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88 lines
3.6 KiB
C++
88 lines
3.6 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: tessclassifier.cpp
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// Description: Tesseract implementation of a ShapeClassifier.
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// Author: Ray Smith
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// Created: Tue Nov 22 14:16:25 PST 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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#include "tessclassifier.h"
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#include "classify.h"
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#include "trainingsample.h"
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namespace tesseract {
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// Classifies the given [training] sample, writing to results.
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// See ShapeClassifier for a full description.
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int TessClassifier::UnicharClassifySample(
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const TrainingSample& sample, Pix* page_pix, int debug,
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UNICHAR_ID keep_this, GenericVector<UnicharRating>* results) {
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int old_matcher_level = classify_->matcher_debug_level;
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int old_matcher_flags = classify_->matcher_debug_flags;
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int old_classify_level = classify_->classify_debug_level;
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if (debug) {
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// Explicitly set values of various control parameters to generate debug
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// output if required, restoring the old values after classifying.
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classify_->matcher_debug_level.set_value(2);
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classify_->matcher_debug_flags.set_value(25);
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classify_->classify_debug_level.set_value(3);
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}
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classify_->CharNormTrainingSample(pruner_only_, keep_this, sample, results);
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if (debug) {
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classify_->matcher_debug_level.set_value(old_matcher_level);
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classify_->matcher_debug_flags.set_value(old_matcher_flags);
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classify_->classify_debug_level.set_value(old_classify_level);
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}
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return results->size();
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}
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// Provides access to the ShapeTable that this classifier works with.
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const ShapeTable* TessClassifier::GetShapeTable() const {
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return classify_->shape_table();
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}
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// Provides access to the UNICHARSET that this classifier works with.
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// Only needs to be overridden if GetShapeTable() can return NULL.
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const UNICHARSET& TessClassifier::GetUnicharset() const {
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return classify_->unicharset;
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}
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// Displays classification as the given shape_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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int TessClassifier::DisplayClassifyAs(
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const TrainingSample& sample, Pix* page_pix, int unichar_id, int index,
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PointerVector<ScrollView>* windows) {
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int shape_id = unichar_id;
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// TODO(rays) Fix this so it works with both flat and real shapetables.
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// if (GetShapeTable() != NULL)
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// shape_id = BestShapeForUnichar(sample, page_pix, unichar_id, NULL);
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if (shape_id < 0) return index;
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if (UnusedClassIdIn(classify_->PreTrainedTemplates, shape_id)) {
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tprintf("No built-in templates for class/shape %d\n", shape_id);
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return index;
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}
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classify_->ShowBestMatchFor(shape_id, sample.features(),
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sample.num_features());
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return index;
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}
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} // namespace tesseract
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