QGIS API Documentation  3.10.0-A Coruña (6c816b4204)
qgsclassificationmethod.h
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1 /***************************************************************************
2  qgsclassificationmethod.h
3  ---------------------
4  begin : September 2019
5  copyright : (C) 2019 by Denis Rouzaud
6  email : [email protected]
7  ***************************************************************************
8  * *
9  * This program is free software; you can redistribute it and/or modify *
10  * it under the terms of the GNU General Public License as published by *
11  * the Free Software Foundation; either version 2 of the License, or *
12  * (at your option) any later version. *
13  * *
14  ***************************************************************************/
15 
16 #ifndef QGSCLASSIFICATIONMETHOD_H
17 #define QGSCLASSIFICATIONMETHOD_H
18 
19 #include <QIcon>
20 
21 #include "qgis_sip.h"
22 #include "qgis_core.h"
24 
25 class QgsVectorLayer;
26 class QgsRendererRange;
27 
28 
29 #ifdef SIP_RUN
30 // This is required for the ConvertToSubClassCode to work properly
31 // so RTTI for casting is available in the whole module.
32 % ModuleCode
34 #include "qgsclassificationjenks.h"
38 % End
39 #endif
40 
41 
42 
48 class CORE_EXPORT QgsClassificationRange
49 {
50  public:
52  QgsClassificationRange( const QString &label, double lowerBound, double upperBound )
53  : mLabel( label )
54  , mLowerBound( lowerBound )
55  , mUpperBound( upperBound )
56  {}
58  double lowerBound() const {return mLowerBound;}
60  double upperBound() const {return mUpperBound;}
61 
63  QString label() const {return mLabel;}
64 
65 #ifdef SIP_RUN
66  SIP_PYOBJECT __repr__();
67  % MethodCode
68  QString str = QStringLiteral( "<QgsClassificationRange: '%1'>" ).arg( sipCpp->label() );
69  sipRes = PyUnicode_FromString( str.toUtf8().constData() );
70  % End
71 #endif
72 
73  private:
74  QString mLabel;
75  double mLowerBound;
76  double mUpperBound;
77 };
78 
79 
80 
88 {
89 
90 #ifdef SIP_RUN
92  if ( dynamic_cast<QgsClassificationEqualInterval *>( sipCpp ) )
93  sipType = sipType_QgsClassificationEqualInterval;
94  else if ( dynamic_cast<QgsClassificationJenks *>( sipCpp ) )
95  sipType = sipType_QgsClassificationJenks;
96  else if ( dynamic_cast<QgsClassificationPrettyBreaks *>( sipCpp ) )
97  sipType = sipType_QgsClassificationPrettyBreaks;
98  else if ( dynamic_cast<QgsClassificationQuantile *>( sipCpp ) )
99  sipType = sipType_QgsClassificationQuantile;
100  else if ( dynamic_cast<QgsClassificationStandardDeviation *>( sipCpp ) )
101  sipType = sipType_QgsClassificationStandardDeviation;
102  else
103  sipType = 0;
104  SIP_END
105 #endif
106 
107  public:
108 
111  {
112  NoFlag = 0,
113  ValuesNotRequired = 1 << 1,
114  SymmetricModeAvailable = 1 << 2,
115  };
116  Q_DECLARE_FLAGS( MethodProperties, MethodProperty )
117 
118 
119 
121  {
124  UpperBound
125  };
126 
132  explicit QgsClassificationMethod( MethodProperties properties = NoFlag, int codeComplexity = 1 );
133 
134  virtual ~QgsClassificationMethod() = default;
135 
140  virtual QgsClassificationMethod *clone() const = 0 SIP_FACTORY;
141 
143  virtual QString name() const = 0;
144 
146  virtual QString id() const = 0;
147 
149  virtual QIcon icon() const {return QIcon();}
150 
154  virtual QString labelForRange( double lowerValue, double upperValue, ClassPosition position = Inner ) const;
155 
156 
158  virtual void writeXml( QDomElement &element, const QgsReadWriteContext &context ) const {Q_UNUSED( element ); Q_UNUSED( context )}
160  virtual void readXml( const QDomElement &element, const QgsReadWriteContext &context ) {Q_UNUSED( element ); Q_UNUSED( context )}
161 
162  // *******************
163  // non-virtual methods
164 
169  bool valuesRequired() const {return !mFlags.testFlag( ValuesNotRequired );}
170 
172  int codeComplexity() const {return mCodeComplexity;}
173 
177  bool symmetricModeAvailable() const {return mFlags.testFlag( SymmetricModeAvailable );}
178 
182  bool symmetricModeEnabled() const {return symmetricModeAvailable() && mSymmetricEnabled;}
183 
187  double symmetryPoint() const {return mSymmetryPoint;}
188 
193  bool symmetryAstride() const {return mSymmetryAstride;}
194 
202  void setSymmetricMode( bool enabled, double symmetryPoint = 0, bool symmetryAstride = false );
203 
204  // Label properties
206  QString labelFormat() const { return mLabelFormat; }
208  void setLabelFormat( const QString &format ) { mLabelFormat = format; }
210  int labelPrecision() const { return mLabelPrecision; }
212  void setLabelPrecision( int labelPrecision );
214  bool labelTrimTrailingZeroes() const { return mLabelTrimTrailingZeroes; }
216  void setLabelTrimTrailingZeroes( bool trimTrailingZeroes ) { mLabelTrimTrailingZeroes = trimTrailingZeroes; }
217 
219  static QList<double> rangesToBreaks( const QList<QgsClassificationRange> &classes );
220 
227  QList<QgsClassificationRange> classes( const QgsVectorLayer *layer, const QString &expression, int nclasses );
228 
234  QList<QgsClassificationRange> classes( const QList<double> &values, int nclasses );
235 
243  QList<QgsClassificationRange> classes( double minimum, double maximum, int nclasses );
244 
250  QDomElement save( QDomDocument &doc, const QgsReadWriteContext &context ) const;
251 
257  static QgsClassificationMethod *create( const QDomElement &element, const QgsReadWriteContext &context ) SIP_FACTORY;
258 
266  static void makeBreaksSymmetric( QList<double> &breaks SIP_INOUT, double symmetryPoint, bool astride );
267 
271  QString labelForRange( const QgsRendererRange &range, ClassPosition position = Inner ) const;
272 
273 
274 
275  static const int MAX_PRECISION;
276  static const int MIN_PRECISION;
277 
278  protected:
279 
281  void copyBase( QgsClassificationMethod *c ) const;
282 
284  QString formatNumber( double value ) const;
285 
286  private:
287 
293  virtual QList<double> calculateBreaks( double minimum, double maximum,
294  const QList<double> &values, int nclasses ) = 0;
295 
297  virtual QString valueToLabel( double value ) const {return formatNumber( value );}
298 
299 
301  QList<QgsClassificationRange> breaksToClasses( const QList<double> &breaks ) const;
302 
303  // implementation properties (set by initialization)
304  MethodProperties mFlags = nullptr;
305  int mCodeComplexity = 1;
306 
307  // parameters (set by setters)
308  // if some are added here, they should be handled in the clone method
309  bool mSymmetricEnabled = false;
310  double mSymmetryPoint = 0;
311  bool mSymmetryAstride = false;
312  int mLabelPrecision = 4;
313  bool mLabelTrimTrailingZeroes = true;
314  QString mLabelFormat;
315 
316 
317  // values used to manage number formatting - precision and trailing zeroes
318  double mLabelNumberScale = 1.0;
319  QString mLabelNumberSuffix;
320 };
321 
322 Q_DECLARE_OPERATORS_FOR_FLAGS( QgsClassificationMethod::MethodProperties )
323 
324 #endif // QGSCLASSIFICATIONMETHOD_H
The class is used as a container of context for various read/write operations on other objects...
double lowerBound() const
Returns the lower bound.
virtual QIcon icon() const
The icon of the method.
bool symmetricModeAvailable() const
Returns if the method supports symmetric calculation.
QString label() const
Returns the lower bound.
int codeComplexity() const
Code complexity as the exponent in Big O notation.
bool symmetryAstride() const
Returns if the symmetric mode is astride if true, it will remove the symmetry point break so that the...
QgsClassificationRange contains the information about a classification range.
virtual void writeXml(QDomElement &element, const QgsReadWriteContext &context) const
Writes extra information about the method.
#define SIP_INOUT
Definition: qgis_sip.h:71
The class is not at a bound.
double upperBound() const
Returns the upper bound.
bool valuesRequired() const
Returns if the method requires values to calculate the classes If not, bounds are sufficient...
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
The class is at the lower bound.
#define SIP_ABSTRACT
Definition: qgis_sip.h:194
double symmetryPoint() const
Returns the symmetry point for symmetric mode.
int labelPrecision() const
Returns the precision for the formatting of the labels.
MethodProperty
Flags for the classification method.
void setLabelFormat(const QString &format)
Defines the format of the labels for the classes, using %1 and %2 for the bounds. ...
bool labelTrimTrailingZeroes() const
Returns if the trailing 0 are trimmed in the label.
#define SIP_END
Definition: qgis_sip.h:189
#define SIP_FACTORY
Definition: qgis_sip.h:76
bool symmetricModeEnabled() const
Returns if the symmetric mode is enabled.
virtual void readXml(const QDomElement &element, const QgsReadWriteContext &context)
Reads extra information to apply it to the method.
QString labelFormat() const
Returns the format of the label for the classes.
#define SIP_CONVERT_TO_SUBCLASS_CODE(code)
Definition: qgis_sip.h:172
QgsClassificationRange(const QString &label, double lowerBound, double upperBound)
Constructor.
ClassPosition
Defines the class position.
void setLabelTrimTrailingZeroes(bool trimTrailingZeroes)
Defines if the trailing 0 are trimmed in the label.
Represents a vector layer which manages a vector based data sets.
QgsClassificationMethod is an abstract class for implementations of classification methods...