2022-06-18 10:46:14 +08:00
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#pragma once
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#include "limonp/StringUtil.hpp"
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2022-10-21 11:21:35 +08:00
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#include "segment-trie/segment-trie.h"
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//#include "DictTrie.hpp"
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//#include "SegmentTagged.hpp"
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2022-06-18 10:46:14 +08:00
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namespace cppjieba {
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using namespace limonp;
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static const char* const POS_M = "m";
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static const char* const POS_ENG = "eng";
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static const char* const POS_X = "x";
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class PosTagger {
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public:
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PosTagger() {
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}
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~PosTagger() {
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}
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bool Tag(const string& src, vector<pair<string, string> >& res, const SegmentTagged& segment) const {
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vector<string> CutRes;
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segment.CutToStr(src, CutRes);
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for (vector<string>::iterator itr = CutRes.begin(); itr != CutRes.end(); ++itr) {
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res.push_back(make_pair(*itr, LookupTag(*itr, segment)));
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}
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return !res.empty();
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}
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string LookupTag(const string &str, const SegmentTagged& segment) const {
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const DictTrie * dict = segment.GetDictTrie();
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2022-10-21 11:21:35 +08:00
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assert(dict != nullptr);
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2022-06-18 10:46:14 +08:00
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const auto tmp = dict->Find(str);
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2022-10-21 11:21:35 +08:00
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if (tmp == nullptr || tmp->GetTag().empty()) {
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2022-06-18 10:46:14 +08:00
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RuneStrArray runes;
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if (!DecodeRunesInString(str, runes)) {
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XLOG(ERROR) << "Decode failed.";
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return POS_X;
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}
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return SpecialRule(runes);
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} else {
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return tmp->GetTag();
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}
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}
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private:
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const char* SpecialRule(const RuneStrArray& unicode) const {
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size_t m = 0;
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size_t eng = 0;
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for (size_t i = 0; i < unicode.size() && eng < unicode.size() / 2; i++) {
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if (unicode[i].rune < 0x80) {
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eng ++;
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if ('0' <= unicode[i].rune && unicode[i].rune <= '9') {
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m++;
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}
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}
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}
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// ascii char is not found
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if (eng == 0) {
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return POS_X;
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}
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// all the ascii is number char
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if (m == eng) {
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return POS_M;
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}
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// the ascii chars contain english letter
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return POS_ENG;
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}
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}; // class PosTagger
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} // namespace cppjieba
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