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git-svn-id: https://tesseract-ocr.googlecode.com/svn/trunk@873 d0cd1f9f-072b-0410-8dd7-cf729c803f20
125 lines
5.6 KiB
C++
125 lines
5.6 KiB
C++
// Copyright 2011 Google Inc. All Rights Reserved.
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// Author: rays@google.com (Ray Smith)
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///////////////////////////////////////////////////////////////////////
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// File: shapeclassifier.h
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// Description: Base interface class for classifiers that return a
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// shape index.
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// Author: Ray Smith
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// Created: Tue Sep 13 11:26:32 PDT 2011
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//
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// (C) Copyright 2011, 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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#ifndef TESSERACT_CLASSIFY_SHAPECLASSIFIER_H_
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#define TESSERACT_CLASSIFY_SHAPECLASSIFIER_H_
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#include "unichar.h"
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template <typename T> class GenericVector;
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struct Pix;
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class ScrollView;
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class UNICHARSET;
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namespace tesseract {
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template <typename T> class PointerVector;
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struct ShapeRating;
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class ShapeTable;
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class TrainingSample;
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class TrainingSampleSet;
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struct UnicharRating;
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// Interface base class for classifiers that produce ShapeRating results.
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class ShapeClassifier {
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public:
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virtual ~ShapeClassifier() {}
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// Classifies the given [training] sample, writing to results.
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// If page_pix is not NULL, the overriding function may call
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// sample.GetSamplePix(padding, page_pix) to get an image of the sample
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// padded (with real image data) by the given padding to extract features
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// from the image of the character. Other members of TrainingSample:
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// features(), micro_features(), cn_feature(), geo_feature() may be used
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// to get the appropriate tesseract features.
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// If debug is non-zero, then various degrees of classifier dependent debug
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// information is provided.
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// If keep_this (a UNICHAR_ID) is >= 0, then the results should always
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// contain keep_this, and (if possible) anything of intermediate confidence.
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// (Used for answering "Why didn't it get that right?" questions.) It must
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// be a UNICHAR_ID as the callers have no clue how to choose the best shape
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// that may contain a desired answer.
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// The return value is the number of classes saved in results.
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// NOTE that overriding functions MUST clear and sort the results by
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// descending rating unless the classifier is working with a team of such
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// classifiers.
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// NOTE: Neither overload of ClassifySample is pure, but at least one must
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// be overridden by a classifier in order for it to do anything.
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virtual int UnicharClassifySample(const TrainingSample& sample, Pix* page_pix,
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int debug, UNICHAR_ID keep_this,
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GenericVector<UnicharRating>* results);
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protected:
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virtual int ClassifySample(const TrainingSample& sample, Pix* page_pix,
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int debug, UNICHAR_ID keep_this,
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GenericVector<ShapeRating>* results);
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public:
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// Returns the shape that contains unichar_id that has the best result.
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// If result is not NULL, it is set with the shape_id and rating.
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// Returns -1 if ClassifySample fails to provide any result containing
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// unichar_id. BestShapeForUnichar does not need to be overridden if
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// ClassifySample respects the keep_this rule.
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virtual int BestShapeForUnichar(const TrainingSample& sample, Pix* page_pix,
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UNICHAR_ID unichar_id, ShapeRating* result);
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// Provides access to the ShapeTable that this classifier works with.
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virtual const ShapeTable* GetShapeTable() const = 0;
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// Provides access to the UNICHARSET that this classifier works with.
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// Must be overridden IFF GetShapeTable() returns NULL.
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virtual const UNICHARSET& GetUnicharset() const;
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// Visual debugger classifies the given sample, displays the results and
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// solicits user input to display other classifications. Returns when
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// the user has finished with debugging the sample.
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// Probably doesn't need to be overridden if the subclass provides
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// DisplayClassifyAs.
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virtual void DebugDisplay(const TrainingSample& sample, Pix* page_pix,
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UNICHAR_ID unichar_id);
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// Displays classification as the given unichar_id. Creates as many windows
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// as it feels fit, using index as a guide for placement. Adds any created
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// windows to the windows output and returns a new index that may be used
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// by any subsequent classifiers. Caller waits for the user to view and
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// then destroys the windows by clearing the vector.
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virtual int DisplayClassifyAs(const TrainingSample& sample, Pix* page_pix,
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UNICHAR_ID unichar_id, int index,
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PointerVector<ScrollView>* windows);
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// Prints debug information on the results. context is some introductory/title
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// message.
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virtual void UnicharPrintResults(
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const char* context, const GenericVector<UnicharRating>& results) const;
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virtual void PrintResults(const char* context,
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const GenericVector<ShapeRating>& results) const;
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protected:
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// Removes any result that has all its unichars covered by a better choice,
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// regardless of font.
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void FilterDuplicateUnichars(GenericVector<ShapeRating>* results) const;
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};
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} // namespace tesseract.
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#endif // TESSERACT_CLASSIFY_SHAPECLASSIFIER_H_
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