QGIS API Documentation 4.3.0-Master (ffcfc20b9b4)
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qgsalgorithmcheckgeometryselfcontact.cpp
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1/***************************************************************************
2 qgsalgorithmcheckgeometryselfcontact.cpp
3 ---------------------
4 begin : April 2025
5 copyright : (C) 2025 by Jacky Volpes
6 email : jacky dot volpes at oslandia dot com
7***************************************************************************/
8
9/***************************************************************************
10 * *
11 * This program is free software; you can redistribute it and/or modify *
12 * it under the terms of the GNU General Public License as published by *
13 * the Free Software Foundation; either version 2 of the License, or *
14 * (at your option) any later version. *
15 * *
16 ***************************************************************************/
17
19
23#include "qgspoint.h"
25#include "qgsvectorlayer.h"
26
27#include <QString>
28
29using namespace Qt::StringLiterals;
30
32
33QString QgsGeometryCheckSelfContactAlgorithm::name() const
34{
35 return u"checkgeometryselfcontact"_s;
36}
37
38QString QgsGeometryCheckSelfContactAlgorithm::displayName() const
39{
40 return QObject::tr( "Self-contacts" );
41}
42
43QString QgsGeometryCheckSelfContactAlgorithm::shortDescription() const
44{
45 return QObject::tr( "Detects self contact points in the geometry (line or polygon)." );
46}
47
48QStringList QgsGeometryCheckSelfContactAlgorithm::tags() const
49{
50 return QObject::tr( "check,geometry,contact" ).split( ',' );
51}
52
53QString QgsGeometryCheckSelfContactAlgorithm::group() const
54{
55 return QObject::tr( "Check geometry" );
56}
57
58QString QgsGeometryCheckSelfContactAlgorithm::groupId() const
59{
60 return u"checkgeometry"_s;
61}
62
63QString QgsGeometryCheckSelfContactAlgorithm::shortHelpString() const
64{
65 return QObject::tr(
66 "This algorithm checks if the geometry has self contact points (in line or polygon).\n"
67 "Self contacts are errors."
68 );
69}
70
71Qgis::ProcessingAlgorithmFlags QgsGeometryCheckSelfContactAlgorithm::flags() const
72{
74}
75
76QgsGeometryCheckSelfContactAlgorithm *QgsGeometryCheckSelfContactAlgorithm::createInstance() const
77{
78 return new QgsGeometryCheckSelfContactAlgorithm();
79}
80
81void QgsGeometryCheckSelfContactAlgorithm::initAlgorithm( const QVariantMap &configuration )
82{
83 Q_UNUSED( configuration )
84
85 addParameter(
86 new QgsProcessingParameterFeatureSource( u"INPUT"_s, QObject::tr( "Input layer" ), QList<int>() << static_cast<int>( Qgis::ProcessingSourceType::VectorPolygon ) << static_cast<int>( Qgis::ProcessingSourceType::VectorLine ) )
87 );
88 addParameter( new QgsProcessingParameterField( u"UNIQUE_ID"_s, QObject::tr( "Unique feature identifier" ), QString(), u"INPUT"_s ) );
89 addParameter( new QgsProcessingParameterFeatureSink( u"ERRORS"_s, QObject::tr( "Self contact error points" ), Qgis::ProcessingSourceType::VectorPoint ) );
90 addParameter( new QgsProcessingParameterFeatureSink( u"OUTPUT"_s, QObject::tr( "Self contact features" ), Qgis::ProcessingSourceType::VectorAnyGeometry, QVariant(), true, false ) );
91
92 auto tolerance = std::make_unique<QgsProcessingParameterNumber>( u"TOLERANCE"_s, QObject::tr( "Tolerance" ), Qgis::ProcessingNumberParameterType::Integer, 8, false, 1, 13 );
93 tolerance->setFlags( tolerance->flags() | Qgis::ProcessingParameterFlag::Advanced );
94 tolerance->setHelp(
95 QObject::tr(
96 "The \"Tolerance\" advanced parameter defines the numerical precision of geometric operations, "
97 "given as an integer n, meaning that any difference smaller than 10⁻ⁿ (in map units) is considered zero."
98 )
99 );
100 addParameter( tolerance.release() );
101}
102
103bool QgsGeometryCheckSelfContactAlgorithm::prepareAlgorithm( const QVariantMap &parameters, QgsProcessingContext &context, QgsProcessingFeedback * )
104{
105 mTolerance = parameterAsInt( parameters, u"TOLERANCE"_s, context );
106
107 return true;
108}
109
110QgsFields QgsGeometryCheckSelfContactAlgorithm::outputFields()
111{
112 QgsFields fields;
113 fields.append( QgsField( u"gc_layerid"_s, QMetaType::QString ) );
114 fields.append( QgsField( u"gc_layername"_s, QMetaType::QString ) );
115 fields.append( QgsField( u"gc_partidx"_s, QMetaType::Int ) );
116 fields.append( QgsField( u"gc_ringidx"_s, QMetaType::Int ) );
117 fields.append( QgsField( u"gc_vertidx"_s, QMetaType::Int ) );
118 fields.append( QgsField( u"gc_errorx"_s, QMetaType::Double ) );
119 fields.append( QgsField( u"gc_errory"_s, QMetaType::Double ) );
120 fields.append( QgsField( u"gc_error"_s, QMetaType::QString ) );
121 return fields;
122}
123
124QVariantMap QgsGeometryCheckSelfContactAlgorithm::processAlgorithm( const QVariantMap &parameters, QgsProcessingContext &context, QgsProcessingFeedback *feedback )
125{
126 QGS_MARK_ALGORITHM_SOURCE
127
128 QString dest_output;
129 QString dest_errors;
130 const std::unique_ptr<QgsProcessingFeatureSource> input( parameterAsSource( parameters, u"INPUT"_s, context ) );
131 if ( !input )
132 throw QgsProcessingException( invalidSourceError( parameters, u"INPUT"_s ) );
133
134 const QString uniqueIdFieldName( parameterAsString( parameters, u"UNIQUE_ID"_s, context ) );
135 const int uniqueIdFieldIdx = input->fields().indexFromName( uniqueIdFieldName );
136 if ( uniqueIdFieldIdx == -1 )
137 throw QgsProcessingException( QObject::tr( "Missing field %1 in input layer" ).arg( uniqueIdFieldName ) );
138
139 const QgsField uniqueIdField = input->fields().at( uniqueIdFieldIdx );
140
141 QgsFields fields = outputFields();
142 fields.append( uniqueIdField );
143
144 const std::unique_ptr<QgsFeatureSink> sink_output( parameterAsSink( parameters, u"OUTPUT"_s, context, dest_output, fields, input->wkbType(), input->sourceCrs() ) );
145
146 const std::unique_ptr<QgsFeatureSink> sink_errors( parameterAsSink( parameters, u"ERRORS"_s, context, dest_errors, fields, Qgis::WkbType::Point, input->sourceCrs() ) );
147 if ( !sink_errors )
148 throw QgsProcessingException( invalidSinkError( parameters, u"ERRORS"_s ) );
149
150 QgsProcessingMultiStepFeedback multiStepFeedback( 3, feedback );
151
152 QgsGeometryCheckContext checkContext = QgsGeometryCheckContext( mTolerance, input->sourceCrs(), context.transformContext(), context.project(), uniqueIdFieldIdx );
153
154 // Test detection
155 QList<QgsGeometryCheckError *> checkErrors;
156 QStringList messages;
157
158 const QgsGeometrySelfContactCheck check( &checkContext, QVariantMap() );
159
160 multiStepFeedback.setCurrentStep( 1 );
161 feedback->setProgressText( QObject::tr( "Preparing features…" ) );
162 QMap<QString, QgsFeaturePool *> checkerFeaturePools;
163
164 std::unique_ptr<QgsVectorLayer> inputLayer( input->materialize( QgsFeatureRequest() ) );
166 checkerFeaturePools.insert( inputLayer->id(), &featurePool );
167
168 multiStepFeedback.setCurrentStep( 2 );
169 feedback->setProgressText( QObject::tr( "Collecting errors…" ) );
170 QgsGeometryCheck::Result res = check.collectErrors( checkerFeaturePools, checkErrors, messages, feedback );
172 {
173 feedback->pushInfo( QObject::tr( "Errors collected successfully." ) );
174 }
175 else if ( res == QgsGeometryCheck::Result::Canceled )
176 {
177 throw QgsProcessingException( QObject::tr( "Operation was canceled." ) );
178 }
180 {
181 throw QgsProcessingException( QObject::tr( "Field '%1' contains non-unique values and can not be used as unique ID." ).arg( uniqueIdFieldName ) );
182 }
183
184 multiStepFeedback.setCurrentStep( 3 );
185 feedback->setProgressText( QObject::tr( "Exporting errors…" ) );
186 const double step { checkErrors.size() > 0 ? 100.0 / checkErrors.size() : 1 };
187 long i = 0;
188 feedback->setProgress( 0.0 );
189
190 for ( const QgsGeometryCheckError *error : checkErrors )
191 {
192 if ( feedback->isCanceled() )
193 {
194 break;
195 }
196 QgsFeature f;
197 QgsAttributes attrs = f.attributes();
198
199 attrs
200 << error->layerId()
201 << inputLayer->name()
202 << error->vidx().part
203 << error->vidx().ring
204 << error->vidx().vertex
205 << error->location().x()
206 << error->location().y()
207 << error->value().toString()
208 << inputLayer->getFeature( error->featureId() ).attribute( uniqueIdField.name() );
209 f.setAttributes( attrs );
210
211 f.setGeometry( error->geometry() );
212 if ( sink_output && !sink_output->addFeature( f, QgsFeatureSink::FastInsert ) )
213 throw QgsProcessingException( writeFeatureError( sink_output.get(), parameters, u"OUTPUT"_s ) );
214 else if ( sink_output )
215 feedback->featureAddedToSink( u"OUTPUT"_s );
216
217 f.setGeometry( QgsGeometry::fromPoint( QgsPoint( error->location().x(), error->location().y() ) ) );
218 if ( !sink_errors->addFeature( f, QgsFeatureSink::FastInsert ) )
219 throw QgsProcessingException( writeFeatureError( sink_errors.get(), parameters, u"ERRORS"_s ) );
220 else
221 feedback->featureAddedToSink( u"ERRORS"_s );
222
223 i++;
224 feedback->setProgress( 100.0 * step * static_cast<double>( i ) );
225 }
226
227 // Place the point layer above the polygon layer
228 if ( context.willLoadLayerOnCompletion( dest_output ) && context.willLoadLayerOnCompletion( dest_errors ) )
229 {
230 context.layerToLoadOnCompletionDetails( dest_errors ).layerSortKey = 0;
231 context.layerToLoadOnCompletionDetails( dest_output ).layerSortKey = 1;
232 }
233
234 // cleanup memory of the pointed data
235 for ( const QgsGeometryCheckError *error : checkErrors )
236 {
237 delete error;
238 }
239
240 QVariantMap outputs;
241 if ( sink_output )
242 {
243 sink_output->finalize();
244 feedback->featureSinkFinalized( u"OUTPUT"_s );
245 outputs.insert( u"OUTPUT"_s, dest_output );
246 }
247 sink_errors->finalize();
248 feedback->featureSinkFinalized( u"ERRORS"_s );
249 outputs.insert( u"ERRORS"_s, dest_errors );
250
251 return outputs;
252}
253
@ VectorAnyGeometry
Any vector layer with geometry.
Definition qgis.h:3749
@ VectorPoint
Vector point layers.
Definition qgis.h:3750
@ VectorPolygon
Vector polygon layers.
Definition qgis.h:3752
@ VectorLine
Vector line layers.
Definition qgis.h:3751
QFlags< ProcessingAlgorithmFlag > ProcessingAlgorithmFlags
Flags indicating how and when an algorithm operates and should be exposed to users.
Definition qgis.h:3826
@ Point
Point.
Definition qgis.h:296
@ NoThreading
Algorithm is not thread safe and cannot be run in a background thread, e.g. for algorithms which mani...
Definition qgis.h:3805
@ RequiresProject
The algorithm requires that a valid QgsProject is available from the processing context in order to e...
Definition qgis.h:3813
@ Advanced
Parameter is an advanced parameter which should be hidden from users by default.
Definition qgis.h:3982
A vector of attributes.
Wraps a request for features to a vector layer (or directly its vector data provider).
@ FastInsert
Use faster inserts, at the cost of updating the passed features to reflect changes made at the provid...
The feature class encapsulates a single feature including its unique ID, geometry and a list of field...
Definition qgsfeature.h:60
QgsAttributes attributes
Definition qgsfeature.h:64
void setAttributes(const QgsAttributes &attrs)
Sets the feature's attributes.
void setGeometry(const QgsGeometry &geometry)
Set the feature's geometry.
bool isCanceled() const
Tells whether the operation has been canceled already.
Definition qgsfeedback.h:56
void setProgress(double progress)
Sets the current progress for the feedback object.
Definition qgsfeedback.h:65
Encapsulate a field in an attribute table or data source.
Definition qgsfield.h:56
QString name
Definition qgsfield.h:65
Container of fields for a vector layer.
Definition qgsfields.h:45
bool append(const QgsField &field, Qgis::FieldOrigin origin=Qgis::FieldOrigin::Provider, int originIndex=-1)
Appends a field.
Definition qgsfields.cpp:75
Base configuration for geometry checks.
This represents an error reported by a geometry check.
Result
Result of the geometry checker operation.
@ Canceled
User canceled calculation.
@ DuplicatedUniqueId
Found duplicated unique ID value.
@ Success
Operation completed successfully.
static QgsGeometry fromPoint(const QgsPoint &point)
Creates a new geometry from a QgsPoint object.
Point geometry type, with support for z-dimension and m-values.
Definition qgspoint.h:53
virtual Qgis::ProcessingAlgorithmFlags flags() const
Returns the flags indicating how and when the algorithm operates and should be exposed to users.
int layerSortKey
Optional sorting key for sorting output layers when loading them into a project.
Contains information about the context in which a processing algorithm is executed.
QgsProcessingContext::LayerDetails & layerToLoadOnCompletionDetails(const QString &layer)
Returns a reference to the details for a given layer which is loaded on completion of the algorithm o...
QgsCoordinateTransformContext transformContext() const
Returns the coordinate transform context.
QgsProject * project() const
Returns the project in which the algorithm is being executed.
bool willLoadLayerOnCompletion(const QString &layer) const
Returns true if the given layer (by ID or datasource) will be loaded into the current project upon co...
Custom exception class for processing related exceptions.
Base class for providing feedback from a processing algorithm.
void featureAddedToSink(const QString &output)
Reports that a feature was added to the the sink associated with the specified algorithm output.
virtual void pushInfo(const QString &info)
Pushes a general informational message from the algorithm.
void featureSinkFinalized(const QString &output)
Reports that a feature sink has been finalized.
virtual void setProgressText(const QString &text)
Sets a progress report text string.
Processing feedback object for multi-step operations.
A feature sink output for processing algorithms.
An input feature source (such as vector layers) parameter for processing algorithms.
A vector layer or feature source field parameter for processing algorithms.
A feature pool based on a vector data provider.