18 #ifndef QGSRECTANGLE_H 19 #define QGSRECTANGLE_H 21 #include "qgis_core.h" 23 #include <QDomDocument> 48 explicit QgsRectangle(
double xMin,
double yMin = 0,
double xMax = 0,
double yMax = 0 )
66 mXmin = qRectF.topLeft().x();
67 mYmin = qRectF.topLeft().y();
68 mXmax = qRectF.bottomRight().x();
69 mYmax = qRectF.bottomRight().y();
117 void set(
double xMin,
double yMin,
double xMax,
double yMax )
152 mXmin = std::numeric_limits<double>::max();
153 mYmin = std::numeric_limits<double>::max();
154 mXmax = -std::numeric_limits<double>::max();
155 mYmax = -std::numeric_limits<double>::max();
188 std::swap( mXmin, mXmax );
192 std::swap( mYmin, mYmax );
201 double width()
const {
return mXmax - mXmin; }
208 double height()
const {
return mYmax - mYmin; }
217 double area()
const {
return ( mXmax - mXmin ) * ( mYmax - mYmin ); }
224 double perimeter()
const {
return 2 * ( mXmax - mXmin ) + 2 * ( mYmax - mYmin ); }
237 double centerX, centerY;
245 centerX = mXmin + width() / 2;
246 centerY = mYmin + height() / 2;
248 scale( scaleFactor, centerX, centerY );
254 void scale(
double scaleFactor,
double centerX,
double centerY )
256 double newWidth = width() * scaleFactor;
257 double newHeight = height() * scaleFactor;
258 mXmin = centerX - newWidth / 2.0;
259 mXmax = centerX + newWidth / 2.0;
260 mYmin = centerY - newHeight / 2.0;
261 mYmax = centerY + newHeight / 2.0;
281 if ( p.
x() < xMinimum() )
282 setXMinimum( p.
x() );
283 else if ( p.
x() > xMaximum() )
284 setXMaximum( p.
x() );
285 if ( p.
y() < yMinimum() )
286 setYMinimum( p.
y() );
287 if ( p.
y() > yMaximum() )
288 setYMaximum( p.
y() );
299 return QgsRectangle( mXmin - width, mYmin - width, mXmax + width, mYmax + width );
308 if ( intersects( rect ) )
323 double x1 = ( mXmin > rect.mXmin ? mXmin : rect.mXmin );
324 double x2 = ( mXmax < rect.mXmax ? mXmax : rect.mXmax );
327 double y1 = ( mYmin > rect.mYmin ? mYmin : rect.mYmin );
328 double y2 = ( mYmax < rect.mYmax ? mYmax : rect.mYmax );
337 return ( rect.mXmin >= mXmin && rect.mXmax <= mXmax && rect.mYmin >= mYmin && rect.mYmax <= mYmax );
345 return mXmin <= p.
x() && p.
x() <= mXmax &&
346 mYmin <= p.
y() && p.
y() <= mYmax;
356 else if ( !rect.
isNull() )
358 mXmin = std::min( mXmin, rect.
xMinimum() );
359 mXmax = std::max( mXmax, rect.
xMaximum() );
360 mYmin = std::min( mYmin, rect.
yMinimum() );
361 mYmax = std::max( mYmax, rect.
yMaximum() );;
374 mXmin = ( ( mXmin < x ) ? mXmin : x );
375 mXmax = ( ( mXmax > x ) ? mXmax : x );
377 mYmin = ( ( mYmin < y ) ? mYmin : y );
378 mYmax = ( ( mYmax > y ) ? mYmax : y );
388 combineExtentWith( point.
x(), point.
y() );
440 QString asWktCoordinates()
const;
445 QString asWktPolygon()
const;
452 return QRectF( static_cast< qreal >( mXmin ), static_cast< qreal >( mYmin ), static_cast< qreal >( mXmax - mXmin ), static_cast< qreal >( mYmax - mYmin ) );
460 QString toString(
int precision = 16 )
const;
465 QString asPolygon()
const;
485 return ( !
operator==( r1 ) );
511 if ( std::isinf( mXmin ) || std::isinf( mYmin ) || std::isinf( mXmax ) || std::isinf( mYmax ) )
515 if ( std::isnan( mXmin ) || std::isnan( mYmin ) || std::isnan( mXmax ) || std::isnan( mYmax ) )
527 std::swap( mXmin, mYmin );
528 std::swap( mXmax, mYmax );
536 QgsBox3d toBox3d(
double zMin,
double zMax )
const;
539 operator QVariant()
const 541 return QVariant::fromValue( *
this );
545 SIP_PYOBJECT __repr__();
547 QString str = QStringLiteral(
"<QgsRectangle: %1>" ).arg( sipCpp->asWktCoordinates() );
548 sipRes = PyUnicode_FromString( str.toUtf8().data() );
577 return os << r.
toString().toLocal8Bit().data();
582 #endif // QGSRECTANGLE_H QgsRectangle(const QgsPointXY &p1, const QgsPointXY &p2)
Construct a rectangle from two points. The rectangle is normalized after construction.
bool contains(const QgsRectangle &rect) const
Returns true when rectangle contains other rectangle.
A rectangle specified with double values.
void setMinimal()
Set a rectangle so that min corner is at max and max corner is at min.
QgsRectangle(const QRectF &qRectF)
Construct a rectangle from a QRectF. The rectangle is normalized after construction.
void setXMaximum(double x)
Set the maximum x value.
void combineExtentWith(const QgsPointXY &point)
Expands the rectangle so that it covers both the original rectangle and the given point...
A class to represent a 2D point.
void scale(double scaleFactor, const QgsPointXY *c=nullptr)
Scale the rectangle around its center point.
bool qgsDoubleNear(double a, double b, double epsilon=4 *std::numeric_limits< double >::epsilon())
Compare two doubles (but allow some difference)
void include(const QgsPointXY &p)
Updates the rectangle to include the specified point.
double perimeter() const
Returns the perimeter of the rectangle.
A 3-dimensional box composed of x, y, z coordinates.
Q_DECLARE_METATYPE(QModelIndex)
CORE_EXPORT QDataStream & operator<<(QDataStream &out, const QgsRectangle &rectangle)
Writes the list rectangle to stream out.
As part of the API refactoring and improvements which landed in the Processing API was substantially reworked from the x version This was done in order to allow much of the underlying Processing framework to be ported into c
QgsRectangle & operator=(const QgsRectangle &r1)
Assignment operator.
QgsRectangle buffered(double width) const
Gets rectangle enlarged by buffer.
void grow(double delta)
Grows the rectangle in place by the specified amount.
bool isEmpty() const
Returns true if the rectangle is empty.
double width() const
Returns the width of the rectangle.
void setYMinimum(double y)
Set the minimum y value.
bool contains(const QgsPointXY &p) const
Returns true when rectangle contains a point.
QgsRectangle intersect(const QgsRectangle &rect) const
Returns the intersection with the given rectangle.
QString toString(int precision=16) const
Returns a string representation of form xmin,ymin : xmax,ymax Coordinates will be truncated to the sp...
QDateTime operator+(const QDateTime &start, QgsInterval interval)
bool isFinite() const
Returns true if the rectangle has finite boundaries.
A class to represent a vector.
QgsInterval operator-(const QDateTime &dt1, const QDateTime &dt2)
Returns the interval between two datetimes.
double area() const
Returns the area of the rectangle.
double yMinimum() const
Returns the y minimum value (bottom side of rectangle).
double xMaximum() const
Returns the x maximum value (right side of rectangle).
QgsRectangle(double xMin, double yMin=0, double xMax=0, double yMax=0)
Constructor.
void combineExtentWith(const QgsRectangle &rect)
Expands the rectangle so that it covers both the original rectangle and the given rectangle...
bool operator==(const QgsRectangle &r1) const
Comparison operator.
QRectF toRectF() const
Returns a QRectF with same coordinates as the rectangle.
CORE_EXPORT QDataStream & operator>>(QDataStream &in, QgsRectangle &rectangle)
Reads a rectangle from stream in into rectangle.
void setYMaximum(double y)
Set the maximum y value.
bool isNull() const
Test if the rectangle is null (all coordinates zero or after call to setMinimal()).
double xMinimum() const
Returns the x minimum value (left side of rectangle).
void combineExtentWith(double x, double y)
Expands the rectangle so that it covers both the original rectangle and the given point...
double yMaximum() const
Returns the y maximum value (top side of rectangle).
QgsPointXY center() const
Returns the center point of the rectangle.
void normalize()
Normalize the rectangle so it has non-negative width/height.
QgsRectangle(const QgsRectangle &other)
Copy constructor.
bool operator!=(const QgsRectangle &r1) const
Comparison operator.
bool intersects(const QgsRectangle &rect) const
Returns true when rectangle intersects with other rectangle.
void scale(double scaleFactor, double centerX, double centerY)
Scale the rectangle around its center point.
void setXMinimum(double x)
Set the minimum x value.
void invert()
Swap x/y coordinates in the rectangle.
double height() const
Returns the height of the rectangle.