public abstract class AbstractRealMatrix extends RealLinearOperator implements RealMatrix
All the methods implemented here use getEntry(int, int)
to access matrix elements. Derived class can provide
faster implementations.
This class is up-to-date with commons-math 3.6.1.
Modifier | Constructor and Description |
---|---|
protected |
AbstractRealMatrix()
Creates a matrix with no data.
|
protected |
AbstractRealMatrix(int rowDimension,
int columnDimension)
Create a new RealMatrix with the supplied row and column dimensions.
|
Modifier and Type | Method and Description |
---|---|
RealMatrix |
add(RealMatrix m)
Returns the sum of
this and m . |
void |
addToEntry(int row,
int column,
double increment)
Adds (in place) the specified value to the specified entry of
this matrix. |
RealMatrix |
concatenateDiagonally(RealMatrix matrix,
boolean lowerRightMatrix)
Concatenate
this and matrix vertically. |
RealMatrix |
concatenateHorizontally(RealMatrix matrix)
Concatenate
this and matrix horizontally. |
RealMatrix |
concatenateHorizontally(RealMatrix matrix,
boolean rightMatrix)
Concatenate
this and matrix horizontally. |
RealMatrix |
concatenateVertically(RealMatrix matrix)
Concatenate
this and matrix vertically. |
RealMatrix |
concatenateVertically(RealMatrix matrix,
boolean lowerMatrix)
Concatenate
this and matrix vertically. |
abstract RealMatrix |
copy()
Returns a (deep) copy of this.
|
void |
copySubMatrix(int[] selectedRows,
int[] selectedColumns,
double[][] destination)
Copy a submatrix.
|
void |
copySubMatrix(int[] selectedRows,
int[] selectedColumns,
double[][] destination,
int startRowDest,
int startColumnDest)
Copy a submatrix.
|
void |
copySubMatrix(int startRow,
int endRow,
int startColumn,
int endColumn,
double[][] destination)
Copy a submatrix.
|
void |
copySubMatrix(int startRow,
int endRow,
int startColumn,
int endColumn,
double[][] destination,
int startRowDest,
int startColumnDest)
Copy a submatrix.
|
abstract RealMatrix |
createMatrix(int rowDimension,
int columnDimension)
Create a new RealMatrix of the same type as the instance with the
supplied
row and column dimensions.
|
boolean |
equals(Object object)
Returns true if
object is a RealMatrix instance with the same dimensions as this
and all corresponding matrix entries are strictly equal (0. thresholds). |
boolean |
equals(Object object,
double relativeThreshold,
double absoluteThreshold)
Returns true if
object is a RealMatrix instance with the same dimensions as this
and all corresponding matrix entries are equal. |
double[] |
getColumn(int column)
Get the entries at the given column index as an array.
|
abstract int |
getColumnDimension()
Returns the number of columns of this matrix.
|
RealMatrix |
getColumnMatrix(int column)
Get the entries at the given column index as a column matrix.
|
RealVector |
getColumnVector(int column)
Get the entries at the given column index as a vector.
|
double[][] |
getData()
Returns matrix entries as a two-dimensional array.
|
double[][] |
getData(boolean forceCopy)
Returns matrix entries as a two-dimensional array.
|
Function<RealMatrix,Decomposition> |
getDefaultDecomposition()
Returns default decomposition builder (used by #
RealMatrix.getInverse() method). |
abstract double |
getEntry(int row,
int column)
Get the entry in the specified row and column.
|
double |
getFrobeniusNorm()
Returns the
Frobenius norm of the matrix.
|
RealMatrix |
getInverse()
Get the inverse (or pseudo-inverse) of the decomposed matrix using the default decomposition.
|
RealMatrix |
getInverse(Function<RealMatrix,Decomposition> decompositionBuilder)
Get the inverse (or pseudo-inverse) matrix computed with the given decomposition algorithm.
|
double |
getMax()
Returns the maximum value of the matrix.
|
double |
getMin()
Returns the minimum value of the matrix.
|
double |
getNorm()
Returns the
maximum absolute row sum norm of the matrix.
|
double[] |
getRow(int row)
Get the entries at the given row index.
|
abstract int |
getRowDimension()
Returns the number of rows of this matrix.
|
RealMatrix |
getRowMatrix(int row)
Get the entries at the given row index as a row matrix.
|
RealVector |
getRowVector(int row)
Returns the entries in row number
row as a vector. |
RealMatrix |
getSubMatrix(int[] selectedRows,
int[] selectedColumns)
Gets a submatrix.
|
RealMatrix |
getSubMatrix(int startRow,
int endRow,
int startColumn,
int endColumn)
Gets a submatrix.
|
double |
getTrace()
Returns the trace of the matrix (the sum of the
elements on the main diagonal).
|
int |
hashCode()
Computes a hashcode for the matrix.
|
boolean |
isAntisymmetric(double relativeThreshold,
double absoluteThreshold)
Checks if this is a antisymmetric matrix
|
boolean |
isDiagonal(double threshold)
Given a threshold, is this a diagonal matrix?
|
boolean |
isInvertible(double threshold)
Given a threshold, is this an invertible matrix?
|
boolean |
isOrthogonal(double thresholdNorm,
double thresholdOrthogonality)
Given a threshold, is this an orthogonal matrix?
|
boolean |
isPositiveDefinite()
Test the positivity of a matrix.
|
boolean |
isSquare()
Is this a square matrix?
|
boolean |
isSymmetric()
Checks if this is a symmetric matrix
|
boolean |
isSymmetric(double relativeSymmetryThreshold)
Checks if this is a symmetric matrix
|
boolean |
isSymmetric(double relativeSymmetryThreshold,
double absoluteSymmetryThreshold)
Checks if this is a symmetric matrix
|
RealMatrix |
multiply(DiagonalMatrix m,
boolean toTranspose,
double d)
Returns the result of postmultiplying d × this × m (independently from the
toTranspose parameter value as we use diagonal matrix). |
RealMatrix |
multiply(RealMatrix m)
Returns the result of postmultiplying
this by m . |
RealMatrix |
multiply(RealMatrix m,
boolean toTranspose)
Returns the result of postmultiplying this × m (if
toTranspose = false )
or this × mT (if toTranspose = true ) |
RealMatrix |
multiply(RealMatrix m,
boolean toTranspose,
double d)
Returns the result of postmultiplying d × this × m (if
toTranspose = false
) or d × this × mT (if toTranspose = true ) |
void |
multiplyEntry(int row,
int column,
double factor)
Multiplies (in place) the specified entry of
this matrix by the
specified value. |
double[] |
operate(double[] v)
Returns the result of multiplying this by the vector
v . |
RealVector |
operate(RealVector v)
Returns the result of multiplying
this by the vector x . |
RealMatrix |
power(int p)
Returns the result of multiplying
this with itself p times. |
double[] |
preMultiply(double[] v)
Returns the (row) vector result of premultiplying this by the vector
v . |
RealMatrix |
preMultiply(RealMatrix m)
Returns the result of premultiplying
this by m . |
RealVector |
preMultiply(RealVector v)
Returns the (row) vector result of premultiplying this by the vector
v . |
RealMatrix |
scalarAdd(double d)
Returns the result of adding
d to each entry of this . |
RealMatrix |
scalarMultiply(double d)
Returns the result of multiplying each entry of
this by d . |
void |
setColumn(int column,
double[] array)
Sets the specified
column of this matrix to the entries
of the specified array . |
void |
setColumnMatrix(int column,
RealMatrix matrix)
Sets the specified
column of this matrix to the entries
of the specified column matrix . |
void |
setColumnVector(int column,
RealVector vector)
Sets the specified
column of this matrix to the entries
of the specified vector . |
void |
setDefaultDecomposition(Function<RealMatrix,Decomposition> defaultDecompositionBuilder)
Sets the default decomposition builder which will be used by the
getInverse() method to
compute the matrix inverse. |
abstract void |
setEntry(int row,
int column,
double value)
Set the entry in the specified row and column.
|
void |
setRow(int row,
double[] array)
Sets the specified
row of this matrix to the entries
of the specified array . |
void |
setRowMatrix(int row,
RealMatrix matrix)
Sets the specified
row of this matrix to the entries of
the specified row matrix . |
void |
setRowVector(int row,
RealVector vector)
Sets the specified
row of this matrix to the entries of
the specified vector . |
void |
setSubMatrix(double[][] subMatrix,
int row,
int column)
Replace the submatrix starting at
row, column using data in the
input subMatrix array. |
RealMatrix |
subtract(RealMatrix m)
Returns
this minus m . |
String |
toString()
Get a string representation for this matrix.
|
String |
toString(RealMatrixFormat realMatrixFormat)
Get a string representation for this matrix.
|
RealMatrix |
transpose()
Returns the transpose of this matrix.
|
RealMatrix |
transpose(boolean forceCopy)
Returns the transpose of this matrix.
|
double |
walkInColumnOrder(RealMatrixChangingVisitor visitor)
Visit (and possibly change) all matrix entries in column order.
|
double |
walkInColumnOrder(RealMatrixChangingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (and possibly change) some matrix entries in column order.
|
double |
walkInColumnOrder(RealMatrixPreservingVisitor visitor)
Visit (but don't change) all matrix entries in column order.
|
double |
walkInColumnOrder(RealMatrixPreservingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (but don't change) some matrix entries in column order.
|
double |
walkInOptimizedOrder(RealMatrixChangingVisitor visitor)
Visit (and possibly change) all matrix entries using the fastest possible order.
|
double |
walkInOptimizedOrder(RealMatrixChangingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (and possibly change) some matrix entries using the fastest possible order.
|
double |
walkInOptimizedOrder(RealMatrixPreservingVisitor visitor)
Visit (but don't change) all matrix entries using the fastest possible order.
|
double |
walkInOptimizedOrder(RealMatrixPreservingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (but don't change) some matrix entries using the fastest possible order.
|
double |
walkInRowOrder(RealMatrixChangingVisitor visitor)
Visit (and possibly change) all matrix entries in row order.
|
double |
walkInRowOrder(RealMatrixChangingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (and possibly change) some matrix entries in row order.
|
double |
walkInRowOrder(RealMatrixPreservingVisitor visitor)
Visit (but don't change) all matrix entries in row order.
|
double |
walkInRowOrder(RealMatrixPreservingVisitor visitor,
int startRow,
int endRow,
int startColumn,
int endColumn)
Visit (but don't change) some matrix entries in row order.
|
isTransposable, operateTranspose
protected AbstractRealMatrix()
protected AbstractRealMatrix(int rowDimension, int columnDimension)
rowDimension
- the number of rows in the new matrixcolumnDimension
- the number of columns in the new matrixNotStrictlyPositiveException
- if row or column dimension is not positivepublic RealMatrix add(RealMatrix m)
this
and m
.add
in interface RealMatrix
m
- matrix to be addedthis + m
public RealMatrix subtract(RealMatrix m)
this
minus m
.subtract
in interface RealMatrix
m
- matrix to be subtractedthis - m
public RealMatrix scalarAdd(double d)
d
to each entry of this
.scalarAdd
in interface RealMatrix
d
- value to be added to each entryd + this
public RealMatrix scalarMultiply(double d)
this
by d
.scalarMultiply
in interface RealMatrix
d
- value to multiply all entries byd * this
public RealMatrix multiply(RealMatrix m)
this
by m
.multiply
in interface RealMatrix
m
- matrix to postmultiply bythis * m
public RealMatrix multiply(RealMatrix m, boolean toTranspose)
toTranspose = false
)
or this × mT (if toTranspose = true
)multiply
in interface RealMatrix
m
- matrix to postmultiply bytoTranspose
- if true, assumes the provided matrix is MT, otherwise assumes it is Mpublic RealMatrix multiply(RealMatrix m, boolean toTranspose, double d)
toTranspose = false
) or d × this × mT (if toTranspose = true
)multiply
in interface RealMatrix
m
- matrix to postmultiply bytoTranspose
- indication value, true if we expect the m
matrix to be transposedd
- value to multiply all entries bypublic RealMatrix multiply(DiagonalMatrix m, boolean toTranspose, double d)
toTranspose
parameter value as we use diagonal matrix).
Optimized method for diagonal matrix.m
- matrix to postmultiply bytoTranspose
- no used value for diagonal matrixd
- value to multiply all entries byDimensionMismatchException
- if matrices are not multiplication compatiblepublic RealMatrix preMultiply(RealMatrix m)
this
by m
.preMultiply
in interface RealMatrix
m
- matrix to premultiply bym * this
public RealMatrix power(int p)
this
with itself p
times. Depending on the underlying storage,
instability for high powers
might occur.power
in interface RealMatrix
p
- raise this
to power p
this^p
public double[][] getData()
getData
in interface RealMatrix
public double[][] getData(boolean forceCopy)
getData
in interface RealMatrix
forceCopy
- true if we want to copy the array, false if we only pass it as a reference (if existing like for instance
Array2DRowRealMatrix
)public double getNorm()
getNorm
in interface RealMatrix
public double getFrobeniusNorm()
getFrobeniusNorm
in interface RealMatrix
public double getMax()
getMax
in interface RealMatrix
public double getMin()
getMin
in interface RealMatrix
public RealMatrix getSubMatrix(int startRow, int endRow, int startColumn, int endColumn)
getSubMatrix
in interface RealMatrix
startRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column index (inclusive)public RealMatrix getSubMatrix(int[] selectedRows, int[] selectedColumns)
getSubMatrix
in interface RealMatrix
selectedRows
- Array of row indices.selectedColumns
- Array of column indices.public void copySubMatrix(int startRow, int endRow, int startColumn, int endColumn, double[][] destination)
copySubMatrix
in interface RealMatrix
startRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column index (inclusive)destination
- The arrays where the submatrix data should be copied
(if larger than rows/columns counts, only the upper-left part will be
used)public void copySubMatrix(int startRow, int endRow, int startColumn, int endColumn, double[][] destination, int startRowDest, int startColumnDest)
copySubMatrix
in interface RealMatrix
startRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column index (inclusive)destination
- The arrays where the submatrix data should be copied
(if larger than rows/columns counts, only the upper-left part will be
used)startRowDest
- Initial row index of the destination arraystartColumnDest
- Initial column index of the destination arraypublic void copySubMatrix(int[] selectedRows, int[] selectedColumns, double[][] destination)
copySubMatrix
in interface RealMatrix
selectedRows
- Array of row indices.selectedColumns
- Array of column indices.destination
- The arrays where the submatrix data should be copied
(if larger than rows/columns counts, only the upper-left part will be
used)public void copySubMatrix(int[] selectedRows, int[] selectedColumns, double[][] destination, int startRowDest, int startColumnDest)
copySubMatrix
in interface RealMatrix
selectedRows
- Array of row indices.selectedColumns
- Array of column indices.destination
- The arrays where the submatrix data should be copied
(if larger than rows/columns counts, only the upper-left part will be
used)startRowDest
- Initial row index of the destination arraystartColumnDest
- Initial column index of the destination arraypublic void setSubMatrix(double[][] subMatrix, int row, int column)
row, column
using data in the
input subMatrix
array. Indexes are 0-based.
Example:
Starting with
1 2 3 4 5 6 7 8 9 0 1 2and
subMatrix = {{3, 4} {5,6}}
, invoking setSubMatrix(subMatrix,1,1))
will result in
1 2 3 4 5 3 4 8 9 5 6 2
setSubMatrix
in interface RealMatrix
subMatrix
- array containing the submatrix replacement datarow
- row coordinate of the top, left element to be replacedcolumn
- column coordinate of the top, left element to be replacedpublic RealMatrix getRowMatrix(int row)
getRowMatrix
in interface RealMatrix
row
- Row to be fetched.public void setRowMatrix(int row, RealMatrix matrix)
row
of this
matrix to the entries of
the specified row matrix
. Row indices start at 0.setRowMatrix
in interface RealMatrix
row
- Row to be set.matrix
- Row matrix to be copied (must have one row and the same
number of columns as the instance).public RealMatrix getColumnMatrix(int column)
getColumnMatrix
in interface RealMatrix
column
- Column to be fetched.public void setColumnMatrix(int column, RealMatrix matrix)
column
of this
matrix to the entries
of the specified column matrix
. Column indices start at 0.setColumnMatrix
in interface RealMatrix
column
- Column to be set.matrix
- Column matrix to be copied (must have one column and the
same number of rows as the instance).public RealVector getRowVector(int row)
row
as a vector. Row indices
start at 0.getRowVector
in interface RealMatrix
row
- Row to be fetched.public void setRowVector(int row, RealVector vector)
row
of this
matrix to the entries of
the specified vector
. Row indices start at 0.setRowVector
in interface RealMatrix
row
- Row to be set.vector
- row vector to be copied (must have the same number of
column as the instance).public RealVector getColumnVector(int column)
getColumnVector
in interface RealMatrix
column
- Column to be fetched.public void setColumnVector(int column, RealVector vector)
column
of this
matrix to the entries
of the specified vector
. Column indices start at 0.setColumnVector
in interface RealMatrix
column
- Column to be set.vector
- column vector to be copied (must have the same number of
rows as the instance).public double[] getRow(int row)
getRow
in interface RealMatrix
row
- Row to be fetched.public void setRow(int row, double[] array)
row
of this
matrix to the entries
of the specified array
. Row indices start at 0.setRow
in interface RealMatrix
row
- Row to be set.array
- Row matrix to be copied (must have the same number of
columns as the instance)public double[] getColumn(int column)
getColumn
in interface RealMatrix
column
- Column to be fetched.public void setColumn(int column, double[] array)
column
of this
matrix to the entries
of the specified array
. Column indices start at 0.setColumn
in interface RealMatrix
column
- Column to be set.array
- Column array to be copied (must have the same number of
rows as the instance).public void addToEntry(int row, int column, double increment)
this
matrix. Row and column indices start
at 0.addToEntry
in interface RealMatrix
row
- Row index of the entry to be modified.column
- Column index of the entry to be modified.increment
- value to add to the matrix entry.public void multiplyEntry(int row, int column, double factor)
this
matrix by the
specified value. Row and column indices start at 0.multiplyEntry
in interface RealMatrix
row
- Row index of the entry to be modified.column
- Column index of the entry to be modified.factor
- Multiplication factor for the matrix entry.public RealMatrix transpose()
transpose
in interface RealMatrix
public RealMatrix transpose(boolean forceCopy)
transpose
in interface RealMatrix
forceCopy
- true if we want to return a copy of the matrix, false otherwisepublic RealMatrix concatenateHorizontally(RealMatrix matrix)
this
and matrix
horizontally.concatenateHorizontally
in interface RealMatrix
matrix
- Matrix to concatenatepublic RealMatrix concatenateHorizontally(RealMatrix matrix, boolean rightMatrix)
this
and matrix
horizontally.
rightMatrix
is true
: [Mout] = [this , matrix]
rightMatrix
is false
: [Mout] = [matrix , this]
concatenateHorizontally
in interface RealMatrix
matrix
- Matrix to concatenaterightMatrix
- Position indication of the matrix
argument : right or left (true/false)public RealMatrix concatenateVertically(RealMatrix matrix)
this
and matrix
vertically.concatenateVertically
in interface RealMatrix
matrix
- Matrix to concatenatepublic RealMatrix concatenateVertically(RealMatrix matrix, boolean lowerMatrix)
this
and matrix
vertically.
lowerMatrix
is true
: [Mout] = [this ; matrix]
lowerMatrix
is false
: [Mout] = [matrix ; this]
concatenateVertically
in interface RealMatrix
matrix
- Matrix to concatenatelowerMatrix
- Position indication of the matrix
argument : bottom or top (true/false)public RealMatrix concatenateDiagonally(RealMatrix matrix, boolean lowerRightMatrix)
this
and matrix
vertically.
lowerRightMatrix
is true
: [Mout] = [this, 0, ..., 0 ; 0, ..., 0, matrix]
lowerRightMatrix
is false
: [Mout] = [matrix, 0, ..., 0; 0, ..., 0, this]
concatenateDiagonally
in interface RealMatrix
matrix
- Matrix to concatenatelowerRightMatrix
- Position indication of the matrix
argument : bottom-right or top-left
(true/false)public void setDefaultDecomposition(Function<RealMatrix,Decomposition> defaultDecompositionBuilder)
getInverse()
method to
compute the matrix inverse.setDefaultDecomposition
in interface RealMatrix
defaultDecompositionBuilder
- default decomposition builderpublic Function<RealMatrix,Decomposition> getDefaultDecomposition()
RealMatrix.getInverse()
method).
By default, without any user call to #setDefaultDecomposition(Function)
,
a LUDecomposition.decompositionBuilder(1e-11)
will be returned.getDefaultDecomposition
in interface RealMatrix
public RealMatrix getInverse()
setDefaultDecomposition(Function)
method.
Default decomposition is used.
Default decomposition builder is set to LUDecomposition.decompositionBuilder(1e-11)
.getInverse
in interface RealMatrix
public RealMatrix getInverse(Function<RealMatrix,Decomposition> decompositionBuilder)
getInverse
in interface RealMatrix
decompositionBuilder
- function to construct the decomposition available in the Decomposition
classes, for instance QRDecomposition.decompositionBuilder(double)
public boolean isSquare()
public boolean isSymmetric()
Matrix is considered symmetric if no cross-term violates default absolute and relative thresholds (
both Precision.DOUBLE_COMPARISON_EPSILON
).
isSymmetric
in interface RealMatrix
public boolean isSymmetric(double relativeSymmetryThreshold)
Matrix is considered symmetric if no cross-term violates provided relative threshold and 0 absolute threshold.
isSymmetric
in interface RealMatrix
relativeSymmetryThreshold
- relative threshold above which off-diagonal
elements are considered too different and matrix not symmetricpublic boolean isSymmetric(double relativeSymmetryThreshold, double absoluteSymmetryThreshold)
Matrix is considered symmetric if no cross-term violate both provided thresholds.
isSymmetric
in interface RealMatrix
relativeSymmetryThreshold
- relative threshold above which off-diagonal
elements are considered too different and matrix not symmetricabsoluteSymmetryThreshold
- absolute threshold above which off-diagonal
elements are considered too different and matrix not symmetricpublic boolean isAntisymmetric(double relativeThreshold, double absoluteThreshold)
isAntisymmetric
in interface RealMatrix
relativeThreshold
- the relative threshold to compare
the elements out of the diagonalabsoluteThreshold
- the absolute threshold used in
comparisons to zero for the diagonal valuespublic abstract int getRowDimension()
getRowDimension
in interface AnyMatrix
getRowDimension
in class RealLinearOperator
public abstract int getColumnDimension()
getColumnDimension
in interface AnyMatrix
getColumnDimension
in class RealLinearOperator
public double getTrace()
getTrace
in interface RealMatrix
public double[] operate(double[] v)
v
.operate
in interface RealMatrix
v
- the vector to operate onthis * v
public RealVector operate(RealVector v)
this
by the vector x
.operate
in interface RealMatrix
operate
in class RealLinearOperator
v
- the vector to operate onthis
instance with x
public double[] preMultiply(double[] v)
v
.preMultiply
in interface RealMatrix
v
- the row vector to premultiply byv * this
public RealVector preMultiply(RealVector v)
v
.preMultiply
in interface RealMatrix
v
- the row vector to premultiply byv * this
public double walkInRowOrder(RealMatrixChangingVisitor visitor)
Row order starts at upper left and iterating through all elements of a row from left to right before going to the leftmost element of the next row.
walkInRowOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInRowOrder(RealMatrixPreservingVisitor visitor)
Row order starts at upper left and iterating through all elements of a row from left to right before going to the leftmost element of the next row.
walkInRowOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInRowOrder(RealMatrixChangingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
Row order starts at upper left and iterating through all elements of a row from left to right before going to the leftmost element of the next row.
walkInRowOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column indexRealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInRowOrder(RealMatrixPreservingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
Row order starts at upper left and iterating through all elements of a row from left to right before going to the leftmost element of the next row.
walkInRowOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column indexRealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInColumnOrder(RealMatrixChangingVisitor visitor)
Column order starts at upper left and iterating through all elements of a column from top to bottom before going to the topmost element of the next column.
walkInColumnOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInColumnOrder(RealMatrixPreservingVisitor visitor)
Column order starts at upper left and iterating through all elements of a column from top to bottom before going to the topmost element of the next column.
walkInColumnOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInColumnOrder(RealMatrixChangingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
Column order starts at upper left and iterating through all elements of a column from top to bottom before going to the topmost element of the next column.
walkInColumnOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column indexRealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInColumnOrder(RealMatrixPreservingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
Column order starts at upper left and iterating through all elements of a column from top to bottom before going to the topmost element of the next column.
walkInColumnOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column indexRealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInOptimizedOrder(RealMatrixChangingVisitor visitor)
The fastest walking order depends on the exact matrix class. It may be different from traditional row or column orders.
walkInOptimizedOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInOptimizedOrder(RealMatrixPreservingVisitor visitor)
The fastest walking order depends on the exact matrix class. It may be different from traditional row or column orders.
walkInOptimizedOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesRealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInOptimizedOrder(RealMatrixChangingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
The fastest walking order depends on the exact matrix class. It may be different from traditional row or column orders.
walkInOptimizedOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column index (inclusive)RealMatrixChangingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor, int, int, int, int)
public double walkInOptimizedOrder(RealMatrixPreservingVisitor visitor, int startRow, int endRow, int startColumn, int endColumn)
The fastest walking order depends on the exact matrix class. It may be different from traditional row or column orders.
walkInOptimizedOrder
in interface RealMatrix
visitor
- visitor used to process all matrix entriesstartRow
- Initial row indexendRow
- Final row index (inclusive)startColumn
- Initial column indexendColumn
- Final column index (inclusive)RealMatrixPreservingVisitor.end()
at the end
of the walkRealMatrix.walkInRowOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInRowOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInRowOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInColumnOrder(RealMatrixChangingVisitor, int, int, int, int)
,
RealMatrix.walkInColumnOrder(RealMatrixPreservingVisitor, int, int, int, int)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixPreservingVisitor)
,
RealMatrix.walkInOptimizedOrder(RealMatrixChangingVisitor, int, int, int, int)
public String toString()
Default format is MatrixUtils.VISUAL_FORMAT
.
public String toString(RealMatrixFormat realMatrixFormat)
toString
in interface RealMatrix
realMatrixFormat
- matrix format
there exist predefined formats in MatrixUtils
public boolean equals(Object object)
object
is a RealMatrix
instance with the same dimensions as this
and all corresponding matrix entries are strictly equal (0. thresholds).public boolean equals(Object object, double relativeThreshold, double absoluteThreshold)
object
is a RealMatrix
instance with the same dimensions as this
and all corresponding matrix entries are equal.equals
in interface RealMatrix
object
- the object to test equality against.relativeThreshold
- RelativeThreshold used for comparisonabsoluteThreshold
- AbsoluteThreshold used for comparisonpublic int hashCode()
public boolean isOrthogonal(double thresholdNorm, double thresholdOrthogonality)
isOrthogonal
in interface RealMatrix
thresholdNorm
- : allowed relative error with respect to the normality of
the vectorsthresholdOrthogonality
- : allowed absolute error with respect to the mutual
orthogonality of the vectorspublic boolean isDiagonal(double threshold)
isDiagonal
in interface RealMatrix
threshold
- : allowed absolute error on non diagonal elementspublic boolean isInvertible(double threshold)
isInvertible
in interface RealMatrix
threshold
- : allowed relative error on the column vectors independencepublic boolean isPositiveDefinite()
isPositiveDefinite
in interface RealMatrix
public abstract RealMatrix createMatrix(int rowDimension, int columnDimension)
createMatrix
in interface RealMatrix
rowDimension
- the number of rows in the new matrixcolumnDimension
- the number of columns in the new matrixpublic abstract RealMatrix copy()
copy
in interface RealMatrix
public abstract double getEntry(int row, int column)
getEntry
in interface RealMatrix
row
- Row index of entry to be fetched.column
- Column index of entry to be fetched.(row, column)
.public abstract void setEntry(int row, int column, double value)
setEntry
in interface RealMatrix
row
- Row index of entry to be set.column
- Column index of entry to be set.value
- the new value of the entry.Copyright © 2021 CNES. All rights reserved.