26QString QgsJoinByNearestAlgorithm::name()
 const 
   28  return QStringLiteral( 
"joinbynearest" );
 
   31QString QgsJoinByNearestAlgorithm::displayName()
 const 
   33  return QObject::tr( 
"Join attributes by nearest" );
 
   36QStringList QgsJoinByNearestAlgorithm::tags()
 const 
   38  return QObject::tr( 
"join,connect,attributes,values,fields,tables,proximity,closest,neighbour,neighbor,n-nearest,distance" ).split( 
',' );
 
   41QString QgsJoinByNearestAlgorithm::group()
 const 
   43  return QObject::tr( 
"Vector general" );
 
   46QString QgsJoinByNearestAlgorithm::groupId()
 const 
   48  return QStringLiteral( 
"vectorgeneral" );
 
   51void QgsJoinByNearestAlgorithm::initAlgorithm( 
const QVariantMap & )
 
   58  addParameter( 
new QgsProcessingParameterBoolean( QStringLiteral( 
"DISCARD_NONMATCHING" ), QObject::tr( 
"Discard records which could not be joined" ), 
false ) );
 
   60  addParameter( 
new QgsProcessingParameterString( QStringLiteral( 
"PREFIX" ), QObject::tr( 
"Joined field prefix" ), QVariant(), 
false, 
true ) );
 
   64  addParameter( 
new QgsProcessingParameterDistance( QStringLiteral( 
"MAX_DISTANCE" ), QObject::tr( 
"Maximum distance" ), QVariant(), QStringLiteral( 
"INPUT" ), 
true, 0 ) );
 
   68  auto nonMatchingSink = std::make_unique<QgsProcessingParameterFeatureSink>(
 
   73  addParameter( nonMatchingSink.release() );
 
   75  addOutput( 
new QgsProcessingOutputNumber( QStringLiteral( 
"JOINED_COUNT" ), QObject::tr( 
"Number of joined features from input table" ) ) );
 
   76  addOutput( 
new QgsProcessingOutputNumber( QStringLiteral( 
"UNJOINABLE_COUNT" ), QObject::tr( 
"Number of unjoinable features from input table" ) ) );
 
   79QString QgsJoinByNearestAlgorithm::shortHelpString()
 const 
   81  return QObject::tr( 
"This algorithm takes an input vector layer and creates a new vector layer that is an extended version of the " 
   82                      "input one, with additional attributes in its attribute table.\n\n" 
   83                      "The additional attributes and their values are taken from a second vector layer, where features are joined " 
   84                      "by finding the closest features from each layer. By default only the single nearest feature is joined," 
   85                      "but optionally the join can use the n-nearest neighboring features instead. If multiple features are found " 
   86                      "with identical distances these will all be returned (even if the total number of features exceeds the specified " 
   87                      "maximum feature count).\n\n" 
   88                      "If a maximum distance is specified, then only features which are closer than this distance " 
   89                      "will be matched.\n\n" 
   90                      "The output features will contain the selected attributes from the nearest feature, " 
   91                      "along with new attributes for the distance to the near feature, the index of the feature, " 
   92                      "and the coordinates of the closest point on the input feature (feature_x, feature_y) " 
   93                      "to the matched nearest feature, and the coordinates of the closet point on the matched feature " 
   94                      "(nearest_x, nearest_y).\n\n" 
   95                      "This algorithm uses purely Cartesian calculations for distance, and does not consider " 
   96                      "geodetic or ellipsoid properties when determining feature proximity." );
 
   99QString QgsJoinByNearestAlgorithm::shortDescription()
 const 
  101  return QObject::tr( 
"Joins a layer to another layer, using the closest features (nearest neighbors)." );
 
  109QgsJoinByNearestAlgorithm *QgsJoinByNearestAlgorithm::createInstance()
 const 
  111  return new QgsJoinByNearestAlgorithm();
 
  116  const int neighbors = parameterAsInt( parameters, QStringLiteral( 
"NEIGHBORS" ), context );
 
  117  const bool discardNonMatching = parameterAsBoolean( parameters, QStringLiteral( 
"DISCARD_NONMATCHING" ), context );
 
  118  const double maxDistance = parameters.value( QStringLiteral( 
"MAX_DISTANCE" ) ).isValid() ? parameterAsDouble( parameters, QStringLiteral( 
"MAX_DISTANCE" ), context ) : std::numeric_limits<double>::quiet_NaN();
 
  119  std::unique_ptr<QgsProcessingFeatureSource> input( parameterAsSource( parameters, QStringLiteral( 
"INPUT" ), context ) );
 
  123  std::unique_ptr<QgsProcessingFeatureSource> input2( parameterAsSource( parameters, QStringLiteral( 
"INPUT_2" ), context ) );
 
  127  const bool sameSourceAndTarget = parameters.value( QStringLiteral( 
"INPUT" ) ) == parameters.value( QStringLiteral( 
"INPUT_2" ) );
 
  129  const QString prefix = parameterAsString( parameters, QStringLiteral( 
"PREFIX" ), context );
 
  130  const QStringList fieldsToCopy = parameterAsStrings( parameters, QStringLiteral( 
"FIELDS_TO_COPY" ), context );
 
  134  if ( fieldsToCopy.empty() )
 
  136    outFields2 = input2->fields();
 
  137    fields2Indices.reserve( outFields2.
count() );
 
  138    for ( 
int i = 0; i < outFields2.
count(); ++i )
 
  145    fields2Indices.reserve( fieldsToCopy.count() );
 
  146    for ( 
const QString &field : fieldsToCopy )
 
  148      const int index = input2->fields().
lookupField( field );
 
  151        fields2Indices << index;
 
  152        outFields2.
append( input2->fields().at( index ) );
 
  157  if ( !prefix.isEmpty() )
 
  159    for ( 
int i = 0; i < outFields2.
count(); ++i )
 
  161      outFields2.
rename( i, prefix + outFields2[i].name() );
 
  170  resultFields.
append( 
QgsField( QStringLiteral( 
"n" ), QMetaType::Type::Int ) );
 
  171  resultFields.
append( 
QgsField( QStringLiteral( 
"distance" ), QMetaType::Type::Double ) );
 
  172  resultFields.
append( 
QgsField( QStringLiteral( 
"feature_x" ), QMetaType::Type::Double ) );
 
  173  resultFields.
append( 
QgsField( QStringLiteral( 
"feature_y" ), QMetaType::Type::Double ) );
 
  174  resultFields.
append( 
QgsField( QStringLiteral( 
"nearest_x" ), QMetaType::Type::Double ) );
 
  175  resultFields.
append( 
QgsField( QStringLiteral( 
"nearest_y" ), QMetaType::Type::Double ) );
 
  179  std::unique_ptr<QgsFeatureSink> sink( parameterAsSink( parameters, QStringLiteral( 
"OUTPUT" ), context, dest, outFields, input->wkbType(), input->sourceCrs(), 
QgsFeatureSink::RegeneratePrimaryKey ) );
 
  180  if ( parameters.value( QStringLiteral( 
"OUTPUT" ) ).isValid() && !sink )
 
  183  QString destNonMatching1;
 
  184  std::unique_ptr<QgsFeatureSink> sinkNonMatching1( parameterAsSink( parameters, QStringLiteral( 
"NON_MATCHING" ), context, destNonMatching1, input->fields(), input->wkbType(), input->sourceCrs(), 
QgsFeatureSink::RegeneratePrimaryKey ) );
 
  185  if ( parameters.value( QStringLiteral( 
"NON_MATCHING" ) ).isValid() && !sinkNonMatching1 )
 
  190  QHash<QgsFeatureId, QgsAttributes> input2AttributeCache;
 
  191  double step = input2->featureCount() > 0 ? 50.0 / input2->featureCount() : 1;
 
  205    for ( 
int field2Index : fields2Indices )
 
  207      attributes << f.
attribute( field2Index );
 
  209    input2AttributeCache.insert( f.
id(), attributes );
 
  217  nullMatch.reserve( fields2Indices.size() + 6 );
 
  218  for ( 
int i = 0; i < fields2Indices.count() + 6; ++i )
 
  219    nullMatch << QVariant();
 
  221  long long joinedCount = 0;
 
  222  long long unjoinedCount = 0;
 
  225  step = input->featureCount() > 0 ? 50.0 / input->featureCount() : 1;
 
  238    if ( !f.hasGeometry() )
 
  241      if ( sinkNonMatching1 )
 
  244          throw QgsProcessingException( writeFeatureError( sinkNonMatching1.get(), parameters, QStringLiteral( 
"NON_MATCHING" ) ) );
 
  246      if ( sink && !discardNonMatching )
 
  249        attr.append( nullMatch );
 
  250        f.setAttributes( attr );
 
  261      const double searchDistance = std::isnan( maxDistance ) ? 0 : std::max( std::numeric_limits<double>::min(), maxDistance );
 
  262      const QList<QgsFeatureId> nearest = index.nearestNeighbor( f.geometry(), neighbors + ( sameSourceAndTarget ? 1 : 0 ), searchDistance );
 
  264      if ( nearest.count() > neighbors + ( sameSourceAndTarget ? 1 : 0 ) )
 
  266        feedback->
pushInfo( QObject::tr( 
"Multiple matching features found at same distance from search feature, found %n feature(s) instead of %1", 
nullptr, nearest.count() - ( sameSourceAndTarget ? 1 : 0 ) ).arg( neighbors ) );
 
  273        if ( sameSourceAndTarget && 
id == f.id() )
 
  279          attr.append( input2AttributeCache.value( 
id ) );
 
  285            attr.append( line->length() );
 
  286            attr.append( line->startPoint().x() );
 
  287            attr.append( line->startPoint().y() );
 
  288            attr.append( line->endPoint().x() );
 
  289            attr.append( line->endPoint().y() );
 
  293            attr.append( QVariant() ); 
 
  294            attr.append( QVariant() ); 
 
  295            attr.append( QVariant() ); 
 
  296            attr.append( QVariant() ); 
 
  297            attr.append( QVariant() ); 
 
  308        if ( sinkNonMatching1 )
 
  311            throw QgsProcessingException( writeFeatureError( sinkNonMatching1.get(), parameters, QStringLiteral( 
"NON_MATCHING" ) ) );
 
  313        if ( !discardNonMatching && sink )
 
  316          attr.append( nullMatch );
 
  317          f.setAttributes( attr );
 
  327  outputs.insert( QStringLiteral( 
"JOINED_COUNT" ), joinedCount );
 
  328  outputs.insert( QStringLiteral( 
"UNJOINABLE_COUNT" ), unjoinedCount );
 
  332    outputs.insert( QStringLiteral( 
"OUTPUT" ), dest );
 
  334  if ( sinkNonMatching1 )
 
  336    sinkNonMatching1->finalize();
 
  337    outputs.insert( QStringLiteral( 
"NON_MATCHING" ), destNonMatching1 );
 
@ VectorAnyGeometry
Any vector layer with geometry.
 
@ RegeneratesPrimaryKey
Algorithm always drops any existing primary keys or FID values and regenerates them in outputs.
 
QFlags< ProcessingAlgorithmDocumentationFlag > ProcessingAlgorithmDocumentationFlags
Flags describing algorithm behavior for documentation purposes.
 
Wrapper for iterator of features from vector data provider or vector layer.
 
bool nextFeature(QgsFeature &f)
Fetch next feature and stores in f, returns true on success.
 
Wraps a request for features to a vector layer (or directly its vector data provider).
 
QgsFeatureRequest & setSubsetOfAttributes(const QgsAttributeList &attrs)
Set a subset of attributes that will be fetched.
 
@ FastInsert
Use faster inserts, at the cost of updating the passed features to reflect changes made at the provid...
 
@ RegeneratePrimaryKey
This flag indicates, that a primary key field cannot be guaranteed to be unique and the sink should i...
 
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.
 
bool hasGeometry() const
Returns true if the feature has an associated geometry.
 
Q_INVOKABLE QVariant attribute(const QString &name) const
Lookup attribute value by attribute name.
 
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.
 
Q_INVOKABLE int lookupField(const QString &fieldName) const
Looks up field's index from the field name.
 
bool rename(int fieldIdx, const QString &name)
Renames a name of field.
 
A geometry is the spatial representation of a feature.
 
const QgsAbstractGeometry * constGet() const
Returns a non-modifiable (const) reference to the underlying abstract geometry primitive.
 
QgsGeometry shortestLine(const QgsGeometry &other) const
Returns the shortest line joining this geometry to another geometry.
 
Line string geometry type, with support for z-dimension and m-values.
 
Contains information about the context in which a processing algorithm is executed.
 
QgsCoordinateTransformContext transformContext() const
Returns the coordinate transform context.
 
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.
 
A numeric output for processing algorithms.
 
A boolean parameter for processing algorithms.
 
A double numeric parameter for distance values.
 
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 numeric parameter for processing algorithms.
 
A string parameter for processing algorithms.
 
static QgsFields combineFields(const QgsFields &fieldsA, const QgsFields &fieldsB, const QString &fieldsBPrefix=QString())
Combines two field lists, avoiding duplicate field names (in a case-insensitive manner).
 
A spatial index for QgsFeature objects.
 
@ FlagStoreFeatureGeometries
Indicates that the spatial index should also store feature geometries. This requires more memory,...
 
qint64 QgsFeatureId
64 bit feature ids negative numbers are used for uncommitted/newly added features
 
QList< int > QgsAttributeList