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All of them were found by codespell. Signed-off-by: Stefan Weil <sw@weilnetz.de>
127 lines
5.8 KiB
C++
127 lines
5.8 KiB
C++
/**********************************************************************
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* File: beam_search.h
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* Description: Declaration of Beam Word Search Algorithm Class
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* Author: Ahmad Abdulkader
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* Created: 2007
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*
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* (C) Copyright 2008, Google Inc.
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** Licensed under the Apache License, Version 2.0 (the "License");
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** you may not use this file except in compliance with the License.
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** You may obtain a copy of the License at
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** http://www.apache.org/licenses/LICENSE-2.0
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** Unless required by applicable law or agreed to in writing, software
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** distributed under the License is distributed on an "AS IS" BASIS,
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** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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** See the License for the specific language governing permissions and
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** limitations under the License.
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*
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**********************************************************************/
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// The Beam Search class implements a Beam Search algorithm for the
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// N-best paths through the lattice of a search object using a language model
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// The search object is a segmented bitmap of a word image. The language model
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// is a state machine that defines valid sequences of characters
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// The cost of each path is the combined (product) probabilities of the
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// characters along the path. The character probabilities are computed using
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// the character classifier member of the RecoContext
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// The BeamSearch class itself holds the state of the last search it performed
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// using its "Search" method. Subsequent class to the Search method erase the
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// states of previously done searches
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#ifndef BEAM_SEARCH_H
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#define BEAM_SEARCH_H
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#include "search_column.h"
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#include "word_altlist.h"
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#include "search_object.h"
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#include "lang_model.h"
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#include "cube_utils.h"
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#include "cube_reco_context.h"
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#include "allheaders.h"
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namespace tesseract {
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class BeamSearch {
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public:
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explicit BeamSearch(CubeRecoContext *cntxt, bool word_mode = true);
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~BeamSearch();
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// Performs a beam search in the specified search using the specified
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// language model; returns an alternate list of possible words as a result.
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WordAltList *Search(SearchObject *srch_obj, LangModel *lang_mod = NULL);
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// Returns the best node in the last column of last performed search.
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SearchNode *BestNode() const;
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// Returns the string corresponding to the specified alt.
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char_32 *Alt(int alt) const;
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// Backtracks from the specified lattice node and returns the corresponding
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// character-mapped segments, character count, char_32 result string, and
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// character bounding boxes (if char_boxes is not NULL). If the segments
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// cannot be constructed, returns NULL, and all result arguments
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// will be NULL.
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CharSamp **BackTrack(SearchObject *srch_obj, int node_index,
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int *char_cnt, char_32 **str32, Boxa **char_boxes) const;
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// Same as above, except it takes a pointer to a search node object
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// instead of node index.
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CharSamp **BackTrack(SearchObject *srch_obj, SearchNode *node,
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int *char_cnt, char_32 **str32, Boxa **char_boxes) const;
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// Returns the size cost of a specified string of a lattice
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// path that ends at the specified lattice node.
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int SizeCost(SearchObject *srch_obj, SearchNode *node,
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char_32 **str32 = NULL) const;
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// Returns the word unigram cost of the given string, possibly
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// stripping out a single trailing punctuation character.
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int WordUnigramCost(char_32 *str32, WordUnigrams* word_unigrams) const;
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// Supplementary functions needed for visualization
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// Return column count of the lattice.
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inline int ColCnt() const { return col_cnt_; }
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// Returns the lattice column corresponding to the specified column index.
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SearchColumn *Column(int col_idx) const;
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// Return the index of the best node in the last column of the
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// best-cost path before the alternates list is sorted.
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inline int BestPresortedNodeIndex() const {
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return best_presorted_node_idx_;
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};
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private:
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// Maximum reasonable segmentation point count
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static const int kMaxSegPointCnt = 128;
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// Recognition context object; the context holds the character classifier
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// and the tuning parameters object
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CubeRecoContext *cntxt_;
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// Count of segmentation pts
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int seg_pt_cnt_;
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// Lattice column count; currently redundant with respect to seg_pt_cnt_
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// but that might change in the future
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int col_cnt_;
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// Array of lattice columns
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SearchColumn **col_;
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// Run in word or phrase mode
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bool word_mode_;
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// Node index of best-cost node, before alternates are merged and sorted
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int best_presorted_node_idx_;
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// Cleans up beam search state
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void Cleanup();
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// Creates a Word alternate list from the results in the lattice.
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// This function computes a cost for each node in the final column
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// of the lattice, which is a weighted average of several costs:
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// size cost, character bigram cost, word unigram cost, and
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// recognition cost from the beam search. The weights are the
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// CubeTuningParams, which are learned together with the character
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// classifiers.
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WordAltList *CreateWordAltList(SearchObject *srch_obj);
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// Creates a set of children nodes emerging from a parent node based on
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// the character alternate list and the language model.
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void CreateChildren(SearchColumn *out_col, LangModel *lang_mod,
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SearchNode *parent_node, LangModEdge *lm_parent_edge,
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CharAltList *char_alt_list, int extra_cost);
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// Backtracks from the given lattice node and returns the corresponding
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// char mapped segments, character count, and character bounding boxes (if
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// char_boxes is not NULL). If the segments cannot be constructed,
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// returns NULL, and all result arguments will be NULL.
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CharSamp **SplitByNode(SearchObject *srch_obj, SearchNode *srch_node,
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int* char_cnt, Boxa **char_boxes) const;
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};
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}
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#endif // BEAM_SEARCH_H
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