Package no.uib.cipr.matrix
Class UpperTriangDenseMatrix
- java.lang.Object
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- no.uib.cipr.matrix.AbstractMatrix
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- no.uib.cipr.matrix.UpperTriangDenseMatrix
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- All Implemented Interfaces:
java.lang.Iterable<MatrixEntry>,Matrix
- Direct Known Subclasses:
UnitUpperTriangDenseMatrix
public class UpperTriangDenseMatrix extends AbstractMatrix
Upper triangular dense matrix. It has the same storage layout as theDenseMatrix, but only refers to elements above or on the main diagonal. The remaining elements are assumed to be zero, but since they are never accessed, they need not be.
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Nested Class Summary
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Nested classes/interfaces inherited from interface no.uib.cipr.matrix.Matrix
Matrix.Norm
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Field Summary
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Fields inherited from class no.uib.cipr.matrix.AbstractMatrix
numColumns, numRows
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Constructor Summary
Constructors Constructor Description UpperTriangDenseMatrix(int n)Constructor for UpperTriangDenseMatrixUpperTriangDenseMatrix(Matrix A)Constructor for UpperTriangDenseMatrixUpperTriangDenseMatrix(Matrix A, boolean deep)Constructor for UpperTriangDenseMatrixUpperTriangDenseMatrix(Matrix A, int k)Constructor for UpperTriangDenseMatrixUpperTriangDenseMatrix(Matrix A, int k, boolean deep)Constructor for UpperTriangDenseMatrix
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Method Summary
All Methods Instance Methods Concrete Methods Modifier and Type Method Description voidadd(int row, int column, double value)A(row,column) += valueUpperTriangDenseMatrixcopy()Creates a deep copy of the matrixdoubleget(int row, int column)ReturnsA(row,column)double[]getData()Returns the matrix contents.java.util.Iterator<MatrixEntry>iterator()Matrixmult(double alpha, Matrix B, Matrix C)C = alpha*A*BVectormult(double alpha, Vector x, Vector y)y = alpha*A*xvoidset(int row, int column, double value)A(row,column) = valueMatrixset(Matrix B)A=B.Matrixsolve(Matrix B, Matrix X)X = A\B.Vectorsolve(Vector b, Vector x)x = A\b.MatrixtransAmult(double alpha, Matrix B, Matrix C)C = alpha*AT*BVectortransMult(double alpha, Vector x, Vector y)y = alpha*AT*xMatrixtransSolve(Matrix B, Matrix X)X = AT\B.VectortransSolve(Vector b, Vector x)x = AT\b.Matrixzero()Zeros all the entries in the matrix, while preserving any underlying structure.-
Methods inherited from class no.uib.cipr.matrix.AbstractMatrix
add, add, check, checkMultAdd, checkMultAdd, checkRank1, checkRank1, checkRank2, checkRank2, checkSize, checkSolve, checkSolve, checkTransABmultAdd, checkTransAmultAdd, checkTransBmultAdd, checkTransMultAdd, checkTranspose, checkTranspose, checkTransRank1, checkTransRank2, isSquare, max, max, mult, mult, multAdd, multAdd, multAdd, multAdd, norm, norm1, normF, normInf, numColumns, numRows, rank1, rank1, rank1, rank1, rank1, rank1, rank2, rank2, rank2, rank2, scale, set, toString, transABmult, transABmult, transABmultAdd, transABmultAdd, transAmult, transAmultAdd, transAmultAdd, transBmult, transBmult, transBmultAdd, transBmultAdd, transMult, transMultAdd, transMultAdd, transpose, transpose, transRank1, transRank1, transRank2, transRank2
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Constructor Detail
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UpperTriangDenseMatrix
public UpperTriangDenseMatrix(int n)
Constructor for UpperTriangDenseMatrix- Parameters:
n- Size of the matrix. Since the matrix must be square, this equals both the number of rows and columns
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UpperTriangDenseMatrix
public UpperTriangDenseMatrix(Matrix A)
Constructor for UpperTriangDenseMatrix- Parameters:
A- Matrix to copy from. Only the upper triangular part is copied
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UpperTriangDenseMatrix
public UpperTriangDenseMatrix(Matrix A, boolean deep)
Constructor for UpperTriangDenseMatrix- Parameters:
A- Matrix to copy from. Only the upper triangular part is copieddeep- True for deep copy, false for reference (in which caseAmust be a dense matrix)
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UpperTriangDenseMatrix
public UpperTriangDenseMatrix(Matrix A, int k)
Constructor for UpperTriangDenseMatrix- Parameters:
A- Matrix to copy from. Only the upper triangular part is copiedk- Size of matrix to refer.k<min(numRows,numColumns)
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UpperTriangDenseMatrix
public UpperTriangDenseMatrix(Matrix A, int k, boolean deep)
Constructor for UpperTriangDenseMatrix- Parameters:
A- Matrix to copy from. Only the upper triangular part is copiedk- Size of matrix to refer.k<min(numRows,numColumns)deep- True for deep copy, false for reference (in which caseAmust be a dense matrix)
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Method Detail
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add
public void add(int row, int column, double value)Description copied from interface:MatrixA(row,column) += value
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get
public double get(int row, int column)Description copied from interface:MatrixReturnsA(row,column)
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set
public void set(int row, int column, double value)Description copied from interface:MatrixA(row,column) = value
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copy
public UpperTriangDenseMatrix copy()
Description copied from interface:MatrixCreates a deep copy of the matrix- Specified by:
copyin interfaceMatrix- Overrides:
copyin classAbstractMatrix- Returns:
- A
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mult
public Vector mult(double alpha, Vector x, Vector y)
Description copied from interface:Matrixy = alpha*A*x- Specified by:
multin interfaceMatrix- Overrides:
multin classAbstractMatrixx- Vector of sizeA.numColumns()y- Vector of sizeA.numRows()- Returns:
- y
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transMult
public Vector transMult(double alpha, Vector x, Vector y)
Description copied from interface:Matrixy = alpha*AT*x- Specified by:
transMultin interfaceMatrix- Overrides:
transMultin classAbstractMatrixx- Vector of sizeA.numRows()y- Vector of sizeA.numColumns()- Returns:
- y
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mult
public Matrix mult(double alpha, Matrix B, Matrix C)
Description copied from interface:MatrixC = alpha*A*B- Specified by:
multin interfaceMatrix- Overrides:
multin classAbstractMatrixB- Matrix such thatB.numRows() == A.numColumns()andB.numColumns() == C.numColumns()C- Matrix such thatC.numRows() == A.numRows()andB.numColumns() == C.numColumns()- Returns:
- C
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transAmult
public Matrix transAmult(double alpha, Matrix B, Matrix C)
Description copied from interface:MatrixC = alpha*AT*B- Specified by:
transAmultin interfaceMatrix- Overrides:
transAmultin classAbstractMatrixB- Matrix such thatB.numRows() == A.numRows()andB.numColumns() == C.numColumns()C- Matrix such thatC.numRows() == A.numColumns()andB.numColumns() == C.numColumns()- Returns:
- C
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solve
public Matrix solve(Matrix B, Matrix X)
Description copied from interface:MatrixX = A\B. Not all matrices support this operation, those that do not throwUnsupportedOperationException. Note that it is often more efficient to use a matrix decomposition and its associated solver- Specified by:
solvein interfaceMatrix- Overrides:
solvein classAbstractMatrix- Parameters:
B- Matrix with the same number of rows asA, and the same number of columns asXX- Matrix with a number of rows equalA.numColumns(), and the same number of columns asB- Returns:
- X
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solve
public Vector solve(Vector b, Vector x)
Description copied from interface:Matrixx = A\b. Not all matrices support this operation, those that do not throwUnsupportedOperationException. Note that it is often more efficient to use a matrix decomposition and its associated solver- Specified by:
solvein interfaceMatrix- Overrides:
solvein classAbstractMatrix- Parameters:
b- Vector of sizeA.numRows()x- Vector of sizeA.numColumns()- Returns:
- x
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transSolve
public Matrix transSolve(Matrix B, Matrix X)
Description copied from interface:MatrixX = AT\B. Not all matrices support this operation, those that do not throwUnsupportedOperationException. Note that it is often more efficient to use a matrix decomposition and its associated transpose solver- Specified by:
transSolvein interfaceMatrix- Overrides:
transSolvein classAbstractMatrix- Parameters:
B- Matrix with a number of rows equalA.numColumns(), and the same number of columns asXX- Matrix with the same number of rows asA, and the same number of columns asB- Returns:
- X
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transSolve
public Vector transSolve(Vector b, Vector x)
Description copied from interface:Matrixx = AT\b. Not all matrices support this operation, those that do not throwUnsupportedOperationException. Note that it is often more efficient to use a matrix decomposition and its associated solver- Specified by:
transSolvein interfaceMatrix- Overrides:
transSolvein classAbstractMatrix- Parameters:
b- Vector of sizeA.numColumns()x- Vector of sizeA.numRows()- Returns:
- x
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iterator
public java.util.Iterator<MatrixEntry> iterator()
- Specified by:
iteratorin interfacejava.lang.Iterable<MatrixEntry>- Overrides:
iteratorin classAbstractMatrix
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getData
public double[] getData()
Returns the matrix contents. Ordering depends on the underlying storage assumptions
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set
public Matrix set(Matrix B)
Description copied from interface:MatrixA=B. The matrices must be of the same size- Specified by:
setin interfaceMatrix- Overrides:
setin classAbstractMatrix- Returns:
- A
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