/shared` and `/gpu/hip/gen` backend to improve maintainablity and reduce duplicated code. 689e201c85SYohann- Enabled support for `p > 8` for `/gpu/*/shared` backends. 698ec64e9aSJed Brown- Switch to `clang-format` over `astyle` for automatic formatting; Makefile command changed to `make format` from `make style`. 708ec64e9aSJed Brown- Improved test harness. 719e201c85SYohann 72f374d6a3SJeremy L Thompson(v0-10-1)= 73f374d6a3SJeremy L Thompson 74f374d6a3SJeremy L Thompson## v0.10.1 (Apr 11, 2022) 75f374d6a3SJeremy L Thompson 76f374d6a3SJeremy L Thompson### Interface changes 77f374d6a3SJeremy L Thompson 786e15d496SJeremy L Thompson- Added {c:func}`CeedQFunctionSetUserFlopsEstimate` and {c:func}`CeedOperatorGetFlopsEstimate` to facilitate estimating FLOPs in operator application. 796e15d496SJeremy L Thompson 80b3271f73Snbeams### New features 81b3271f73Snbeams 82b3271f73Snbeams- Switched MAGMA backends to use runtime compilation for tensor basis kernels (and element restriction kernels, in non-deterministic `/gpu/*/magma` backends). 83b3271f73SnbeamsThis reduces time to compile the library and increases the range of parameters for which the MAGMA tensor basis kernels will work. 84b3271f73Snbeams 855766aa57SJeremy L Thompson### Bugfix 865766aa57SJeremy L Thompson 875766aa57SJeremy L Thompson- Install JiT source files in install directory to fix GPU functionality for installed libCEED. 885766aa57SJeremy L Thompson 89667e613fSJeremy L Thompson(v0-10)= 90667e613fSJeremy L Thompson 913ed90579SJeremy L Thompson## v0.10 (Mar 21, 2022) 92667e613fSJeremy L Thompson 93667e613fSJeremy L Thompson### Interface changes 94667e613fSJeremy L Thompson 957e7773b5SJeremy L Thompson- Update {c:func}`CeedQFunctionGetFields` and {c:func}`CeedOperatorGetFields` to include number of fields. 96ce4822f6SJeremy L Thompson- Promote to the public API: QFunction and Operator field objects, `CeedQFunctionField` and `CeedOperatorField`, and associated getters, {c:func}`CeedQFunctionGetFields`; {c:func}`CeedQFunctionFieldGetName`; {c:func}`CeedQFunctionFieldGetSize`; {c:func}`CeedQFunctionFieldGetEvalMode`; {c:func}`CeedOperatorGetFields`; {c:func}`CeedOperatorFieldGetElemRestriction`; {c:func}`CeedOperatorFieldGetBasis`; and {c:func}`CeedOperatorFieldGetVector`. 97f04ea552SJeremy L Thompson- Clarify and document conditions where `CeedQFunction` and `CeedOperator` become immutable and no further fields or suboperators can be added. 9870a7ffb3SJeremy L Thompson- Add {c:func}`CeedOperatorLinearAssembleQFunctionBuildOrUpdate` to reduce object creation overhead in assembly of CeedOperator preconditioning ingredients. 994db537f9SJeremy L Thompson- Promote {c:func}`CeedOperatorCheckReady`to the public API to facilitate interactive interfaces. 100dcc1e3ecSJeremy L Thompson- Warning added when compiling OCCA backend to alert users that this backend is experimental. 1019a1d3511SJeremy L Thompson- `ceed-backend.h`, `ceed-hash.h`, and `ceed-khash.h` removed. Users should use `ceed/backend.h`, `ceed/hash.h`, and `ceed/khash.h`. 10243e1b16fSJeremy L Thompson- Added {c:func}`CeedQFunctionGetKernelName`; refactored {c:func}`CeedQFunctionGetSourcePath` to exclude function kernel name. 1039c774eddSJeremy L Thompson- Clarify documentation for {c:func}`CeedVectorTakeArray`; this function will error if {c:func}`CeedVectorSetArray` with `copy_mode == CEED_USE_POINTER` was not previously called for the corresponding `CeedMemType`. 1049c774eddSJeremy L Thompson- Added {c:func}`CeedVectorGetArrayWrite` that allows access to uninitalized arrays; require initalized data for {c:func}`CeedVectorGetArray`. 105c38440baSJed Brown- Added {c:func}`CeedQFunctionContextRegisterDouble` and {c:func}`CeedQFunctionContextRegisterInt32` with {c:func}`CeedQFunctionContextSetDouble` and {c:func}`CeedQFunctionContextSetInt32` to facilitate easy updating of {c:struct}`CeedQFunctionContext` data by user defined field names. 106cdf32b93SJeremy L Thompson- Added {c:func}`CeedQFunctionContextGetFieldDescriptions` to retreive user defined descriptions of fields that are registered with `CeedQFunctionContextRegister*`. 1077a06ec9fSJeremy L Thompson- Renamed `CeedElemTopology` entries for clearer namespacing between libCEED enums. 108f4f98f9dSJeremy L Thompson- Added type `CeedSize` equivalent to `ptrdiff_t` for array sizes in {c:func}`CeedVectorCreate`, {c:func}`CeedVectorGetLength`, `CeedElemRestrictionCreate*`, {c:func}`CeedElemRestrictionGetLVectorSize`, and {c:func}`CeedOperatorLinearAssembleSymbolic`. This is a breaking change. 1098b919e6bSJeremy L Thompson- Added {c:func}`CeedOperatorSetQFunctionUpdated` to facilitate QFunction data re-use between operators sharing the same quadrature space, such as in a multigrid hierarchy. 110c9366a6bSJeremy L Thompson- Added {c:func}`CeedOperatorGetActiveVectorLengths` to get shape of CeedOperator. 1117e7773b5SJeremy L Thompson 112f479eb23SJeremy L Thompson### New features 113f479eb23SJeremy L Thompson 114f479eb23SJeremy L Thompson- `CeedScalar` can now be set as `float` or `double` at compile time. 11530601ac0SJeremy L Thompson- Added JiT utilities in `ceed/jit-tools.h` to reduce duplicated code in GPU backends. 116fb3c7d02SJeremy L Thompson- Added support for JiT of QFunctions with `#include "relative/path/local-file.h"` statements for additional local files. Note that files included with `""` are searched relative to the current file first, then by compiler paths (as with `<>` includes). To use this feature, one should adhere to relative paths only, not compiler flags like `-I`, which the JiT will not be aware of. 11723dfbf5bSJeremy L Thompson- Remove need to guard library headers in QFunction source for code generation backends. 1183f21f6b1SJeremy L Thompson- `CeedDebugEnv()` macro created to provide debugging outputs when Ceed context is not present. 119f7e22acaSJeremy L Thompson- Added {c:func}`CeedStringAllocCopy` to reduce repeated code for copying strings internally. 1203451974fSJeremy L Thompson- Added {c:func}`CeedPathConcatenate` to facilitate loading kernel source files with a path relative to the current file. 1217a06ec9fSJeremy L Thompson- Added support for non-tensor H(div) elements, to include CPU backend implementations and {c:func}`CeedBasisCreateHdiv` convenience constructor. 122d34e270fSJeremy L Thompson- Added {c:func}`CeedQFunctionSetContextWritable` and read-only access to `CeedQFunctionContext` data as an optional feature to improve GPU performance. By default, calling the `CeedQFunctionUser` during {c:func}`CeedQFunctionApply` is assumed to write into the `CeedQFunctionContext` data, consistent with the previous behavior. Note that if a user asserts that their `CeedQFunctionUser` does not write into the `CeedQFunctionContext` data, they are responsible for the validity of this assertion. 12359ad764aSnbeams- Added support for element matrix assembly in GPU backends. 124f479eb23SJeremy L Thompson 125bcb2dfaeSJed Brown### Maintainability 126bcb2dfaeSJed Brown 127bcb2dfaeSJed Brown- Refactored preconditioner support internally to facilitate future development and improve GPU completeness/test coverage. 128db52d626SJeremy L Thompson- `Include-what-you-use` makefile target added as `make iwyu`. 129bf4cb664SJeremy L Thompson- Create backend constant `CEED_FIELD_MAX` to reduce magic numbers in codebase. 1303451974fSJeremy L Thompson- Put GPU JiTed kernel source code into separate files. 131f9996dfdSJeremy L Thompson- Dropped legacy version support in PETSc based examples to better utilize PETSc DMPlex and Mat updates to support libCEED; current minimum PETSc version for the examples is v3.17. 132bcb2dfaeSJed Brown 133bcb2dfaeSJed Brown(v0-9)= 134bcb2dfaeSJed Brown 135bcb2dfaeSJed Brown## v0.9 (Jul 6, 2021) 136bcb2dfaeSJed Brown 137bcb2dfaeSJed Brown### Interface changes 138bcb2dfaeSJed Brown 139bcb2dfaeSJed Brown- Minor modification in error handling macro to silence pedantic warnings when compiling with Clang, but no functional impact. 140bcb2dfaeSJed Brown 141bcb2dfaeSJed Brown### New features 142bcb2dfaeSJed Brown 143bcb2dfaeSJed Brown- Add {c:func}`CeedVectorAXPY` and {c:func}`CeedVectorPointwiseMult` as a convenience for stand-alone testing and internal use. 144bcb2dfaeSJed Brown- Add `CEED_QFUNCTION_HELPER` macro to properly annotate QFunction helper functions for code generation backends. 145bcb2dfaeSJed Brown- Add `CeedPragmaOptimizeOff` macro for code that is sensitive to floating point errors from fast math optimizations. 146bcb2dfaeSJed Brown- Rust support: split `libceed-sys` crate out of `libceed` and [publish both on crates.io](https://crates.io/crates/libceed). 147bcb2dfaeSJed Brown 148bcb2dfaeSJed Brown### Performance improvements 149bcb2dfaeSJed Brown 150bcb2dfaeSJed Brown### Examples 151bcb2dfaeSJed Brown 152bcb2dfaeSJed Brown- Solid mechanics mini-app updated to explore the performance impacts of various formulations in the initial and current configurations. 153bcb2dfaeSJed Brown- Fluid mechanics example adds GPU support and improves modularity. 154bcb2dfaeSJed Brown 155bcb2dfaeSJed Brown### Deprecated backends 156bcb2dfaeSJed Brown 157bcb2dfaeSJed Brown- The `/cpu/self/tmpl` and `/cpu/self/tmpl/sub` backends have been removed. These backends were intially added to test the backend inheritance mechanism, but this mechanism is now widely used and tested in multiple backends. 158bcb2dfaeSJed Brown 159bcb2dfaeSJed Brown(v0-8)= 160bcb2dfaeSJed Brown 161bcb2dfaeSJed Brown## v0.8 (Mar 31, 2021) 162bcb2dfaeSJed Brown 163bcb2dfaeSJed Brown### Interface changes 164bcb2dfaeSJed Brown 165bcb2dfaeSJed Brown- Error handling improved to include enumerated error codes for C interface return values. 166bcb2dfaeSJed Brown- Installed headers that will follow semantic versioning were moved to {code}`include/ceed` directory. These headers have been renamed from {code}`ceed-*.h` to {code}`ceed/*.h`. Placeholder headers with the old naming schema are currently provided, but these headers will be removed in the libCEED v0.9 release. 167bcb2dfaeSJed Brown 168bcb2dfaeSJed Brown### New features 169bcb2dfaeSJed Brown 170bcb2dfaeSJed Brown- Julia and Rust interfaces added, providing a nearly 1-1 correspondence with the C interface, plus some convenience features. 171bcb2dfaeSJed Brown- Static libraries can be built with `make STATIC=1` and the pkg-config file is installed accordingly. 172bcb2dfaeSJed Brown- Add {c:func}`CeedOperatorLinearAssembleSymbolic` and {c:func}`CeedOperatorLinearAssemble` to support full assembly of libCEED operators. 173bcb2dfaeSJed Brown 174bcb2dfaeSJed Brown### Performance improvements 175bcb2dfaeSJed Brown 176bcb2dfaeSJed Brown- New HIP MAGMA backends for hipMAGMA library users: `/gpu/hip/magma` and `/gpu/hip/magma/det`. 177bcb2dfaeSJed Brown- New HIP backends for improved tensor basis performance: `/gpu/hip/shared` and `/gpu/hip/gen`. 178bcb2dfaeSJed Brown 179bcb2dfaeSJed Brown### Examples 180bcb2dfaeSJed Brown 181bcb2dfaeSJed Brown- {ref}`example-petsc-elasticity` example updated with traction boundary conditions and improved Dirichlet boundary conditions. 182bcb2dfaeSJed Brown- {ref}`example-petsc-elasticity` example updated with Neo-Hookean hyperelasticity in current configuration as well as improved Neo-Hookean hyperelasticity exploring storage vs computation tradeoffs. 183bcb2dfaeSJed Brown- {ref}`example-petsc-navier-stokes` example updated with isentropic traveling vortex test case, an analytical solution to the Euler equations that is useful for testing boundary conditions, discretization stability, and order of accuracy. 184bcb2dfaeSJed Brown- {ref}`example-petsc-navier-stokes` example updated with support for performing convergence study and plotting order of convergence by polynomial degree. 185bcb2dfaeSJed Brown 186bcb2dfaeSJed Brown(v0-7)= 187bcb2dfaeSJed Brown 188bcb2dfaeSJed Brown## v0.7 (Sep 29, 2020) 189bcb2dfaeSJed Brown 190bcb2dfaeSJed Brown### Interface changes 191bcb2dfaeSJed Brown 192bcb2dfaeSJed Brown- Replace limited {code}`CeedInterlaceMode` with more flexible component stride {code}`compstride` in {code}`CeedElemRestriction` constructors. 193bcb2dfaeSJed Brown As a result, the {code}`indices` parameter has been replaced with {code}`offsets` and the {code}`nnodes` parameter has been replaced with {code}`lsize`. 194bcb2dfaeSJed Brown These changes improve support for mixed finite element methods. 195bcb2dfaeSJed Brown- Replace various uses of {code}`Ceed*Get*Status` with {code}`Ceed*Is*` in the backend API to match common nomenclature. 196bcb2dfaeSJed Brown- Replace {code}`CeedOperatorAssembleLinearDiagonal` with {c:func}`CeedOperatorLinearAssembleDiagonal` for clarity. 197bcb2dfaeSJed Brown- Linear Operators can be assembled as point-block diagonal matrices with {c:func}`CeedOperatorLinearAssemblePointBlockDiagonal`, provided in row-major form in a {code}`ncomp` by {code}`ncomp` block per node. 198bcb2dfaeSJed Brown- Diagonal assemble interface changed to accept a {ref}`CeedVector` instead of a pointer to a {ref}`CeedVector` to reduce memory movement when interfacing with calling code. 199bcb2dfaeSJed Brown- Added {c:func}`CeedOperatorLinearAssembleAddDiagonal` and {c:func}`CeedOperatorLinearAssembleAddPointBlockDiagonal` for improved future integration with codes such as MFEM that compose the action of {ref}`CeedOperator`s external to libCEED. 200bcb2dfaeSJed Brown- Added {c:func}`CeedVectorTakeAray` to sync and remove libCEED read/write access to an allocated array and pass ownership of the array to the caller. 201bcb2dfaeSJed Brown This function is recommended over {c:func}`CeedVectorSyncArray` when the {code}`CeedVector` has an array owned by the caller that was set by {c:func}`CeedVectorSetArray`. 202bcb2dfaeSJed Brown- Added {code}`CeedQFunctionContext` object to manage user QFunction context data and reduce copies between device and host memory. 203bcb2dfaeSJed Brown- Added {c:func}`CeedOperatorMultigridLevelCreate`, {c:func}`CeedOperatorMultigridLevelCreateTensorH1`, and {c:func}`CeedOperatorMultigridLevelCreateH1` to facilitate creation of multigrid prolongation, restriction, and coarse grid operators using a common quadrature space. 204bcb2dfaeSJed Brown 205bcb2dfaeSJed Brown### New features 206bcb2dfaeSJed Brown 207bcb2dfaeSJed Brown- New HIP backend: `/gpu/hip/ref`. 208bcb2dfaeSJed Brown- CeedQFunction support for user `CUfunction`s in some backends 209bcb2dfaeSJed Brown 210bcb2dfaeSJed Brown### Performance improvements 211bcb2dfaeSJed Brown 212bcb2dfaeSJed Brown- OCCA backend rebuilt to facilitate future performance enhancements. 213bcb2dfaeSJed Brown- Petsc BPs suite improved to reduce noise due to multiple calls to {code}`mpiexec`. 214bcb2dfaeSJed Brown 215bcb2dfaeSJed Brown### Examples 216bcb2dfaeSJed Brown 217bcb2dfaeSJed Brown- {ref}`example-petsc-elasticity` example updated with strain energy computation and more flexible boundary conditions. 218bcb2dfaeSJed Brown 219bcb2dfaeSJed Brown### Deprecated backends 220bcb2dfaeSJed Brown 221bcb2dfaeSJed Brown- The `/gpu/cuda/reg` backend has been removed, with its core features moved into `/gpu/cuda/ref` and `/gpu/cuda/shared`. 222bcb2dfaeSJed Brown 223bcb2dfaeSJed Brown(v0-6)= 224bcb2dfaeSJed Brown 225bcb2dfaeSJed Brown## v0.6 (Mar 29, 2020) 226bcb2dfaeSJed Brown 227bcb2dfaeSJed BrownlibCEED v0.6 contains numerous new features and examples, as well as expanded 22813964f07SJed Browndocumentation in [this new website](https://libceed.org). 229bcb2dfaeSJed Brown 230bcb2dfaeSJed Brown### New features 231bcb2dfaeSJed Brown 232bcb2dfaeSJed Brown- New Python interface using [CFFI](https://cffi.readthedocs.io/) provides a nearly 233bcb2dfaeSJed Brown 1-1 correspondence with the C interface, plus some convenience features. For instance, 234bcb2dfaeSJed Brown data stored in the {cpp:type}`CeedVector` structure are available without copy as 235bcb2dfaeSJed Brown {py:class}`numpy.ndarray`. Short tutorials are provided in 236bcb2dfaeSJed Brown [Binder](https://mybinder.org/v2/gh/CEED/libCEED/main?urlpath=lab/tree/examples/tutorials/). 237bcb2dfaeSJed Brown- Linear QFunctions can be assembled as block-diagonal matrices (per quadrature point, 238bcb2dfaeSJed Brown {c:func}`CeedOperatorAssembleLinearQFunction`) or to evaluate the diagonal 239bcb2dfaeSJed Brown ({c:func}`CeedOperatorAssembleLinearDiagonal`). These operations are useful for 240bcb2dfaeSJed Brown preconditioning ingredients and are used in the libCEED's multigrid examples. 241bcb2dfaeSJed Brown- The inverse of separable operators can be obtained using 242bcb2dfaeSJed Brown {c:func}`CeedOperatorCreateFDMElementInverse` and applied with 243bcb2dfaeSJed Brown {c:func}`CeedOperatorApply`. This is a useful preconditioning ingredient, 244bcb2dfaeSJed Brown especially for Laplacians and related operators. 245bcb2dfaeSJed Brown- New functions: {c:func}`CeedVectorNorm`, {c:func}`CeedOperatorApplyAdd`, 246bcb2dfaeSJed Brown {c:func}`CeedQFunctionView`, {c:func}`CeedOperatorView`. 247bcb2dfaeSJed Brown- Make public accessors for various attributes to facilitate writing composable code. 248bcb2dfaeSJed Brown- New backend: `/cpu/self/memcheck/serial`. 249bcb2dfaeSJed Brown- QFunctions using variable-length array (VLA) pointer constructs can be used with CUDA 250bcb2dfaeSJed Brown backends. (Single source is coming soon for OCCA backends.) 251bcb2dfaeSJed Brown- Fix some missing edge cases in CUDA backend. 252bcb2dfaeSJed Brown 253bcb2dfaeSJed Brown### Performance Improvements 254bcb2dfaeSJed Brown 255bcb2dfaeSJed Brown- MAGMA backend performance optimization and non-tensor bases. 256bcb2dfaeSJed Brown- No-copy optimization in {c:func}`CeedOperatorApply`. 257bcb2dfaeSJed Brown 258bcb2dfaeSJed Brown### Interface changes 259bcb2dfaeSJed Brown 260bcb2dfaeSJed Brown- Replace {code}`CeedElemRestrictionCreateIdentity` and 261bcb2dfaeSJed Brown {code}`CeedElemRestrictionCreateBlocked` with more flexible 262bcb2dfaeSJed Brown {c:func}`CeedElemRestrictionCreateStrided` and 263bcb2dfaeSJed Brown {c:func}`CeedElemRestrictionCreateBlockedStrided`. 264bcb2dfaeSJed Brown- Add arguments to {c:func}`CeedQFunctionCreateIdentity`. 265bcb2dfaeSJed Brown- Replace ambiguous uses of {cpp:enum}`CeedTransposeMode` for L-vector identification 266bcb2dfaeSJed Brown with {cpp:enum}`CeedInterlaceMode`. This is now an attribute of the 267bcb2dfaeSJed Brown {cpp:type}`CeedElemRestriction` (see {c:func}`CeedElemRestrictionCreate`) and no 268bcb2dfaeSJed Brown longer passed as `lmode` arguments to {c:func}`CeedOperatorSetField` and 269bcb2dfaeSJed Brown {c:func}`CeedElemRestrictionApply`. 270bcb2dfaeSJed Brown 271bcb2dfaeSJed Brown### Examples 272bcb2dfaeSJed Brown 273bcb2dfaeSJed BrownlibCEED-0.6 contains greatly expanded examples with {ref}`new documentation <Examples>`. 274bcb2dfaeSJed BrownNotable additions include: 275bcb2dfaeSJed Brown 276bcb2dfaeSJed Brown- Standalone {ref}`ex2-surface` ({file}`examples/ceed/ex2-surface`): compute the area of 277bcb2dfaeSJed Brown a domain in 1, 2, and 3 dimensions by applying a Laplacian. 278bcb2dfaeSJed Brown 279bcb2dfaeSJed Brown- PETSc {ref}`example-petsc-area` ({file}`examples/petsc/area.c`): computes surface area 280bcb2dfaeSJed Brown of domains (like the cube and sphere) by direct integration on a surface mesh; 281bcb2dfaeSJed Brown demonstrates geometric dimension different from topological dimension. 282bcb2dfaeSJed Brown 283bcb2dfaeSJed Brown- PETSc {ref}`example-petsc-bps`: 284bcb2dfaeSJed Brown 285bcb2dfaeSJed Brown - {file}`examples/petsc/bpsraw.c` (formerly `bps.c`): transparent CUDA support. 286bcb2dfaeSJed Brown - {file}`examples/petsc/bps.c` (formerly `bpsdmplex.c`): performance improvements 287bcb2dfaeSJed Brown and transparent CUDA support. 288bcb2dfaeSJed Brown - {ref}`example-petsc-bps-sphere` ({file}`examples/petsc/bpssphere.c`): 289bcb2dfaeSJed Brown generalizations of all CEED BPs to the surface of the sphere; demonstrates geometric 290bcb2dfaeSJed Brown dimension different from topological dimension. 291bcb2dfaeSJed Brown 292bcb2dfaeSJed Brown- {ref}`example-petsc-multigrid` ({file}`examples/petsc/multigrid.c`): new p-multigrid 293bcb2dfaeSJed Brown solver with algebraic multigrid coarse solve. 294bcb2dfaeSJed Brown 295bcb2dfaeSJed Brown- {ref}`example-petsc-navier-stokes` ({file}`examples/fluids/navierstokes.c`; formerly 296bcb2dfaeSJed Brown `examples/navier-stokes`): unstructured grid support (using PETSc's `DMPlex`), 297bcb2dfaeSJed Brown implicit time integration, SU/SUPG stabilization, free-slip boundary conditions, and 298bcb2dfaeSJed Brown quasi-2D computational domain support. 299bcb2dfaeSJed Brown 300bcb2dfaeSJed Brown- {ref}`example-petsc-elasticity` ({file}`examples/solids/elasticity.c`): new solver for 301bcb2dfaeSJed Brown linear elasticity, small-strain hyperelasticity, and globalized finite-strain 302bcb2dfaeSJed Brown hyperelasticity using p-multigrid with algebraic multigrid coarse solve. 303bcb2dfaeSJed Brown 304bcb2dfaeSJed Brown(v0-5)= 305bcb2dfaeSJed Brown 306bcb2dfaeSJed Brown## v0.5 (Sep 18, 2019) 307bcb2dfaeSJed Brown 308bcb2dfaeSJed BrownFor this release, several improvements were made. Two new CUDA backends were added to 309bcb2dfaeSJed Brownthe family of backends, of which, the new `cuda-gen` backend achieves state-of-the-art 310bcb2dfaeSJed Brownperformance using single-source {ref}`CeedQFunction`. From this release, users 311bcb2dfaeSJed Browncan define Q-Functions in a single source code independently of the targeted backend 312bcb2dfaeSJed Brownwith the aid of a new macro `CEED QFUNCTION` to support JIT (Just-In-Time) and CPU 313bcb2dfaeSJed Browncompilation of the user provided {ref}`CeedQFunction` code. To allow a unified 314bcb2dfaeSJed Browndeclaration, the {ref}`CeedQFunction` API has undergone a slight change: 315bcb2dfaeSJed Brownthe `QFunctionField` parameter `ncomp` has been changed to `size`. This change 316bcb2dfaeSJed Brownrequires setting the previous value of `ncomp` to `ncomp*dim` when adding a 317bcb2dfaeSJed Brown`QFunctionField` with eval mode `CEED EVAL GRAD`. 318bcb2dfaeSJed Brown 319bcb2dfaeSJed BrownAdditionally, new CPU backends 320bcb2dfaeSJed Brownwere included in this release, such as the `/cpu/self/opt/*` backends (which are 321bcb2dfaeSJed Brownwritten in pure C and use partial **E-vectors** to improve performance) and the 322bcb2dfaeSJed Brown`/cpu/self/ref/memcheck` backend (which relies upon the 323bcb2dfaeSJed Brown[Valgrind](http://valgrind.org/) Memcheck tool to help verify that user 324bcb2dfaeSJed Brown{ref}`CeedQFunction` have no undefined values). 325bcb2dfaeSJed BrownThis release also included various performance improvements, bug fixes, new examples, 326bcb2dfaeSJed Brownand improved tests. Among these improvements, vectorized instructions for 327bcb2dfaeSJed Brown{ref}`CeedQFunction` code compiled for CPU were enhanced by using `CeedPragmaSIMD` 328bcb2dfaeSJed Browninstead of `CeedPragmaOMP`, implementation of a {ref}`CeedQFunction` gallery and 329bcb2dfaeSJed Brownidentity Q-Functions were introduced, and the PETSc benchmark problems were expanded 330bcb2dfaeSJed Brownto include unstructured meshes handling were. For this expansion, the prior version of 331bcb2dfaeSJed Brownthe PETSc BPs, which only included data associated with structured geometries, were 332bcb2dfaeSJed Brownrenamed `bpsraw`, and the new version of the BPs, which can handle data associated 333bcb2dfaeSJed Brownwith any unstructured geometry, were called `bps`. Additionally, other benchmark 334bcb2dfaeSJed Brownproblems, namely BP2 and BP4 (the vector-valued versions of BP1 and BP3, respectively), 335bcb2dfaeSJed Brownand BP5 and BP6 (the collocated versions---for which the quadrature points are the same 336bcb2dfaeSJed Brownas the Gauss Lobatto nodes---of BP3 and BP4 respectively) were added to the PETSc 337bcb2dfaeSJed Brownexamples. Furthermoew, another standalone libCEED example, called `ex2`, which 338bcb2dfaeSJed Browncomputes the surface area of a given mesh was added to this release. 339bcb2dfaeSJed Brown 340bcb2dfaeSJed BrownBackends available in this release: 341bcb2dfaeSJed Brown 34268e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 34368e843eeSJed Brown|--------------------------|-----------------------------------------------------| 34468e843eeSJed Brown| `/cpu/self/ref/serial` | Serial reference implementation | 34568e843eeSJed Brown| `/cpu/self/ref/blocked` | Blocked reference implementation | 34668e843eeSJed Brown| `/cpu/self/ref/memcheck` | Memcheck backend, undefined value checks | 34768e843eeSJed Brown| `/cpu/self/opt/serial` | Serial optimized C implementation | 34868e843eeSJed Brown| `/cpu/self/opt/blocked` | Blocked optimized C implementation | 34968e843eeSJed Brown| `/cpu/self/avx/serial` | Serial AVX implementation | 35068e843eeSJed Brown| `/cpu/self/avx/blocked` | Blocked AVX implementation | 35168e843eeSJed Brown| `/cpu/self/xsmm/serial` | Serial LIBXSMM implementation | 35268e843eeSJed Brown| `/cpu/self/xsmm/blocked` | Blocked LIBXSMM implementation | 35368e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 35468e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 35568e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 35668e843eeSJed Brown| `/ocl/occa` | OpenCL OCCA kernels | 35768e843eeSJed Brown| `/gpu/cuda/ref` | Reference pure CUDA kernels | 35868e843eeSJed Brown| `/gpu/cuda/reg` | Pure CUDA kernels using one thread per element | 35968e843eeSJed Brown| `/gpu/cuda/shared` | Optimized pure CUDA kernels using shared memory | 36068e843eeSJed Brown| `/gpu/cuda/gen` | Optimized pure CUDA kernels using code generation | 36168e843eeSJed Brown| `/gpu/magma` | CUDA MAGMA kernels | 362bcb2dfaeSJed Brown 363bcb2dfaeSJed BrownExamples available in this release: 364bcb2dfaeSJed Brown 36568e843eeSJed Brown:::{list-table} 36668e843eeSJed Brown:header-rows: 1 36768e843eeSJed Brown:widths: auto 36868e843eeSJed Brown* - User code 36968e843eeSJed Brown - Example 37068e843eeSJed Brown* - `ceed` 37168e843eeSJed Brown - * ex1 (volume) 37268e843eeSJed Brown * ex2 (surface) 37368e843eeSJed Brown* - `mfem` 37468e843eeSJed Brown - * BP1 (scalar mass operator) 37568e843eeSJed Brown * BP3 (scalar Laplace operator) 37668e843eeSJed Brown* - `petsc` 37768e843eeSJed Brown - * BP1 (scalar mass operator) 37868e843eeSJed Brown * BP2 (vector mass operator) 37968e843eeSJed Brown * BP3 (scalar Laplace operator) 38068e843eeSJed Brown * BP4 (vector Laplace operator) 38168e843eeSJed Brown * BP5 (collocated scalar Laplace operator) 38268e843eeSJed Brown * BP6 (collocated vector Laplace operator) 38368e843eeSJed Brown * Navier-Stokes 38468e843eeSJed Brown* - `nek5000` 38568e843eeSJed Brown - * BP1 (scalar mass operator) 38668e843eeSJed Brown * BP3 (scalar Laplace operator) 38768e843eeSJed Brown::: 388bcb2dfaeSJed Brown 389bcb2dfaeSJed Brown(v0-4)= 390bcb2dfaeSJed Brown 391bcb2dfaeSJed Brown## v0.4 (Apr 1, 2019) 392bcb2dfaeSJed Brown 393bcb2dfaeSJed BrownlibCEED v0.4 was made again publicly available in the second full CEED software 394bcb2dfaeSJed Browndistribution, release CEED 2.0. This release contained notable features, such as 395bcb2dfaeSJed Brownfour new CPU backends, two new GPU backends, CPU backend optimizations, initial 396bcb2dfaeSJed Brownsupport for operator composition, performance benchmarking, and a Navier-Stokes demo. 397bcb2dfaeSJed BrownThe new CPU backends in this release came in two families. The `/cpu/self/*/serial` 398bcb2dfaeSJed Brownbackends process one element at a time and are intended for meshes with a smaller number 399bcb2dfaeSJed Brownof high order elements. The `/cpu/self/*/blocked` backends process blocked batches of 400bcb2dfaeSJed Browneight interlaced elements and are intended for meshes with higher numbers of elements. 401bcb2dfaeSJed BrownThe `/cpu/self/avx/*` backends rely upon AVX instructions to provide vectorized CPU 402bcb2dfaeSJed Brownperformance. The `/cpu/self/xsmm/*` backends rely upon the 403bcb2dfaeSJed Brown[LIBXSMM](http://github.com/hfp/libxsmm) package to provide vectorized CPU 404bcb2dfaeSJed Brownperformance. The `/gpu/cuda/*` backends provide GPU performance strictly using CUDA. 405bcb2dfaeSJed BrownThe `/gpu/cuda/ref` backend is a reference CUDA backend, providing reasonable 406bcb2dfaeSJed Brownperformance for most problem configurations. The `/gpu/cuda/reg` backend uses a simple 407bcb2dfaeSJed Brownparallelization approach, where each thread treats a finite element. Using just in time 408bcb2dfaeSJed Browncompilation, provided by nvrtc (NVidia Runtime Compiler), and runtime parameters, this 409bcb2dfaeSJed Brownbackend unroll loops and map memory address to registers. The `/gpu/cuda/reg` backend 410bcb2dfaeSJed Brownachieve good peak performance for 1D, 2D, and low order 3D problems, but performance 411bcb2dfaeSJed Browndeteriorates very quickly when threads run out of registers. 412bcb2dfaeSJed Brown 413bcb2dfaeSJed BrownA new explicit time-stepping Navier-Stokes solver was added to the family of libCEED 414bcb2dfaeSJed Brownexamples in the `examples/petsc` directory (see {ref}`example-petsc-navier-stokes`). 415bcb2dfaeSJed BrownThis example solves the time-dependent Navier-Stokes equations of compressible gas 416bcb2dfaeSJed Browndynamics in a static Eulerian three-dimensional frame, using structured high-order 417bcb2dfaeSJed Brownfinite/spectral element spatial discretizations and explicit high-order time-stepping 418bcb2dfaeSJed Brown(available in PETSc). Moreover, the Navier-Stokes example was developed using PETSc, 419bcb2dfaeSJed Brownso that the pointwise physics (defined at quadrature points) is separated from the 420bcb2dfaeSJed Brownparallelization and meshing concerns. 421bcb2dfaeSJed Brown 422bcb2dfaeSJed BrownBackends available in this release: 423bcb2dfaeSJed Brown 42468e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 42568e843eeSJed Brown|--------------------------|-----------------------------------------------------| 42668e843eeSJed Brown| `/cpu/self/ref/serial` | Serial reference implementation | 42768e843eeSJed Brown| `/cpu/self/ref/blocked` | Blocked reference implementation | 42868e843eeSJed Brown| `/cpu/self/tmpl` | Backend template, defaults to `/cpu/self/blocked` | 42968e843eeSJed Brown| `/cpu/self/avx/serial` | Serial AVX implementation | 43068e843eeSJed Brown| `/cpu/self/avx/blocked` | Blocked AVX implementation | 43168e843eeSJed Brown| `/cpu/self/xsmm/serial` | Serial LIBXSMM implementation | 43268e843eeSJed Brown| `/cpu/self/xsmm/blocked` | Blocked LIBXSMM implementation | 43368e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 43468e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 43568e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 43668e843eeSJed Brown| `/ocl/occa` | OpenCL OCCA kernels | 43768e843eeSJed Brown| `/gpu/cuda/ref` | Reference pure CUDA kernels | 43868e843eeSJed Brown| `/gpu/cuda/reg` | Pure CUDA kernels using one thread per element | 43968e843eeSJed Brown| `/gpu/magma` | CUDA MAGMA kernels | 440bcb2dfaeSJed Brown 441bcb2dfaeSJed BrownExamples available in this release: 442bcb2dfaeSJed Brown 44368e843eeSJed Brown:::{list-table} 44468e843eeSJed Brown:header-rows: 1 44568e843eeSJed Brown:widths: auto 44668e843eeSJed Brown* - User code 44768e843eeSJed Brown - Example 44868e843eeSJed Brown* - `ceed` 44968e843eeSJed Brown - * ex1 (volume) 45068e843eeSJed Brown* - `mfem` 45168e843eeSJed Brown - * BP1 (scalar mass operator) 45268e843eeSJed Brown * BP3 (scalar Laplace operator) 45368e843eeSJed Brown* - `petsc` 45468e843eeSJed Brown - * BP1 (scalar mass operator) 45568e843eeSJed Brown * BP3 (scalar Laplace operator) 45668e843eeSJed Brown * Navier-Stokes 45768e843eeSJed Brown* - `nek5000` 45868e843eeSJed Brown - * BP1 (scalar mass operator) 45968e843eeSJed Brown * BP3 (scalar Laplace operator) 46068e843eeSJed Brown::: 461bcb2dfaeSJed Brown 462bcb2dfaeSJed Brown(v0-3)= 463bcb2dfaeSJed Brown 464bcb2dfaeSJed Brown## v0.3 (Sep 30, 2018) 465bcb2dfaeSJed Brown 466bcb2dfaeSJed BrownNotable features in this release include active/passive field interface, support for 467bcb2dfaeSJed Brownnon-tensor bases, backend optimization, and improved Fortran interface. This release 468bcb2dfaeSJed Brownalso focused on providing improved continuous integration, and many new tests with code 469bcb2dfaeSJed Browncoverage reports of about 90%. This release also provided a significant change to the 470bcb2dfaeSJed Brownpublic interface: a {ref}`CeedQFunction` can take any number of named input and output 471bcb2dfaeSJed Brownarguments while {ref}`CeedOperator` connects them to the actual data, which may be 472bcb2dfaeSJed Brownsupplied explicitly to `CeedOperatorApply()` (active) or separately via 473bcb2dfaeSJed Brown`CeedOperatorSetField()` (passive). This interface change enables reusable libraries 474bcb2dfaeSJed Brownof CeedQFunctions and composition of block solvers constructed using 475bcb2dfaeSJed Brown{ref}`CeedOperator`. A concept of blocked restriction was added to this release and 476bcb2dfaeSJed Brownused in an optimized CPU backend. Although this is typically not visible to the user, 477bcb2dfaeSJed Brownit enables effective use of arbitrary-length SIMD while maintaining cache locality. 478bcb2dfaeSJed BrownThis CPU backend also implements an algebraic factorization of tensor product gradients 479bcb2dfaeSJed Brownto perform fewer operations than standard application of interpolation and 480bcb2dfaeSJed Browndifferentiation from nodes to quadrature points. This algebraic formulation 481bcb2dfaeSJed Brownautomatically supports non-polynomial and non-interpolatory bases, thus is more general 482bcb2dfaeSJed Brownthan the more common derivation in terms of Lagrange polynomials on the quadrature points. 483bcb2dfaeSJed Brown 484bcb2dfaeSJed BrownBackends available in this release: 485bcb2dfaeSJed Brown 48668e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 48768e843eeSJed Brown|-------------------------|-----------------------------------------------------| 48868e843eeSJed Brown| `/cpu/self/blocked` | Blocked reference implementation | 48968e843eeSJed Brown| `/cpu/self/ref` | Serial reference implementation | 49068e843eeSJed Brown| `/cpu/self/tmpl` | Backend template, defaults to `/cpu/self/blocked` | 49168e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 49268e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 49368e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 49468e843eeSJed Brown| `/ocl/occa` | OpenCL OCCA kernels | 49568e843eeSJed Brown| `/gpu/magma` | CUDA MAGMA kernels | 496bcb2dfaeSJed Brown 497bcb2dfaeSJed BrownExamples available in this release: 498bcb2dfaeSJed Brown 49968e843eeSJed Brown:::{list-table} 50068e843eeSJed Brown:header-rows: 1 50168e843eeSJed Brown:widths: auto 50268e843eeSJed Brown* - User code 50368e843eeSJed Brown - Example 50468e843eeSJed Brown* - `ceed` 50568e843eeSJed Brown - * ex1 (volume) 50668e843eeSJed Brown* - `mfem` 50768e843eeSJed Brown - * BP1 (scalar mass operator) 50868e843eeSJed Brown * BP3 (scalar Laplace operator) 50968e843eeSJed Brown* - `petsc` 51068e843eeSJed Brown - * BP1 (scalar mass operator) 51168e843eeSJed Brown * BP3 (scalar Laplace operator) 51268e843eeSJed Brown* - `nek5000` 51368e843eeSJed Brown - * BP1 (scalar mass operator) 51468e843eeSJed Brown * BP3 (scalar Laplace operator) 51568e843eeSJed Brown::: 516bcb2dfaeSJed Brown 517bcb2dfaeSJed Brown(v0-21)= 518bcb2dfaeSJed Brown 519bcb2dfaeSJed Brown## v0.21 (Sep 30, 2018) 520bcb2dfaeSJed Brown 521bcb2dfaeSJed BrownA MAGMA backend (which relies upon the 522bcb2dfaeSJed Brown[MAGMA](https://bitbucket.org/icl/magma) package) was integrated in libCEED for this 523bcb2dfaeSJed Brownrelease. This initial integration set up the framework of using MAGMA and provided the 524bcb2dfaeSJed BrownlibCEED functionality through MAGMA kernels as one of libCEED’s computational backends. 525bcb2dfaeSJed BrownAs any other backend, the MAGMA backend provides extended basic data structures for 526bcb2dfaeSJed Brown{ref}`CeedVector`, {ref}`CeedElemRestriction`, and {ref}`CeedOperator`, and implements 527bcb2dfaeSJed Brownthe fundamental CEED building blocks to work with the new data structures. 528bcb2dfaeSJed BrownIn general, the MAGMA-specific data structures keep the libCEED pointers to CPU data 529bcb2dfaeSJed Brownbut also add corresponding device (e.g., GPU) pointers to the data. Coherency is handled 530bcb2dfaeSJed Browninternally, and thus seamlessly to the user, through the functions/methods that are 531bcb2dfaeSJed Brownprovided to support them. 532bcb2dfaeSJed Brown 533bcb2dfaeSJed BrownBackends available in this release: 534bcb2dfaeSJed Brown 53568e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 53668e843eeSJed Brown|-------------------------|---------------------------------| 53768e843eeSJed Brown| `/cpu/self` | Serial reference implementation | 53868e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 53968e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 54068e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 54168e843eeSJed Brown| `/ocl/occa` | OpenCL OCCA kernels | 54268e843eeSJed Brown| `/gpu/magma` | CUDA MAGMA kernels | 543bcb2dfaeSJed Brown 544bcb2dfaeSJed BrownExamples available in this release: 545bcb2dfaeSJed Brown 54668e843eeSJed Brown:::{list-table} 54768e843eeSJed Brown:header-rows: 1 54868e843eeSJed Brown:widths: auto 54968e843eeSJed Brown* - User code 55068e843eeSJed Brown - Example 55168e843eeSJed Brown* - `ceed` 55268e843eeSJed Brown - * ex1 (volume) 55368e843eeSJed Brown* - `mfem` 55468e843eeSJed Brown - * BP1 (scalar mass operator) 55568e843eeSJed Brown * BP3 (scalar Laplace operator) 55668e843eeSJed Brown* - `petsc` 55768e843eeSJed Brown - * BP1 (scalar mass operator) 55868e843eeSJed Brown* - `nek5000` 55968e843eeSJed Brown - * BP1 (scalar mass operator) 56068e843eeSJed Brown::: 561bcb2dfaeSJed Brown 562bcb2dfaeSJed Brown(v0-2)= 563bcb2dfaeSJed Brown 564bcb2dfaeSJed Brown## v0.2 (Mar 30, 2018) 565bcb2dfaeSJed Brown 566bcb2dfaeSJed BrownlibCEED was made publicly available the first full CEED software distribution, release 567bcb2dfaeSJed BrownCEED 1.0. The distribution was made available using the Spack package manager to provide 568bcb2dfaeSJed Browna common, easy-to-use build environment, where the user can build the CEED distribution 569bcb2dfaeSJed Brownwith all dependencies. This release included a new Fortran interface for the library. 570bcb2dfaeSJed BrownThis release also contained major improvements in the OCCA backend (including a new 571bcb2dfaeSJed Brown`/ocl/occa` backend) and new examples. The standalone libCEED example was modified to 572bcb2dfaeSJed Browncompute the volume volume of a given mesh (in 1D, 2D, or 3D) and placed in an 573bcb2dfaeSJed Brown`examples/ceed` subfolder. A new `mfem` example to perform BP3 (with the application 574bcb2dfaeSJed Brownof the Laplace operator) was also added to this release. 575bcb2dfaeSJed Brown 576bcb2dfaeSJed BrownBackends available in this release: 577bcb2dfaeSJed Brown 57868e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 57968e843eeSJed Brown|-------------------------|---------------------------------| 58068e843eeSJed Brown| `/cpu/self` | Serial reference implementation | 58168e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 58268e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 58368e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 58468e843eeSJed Brown| `/ocl/occa` | OpenCL OCCA kernels | 585bcb2dfaeSJed Brown 586bcb2dfaeSJed BrownExamples available in this release: 587bcb2dfaeSJed Brown 58868e843eeSJed Brown:::{list-table} 58968e843eeSJed Brown:header-rows: 1 59068e843eeSJed Brown:widths: auto 59168e843eeSJed Brown* - User code 59268e843eeSJed Brown - Example 59368e843eeSJed Brown* - `ceed` 59468e843eeSJed Brown - * ex1 (volume) 59568e843eeSJed Brown* - `mfem` 59668e843eeSJed Brown - * BP1 (scalar mass operator) 59768e843eeSJed Brown * BP3 (scalar Laplace operator) 59868e843eeSJed Brown* - `petsc` 59968e843eeSJed Brown - * BP1 (scalar mass operator) 60068e843eeSJed Brown* - `nek5000` 60168e843eeSJed Brown - * BP1 (scalar mass operator) 60268e843eeSJed Brown::: 603bcb2dfaeSJed Brown 604bcb2dfaeSJed Brown(v0-1)= 605bcb2dfaeSJed Brown 606bcb2dfaeSJed Brown## v0.1 (Jan 3, 2018) 607bcb2dfaeSJed Brown 608bcb2dfaeSJed BrownInitial low-level API of the CEED project. The low-level API provides a set of Finite 609bcb2dfaeSJed BrownElements kernels and components for writing new low-level kernels. Examples include: 610bcb2dfaeSJed Brownvector and sparse linear algebra, element matrix assembly over a batch of elements, 611bcb2dfaeSJed Brownpartial assembly and action for efficient high-order operators like mass, diffusion, 612bcb2dfaeSJed Brownadvection, etc. The main goal of the low-level API is to establish the basis for the 613bcb2dfaeSJed Brownhigh-level API. Also, identifying such low-level kernels and providing a reference 614bcb2dfaeSJed Brownimplementation for them serves as the basis for specialized backend implementations. 615bcb2dfaeSJed BrownThis release contained several backends: `/cpu/self`, and backends which rely upon the 616bcb2dfaeSJed Brown[OCCA](http://github.com/libocca/occa) package, such as `/cpu/occa`, 617bcb2dfaeSJed Brown`/gpu/occa`, and `/omp/occa`. 618bcb2dfaeSJed BrownIt also included several examples, in the `examples` folder: 619bcb2dfaeSJed BrownA standalone code that shows the usage of libCEED (with no external 620bcb2dfaeSJed Browndependencies) to apply the Laplace operator, `ex1`; an `mfem` example to perform BP1 621bcb2dfaeSJed Brown(with the application of the mass operator); and a `petsc` example to perform BP1 622bcb2dfaeSJed Brown(with the application of the mass operator). 623bcb2dfaeSJed Brown 624bcb2dfaeSJed BrownBackends available in this release: 625bcb2dfaeSJed Brown 62668e843eeSJed Brown| CEED resource (`-ceed`) | Backend | 62768e843eeSJed Brown|-------------------------|---------------------------------| 62868e843eeSJed Brown| `/cpu/self` | Serial reference implementation | 62968e843eeSJed Brown| `/cpu/occa` | Serial OCCA kernels | 63068e843eeSJed Brown| `/gpu/occa` | CUDA OCCA kernels | 63168e843eeSJed Brown| `/omp/occa` | OpenMP OCCA kernels | 632bcb2dfaeSJed Brown 633bcb2dfaeSJed BrownExamples available in this release: 634bcb2dfaeSJed Brown 635bcb2dfaeSJed Brown| User code | Example | 63668e843eeSJed Brown|-----------------------|-----------------------------------| 63768e843eeSJed Brown| `ceed` | ex1 (scalar Laplace operator) | 63868e843eeSJed Brown| `mfem` | BP1 (scalar mass operator) | 63968e843eeSJed Brown| `petsc` | BP1 (scalar mass operator) | 640bcb2dfaeSJed Brown``` 641