obu-firmware builds against the vanetza-idf C-ITS library, which until now came from the colleague's microbu-esp32c5 tree beside the repository and was not tracked here, so a clone of this repository could not build the firmware it ships. The library alone is now part of obu-firmware, as obu-firmware/external/vanetza-idf: their external/vanetza-idf at commit cf4b99f, unchanged (9775 files; see its PROVENANCE.md). CMake takes it from there by default; -DVANETZA_IDF_DIR still points the build elsewhere. The rest of the colleague's tree (their own VAM firmware, PKI tooling, station-link Python tools, the V2X2MAP bridge) stays out of this repository and gitignored; nothing is pushed to their repository. NOTES.md, docs/06, TODO.md and the pcap verifier's usage line point at the new location.
102 lines
2.5 KiB
C++
102 lines
2.5 KiB
C++
#ifndef LRU_CACHE_HPP_CII58WXX
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#define LRU_CACHE_HPP_CII58WXX
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#include <cassert>
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#include <functional>
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#include <list>
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#include <unordered_map>
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namespace vanetza
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{
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/**
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* \brief Least-Recently-Used cache
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*
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* If an entry is accessed which is not yet cached, it will created
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* by invocation of the generator function.
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*
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* \tparam KEY key type
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* \tparam VALUE value_type, i.e. type of cache entries
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* \tparam GENERATOR generator function for creating values from key
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*/
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template<typename KEY, typename VALUE, typename GENERATOR = std::function<VALUE(const KEY&)>>
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class LruCache
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{
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public:
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using generator = GENERATOR;
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using key_type = KEY;
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using value_type = VALUE;
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/**
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* \param g user-defined generator function
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* \param capacity maximum number of cache entries
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*/
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LruCache(generator g, std::size_t capacity) :
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m_generator(g),
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m_capacity(capacity)
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{
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}
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/**
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* \brief Access a cache entry
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*
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* If cache entry does not yet exist it will be created.
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* The least recently accessed entry might get dropped.
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*
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* \param key identifier of cache entry
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* \return cached value
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*/
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value_type& operator[](const key_type& key)
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{
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auto found = m_cache.find(key);
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if (found == m_cache.end()) {
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return add(key);
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} else {
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return refresh(found);
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}
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}
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private:
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using list_type = std::list<key_type>;
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using entry_type = std::pair<value_type, typename list_type::iterator>;
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using map_type = std::unordered_map<key_type, entry_type>;
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value_type& add(const key_type& k)
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{
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if (m_cache.size() >= m_capacity) {
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remove();
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}
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m_index.emplace_front(k);
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entry_type entry = std::make_pair(m_generator(k), m_index.begin());
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auto insertion = m_cache.insert(std::make_pair(k, std::move(entry)));
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assert(insertion.second == true);
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return insertion.first->second.first;
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}
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value_type& refresh(typename map_type::iterator found)
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{
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m_index.splice(m_index.begin(), m_index, found->second.second);
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assert(m_index.begin() == found->second.second);
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return found->second.first;
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}
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void remove()
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{
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if (!m_index.empty()) {
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m_cache.erase(m_index.back());
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m_index.pop_back();
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}
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}
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generator m_generator;
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std::size_t m_capacity;
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list_type m_index;
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map_type m_cache;
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};
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} // namespace vanetza
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#endif /* LRU_CACHE_HPP_CII58WXX */
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