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#include "path_trie.h"
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#include <algorithm>
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#include <limits>
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#include <memory>
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#include <utility>
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#include <vector>
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#include "decoder_utils.h"
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PathTrie::PathTrie() {
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log_prob_b_prev = -NUM_FLT_INF;
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log_prob_nb_prev = -NUM_FLT_INF;
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log_prob_b_cur = -NUM_FLT_INF;
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log_prob_nb_cur = -NUM_FLT_INF;
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score = -NUM_FLT_INF;
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ROOT_ = -1;
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character = ROOT_;
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exists_ = true;
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parent = nullptr;
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dictionary_ = nullptr;
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dictionary_state_ = 0;
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has_dictionary_ = false;
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matcher_ = nullptr;
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}
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PathTrie::~PathTrie() {
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for (auto child : children_) {
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delete child.second;
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}
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}
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PathTrie* PathTrie::get_path_trie(int new_char, bool reset) {
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auto child = children_.begin();
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for (child = children_.begin(); child != children_.end(); ++child) {
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if (child->first == new_char) {
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break;
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}
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}
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if (child != children_.end()) {
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if (!child->second->exists_) {
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child->second->exists_ = true;
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child->second->log_prob_b_prev = -NUM_FLT_INF;
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child->second->log_prob_nb_prev = -NUM_FLT_INF;
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child->second->log_prob_b_cur = -NUM_FLT_INF;
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child->second->log_prob_nb_cur = -NUM_FLT_INF;
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}
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return (child->second);
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} else {
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if (has_dictionary_) {
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matcher_->SetState(dictionary_state_);
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bool found = matcher_->Find(new_char);
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if (!found) {
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// Adding this character causes word outside dictionary
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auto FSTZERO = fst::TropicalWeight::Zero();
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auto final_weight = dictionary_->Final(dictionary_state_);
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bool is_final = (final_weight != FSTZERO);
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if (is_final && reset) {
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dictionary_state_ = dictionary_->Start();
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}
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return nullptr;
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} else {
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PathTrie* new_path = new PathTrie;
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new_path->character = new_char;
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new_path->parent = this;
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new_path->dictionary_ = dictionary_;
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new_path->dictionary_state_ = matcher_->Value().nextstate;
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new_path->has_dictionary_ = true;
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new_path->matcher_ = matcher_;
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children_.push_back(std::make_pair(new_char, new_path));
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return new_path;
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}
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} else {
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PathTrie* new_path = new PathTrie;
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new_path->character = new_char;
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new_path->parent = this;
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children_.push_back(std::make_pair(new_char, new_path));
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return new_path;
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}
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}
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}
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PathTrie* PathTrie::get_path_vec(std::vector<int>& output) {
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return get_path_vec(output, ROOT_);
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}
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PathTrie* PathTrie::get_path_vec(std::vector<int>& output,
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int stop,
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size_t max_steps) {
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if (character == stop || character == ROOT_ || output.size() == max_steps) {
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std::reverse(output.begin(), output.end());
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return this;
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} else {
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output.push_back(character);
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return parent->get_path_vec(output, stop, max_steps);
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}
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}
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void PathTrie::iterate_to_vec(std::vector<PathTrie*>& output) {
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if (exists_) {
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log_prob_b_prev = log_prob_b_cur;
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log_prob_nb_prev = log_prob_nb_cur;
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log_prob_b_cur = -NUM_FLT_INF;
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log_prob_nb_cur = -NUM_FLT_INF;
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score = log_sum_exp(log_prob_b_prev, log_prob_nb_prev);
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output.push_back(this);
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}
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for (auto child : children_) {
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child.second->iterate_to_vec(output);
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}
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}
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void PathTrie::remove() {
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exists_ = false;
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if (children_.size() == 0) {
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auto child = parent->children_.begin();
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for (child = parent->children_.begin(); child != parent->children_.end();
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++child) {
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if (child->first == character) {
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parent->children_.erase(child);
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break;
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}
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}
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if (parent->children_.size() == 0 && !parent->exists_) {
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parent->remove();
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}
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delete this;
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}
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}
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void PathTrie::set_dictionary(fst::StdVectorFst* dictionary) {
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dictionary_ = dictionary;
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dictionary_state_ = dictionary->Start();
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has_dictionary_ = true;
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}
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using FSTMATCH = fst::SortedMatcher<fst::StdVectorFst>;
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void PathTrie::set_matcher(std::shared_ptr<FSTMATCH> matcher) {
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matcher_ = matcher;
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}
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