revert changes to make code generic
parent
5e86f7ee51
commit
1c14a56f5d
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@ -55,17 +55,15 @@ DiscreteConditional::DiscreteConditional(size_t nrFrontals,
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: BaseFactor(keys, potentials), BaseConditional(nrFrontals) {}
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/* ************************************************************************** */
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DiscreteConditional::DiscreteConditional(
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const DiscreteFactor::shared_ptr& joint,
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const DiscreteFactor::shared_ptr& marginal)
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: BaseFactor(*std::dynamic_pointer_cast<DecisionTreeFactor>(
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joint->operator/(marginal))),
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BaseConditional(joint->size() - marginal->size()) {}
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DiscreteConditional::DiscreteConditional(const DecisionTreeFactor& joint,
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const DecisionTreeFactor& marginal)
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: BaseFactor(joint / marginal),
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BaseConditional(joint.size() - marginal.size()) {}
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/* ************************************************************************** */
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DiscreteConditional::DiscreteConditional(
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const DiscreteFactor::shared_ptr& joint,
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const DiscreteFactor::shared_ptr& marginal, const Ordering& orderedKeys)
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DiscreteConditional::DiscreteConditional(const DecisionTreeFactor& joint,
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const DecisionTreeFactor& marginal,
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const Ordering& orderedKeys)
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: DiscreteConditional(joint, marginal) {
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keys_.clear();
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keys_.insert(keys_.end(), orderedKeys.begin(), orderedKeys.end());
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@ -126,10 +126,9 @@ class GTSAM_EXPORT DiscreteFactor : public Factor {
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/// Compute error for each assignment and return as a tree
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virtual AlgebraicDecisionTree<Key> errorTree() const;
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/// Multiply in a DiscreteFactor and return the result as
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/// DiscreteFactor
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virtual DiscreteFactor::shared_ptr operator*(
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const DiscreteFactor::shared_ptr&) const = 0;
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/// Multiply in a DecisionTreeFactor and return the result as
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/// DecisionTreeFactor
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virtual DecisionTreeFactor operator*(const DecisionTreeFactor&) const = 0;
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virtual DecisionTreeFactor toDecisionTreeFactor() const = 0;
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@ -145,9 +144,6 @@ class GTSAM_EXPORT DiscreteFactor : public Factor {
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/// Create new factor by maximizing over all values with the same separator.
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virtual DiscreteFactor::shared_ptr max(const Ordering& keys) const = 0;
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/// divide by factor f (safely)
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virtual DiscreteFactor::shared_ptr operator/(
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const DiscreteFactor::shared_ptr& f) const = 0;
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/**
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* Get the number of non-zero values contained in this factor.
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@ -171,13 +171,8 @@ double TableFactor::error(const HybridValues& values) const {
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}
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/* ************************************************************************ */
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DiscreteFactor::shared_ptr TableFactor::operator*(
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const DiscreteFactor::shared_ptr& f) const {
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if (auto derived = std::dynamic_pointer_cast<TableFactor>(f)) {
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return std::make_shared<TableFactor>(this->operator*(*derived));
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} else {
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throw std::runtime_error("Cannot convert DiscreteFactor to TableFactor");
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}
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DecisionTreeFactor TableFactor::operator*(const DecisionTreeFactor& f) const {
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return toDecisionTreeFactor() * f;
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}
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/* ************************************************************************ */
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@ -161,9 +161,8 @@ class GTSAM_EXPORT TableFactor : public DiscreteFactor {
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return apply(f, Ring::mul);
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};
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/// multiply with DiscreteFactor
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DiscreteFactor::shared_ptr operator*(
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const DiscreteFactor::shared_ptr& f) const override;
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/// multiply with DecisionTreeFactor
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DecisionTreeFactor operator*(const DecisionTreeFactor& f) const override;
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static double safe_div(const double& a, const double& b);
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@ -172,15 +171,6 @@ class GTSAM_EXPORT TableFactor : public DiscreteFactor {
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return apply(f, safe_div);
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}
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/// divide by factor f (pointer version)
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DiscreteFactor::shared_ptr operator/(
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const DiscreteFactor::shared_ptr& f) const override {
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if (auto derived = std::dynamic_pointer_cast<TableFactor>(f)) {
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return std::make_shared<TableFactor>(apply(*derived, safe_div));
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} else {
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throw std::runtime_error("Cannot convert DiscreteFactor to Table Factor");
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}
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}
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/// Convert into a decisiontree
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DecisionTreeFactor toDecisionTreeFactor() const override;
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