ChebyshevBoundedField¶
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class lsst.afw.math.ChebyshevBoundedField¶
- Bases: - lsst.afw.math.BoundedField- Methods Summary - addToImage(*args, **kwargs)- Overloaded function. - approximate(boundedField[, orderX, orderY, …])- Approximate a bounded field as a ChebyshevBoundedField. - divideImage(*args, **kwargs)- Overloaded function. - evaluate(*args, **kwargs)- Overloaded function. - fillImage(*args, **kwargs)- Overloaded function. - fit(*args, **kwargs)- Overloaded function. - getBBox(self)- getCoefficients(self)- integrate(self)- isPersistable(self)- mean(self)- multiplyImage(*args, **kwargs)- Overloaded function. - readFits(*args, **kwargs)- Overloaded function. - truncate(self, arg0)- writeFits(*args, **kwargs)- Overloaded function. - Methods Documentation - 
addToImage(*args, **kwargs)¶
- Overloaded function. - addToImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageD, scaleBy: float=1.0, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
- addToImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageF, scaleBy: float=1.0, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
 
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classmethod approximate(boundedField, orderX=3, orderY=3, nStepX=100, nStepY=100)¶
- Approximate a bounded field as a ChebyshevBoundedField. - Parameters: - boundedField : lsst.afw.math.BoundedField
- A bounded field to approximate 
- orderX : int, optional
- Order of the Chebyshev polynomial in the x direction. Default is 3. 
- orderY : int, optional
- Order of the Chebyshev polynomial in the y direction. Default is 3. 
- nStepX : int, optional
- Number of x steps to approximate boundedField. Default is 100. 
- nStepY : int, optional
- Number of y steps to approximate boundedField. Default is 100. 
 - Returns: - chebyshevBoundedField : lsst.afw.math.ChebyshevBoundedField
 
- boundedField : 
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divideImage(*args, **kwargs)¶
- Overloaded function. - divideImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageD, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
- divideImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageF, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
 
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evaluate(*args, **kwargs)¶
- Overloaded function. - evaluate(self: lsst.afw.math.boundedField.BoundedField, arg0: float, arg1: float) -> float
- evaluate(self: lsst.afw.math.boundedField.BoundedField, arg0: ndarray::Array<double const, 1, 0>, arg1: ndarray::Array<double const, 1, 0>) -> ndarray::Array<double, 1, 1>
- evaluate(self: lsst.afw.math.boundedField.BoundedField, arg0: lsst.geom.Point2D) -> float
 
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fillImage(*args, **kwargs)¶
- Overloaded function. - fillImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageD, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
- fillImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageF, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
 
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fit(*args, **kwargs)¶
- Overloaded function. - fit(arg0: lsst.geom.Box2I, arg1: ndarray::Array<double const, 1, 0>, arg2: ndarray::Array<double const, 1, 0>, arg3: ndarray::Array<double const, 1, 0>, arg4: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedFieldControl) -> lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField
- fit(arg0: lsst.geom.Box2I, arg1: ndarray::Array<double const, 1, 0>, arg2: ndarray::Array<double const, 1, 0>, arg3: ndarray::Array<double const, 1, 0>, arg4: ndarray::Array<double const, 1, 0>, arg5: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedFieldControl) -> lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField
- fit(arg0: lsst.afw.image.image.image.ImageD, arg1: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedFieldControl) -> lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField
- fit(arg0: lsst.afw.image.image.image.ImageF, arg1: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedFieldControl) -> lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField
 
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getBBox(self: lsst.afw.math.boundedField.BoundedField) → lsst.geom.Box2I¶
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getCoefficients(self: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField) → ndarray::Array<double const, 2, 2>¶
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integrate(self: lsst.afw.math.boundedField.BoundedField) → float¶
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isPersistable(self: lsst.afw.math.boundedField.BoundedField) → bool¶
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mean(self: lsst.afw.math.boundedField.BoundedField) → float¶
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multiplyImage(*args, **kwargs)¶
- Overloaded function. - multiplyImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageD, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
- multiplyImage(self: lsst.afw.math.boundedField.BoundedField, image: lsst.afw.image.image.image.ImageF, overlapOnly: bool=False, xStep: int=1, yStep: int=1) -> None
 
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readFits(*args, **kwargs)¶
- Overloaded function. - readFits(fileName: str, hdu: int=-2147483648) -> lsst.afw.math.boundedField.BoundedField
- readFits(manager: lsst.afw.fits.fits.MemFileManager, hdu: int=-2147483648) -> lsst.afw.math.boundedField.BoundedField
 
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truncate(self: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField, arg0: lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedFieldControl) → lsst.afw.math.chebyshevBoundedField.ChebyshevBoundedField¶
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writeFits(*args, **kwargs)¶
- Overloaded function. - writeFits(self: lsst.afw.math.boundedField.BoundedField, fileName: str, mode: str=’w’) -> None
- writeFits(self: lsst.afw.math.boundedField.BoundedField, manager: lsst.afw.fits.fits.MemFileManager, mode: str=’w’) -> None
 
 
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