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rtabmap/corelib/test/test_registration.cpp
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2026-08-06 13:32:20 -07:00
#include <gtest/gtest.h>
#include <rtabmap/core/Registration.h>
#include <rtabmap/core/Parameters.h>
#include <opencv2/core.hpp>
using namespace rtabmap;
namespace {
class MockRegistration : public Registration
{
public:
explicit MockRegistration(const ParametersMap & parameters = ParametersMap(), Registration * child = 0) :
Registration(parameters, child)
{
}
mutable int implCallCount = 0;
mutable std::vector<Transform> guessHistory;
Transform resultTransform = Transform::getIdentity();
bool failRegistration = false;
bool imageRequiredFlag = false;
bool scanRequiredFlag = false;
bool userDataRequiredFlag = false;
bool canUseGuessFlag = false;
int minVisualValue = 0;
float minGeometryValue = 0.f;
protected:
Transform computeTransformationImpl(
Signature & /*from*/,
Signature & /*to*/,
Transform guess,
RegistrationInfo & /*info*/) const override
{
++implCallCount;
guessHistory.push_back(guess);
if(failRegistration)
{
return Transform();
}
return resultTransform;
}
bool isImageRequiredImpl() const override { return imageRequiredFlag; }
bool isScanRequiredImpl() const override { return scanRequiredFlag; }
bool isUserDataRequiredImpl() const override { return userDataRequiredFlag; }
bool canUseGuessImpl() const override { return canUseGuessFlag; }
int getMinVisualCorrespondencesImpl() const override { return minVisualValue; }
float getMinGeometryCorrespondencesRatioImpl() const override { return minGeometryValue; }
};
static ParametersMap registrationTestParams()
{
ParametersMap params;
params.insert(ParametersPair(Parameters::kRegRepeatOnce(), "false"));
params.insert(ParametersPair(Parameters::kRegForce3DoF(), "false"));
return params;
}
} // namespace
TEST(RegistrationTest, ConstructorParsesParameters)
{
ParametersMap params;
params[Parameters::kRegRepeatOnce()] = "true";
params[Parameters::kRegForce3DoF()] = "true";
MockRegistration reg(params);
EXPECT_TRUE(reg.repeatOnce());
EXPECT_TRUE(reg.force3DoF());
}
TEST(RegistrationTest, ParseParametersUpdatesFlags)
{
MockRegistration reg(registrationTestParams());
EXPECT_FALSE(reg.repeatOnce());
EXPECT_FALSE(reg.force3DoF());
ParametersMap update;
update[Parameters::kRegRepeatOnce()] = "true";
reg.parseParameters(update);
EXPECT_TRUE(reg.repeatOnce());
EXPECT_FALSE(reg.force3DoF());
}
TEST(RegistrationTest, RequirementFlagsCombineWithChild)
{
MockRegistration * child = new MockRegistration();
child->scanRequiredFlag = true;
MockRegistration parent(registrationTestParams(), child);
EXPECT_FALSE(parent.isImageRequired());
EXPECT_TRUE(parent.isScanRequired());
EXPECT_FALSE(parent.isUserDataRequired());
}
TEST(RegistrationTest, MinCorrespondencesTakeMaximumWithChild)
{
MockRegistration * child = new MockRegistration();
child->minVisualValue = 10;
child->minGeometryValue = 0.5f;
MockRegistration parent(registrationTestParams(), child);
parent.minVisualValue = 5;
parent.minGeometryValue = 0.2f;
EXPECT_EQ(parent.getMinVisualCorrespondences(), 10);
EXPECT_FLOAT_EQ(parent.getMinGeometryCorrespondencesRatio(), 0.5f);
}
TEST(RegistrationTest, CanUseGuessCombinesWithChild)
{
MockRegistration * child = new MockRegistration();
child->canUseGuessFlag = true;
MockRegistration parent(registrationTestParams(), child);
EXPECT_FALSE(parent.canUseGuessFlag);
EXPECT_TRUE(parent.canUseGuess());
}
TEST(RegistrationTest, SetChildRegistrationTakesOwnership)
{
MockRegistration parent(registrationTestParams());
MockRegistration * firstChild = new MockRegistration();
firstChild->minVisualValue = 3;
parent.setChildRegistration(firstChild);
MockRegistration * secondChild = new MockRegistration();
secondChild->minVisualValue = 8;
parent.setChildRegistration(secondChild);
EXPECT_EQ(parent.getMinVisualCorrespondences(), 8);
}
TEST(RegistrationTest, ComputeTransformationCallsImpl)
{
MockRegistration reg(registrationTestParams());
reg.resultTransform = Transform(1.f, 0.f, 0.f, 0.f, 0.f, 0.f);
const Signature from;
const Signature to;
const Transform result = reg.computeTransformation(from, to);
EXPECT_EQ(reg.implCallCount, 1);
EXPECT_FALSE(result.isNull());
EXPECT_NEAR(result.x(), 1.f, 1e-6f);
}
TEST(RegistrationTest, ComputeTransformationChainsChild)
{
MockRegistration * child = new MockRegistration(registrationTestParams());
child->resultTransform = Transform(2.f, 0.f, 0.f, 0.f, 0.f, 0.f);
MockRegistration parent(registrationTestParams(), child);
parent.resultTransform = Transform(1.f, 0.f, 0.f, 0.f, 0.f, 0.f);
const Signature from;
const Signature to;
const Transform result = parent.computeTransformation(from, to);
EXPECT_EQ(parent.implCallCount, 1);
EXPECT_EQ(child->implCallCount, 1);
EXPECT_FALSE(result.isNull());
EXPECT_NEAR(result.x(), 2.f, 1e-6f);
EXPECT_EQ(child->guessHistory.size(), 1u);
EXPECT_NEAR(child->guessHistory[0].x(), 1.f, 1e-6f);
}
TEST(RegistrationTest, ComputeTransformationParentFailsUsesGuessForChild)
{
MockRegistration * child = new MockRegistration(registrationTestParams());
child->resultTransform = Transform(2.f, 0.f, 0.f, 0.f, 0.f, 0.f);
MockRegistration parent(registrationTestParams(), child);
parent.failRegistration = true;
const Signature from;
const Signature to;
const Transform guess(0.5f, 0.f, 0.f, 0.f, 0.f, 0.f);
const Transform result = parent.computeTransformation(from, to, guess);
EXPECT_EQ(parent.implCallCount, 1);
EXPECT_EQ(child->implCallCount, 1);
EXPECT_FALSE(result.isNull());
EXPECT_NEAR(result.x(), 2.f, 1e-6f);
EXPECT_NEAR(child->guessHistory[0].x(), 0.5f, 1e-6f);
}
TEST(RegistrationTest, RepeatOnceRefinesWithFirstResultAsGuess)
{
ParametersMap params = registrationTestParams();
params[Parameters::kRegRepeatOnce()] = "true";
MockRegistration reg(params);
EXPECT_TRUE(reg.repeatOnce());
reg.canUseGuessFlag = true;
reg.resultTransform = Transform(1.f, 0.f, 0.f, 0.f, 0.f, 0.f);
const Signature from;
const Signature to;
Transform nullGuess;
EXPECT_TRUE(nullGuess.isNull());
const Transform result = reg.computeTransformation(from, to, nullGuess);
EXPECT_EQ(reg.implCallCount, 2);
EXPECT_FALSE(result.isNull());
ASSERT_EQ(reg.guessHistory.size(), 2u);
EXPECT_TRUE(reg.guessHistory[0].isNull());
EXPECT_NEAR(reg.guessHistory[1].x(), 1.f, 1e-6f);
}
TEST(RegistrationTest, Force3DoFConstrainsGuessAndResult)
{
ParametersMap params = registrationTestParams();
params[Parameters::kRegForce3DoF()] = "true";
MockRegistration reg(params);
EXPECT_TRUE(reg.force3DoF());
reg.resultTransform = Transform(1.f, 0.f, 2.f, 0.1f, 0.2f, 0.3f);
const Signature from;
const Signature to;
const Transform guess(0.f, 0.f, 5.f, 0.5f, 0.5f, 0.5f);
const Transform result = reg.computeTransformation(from, to, guess);
ASSERT_EQ(reg.guessHistory.size(), 1u);
EXPECT_TRUE(reg.guessHistory[0].is3DoF());
EXPECT_NEAR(reg.guessHistory[0].z(), 0.f, 1e-6f);
EXPECT_TRUE(result.is3DoF());
EXPECT_NEAR(result.z(), 0.f, 1e-6f);
}
TEST(RegistrationTest, CovarianceEpsilonAppliedWhenEmpty)
{
MockRegistration reg(registrationTestParams());
reg.resultTransform = Transform::getIdentity();
const Signature from;
const Signature to;
RegistrationInfo info;
const Transform result = reg.computeTransformation(from, to, Transform::getIdentity(), &info);
EXPECT_FALSE(result.isNull());
ASSERT_FALSE(info.covariance.empty());
EXPECT_EQ(info.covariance.rows, 6);
EXPECT_EQ(info.covariance.cols, 6);
EXPECT_GE(info.covariance.at<double>(0, 0), Registration::COVARIANCE_LINEAR_EPSILON);
EXPECT_GE(info.covariance.at<double>(3, 3), Registration::COVARIANCE_ANGULAR_EPSILON);
EXPECT_GE(info.totalTime, 0.0);
}
TEST(RegistrationTest, ComputeTransformationFromSensorData)
{
MockRegistration reg(registrationTestParams());
reg.resultTransform = Transform(1.f, 0.f, 0.f, 0.f, 0.f, 0.f);
const SensorData from;
const SensorData to;
const Transform result = reg.computeTransformation(from, to);
EXPECT_EQ(reg.implCallCount, 1);
EXPECT_FALSE(result.isNull());
EXPECT_NEAR(result.x(), 1.f, 1e-6f);
}