Graph optimization: fixed stop error criterion for g2o and gtsam, previous optimized poses are now used as guess for the optimized graph

This commit is contained in:
matlabbe
2015-11-18 19:40:46 -05:00
parent 1e5bcfded8
commit 10d683a38e
6 changed files with 192 additions and 63 deletions

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@@ -82,7 +82,9 @@ public:
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & constraints, const std::multimap<int, Link> & constraints,
std::list<std::map<int, Transform> > * intermediateGraphes = 0); std::list<std::map<int, Transform> > * intermediateGraphes = 0,
double * finalError = 0,
int * iterationsDone = 0);
virtual std::map<int, Transform> optimizeBA( virtual std::map<int, Transform> optimizeBA(
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
@@ -137,7 +139,9 @@ public:
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes = 0); std::list<std::map<int, Transform> > * intermediateGraphes = 0,
double * finalError = 0,
int * iterationsDone = 0);
}; };
class RTABMAP_EXP G2OOptimizer : public Optimizer class RTABMAP_EXP G2OOptimizer : public Optimizer
@@ -169,7 +173,9 @@ public:
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes = 0); std::list<std::map<int, Transform> > * intermediateGraphes = 0,
double * finalError = 0,
int * iterationsDone = 0);
}; };
class RTABMAP_EXP GTSAMOptimizer : public Optimizer class RTABMAP_EXP GTSAMOptimizer : public Optimizer
@@ -196,7 +202,9 @@ public:
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes = 0); std::list<std::map<int, Transform> > * intermediateGraphes = 0,
double * finalError = 0,
int * iterationsDone = 0);
}; };
class RTABMAP_EXP CVSBAOptimizer : public Optimizer class RTABMAP_EXP CVSBAOptimizer : public Optimizer

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@@ -153,12 +153,17 @@ private:
void optimizeCurrentMap(int id, void optimizeCurrentMap(int id,
bool lookInDatabase, bool lookInDatabase,
std::map<int, Transform> & optimizedPoses, std::map<int, Transform> & optimizedPoses,
std::multimap<int, Link> * constraints = 0) const; std::multimap<int, Link> * constraints = 0,
double * error = 0,
int * iterationsDone = 0) const;
std::map<int, Transform> optimizeGraph( std::map<int, Transform> optimizeGraph(
int fromId, int fromId,
const std::set<int> & ids, const std::set<int> & ids,
const std::map<int, Transform> & guessPoses,
bool lookInDatabase, bool lookInDatabase,
std::multimap<int, Link> * constraints = 0) const; std::multimap<int, Link> * constraints = 0,
double * error = 0,
int * iterationsDone = 0) const;
void updateGoalIndex(); void updateGoalIndex();
bool computePath(int targetNode, std::map<int, Transform> nodes, const std::multimap<int, rtabmap::Link> & constraints); bool computePath(int targetNode, std::map<int, Transform> nodes, const std::multimap<int, rtabmap::Link> & constraints);

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@@ -63,6 +63,8 @@ class RTABMAP_EXP Statistics
RTABMAP_STATS(Loop, Visual_inliers,); RTABMAP_STATS(Loop, Visual_inliers,);
RTABMAP_STATS(Loop, Last_id,); RTABMAP_STATS(Loop, Last_id,);
RTABMAP_STATS(Loop, Optimization_max_error, m); RTABMAP_STATS(Loop, Optimization_max_error, m);
RTABMAP_STATS(Loop, Optimization_error, );
RTABMAP_STATS(Loop, Optimization_iterations, );
RTABMAP_STATS(LocalLoop, Time_closures,); RTABMAP_STATS(LocalLoop, Time_closures,);
RTABMAP_STATS(LocalLoop, Space_last_closure_id,); RTABMAP_STATS(LocalLoop, Space_last_closure_id,);

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@@ -201,7 +201,9 @@ std::map<int, Transform> Optimizer::optimize(
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & constraints, const std::multimap<int, Link> & constraints,
std::list<std::map<int, Transform> > * intermediateGraphes) std::list<std::map<int, Transform> > * intermediateGraphes,
double * finalError,
int * iterationsDone)
{ {
UERROR("Optimizer %d doesn't implement optimize() method.", (int)this->type()); UERROR("Optimizer %d doesn't implement optimize() method.", (int)this->type());
return std::map<int, Transform>(); return std::map<int, Transform>();
@@ -291,7 +293,9 @@ std::map<int, Transform> TOROOptimizer::optimize(
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes) // contains poses after tree init to last one before the end std::list<std::map<int, Transform> > * intermediateGraphes, // contains poses after tree init to last one before the end
double * finalError,
int * iterationsDone)
{ {
std::map<int, Transform> optimizedPoses; std::map<int, Transform> optimizedPoses;
UDEBUG("Optimizing graph (pose=%d constraints=%d)...", (int)poses.size(), (int)edgeConstraints.size()); UDEBUG("Optimizing graph (pose=%d constraints=%d)...", (int)poses.size(), (int)edgeConstraints.size());
@@ -403,8 +407,8 @@ std::map<int, Transform> TOROOptimizer::optimize(
if(isSlam2d()) if(isSlam2d())
{ {
pg2.buildMST(rootId); // pg.buildSimpleTree(); pg2.buildMST(rootId); // pg.buildSimpleTree();
UDEBUG("initializeOnTree()"); //UDEBUG("initializeOnTree()");
pg2.initializeOnTree(); //pg2.initializeOnTree();
UDEBUG("initializeTreeParameters()"); UDEBUG("initializeTreeParameters()");
pg2.initializeTreeParameters(); pg2.initializeTreeParameters();
UDEBUG("Building TORO tree... (if a crash happens just after this msg, " UDEBUG("Building TORO tree... (if a crash happens just after this msg, "
@@ -414,8 +418,8 @@ std::map<int, Transform> TOROOptimizer::optimize(
else else
{ {
pg3.buildMST(rootId); // pg.buildSimpleTree(); pg3.buildMST(rootId); // pg.buildSimpleTree();
UDEBUG("initializeOnTree()"); //UDEBUG("initializeOnTree()");
pg3.initializeOnTree(); //pg3.initializeOnTree();
UDEBUG("initializeTreeParameters()"); UDEBUG("initializeTreeParameters()");
pg3.initializeTreeParameters(); pg3.initializeTreeParameters();
UDEBUG("Building TORO tree... (if a crash happens just after this msg, " UDEBUG("Building TORO tree... (if a crash happens just after this msg, "
@@ -423,9 +427,9 @@ std::map<int, Transform> TOROOptimizer::optimize(
pg3.initializeOptimization(); pg3.initializeOptimization();
} }
UINFO("Initial error = %f", pg2.error());
UINFO("TORO optimizing begin (iterations=%d)", iterations()); UINFO("TORO optimizing begin (iterations=%d)", iterations());
double lasterror = 0; double lastError = 0;
double errorDelta = 0;
int i=0; int i=0;
UTimer timer; UTimer timer;
for (; i<iterations(); i++) for (; i<iterations(); i++)
@@ -482,15 +486,35 @@ std::map<int, Transform> TOROOptimizer::optimize(
} }
// early stop condition // early stop condition
errorDelta = lasterror - error; double errorDelta = lastError - error;
if(i>0 && errorDelta < this->epsilon()) if(i>0 && errorDelta < this->epsilon())
{ {
UDEBUG("Stop optimizing, not enough improvement (%f < %f)", errorDelta, this->epsilon()); if(errorDelta < 0)
{
UDEBUG("Negative improvement?! Ignore and continue optimizing... (%f < %f)", errorDelta, this->epsilon());
}
else
{
UINFO("Stop optimizing, not enough improvement (%f < %f)", errorDelta, this->epsilon());
break;
}
}
else if(i==0 && error < this->epsilon())
{
UINFO("Stop optimizing, error is already under epsilon (%f < %f)", error, this->epsilon());
break; break;
} }
lasterror = error; lastError = error;
} }
UINFO("TORO optimizing end (%d iterations done, error=%f, time = %f s)", i, errorDelta, timer.ticks()); if(finalError)
{
*finalError = lastError;
}
if(iterationsDone)
{
*iterationsDone = i;
}
UINFO("TORO optimizing end (%d iterations done, error=%f, time = %f s)", i, lastError, timer.ticks());
if(isSlam2d()) if(isSlam2d())
{ {
@@ -713,7 +737,9 @@ std::map<int, Transform> G2OOptimizer::optimize(
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes) std::list<std::map<int, Transform> > * intermediateGraphes,
double * finalError,
int * iterationsDone)
{ {
std::map<int, Transform> optimizedPoses; std::map<int, Transform> optimizedPoses;
#ifdef WITH_G2O #ifdef WITH_G2O
@@ -935,58 +961,81 @@ std::map<int, Transform> G2OOptimizer::optimize(
UINFO("g2o optimizing begin (max iterations=%d, robust=%d)", iterations(), isRobust()?1:0); UINFO("g2o optimizing begin (max iterations=%d, robust=%d)", iterations(), isRobust()?1:0);
int it = 0; int it = 0;
UTimer timer; UTimer timer;
if(intermediateGraphes) double lastError = 0.0;
if(intermediateGraphes || this->epsilon() > 0.0)
{ {
for(int i=0; i<iterations(); ++i) for(int i=0; i<iterations(); ++i)
{ {
if(i > 0) if(intermediateGraphes)
{ {
std::map<int, Transform> tmpPoses; if(i > 0)
if(isSlam2d())
{ {
for(std::map<int, Transform>::const_iterator iter = poses.begin(); iter!=poses.end(); ++iter) std::map<int, Transform> tmpPoses;
if(isSlam2d())
{ {
const g2o::VertexSE2* v = (const g2o::VertexSE2*)optimizer.vertex(iter->first); for(std::map<int, Transform>::const_iterator iter = poses.begin(); iter!=poses.end(); ++iter)
if(v)
{ {
float roll, pitch, yaw; const g2o::VertexSE2* v = (const g2o::VertexSE2*)optimizer.vertex(iter->first);
iter->second.getEulerAngles(roll, pitch, yaw); if(v)
Transform t(v->estimate().translation()[0], v->estimate().translation()[1], iter->second.z(), roll, pitch, v->estimate().rotation().angle()); {
tmpPoses.insert(std::pair<int, Transform>(iter->first, t)); float roll, pitch, yaw;
UASSERT_MSG(!t.isNull(), uFormat("Optimized pose %d is null!?!?", iter->first).c_str()); iter->second.getEulerAngles(roll, pitch, yaw);
} Transform t(v->estimate().translation()[0], v->estimate().translation()[1], iter->second.z(), roll, pitch, v->estimate().rotation().angle());
else tmpPoses.insert(std::pair<int, Transform>(iter->first, t));
{ UASSERT_MSG(!t.isNull(), uFormat("Optimized pose %d is null!?!?", iter->first).c_str());
UERROR("Vertex %d not found!?", iter->first); }
else
{
UERROR("Vertex %d not found!?", iter->first);
}
} }
} }
} else
else
{
for(std::map<int, Transform>::const_iterator iter = poses.begin(); iter!=poses.end(); ++iter)
{ {
const g2o::VertexSE3* v = (const g2o::VertexSE3*)optimizer.vertex(iter->first); for(std::map<int, Transform>::const_iterator iter = poses.begin(); iter!=poses.end(); ++iter)
if(v)
{ {
Transform t = Transform::fromEigen3d(v->estimate()); const g2o::VertexSE3* v = (const g2o::VertexSE3*)optimizer.vertex(iter->first);
tmpPoses.insert(std::pair<int, Transform>(iter->first, t)); if(v)
UASSERT_MSG(!t.isNull(), uFormat("Optimized pose %d is null!?!?", iter->first).c_str()); {
} Transform t = Transform::fromEigen3d(v->estimate());
else tmpPoses.insert(std::pair<int, Transform>(iter->first, t));
{ UASSERT_MSG(!t.isNull(), uFormat("Optimized pose %d is null!?!?", iter->first).c_str());
UERROR("Vertex %d not found!?", iter->first); }
else
{
UERROR("Vertex %d not found!?", iter->first);
}
} }
} }
intermediateGraphes->push_back(tmpPoses);
} }
intermediateGraphes->push_back(tmpPoses);
} }
it += optimizer.optimize(1); it += optimizer.optimize(1);
if(ULogger::level() == ULogger::kDebug)
// early stop condition
optimizer.computeActiveErrors();
double chi2 = optimizer.activeRobustChi2();
UDEBUG("iteration %d: %d nodes, %d edges, chi2: %f", i, (int)optimizer.vertices().size(), (int)optimizer.edges().size(), chi2);
double errorDelta = lastError - chi2;
if(i>0 && errorDelta < this->epsilon())
{ {
optimizer.computeActiveErrors(); if(errorDelta < 0)
UDEBUG("iteration %d: %d nodes, %d edges, chi2: %f", i, (int)optimizer.vertices().size(), (int)optimizer.edges().size(), optimizer.activeRobustChi2()); {
UDEBUG("Negative improvement?! Ignore and continue optimizing... (%f < %f)", errorDelta, this->epsilon());
}
else
{
UINFO("Stop optimizing, not enough improvement (%f < %f)", errorDelta, this->epsilon());
break;
}
} }
else if(i==0 && chi2 < this->epsilon())
{
UINFO("Stop optimizing, error is already under epsilon (%f < %f)", chi2, this->epsilon());
break;
}
lastError = chi2;
} }
} }
else else
@@ -995,6 +1044,14 @@ std::map<int, Transform> G2OOptimizer::optimize(
optimizer.computeActiveErrors(); optimizer.computeActiveErrors();
UDEBUG("%d nodes, %d edges, chi2: %f", (int)optimizer.vertices().size(), (int)optimizer.edges().size(), optimizer.activeRobustChi2()); UDEBUG("%d nodes, %d edges, chi2: %f", (int)optimizer.vertices().size(), (int)optimizer.edges().size(), optimizer.activeRobustChi2());
} }
if(finalError)
{
*finalError = lastError;
}
if(iterationsDone)
{
*iterationsDone = it;
}
UINFO("g2o optimizing end (%d iterations done, error=%f, time = %f s)", it, optimizer.activeRobustChi2(), timer.ticks()); UINFO("g2o optimizing end (%d iterations done, error=%f, time = %f s)", it, optimizer.activeRobustChi2(), timer.ticks());
if(isSlam2d()) if(isSlam2d())
@@ -1163,7 +1220,9 @@ std::map<int, Transform> GTSAMOptimizer::optimize(
int rootId, int rootId,
const std::map<int, Transform> & poses, const std::map<int, Transform> & poses,
const std::multimap<int, Link> & edgeConstraints, const std::multimap<int, Link> & edgeConstraints,
std::list<std::map<int, Transform> > * intermediateGraphes) std::list<std::map<int, Transform> > * intermediateGraphes,
double * finalError,
int * iterationsDone)
{ {
std::map<int, Transform> optimizedPoses; std::map<int, Transform> optimizedPoses;
#ifdef WITH_GTSAM #ifdef WITH_GTSAM
@@ -1303,6 +1362,8 @@ std::map<int, Transform> GTSAMOptimizer::optimize(
UINFO("GTSAM optimizing begin (max iterations=%d, robust=%d)", iterations(), isRobust()?1:0); UINFO("GTSAM optimizing begin (max iterations=%d, robust=%d)", iterations(), isRobust()?1:0);
UTimer timer; UTimer timer;
int it = 0;
double lastError = 0.0;
for(int i=0; i<iterations(); ++i) for(int i=0; i<iterations(); ++i)
{ {
if(intermediateGraphes && i > 0) if(intermediateGraphes && i > 0)
@@ -1329,17 +1390,44 @@ std::map<int, Transform> GTSAMOptimizer::optimize(
try try
{ {
optimizer.iterate(); optimizer.iterate();
++it;
} }
catch(gtsam::IndeterminantLinearSystemException & e) catch(gtsam::IndeterminantLinearSystemException & e)
{ {
UERROR("GTSAM exception catched: %s", e.what()); UERROR("GTSAM exception catched: %s", e.what());
return optimizedPoses; return optimizedPoses;
} }
UDEBUG("iteration %d error =%f", i+1, optimizer.error());
if(optimizer.error() < epsilon()) // early stop condition
double error = optimizer.error();
UDEBUG("iteration %d error =%f", i+1, error);
double errorDelta = lastError - error;
if(i>0 && errorDelta < this->epsilon())
{ {
if(errorDelta < 0)
{
UDEBUG("Negative improvement?! Ignore and continue optimizing... (%f < %f)", errorDelta, this->epsilon());
}
else
{
UINFO("Stop optimizing, not enough improvement (%f < %f)", errorDelta, this->epsilon());
break;
}
}
else if(i==0 && error < this->epsilon())
{
UINFO("Stop optimizing, error is already under epsilon (%f < %f)", error, this->epsilon());
break; break;
} }
lastError = error;
}
if(finalError)
{
*finalError = lastError;
}
if(iterationsDone)
{
*iterationsDone = it;
} }
UINFO("GTSAM optimizing end (%d iterations done, error=%f (initial=%f final=%f), time=%f s)", optimizer.iterations(), optimizer.error(), graph.error(initialEstimate), graph.error(optimizer.values()), timer.ticks()); UINFO("GTSAM optimizing end (%d iterations done, error=%f (initial=%f final=%f), time=%f s)", optimizer.iterations(), optimizer.error(), graph.error(initialEstimate), graph.error(optimizer.values()), timer.ticks());

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@@ -2023,7 +2023,7 @@ bool Rtabmap::process(
if(_localPathOdomPosesUsed) if(_localPathOdomPosesUsed)
{ {
//optimize the path's poses locally //optimize the path's poses locally
path = optimizeGraph(nearestId, uKeysSet(path), false); path = optimizeGraph(nearestId, uKeysSet(path), std::map<int, Transform>(), false);
// transform local poses in optimized graph referential // transform local poses in optimized graph referential
UASSERT(uContains(path, nearestId)); UASSERT(uContains(path, nearestId));
Transform t = _optimizedPoses.at(nearestId) * path.at(nearestId).inverse(); Transform t = _optimizedPoses.at(nearestId) * path.at(nearestId).inverse();
@@ -2148,6 +2148,8 @@ bool Rtabmap::process(
// Optimize map graph // Optimize map graph
//============================================================ //============================================================
float maxLinearError = 0.0f; float maxLinearError = 0.0f;
double optimizationError = 0.0;
int optimizationIterations = 0;
if(_rgbdSlamMode && if(_rgbdSlamMode &&
(_loopClosureHypothesis.first>0 || (_loopClosureHypothesis.first>0 ||
lastLocalSpaceClosureId>0 || // can be different map of the current one lastLocalSpaceClosureId>0 || // can be different map of the current one
@@ -2198,7 +2200,7 @@ bool Rtabmap::process(
UINFO("Update map correction"); UINFO("Update map correction");
std::map<int, Transform> poses = _optimizedPoses; std::map<int, Transform> poses = _optimizedPoses;
std::multimap<int, Link> constraints; std::multimap<int, Link> constraints;
optimizeCurrentMap(signature->id(), false, poses, &constraints); optimizeCurrentMap(signature->id(), false, poses, &constraints, &optimizationError, &optimizationIterations);
UASSERT(poses.find(signature->id()) != poses.end()); UASSERT(poses.find(signature->id()) != poses.end());
// Check added loop closures have broken the graph // Check added loop closures have broken the graph
@@ -2322,6 +2324,8 @@ bool Rtabmap::process(
statistics_.addStatistic(Statistics::kLoopVisual_inliers(), loopClosureVisualInliers); statistics_.addStatistic(Statistics::kLoopVisual_inliers(), loopClosureVisualInliers);
statistics_.addStatistic(Statistics::kLoopLast_id(), _memory->getLastGlobalLoopClosureId()); statistics_.addStatistic(Statistics::kLoopLast_id(), _memory->getLastGlobalLoopClosureId());
statistics_.addStatistic(Statistics::kLoopOptimization_max_error(), maxLinearError); statistics_.addStatistic(Statistics::kLoopOptimization_max_error(), maxLinearError);
statistics_.addStatistic(Statistics::kLoopOptimization_error(), optimizationError);
statistics_.addStatistic(Statistics::kLoopOptimization_iterations(), optimizationIterations);
statistics_.addStatistic(Statistics::kLocalLoopTime_closures(), localLoopClosuresInTimeFound); statistics_.addStatistic(Statistics::kLocalLoopTime_closures(), localLoopClosuresInTimeFound);
statistics_.addStatistic(Statistics::kLocalLoopSpace_closures_added_visually(), localSpaceClosuresAddedVisually); statistics_.addStatistic(Statistics::kLocalLoopSpace_closures_added_visually(), localSpaceClosuresAddedVisually);
@@ -2910,7 +2914,9 @@ void Rtabmap::optimizeCurrentMap(
int id, int id,
bool lookInDatabase, bool lookInDatabase,
std::map<int, Transform> & optimizedPoses, std::map<int, Transform> & optimizedPoses,
std::multimap<int, Link> * constraints) const std::multimap<int, Link> * constraints,
double * error,
int * iterationsDone) const
{ {
//Optimize the map //Optimize the map
UINFO("Optimize map: around location %d", id); UINFO("Optimize map: around location %d", id);
@@ -2924,7 +2930,7 @@ void Rtabmap::optimizeCurrentMap(
} }
UINFO("get %d ids time %f s", (int)ids.size(), timer.ticks()); UINFO("get %d ids time %f s", (int)ids.size(), timer.ticks());
std::map<int, Transform> poses = Rtabmap::optimizeGraph(id, uKeysSet(ids), lookInDatabase, constraints); std::map<int, Transform> poses = Rtabmap::optimizeGraph(id, uKeysSet(ids), optimizedPoses, lookInDatabase, constraints, error, iterationsDone);
UINFO("optimize time %f s", timer.ticks()); UINFO("optimize time %f s", timer.ticks());
if(poses.size()) if(poses.size())
@@ -2947,8 +2953,11 @@ void Rtabmap::optimizeCurrentMap(
std::map<int, Transform> Rtabmap::optimizeGraph( std::map<int, Transform> Rtabmap::optimizeGraph(
int fromId, int fromId,
const std::set<int> & ids, const std::set<int> & ids,
const std::map<int, Transform> & guessPoses,
bool lookInDatabase, bool lookInDatabase,
std::multimap<int, Link> * constraints) const std::multimap<int, Link> * constraints,
double * error,
int * iterationsDone) const
{ {
UTimer timer; UTimer timer;
std::map<int, Transform> optimizedPoses; std::map<int, Transform> optimizedPoses;
@@ -2958,6 +2967,19 @@ std::map<int, Transform> Rtabmap::optimizeGraph(
_memory->getMetricConstraints(ids, poses, edgeConstraints, lookInDatabase); _memory->getMetricConstraints(ids, poses, edgeConstraints, lookInDatabase);
UINFO("get constraints (ids=%d, %d poses, %d edges) time %f s", (int)ids.size(), (int)poses.size(), (int)edgeConstraints.size(), timer.ticks()); UINFO("get constraints (ids=%d, %d poses, %d edges) time %f s", (int)ids.size(), (int)poses.size(), (int)edgeConstraints.size(), timer.ticks());
// Apply guess poses (if some)
if(_graphOptimizer->iterations() > 0)
{
for(std::map<int, Transform>::const_iterator iter=guessPoses.begin(); iter!=guessPoses.end(); ++iter)
{
std::map<int, Transform>::iterator foundPose = poses.find(iter->first);
if(foundPose!=poses.end())
{
foundPose->second = iter->second;
}
}
}
// The constraints must be all already connected! Only check in debug // The constraints must be all already connected! Only check in debug
if(ULogger::level() == ULogger::kDebug) if(ULogger::level() == ULogger::kDebug)
{ {
@@ -3006,7 +3028,7 @@ std::map<int, Transform> Rtabmap::optimizeGraph(
} }
else else
{ {
optimizedPoses = _graphOptimizer->optimize(fromId, poses, edgeConstraints); optimizedPoses = _graphOptimizer->optimize(fromId, poses, edgeConstraints, 0, error, iterationsDone);
} }
UINFO("Optimization time %f s", timer.ticks()); UINFO("Optimization time %f s", timer.ticks());
@@ -3151,6 +3173,7 @@ void Rtabmap::get3DMap(
{ {
if(optimized) if(optimized)
{ {
poses = _optimizedPoses; // guess
this->optimizeCurrentMap(_memory->getLastWorkingSignature()->id(), global, poses, &constraints); this->optimizeCurrentMap(_memory->getLastWorkingSignature()->id(), global, poses, &constraints);
} }
else else
@@ -3226,6 +3249,7 @@ void Rtabmap::getGraph(
{ {
if(optimized) if(optimized)
{ {
poses = _optimizedPoses; // guess
this->optimizeCurrentMap(_memory->getLastWorkingSignature()->id(), global, poses, &constraints); this->optimizeCurrentMap(_memory->getLastWorkingSignature()->id(), global, poses, &constraints);
} }
else else

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@@ -67,7 +67,8 @@ struct ParameterPropagator{
} }
}; };
TreeOptimizer2::TreeOptimizer2(){ TreeOptimizer2::TreeOptimizer2():
iteration(1){
sortedEdges=0; sortedEdges=0;
} }
@@ -280,7 +281,8 @@ void TreeOptimizer2::iterate(TreePoseGraph2::EdgeSet* eset){
if (eset){ if (eset){
sortedEdges=eset; sortedEdges=eset;
} }
computePreconditioner(); if (iteration==1)
computePreconditioner();
propagateErrors(); propagateErrors();
sortedEdges=temp; sortedEdges=temp;
} }