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git-svn-id: https://tesseract-ocr.googlecode.com/svn/trunk@1015 d0cd1f9f-072b-0410-8dd7-cf729c803f20
172 lines
6.8 KiB
C++
172 lines
6.8 KiB
C++
/**********************************************************************
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* File: cube_object.h
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* Description: Declaration of the Cube Object 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 CubeObject class is the main class used to perform recognition of
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// a specific char_samp as a single word.
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// To recognize a word, a CubeObject is constructed for this word.
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// A Call to RecognizeWord is then issued specifying the language model that
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// will be used during recognition. If none is specified, the default language
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// model in the CubeRecoContext is used. The CubeRecoContext is passed at
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// construction time
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//
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// The typical usage pattern for Cube is shown below:
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//
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// // Create and initialize Tesseract object and get its
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// // CubeRecoContext object (note that Tesseract object owns it,
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// // so it will be freed when the Tesseract object is freed).
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// tesseract::Tesseract *tess_obj = new tesseract::Tesseract();
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// tess_obj->init_tesseract(data_path, lang, tesseract::OEM_CUBE_ONLY);
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// CubeRecoContext *cntxt = tess_obj->GetCubeRecoContext();
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// CHECK(cntxt != NULL) << "Unable to create a Cube reco context";
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// .
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// .
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// .
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// // Do this to recognize a word in pix whose co-ordinates are
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// // (left,top,width,height)
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// tesseract::CubeObject *cube_obj;
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// cube_obj = new tesseract::CubeObject(cntxt, pix,
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// left, top, width, height);
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//
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// // Get back Cube's list of answers
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// tesseract::WordAltList *alt_list = cube_obj->RecognizeWord();
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// CHECK(alt_list != NULL && alt_list->AltCount() > 0);
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//
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// // Get the string and cost of every alternate
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// for (int alt = 0; alt < alt_list->AltCount(); alt++) {
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// // Return the result as a UTF-32 string
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// string_32 res_str32 = alt_list->Alt(alt);
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// // Convert to UTF8 if need-be
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// string res_str;
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// CubeUtils::UTF32ToUTF8(res_str32.c_str(), &res_str);
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// // Get the string cost. This should get bigger as you go deeper
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// // in the list
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// int cost = alt_list->AltCost(alt);
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// }
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//
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// // Call this once you are done recognizing this word
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// delete cube_obj;
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//
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// // Call this once you are done recognizing all words with
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// // for the current language
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// delete tess_obj;
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//
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// Note that if the language supports "Italics" (see the CubeRecoContext), the
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// RecognizeWord function attempts to de-slant the word.
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#ifndef CUBE_OBJECT_H
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#define CUBE_OBJECT_H
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#include "char_samp.h"
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#include "word_altlist.h"
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#include "beam_search.h"
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#include "cube_search_object.h"
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#include "tess_lang_model.h"
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#include "cube_reco_context.h"
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namespace tesseract {
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// minimum aspect ratio needed to normalize a char_samp before recognition
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static const float kMinNormalizationAspectRatio = 3.5;
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// minimum probability a top alt choice must meet before having
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// deslanted processing applied to it
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static const float kMinProbSkipDeslanted = 0.25;
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class CubeObject {
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public:
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// Different flavors of constructor. They just differ in the way the
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// word image is specified
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CubeObject(CubeRecoContext *cntxt, CharSamp *char_samp);
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CubeObject(CubeRecoContext *cntxt, Pix *pix,
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int left, int top, int wid, int hgt);
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~CubeObject();
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// Perform the word recognition using the specified language mode. If none
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// is specified, the default language model in the CubeRecoContext is used.
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// Returns the sorted list of alternate word answers
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WordAltList *RecognizeWord(LangModel *lang_mod = NULL);
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// Same as RecognizeWord but recognizes as a phrase
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WordAltList *RecognizePhrase(LangModel *lang_mod = NULL);
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// Computes the cost of a specific string. This is done by performing
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// recognition of a language model that allows only the specified word.
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// The alternate list(s) will be permanently modified.
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int WordCost(const char *str);
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// Recognizes a single character and returns the list of results.
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CharAltList *RecognizeChar();
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// Returns the BeamSearch object that resulted from the last call to
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// RecognizeWord
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inline BeamSearch *BeamObj() const {
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return (deslanted_ == true ? deslanted_beam_obj_ : beam_obj_);
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}
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// Returns the WordAltList object that resulted from the last call to
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// RecognizeWord
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inline WordAltList *AlternateList() const {
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return (deslanted_ == true ? deslanted_alt_list_ : alt_list_);
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}
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// Returns the CubeSearchObject object that resulted from the last call to
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// RecognizeWord
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inline CubeSearchObject *SrchObj() const {
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return (deslanted_ == true ? deslanted_srch_obj_ : srch_obj_);
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}
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// Returns the CharSamp object that resulted from the last call to
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// RecognizeWord. Note that this object is not necessarily identical to the
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// one passed at construction time as normalization might have occurred
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inline CharSamp *CharSample() const {
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return (deslanted_ == true ? deslanted_char_samp_ : char_samp_);
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}
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// Set the ownership of the CharSamp
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inline void SetCharSampOwnership(bool own_char_samp) {
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own_char_samp_ = own_char_samp;
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}
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protected:
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// Normalize the CharSamp if its aspect ratio exceeds the below constant.
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bool Normalize();
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private:
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// minimum segment count needed to normalize a char_samp before recognition
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static const int kMinNormalizationSegmentCnt = 4;
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// Data member initialization function
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void Init();
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// Free alternate lists.
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void Cleanup();
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// Perform the actual recognition using the specified language mode. If none
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// is specified, the default language model in the CubeRecoContext is used.
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// Returns the sorted list of alternate answers. Called by both
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// RecognizerWord (word_mode is true) or RecognizePhrase (word mode is false)
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WordAltList *Recognize(LangModel *lang_mod, bool word_mode);
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CubeRecoContext *cntxt_;
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BeamSearch *beam_obj_;
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BeamSearch *deslanted_beam_obj_;
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bool own_char_samp_;
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bool deslanted_;
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CharSamp *char_samp_;
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CharSamp *deslanted_char_samp_;
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CubeSearchObject *srch_obj_;
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CubeSearchObject *deslanted_srch_obj_;
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WordAltList *alt_list_;
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WordAltList *deslanted_alt_list_;
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};
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}
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#endif // CUBE_OBJECT_H
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