26QString QgsRandomPointsOnLinesAlgorithm::name()
 const 
   28  return QStringLiteral( 
"randompointsonlines" );
 
   31QString QgsRandomPointsOnLinesAlgorithm::displayName()
 const 
   33  return QObject::tr( 
"Random points on lines" );
 
   36QStringList QgsRandomPointsOnLinesAlgorithm::tags()
 const 
   38  return QObject::tr( 
"seed,attributes,create" ).split( 
',' );
 
   41QString QgsRandomPointsOnLinesAlgorithm::group()
 const 
   43  return QObject::tr( 
"Vector creation" );
 
   46QString QgsRandomPointsOnLinesAlgorithm::groupId()
 const 
   48  return QStringLiteral( 
"vectorcreation" );
 
   51void QgsRandomPointsOnLinesAlgorithm::initAlgorithm( 
const QVariantMap & )
 
   55  numberPointsParam->setIsDynamic( 
true );
 
   57  numberPointsParam->setDynamicLayerParameterName( QStringLiteral( 
"INPUT" ) );
 
   58  addParameter( numberPointsParam.release() );
 
   60  auto minDistParam = std::make_unique<QgsProcessingParameterDistance>( MIN_DISTANCE, QObject::tr( 
"Minimum distance between points" ), 0, INPUT, 
true, 0 );
 
   61  minDistParam->setIsDynamic( 
true );
 
   63  minDistParam->setDynamicLayerParameterName( QStringLiteral( 
"INPUT" ) );
 
   64  addParameter( minDistParam.release() );
 
   66  auto minDistGlobalParam = std::make_unique<QgsProcessingParameterDistance>( MIN_DISTANCE_GLOBAL, QObject::tr( 
"Global minimum distance between points" ), 0, INPUT, 
true, 0 );
 
   68  addParameter( minDistGlobalParam.release() );
 
   70  auto maxAttemptsParam = std::make_unique<QgsProcessingParameterNumber>( MAX_TRIES_PER_POINT, QObject::tr( 
"Maximum number of search attempts (for Min. dist. > 0)" ), 
Qgis::ProcessingNumberParameterType::Integer, 10, 
true, 1 );
 
   72  maxAttemptsParam->setIsDynamic( 
true );
 
   74  maxAttemptsParam->setDynamicLayerParameterName( QStringLiteral( 
"INPUT" ) );
 
   75  addParameter( maxAttemptsParam.release() );
 
   79  addParameter( randomSeedParam.release() );
 
   81  auto includeLineAttrParam = std::make_unique<QgsProcessingParameterBoolean>( INCLUDE_LINE_ATTRIBUTES, QObject::tr( 
"Include line attributes" ), 
true );
 
   83  addParameter( includeLineAttrParam.release() );
 
   89  addOutput( 
new QgsProcessingOutputNumber( LINES_WITH_MISSED_POINTS, QObject::tr( 
"Number of features with missed points" ) ) );
 
   90  addOutput( 
new QgsProcessingOutputNumber( FEATURES_WITH_EMPTY_OR_NO_GEOMETRY, QObject::tr( 
"Number of features with empty or no geometry" ) ) );
 
   93QString QgsRandomPointsOnLinesAlgorithm::shortHelpString()
 const 
   95  return QObject::tr( 
"<p>This algorithm creates a point layer with points placed randomly " 
   96                      "on the lines of the <i>Input line layer</i>. " 
   97                      "The default behavior is that the generated point features inherit " 
   98                      "the attributes of the line feature on which they were generated.</p>" 
   99                      "<p>Parameters / options:</p> " 
  101                      "<li>For each feature in the <i><b>Input line layer</b></i>, the " 
  102                      "algorithm attempts to add the specified <i><b>Number of points for " 
  103                      "each feature</b></i> to the output layer.</li> " 
  104                      "<li>A <i><b>Minimum distance between points</b></i> and a " 
  105                      "<i><b>Global minimum distance between points</b></i> can be specified. " 
  106                      "A point will not be added if there is an already generated point within " 
  107                      "this (Euclidean) distance from the generated location. " 
  108                      "With <i>Minimum distance between points</i>, only points on the same " 
  109                      "line feature are considered, while for <i>Global minimum distance " 
  110                      "between points</i> all previously generated points are considered. " 
  111                      "If the <i>Global minimum distance between points</i> is set larger " 
  112                      "than the (local) <i>Minimum distance between points</i>, the latter " 
  113                      "has no effect.<br> " 
  114                      "If the <i>Minimum distance between points</i> is too large, " 
  115                      "it may not be possible to generate the specified <i>Number of points " 
  116                      "for each feature</i>.</li> " 
  117                      "<li>The <i><b>Maximum number of attempts per point</b></i> " 
  118                      "is only relevant if <i>Minimum distance between points</i> or <i>Global " 
  119                      "minimum distance between points</i> is greater than 0. " 
  120                      "The total number of points will be<br> <b>number of input features</b> * " 
  121                      "<b>Number of points for each feature</i><br> if there are no " 
  122                      "misses and all features have proper geometries.</li> " 
  123                      "<li>The seed for the random generator can be provided (<i>Random seed</i> " 
  124                      "- integer, greater than 0).</li> " 
  125                      "<li>The user can choose not to <i><b>Include line feature attributes</b></i> " 
  126                      "in the generated point features.</li> " 
  128                      "<p>Output from the algorithm:</p> " 
  130                      "<li> A point layer containing the random points (<code>OUTPUT</code>).</li> " 
  131                      "<li> The number of generated features (<code>POINTS_GENERATED</code>).</li> " 
  132                      "<li> The number of missed points (<code>POINTS_MISSED</code>).</li> " 
  133                      "<li> The number of features with non-empty geometry and missing points " 
  134                      "(<code>LINES_WITH_MISSED_POINTS</code>).</li> " 
  135                      "<li> The number of features with an empty or no geometry " 
  136                      "(<code>LINES_WITH_EMPTY_OR_NO_GEOMETRY</code>).</li> " 
  141QString QgsRandomPointsOnLinesAlgorithm::shortDescription()
 const 
  143  return QObject::tr( 
"Creates a point layer with points placed randomly on the lines of an input layer." );
 
  146QgsRandomPointsOnLinesAlgorithm *QgsRandomPointsOnLinesAlgorithm::createInstance()
 const 
  148  return new QgsRandomPointsOnLinesAlgorithm();
 
  153  mNumPoints = parameterAsInt( parameters, POINTS_NUMBER, context );
 
  155  if ( mDynamicNumPoints )
 
  156    mNumPointsProperty = parameters.value( POINTS_NUMBER ).value<
QgsProperty>();
 
  158  mMinDistance = parameterAsDouble( parameters, MIN_DISTANCE, context );
 
  160  if ( mDynamicMinDistance )
 
  161    mMinDistanceProperty = parameters.value( MIN_DISTANCE ).value<
QgsProperty>();
 
  163  mMaxAttempts = parameterAsInt( parameters, MAX_TRIES_PER_POINT, context );
 
  165  if ( mDynamicMaxAttempts )
 
  166    mMaxAttemptsProperty = parameters.value( MAX_TRIES_PER_POINT ).value<
QgsProperty>();
 
  168  mMinDistanceGlobal = parameterAsDouble( parameters, MIN_DISTANCE_GLOBAL, context );
 
  170  mUseRandomSeed = parameters.value( SEED ).isValid();
 
  171  mRandSeed = parameterAsInt( parameters, SEED, context );
 
  172  mIncludeLineAttr = parameterAsBoolean( parameters, INCLUDE_LINE_ATTRIBUTES, context );
 
  178  std::unique_ptr<QgsProcessingFeatureSource> lineSource( parameterAsSource( parameters, INPUT, context ) );
 
  183  fields.
append( 
QgsField( QStringLiteral( 
"rand_point_id" ), QMetaType::Type::LongLong ) );
 
  184  if ( mIncludeLineAttr )
 
  185    fields.
extend( lineSource->fields() );
 
  188  std::unique_ptr<QgsFeatureSink> sink( parameterAsSink( parameters, OUTPUT, context, ldest, fields, 
Qgis::WkbType::Point, lineSource->sourceCrs() ) );
 
  192  QgsExpressionContext expressionContext = createExpressionContext( parameters, context, lineSource.get() );
 
  195  std::random_device rd;
 
  196  std::mt19937 mt( !mUseRandomSeed ? rd() : mRandSeed );
 
  197  std::uniform_real_distribution<> uniformDist( 0, 1 );
 
  203  int missedPoints = 0;
 
  205  int emptyOrNullGeom = 0;
 
  207  const long numberOfFeatures = lineSource->featureCount();
 
  208  long long desiredNumberOfPoints = 0;
 
  209  const double featureProgressStep = 100.0 / ( numberOfFeatures > 0 ? numberOfFeatures : 1 );
 
  210  double baseFeatureProgress = 0.0;
 
  212  QgsFeatureIterator fitL = mIncludeLineAttr || mDynamicNumPoints || mDynamicMinDistance || mDynamicMaxAttempts ? lineSource->getFeatures()
 
  225      baseFeatureProgress += featureProgressStep;
 
  230    if ( lGeom.isEmpty() )
 
  234      baseFeatureProgress += featureProgressStep;
 
  239    if ( mDynamicNumPoints || mDynamicMinDistance || mDynamicMaxAttempts )
 
  244    const double lineLength = lGeom.length();
 
  245    int pointsAddedForThisFeature = 0;
 
  247    int numberPointsForThisFeature = mNumPoints;
 
  248    if ( mDynamicNumPoints )
 
  249      numberPointsForThisFeature = mNumPointsProperty.valueAsInt( expressionContext, numberPointsForThisFeature );
 
  250    desiredNumberOfPoints += numberPointsForThisFeature;
 
  252    int maxAttemptsForThisFeature = mMaxAttempts;
 
  253    if ( mDynamicMaxAttempts )
 
  254      maxAttemptsForThisFeature = mMaxAttemptsProperty.
valueAsInt( expressionContext, maxAttemptsForThisFeature );
 
  256    double minDistanceForThisFeature = mMinDistance;
 
  257    if ( mDynamicMinDistance )
 
  258      minDistanceForThisFeature = mMinDistanceProperty.
valueAsDouble( expressionContext, minDistanceForThisFeature );
 
  260    const double pointProgressIncrement = featureProgressStep / ( numberPointsForThisFeature * maxAttemptsForThisFeature );
 
  262    double pointProgress = 0.0;
 
  265    for ( 
long pointIndex = 0; pointIndex < numberPointsForThisFeature; pointIndex++ )
 
  272      int distCheckIterations = 0;
 
  273      while ( distCheckIterations < maxAttemptsForThisFeature )
 
  280        const double randPos = lineLength * uniformDist( mt );
 
  282        distCheckIterations++;
 
  283        pointProgress += pointProgressIncrement;
 
  287          if ( ( minDistanceForThisFeature != 0 ) || ( mMinDistanceGlobal != 0 ) )
 
  291            if ( ( minDistanceForThisFeature != 0 ) && ( pointsAddedForThisFeature > 0 ) )
 
  293              const QList<QgsFeatureId> neighbors = localIndex.
nearestNeighbor( rpGeom, 1, minDistanceForThisFeature );
 
  294              if ( !neighbors.empty() )
 
  296                feedback->
setProgress( baseFeatureProgress + pointProgress );
 
  301            if ( ( mMinDistanceGlobal != 0 ) && ( totNPoints > 0 ) )
 
  303              const QList<QgsFeatureId> neighbors = index.
nearestNeighbor( rpGeom, 1, mMinDistanceGlobal );
 
  304              if ( !neighbors.empty() )
 
  306                feedback->
setProgress( baseFeatureProgress + pointProgress );
 
  314          pAttrs.append( totNPoints );
 
  315          if ( mIncludeLineAttr )
 
  322          if ( mMinDistanceGlobal != 0 )
 
  327          if ( minDistanceForThisFeature != 0 )
 
  335          pointsAddedForThisFeature++;
 
  336          pointProgress += pointProgressIncrement * ( maxAttemptsForThisFeature - distCheckIterations );
 
  341          feedback->
setProgress( baseFeatureProgress + pointProgress );
 
  344      feedback->
setProgress( baseFeatureProgress + pointProgress );
 
  346    baseFeatureProgress += featureProgressStep;
 
  347    if ( pointsAddedForThisFeature < numberPointsForThisFeature )
 
  353  missedPoints = desiredNumberOfPoints - totNPoints;
 
  354  feedback->
pushInfo( QObject::tr( 
"Total number of points generated: " 
  355                                   " %1\nNumber of missed points: %2\nFeatures with missing points: " 
  356                                   " %3\nFeatures with empty or missing geometries: %4" 
  361                        .arg( emptyOrNullGeom ) );
 
  366  outputs.insert( OUTPUT, ldest );
 
  367  outputs.insert( OUTPUT_POINTS, totNPoints );
 
  368  outputs.insert( POINTS_MISSED, missedPoints );
 
  369  outputs.insert( LINES_WITH_MISSED_POINTS, missedLines );
 
  370  outputs.insert( FEATURES_WITH_EMPTY_OR_NO_GEOMETRY, emptyOrNullGeom );
 
@ VectorPoint
Vector point layers.
 
@ VectorLine
Vector line layers.
 
@ Advanced
Parameter is an advanced parameter which should be hidden from users by default.
 
Expression contexts are used to encapsulate the parameters around which a QgsExpression should be eva...
 
void setFeature(const QgsFeature &feature)
Convenience function for setting a feature for the context.
 
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 & setNoAttributes()
Set that no attributes will be fetched.
 
@ 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.
 
bool hasGeometry() const
Returns true if the feature has an associated geometry.
 
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.
 
void extend(const QgsFields &other)
Extends with fields from another QgsFields container.
 
A geometry is the spatial representation of a feature.
 
bool isEmpty() const
Returns true if the geometry is empty (eg a linestring with no vertices, or a collection with no geom...
 
Contains information about the context in which a processing algorithm is 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.
 
A numeric output for processing algorithms.
 
A feature sink output for processing algorithms.
 
An input feature source (such as vector layers) parameter for processing algorithms.
 
static bool isDynamic(const QVariantMap ¶meters, const QString &name)
Returns true if the parameter with matching name is a dynamic parameter, and must be evaluated once f...
 
Definition for a property.
 
@ IntegerPositiveGreaterZero
Non-zero positive integer values.
 
@ IntegerPositive
Positive integer values (including 0)
 
@ DoublePositive
Positive double value (including 0)
 
A store for object properties.
 
double valueAsDouble(const QgsExpressionContext &context, double defaultValue=0.0, bool *ok=nullptr) const
Calculates the current value of the property and interprets it as a double.
 
int valueAsInt(const QgsExpressionContext &context, int defaultValue=0, bool *ok=nullptr) const
Calculates the current value of the property and interprets it as an integer.
 
A spatial index for QgsFeature objects.
 
QList< QgsFeatureId > nearestNeighbor(const QgsPointXY &point, int neighbors=1, double maxDistance=0) const
Returns nearest neighbors to a point.
 
bool addFeature(QgsFeature &feature, QgsFeatureSink::Flags flags=QgsFeatureSink::Flags()) override
Adds a feature to the index.