source: GTP/trunk/Lib/Vis/Preprocessing/src/CombinedPreprocessor.cpp @ 1966

Revision 1966, 3.3 KB checked in by bittner, 18 years ago (diff)

samplign preprocessor updates, merge

  • Property svn:executable set to *
Line 
1#include "SceneGraph.h"
2#include "KdTree.h"
3#include "X3dExporter.h"
4#include "Environment.h"
5#include "Polygon3.h"
6#include "VssRay.h"
7#include "RssTree.h"
8#include "ViewCellsManager.h"
9#include "RenderSimulator.h"
10#include "GlRenderer.h"
11#include "SamplingStrategy.h"
12#include "PreprocessorThread.h"
13#include "CombinedPreprocessor.h"
14
15
16namespace GtpVisibilityPreprocessor {
17
18const bool pruneInvalidRays = true;
19
20 
21  CombinedPreprocessor::CombinedPreprocessor():
22        Preprocessor()
23  {
24        // this should increase coherence of the samples
25//      Environment::GetSingleton()->GetIntValue("RssPreprocessor.vssSamples", mTotalSamples);
26//      Environment::GetSingleton()->GetIntValue("RssPreprocessor.samplesPerPass", mSamplesPerPass);
27//      Environment::GetSingleton()->GetIntValue("RssPreprocessor.vssSamplesPerPass",
28//                                                                                       mSamplesPerEvaluation);
29       
30       
31  }
32 
33
34bool
35CombinedPreprocessor::ComputeVisibility()
36{
37 
38  Debug << "Preprocessor type: combined" << endl;
39  cout<<"Combined Preprocessor started\n"<<flush;
40 
41  // if not already loaded, construct view cells from file
42  if (!mLoadViewCells) {
43        // construct view cells using it's own set of samples
44        mViewCellsManager->Construct(this);
45       
46        //-- several visualizations and statistics
47        Debug << "view cells construction finished: " << endl;
48        mViewCellsManager->PrintStatistics(Debug);
49  }
50 
51 
52  // now decode distribution string
53  char buff[1024];
54  Environment::GetSingleton()->GetStringValue("RssPreprocessor.distributions",
55                                                                                          buff);
56 
57
58  mMixtureDistribution = new MixtureDistribution(*this);
59  mMixtureDistribution->Construct(buff);
60 
61  SimpleRayContainer rays;
62  VssRayContainer vssRays;
63
64  int lastEvaluation = 0;
65  int totalVssRays = 0;
66  mPass = 0;
67 
68  long startTime = GetTime();
69  for (int i=0; i < mTotalSamples; i += mSamplesPerPass, mPass++) {
70
71        cout<<"Progress : "<<(100.0f*i)/mTotalSamples<<"%"<<endl;
72        rays.clear();
73        vssRays.clear();
74       
75        mMixtureDistribution->GenerateSamples(mSamplesPerPass, rays);
76       
77        CastRays(rays, vssRays, true, pruneInvalidRays);
78        totalVssRays += (int)vssRays.size();
79
80        mMixtureDistribution->ComputeContributions(vssRays);
81
82        if (mExportRays) {
83          Debug<<"Exporting rays..."<<endl<<flush;
84          char filename[256];
85
86          VssRayContainer contributingRays;
87          vssRays.GetContributingRays(contributingRays, 0);
88          sprintf(filename, "rss-crays-%04d.x3d", mPass);
89          ExportRays(filename, contributingRays, mExportNumRays);
90
91          sprintf(filename, "rss-rays-i%04d.x3d", mPass);
92          ExportRays(filename, vssRays, mExportNumRays);
93
94          Debug<<"done."<<endl<<flush;
95        }
96
97        mMixtureDistribution->UpdateDistributions(vssRays);
98       
99        if (i - lastEvaluation >= mSamplesPerEvaluation) {
100          mViewCellsManager->PrintPvsStatistics(mStats);
101          mStats <<
102                "#Pass\n" <<mPass<<endl<<
103                "#Time\n" << TimeDiff(startTime, GetTime())<<endl<<
104                "#TotalSamples\n" <<i<<endl<<
105                "#RssSamples\n" <<totalVssRays<<endl;
106          lastEvaluation = i;
107        }
108
109        cerr<<"deleting rays"<<endl;
110        //clear all unreferenced rays
111        for (int j=0; j < vssRays.size(); j++) {
112          if (vssRays[j]->RefCount() == 0)
113                delete vssRays[j];
114        }
115        cerr<<"done."<<endl;
116         
117       
118        //      if (!mMixtureDistribution->RequiresRays())
119        //        CLEAR_CONTAINER(vssRays);
120
121        if (renderer) {
122          ComputeRenderError();
123        }
124       
125  }
126
127  EvalViewCellHistogram();
128
129  return true;
130}
131
132}
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