source: src/Actions/FragmentationAction/FragmentationAutomationAction.cpp@ 52a789

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Last change on this file since 52a789 was 11edf0, checked in by Frederik Heber <heber@…>, 9 years ago

Added GridDownsampler as static functor.

  • Property mode set to 100644
File size: 16.9 KB
Line 
1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
5 * Copyright (C) 2013 Frederik Heber. All rights reserved.
6 *
7 *
8 * This file is part of MoleCuilder.
9 *
10 * MoleCuilder is free software: you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation, either version 2 of the License, or
13 * (at your option) any later version.
14 *
15 * MoleCuilder is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
22 */
23
24/*
25 * FragmentationAutomationAction.cpp
26 *
27 * Created on: May 18, 2012
28 * Author: heber
29 */
30
31// include config.h
32#ifdef HAVE_CONFIG_H
33#include <config.h>
34#endif
35
36#include <boost/archive/text_iarchive.hpp>
37// boost asio needs specific operator new
38#include <boost/asio.hpp>
39
40#include "CodePatterns/MemDebug.hpp"
41
42//// include headers that implement a archive in simple text format
43#include <boost/archive/text_oarchive.hpp>
44#include <boost/archive/text_iarchive.hpp>
45
46//
47//#include <boost/mpl/remove.hpp>
48//#include <boost/lambda/lambda.hpp>
49
50//#include <iostream>
51
52#include "CodePatterns/Assert.hpp"
53#include "CodePatterns/Info.hpp"
54#include "CodePatterns/Log.hpp"
55
56#ifdef HAVE_JOBMARKET
57#include "JobMarket/Jobs/FragmentJob.hpp"
58#else
59#include "Jobs/JobMarket/FragmentJob.hpp"
60#endif
61
62#include "Fragmentation/Automation/FragmentJobQueue.hpp"
63#ifdef HAVE_JOBMARKET
64#include "Fragmentation/Automation/MPQCFragmentController.hpp"
65#else
66#include "Fragmentation/Automation/MPQCCommandFragmentController.hpp"
67#endif
68#include "Fragmentation/Exporters/ExportGraph_ToJobs.hpp"
69#include "Fragmentation/Summation/Containers/FragmentationChargeDensity.hpp"
70#include "Fragmentation/Summation/Containers/FragmentationLongRangeResults.hpp"
71#include "Fragmentation/Summation/Containers/FragmentationResultContainer.hpp"
72#include "Fragmentation/Summation/Containers/FragmentationShortRangeResults.hpp"
73#include "Fragmentation/Summation/Containers/MPQCData.hpp"
74#include "Fragmentation/KeySetsContainer.hpp"
75#if defined(HAVE_JOBMARKET) && defined(HAVE_VMG)
76#include "Fragmentation/Automation/VMGDebugGridFragmentController.hpp"
77#include "Fragmentation/Automation/VMGFragmentController.hpp"
78#include "Fragmentation/Summation/Containers/GridDownsampler.hpp"
79#include "Fragmentation/Summation/Containers/VMGData.hpp"
80#include "Fragmentation/Summation/Containers/VMGDataFused.hpp"
81#include "Fragmentation/Summation/Containers/VMGDataMap.hpp"
82#include "Fragmentation/Summation/Containers/VMGData_printKeyNames.hpp"
83#endif
84#include "World.hpp"
85
86#include <boost/bind.hpp>
87#include <boost/thread.hpp>
88#include <fstream>
89#include <iostream>
90#include <string>
91#include <vector>
92
93#include <boost/mpl/for_each.hpp>
94
95#include "Actions/FragmentationAction/FragmentationAutomationAction.hpp"
96
97using namespace MoleCuilder;
98
99// and construct the stuff
100#include "FragmentationAutomationAction.def"
101#include "Action_impl_pre.hpp"
102/** =========== define the function ====================== */
103
104class controller_AddOn;
105
106// needs to be defined for using the FragmentController
107controller_AddOn *getAddOn()
108{
109 return NULL;
110}
111
112static void updateSteps(Process &p, const size_t step, const size_t total)
113{
114 LOG(1, "There are " << step << " steps out of " << total << " done.");
115 p.setCurrStep(step);
116}
117
118template <class ResultClass>
119std::pair<double, double> getResiduals(const ResultClass &_result)
120{ return std::pair<double, double>(0.,0.); }
121
122std::pair<double, double> getResiduals(const MPQCData &_result)
123{ return std::make_pair(_result.accuracy, _result.desired_accuracy); }
124
125std::pair<double, double> getResiduals(const VMGData &_result)
126{
127 // sensibility check on absolute residual
128 if (_result.residual > 1e-5)
129 ELOG(2, "Encountered absolute residual greater than 1e-5: " << _result.residual);
130 // take smaller value of the two as just one of them needs to be less than precision
131 const double residual = std::min(_result.relative_residual, _result.residual);
132 return std::make_pair(residual, _result.precision);
133}
134
135template <class ResultClass>
136bool checkResults(const typename std::map<JobId_t, ResultClass> &_results)
137{
138 bool result = true;
139 for (typename std::map<JobId_t, ResultClass>::const_iterator iter = _results.begin();
140 iter != _results.end(); ++iter) {
141 std::pair<double, double> residuals = getResiduals(iter->second);
142 if (residuals.second != 0.) {
143 if (residuals.first >= residuals.second) {
144 ELOG(1, "Fragment Job " << iter->first << " converged to " << residuals.first
145 << " instead of " << residuals.second);
146 result = false;
147 }
148 } else {
149 LOG(4, "DEBUG: Not checking accuracy because desired precision not given.");
150 }
151 }
152 return result;
153}
154
155ActionState::ptr FragmentationFragmentationAutomationAction::performCall() {
156 boost::asio::io_service io_service;
157
158 // TODO: Have io_service run in second thread and merge with current again eventually
159
160 FragmentationResultContainer &container =
161 FragmentationResultContainer::getInstance();
162 const KeySetsContainer& keysets = FragmentJobQueue::getInstance().getKeySets();
163 const KeySetsContainer& forcekeysets = FragmentJobQueue::getInstance().getFullKeySets();
164
165 size_t Exitflag = 0;
166 std::map<JobId_t, MPQCData> shortrangedata;
167#ifdef HAVE_JOBMARKET
168 {
169 const size_t NumberJobs = FragmentJobQueue::getInstance().size();
170 MPQCFragmentController mpqccontroller(io_service);
171 mpqccontroller.setHost(params.host.get());
172 mpqccontroller.setPort(params.port.get());
173 // Phase One: obtain ids
174 mpqccontroller.requestIds(NumberJobs);
175 if (mpqccontroller.getExitflag() != 0)
176 return Action::failure;
177
178 // Phase Two: add MPQCJobs and send
179 const bool AddJobsStatus = mpqccontroller.addJobsFromQueue(
180 params.DoLongrange.get() ? MPQCData::DoSampleDensity : MPQCData::DontSampleDensity,
181 params.DoValenceOnly.get() ? MPQCData::DoSampleValenceOnly : MPQCData::DontSampleValenceOnly
182 );
183 if (AddJobsStatus)
184 LOG(1, "INFO: Added jobs from FragmentJobsQueue.");
185 else {
186 ELOG(1, "Adding jobs failed.");
187 return Action::failure;
188 }
189 mpqccontroller.run();
190
191 // Phase Three: calculate result
192 setMaxSteps(NumberJobs);
193 mpqccontroller.setUpdateHandler(
194 boost::bind(&updateSteps, boost::ref(*this), _1, _2)
195 );
196 start();
197 boost::thread wait_thread(
198 boost::bind(&MPQCFragmentController::waitforResults, boost::ref(mpqccontroller), boost::cref(NumberJobs))
199 );
200 wait_thread.join();
201 stop();
202 if (mpqccontroller.getExitflag() != 0)
203 return Action::failure;
204
205 mpqccontroller.getResults(shortrangedata);
206 if (!checkResults(shortrangedata)) {
207 ELOG(1, "At least one of the fragments' energy could not be properly minimized.");
208 return Action::failure;
209 }
210 if (mpqccontroller.getExitflag() != 0) {
211 ELOG(1, "MPQCCommandFragmentController returned non-zero exit flag.");
212 return Action::failure;
213 }
214
215 Exitflag += mpqccontroller.getExitflag();
216 }
217#else
218 {
219 const size_t NumberJobs = FragmentJobQueue::getInstance().size();
220 MPQCCommandFragmentController mpqccontroller;
221 // Phase One: obtain ids: not needed, we have infinite pool
222
223 // Phase Two: add MPQCJobs and send
224 const size_t NoJobs = mpqccontroller.addJobsFromQueue(
225 params.DoLongrange.get() ? MPQCData::DoSampleDensity : MPQCData::DontSampleDensity,
226 params.DoValenceOnly.get() ? MPQCData::DoSampleValenceOnly : MPQCData::DontSampleValenceOnly,
227 params.executable.get().string()
228 );
229 if (NoJobs != NumberJobs) {
230 ELOG(1, "Not all jobs were added succesfully.");
231 return Action::failure;
232 }
233 LOG(1, "INFO: Added " << NoJobs << " from FragmentJobsQueue.");
234
235 // prepare process
236 setMaxSteps(NumberJobs);
237 mpqccontroller.setUpdateHandler(
238 boost::bind(&updateSteps, boost::ref(*this), _1, _2)
239 );
240 start();
241 mpqccontroller.run();
242 stop();
243 if (mpqccontroller.getExitflag() != 0) {
244 ELOG(1, "MPQCCommandFragmentController returned non-zero exit flag before getting results.");
245 return Action::failure;
246 }
247
248 // get back the results and place them in shortrangedata
249 mpqccontroller.getResults(shortrangedata);
250 ASSERT( shortrangedata.size() == NumberJobs,
251 "FragmentationFragmentationAutomationAction::performCall() - number of converted results "
252 +toString(shortrangedata.size())+" and number of jobs "+toString(NumberJobs)+ " differ.");
253 if (!checkResults(shortrangedata)) {
254 ELOG(1, "At least one of the fragments' energy could not be properly minimized.");
255 return Action::failure;
256 }
257 if (mpqccontroller.getExitflag() != 0) {
258 ELOG(1, "MPQCCommandFragmentController returned non-zero exit flag after getting results.");
259 return Action::failure;
260 }
261
262 Exitflag += mpqccontroller.getExitflag();
263 }
264#endif
265
266#if defined(HAVE_JOBMARKET) && defined(HAVE_VMG)
267 if (params.DoLongrange.get()) {
268 if ( const_cast<const World &>(World::getInstance()).getAllAtoms().size() == 0) {
269 STATUS("Please load the full molecule into the world before starting this action.");
270 return Action::failure;
271 }
272
273 // obtain combined charge density
274 std::map<JobId_t, MPQCData> shortrangedata_downsampled;
275 SamplingGridProperties domain(ExportGraph_ToJobs::getDomainGrid(params.level.get()));
276 GridDownsampler::downsample(shortrangedata, domain, shortrangedata_downsampled);
277 FragmentationChargeDensity summedChargeDensity(
278 shortrangedata_downsampled,
279 FragmentJobQueue::getInstance().getKeySets());
280 const std::vector<SamplingGrid> full_sample = summedChargeDensity.getFullSampledGrid();
281 LOG(1, "INFO: There are " << shortrangedata.size() << " short-range and "
282 << full_sample.size() << " level-wise long-range jobs.");
283
284 // check boundary conditions
285 const BoundaryConditions::Conditions_t &conditions =
286 World::getInstance().getDomain().getConditions();
287 const bool OpenBoundaryConditions =
288 !((conditions[0] == BoundaryConditions::Wrap) &&
289 (conditions[1] == BoundaryConditions::Wrap) &&
290 (conditions[2] == BoundaryConditions::Wrap));
291 LOG(1, std::string("INFO: Using ")
292 << (OpenBoundaryConditions ? "open" : "periodic")
293 << " boundary conditions.");
294
295 // Phase Four: obtain more ids
296 std::map<JobId_t, VMGData> longrangedata;
297 {
298 VMGFragmentController vmgcontroller(io_service);
299 vmgcontroller.setHost(params.host.get());
300 vmgcontroller.setPort(params.port.get());
301 const size_t NoJobs = shortrangedata.size()+full_sample.size();
302 vmgcontroller.requestIds(2*NoJobs);
303 if (vmgcontroller.getExitflag() != 0) {
304 ELOG(1, "VMGFragmentController returned non-zero exit flag on requesting long-range ids.");
305 return Action::failure;
306 }
307
308 // Phase Five a: create VMGJobs for electronic charge distribution
309 const size_t near_field_cells = params.near_field_cells.get();
310 const size_t interpolation_degree = params.interpolation_degree.get();
311 if (!vmgcontroller.createLongRangeJobs(
312 shortrangedata,
313 full_sample,
314 near_field_cells,
315 interpolation_degree,
316 VMGFragmentController::DontSampleParticles,
317 VMGFragmentController::DoTreatGrid,
318 params.DoValenceOnly.get() ? MPQCData::DoSampleValenceOnly : MPQCData::DontSampleValenceOnly,
319 params.DoPrintDebug.get(),
320 OpenBoundaryConditions,
321 params.DoSmearCharges.get(),
322 false)) {
323 STATUS("Could not create long-range jobs for electronic charge distribution.");
324 return Action::failure;
325 }
326
327 // Phase Six a: calculate result
328 vmgcontroller.waitforResults(NoJobs);
329 if (vmgcontroller.getExitflag() != 0) {
330 ELOG(1, "VMGFragmentController returned non-zero exit flag before getting results.");
331 return Action::failure;
332 }
333 vmgcontroller.getResults(longrangedata);
334 ASSERT( NoJobs == longrangedata.size(),
335 "FragmentationFragmentationAutomationAction::performCall() - number of MPQCresults+"
336 +toString(full_sample.size())+"="+toString(NoJobs)
337 +" and first VMGresults "+toString(longrangedata.size())+" don't match.");
338 if (!checkResults(longrangedata)) {
339 ELOG(1, "At least one of the fragments' electronic long-range potential could not be properly minimized.");
340 return Action::failure;
341 }
342 Exitflag += vmgcontroller.getExitflag();
343
344 {
345 std::map<JobId_t, VMGData> longrangedata_both;
346 // Phase Five b: create VMGJobs for nuclei charge distributions
347 const size_t near_field_cells = params.near_field_cells.get();
348 const size_t interpolation_degree = params.interpolation_degree.get();
349 if (!vmgcontroller.createLongRangeJobs(
350 shortrangedata,
351 full_sample,
352 near_field_cells,
353 interpolation_degree,
354 VMGFragmentController::DoSampleParticles,
355 VMGFragmentController::DoTreatGrid,
356 params.DoValenceOnly.get() ? MPQCData::DoSampleValenceOnly : MPQCData::DontSampleValenceOnly,
357 params.DoPrintDebug.get(),
358 OpenBoundaryConditions,
359 params.DoSmearCharges.get(),
360 params.UseImplicitCharges.get())) {
361 STATUS("Could not create long-range jobs for nuclei charge distribution.");
362 return Action::failure;
363 }
364
365 // Phase Six b: calculate result
366 vmgcontroller.waitforResults(NoJobs);
367 if (vmgcontroller.getExitflag() != 0)
368 return Action::failure;
369 vmgcontroller.getResults(longrangedata_both);
370 ASSERT( NoJobs == longrangedata_both.size(),
371 "FragmentationFragmentationAutomationAction::performCall() - number of MPQCresults+"
372 +toString(full_sample.size())+"="+toString(NoJobs)
373 +" and second VMGresults "+toString(longrangedata_both.size())+" don't match.");
374 if (!checkResults(longrangedata_both)) {
375 ELOG(1, "At least one of the fragments' nuclei long-range potential could not be properly minimized.");
376 return Action::failure;
377 }
378 if (vmgcontroller.getExitflag() != 0) {
379 ELOG(1, "VMGFragmentController returned non-zero exit flag after getting results.");
380 return Action::failure;
381 }
382 Exitflag += vmgcontroller.getExitflag();
383
384 // go through either data and replace nuclei_long with contribution from both
385 ASSERT( longrangedata.size() == longrangedata_both.size(),
386 "FragmentationFragmentationAutomationAction::performCall() - longrange results have different sizes.");
387 std::map<JobId_t, VMGData>::iterator destiter = longrangedata.begin();
388 std::map<JobId_t, VMGData>::const_iterator srciter = longrangedata_both.begin();
389 for (;destiter != longrangedata.end(); ++srciter, ++destiter) {
390 destiter->second.both_sampled_potential = srciter->second.sampled_potential;
391 destiter->second.nuclei_long = srciter->second.nuclei_long;
392 destiter->second.forces = srciter->second.forces;
393 destiter->second.hasForces = srciter->second.hasForces;
394 }
395 }
396 }
397
398 if (params.DoPrintDebug.get()) {
399 std::map<JobId_t, std::string> debugData;
400 {
401 if (!full_sample.empty()) {
402 // create debug jobs for each level to print the summed-up potential to vtk files
403 VMGDebugGridFragmentController debugcontroller(io_service);
404 debugcontroller.setHost(params.host.get());
405 debugcontroller.setPort(params.port.get());
406 debugcontroller.requestIds(full_sample.size());
407 if (!debugcontroller.createDebugJobs(full_sample, OpenBoundaryConditions)) {
408 STATUS("Could not create debug jobs.");
409 return Action::failure;
410 }
411 debugcontroller.waitforResults(full_sample.size());
412 debugcontroller.getResults(debugData);
413 Exitflag += debugcontroller.getExitflag();
414 }
415 }
416 }
417 container.clear();
418 container.addFullResults(keysets, forcekeysets, shortrangedata, longrangedata);
419 } else {
420 container.clear();
421 container.addShortRangeResults(keysets, forcekeysets, shortrangedata);
422 }
423#else
424 container.clear();
425 container.addShortRangeResults(keysets, forcekeysets, shortrangedata);
426#endif
427
428 // now clear all present jobs as we are done
429 FragmentJobQueue::getInstance().clear();
430
431 if (Exitflag != 0)
432 STATUS("Controller has returned failure.");
433 return (Exitflag == 0) ? Action::success : Action::failure;
434}
435
436ActionState::ptr FragmentationFragmentationAutomationAction::performUndo(ActionState::ptr _state) {
437 return Action::success;
438}
439
440ActionState::ptr FragmentationFragmentationAutomationAction::performRedo(ActionState::ptr _state){
441 return Action::success;
442}
443
444bool FragmentationFragmentationAutomationAction::canUndo() {
445 return false;
446}
447
448bool FragmentationFragmentationAutomationAction::shouldUndo() {
449 return false;
450}
451/** =========== end of function ====================== */
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