source: src/Fragmentation/Summation/SetValues/Histogram.cpp@ 4b8ab7

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Last change on this file since 4b8ab7 was 4b8ab7, checked in by Frederik Heber <heber@…>, 11 years ago

FIX: Histogram did not use the pair-wise operator<<().

  • his occured because of new operator<<(..,pair) from toString.hpp.
  • Property mode set to 100644
File size: 11.4 KB
RevLine 
[c4fd03]1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2012 University of Bonn. All rights reserved.
[5aaa43]5 * Copyright (C) 2013 Frederik Heber. All rights reserved.
[c4fd03]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 * Histogram.cpp
26 *
27 * Created on: Jul 26, 2012
28 * Author: heber
29 */
30
31
32// include config.h
33#ifdef HAVE_CONFIG_H
34#include <config.h>
35#endif
36
37#include "CodePatterns/MemDebug.hpp"
38
39#include "Histogram.hpp"
40
41#include <algorithm>
42#include <cmath>
[3f6bbb]43#include <iostream>
[c4fd03]44#include <sstream>
[3f6bbb]45#include <string>
[c4fd03]46
47#include <boost/bind.hpp>
48#include <boost/foreach.hpp>
49
50#include "CodePatterns/Assert.hpp"
51#include "CodePatterns/Log.hpp"
52
53/** Tiny helper struct to create equally spaced bins with count of zero.
54 *
55 */
56struct BinCreator_t {
57 BinCreator_t( const double lowerend, const double _width ) :
58 currentstart(lowerend),
59 width(_width)
60 {}
61 Histogram::Bin_t operator()() {
62 Histogram::Bin_t bin( make_pair( currentstart, 0.) );
63 currentstart+=width;
64 return bin;
65 }
66private:
67 double currentstart;
68 const double width;
69};
70
[3f6bbb]71
[c4fd03]72// see http://stackoverflow.com/questions/634087/stdcopy-to-stdcout-for-stdpair
73// printing a pair is not easy, especially so with ostream_iterator as it cannot find
74// overload operator<<() as it is not in namespace std.
75template <class T>
76struct PrintPair : public std::unary_function<T, void>
77{
78 std::ostream& os;
79 PrintPair(std::ostream& strm) : os(strm) {}
80
81 void operator()(const T& elem) const
82 {
83 os << "(" << elem.first << "," << elem.second << ") ";
84 }
85};
86
[3f6bbb]87std::ostream & operator<<(std::ostream &ost, const Histogram::Bin_t &elem)
88{
89 ost << "(" << elem.first << "," << elem.second << ") ";
90 return ost;
91}
92
[cf18c5]93std::ostream & operator<<(std::ostream &ost, const Histogram &histogram)
94{
95 for (Histogram::Bins_t::const_iterator iter = histogram.bins.begin();
96 iter != histogram.bins.end(); ++iter)
[4b8ab7]97 ost << std::make_pair(iter->first, iter->second);
[cf18c5]98 return ost;
99}
100
[dde8ec]101Histogram::Histogram(const samples_t &samples) :
102 binwidth(0.5),
103 offset(0.)
104{
105 if (!samples.empty()) {
106 // set offset to first value
107 const_cast<BinLowerEnd &>(offset) = *samples.begin();
108 // set binwidth to statistical sensible value
109 MinMax_t MinMax = getMinMaxFromSamples(samples);
[658485]110// const_cast<double &>(binwidth) = (*(MinMax.second) - *(MinMax.first))/pow(samples.size(), 1./3.);
[dde8ec]111 // and add all samples to these histogram bins
112 addSamples(samples);
113 }
114}
[9fd889]115
[6bed1f]116Histogram::Histogram(const samples_t &samples, const BinLowerEnd _offset, const double _binwidth) :
117 binwidth(_binwidth),
118 offset(_offset)
[9fd889]119{
120 addSamples(samples);
121}
122
[dde8ec]123Histogram::MinMax_t Histogram::getMinMaxFromSamples(const samples_t &samples) const
124{
125 std::pair<samples_t::const_iterator, samples_t::const_iterator> returnpair;
126 returnpair.first = min_element(samples.begin(), samples.end());
127 returnpair.second = max_element(samples.begin(), samples.end());
128 ASSERT((returnpair.second != samples.end()) || (returnpair.first != samples.end()),
129 "Histogram::Histogram() - cannot find min/max despite non-empty range.");
130 return returnpair;
131}
132
[9fd889]133void Histogram::addSamples(const samples_t &samples)
[c4fd03]134{
135 // build histogram from samples
136 if (!samples.empty()) {
[6bed1f]137 // 1. get min and max and determine width
[dde8ec]138 MinMax_t MinMax = getMinMaxFromSamples(samples);
139// LOG(1, "DEBUG: min is " << *(MinMax.first) << " and max is " << *(MinMax.second) << ".");
[6bed1f]140
141 // 2. create each bin
142 {
143 std::vector<Bin_t> vectorbins;
[dde8ec]144 const BinLowerEnd HistogramStart = getLowerEnd(*(MinMax.first));
145 BinCreator_t BinCreator( HistogramStart, binwidth );
[6bed1f]146 // we need one extra bin for get...Bin()'s find to work properly
[dde8ec]147 const int CountBins = ceil((*(MinMax.second) - HistogramStart)/binwidth)+1;
[6bed1f]148 vectorbins.resize(CountBins+1, Bin_t( make_pair(0., 0.) ) );
149 std::generate( vectorbins.begin(), vectorbins.end(), BinCreator );
150 bins.insert(vectorbins.begin(), vectorbins.end());
151 }
152
153 // 3. place each sample into bin
[c4fd03]154 BOOST_FOREACH( double value, samples) {
[1c365e]155 const Bins_t::iterator biniter = getLowerEndBin(value);
[c4fd03]156 ASSERT( biniter != bins.end(),
157 "Histogram::Histogram() - cannot find bin for value from given samples.");
[6bed1f]158 // (make bin count normalized, i.e. always equal to surface area of 1)
[45f4f96]159 biniter->second += 1./binwidth;
[c4fd03]160 }
[e5dbd5]161 LOG(2, "DEBUG: Bins are " << printBins() << ".");
[c4fd03]162 } else {
[e11e23]163// LOG(1, "INFO: Given vector of samples is empty.");
[c4fd03]164 }
165}
166
[e5dbd5]167std::string Histogram::printBins() const
168{
169 std::stringstream output;
170 std::for_each( bins.begin(), bins.end(), PrintPair<Bin_t>(output));
171 return output.str();
172}
173
[e4048f]174void Histogram::extendMissingBins(const BinLowerEnd LowerEnd, const BinLowerEnd NextLowerEnd)
175{
176 Bins_t::const_iterator loweriter = getLowerEndBin(LowerEnd);
177 Bins_t::const_iterator upperiter = getHigherEndBin(NextLowerEnd);
178 if (loweriter == bins.end()) {
179 // we need bins beneath our first, add them
180 for(BinLowerEnd offset = getLowerEnd(LowerEnd);
181 offset < getLowerEnd(NextLowerEnd);
[7f8525]182 offset += binwidth) {
183 LOG(4, "DEBUG: Extending below at offset " << offset << ".");
[e4048f]184 bins.insert( std::make_pair (offset, 0. ) );
[7f8525]185 }
186 LOG(3, "DEBUG: Bins after adding empties before start are " << printBins() << ".");
[e4048f]187 loweriter = getLowerEndBin(LowerEnd);
188 ASSERT( loweriter != bins.end(),
189 "Histogram::extendMissingBins() - still no lower bound after adding empties.");
190 }
191 if (upperiter == bins.end()) {
192 // we need bins after our last, add them
193 for(BinLowerEnd offset = getLowerEnd(LowerEnd);
[7f8525]194 offset <= getLowerEnd(NextLowerEnd)+(1.5*binwidth); /* for safety we go a little further */
195 offset += binwidth) {
196 LOG(4, "DEBUG: Extending above at offset " << offset << ".");
[e4048f]197 bins.insert( std::make_pair (offset, 0. ) );
[7f8525]198 }
199 LOG(3, "DEBUG: Bins after adding empties after end are " << printBins() << ".");
[e4048f]200 upperiter = getHigherEndBin(NextLowerEnd);
201 ASSERT( upperiter != bins.end(),
202 "Histogram::extendMissingBins() - still no upper bound after adding empties.");
203 }
204}
205
[22c4f57]206void Histogram::superposeOtherHistogram(const Histogram &other, const double prefactor)
207{
208 // go through each of the other histogram's bins
209 Bins_t::const_iterator enditer = --other.bins.end(); // (except internal last one)
210 for (Bins_t::const_iterator biniter = other.bins.begin();
211 biniter != enditer; /* we advance ourselves in loop */) {
212 const Bin_t &bin = *biniter;
213 ++biniter;
214 const Bin_t &nextbin = *biniter;
215
[7f8525]216 LOG(4, "DEBUG: Current bin is " << bin << ", next bin is " << nextbin << ".");
[e4048f]217
218 // Check first whether start or end actually fit into our histogram, if not extend.
219 extendMissingBins(bin.first, nextbin.first);
220
[22c4f57]221 // The bin will in general not fit into one bin in this histogram, but overlap.
222 // Hence, we determine the contribution of the bin to each bin in this histogram
223 // its overlaps into and add this weight to the bin.
224 Bins_t::const_iterator loweriter = getLowerEndBin(bin.first);
225 Bins_t::const_iterator upperiter = getHigherEndBin(nextbin.first);
[e4048f]226
[22c4f57]227 ASSERT( loweriter->first < upperiter->first,
228 "Histogram::superposeOtherHistogram() - the bin range is invalid.");
[1b5a40]229 LOG(5, "DEBUG: bin range here is ["
[7f8525]230 << loweriter->first << "," << upperiter->first << ").");
[22c4f57]231
232 // Next, we create a vector of offsets
233 typedef std::vector< BinLowerEnd > offsets_t;
234 offsets_t offsets;
235 {
236 offsets.push_back(bin.first);
237 Bins_t::const_iterator iter = loweriter;
238 for (++iter; iter != upperiter; ++iter)
239 if (offsets.back() != iter->first)
240 offsets.push_back(iter->first);
241 if (offsets.back() != nextbin.first)
242 offsets.push_back(nextbin.first);
[1b5a40]243 LOG(4, "DEBUG: Offsets are " << offsets << ".");
[22c4f57]244 }
245
246 // then, we go through the offsets but the last one and add the respective area
247 {
248 offsets_t::const_iterator iter = offsets.begin();
249 offsets_t::const_iterator nextiter = ++offsets.begin();
250 for (; iter != --offsets.end(); ++iter, ++nextiter) {
251 const double length = *nextiter - *iter;
252 const double weight = bin.second * (length/binwidth);
253 Bins_t::iterator filliter = getLowerEndBin(*iter);
254 filliter->second += prefactor * weight;
255 }
256 }
257
258 {
259 std::stringstream output;
260 std::for_each( bins.begin(), bins.end(), PrintPair<Bin_t>(output));
[1b5a40]261 LOG(3, "DEBUG: Bins are after summation " << output.str() << ".");
[22c4f57]262 }
263 }
264}
265
[e561ff]266Histogram& Histogram::operator=(const Histogram &other)
267{
268 // check for self-assigment
269 if (&other != this) {
270 bins.clear();
271 const_cast<BinLowerEnd &>(offset) = other.offset;
272 const_cast<double &>(binwidth) = other.binwidth;
273 bins.insert(other.bins.begin(), other.bins.end());
274 }
275 return *this;
276}
277
[c4fd03]278Histogram& Histogram::operator+=(const Histogram &other)
279{
[22c4f57]280 superposeOtherHistogram(other, +1.);
[1b5a40]281 LOG(3, "DEBUG: Bins after addition are " << printBins() << ".");
[c4fd03]282 return *this;
283}
284
285Histogram& Histogram::operator-=(const Histogram &other)
286{
[22c4f57]287 superposeOtherHistogram(other, -1.);
[1b5a40]288 LOG(3, "DEBUG: Bins after subtraction are " << printBins() << ".");
[c4fd03]289 return *this;
290}
291
292bool Histogram::isEmpty() const
293{
294 bool status = true;
295 for (Bins_t::const_iterator iter = bins.begin(); iter != bins.end(); ++iter)
296 status &= iter->second == 0;
297 return status;
298}
299
[1c365e]300Histogram::Bins_t::iterator Histogram::getLowerEndBin(const double _value)
[c4fd03]301{
[1c365e]302 // lower bound returns key that is equal or greater
[c4fd03]303 Bins_t::iterator iter = bins.lower_bound(_value);
304 if (iter != bins.end()) {
[1c365e]305 // if we are not on the boundary we always have to step back by one
306 if (_value != iter->first) {
307 if (iter != bins.begin()) {
308 --iter;
309 } else {
310 iter = bins.end();
311 }
312 } else if (iter == --bins.end()) {
313 // if we actually are on boundary of "last bin", set to end
[c4fd03]314 iter = bins.end();
[1c365e]315 }
316 }
317 return iter;
318}
319
320Histogram::Bins_t::iterator Histogram::getHigherEndBin(const double _value)
321{
322 // upper bound return key that is strictly greater
323 Bins_t::iterator iter = bins.upper_bound(_value);
324 // if we are on the boundary we have to step back by one
325 if (iter != bins.end())
326 if (_value == iter->first)
327 if (iter != bins.begin())
328 --iter;
[c4fd03]329
330 return iter;
331}
[45f4f96]332
[1dd419]333Histogram::BinLowerEnd Histogram::getLowerEnd(const double _value) const
334{
335 BinLowerEnd start = _value - offset;
336 // then divide by binwidth
337 const int integral = floor(start/binwidth);
[e11e23]338 //const double fraction = fmod(start,binwidth);
[1dd419]339 start = offset + binwidth*integral;
340 return start;
341}
342
[45f4f96]343double Histogram::area() const
344{
345 double area = 0.;
346 for(Bins_t::const_iterator iter = bins.begin(); iter != bins.end(); ++iter)
347 area += iter->second*binwidth;
348 return area;
349}
[beb16e]350
351template<> Histogram ZeroInstance<Histogram>()
352{
353 Histogram returnvalue;
354 return returnvalue;
355}
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