Disable DLB if GPU direct communication Halo exchange is enabled.
[alexxy/gromacs.git] / src / gromacs / mdrun / runner.cpp
1 /*
2  * This file is part of the GROMACS molecular simulation package.
3  *
4  * Copyright (c) 1991-2000, University of Groningen, The Netherlands.
5  * Copyright (c) 2001-2004, The GROMACS development team.
6  * Copyright (c) 2011-2019,2020,2021, by the GROMACS development team, led by
7  * Mark Abraham, David van der Spoel, Berk Hess, and Erik Lindahl,
8  * and including many others, as listed in the AUTHORS file in the
9  * top-level source directory and at http://www.gromacs.org.
10  *
11  * GROMACS is free software; you can redistribute it and/or
12  * modify it under the terms of the GNU Lesser General Public License
13  * as published by the Free Software Foundation; either version 2.1
14  * of the License, or (at your option) any later version.
15  *
16  * GROMACS is distributed in the hope that it will be useful,
17  * but WITHOUT ANY WARRANTY; without even the implied warranty of
18  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
19  * Lesser General Public License for more details.
20  *
21  * You should have received a copy of the GNU Lesser General Public
22  * License along with GROMACS; if not, see
23  * http://www.gnu.org/licenses, or write to the Free Software Foundation,
24  * Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA.
25  *
26  * If you want to redistribute modifications to GROMACS, please
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28  * control is crucial - bugs must be traceable. We will be happy to
29  * consider code for inclusion in the official distribution, but
30  * derived work must not be called official GROMACS. Details are found
31  * in the README & COPYING files - if they are missing, get the
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33  *
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35  * the research papers on the package. Check out http://www.gromacs.org.
36  */
37 /*! \internal \file
38  *
39  * \brief Implements the MD runner routine calling all integrators.
40  *
41  * \author David van der Spoel <david.vanderspoel@icm.uu.se>
42  * \ingroup module_mdrun
43  */
44 #include "gmxpre.h"
45
46 #include "runner.h"
47
48 #include "config.h"
49
50 #include <cassert>
51 #include <cinttypes>
52 #include <csignal>
53 #include <cstdlib>
54 #include <cstring>
55
56 #include <algorithm>
57 #include <memory>
58
59 #include "gromacs/commandline/filenm.h"
60 #include "gromacs/domdec/builder.h"
61 #include "gromacs/domdec/domdec.h"
62 #include "gromacs/domdec/domdec_struct.h"
63 #include "gromacs/domdec/gpuhaloexchange.h"
64 #include "gromacs/domdec/localatomsetmanager.h"
65 #include "gromacs/domdec/makebondedlinks.h"
66 #include "gromacs/domdec/partition.h"
67 #include "gromacs/domdec/reversetopology.h"
68 #include "gromacs/ewald/ewald_utils.h"
69 #include "gromacs/ewald/pme.h"
70 #include "gromacs/ewald/pme_gpu_program.h"
71 #include "gromacs/ewald/pme_only.h"
72 #include "gromacs/ewald/pme_pp_comm_gpu.h"
73 #include "gromacs/fileio/checkpoint.h"
74 #include "gromacs/fileio/gmxfio.h"
75 #include "gromacs/fileio/oenv.h"
76 #include "gromacs/fileio/tpxio.h"
77 #include "gromacs/gmxlib/network.h"
78 #include "gromacs/gmxlib/nrnb.h"
79 #include "gromacs/gpu_utils/device_stream_manager.h"
80 #include "gromacs/hardware/cpuinfo.h"
81 #include "gromacs/hardware/detecthardware.h"
82 #include "gromacs/hardware/device_management.h"
83 #include "gromacs/hardware/hardwaretopology.h"
84 #include "gromacs/hardware/printhardware.h"
85 #include "gromacs/imd/imd.h"
86 #include "gromacs/listed_forces/disre.h"
87 #include "gromacs/listed_forces/listed_forces_gpu.h"
88 #include "gromacs/listed_forces/listed_forces.h"
89 #include "gromacs/listed_forces/orires.h"
90 #include "gromacs/math/functions.h"
91 #include "gromacs/math/utilities.h"
92 #include "gromacs/math/vec.h"
93 #include "gromacs/mdlib/boxdeformation.h"
94 #include "gromacs/mdlib/broadcaststructs.h"
95 #include "gromacs/mdlib/calc_verletbuf.h"
96 #include "gromacs/mdlib/dispersioncorrection.h"
97 #include "gromacs/mdlib/enerdata_utils.h"
98 #include "gromacs/mdlib/force.h"
99 #include "gromacs/mdlib/forcerec.h"
100 #include "gromacs/mdlib/gmx_omp_nthreads.h"
101 #include "gromacs/mdlib/gpuforcereduction.h"
102 #include "gromacs/mdlib/makeconstraints.h"
103 #include "gromacs/mdlib/md_support.h"
104 #include "gromacs/mdlib/mdatoms.h"
105 #include "gromacs/mdlib/sighandler.h"
106 #include "gromacs/mdlib/stophandler.h"
107 #include "gromacs/mdlib/tgroup.h"
108 #include "gromacs/mdlib/updategroups.h"
109 #include "gromacs/mdlib/vsite.h"
110 #include "gromacs/mdrun/mdmodules.h"
111 #include "gromacs/mdrun/simulationcontext.h"
112 #include "gromacs/mdrun/simulationinput.h"
113 #include "gromacs/mdrun/simulationinputhandle.h"
114 #include "gromacs/mdrunutility/handlerestart.h"
115 #include "gromacs/mdrunutility/logging.h"
116 #include "gromacs/mdrunutility/multisim.h"
117 #include "gromacs/mdrunutility/printtime.h"
118 #include "gromacs/mdrunutility/threadaffinity.h"
119 #include "gromacs/mdtypes/checkpointdata.h"
120 #include "gromacs/mdtypes/commrec.h"
121 #include "gromacs/mdtypes/enerdata.h"
122 #include "gromacs/mdtypes/fcdata.h"
123 #include "gromacs/mdtypes/forcerec.h"
124 #include "gromacs/mdtypes/group.h"
125 #include "gromacs/mdtypes/inputrec.h"
126 #include "gromacs/mdtypes/interaction_const.h"
127 #include "gromacs/mdtypes/md_enums.h"
128 #include "gromacs/mdtypes/mdatom.h"
129 #include "gromacs/mdtypes/mdrunoptions.h"
130 #include "gromacs/mdtypes/observableshistory.h"
131 #include "gromacs/mdtypes/simulation_workload.h"
132 #include "gromacs/mdtypes/state.h"
133 #include "gromacs/mdtypes/state_propagator_data_gpu.h"
134 #include "gromacs/modularsimulator/modularsimulator.h"
135 #include "gromacs/nbnxm/gpu_data_mgmt.h"
136 #include "gromacs/nbnxm/nbnxm.h"
137 #include "gromacs/nbnxm/pairlist_tuning.h"
138 #include "gromacs/pbcutil/pbc.h"
139 #include "gromacs/pulling/output.h"
140 #include "gromacs/pulling/pull.h"
141 #include "gromacs/pulling/pull_rotation.h"
142 #include "gromacs/restraint/manager.h"
143 #include "gromacs/restraint/restraintmdmodule.h"
144 #include "gromacs/restraint/restraintpotential.h"
145 #include "gromacs/swap/swapcoords.h"
146 #include "gromacs/taskassignment/decidegpuusage.h"
147 #include "gromacs/taskassignment/decidesimulationworkload.h"
148 #include "gromacs/taskassignment/resourcedivision.h"
149 #include "gromacs/taskassignment/taskassignment.h"
150 #include "gromacs/taskassignment/usergpuids.h"
151 #include "gromacs/timing/gpu_timing.h"
152 #include "gromacs/timing/wallcycle.h"
153 #include "gromacs/timing/wallcyclereporting.h"
154 #include "gromacs/topology/mtop_util.h"
155 #include "gromacs/trajectory/trajectoryframe.h"
156 #include "gromacs/utility/basenetwork.h"
157 #include "gromacs/utility/cstringutil.h"
158 #include "gromacs/utility/exceptions.h"
159 #include "gromacs/utility/fatalerror.h"
160 #include "gromacs/utility/filestream.h"
161 #include "gromacs/utility/gmxassert.h"
162 #include "gromacs/utility/gmxmpi.h"
163 #include "gromacs/utility/keyvaluetree.h"
164 #include "gromacs/utility/logger.h"
165 #include "gromacs/utility/loggerbuilder.h"
166 #include "gromacs/utility/mdmodulesnotifiers.h"
167 #include "gromacs/utility/physicalnodecommunicator.h"
168 #include "gromacs/utility/pleasecite.h"
169 #include "gromacs/utility/programcontext.h"
170 #include "gromacs/utility/smalloc.h"
171 #include "gromacs/utility/stringutil.h"
172 #include "gromacs/utility/mpiinfo.h"
173
174 #include "isimulator.h"
175 #include "membedholder.h"
176 #include "replicaexchange.h"
177 #include "simulatorbuilder.h"
178
179 namespace gmx
180 {
181
182
183 /*! \brief Manage any development feature flag variables encountered
184  *
185  * The use of dev features indicated by environment variables is
186  * logged in order to ensure that runs with such features enabled can
187  * be identified from their log and standard output. Any cross
188  * dependencies are also checked, and if unsatisfied, a fatal error
189  * issued.
190  *
191  * Note that some development features overrides are applied already here:
192  * the GPU communication flags are set to false in non-tMPI and non-CUDA builds.
193  *
194  * \param[in]  mdlog                Logger object.
195  * \param[in]  useGpuForNonbonded   True if the nonbonded task is offloaded in this run.
196  * \param[in]  pmeRunMode           The PME run mode for this run
197  * \returns                         The object populated with development feature flags.
198  */
199 static DevelopmentFeatureFlags manageDevelopmentFeatures(const gmx::MDLogger& mdlog,
200                                                          const bool           useGpuForNonbonded,
201                                                          const PmeRunMode     pmeRunMode)
202 {
203     DevelopmentFeatureFlags devFlags;
204
205     devFlags.enableGpuBufferOps =
206             GMX_GPU_CUDA && useGpuForNonbonded && (getenv("GMX_USE_GPU_BUFFER_OPS") != nullptr);
207     devFlags.enableGpuHaloExchange = GMX_MPI && GMX_GPU_CUDA && getenv("GMX_GPU_DD_COMMS") != nullptr;
208     devFlags.forceGpuUpdateDefault = (getenv("GMX_FORCE_UPDATE_DEFAULT_GPU") != nullptr) || GMX_FAHCORE;
209     devFlags.enableGpuPmePPComm = GMX_MPI && GMX_GPU_CUDA && getenv("GMX_GPU_PME_PP_COMMS") != nullptr;
210
211     // Direct GPU comm path is being used with CUDA_AWARE_MPI
212     // make sure underlying MPI implementation is CUDA-aware
213     if (!GMX_THREAD_MPI && (devFlags.enableGpuPmePPComm || devFlags.enableGpuHaloExchange))
214     {
215         const bool haveDetectedCudaAwareMpi =
216                 (checkMpiCudaAwareSupport() == CudaAwareMpiStatus::Supported);
217         const bool forceCudaAwareMpi = (getenv("GMX_FORCE_CUDA_AWARE_MPI") != nullptr);
218
219         if (!haveDetectedCudaAwareMpi && forceCudaAwareMpi)
220         {
221             // CUDA-aware support not detected in MPI library but, user has forced it's use
222             GMX_LOG(mdlog.warning)
223                     .asParagraph()
224                     .appendTextFormatted(
225                             "This run has forced use of 'CUDA-aware MPI'. "
226                             "But, GROMACS cannot determine if underlying MPI "
227                             "is CUDA-aware. GROMACS recommends use of latest openMPI version "
228                             "for CUDA-aware support. "
229                             "If you observe failures at runtime, try unsetting "
230                             "GMX_FORCE_CUDA_AWARE_MPI environment variable.");
231         }
232
233         if (haveDetectedCudaAwareMpi || forceCudaAwareMpi)
234         {
235             devFlags.usingCudaAwareMpi = true;
236             GMX_LOG(mdlog.warning)
237                     .asParagraph()
238                     .appendTextFormatted(
239                             "Using CUDA-aware MPI for 'GPU halo exchange' or 'GPU PME-PP "
240                             "communications' feature.");
241         }
242         else
243         {
244             if (devFlags.enableGpuHaloExchange)
245             {
246                 GMX_LOG(mdlog.warning)
247                         .asParagraph()
248                         .appendTextFormatted(
249                                 "GMX_GPU_DD_COMMS environment variable detected, but the 'GPU "
250                                 "halo exchange' feature will not be enabled as GROMACS couldn't "
251                                 "detect CUDA_aware support in underlying MPI implementation.");
252                 devFlags.enableGpuHaloExchange = false;
253             }
254             if (devFlags.enableGpuPmePPComm)
255             {
256                 GMX_LOG(mdlog.warning)
257                         .asParagraph()
258                         .appendText(
259                                 "GMX_GPU_PME_PP_COMMS environment variable detected, but the "
260                                 "'GPU PME-PP communications' feature will not be enabled as "
261                                 "GROMACS couldn't "
262                                 "detect CUDA_aware support in underlying MPI implementation.");
263                 devFlags.enableGpuPmePPComm = false;
264             }
265
266             GMX_LOG(mdlog.warning)
267                     .asParagraph()
268                     .appendTextFormatted(
269                             "GROMACS recommends use of latest OpenMPI version for CUDA-aware "
270                             "support. "
271                             "If you are certain about CUDA-aware support in your MPI library, "
272                             "you can force it's use by setting environment variable "
273                             " GMX_FORCE_CUDA_AWARE_MPI.");
274         }
275     }
276
277     if (devFlags.enableGpuBufferOps)
278     {
279         GMX_LOG(mdlog.warning)
280                 .asParagraph()
281                 .appendTextFormatted(
282                         "This run uses the 'GPU buffer ops' feature, enabled by the "
283                         "GMX_USE_GPU_BUFFER_OPS environment variable.");
284     }
285
286     if (devFlags.forceGpuUpdateDefault)
287     {
288         GMX_LOG(mdlog.warning)
289                 .asParagraph()
290                 .appendTextFormatted(
291                         "This run will default to '-update gpu' as requested by the "
292                         "GMX_FORCE_UPDATE_DEFAULT_GPU environment variable. GPU update with domain "
293                         "decomposition lacks substantial testing and should be used with caution.");
294     }
295
296     if (devFlags.enableGpuHaloExchange)
297     {
298         if (useGpuForNonbonded)
299         {
300             if (!devFlags.enableGpuBufferOps)
301             {
302                 GMX_LOG(mdlog.warning)
303                         .asParagraph()
304                         .appendTextFormatted(
305                                 "Enabling GPU buffer operations required by GMX_GPU_DD_COMMS "
306                                 "(equivalent with GMX_USE_GPU_BUFFER_OPS=1).");
307                 devFlags.enableGpuBufferOps = true;
308             }
309             GMX_LOG(mdlog.warning)
310                     .asParagraph()
311                     .appendTextFormatted(
312                             "This run has requested the 'GPU halo exchange' feature, enabled by "
313                             "the "
314                             "GMX_GPU_DD_COMMS environment variable.");
315         }
316         else
317         {
318             GMX_LOG(mdlog.warning)
319                     .asParagraph()
320                     .appendTextFormatted(
321                             "GMX_GPU_DD_COMMS environment variable detected, but the 'GPU "
322                             "halo exchange' feature will not be enabled as nonbonded interactions "
323                             "are not offloaded.");
324             devFlags.enableGpuHaloExchange = false;
325         }
326     }
327
328     if (devFlags.enableGpuPmePPComm)
329     {
330         if (pmeRunMode == PmeRunMode::GPU)
331         {
332             if (!devFlags.enableGpuBufferOps)
333             {
334                 GMX_LOG(mdlog.warning)
335                         .asParagraph()
336                         .appendTextFormatted(
337                                 "Enabling GPU buffer operations required by GMX_GPU_PME_PP_COMMS "
338                                 "(equivalent with GMX_USE_GPU_BUFFER_OPS=1).");
339                 devFlags.enableGpuBufferOps = true;
340             }
341             GMX_LOG(mdlog.warning)
342                     .asParagraph()
343                     .appendTextFormatted(
344                             "This run uses the 'GPU PME-PP communications' feature, enabled "
345                             "by the GMX_GPU_PME_PP_COMMS environment variable.");
346         }
347         else
348         {
349             std::string clarification;
350             if (pmeRunMode == PmeRunMode::Mixed)
351             {
352                 clarification =
353                         "PME FFT and gather are not offloaded to the GPU (PME is running in mixed "
354                         "mode).";
355             }
356             else
357             {
358                 clarification = "PME is not offloaded to the GPU.";
359             }
360             GMX_LOG(mdlog.warning)
361                     .asParagraph()
362                     .appendText(
363                             "GMX_GPU_PME_PP_COMMS environment variable detected, but the "
364                             "'GPU PME-PP communications' feature was not enabled as "
365                             + clarification);
366             devFlags.enableGpuPmePPComm = false;
367         }
368     }
369
370     return devFlags;
371 }
372
373 /*! \brief Barrier for safe simultaneous thread access to mdrunner data
374  *
375  * Used to ensure that the master thread does not modify mdrunner during copy
376  * on the spawned threads. */
377 static void threadMpiMdrunnerAccessBarrier()
378 {
379 #if GMX_THREAD_MPI
380     MPI_Barrier(MPI_COMM_WORLD);
381 #endif
382 }
383
384 Mdrunner Mdrunner::cloneOnSpawnedThread() const
385 {
386     auto newRunner = Mdrunner(std::make_unique<MDModules>());
387
388     // All runners in the same process share a restraint manager resource because it is
389     // part of the interface to the client code, which is associated only with the
390     // original thread. Handles to the same resources can be obtained by copy.
391     {
392         newRunner.restraintManager_ = std::make_unique<RestraintManager>(*restraintManager_);
393     }
394
395     // Copy members of master runner.
396     // \todo Replace with builder when Simulation context and/or runner phases are better defined.
397     // Ref https://gitlab.com/gromacs/gromacs/-/issues/2587 and https://gitlab.com/gromacs/gromacs/-/issues/2375
398     newRunner.hw_opt    = hw_opt;
399     newRunner.filenames = filenames;
400
401     newRunner.hwinfo_         = hwinfo_;
402     newRunner.oenv            = oenv;
403     newRunner.mdrunOptions    = mdrunOptions;
404     newRunner.domdecOptions   = domdecOptions;
405     newRunner.nbpu_opt        = nbpu_opt;
406     newRunner.pme_opt         = pme_opt;
407     newRunner.pme_fft_opt     = pme_fft_opt;
408     newRunner.bonded_opt      = bonded_opt;
409     newRunner.update_opt      = update_opt;
410     newRunner.nstlist_cmdline = nstlist_cmdline;
411     newRunner.replExParams    = replExParams;
412     newRunner.pforce          = pforce;
413     // Give the spawned thread the newly created valid communicator
414     // for the simulation.
415     newRunner.libraryWorldCommunicator = MPI_COMM_WORLD;
416     newRunner.simulationCommunicator   = MPI_COMM_WORLD;
417     newRunner.ms                       = ms;
418     newRunner.startingBehavior         = startingBehavior;
419     newRunner.stopHandlerBuilder_      = std::make_unique<StopHandlerBuilder>(*stopHandlerBuilder_);
420     newRunner.inputHolder_             = inputHolder_;
421
422     threadMpiMdrunnerAccessBarrier();
423
424     return newRunner;
425 }
426
427 /*! \brief The callback used for running on spawned threads.
428  *
429  * Obtains the pointer to the master mdrunner object from the one
430  * argument permitted to the thread-launch API call, copies it to make
431  * a new runner for this thread, reinitializes necessary data, and
432  * proceeds to the simulation. */
433 static void mdrunner_start_fn(const void* arg)
434 {
435     try
436     {
437         const auto* masterMdrunner = reinterpret_cast<const gmx::Mdrunner*>(arg);
438         /* copy the arg list to make sure that it's thread-local. This
439            doesn't copy pointed-to items, of course; fnm, cr and fplog
440            are reset in the call below, all others should be const. */
441         gmx::Mdrunner mdrunner = masterMdrunner->cloneOnSpawnedThread();
442         mdrunner.mdrunner();
443     }
444     GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
445 }
446
447
448 void Mdrunner::spawnThreads(int numThreadsToLaunch)
449 {
450 #if GMX_THREAD_MPI
451     /* now spawn new threads that start mdrunner_start_fn(), while
452        the main thread returns. Thread affinity is handled later. */
453     if (tMPI_Init_fn(TRUE, numThreadsToLaunch, TMPI_AFFINITY_NONE, mdrunner_start_fn, static_cast<const void*>(this))
454         != TMPI_SUCCESS)
455     {
456         GMX_THROW(gmx::InternalError("Failed to spawn thread-MPI threads"));
457     }
458
459     // Give the master thread the newly created valid communicator for
460     // the simulation.
461     libraryWorldCommunicator = MPI_COMM_WORLD;
462     simulationCommunicator   = MPI_COMM_WORLD;
463     threadMpiMdrunnerAccessBarrier();
464 #else
465     GMX_UNUSED_VALUE(numThreadsToLaunch);
466     GMX_UNUSED_VALUE(mdrunner_start_fn);
467 #endif
468 }
469
470 } // namespace gmx
471
472 /*! \brief Initialize variables for Verlet scheme simulation */
473 static void prepare_verlet_scheme(FILE*               fplog,
474                                   t_commrec*          cr,
475                                   t_inputrec*         ir,
476                                   int                 nstlist_cmdline,
477                                   const gmx_mtop_t&   mtop,
478                                   const matrix        box,
479                                   bool                makeGpuPairList,
480                                   const gmx::CpuInfo& cpuinfo)
481 {
482     // We checked the cut-offs in grompp, but double-check here.
483     // We have PME+LJcutoff kernels for rcoulomb>rvdw.
484     if (EEL_PME_EWALD(ir->coulombtype) && ir->vdwtype == VanDerWaalsType::Cut)
485     {
486         GMX_RELEASE_ASSERT(ir->rcoulomb >= ir->rvdw,
487                            "With Verlet lists and PME we should have rcoulomb>=rvdw");
488     }
489     else
490     {
491         GMX_RELEASE_ASSERT(ir->rcoulomb == ir->rvdw,
492                            "With Verlet lists and no PME rcoulomb and rvdw should be identical");
493     }
494     /* For NVE simulations, we will retain the initial list buffer */
495     if (EI_DYNAMICS(ir->eI) && ir->verletbuf_tol > 0
496         && !(EI_MD(ir->eI) && ir->etc == TemperatureCoupling::No))
497     {
498         /* Update the Verlet buffer size for the current run setup */
499
500         /* Here we assume SIMD-enabled kernels are being used. But as currently
501          * calc_verlet_buffer_size gives the same results for 4x8 and 4x4
502          * and 4x2 gives a larger buffer than 4x4, this is ok.
503          */
504         ListSetupType listType =
505                 (makeGpuPairList ? ListSetupType::Gpu : ListSetupType::CpuSimdWhenSupported);
506         VerletbufListSetup listSetup = verletbufGetSafeListSetup(listType);
507
508         const real rlist_new =
509                 calcVerletBufferSize(mtop, det(box), *ir, ir->nstlist, ir->nstlist - 1, -1, listSetup);
510
511         if (rlist_new != ir->rlist)
512         {
513             if (fplog != nullptr)
514             {
515                 fprintf(fplog,
516                         "\nChanging rlist from %g to %g for non-bonded %dx%d atom kernels\n\n",
517                         ir->rlist,
518                         rlist_new,
519                         listSetup.cluster_size_i,
520                         listSetup.cluster_size_j);
521             }
522             ir->rlist = rlist_new;
523         }
524     }
525
526     if (nstlist_cmdline > 0 && (!EI_DYNAMICS(ir->eI) || ir->verletbuf_tol <= 0))
527     {
528         gmx_fatal(FARGS,
529                   "Can not set nstlist without %s",
530                   !EI_DYNAMICS(ir->eI) ? "dynamics" : "verlet-buffer-tolerance");
531     }
532
533     if (EI_DYNAMICS(ir->eI))
534     {
535         /* Set or try nstlist values */
536         increaseNstlist(fplog, cr, ir, nstlist_cmdline, &mtop, box, makeGpuPairList, cpuinfo);
537     }
538 }
539
540 /*! \brief Override the nslist value in inputrec
541  *
542  * with value passed on the command line (if any)
543  */
544 static void override_nsteps_cmdline(const gmx::MDLogger& mdlog, int64_t nsteps_cmdline, t_inputrec* ir)
545 {
546     assert(ir);
547
548     /* override with anything else than the default -2 */
549     if (nsteps_cmdline > -2)
550     {
551         char sbuf_steps[STEPSTRSIZE];
552         char sbuf_msg[STRLEN];
553
554         ir->nsteps = nsteps_cmdline;
555         if (EI_DYNAMICS(ir->eI) && nsteps_cmdline != -1)
556         {
557             sprintf(sbuf_msg,
558                     "Overriding nsteps with value passed on the command line: %s steps, %.3g ps",
559                     gmx_step_str(nsteps_cmdline, sbuf_steps),
560                     fabs(nsteps_cmdline * ir->delta_t));
561         }
562         else
563         {
564             sprintf(sbuf_msg,
565                     "Overriding nsteps with value passed on the command line: %s steps",
566                     gmx_step_str(nsteps_cmdline, sbuf_steps));
567         }
568
569         GMX_LOG(mdlog.warning).asParagraph().appendText(sbuf_msg);
570     }
571     else if (nsteps_cmdline < -2)
572     {
573         gmx_fatal(FARGS, "Invalid nsteps value passed on the command line: %" PRId64, nsteps_cmdline);
574     }
575     /* Do nothing if nsteps_cmdline == -2 */
576 }
577
578 namespace gmx
579 {
580
581 /*! \brief Return whether GPU acceleration of nonbondeds is supported with the given settings.
582  *
583  * If not, and if a warning may be issued, logs a warning about
584  * falling back to CPU code. With thread-MPI, only the first
585  * call to this function should have \c issueWarning true. */
586 static bool gpuAccelerationOfNonbondedIsUseful(const MDLogger& mdlog, const t_inputrec& ir, bool issueWarning)
587 {
588     bool        gpuIsUseful = true;
589     std::string warning;
590
591     if (ir.opts.ngener - ir.nwall > 1)
592     {
593         /* The GPU code does not support more than one energy group.
594          * If the user requested GPUs explicitly, a fatal error is given later.
595          */
596         gpuIsUseful = false;
597         warning =
598                 "Multiple energy groups is not implemented for GPUs, falling back to the CPU. "
599                 "For better performance, run on the GPU without energy groups and then do "
600                 "gmx mdrun -rerun option on the trajectory with an energy group .tpr file.";
601     }
602
603     if (EI_TPI(ir.eI))
604     {
605         gpuIsUseful = false;
606         warning     = "TPI is not implemented for GPUs.";
607     }
608
609     if (!gpuIsUseful && issueWarning)
610     {
611         GMX_LOG(mdlog.warning).asParagraph().appendText(warning);
612     }
613
614     return gpuIsUseful;
615 }
616
617 //! Initializes the logger for mdrun.
618 static gmx::LoggerOwner buildLogger(FILE* fplog, const bool isSimulationMasterRank)
619 {
620     gmx::LoggerBuilder builder;
621     if (fplog != nullptr)
622     {
623         builder.addTargetFile(gmx::MDLogger::LogLevel::Info, fplog);
624     }
625     if (isSimulationMasterRank)
626     {
627         builder.addTargetStream(gmx::MDLogger::LogLevel::Warning, &gmx::TextOutputFile::standardError());
628     }
629     return builder.build();
630 }
631
632 //! Make a TaskTarget from an mdrun argument string.
633 static TaskTarget findTaskTarget(const char* optionString)
634 {
635     TaskTarget returnValue = TaskTarget::Auto;
636
637     if (strncmp(optionString, "auto", 3) == 0)
638     {
639         returnValue = TaskTarget::Auto;
640     }
641     else if (strncmp(optionString, "cpu", 3) == 0)
642     {
643         returnValue = TaskTarget::Cpu;
644     }
645     else if (strncmp(optionString, "gpu", 3) == 0)
646     {
647         returnValue = TaskTarget::Gpu;
648     }
649     else
650     {
651         GMX_ASSERT(false, "Option string should have been checked for sanity already");
652     }
653
654     return returnValue;
655 }
656
657 //! Finish run, aggregate data to print performance info.
658 static void finish_run(FILE*                     fplog,
659                        const gmx::MDLogger&      mdlog,
660                        const t_commrec*          cr,
661                        const t_inputrec&         inputrec,
662                        t_nrnb                    nrnb[],
663                        gmx_wallcycle*            wcycle,
664                        gmx_walltime_accounting_t walltime_accounting,
665                        nonbonded_verlet_t*       nbv,
666                        const gmx_pme_t*          pme,
667                        gmx_bool                  bWriteStat)
668 {
669     double delta_t = 0;
670     double nbfs = 0, mflop = 0;
671     double elapsed_time, elapsed_time_over_all_ranks, elapsed_time_over_all_threads,
672             elapsed_time_over_all_threads_over_all_ranks;
673     /* Control whether it is valid to print a report. Only the
674        simulation master may print, but it should not do so if the run
675        terminated e.g. before a scheduled reset step. This is
676        complicated by the fact that PME ranks are unaware of the
677        reason why they were sent a pmerecvqxFINISH. To avoid
678        communication deadlocks, we always do the communication for the
679        report, even if we've decided not to write the report, because
680        how long it takes to finish the run is not important when we've
681        decided not to report on the simulation performance.
682
683        Further, we only report performance for dynamical integrators,
684        because those are the only ones for which we plan to
685        consider doing any optimizations. */
686     bool printReport = EI_DYNAMICS(inputrec.eI) && SIMMASTER(cr);
687
688     if (printReport && !walltime_accounting_get_valid_finish(walltime_accounting))
689     {
690         GMX_LOG(mdlog.warning)
691                 .asParagraph()
692                 .appendText("Simulation ended prematurely, no performance report will be written.");
693         printReport = false;
694     }
695
696     t_nrnb*                 nrnb_tot;
697     std::unique_ptr<t_nrnb> nrnbTotalStorage;
698     if (cr->nnodes > 1)
699     {
700         nrnbTotalStorage = std::make_unique<t_nrnb>();
701         nrnb_tot         = nrnbTotalStorage.get();
702 #if GMX_MPI
703         MPI_Allreduce(nrnb->n.data(), nrnb_tot->n.data(), eNRNB, MPI_DOUBLE, MPI_SUM, cr->mpi_comm_mysim);
704 #endif
705     }
706     else
707     {
708         nrnb_tot = nrnb;
709     }
710
711     elapsed_time = walltime_accounting_get_time_since_reset(walltime_accounting);
712     elapsed_time_over_all_threads =
713             walltime_accounting_get_time_since_reset_over_all_threads(walltime_accounting);
714     if (cr->nnodes > 1)
715     {
716 #if GMX_MPI
717         /* reduce elapsed_time over all MPI ranks in the current simulation */
718         MPI_Allreduce(&elapsed_time, &elapsed_time_over_all_ranks, 1, MPI_DOUBLE, MPI_SUM, cr->mpi_comm_mysim);
719         elapsed_time_over_all_ranks /= cr->nnodes;
720         /* Reduce elapsed_time_over_all_threads over all MPI ranks in the
721          * current simulation. */
722         MPI_Allreduce(&elapsed_time_over_all_threads,
723                       &elapsed_time_over_all_threads_over_all_ranks,
724                       1,
725                       MPI_DOUBLE,
726                       MPI_SUM,
727                       cr->mpi_comm_mysim);
728 #endif
729     }
730     else
731     {
732         elapsed_time_over_all_ranks                  = elapsed_time;
733         elapsed_time_over_all_threads_over_all_ranks = elapsed_time_over_all_threads;
734     }
735
736     if (printReport)
737     {
738         print_flop(fplog, nrnb_tot, &nbfs, &mflop);
739     }
740
741     if (thisRankHasDuty(cr, DUTY_PP) && DOMAINDECOMP(cr))
742     {
743         print_dd_statistics(cr, inputrec, fplog);
744     }
745
746     /* TODO Move the responsibility for any scaling by thread counts
747      * to the code that handled the thread region, so that there's a
748      * mechanism to keep cycle counting working during the transition
749      * to task parallelism. */
750     int nthreads_pp  = gmx_omp_nthreads_get(ModuleMultiThread::Nonbonded);
751     int nthreads_pme = gmx_omp_nthreads_get(ModuleMultiThread::Pme);
752     wallcycle_scale_by_num_threads(
753             wcycle, thisRankHasDuty(cr, DUTY_PME) && !thisRankHasDuty(cr, DUTY_PP), nthreads_pp, nthreads_pme);
754     auto cycle_sum(wallcycle_sum(cr, wcycle));
755
756     if (printReport)
757     {
758         auto* nbnxn_gpu_timings =
759                 (nbv != nullptr && nbv->useGpu()) ? Nbnxm::gpu_get_timings(nbv->gpu_nbv) : nullptr;
760         gmx_wallclock_gpu_pme_t pme_gpu_timings = {};
761
762         if (pme_gpu_task_enabled(pme))
763         {
764             pme_gpu_get_timings(pme, &pme_gpu_timings);
765         }
766         wallcycle_print(fplog,
767                         mdlog,
768                         cr->nnodes,
769                         cr->npmenodes,
770                         nthreads_pp,
771                         nthreads_pme,
772                         elapsed_time_over_all_ranks,
773                         wcycle,
774                         cycle_sum,
775                         nbnxn_gpu_timings,
776                         &pme_gpu_timings);
777
778         if (EI_DYNAMICS(inputrec.eI))
779         {
780             delta_t = inputrec.delta_t;
781         }
782
783         if (fplog)
784         {
785             print_perf(fplog,
786                        elapsed_time_over_all_threads_over_all_ranks,
787                        elapsed_time_over_all_ranks,
788                        walltime_accounting_get_nsteps_done_since_reset(walltime_accounting),
789                        delta_t,
790                        nbfs,
791                        mflop);
792         }
793         if (bWriteStat)
794         {
795             print_perf(stderr,
796                        elapsed_time_over_all_threads_over_all_ranks,
797                        elapsed_time_over_all_ranks,
798                        walltime_accounting_get_nsteps_done_since_reset(walltime_accounting),
799                        delta_t,
800                        nbfs,
801                        mflop);
802         }
803     }
804 }
805
806 int Mdrunner::mdrunner()
807 {
808     matrix                      box;
809     std::unique_ptr<t_forcerec> fr;
810     real                        ewaldcoeff_q     = 0;
811     real                        ewaldcoeff_lj    = 0;
812     int                         nChargePerturbed = -1, nTypePerturbed = 0;
813     gmx_walltime_accounting_t   walltime_accounting = nullptr;
814     MembedHolder                membedHolder(filenames.size(), filenames.data());
815
816     /* CAUTION: threads may be started later on in this function, so
817        cr doesn't reflect the final parallel state right now */
818     gmx_mtop_t mtop;
819
820     /* TODO: inputrec should tell us whether we use an algorithm, not a file option */
821     const bool doEssentialDynamics = opt2bSet("-ei", filenames.size(), filenames.data());
822     const bool doRerun             = mdrunOptions.rerun;
823
824     // Handle task-assignment related user options.
825     EmulateGpuNonbonded emulateGpuNonbonded =
826             (getenv("GMX_EMULATE_GPU") != nullptr ? EmulateGpuNonbonded::Yes : EmulateGpuNonbonded::No);
827
828     std::vector<int> userGpuTaskAssignment;
829     try
830     {
831         userGpuTaskAssignment = parseUserTaskAssignmentString(hw_opt.userGpuTaskAssignment);
832     }
833     GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
834     auto nonbondedTarget = findTaskTarget(nbpu_opt);
835     auto pmeTarget       = findTaskTarget(pme_opt);
836     auto pmeFftTarget    = findTaskTarget(pme_fft_opt);
837     auto bondedTarget    = findTaskTarget(bonded_opt);
838     auto updateTarget    = findTaskTarget(update_opt);
839
840     FILE* fplog = nullptr;
841     // If we are appending, we don't write log output because we need
842     // to check that the old log file matches what the checkpoint file
843     // expects. Otherwise, we should start to write log output now if
844     // there is a file ready for it.
845     if (logFileHandle != nullptr && startingBehavior != StartingBehavior::RestartWithAppending)
846     {
847         fplog = gmx_fio_getfp(logFileHandle);
848     }
849     const bool isSimulationMasterRank = findIsSimulationMasterRank(ms, simulationCommunicator);
850     gmx::LoggerOwner logOwner(buildLogger(fplog, isSimulationMasterRank));
851     gmx::MDLogger    mdlog(logOwner.logger());
852
853     gmx_print_detected_hardware(fplog, isSimulationMasterRank && isMasterSim(ms), mdlog, hwinfo_);
854
855     std::vector<int> availableDevices =
856             makeListOfAvailableDevices(hwinfo_->deviceInfoList, hw_opt.devicesSelectedByUser);
857     const int numAvailableDevices = gmx::ssize(availableDevices);
858
859     // Print citation requests after all software/hardware printing
860     pleaseCiteGromacs(fplog);
861
862     // Note: legacy program logic relies on checking whether these pointers are assigned.
863     // Objects may or may not be allocated later.
864     std::unique_ptr<t_inputrec> inputrec;
865     std::unique_ptr<t_state>    globalState;
866
867     auto partialDeserializedTpr = std::make_unique<PartialDeserializedTprFile>();
868
869     if (isSimulationMasterRank)
870     {
871         // Allocate objects to be initialized by later function calls.
872         /* Only the master rank has the global state */
873         globalState = std::make_unique<t_state>();
874         inputrec    = std::make_unique<t_inputrec>();
875
876         /* Read (nearly) all data required for the simulation
877          * and keep the partly serialized tpr contents to send to other ranks later
878          */
879         applyGlobalSimulationState(
880                 *inputHolder_.get(), partialDeserializedTpr.get(), globalState.get(), inputrec.get(), &mtop);
881     }
882
883     /* Check and update the hardware options for internal consistency */
884     checkAndUpdateHardwareOptions(
885             mdlog, &hw_opt, isSimulationMasterRank, domdecOptions.numPmeRanks, inputrec.get());
886
887     if (GMX_THREAD_MPI && isSimulationMasterRank)
888     {
889         bool useGpuForNonbonded = false;
890         bool useGpuForPme       = false;
891         try
892         {
893             GMX_RELEASE_ASSERT(inputrec != nullptr, "Keep the compiler happy");
894
895             // If the user specified the number of ranks, then we must
896             // respect that, but in default mode, we need to allow for
897             // the number of GPUs to choose the number of ranks.
898             auto canUseGpuForNonbonded = buildSupportsNonbondedOnGpu(nullptr);
899             useGpuForNonbonded         = decideWhetherToUseGpusForNonbondedWithThreadMpi(
900                     nonbondedTarget,
901                     numAvailableDevices > 0,
902                     userGpuTaskAssignment,
903                     emulateGpuNonbonded,
904                     canUseGpuForNonbonded,
905                     gpuAccelerationOfNonbondedIsUseful(mdlog, *inputrec, GMX_THREAD_MPI),
906                     hw_opt.nthreads_tmpi);
907             useGpuForPme = decideWhetherToUseGpusForPmeWithThreadMpi(useGpuForNonbonded,
908                                                                      pmeTarget,
909                                                                      numAvailableDevices,
910                                                                      userGpuTaskAssignment,
911                                                                      *hwinfo_,
912                                                                      *inputrec,
913                                                                      hw_opt.nthreads_tmpi,
914                                                                      domdecOptions.numPmeRanks);
915         }
916         GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
917
918         /* Determine how many thread-MPI ranks to start.
919          *
920          * TODO Over-writing the user-supplied value here does
921          * prevent any possible subsequent checks from working
922          * correctly. */
923         hw_opt.nthreads_tmpi = get_nthreads_mpi(hwinfo_,
924                                                 &hw_opt,
925                                                 numAvailableDevices,
926                                                 useGpuForNonbonded,
927                                                 useGpuForPme,
928                                                 inputrec.get(),
929                                                 mtop,
930                                                 mdlog,
931                                                 membedHolder.doMembed());
932
933         // Now start the threads for thread MPI.
934         spawnThreads(hw_opt.nthreads_tmpi);
935         // The spawned threads enter mdrunner() and execution of
936         // master and spawned threads joins at the end of this block.
937     }
938
939     GMX_RELEASE_ASSERT(ms || simulationCommunicator != MPI_COMM_NULL,
940                        "Must have valid communicator unless running a multi-simulation");
941     CommrecHandle crHandle = init_commrec(simulationCommunicator);
942     t_commrec*    cr       = crHandle.get();
943     GMX_RELEASE_ASSERT(cr != nullptr, "Must have valid commrec");
944
945     PhysicalNodeCommunicator physicalNodeComm(libraryWorldCommunicator, gmx_physicalnode_id_hash());
946
947     // If we detected the topology on this system, double-check that it makes sense
948     if (hwinfo_->hardwareTopology->isThisSystem())
949     {
950         hardwareTopologyDoubleCheckDetection(mdlog, *hwinfo_->hardwareTopology);
951     }
952
953     if (PAR(cr))
954     {
955         /* now broadcast everything to the non-master nodes/threads: */
956         if (!isSimulationMasterRank)
957         {
958             // Until now, only the master rank has a non-null pointer.
959             // On non-master ranks, allocate the object that will receive data in the following call.
960             inputrec = std::make_unique<t_inputrec>();
961         }
962         init_parallel(cr->mpiDefaultCommunicator,
963                       MASTER(cr),
964                       inputrec.get(),
965                       &mtop,
966                       partialDeserializedTpr.get());
967     }
968     GMX_RELEASE_ASSERT(inputrec != nullptr, "All ranks should have a valid inputrec now");
969     partialDeserializedTpr.reset(nullptr);
970
971     GMX_RELEASE_ASSERT(
972             !inputrec->useConstantAcceleration,
973             "Linear acceleration has been removed in GROMACS 2022, and was broken for many years "
974             "before that. Use GROMACS 4.5 or earlier if you need this feature.");
975
976     // Now the number of ranks is known to all ranks, and each knows
977     // the inputrec read by the master rank. The ranks can now all run
978     // the task-deciding functions and will agree on the result
979     // without needing to communicate.
980     const bool useDomainDecomposition =
981             (PAR(cr) && !(EI_TPI(inputrec->eI) || inputrec->eI == IntegrationAlgorithm::NM));
982
983     // Note that these variables describe only their own node.
984     //
985     // Note that when bonded interactions run on a GPU they always run
986     // alongside a nonbonded task, so do not influence task assignment
987     // even though they affect the force calculation workload.
988     bool useGpuForNonbonded = false;
989     bool useGpuForPme       = false;
990     bool useGpuForBonded    = false;
991     bool useGpuForUpdate    = false;
992     bool gpusWereDetected   = hwinfo_->ngpu_compatible_tot > 0;
993     try
994     {
995         // It's possible that there are different numbers of GPUs on
996         // different nodes, which is the user's responsibility to
997         // handle. If unsuitable, we will notice that during task
998         // assignment.
999         auto canUseGpuForNonbonded = buildSupportsNonbondedOnGpu(nullptr);
1000         useGpuForNonbonded         = decideWhetherToUseGpusForNonbonded(
1001                 nonbondedTarget,
1002                 userGpuTaskAssignment,
1003                 emulateGpuNonbonded,
1004                 canUseGpuForNonbonded,
1005                 gpuAccelerationOfNonbondedIsUseful(mdlog, *inputrec, !GMX_THREAD_MPI),
1006                 gpusWereDetected);
1007         useGpuForPme    = decideWhetherToUseGpusForPme(useGpuForNonbonded,
1008                                                     pmeTarget,
1009                                                     userGpuTaskAssignment,
1010                                                     *hwinfo_,
1011                                                     *inputrec,
1012                                                     cr->sizeOfDefaultCommunicator,
1013                                                     domdecOptions.numPmeRanks,
1014                                                     gpusWereDetected);
1015         useGpuForBonded = decideWhetherToUseGpusForBonded(
1016                 useGpuForNonbonded, useGpuForPme, bondedTarget, *inputrec, mtop, domdecOptions.numPmeRanks, gpusWereDetected);
1017     }
1018     GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
1019
1020     const PmeRunMode pmeRunMode = determinePmeRunMode(useGpuForPme, pmeFftTarget, *inputrec);
1021
1022     // Initialize development feature flags that enabled by environment variable
1023     // and report those features that are enabled.
1024     const DevelopmentFeatureFlags devFlags =
1025             manageDevelopmentFeatures(mdlog, useGpuForNonbonded, pmeRunMode);
1026
1027     const bool useModularSimulator = checkUseModularSimulator(false,
1028                                                               inputrec.get(),
1029                                                               doRerun,
1030                                                               mtop,
1031                                                               ms,
1032                                                               replExParams,
1033                                                               nullptr,
1034                                                               doEssentialDynamics,
1035                                                               membedHolder.doMembed());
1036
1037     // Build restraints.
1038     // TODO: hide restraint implementation details from Mdrunner.
1039     // There is nothing unique about restraints at this point as far as the
1040     // Mdrunner is concerned. The Mdrunner should just be getting a sequence of
1041     // factory functions from the SimulationContext on which to call mdModules_->add().
1042     // TODO: capture all restraints into a single RestraintModule, passed to the runner builder.
1043     for (auto&& restraint : restraintManager_->getRestraints())
1044     {
1045         auto module = RestraintMDModule::create(restraint, restraint->sites());
1046         mdModules_->add(std::move(module));
1047     }
1048
1049     // TODO: Error handling
1050     mdModules_->assignOptionsToModules(*inputrec->params, nullptr);
1051     // now that the MDModules know their options, they know which callbacks to sign up to
1052     mdModules_->subscribeToSimulationSetupNotifications();
1053     const auto& setupNotifier = mdModules_->notifiers().simulationSetupNotifier_;
1054
1055     // Notify MdModules of existing logger
1056     setupNotifier.notify(mdlog);
1057
1058     // Notify MdModules of internal parameters, saved into KVT
1059     if (inputrec->internalParameters != nullptr)
1060     {
1061         setupNotifier.notify(*inputrec->internalParameters);
1062     }
1063
1064     // Let MdModules know the .tpr filename
1065     {
1066         gmx::MdRunInputFilename mdRunInputFilename = { ftp2fn(efTPR, filenames.size(), filenames.data()) };
1067         setupNotifier.notify(mdRunInputFilename);
1068     }
1069
1070     if (fplog != nullptr)
1071     {
1072         pr_inputrec(fplog, 0, "Input Parameters", inputrec.get(), FALSE);
1073         fprintf(fplog, "\n");
1074     }
1075
1076     if (SIMMASTER(cr))
1077     {
1078         /* In rerun, set velocities to zero if present */
1079         if (doRerun && ((globalState->flags & enumValueToBitMask(StateEntry::V)) != 0))
1080         {
1081             // rerun does not use velocities
1082             GMX_LOG(mdlog.info)
1083                     .asParagraph()
1084                     .appendText(
1085                             "Rerun trajectory contains velocities. Rerun does only evaluate "
1086                             "potential energy and forces. The velocities will be ignored.");
1087             for (int i = 0; i < globalState->natoms; i++)
1088             {
1089                 clear_rvec(globalState->v[i]);
1090             }
1091             globalState->flags &= ~enumValueToBitMask(StateEntry::V);
1092         }
1093
1094         /* now make sure the state is initialized and propagated */
1095         set_state_entries(globalState.get(), inputrec.get(), useModularSimulator);
1096     }
1097
1098     /* NM and TPI parallelize over force/energy calculations, not atoms,
1099      * so we need to initialize and broadcast the global state.
1100      */
1101     if (inputrec->eI == IntegrationAlgorithm::NM || inputrec->eI == IntegrationAlgorithm::TPI)
1102     {
1103         if (!MASTER(cr))
1104         {
1105             globalState = std::make_unique<t_state>();
1106         }
1107         broadcastStateWithoutDynamics(
1108                 cr->mpiDefaultCommunicator, DOMAINDECOMP(cr), PAR(cr), globalState.get());
1109     }
1110
1111     /* A parallel command line option consistency check that we can
1112        only do after any threads have started. */
1113     if (!PAR(cr)
1114         && (domdecOptions.numCells[XX] > 1 || domdecOptions.numCells[YY] > 1
1115             || domdecOptions.numCells[ZZ] > 1 || domdecOptions.numPmeRanks > 0))
1116     {
1117         gmx_fatal(FARGS,
1118                   "The -dd or -npme option request a parallel simulation, "
1119 #if !GMX_MPI
1120                   "but %s was compiled without threads or MPI enabled",
1121                   output_env_get_program_display_name(oenv));
1122 #elif GMX_THREAD_MPI
1123                   "but the number of MPI-threads (option -ntmpi) is not set or is 1");
1124 #else
1125                   "but %s was not started through mpirun/mpiexec or only one rank was requested "
1126                   "through mpirun/mpiexec",
1127                   output_env_get_program_display_name(oenv));
1128 #endif
1129     }
1130
1131     if (doRerun && (EI_ENERGY_MINIMIZATION(inputrec->eI) || IntegrationAlgorithm::NM == inputrec->eI))
1132     {
1133         gmx_fatal(FARGS,
1134                   "The .mdp file specified an energy mininization or normal mode algorithm, and "
1135                   "these are not compatible with mdrun -rerun");
1136     }
1137
1138     /* NMR restraints must be initialized before load_checkpoint,
1139      * since with time averaging the history is added to t_state.
1140      * For proper consistency check we therefore need to extend
1141      * t_state here.
1142      * So the PME-only nodes (if present) will also initialize
1143      * the distance restraints.
1144      */
1145
1146     /* This needs to be called before read_checkpoint to extend the state */
1147     t_disresdata* disresdata;
1148     snew(disresdata, 1);
1149     init_disres(fplog,
1150                 mtop,
1151                 inputrec.get(),
1152                 DisResRunMode::MDRun,
1153                 MASTER(cr) ? DDRole::Master : DDRole::Agent,
1154                 PAR(cr) ? NumRanks::Multiple : NumRanks::Single,
1155                 cr->mpi_comm_mysim,
1156                 ms,
1157                 disresdata,
1158                 globalState.get(),
1159                 replExParams.exchangeInterval > 0);
1160
1161     std::unique_ptr<t_oriresdata> oriresData;
1162     if (gmx_mtop_ftype_count(mtop, F_ORIRES) > 0)
1163     {
1164         oriresData = std::make_unique<t_oriresdata>(fplog, mtop, *inputrec, cr, ms, globalState.get());
1165     }
1166
1167     auto deform = prepareBoxDeformation(globalState != nullptr ? globalState->box : box,
1168                                         MASTER(cr) ? DDRole::Master : DDRole::Agent,
1169                                         PAR(cr) ? NumRanks::Multiple : NumRanks::Single,
1170                                         cr->mpi_comm_mygroup,
1171                                         *inputrec);
1172
1173 #if GMX_FAHCORE
1174     /* We have to remember the generation's first step before reading checkpoint.
1175        This way, we can report to the F@H core both the generation's first step
1176        and the restored first step, thus making it able to distinguish between
1177        an interruption/resume and start of the n-th generation simulation.
1178        Having this information, the F@H core can correctly calculate and report
1179        the progress.
1180      */
1181     int gen_first_step = 0;
1182     if (MASTER(cr))
1183     {
1184         gen_first_step = inputrec->init_step;
1185     }
1186 #endif
1187
1188     ObservablesHistory observablesHistory = {};
1189
1190     auto modularSimulatorCheckpointData = std::make_unique<ReadCheckpointDataHolder>();
1191     if (startingBehavior != StartingBehavior::NewSimulation)
1192     {
1193         /* Check if checkpoint file exists before doing continuation.
1194          * This way we can use identical input options for the first and subsequent runs...
1195          */
1196         if (mdrunOptions.numStepsCommandline > -2)
1197         {
1198             /* Temporarily set the number of steps to unlimited to avoid
1199              * triggering the nsteps check in load_checkpoint().
1200              * This hack will go away soon when the -nsteps option is removed.
1201              */
1202             inputrec->nsteps = -1;
1203         }
1204
1205         // Finish applying initial simulation state information from external sources on all ranks.
1206         // Reconcile checkpoint file data with Mdrunner state established up to this point.
1207         applyLocalState(*inputHolder_.get(),
1208                         logFileHandle,
1209                         cr,
1210                         domdecOptions.numCells,
1211                         inputrec.get(),
1212                         globalState.get(),
1213                         &observablesHistory,
1214                         mdrunOptions.reproducible,
1215                         mdModules_->notifiers(),
1216                         modularSimulatorCheckpointData.get(),
1217                         useModularSimulator);
1218         // TODO: (#3652) Synchronize filesystem state, SimulationInput contents, and program
1219         //  invariants
1220         //  on all code paths.
1221         // Write checkpoint or provide hook to update SimulationInput.
1222         // If there was a checkpoint file, SimulationInput contains more information
1223         // than if there wasn't. At this point, we have synchronized the in-memory
1224         // state with the filesystem state only for restarted simulations. We should
1225         // be calling applyLocalState unconditionally and expect that the completeness
1226         // of SimulationInput is not dependent on its creation method.
1227
1228         if (startingBehavior == StartingBehavior::RestartWithAppending && logFileHandle)
1229         {
1230             // Now we can start normal logging to the truncated log file.
1231             fplog = gmx_fio_getfp(logFileHandle);
1232             prepareLogAppending(fplog);
1233             logOwner = buildLogger(fplog, MASTER(cr));
1234             mdlog    = logOwner.logger();
1235         }
1236     }
1237
1238 #if GMX_FAHCORE
1239     if (MASTER(cr))
1240     {
1241         fcRegisterSteps(inputrec->nsteps + inputrec->init_step, gen_first_step);
1242     }
1243 #endif
1244
1245     if (mdrunOptions.numStepsCommandline > -2)
1246     {
1247         GMX_LOG(mdlog.info)
1248                 .asParagraph()
1249                 .appendText(
1250                         "The -nsteps functionality is deprecated, and may be removed in a future "
1251                         "version. "
1252                         "Consider using gmx convert-tpr -nsteps or changing the appropriate .mdp "
1253                         "file field.");
1254     }
1255     /* override nsteps with value set on the commandline */
1256     override_nsteps_cmdline(mdlog, mdrunOptions.numStepsCommandline, inputrec.get());
1257
1258     if (isSimulationMasterRank)
1259     {
1260         copy_mat(globalState->box, box);
1261     }
1262
1263     if (PAR(cr))
1264     {
1265         gmx_bcast(sizeof(box), box, cr->mpiDefaultCommunicator);
1266     }
1267
1268     if (inputrec->cutoff_scheme != CutoffScheme::Verlet)
1269     {
1270         gmx_fatal(FARGS,
1271                   "This group-scheme .tpr file can no longer be run by mdrun. Please update to the "
1272                   "Verlet scheme, or use an earlier version of GROMACS if necessary.");
1273     }
1274     /* Update rlist and nstlist. */
1275     /* Note: prepare_verlet_scheme is calling increaseNstlist(...), which (while attempting to
1276      * increase rlist) tries to check if the newly chosen value fits with the DD scheme. As this is
1277      * run before any DD scheme is set up, this check is never executed. See #3334 for more details.
1278      */
1279     prepare_verlet_scheme(fplog,
1280                           cr,
1281                           inputrec.get(),
1282                           nstlist_cmdline,
1283                           mtop,
1284                           box,
1285                           useGpuForNonbonded || (emulateGpuNonbonded == EmulateGpuNonbonded::Yes),
1286                           *hwinfo_->cpuInfo);
1287
1288     // We need to decide on update groups early, as this affects
1289     // inter-domain communication distances.
1290     auto       updateGroupingsPerMoleculeType = makeUpdateGroupingsPerMoleculeType(mtop);
1291     const real maxUpdateGroupRadius           = computeMaxUpdateGroupRadius(
1292             mtop, updateGroupingsPerMoleculeType, maxReferenceTemperature(*inputrec));
1293     const real   cutoffMargin = std::sqrt(max_cutoff2(inputrec->pbcType, box)) - inputrec->rlist;
1294     UpdateGroups updateGroups = makeUpdateGroups(mdlog,
1295                                                  std::move(updateGroupingsPerMoleculeType),
1296                                                  maxUpdateGroupRadius,
1297                                                  useDomainDecomposition,
1298                                                  systemHasConstraintsOrVsites(mtop),
1299                                                  cutoffMargin);
1300
1301     try
1302     {
1303         const bool haveFrozenAtoms = inputrecFrozenAtoms(inputrec.get());
1304
1305         useGpuForUpdate = decideWhetherToUseGpuForUpdate(useDomainDecomposition,
1306                                                          updateGroups.useUpdateGroups(),
1307                                                          pmeRunMode,
1308                                                          domdecOptions.numPmeRanks > 0,
1309                                                          useGpuForNonbonded,
1310                                                          updateTarget,
1311                                                          gpusWereDetected,
1312                                                          *inputrec,
1313                                                          mtop,
1314                                                          doEssentialDynamics,
1315                                                          gmx_mtop_ftype_count(mtop, F_ORIRES) > 0,
1316                                                          haveFrozenAtoms,
1317                                                          doRerun,
1318                                                          devFlags,
1319                                                          mdlog);
1320     }
1321     GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
1322
1323     bool useGpuDirectHalo = false;
1324
1325     if (useGpuForNonbonded)
1326     {
1327         // cr->npmenodes is not yet initialized.
1328         // domdecOptions.numPmeRanks == -1 results in 0 separate PME ranks when useGpuForNonbonded is true.
1329         // Todo: remove this assumption later once auto mode has support for separate PME rank
1330         const int numPmeRanks = domdecOptions.numPmeRanks > 0 ? domdecOptions.numPmeRanks : 0;
1331         bool      havePPDomainDecomposition = (cr->sizeOfDefaultCommunicator - numPmeRanks) > 1;
1332         useGpuDirectHalo                    = decideWhetherToUseGpuForHalo(devFlags,
1333                                                         havePPDomainDecomposition,
1334                                                         useGpuForNonbonded,
1335                                                         useModularSimulator,
1336                                                         doRerun,
1337                                                         EI_ENERGY_MINIMIZATION(inputrec->eI));
1338     }
1339
1340     // This builder is necessary while we have multi-part construction
1341     // of DD. Before DD is constructed, we use the existence of
1342     // the builder object to indicate that further construction of DD
1343     // is needed.
1344     std::unique_ptr<DomainDecompositionBuilder> ddBuilder;
1345     if (useDomainDecomposition)
1346     {
1347         // P2P GPU comm + GPU update leads to case in which we enqueue async work for multiple
1348         // timesteps. DLB needs to be disabled in that case
1349         const bool directGpuCommUsedWithGpuUpdate = GMX_THREAD_MPI && useGpuDirectHalo && useGpuForUpdate;
1350         ddBuilder                                 = std::make_unique<DomainDecompositionBuilder>(
1351                 mdlog,
1352                 cr,
1353                 domdecOptions,
1354                 mdrunOptions,
1355                 mtop,
1356                 *inputrec,
1357                 mdModules_->notifiers(),
1358                 box,
1359                 updateGroups.updateGroupingPerMoleculeType(),
1360                 updateGroups.useUpdateGroups(),
1361                 updateGroups.maxUpdateGroupRadius(),
1362                 positionsFromStatePointer(globalState.get()),
1363                 useGpuForNonbonded,
1364                 useGpuForPme,
1365                 directGpuCommUsedWithGpuUpdate);
1366     }
1367     else
1368     {
1369         /* PME, if used, is done on all nodes with 1D decomposition */
1370         cr->nnodes     = cr->sizeOfDefaultCommunicator;
1371         cr->sim_nodeid = cr->rankInDefaultCommunicator;
1372         cr->nodeid     = cr->rankInDefaultCommunicator;
1373         cr->npmenodes  = 0;
1374         cr->duty       = (DUTY_PP | DUTY_PME);
1375
1376         if (inputrec->pbcType == PbcType::Screw)
1377         {
1378             gmx_fatal(FARGS, "pbc=screw is only implemented with domain decomposition");
1379         }
1380     }
1381
1382     // Produce the task assignment for this rank - done after DD is constructed
1383     GpuTaskAssignments gpuTaskAssignments = GpuTaskAssignmentsBuilder::build(
1384             availableDevices,
1385             userGpuTaskAssignment,
1386             *hwinfo_,
1387             simulationCommunicator,
1388             physicalNodeComm,
1389             nonbondedTarget,
1390             pmeTarget,
1391             bondedTarget,
1392             updateTarget,
1393             useGpuForNonbonded,
1394             useGpuForPme,
1395             thisRankHasDuty(cr, DUTY_PP),
1396             // TODO cr->duty & DUTY_PME should imply that a PME
1397             // algorithm is active, but currently does not.
1398             EEL_PME(inputrec->coulombtype) && thisRankHasDuty(cr, DUTY_PME));
1399
1400     // Get the device handles for the modules, nullptr when no task is assigned.
1401     int                deviceId   = -1;
1402     DeviceInformation* deviceInfo = gpuTaskAssignments.initDevice(&deviceId);
1403
1404     // timing enabling - TODO put this in gpu_utils (even though generally this is just option handling?)
1405     bool useTiming = true;
1406
1407     if (GMX_GPU_CUDA)
1408     {
1409         /* WARNING: CUDA timings are incorrect with multiple streams.
1410          *          This is the main reason why they are disabled by default.
1411          */
1412         // TODO: Consider turning on by default when we can detect nr of streams.
1413         useTiming = (getenv("GMX_ENABLE_GPU_TIMING") != nullptr);
1414     }
1415     else if (GMX_GPU_OPENCL)
1416     {
1417         useTiming = (getenv("GMX_DISABLE_GPU_TIMING") == nullptr);
1418     }
1419
1420     // TODO Currently this is always built, yet DD partition code
1421     // checks if it is built before using it. Probably it should
1422     // become an MDModule that is made only when another module
1423     // requires it (e.g. pull, CompEl, density fitting), so that we
1424     // don't update the local atom sets unilaterally every step.
1425     LocalAtomSetManager atomSets;
1426     if (ddBuilder)
1427     {
1428         // TODO Pass the GPU streams to ddBuilder to use in buffer
1429         // transfers (e.g. halo exchange)
1430         cr->dd = ddBuilder->build(&atomSets);
1431         // The builder's job is done, so destruct it
1432         ddBuilder.reset(nullptr);
1433         // Note that local state still does not exist yet.
1434     }
1435     // Ensure that all atoms within the same update group are in the
1436     // same periodic image. Otherwise, a simulation that did not use
1437     // update groups (e.g. a single-rank simulation) cannot always be
1438     // correctly restarted in a way that does use update groups
1439     // (e.g. a multi-rank simulation).
1440     if (isSimulationMasterRank)
1441     {
1442         const bool useUpdateGroups = cr->dd ? ddUsesUpdateGroups(*cr->dd) : false;
1443         if (useUpdateGroups)
1444         {
1445             putUpdateGroupAtomsInSamePeriodicImage(*cr->dd, mtop, globalState->box, globalState->x);
1446         }
1447     }
1448
1449     const bool printHostName = (cr->nnodes > 1);
1450     gpuTaskAssignments.reportGpuUsage(mdlog, printHostName, useGpuForBonded, pmeRunMode, useGpuForUpdate);
1451
1452     const bool disableNonbondedCalculation = (getenv("GMX_NO_NONBONDED") != nullptr);
1453     if (disableNonbondedCalculation)
1454     {
1455         /* turn off non-bonded calculations */
1456         GMX_LOG(mdlog.warning)
1457                 .asParagraph()
1458                 .appendText(
1459                         "Found environment variable GMX_NO_NONBONDED.\n"
1460                         "Disabling nonbonded calculations.");
1461     }
1462
1463     MdrunScheduleWorkload runScheduleWork;
1464
1465     // Also populates the simulation constant workload description.
1466     // Note: currently the default duty is DUTY_PP | DUTY_PME for all simulations, including those without PME,
1467     // so this boolean is sufficient on all ranks to determine whether separate PME ranks are used,
1468     // but this will no longer be the case if cr->duty is changed for !EEL_PME(fr->ic->eeltype).
1469     const bool haveSeparatePmeRank = (!thisRankHasDuty(cr, DUTY_PP) || !thisRankHasDuty(cr, DUTY_PME));
1470     runScheduleWork.simulationWork = createSimulationWorkload(*inputrec,
1471                                                               disableNonbondedCalculation,
1472                                                               devFlags,
1473                                                               havePPDomainDecomposition(cr),
1474                                                               haveSeparatePmeRank,
1475                                                               useGpuForNonbonded,
1476                                                               pmeRunMode,
1477                                                               useGpuForBonded,
1478                                                               useGpuForUpdate,
1479                                                               useGpuDirectHalo);
1480
1481     std::unique_ptr<DeviceStreamManager> deviceStreamManager = nullptr;
1482
1483     if (deviceInfo != nullptr)
1484     {
1485         if (DOMAINDECOMP(cr) && thisRankHasDuty(cr, DUTY_PP))
1486         {
1487             dd_setup_dlb_resource_sharing(cr, deviceId);
1488         }
1489         deviceStreamManager = std::make_unique<DeviceStreamManager>(
1490                 *deviceInfo, havePPDomainDecomposition(cr), runScheduleWork.simulationWork, useTiming);
1491     }
1492
1493     // If the user chose a task assignment, give them some hints
1494     // where appropriate.
1495     if (!userGpuTaskAssignment.empty())
1496     {
1497         gpuTaskAssignments.logPerformanceHints(mdlog, numAvailableDevices);
1498     }
1499
1500     if (PAR(cr))
1501     {
1502         /* After possible communicator splitting in make_dd_communicators.
1503          * we can set up the intra/inter node communication.
1504          */
1505         gmx_setup_nodecomm(fplog, cr);
1506     }
1507
1508 #if GMX_MPI
1509     if (isMultiSim(ms))
1510     {
1511         GMX_LOG(mdlog.warning)
1512                 .asParagraph()
1513                 .appendTextFormatted(
1514                         "This is simulation %d out of %d running as a composite GROMACS\n"
1515                         "multi-simulation job. Setup for this simulation:\n",
1516                         ms->simulationIndex_,
1517                         ms->numSimulations_);
1518     }
1519     GMX_LOG(mdlog.warning)
1520             .appendTextFormatted("Using %d MPI %s\n",
1521                                  cr->nnodes,
1522 #    if GMX_THREAD_MPI
1523                                  cr->nnodes == 1 ? "thread" : "threads"
1524 #    else
1525                                  cr->nnodes == 1 ? "process" : "processes"
1526 #    endif
1527             );
1528     fflush(stderr);
1529 #endif
1530
1531     // If mdrun -pin auto honors any affinity setting that already
1532     // exists. If so, it is nice to provide feedback about whether
1533     // that existing affinity setting was from OpenMP or something
1534     // else, so we run this code both before and after we initialize
1535     // the OpenMP support.
1536     gmx_check_thread_affinity_set(mdlog, &hw_opt, hwinfo_->nthreads_hw_avail, FALSE);
1537     /* Check and update the number of OpenMP threads requested */
1538     checkAndUpdateRequestedNumOpenmpThreads(
1539             &hw_opt, *hwinfo_, cr, ms, physicalNodeComm.size_, pmeRunMode, mtop, *inputrec);
1540
1541     gmx_omp_nthreads_init(mdlog,
1542                           cr,
1543                           hwinfo_->nthreads_hw_avail,
1544                           physicalNodeComm.size_,
1545                           hw_opt.nthreads_omp,
1546                           hw_opt.nthreads_omp_pme,
1547                           !thisRankHasDuty(cr, DUTY_PP));
1548
1549     const bool bEnableFPE = gmxShouldEnableFPExceptions();
1550     // FIXME - reconcile with gmx_feenableexcept() call from CommandLineModuleManager::run()
1551     if (bEnableFPE)
1552     {
1553         gmx_feenableexcept();
1554     }
1555
1556     /* Now that we know the setup is consistent, check for efficiency */
1557     check_resource_division_efficiency(
1558             hwinfo_, gpuTaskAssignments.thisRankHasAnyGpuTask(), mdrunOptions.ntompOptionIsSet, cr, mdlog);
1559
1560     /* getting number of PP/PME threads on this MPI / tMPI rank.
1561        PME: env variable should be read only on one node to make sure it is
1562        identical everywhere;
1563      */
1564     const int numThreadsOnThisRank = thisRankHasDuty(cr, DUTY_PP)
1565                                              ? gmx_omp_nthreads_get(ModuleMultiThread::Nonbonded)
1566                                              : gmx_omp_nthreads_get(ModuleMultiThread::Pme);
1567     checkHardwareOversubscription(
1568             numThreadsOnThisRank, cr->nodeid, *hwinfo_->hardwareTopology, physicalNodeComm, mdlog);
1569
1570     // Enable Peer access between GPUs where available
1571     // Only for DD, only master PP rank needs to perform setup, and only if thread MPI plus
1572     // any of the GPU communication features are active.
1573     if (DOMAINDECOMP(cr) && MASTER(cr) && thisRankHasDuty(cr, DUTY_PP) && GMX_THREAD_MPI
1574         && (runScheduleWork.simulationWork.useGpuHaloExchange
1575             || runScheduleWork.simulationWork.useGpuPmePpCommunication))
1576     {
1577         setupGpuDevicePeerAccess(gpuTaskAssignments.deviceIdsAssigned(), mdlog);
1578     }
1579
1580     if (hw_opt.threadAffinity != ThreadAffinity::Off)
1581     {
1582         /* Before setting affinity, check whether the affinity has changed
1583          * - which indicates that probably the OpenMP library has changed it
1584          * since we first checked).
1585          */
1586         gmx_check_thread_affinity_set(mdlog, &hw_opt, hwinfo_->nthreads_hw_avail, TRUE);
1587
1588         int numThreadsOnThisNode, intraNodeThreadOffset;
1589         analyzeThreadsOnThisNode(
1590                 physicalNodeComm, numThreadsOnThisRank, &numThreadsOnThisNode, &intraNodeThreadOffset);
1591
1592         /* Set the CPU affinity */
1593         gmx_set_thread_affinity(mdlog,
1594                                 cr,
1595                                 &hw_opt,
1596                                 *hwinfo_->hardwareTopology,
1597                                 numThreadsOnThisRank,
1598                                 numThreadsOnThisNode,
1599                                 intraNodeThreadOffset,
1600                                 nullptr);
1601     }
1602
1603     if (mdrunOptions.timingOptions.resetStep > -1)
1604     {
1605         GMX_LOG(mdlog.info)
1606                 .asParagraph()
1607                 .appendText(
1608                         "The -resetstep functionality is deprecated, and may be removed in a "
1609                         "future version.");
1610     }
1611     std::unique_ptr<gmx_wallcycle> wcycle =
1612             wallcycle_init(fplog, mdrunOptions.timingOptions.resetStep, cr);
1613
1614     if (PAR(cr))
1615     {
1616         /* Master synchronizes its value of reset_counters with all nodes
1617          * including PME only nodes */
1618         int64_t reset_counters = wcycle_get_reset_counters(wcycle.get());
1619         gmx_bcast(sizeof(reset_counters), &reset_counters, cr->mpi_comm_mysim);
1620         wcycle_set_reset_counters(wcycle.get(), reset_counters);
1621     }
1622
1623     // Membrane embedding must be initialized before we call init_forcerec()
1624     membedHolder.initializeMembed(fplog,
1625                                   filenames.size(),
1626                                   filenames.data(),
1627                                   &mtop,
1628                                   inputrec.get(),
1629                                   globalState.get(),
1630                                   cr,
1631                                   &mdrunOptions.checkpointOptions.period);
1632
1633     const bool               thisRankHasPmeGpuTask = gpuTaskAssignments.thisRankHasPmeGpuTask();
1634     std::unique_ptr<MDAtoms> mdAtoms;
1635     std::unique_ptr<VirtualSitesHandler> vsite;
1636
1637     t_nrnb nrnb;
1638     if (thisRankHasDuty(cr, DUTY_PP))
1639     {
1640         setupNotifier.notify(*cr);
1641         setupNotifier.notify(&atomSets);
1642         setupNotifier.notify(mtop);
1643         setupNotifier.notify(inputrec->pbcType);
1644         setupNotifier.notify(SimulationTimeStep{ inputrec->delta_t });
1645         /* Initiate forcerecord */
1646         fr                 = std::make_unique<t_forcerec>();
1647         fr->forceProviders = mdModules_->initForceProviders();
1648         init_forcerec(fplog,
1649                       mdlog,
1650                       runScheduleWork.simulationWork,
1651                       fr.get(),
1652                       *inputrec,
1653                       mtop,
1654                       cr,
1655                       box,
1656                       opt2fn("-table", filenames.size(), filenames.data()),
1657                       opt2fn("-tablep", filenames.size(), filenames.data()),
1658                       opt2fns("-tableb", filenames.size(), filenames.data()),
1659                       pforce);
1660         // Dirty hack, for fixing disres and orires should be made mdmodules
1661         fr->fcdata->disres = disresdata;
1662         fr->fcdata->orires.swap(oriresData);
1663
1664         // Save a handle to device stream manager to use elsewhere in the code
1665         // TODO: Forcerec is not a correct place to store it.
1666         fr->deviceStreamManager = deviceStreamManager.get();
1667
1668         if (runScheduleWork.simulationWork.useGpuPmePpCommunication && !thisRankHasDuty(cr, DUTY_PME))
1669         {
1670             GMX_RELEASE_ASSERT(
1671                     deviceStreamManager != nullptr,
1672                     "GPU device stream manager should be valid in order to use PME-PP direct "
1673                     "communications.");
1674             GMX_RELEASE_ASSERT(
1675                     deviceStreamManager->streamIsValid(DeviceStreamType::PmePpTransfer),
1676                     "GPU PP-PME stream should be valid in order to use GPU PME-PP direct "
1677                     "communications.");
1678             fr->pmePpCommGpu = std::make_unique<gmx::PmePpCommGpu>(
1679                     cr->mpi_comm_mysim,
1680                     cr->dd->pme_nodeid,
1681                     &cr->dd->pmeForceReceiveBuffer,
1682                     deviceStreamManager->context(),
1683                     deviceStreamManager->stream(DeviceStreamType::PmePpTransfer));
1684         }
1685
1686         fr->nbv = Nbnxm::init_nb_verlet(mdlog,
1687                                         *inputrec,
1688                                         *fr,
1689                                         cr,
1690                                         *hwinfo_,
1691                                         runScheduleWork.simulationWork.useGpuNonbonded,
1692                                         deviceStreamManager.get(),
1693                                         mtop,
1694                                         box,
1695                                         wcycle.get());
1696         // TODO: Move the logic below to a GPU bonded builder
1697         if (runScheduleWork.simulationWork.useGpuBonded)
1698         {
1699             GMX_RELEASE_ASSERT(deviceStreamManager != nullptr,
1700                                "GPU device stream manager should be valid in order to use GPU "
1701                                "version of bonded forces.");
1702             fr->listedForcesGpu = std::make_unique<ListedForcesGpu>(
1703                     mtop.ffparams,
1704                     fr->ic->epsfac * fr->fudgeQQ,
1705                     deviceStreamManager->context(),
1706                     deviceStreamManager->bondedStream(havePPDomainDecomposition(cr)),
1707                     wcycle.get());
1708         }
1709
1710         /* Initialize the mdAtoms structure.
1711          * mdAtoms is not filled with atom data,
1712          * as this can not be done now with domain decomposition.
1713          */
1714         mdAtoms = makeMDAtoms(fplog, mtop, *inputrec, thisRankHasPmeGpuTask);
1715         if (globalState && thisRankHasPmeGpuTask)
1716         {
1717             // The pinning of coordinates in the global state object works, because we only use
1718             // PME on GPU without DD or on a separate PME rank, and because the local state pointer
1719             // points to the global state object without DD.
1720             // FIXME: MD and EM separately set up the local state - this should happen in the same
1721             // function, which should also perform the pinning.
1722             changePinningPolicy(&globalState->x, pme_get_pinning_policy());
1723         }
1724
1725         /* Initialize the virtual site communication */
1726         vsite = makeVirtualSitesHandler(
1727                 mtop, cr, fr->pbcType, updateGroups.updateGroupingPerMoleculeType());
1728
1729         calc_shifts(box, fr->shift_vec);
1730
1731         /* With periodic molecules the charge groups should be whole at start up
1732          * and the virtual sites should not be far from their proper positions.
1733          */
1734         if (!inputrec->bContinuation && MASTER(cr)
1735             && !(inputrec->pbcType != PbcType::No && inputrec->bPeriodicMols))
1736         {
1737             /* Make molecules whole at start of run */
1738             if (fr->pbcType != PbcType::No)
1739             {
1740                 do_pbc_first_mtop(fplog, inputrec->pbcType, box, &mtop, globalState->x.rvec_array());
1741             }
1742             if (vsite)
1743             {
1744                 /* Correct initial vsite positions are required
1745                  * for the initial distribution in the domain decomposition
1746                  * and for the initial shell prediction.
1747                  */
1748                 constructVirtualSitesGlobal(mtop, globalState->x);
1749             }
1750         }
1751         // Make the DD reverse topology, now that any vsites that are present are available
1752         if (DOMAINDECOMP(cr))
1753         {
1754             dd_make_reverse_top(fplog, cr->dd, mtop, vsite.get(), *inputrec, domdecOptions.ddBondedChecking);
1755         }
1756
1757         if (EEL_PME(fr->ic->eeltype) || EVDW_PME(fr->ic->vdwtype))
1758         {
1759             ewaldcoeff_q  = fr->ic->ewaldcoeff_q;
1760             ewaldcoeff_lj = fr->ic->ewaldcoeff_lj;
1761         }
1762     }
1763     else
1764     {
1765         /* This is a PME only node */
1766
1767         GMX_ASSERT(globalState == nullptr,
1768                    "We don't need the state on a PME only rank and expect it to be unitialized");
1769
1770         ewaldcoeff_q  = calc_ewaldcoeff_q(inputrec->rcoulomb, inputrec->ewald_rtol);
1771         ewaldcoeff_lj = calc_ewaldcoeff_lj(inputrec->rvdw, inputrec->ewald_rtol_lj);
1772     }
1773
1774     gmx_pme_t* sepPmeData = nullptr;
1775     // This reference hides the fact that PME data is owned by runner on PME-only ranks and by forcerec on other ranks
1776     GMX_ASSERT(thisRankHasDuty(cr, DUTY_PP) == (fr != nullptr),
1777                "Double-checking that only PME-only ranks have no forcerec");
1778     gmx_pme_t*& pmedata = fr ? fr->pmedata : sepPmeData;
1779
1780     // TODO should live in ewald module once its testing is improved
1781     //
1782     // Later, this program could contain kernels that might be later
1783     // re-used as auto-tuning progresses, or subsequent simulations
1784     // are invoked.
1785     PmeGpuProgramStorage pmeGpuProgram;
1786     if (thisRankHasPmeGpuTask)
1787     {
1788         GMX_RELEASE_ASSERT(
1789                 (deviceStreamManager != nullptr),
1790                 "GPU device stream manager should be initialized in order to use GPU for PME.");
1791         GMX_RELEASE_ASSERT((deviceInfo != nullptr),
1792                            "GPU device should be initialized in order to use GPU for PME.");
1793         pmeGpuProgram = buildPmeGpuProgram(deviceStreamManager->context());
1794     }
1795
1796     /* Initiate PME if necessary,
1797      * either on all nodes or on dedicated PME nodes only. */
1798     if (EEL_PME(inputrec->coulombtype) || EVDW_PME(inputrec->vdwtype))
1799     {
1800         if (mdAtoms && mdAtoms->mdatoms())
1801         {
1802             nChargePerturbed = mdAtoms->mdatoms()->nChargePerturbed;
1803             if (EVDW_PME(inputrec->vdwtype))
1804             {
1805                 nTypePerturbed = mdAtoms->mdatoms()->nTypePerturbed;
1806             }
1807         }
1808         if (cr->npmenodes > 0)
1809         {
1810             /* The PME only nodes need to know nChargePerturbed(FEP on Q) and nTypePerturbed(FEP on LJ)*/
1811             gmx_bcast(sizeof(nChargePerturbed), &nChargePerturbed, cr->mpi_comm_mysim);
1812             gmx_bcast(sizeof(nTypePerturbed), &nTypePerturbed, cr->mpi_comm_mysim);
1813         }
1814
1815         if (thisRankHasDuty(cr, DUTY_PME))
1816         {
1817             try
1818             {
1819                 // TODO: This should be in the builder.
1820                 GMX_RELEASE_ASSERT(!runScheduleWork.simulationWork.useGpuPme
1821                                            || (deviceStreamManager != nullptr),
1822                                    "Device stream manager should be valid in order to use GPU "
1823                                    "version of PME.");
1824                 GMX_RELEASE_ASSERT(
1825                         !runScheduleWork.simulationWork.useGpuPme
1826                                 || deviceStreamManager->streamIsValid(DeviceStreamType::Pme),
1827                         "GPU PME stream should be valid in order to use GPU version of PME.");
1828
1829                 const DeviceContext* deviceContext = runScheduleWork.simulationWork.useGpuPme
1830                                                              ? &deviceStreamManager->context()
1831                                                              : nullptr;
1832                 const DeviceStream*  pmeStream =
1833                         runScheduleWork.simulationWork.useGpuPme
1834                                  ? &deviceStreamManager->stream(DeviceStreamType::Pme)
1835                                  : nullptr;
1836
1837                 pmedata = gmx_pme_init(cr,
1838                                        getNumPmeDomains(cr->dd),
1839                                        inputrec.get(),
1840                                        nChargePerturbed != 0,
1841                                        nTypePerturbed != 0,
1842                                        mdrunOptions.reproducible,
1843                                        ewaldcoeff_q,
1844                                        ewaldcoeff_lj,
1845                                        gmx_omp_nthreads_get(ModuleMultiThread::Pme),
1846                                        pmeRunMode,
1847                                        nullptr,
1848                                        deviceContext,
1849                                        pmeStream,
1850                                        pmeGpuProgram.get(),
1851                                        mdlog);
1852             }
1853             GMX_CATCH_ALL_AND_EXIT_WITH_FATAL_ERROR
1854         }
1855     }
1856
1857
1858     if (EI_DYNAMICS(inputrec->eI))
1859     {
1860         /* Turn on signal handling on all nodes */
1861         /*
1862          * (A user signal from the PME nodes (if any)
1863          * is communicated to the PP nodes.
1864          */
1865         signal_handler_install();
1866     }
1867
1868     pull_t* pull_work = nullptr;
1869     if (thisRankHasDuty(cr, DUTY_PP))
1870     {
1871         /* Assumes uniform use of the number of OpenMP threads */
1872         walltime_accounting = walltime_accounting_init(gmx_omp_nthreads_get(ModuleMultiThread::Default));
1873
1874         if (inputrec->bPull)
1875         {
1876             /* Initialize pull code */
1877             pull_work = init_pull(fplog,
1878                                   inputrec->pull.get(),
1879                                   inputrec.get(),
1880                                   mtop,
1881                                   cr,
1882                                   &atomSets,
1883                                   inputrec->fepvals->init_lambda);
1884             if (inputrec->pull->bXOutAverage || inputrec->pull->bFOutAverage)
1885             {
1886                 initPullHistory(pull_work, &observablesHistory);
1887             }
1888             if (EI_DYNAMICS(inputrec->eI) && MASTER(cr))
1889             {
1890                 init_pull_output_files(pull_work, filenames.size(), filenames.data(), oenv, startingBehavior);
1891             }
1892         }
1893
1894         std::unique_ptr<EnforcedRotation> enforcedRotation;
1895         if (inputrec->bRot)
1896         {
1897             /* Initialize enforced rotation code */
1898             enforcedRotation = init_rot(fplog,
1899                                         inputrec.get(),
1900                                         filenames.size(),
1901                                         filenames.data(),
1902                                         cr,
1903                                         &atomSets,
1904                                         globalState.get(),
1905                                         mtop,
1906                                         oenv,
1907                                         mdrunOptions,
1908                                         startingBehavior);
1909         }
1910
1911         t_swap* swap = nullptr;
1912         if (inputrec->eSwapCoords != SwapType::No)
1913         {
1914             /* Initialize ion swapping code */
1915             swap = init_swapcoords(fplog,
1916                                    inputrec.get(),
1917                                    opt2fn_master("-swap", filenames.size(), filenames.data(), cr),
1918                                    mtop,
1919                                    globalState.get(),
1920                                    &observablesHistory,
1921                                    cr,
1922                                    &atomSets,
1923                                    oenv,
1924                                    mdrunOptions,
1925                                    startingBehavior);
1926         }
1927
1928         /* Let makeConstraints know whether we have essential dynamics constraints. */
1929         auto constr = makeConstraints(mtop,
1930                                       *inputrec,
1931                                       pull_work,
1932                                       doEssentialDynamics,
1933                                       fplog,
1934                                       cr,
1935                                       updateGroups.useUpdateGroups(),
1936                                       ms,
1937                                       &nrnb,
1938                                       wcycle.get(),
1939                                       fr->bMolPBC);
1940
1941         /* Energy terms and groups */
1942         gmx_enerdata_t enerd(mtop.groups.groups[SimulationAtomGroupType::EnergyOutput].size(),
1943                              inputrec->fepvals->n_lambda);
1944
1945         // cos acceleration is only supported by md, but older tpr
1946         // files might still combine it with other integrators
1947         GMX_RELEASE_ASSERT(inputrec->cos_accel == 0.0 || inputrec->eI == IntegrationAlgorithm::MD,
1948                            "cos_acceleration is only supported by integrator=md");
1949
1950         /* Kinetic energy data */
1951         gmx_ekindata_t ekind(inputrec->opts.ngtc,
1952                              inputrec->cos_accel,
1953                              gmx_omp_nthreads_get(ModuleMultiThread::Update));
1954
1955         /* Set up interactive MD (IMD) */
1956         auto imdSession = makeImdSession(inputrec.get(),
1957                                          cr,
1958                                          wcycle.get(),
1959                                          &enerd,
1960                                          ms,
1961                                          mtop,
1962                                          mdlog,
1963                                          MASTER(cr) ? globalState->x : gmx::ArrayRef<gmx::RVec>(),
1964                                          filenames.size(),
1965                                          filenames.data(),
1966                                          oenv,
1967                                          mdrunOptions.imdOptions,
1968                                          startingBehavior);
1969
1970         if (DOMAINDECOMP(cr))
1971         {
1972             GMX_RELEASE_ASSERT(fr, "fr was NULL while cr->duty was DUTY_PP");
1973             /* This call is not included in init_domain_decomposition
1974              * because fr->atomInfoForEachMoleculeBlock is set later.
1975              */
1976             makeBondedLinks(cr->dd, mtop, fr->atomInfoForEachMoleculeBlock);
1977         }
1978
1979         if (runScheduleWork.simulationWork.useGpuBufferOps)
1980         {
1981             fr->gpuForceReduction[gmx::AtomLocality::Local] = std::make_unique<gmx::GpuForceReduction>(
1982                     deviceStreamManager->context(),
1983                     deviceStreamManager->stream(gmx::DeviceStreamType::NonBondedLocal),
1984                     wcycle.get());
1985             fr->gpuForceReduction[gmx::AtomLocality::NonLocal] = std::make_unique<gmx::GpuForceReduction>(
1986                     deviceStreamManager->context(),
1987                     deviceStreamManager->stream(gmx::DeviceStreamType::NonBondedNonLocal),
1988                     wcycle.get());
1989         }
1990
1991         std::unique_ptr<gmx::StatePropagatorDataGpu> stateGpu;
1992         if (gpusWereDetected
1993             && ((runScheduleWork.simulationWork.useGpuPme && thisRankHasDuty(cr, DUTY_PME))
1994                 || runScheduleWork.simulationWork.useGpuBufferOps))
1995         {
1996             GpuApiCallBehavior transferKind =
1997                     (inputrec->eI == IntegrationAlgorithm::MD && !doRerun && !useModularSimulator)
1998                             ? GpuApiCallBehavior::Async
1999                             : GpuApiCallBehavior::Sync;
2000             GMX_RELEASE_ASSERT(deviceStreamManager != nullptr,
2001                                "GPU device stream manager should be initialized to use GPU.");
2002             stateGpu = std::make_unique<gmx::StatePropagatorDataGpu>(
2003                     *deviceStreamManager, transferKind, pme_gpu_get_block_size(fr->pmedata), wcycle.get());
2004             fr->stateGpu = stateGpu.get();
2005         }
2006
2007         GMX_ASSERT(stopHandlerBuilder_, "Runner must provide StopHandlerBuilder to simulator.");
2008         SimulatorBuilder simulatorBuilder;
2009
2010         simulatorBuilder.add(SimulatorStateData(globalState.get(), &observablesHistory, &enerd, &ekind));
2011         simulatorBuilder.add(std::move(membedHolder));
2012         simulatorBuilder.add(std::move(stopHandlerBuilder_));
2013         simulatorBuilder.add(SimulatorConfig(mdrunOptions, startingBehavior, &runScheduleWork));
2014
2015
2016         simulatorBuilder.add(SimulatorEnv(fplog, cr, ms, mdlog, oenv));
2017         simulatorBuilder.add(Profiling(&nrnb, walltime_accounting, wcycle.get()));
2018         simulatorBuilder.add(ConstraintsParam(
2019                 constr.get(), enforcedRotation ? enforcedRotation->getLegacyEnfrot() : nullptr, vsite.get()));
2020         // TODO: Separate `fr` to a separate add, and make the `build` handle the coupling sensibly.
2021         simulatorBuilder.add(LegacyInput(
2022                 static_cast<int>(filenames.size()), filenames.data(), inputrec.get(), fr.get()));
2023         simulatorBuilder.add(ReplicaExchangeParameters(replExParams));
2024         simulatorBuilder.add(InteractiveMD(imdSession.get()));
2025         simulatorBuilder.add(SimulatorModules(mdModules_->outputProvider(), mdModules_->notifiers()));
2026         simulatorBuilder.add(CenterOfMassPulling(pull_work));
2027         // Todo move to an MDModule
2028         simulatorBuilder.add(IonSwapping(swap));
2029         simulatorBuilder.add(TopologyData(mtop, mdAtoms.get()));
2030         simulatorBuilder.add(BoxDeformationHandle(deform.get()));
2031         simulatorBuilder.add(std::move(modularSimulatorCheckpointData));
2032
2033         // build and run simulator object based on user-input
2034         auto simulator = simulatorBuilder.build(useModularSimulator);
2035         simulator->run();
2036
2037         if (fr->pmePpCommGpu)
2038         {
2039             // destroy object since it is no longer required. (This needs to be done while the GPU context still exists.)
2040             fr->pmePpCommGpu.reset();
2041         }
2042
2043         if (inputrec->bPull)
2044         {
2045             finish_pull(pull_work);
2046         }
2047         finish_swapcoords(swap);
2048     }
2049     else
2050     {
2051         GMX_RELEASE_ASSERT(pmedata, "pmedata was NULL while cr->duty was not DUTY_PP");
2052         /* do PME only */
2053         walltime_accounting = walltime_accounting_init(gmx_omp_nthreads_get(ModuleMultiThread::Pme));
2054         gmx_pmeonly(pmedata,
2055                     cr,
2056                     &nrnb,
2057                     wcycle.get(),
2058                     walltime_accounting,
2059                     inputrec.get(),
2060                     pmeRunMode,
2061                     runScheduleWork.simulationWork.useGpuPmePpCommunication,
2062                     deviceStreamManager.get());
2063     }
2064
2065     wallcycle_stop(wcycle.get(), WallCycleCounter::Run);
2066
2067     /* Finish up, write some stuff
2068      * if rerunMD, don't write last frame again
2069      */
2070     finish_run(fplog,
2071                mdlog,
2072                cr,
2073                *inputrec,
2074                &nrnb,
2075                wcycle.get(),
2076                walltime_accounting,
2077                fr ? fr->nbv.get() : nullptr,
2078                pmedata,
2079                EI_DYNAMICS(inputrec->eI) && !isMultiSim(ms));
2080
2081
2082     deviceStreamManager.reset(nullptr);
2083     // Free PME data
2084     if (pmedata)
2085     {
2086         gmx_pme_destroy(pmedata);
2087         pmedata = nullptr;
2088     }
2089
2090     // FIXME: this is only here to manually unpin mdAtoms->chargeA_ and state->x,
2091     // before we destroy the GPU context(s)
2092     // Pinned buffers are associated with contexts in CUDA.
2093     // As soon as we destroy GPU contexts after mdrunner() exits, these lines should go.
2094     mdAtoms.reset(nullptr);
2095     globalState.reset(nullptr);
2096     mdModules_.reset(nullptr); // destruct force providers here as they might also use the GPU
2097     fr.reset(nullptr);         // destruct forcerec before gpu
2098     // TODO convert to C++ so we can get rid of these frees
2099     sfree(disresdata);
2100
2101     if (!hwinfo_->deviceInfoList.empty())
2102     {
2103         /* stop the GPU profiler (only CUDA) */
2104         stopGpuProfiler();
2105     }
2106
2107     /* With tMPI we need to wait for all ranks to finish deallocation before
2108      * destroying the CUDA context as some tMPI ranks may be sharing
2109      * GPU and context.
2110      *
2111      * This is not a concern in OpenCL where we use one context per rank.
2112      *
2113      * Note: it is safe to not call the barrier on the ranks which do not use GPU,
2114      * but it is easier and more futureproof to call it on the whole node.
2115      *
2116      * Note that this function needs to be called even if GPUs are not used
2117      * in this run because the PME ranks have no knowledge of whether GPUs
2118      * are used or not, but all ranks need to enter the barrier below.
2119      * \todo Remove this physical node barrier after making sure
2120      * that it's not needed anymore (with a shared GPU run).
2121      */
2122     if (GMX_THREAD_MPI)
2123     {
2124         physicalNodeComm.barrier();
2125     }
2126
2127     if (!devFlags.usingCudaAwareMpi)
2128     {
2129         // Don't reset GPU in case of CUDA-AWARE MPI
2130         // UCX creates CUDA buffers which are cleaned-up as part of MPI_Finalize()
2131         // resetting the device before MPI_Finalize() results in crashes inside UCX
2132         releaseDevice(deviceInfo);
2133     }
2134
2135     /* Does what it says */
2136     print_date_and_time(fplog, cr->nodeid, "Finished mdrun", gmx_gettime());
2137     walltime_accounting_destroy(walltime_accounting);
2138
2139     // Ensure log file content is written
2140     if (logFileHandle)
2141     {
2142         gmx_fio_flush(logFileHandle);
2143     }
2144
2145     /* Reset FPEs (important for unit tests) by disabling them. Assumes no
2146      * exceptions were enabled before function was called. */
2147     if (bEnableFPE)
2148     {
2149         gmx_fedisableexcept();
2150     }
2151
2152     auto rc = static_cast<int>(gmx_get_stop_condition());
2153
2154 #if GMX_THREAD_MPI
2155     /* we need to join all threads. The sub-threads join when they
2156        exit this function, but the master thread needs to be told to
2157        wait for that. */
2158     if (MASTER(cr))
2159     {
2160         tMPI_Finalize();
2161     }
2162 #endif
2163     return rc;
2164 } // namespace gmx
2165
2166 Mdrunner::~Mdrunner()
2167 {
2168     // Clean up of the Manager.
2169     // This will end up getting called on every thread-MPI rank, which is unnecessary,
2170     // but okay as long as threads synchronize some time before adding or accessing
2171     // a new set of restraints.
2172     if (restraintManager_)
2173     {
2174         restraintManager_->clear();
2175         GMX_ASSERT(restraintManager_->countRestraints() == 0,
2176                    "restraints added during runner life time should be cleared at runner "
2177                    "destruction.");
2178     }
2179 };
2180
2181 void Mdrunner::addPotential(std::shared_ptr<gmx::IRestraintPotential> puller, const std::string& name)
2182 {
2183     GMX_ASSERT(restraintManager_, "Mdrunner must have a restraint manager.");
2184     // Not sure if this should be logged through the md logger or something else,
2185     // but it is helpful to have some sort of INFO level message sent somewhere.
2186     //    std::cout << "Registering restraint named " << name << std::endl;
2187
2188     // When multiple restraints are used, it may be wasteful to register them separately.
2189     // Maybe instead register an entire Restraint Manager as a force provider.
2190     restraintManager_->addToSpec(std::move(puller), name);
2191 }
2192
2193 Mdrunner::Mdrunner(std::unique_ptr<MDModules> mdModules) : mdModules_(std::move(mdModules)) {}
2194
2195 Mdrunner::Mdrunner(Mdrunner&&) noexcept = default;
2196
2197 //NOLINTNEXTLINE(performance-noexcept-move-constructor) working around GCC bug 58265 in CentOS 7
2198 Mdrunner& Mdrunner::operator=(Mdrunner&& /*handle*/) noexcept(BUGFREE_NOEXCEPT_STRING) = default;
2199
2200 class Mdrunner::BuilderImplementation
2201 {
2202 public:
2203     BuilderImplementation() = delete;
2204     BuilderImplementation(std::unique_ptr<MDModules> mdModules, compat::not_null<SimulationContext*> context);
2205     ~BuilderImplementation();
2206
2207     BuilderImplementation& setExtraMdrunOptions(const MdrunOptions& options,
2208                                                 real                forceWarningThreshold,
2209                                                 StartingBehavior    startingBehavior);
2210
2211     void addHardwareDetectionResult(const gmx_hw_info_t* hwinfo);
2212
2213     void addDomdec(const DomdecOptions& options);
2214
2215     void addInput(SimulationInputHandle inputHolder);
2216
2217     void addVerletList(int nstlist);
2218
2219     void addReplicaExchange(const ReplicaExchangeParameters& params);
2220
2221     void addNonBonded(const char* nbpu_opt);
2222
2223     void addPME(const char* pme_opt_, const char* pme_fft_opt_);
2224
2225     void addBondedTaskAssignment(const char* bonded_opt);
2226
2227     void addUpdateTaskAssignment(const char* update_opt);
2228
2229     void addHardwareOptions(const gmx_hw_opt_t& hardwareOptions);
2230
2231     void addFilenames(ArrayRef<const t_filenm> filenames);
2232
2233     void addOutputEnvironment(gmx_output_env_t* outputEnvironment);
2234
2235     void addLogFile(t_fileio* logFileHandle);
2236
2237     void addStopHandlerBuilder(std::unique_ptr<StopHandlerBuilder> builder);
2238
2239     Mdrunner build();
2240
2241 private:
2242     // Default parameters copied from runner.h
2243     // \todo Clarify source(s) of default parameters.
2244
2245     const char* nbpu_opt_    = nullptr;
2246     const char* pme_opt_     = nullptr;
2247     const char* pme_fft_opt_ = nullptr;
2248     const char* bonded_opt_  = nullptr;
2249     const char* update_opt_  = nullptr;
2250
2251     MdrunOptions mdrunOptions_;
2252
2253     DomdecOptions domdecOptions_;
2254
2255     ReplicaExchangeParameters replicaExchangeParameters_;
2256
2257     //! Command-line override for the duration of a neighbor list with the Verlet scheme.
2258     int nstlist_ = 0;
2259
2260     //! World communicator, used for hardware detection and task assignment
2261     MPI_Comm libraryWorldCommunicator_ = MPI_COMM_NULL;
2262
2263     //! Multisim communicator handle.
2264     gmx_multisim_t* multiSimulation_;
2265
2266     //! mdrun communicator
2267     MPI_Comm simulationCommunicator_ = MPI_COMM_NULL;
2268
2269     //! Print a warning if any force is larger than this (in kJ/mol nm).
2270     real forceWarningThreshold_ = -1;
2271
2272     //! Whether the simulation will start afresh, or restart with/without appending.
2273     StartingBehavior startingBehavior_ = StartingBehavior::NewSimulation;
2274
2275     //! The modules that comprise the functionality of mdrun.
2276     std::unique_ptr<MDModules> mdModules_;
2277
2278     //! Detected hardware.
2279     const gmx_hw_info_t* hwinfo_ = nullptr;
2280
2281     //! \brief Parallelism information.
2282     gmx_hw_opt_t hardwareOptions_;
2283
2284     //! filename options for simulation.
2285     ArrayRef<const t_filenm> filenames_;
2286
2287     /*! \brief Handle to output environment.
2288      *
2289      * \todo gmx_output_env_t needs lifetime management.
2290      */
2291     gmx_output_env_t* outputEnvironment_ = nullptr;
2292
2293     /*! \brief Non-owning handle to MD log file.
2294      *
2295      * \todo Context should own output facilities for client.
2296      * \todo Improve log file handle management.
2297      * \internal
2298      * Code managing the FILE* relies on the ability to set it to
2299      * nullptr to check whether the filehandle is valid.
2300      */
2301     t_fileio* logFileHandle_ = nullptr;
2302
2303     /*!
2304      * \brief Builder for simulation stop signal handler.
2305      */
2306     std::unique_ptr<StopHandlerBuilder> stopHandlerBuilder_ = nullptr;
2307
2308     /*!
2309      * \brief Sources for initial simulation state.
2310      *
2311      * See issue #3652 for near-term refinements to the SimulationInput interface.
2312      *
2313      * See issue #3379 for broader discussion on API aspects of simulation inputs and outputs.
2314      */
2315     SimulationInputHandle inputHolder_;
2316 };
2317
2318 Mdrunner::BuilderImplementation::BuilderImplementation(std::unique_ptr<MDModules> mdModules,
2319                                                        compat::not_null<SimulationContext*> context) :
2320     mdModules_(std::move(mdModules))
2321 {
2322     libraryWorldCommunicator_ = context->libraryWorldCommunicator_;
2323     simulationCommunicator_   = context->simulationCommunicator_;
2324     multiSimulation_          = context->multiSimulation_.get();
2325 }
2326
2327 Mdrunner::BuilderImplementation::~BuilderImplementation() = default;
2328
2329 Mdrunner::BuilderImplementation&
2330 Mdrunner::BuilderImplementation::setExtraMdrunOptions(const MdrunOptions&    options,
2331                                                       const real             forceWarningThreshold,
2332                                                       const StartingBehavior startingBehavior)
2333 {
2334     mdrunOptions_          = options;
2335     forceWarningThreshold_ = forceWarningThreshold;
2336     startingBehavior_      = startingBehavior;
2337     return *this;
2338 }
2339
2340 void Mdrunner::BuilderImplementation::addDomdec(const DomdecOptions& options)
2341 {
2342     domdecOptions_ = options;
2343 }
2344
2345 void Mdrunner::BuilderImplementation::addVerletList(int nstlist)
2346 {
2347     nstlist_ = nstlist;
2348 }
2349
2350 void Mdrunner::BuilderImplementation::addReplicaExchange(const ReplicaExchangeParameters& params)
2351 {
2352     replicaExchangeParameters_ = params;
2353 }
2354
2355 Mdrunner Mdrunner::BuilderImplementation::build()
2356 {
2357     auto newRunner = Mdrunner(std::move(mdModules_));
2358
2359     newRunner.mdrunOptions     = mdrunOptions_;
2360     newRunner.pforce           = forceWarningThreshold_;
2361     newRunner.startingBehavior = startingBehavior_;
2362     newRunner.domdecOptions    = domdecOptions_;
2363
2364     // \todo determine an invariant to check or confirm that all gmx_hw_opt_t objects are valid
2365     newRunner.hw_opt = hardwareOptions_;
2366
2367     // No invariant to check. This parameter exists to optionally override other behavior.
2368     newRunner.nstlist_cmdline = nstlist_;
2369
2370     newRunner.replExParams = replicaExchangeParameters_;
2371
2372     newRunner.filenames = filenames_;
2373
2374     newRunner.libraryWorldCommunicator = libraryWorldCommunicator_;
2375
2376     newRunner.simulationCommunicator = simulationCommunicator_;
2377
2378     // nullptr is a valid value for the multisim handle
2379     newRunner.ms = multiSimulation_;
2380
2381     if (hwinfo_)
2382     {
2383         newRunner.hwinfo_ = hwinfo_;
2384     }
2385     else
2386     {
2387         GMX_THROW(gmx::APIError(
2388                 "MdrunnerBuilder::addHardwareDetectionResult() is required before build()"));
2389     }
2390
2391     if (inputHolder_)
2392     {
2393         newRunner.inputHolder_ = std::move(inputHolder_);
2394     }
2395     else
2396     {
2397         GMX_THROW(gmx::APIError("MdrunnerBuilder::addInput() is required before build()."));
2398     }
2399
2400     // \todo Clarify ownership and lifetime management for gmx_output_env_t
2401     // \todo Update sanity checking when output environment has clearly specified invariants.
2402     // Initialization and default values for oenv are not well specified in the current version.
2403     if (outputEnvironment_)
2404     {
2405         newRunner.oenv = outputEnvironment_;
2406     }
2407     else
2408     {
2409         GMX_THROW(gmx::APIError(
2410                 "MdrunnerBuilder::addOutputEnvironment() is required before build()"));
2411     }
2412
2413     newRunner.logFileHandle = logFileHandle_;
2414
2415     if (nbpu_opt_)
2416     {
2417         newRunner.nbpu_opt = nbpu_opt_;
2418     }
2419     else
2420     {
2421         GMX_THROW(gmx::APIError("MdrunnerBuilder::addNonBonded() is required before build()"));
2422     }
2423
2424     if (pme_opt_ && pme_fft_opt_)
2425     {
2426         newRunner.pme_opt     = pme_opt_;
2427         newRunner.pme_fft_opt = pme_fft_opt_;
2428     }
2429     else
2430     {
2431         GMX_THROW(gmx::APIError("MdrunnerBuilder::addElectrostatics() is required before build()"));
2432     }
2433
2434     if (bonded_opt_)
2435     {
2436         newRunner.bonded_opt = bonded_opt_;
2437     }
2438     else
2439     {
2440         GMX_THROW(gmx::APIError(
2441                 "MdrunnerBuilder::addBondedTaskAssignment() is required before build()"));
2442     }
2443
2444     if (update_opt_)
2445     {
2446         newRunner.update_opt = update_opt_;
2447     }
2448     else
2449     {
2450         GMX_THROW(gmx::APIError(
2451                 "MdrunnerBuilder::addUpdateTaskAssignment() is required before build()  "));
2452     }
2453
2454
2455     newRunner.restraintManager_ = std::make_unique<gmx::RestraintManager>();
2456
2457     if (stopHandlerBuilder_)
2458     {
2459         newRunner.stopHandlerBuilder_ = std::move(stopHandlerBuilder_);
2460     }
2461     else
2462     {
2463         newRunner.stopHandlerBuilder_ = std::make_unique<StopHandlerBuilder>();
2464     }
2465
2466     return newRunner;
2467 }
2468
2469 void Mdrunner::BuilderImplementation::addHardwareDetectionResult(const gmx_hw_info_t* hwinfo)
2470 {
2471     hwinfo_ = hwinfo;
2472 }
2473
2474 void Mdrunner::BuilderImplementation::addNonBonded(const char* nbpu_opt)
2475 {
2476     nbpu_opt_ = nbpu_opt;
2477 }
2478
2479 void Mdrunner::BuilderImplementation::addPME(const char* pme_opt, const char* pme_fft_opt)
2480 {
2481     pme_opt_     = pme_opt;
2482     pme_fft_opt_ = pme_fft_opt;
2483 }
2484
2485 void Mdrunner::BuilderImplementation::addBondedTaskAssignment(const char* bonded_opt)
2486 {
2487     bonded_opt_ = bonded_opt;
2488 }
2489
2490 void Mdrunner::BuilderImplementation::addUpdateTaskAssignment(const char* update_opt)
2491 {
2492     update_opt_ = update_opt;
2493 }
2494
2495 void Mdrunner::BuilderImplementation::addHardwareOptions(const gmx_hw_opt_t& hardwareOptions)
2496 {
2497     hardwareOptions_ = hardwareOptions;
2498 }
2499
2500 void Mdrunner::BuilderImplementation::addFilenames(ArrayRef<const t_filenm> filenames)
2501 {
2502     filenames_ = filenames;
2503 }
2504
2505 void Mdrunner::BuilderImplementation::addOutputEnvironment(gmx_output_env_t* outputEnvironment)
2506 {
2507     outputEnvironment_ = outputEnvironment;
2508 }
2509
2510 void Mdrunner::BuilderImplementation::addLogFile(t_fileio* logFileHandle)
2511 {
2512     logFileHandle_ = logFileHandle;
2513 }
2514
2515 void Mdrunner::BuilderImplementation::addStopHandlerBuilder(std::unique_ptr<StopHandlerBuilder> builder)
2516 {
2517     stopHandlerBuilder_ = std::move(builder);
2518 }
2519
2520 void Mdrunner::BuilderImplementation::addInput(SimulationInputHandle inputHolder)
2521 {
2522     inputHolder_ = std::move(inputHolder);
2523 }
2524
2525 MdrunnerBuilder::MdrunnerBuilder(std::unique_ptr<MDModules>           mdModules,
2526                                  compat::not_null<SimulationContext*> context) :
2527     impl_{ std::make_unique<Mdrunner::BuilderImplementation>(std::move(mdModules), context) }
2528 {
2529 }
2530
2531 MdrunnerBuilder::~MdrunnerBuilder() = default;
2532
2533 MdrunnerBuilder& MdrunnerBuilder::addHardwareDetectionResult(const gmx_hw_info_t* hwinfo)
2534 {
2535     impl_->addHardwareDetectionResult(hwinfo);
2536     return *this;
2537 }
2538
2539 MdrunnerBuilder& MdrunnerBuilder::addSimulationMethod(const MdrunOptions&    options,
2540                                                       real                   forceWarningThreshold,
2541                                                       const StartingBehavior startingBehavior)
2542 {
2543     impl_->setExtraMdrunOptions(options, forceWarningThreshold, startingBehavior);
2544     return *this;
2545 }
2546
2547 MdrunnerBuilder& MdrunnerBuilder::addDomainDecomposition(const DomdecOptions& options)
2548 {
2549     impl_->addDomdec(options);
2550     return *this;
2551 }
2552
2553 MdrunnerBuilder& MdrunnerBuilder::addNeighborList(int nstlist)
2554 {
2555     impl_->addVerletList(nstlist);
2556     return *this;
2557 }
2558
2559 MdrunnerBuilder& MdrunnerBuilder::addReplicaExchange(const ReplicaExchangeParameters& params)
2560 {
2561     impl_->addReplicaExchange(params);
2562     return *this;
2563 }
2564
2565 MdrunnerBuilder& MdrunnerBuilder::addNonBonded(const char* nbpu_opt)
2566 {
2567     impl_->addNonBonded(nbpu_opt);
2568     return *this;
2569 }
2570
2571 MdrunnerBuilder& MdrunnerBuilder::addElectrostatics(const char* pme_opt, const char* pme_fft_opt)
2572 {
2573     // The builder method may become more general in the future, but in this version,
2574     // parameters for PME electrostatics are both required and the only parameters
2575     // available.
2576     if (pme_opt && pme_fft_opt)
2577     {
2578         impl_->addPME(pme_opt, pme_fft_opt);
2579     }
2580     else
2581     {
2582         GMX_THROW(
2583                 gmx::InvalidInputError("addElectrostatics() arguments must be non-null pointers."));
2584     }
2585     return *this;
2586 }
2587
2588 MdrunnerBuilder& MdrunnerBuilder::addBondedTaskAssignment(const char* bonded_opt)
2589 {
2590     impl_->addBondedTaskAssignment(bonded_opt);
2591     return *this;
2592 }
2593
2594 MdrunnerBuilder& MdrunnerBuilder::addUpdateTaskAssignment(const char* update_opt)
2595 {
2596     impl_->addUpdateTaskAssignment(update_opt);
2597     return *this;
2598 }
2599
2600 Mdrunner MdrunnerBuilder::build()
2601 {
2602     return impl_->build();
2603 }
2604
2605 MdrunnerBuilder& MdrunnerBuilder::addHardwareOptions(const gmx_hw_opt_t& hardwareOptions)
2606 {
2607     impl_->addHardwareOptions(hardwareOptions);
2608     return *this;
2609 }
2610
2611 MdrunnerBuilder& MdrunnerBuilder::addFilenames(ArrayRef<const t_filenm> filenames)
2612 {
2613     impl_->addFilenames(filenames);
2614     return *this;
2615 }
2616
2617 MdrunnerBuilder& MdrunnerBuilder::addOutputEnvironment(gmx_output_env_t* outputEnvironment)
2618 {
2619     impl_->addOutputEnvironment(outputEnvironment);
2620     return *this;
2621 }
2622
2623 MdrunnerBuilder& MdrunnerBuilder::addLogFile(t_fileio* logFileHandle)
2624 {
2625     impl_->addLogFile(logFileHandle);
2626     return *this;
2627 }
2628
2629 MdrunnerBuilder& MdrunnerBuilder::addStopHandlerBuilder(std::unique_ptr<StopHandlerBuilder> builder)
2630 {
2631     impl_->addStopHandlerBuilder(std::move(builder));
2632     return *this;
2633 }
2634
2635 MdrunnerBuilder& MdrunnerBuilder::addInput(SimulationInputHandle input)
2636 {
2637     impl_->addInput(std::move(input));
2638     return *this;
2639 }
2640
2641 MdrunnerBuilder::MdrunnerBuilder(MdrunnerBuilder&&) noexcept = default;
2642
2643 MdrunnerBuilder& MdrunnerBuilder::operator=(MdrunnerBuilder&&) noexcept = default;
2644
2645 } // namespace gmx