#include <SubLattice.h>
Inheritance diagram for casa::SubLattice< T >:


Part of API
A SubLattice is a lattice referencing a subset of another lattice by means of a Slicer object.
It is useful when only a subset of a lattice needs to be accessed.
When the SubLattice is created from a const Lattice object, it is not writable, thus it can only be used as an rvalue.
Using an AxesSpecifier object it is possible to remove some or all degenerate axes (i.e. axes with length 1) to get a lattice with a lower dimensionality.
Definition at line 85 of file SubLattice.h.
Public Member Functions | |
| SubLattice () | |
| The default constructor creates a SubLattice that is useless for just about everything, except that it can be assigned to with the assignment operator. | |
| SubLattice (const SubLattice< T > &other) | |
| Copy constructor (reference semantics). | |
| virtual | ~SubLattice () |
| SubLattice< T > & | operator= (const SubLattice< T > &other) |
| Assignment (reference semantics). | |
| virtual MaskedLattice< T > * | cloneML () const |
| Make a copy of the object (reference semantics). | |
| virtual Bool | isMasked () const |
| Is the lattice masked? It is if its parent lattice or its region is masked. | |
| virtual Bool | isPersistent () const |
| A SubLattice is persistent if no region is applied to the parent lattice. | |
| virtual Bool | isPaged () const |
| Is the SubLattice paged to disk? | |
| virtual Bool | canReferenceArray () const |
| Can the lattice data be referenced as an array section? | |
| virtual Bool | isWritable () const |
| Is the SubLattice writable? | |
| virtual void | resync () |
| Resynchronize the Lattice object with the lattice file. | |
| virtual void | flush () |
| Flush the data. | |
| virtual void | tempClose () |
| Close the Lattice temporarily (if it is paged to disk). | |
| virtual void | reopen () |
| If needed, reopen a temporarily closed Lattice. | |
| virtual Bool | hasPixelMask () const |
| Does the SubLattice have a pixelmask? | |
| void | setPixelMask (const Lattice< Bool > &pixelMask, Bool mayExist) |
| Use the given mask as the pixelmask. | |
| virtual const LatticeRegion * | getRegionPtr () const |
| Get a pointer the region/mask object describing this sublattice. | |
| virtual IPosition | shape () const |
| Returns the shape of the SubLattice including all degenerate axes (i.e. | |
| virtual String | name (Bool stripPath=False) const |
| Return the name of the parent lattice. | |
| virtual uInt | advisedMaxPixels () const |
| This function returns the recommended maximum number of pixels to include in the cursor of an iterator. | |
| virtual Bool | ok () const |
| Check class internals - used for debugging. | |
| virtual LatticeIterInterface< T > * | makeIter (const LatticeNavigator &navigator, Bool useRef) const |
| This function is used by the LatticeIterator class to generate an iterator of the correct type for this Lattice. | |
| virtual Bool | doGetSlice (Array< T > &buffer, const Slicer §ion) |
| Do the actual getting of an array of values. | |
| virtual void | doPutSlice (const Array< T > &sourceBuffer, const IPosition &where, const IPosition &stride) |
| Do the actual getting of an array of values. | |
| virtual Bool | doGetMaskSlice (Array< Bool > &buffer, const Slicer §ion) |
| Get a section of the mask. | |
| virtual IPosition | doNiceCursorShape (uInt maxPixels) const |
| Get the best cursor shape. | |
| const AxesMapping & | getAxesMap () const |
| Set the axes mapping from the specification. | |
| SubLattice (const Lattice< T > &lattice, AxesSpecifier=AxesSpecifier()) | |
| Create a SubLattice from a Lattice. | |
| SubLattice (Lattice< T > &lattice, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (const MaskedLattice< T > &lattice, AxesSpecifier=AxesSpecifier()) | |
| Create a SubLattice from a MaskedLattice. | |
| SubLattice (MaskedLattice< T > &lattice, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (const Lattice< T > &lattice, const LatticeRegion ®ion, AxesSpecifier=AxesSpecifier()) | |
| Create a SubLattice from the given MaskedLattice and region. | |
| SubLattice (Lattice< T > &lattice, const LatticeRegion ®ion, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (const MaskedLattice< T > &lattice, const LatticeRegion ®ion, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (MaskedLattice< T > &lattice, const LatticeRegion ®ion, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (const Lattice< T > &lattice, const Slicer &slicer, AxesSpecifier=AxesSpecifier()) | |
| Create a SubLattice from the given (Masked)Lattice and slicer. | |
| SubLattice (Lattice< T > &lattice, const Slicer &slicer, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (const MaskedLattice< T > &lattice, const Slicer &slicer, AxesSpecifier=AxesSpecifier()) | |
| SubLattice (MaskedLattice< T > &lattice, const Slicer &slicer, Bool writableIfPossible, AxesSpecifier=AxesSpecifier()) | |
| virtual Bool | lock (FileLocker::LockType, uInt nattempts) |
| Handle locking of the SubLattice which is delegated to its parent. | |
| virtual void | unlock () |
| virtual Bool | hasLock (FileLocker::LockType) const |
| virtual const Lattice< Bool > & | pixelMask () const |
| Get access to the pixelmask. | |
| virtual Lattice< Bool > & | pixelMask () |
| virtual T | getAt (const IPosition &where) const |
| Get or put a single element in the lattice. | |
| virtual void | putAt (const T &value, const IPosition &where) |
| Put the value of a single element. | |
Protected Member Functions | |
| void | setPtr (Lattice< T > *latticePtr, MaskedLattice< T > *maskLatPtr, Bool writableIfPossible) |
| Set the various pointer needed to construct the object. | |
| void | setAxesMap (const AxesSpecifier &) |
| Set the axes mapping from the specification. | |
| void | setRegion (const LatticeRegion ®ion) |
| Set the region object. | |
| void | setRegion (const Slicer &slicer) |
| void | setRegion () |
Private Member Functions | |
| void | andMask (Array< Bool > &buffer, Bool ref, const Array< Bool > &tmpbuf) const |
| And tmpbuf into buffer. | |
| Bool | getRegionDataSlice (Array< Bool > &buffer, const Slicer §ion) |
| Get mask data from region and mask. | |
| Bool | getMaskDataSlice (Array< Bool > &buffer, const Slicer §ion) |
Private Attributes | |
| Lattice< T > * | itsLatticePtr |
| MaskedLattice< T > * | itsMaskLatPtr |
| LatticeRegion | itsRegion |
| Bool | itsWritable |
| Bool | itsHasLattPMask |
| Lattice< Bool > * | itsPixelMask |
| Lattice< Bool > * | itsOwnPixelMask |
| AxesSpecifier | itsAxesSpec |
| AxesMapping | itsAxesMap |
| casa::SubLattice< T >::SubLattice | ( | ) |
The default constructor creates a SubLattice that is useless for just about everything, except that it can be assigned to with the assignment operator.
| casa::SubLattice< T >::SubLattice | ( | const Lattice< T > & | lattice, | |
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
Create a SubLattice from a Lattice.
This results in a SubLattice without a real mask.
The "const Lattice" version yields a non-writable SubLattice, while for the non-const version one has to specify if the SubLattice should be writable (if the original lattice is non-writable, the SubLattice is always set to non-writable).
| casa::SubLattice< T >::SubLattice | ( | Lattice< T > & | lattice, | |
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const MaskedLattice< T > & | lattice, | |
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
Create a SubLattice from a MaskedLattice.
The "const MaskedLattice" version yields a non-writable SubLattice, while for the non-const version one has to specify if the SubLattice should be writable (if the original lattice is non-writable, the SubLattice is always set to non-writable).
| casa::SubLattice< T >::SubLattice | ( | MaskedLattice< T > & | lattice, | |
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const Lattice< T > & | lattice, | |
| const LatticeRegion & | region, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
Create a SubLattice from the given MaskedLattice and region.
Note that the region can be constructed from an LCRegion object or Slicer object (with an optional stride).
An exception is thrown if the lattice shape used in the region differs from the shape of the lattice.
| casa::SubLattice< T >::SubLattice | ( | Lattice< T > & | lattice, | |
| const LatticeRegion & | region, | |||
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const MaskedLattice< T > & | lattice, | |
| const LatticeRegion & | region, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | MaskedLattice< T > & | lattice, | |
| const LatticeRegion & | region, | |||
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const Lattice< T > & | lattice, | |
| const Slicer & | slicer, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
Create a SubLattice from the given (Masked)Lattice and slicer.
The slicer can be strided.
An exception is thrown if the slicer exceeds the lattice shape.
| casa::SubLattice< T >::SubLattice | ( | Lattice< T > & | lattice, | |
| const Slicer & | slicer, | |||
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const MaskedLattice< T > & | lattice, | |
| const Slicer & | slicer, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | MaskedLattice< T > & | lattice, | |
| const Slicer & | slicer, | |||
| Bool | writableIfPossible, | |||
| AxesSpecifier | = AxesSpecifier() | |||
| ) |
| casa::SubLattice< T >::SubLattice | ( | const SubLattice< T > & | other | ) |
Copy constructor (reference semantics).
| virtual casa::SubLattice< T >::~SubLattice | ( | ) | [virtual] |
| SubLattice<T>& casa::SubLattice< T >::operator= | ( | const SubLattice< T > & | other | ) |
Assignment (reference semantics).
| virtual MaskedLattice<T>* casa::SubLattice< T >::cloneML | ( | ) | const [virtual] |
| virtual Bool casa::SubLattice< T >::isMasked | ( | ) | const [virtual] |
Is the lattice masked? It is if its parent lattice or its region is masked.
Reimplemented from casa::MaskedLattice< T >.
| virtual Bool casa::SubLattice< T >::isPersistent | ( | ) | const [virtual] |
A SubLattice is persistent if no region is applied to the parent lattice.
That is true if the region has the same shape as the parent lattice and the region has no mask.
Reimplemented from casa::LatticeBase.
| virtual Bool casa::SubLattice< T >::isPaged | ( | ) | const [virtual] |
| virtual Bool casa::SubLattice< T >::canReferenceArray | ( | ) | const [virtual] |
| virtual Bool casa::SubLattice< T >::isWritable | ( | ) | const [virtual] |
| virtual Bool casa::SubLattice< T >::lock | ( | FileLocker::LockType | , | |
| uInt | nattempts | |||
| ) | [virtual] |
Handle locking of the SubLattice which is delegated to its parent.
It is strongly recommended to use class LatticeLocker to handle lattice locking. It also contains a more detailed explanation of the locking process.
Reimplemented from casa::LatticeBase.
| virtual void casa::SubLattice< T >::unlock | ( | ) | [virtual] |
Reimplemented from casa::LatticeBase.
| virtual Bool casa::SubLattice< T >::hasLock | ( | FileLocker::LockType | ) | const [virtual] |
Reimplemented from casa::LatticeBase.
| virtual void casa::SubLattice< T >::resync | ( | ) | [virtual] |
Resynchronize the Lattice object with the lattice file.
This function is only useful if no read-locking is used, ie. if the table lock option is UserNoReadLocking or AutoNoReadLocking. In that cases the table system does not acquire a read-lock, thus does not synchronize itself automatically.
Reimplemented from casa::LatticeBase.
| virtual void casa::SubLattice< T >::flush | ( | ) | [virtual] |
| virtual void casa::SubLattice< T >::tempClose | ( | ) | [virtual] |
Close the Lattice temporarily (if it is paged to disk).
It'll be reopened automatically when needed or when reopen is called explicitly.
Reimplemented from casa::LatticeBase.
| virtual void casa::SubLattice< T >::reopen | ( | ) | [virtual] |
| virtual Bool casa::SubLattice< T >::hasPixelMask | ( | ) | const [virtual] |
| virtual const Lattice<Bool>& casa::SubLattice< T >::pixelMask | ( | ) | const [virtual] |
Get access to the pixelmask.
An exception is thrown if the SubLattice does not have a pixelmask.
Reimplemented from casa::MaskedLattice< T >.
| virtual Lattice<Bool>& casa::SubLattice< T >::pixelMask | ( | ) | [virtual] |
Reimplemented from casa::MaskedLattice< T >.
| void casa::SubLattice< T >::setPixelMask | ( | const Lattice< Bool > & | pixelMask, | |
| Bool | mayExist | |||
| ) |
Use the given mask as the pixelmask.
If another mask was already used, the new one will be used instead. It checks if its shape matches the shape of the sublattice.
If mayExist=False, setting the pixelmask is only possible if the underlying lattice does not have a pixelmask.
If mayExist=True, the resulting pixelmask is the AND of the given pixelmask and the pixelmask of the underlying lattice.
| virtual const LatticeRegion* casa::SubLattice< T >::getRegionPtr | ( | ) | const [virtual] |
Get a pointer the region/mask object describing this sublattice.
Implements casa::MaskedLattice< T >.
| virtual IPosition casa::SubLattice< T >::shape | ( | ) | const [virtual] |
Returns the shape of the SubLattice including all degenerate axes (i.e.
axes with a length of one).
Implements casa::LatticeBase.
| virtual String casa::SubLattice< T >::name | ( | Bool | stripPath = False |
) | const [virtual] |
| virtual uInt casa::SubLattice< T >::advisedMaxPixels | ( | ) | const [virtual] |
This function returns the recommended maximum number of pixels to include in the cursor of an iterator.
Reimplemented from casa::Lattice< T >.
| virtual T casa::SubLattice< T >::getAt | ( | const IPosition & | where | ) | const [virtual] |
| virtual void casa::SubLattice< T >::putAt | ( | const T & | value, | |
| const IPosition & | where | |||
| ) | [virtual] |
Put the value of a single element.
The default implementation uses putSlice.
Reimplemented from casa::Lattice< T >.
| virtual Bool casa::SubLattice< T >::ok | ( | ) | const [virtual] |
Check class internals - used for debugging.
Should always return True
Reimplemented from casa::LatticeBase.
| virtual LatticeIterInterface<T>* casa::SubLattice< T >::makeIter | ( | const LatticeNavigator & | navigator, | |
| Bool | useRef | |||
| ) | const [virtual] |
This function is used by the LatticeIterator class to generate an iterator of the correct type for this Lattice.
Not recommended for general use.
Reimplemented from casa::Lattice< T >.
| virtual Bool casa::SubLattice< T >::doGetSlice | ( | Array< T > & | buffer, | |
| const Slicer & | section | |||
| ) | [virtual] |
| virtual void casa::SubLattice< T >::doPutSlice | ( | const Array< T > & | sourceBuffer, | |
| const IPosition & | where, | |||
| const IPosition & | stride | |||
| ) | [virtual] |
| virtual Bool casa::SubLattice< T >::doGetMaskSlice | ( | Array< Bool > & | buffer, | |
| const Slicer & | section | |||
| ) | [virtual] |
| virtual IPosition casa::SubLattice< T >::doNiceCursorShape | ( | uInt | maxPixels | ) | const [virtual] |
| const AxesMapping& casa::SubLattice< T >::getAxesMap | ( | ) | const [inline] |
| void casa::SubLattice< T >::setPtr | ( | Lattice< T > * | latticePtr, | |
| MaskedLattice< T > * | maskLatPtr, | |||
| Bool | writableIfPossible | |||
| ) | [protected] |
Set the various pointer needed to construct the object.
One of the pointers should be zero. It takes over the pointer and deletes the object in the destructor.
| void casa::SubLattice< T >::setRegion | ( | const LatticeRegion & | region | ) | [protected] |
Set the region object.
It also fills in the parent pointer when the SubLattice is taken from a MaskedLattice. The default region is the entire lattice.
| void casa::SubLattice< T >::setRegion | ( | const Slicer & | slicer | ) | [protected] |
| void casa::SubLattice< T >::setRegion | ( | ) | [protected] |
| void casa::SubLattice< T >::setAxesMap | ( | const AxesSpecifier & | ) | [protected] |
Set the axes mapping from the specification.
| Bool casa::SubLattice< T >::getRegionDataSlice | ( | Array< Bool > & | buffer, | |
| const Slicer & | section | |||
| ) | [private] |
Get mask data from region and mask.
| Bool casa::SubLattice< T >::getMaskDataSlice | ( | Array< Bool > & | buffer, | |
| const Slicer & | section | |||
| ) | [private] |
| void casa::SubLattice< T >::andMask | ( | Array< Bool > & | buffer, | |
| Bool | ref, | |||
| const Array< Bool > & | tmpbuf | |||
| ) | const [private] |
And tmpbuf into buffer.
If buffer is a reference, first a copy is made.
Lattice<T>* casa::SubLattice< T >::itsLatticePtr [private] |
Definition at line 304 of file SubLattice.h.
MaskedLattice<T>* casa::SubLattice< T >::itsMaskLatPtr [private] |
Definition at line 305 of file SubLattice.h.
LatticeRegion casa::SubLattice< T >::itsRegion [private] |
Definition at line 306 of file SubLattice.h.
Bool casa::SubLattice< T >::itsWritable [private] |
Definition at line 307 of file SubLattice.h.
Bool casa::SubLattice< T >::itsHasLattPMask [private] |
Definition at line 308 of file SubLattice.h.
Lattice<Bool>* casa::SubLattice< T >::itsPixelMask [private] |
Definition at line 309 of file SubLattice.h.
Lattice<Bool>* casa::SubLattice< T >::itsOwnPixelMask [private] |
Definition at line 310 of file SubLattice.h.
AxesSpecifier casa::SubLattice< T >::itsAxesSpec [private] |
Definition at line 311 of file SubLattice.h.
AxesMapping casa::SubLattice< T >::itsAxesMap [private] |
1.5.1