29QString QgsGeometryCheckPointCoveredByLineAlgorithm::name()
const
31 return QStringLiteral(
"checkgeometrypointcoveredbyline" );
34QString QgsGeometryCheckPointCoveredByLineAlgorithm::displayName()
const
36 return QObject::tr(
"Points outside lines" );
39QString QgsGeometryCheckPointCoveredByLineAlgorithm::shortDescription()
const
41 return QObject::tr(
"Detects points that are not along lines from another layer." );
44QStringList QgsGeometryCheckPointCoveredByLineAlgorithm::tags()
const
46 return QObject::tr(
"check,geometry,point,covered,line" ).split(
',' );
49QString QgsGeometryCheckPointCoveredByLineAlgorithm::group()
const
51 return QObject::tr(
"Check geometry" );
54QString QgsGeometryCheckPointCoveredByLineAlgorithm::groupId()
const
56 return QStringLiteral(
"checkgeometry" );
59QString QgsGeometryCheckPointCoveredByLineAlgorithm::shortHelpString()
const
61 return QObject::tr(
"This algorithm checks if the points in the input layer are covered by a line in the selected line layers.\n"
62 "A point not covered by a line is an error." );
70QgsGeometryCheckPointCoveredByLineAlgorithm *QgsGeometryCheckPointCoveredByLineAlgorithm::createInstance()
const
72 return new QgsGeometryCheckPointCoveredByLineAlgorithm();
75void QgsGeometryCheckPointCoveredByLineAlgorithm::initAlgorithm(
const QVariantMap &configuration )
77 Q_UNUSED( configuration )
83 QStringLiteral(
"UNIQUE_ID" ), QObject::tr(
"Unique feature identifier" ), QString(), QStringLiteral(
"INPUT" )
92 auto tolerance = std::make_unique<QgsProcessingParameterNumber>(
96 tolerance->setHelp( QObject::tr(
"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 addParameter( tolerance.release() );
103 mTolerance = parameterAsInt( parameters, QStringLiteral(
"TOLERANCE" ), context );
108QgsFields QgsGeometryCheckPointCoveredByLineAlgorithm::outputFields()
111 fields.
append(
QgsField( QStringLiteral(
"gc_layerid" ), QMetaType::QString ) );
112 fields.
append(
QgsField( QStringLiteral(
"gc_layername" ), QMetaType::QString ) );
113 fields.
append(
QgsField( QStringLiteral(
"gc_partidx" ), QMetaType::Int ) );
114 fields.
append(
QgsField( QStringLiteral(
"gc_ringidx" ), QMetaType::Int ) );
115 fields.
append(
QgsField( QStringLiteral(
"gc_vertidx" ), QMetaType::Int ) );
116 fields.
append(
QgsField( QStringLiteral(
"gc_errorx" ), QMetaType::Double ) );
117 fields.
append(
QgsField( QStringLiteral(
"gc_errory" ), QMetaType::Double ) );
118 fields.
append(
QgsField( QStringLiteral(
"gc_error" ), QMetaType::QString ) );
125 const std::unique_ptr<QgsFeatureSource> input( parameterAsSource( parameters, QStringLiteral(
"INPUT" ), context ) );
129 const QString uniqueIdFieldName( parameterAsString( parameters, QStringLiteral(
"UNIQUE_ID" ), context ) );
130 const int uniqueIdFieldIdx = input->fields().indexFromName( uniqueIdFieldName );
131 if ( uniqueIdFieldIdx == -1 )
132 throw QgsProcessingException( QObject::tr(
"Missing field %1 in input layer" ).arg( uniqueIdFieldName ) );
134 const QgsField uniqueIdField = input->fields().at( uniqueIdFieldIdx );
137 fields.
append( uniqueIdField );
139 QList<QgsMapLayer *> lineLayers = parameterAsLayerList( parameters, QStringLiteral(
"LINES" ), context );
140 if ( lineLayers.isEmpty() )
143 const std::unique_ptr<QgsFeatureSink> sink_errors( parameterAsSink(
144 parameters, QStringLiteral(
"ERRORS" ), context, dest_errors, fields,
Qgis::WkbType::Point, input->sourceCrs()
154 QList<QgsGeometryCheckError *> checkErrors;
155 QStringList messages;
159 multiStepFeedback.setCurrentStep( 1 );
162 QList<std::shared_ptr<QgsVectorDataProviderFeaturePool>> featurePools;
164 std::unique_ptr<QgsVectorLayer> inputLayer( input->materialize(
QgsFeatureRequest() ) );
165 QMap<QString, QgsFeaturePool *> checkerFeaturePools;
166 featurePools << std::make_shared<QgsVectorDataProviderFeaturePool>( inputLayer.get() );
167 checkerFeaturePools.insert( inputLayer->id(), featurePools.last().get() );
173 featurePools << std::make_shared<QgsVectorDataProviderFeaturePool>( vlayer );
174 checkerFeaturePools.insert( vlayer->
id(), featurePools.last().get() );
178 multiStepFeedback.setCurrentStep( 2 );
183 feedback->
pushInfo( QObject::tr(
"Errors collected successfully." ) );
191 throw QgsProcessingException( QObject::tr(
"Field '%1' contains non-unique values and can not be used as unique ID." ).arg( uniqueIdFieldName ) );
194 multiStepFeedback.setCurrentStep( 3 );
196 const double step { checkErrors.size() > 0 ? 100.0 / checkErrors.size() : 1 };
209 attrs << error->layerId()
210 << inputLayer->name()
211 << error->vidx().part
212 << error->vidx().ring
213 << error->vidx().vertex
214 << error->location().x()
215 << error->location().y()
216 << error->value().toString()
217 << inputLayer->getFeature( error->featureId() ).attribute( uniqueIdField.
name() );
222 throw QgsProcessingException( writeFeatureError( sink_errors.get(), parameters, QStringLiteral(
"ERRORS" ) ) );
225 feedback->
setProgress( 100.0 * step *
static_cast<double>( i ) );
235 outputs.insert( QStringLiteral(
"ERRORS" ), dest_errors );
@ VectorPoint
Vector point layers.
@ VectorLine
Vector line layers.
QFlags< ProcessingAlgorithmFlag > ProcessingAlgorithmFlags
Flags indicating how and when an algorithm operates and should be exposed to users.
@ NoThreading
Algorithm is not thread safe and cannot be run in a background thread, e.g. for algorithms which mani...
@ RequiresProject
The algorithm requires that a valid QgsProject is available from the processing context in order to e...
@ Advanced
Parameter is an advanced parameter which should be hidden from users by default.
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...
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.
void setProgress(double progress)
Sets the current progress for the feedback object.
Encapsulate a field in an attribute table or data source.
Container of fields for a vector layer.
bool append(const QgsField &field, Qgis::FieldOrigin origin=Qgis::FieldOrigin::Provider, int originIndex=-1)
Appends a field.
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.
A point covered by line check.
static QgsGeometry fromPoint(const QgsPoint &point)
Creates a new geometry from a QgsPoint object.
Base class for all map layer types.
Point geometry type, with support for z-dimension and m-values.
virtual Qgis::ProcessingAlgorithmFlags flags() const
Returns the flags indicating how and when the algorithm operates and should be exposed to users.
Contains information about the context in which a processing algorithm is executed.
QgsCoordinateTransformContext transformContext() const
Returns the coordinate transform context.
QgsProject * project() const
Returns the project in which the algorithm is being executed.
Custom exception class for processing related exceptions.
Base class for providing feedback from a processing algorithm.
virtual void pushInfo(const QString &info)
Pushes a general informational message from the algorithm.
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 parameter for processing algorithms which accepts multiple map layers.
Represents a vector layer which manages a vector based dataset.
Q_INVOKABLE Qgis::GeometryType geometryType() const
Returns point, line or polygon.