Update inverted index for HashBow
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@ -9,6 +9,7 @@
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#include <basalt/utils/common_types.h>
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#include <tbb/concurrent_unordered_map.h>
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#include <tbb/concurrent_vector.h>
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namespace basalt {
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@ -61,8 +62,8 @@ class HashBow {
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inline void add_to_database(const TimeCamId& tcid,
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const HashBowVector& bow_vector) {
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for (const auto& kv : bow_vector) {
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std::pair<TimeCamId, double> p = std::make_pair(tcid, kv.second);
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inverted_index.emplace(kv.first, p);
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// std::pair<TimeCamId, double> p = std::make_pair(tcid, kv.second);
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inverted_index[kv.first].emplace_back(tcid, kv.second);
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}
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}
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@ -75,14 +76,15 @@ class HashBow {
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std::unordered_map<TimeCamId, double, tbb::tbb_hash<TimeCamId>> scores;
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for (const auto& kv : bow_vector) {
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const auto range_it = inverted_index.equal_range(kv.first);
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const auto range_it = inverted_index.find(kv.first);
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for (auto it = range_it.first; it != range_it.second; ++it) {
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// if there is a maximum query time select only the frames that have
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// timestamp below max_t_ns
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if (!max_t_ns || it->second.first.frame_id < (*max_t_ns))
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scores[it->second.first] += kv.second * it->second.second;
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}
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if (range_it != inverted_index.end())
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for (const auto& v : range_it->second) {
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// if there is a maximum query time select only the frames that have
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// timestamp below max_t_ns
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if (!max_t_ns || v.first.frame_id < (*max_t_ns))
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scores[v.first] += kv.second * v.second;
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}
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}
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results.reserve(scores.size());
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@ -152,8 +154,9 @@ class HashBow {
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size_t num_bits;
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tbb::concurrent_unordered_multimap<FeatureHash, std::pair<TimeCamId, double>,
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std::hash<FeatureHash>>
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tbb::concurrent_unordered_map<
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FeatureHash, tbb::concurrent_vector<std::pair<TimeCamId, double>>,
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std::hash<FeatureHash>>
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inverted_index;
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};
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