public abstract class LongBuffer extends Buffer implements Comparable<LongBuffer>
A long buffer can be created in either of the following ways:
Allocate a new long array and create a buffer
based on it;Wrap an existing long array to create a new
buffer;ByteBuffer.asLongBuffer
to create a long buffer based on a byte buffer.| Modifier and Type | Method and Description |
|---|---|
static LongBuffer |
allocate(int capacity)
Creates a long buffer based on a newly allocated long array.
|
long[] |
array()
Returns the array that backs this buffer (optional operation).
|
int |
arrayOffset()
Returns the offset into the array returned by
array of the first
element of the buffer (optional operation). |
abstract LongBuffer |
asReadOnlyBuffer()
Returns a read-only buffer that shares its content with this buffer.
|
LongBuffer |
clear()
Clears this buffer.
|
abstract LongBuffer |
compact()
Compacts this long buffer.
|
int |
compareTo(LongBuffer otherBuffer)
Compare the remaining longs of this buffer to another long buffer's
remaining longs.
|
abstract LongBuffer |
duplicate()
Returns a duplicated buffer that shares its content with this buffer.
|
boolean |
equals(Object other)
Checks whether this long buffer is equal to another object.
|
LongBuffer |
flip()
Flips this buffer.
|
abstract long |
get()
Returns the long at the current position and increase the position by 1.
|
abstract long |
get(int index)
Returns the long at the specified index; the position is not changed.
|
LongBuffer |
get(long[] dst)
Reads longs from the current position into the specified long array and
increases the position by the number of longs read.
|
LongBuffer |
get(long[] dst,
int dstOffset,
int longCount)
Reads longs from the current position into the specified long array,
starting from the specified offset, and increase the position by the
number of longs read.
|
boolean |
hasArray()
Returns true if
array and arrayOffset won't throw. |
int |
hashCode()
Calculates this buffer's hash code from the remaining chars.
|
abstract boolean |
isDirect()
Indicates whether this buffer is direct.
|
LongBuffer |
limit(int newLimit)
Sets the limit of this buffer.
|
LongBuffer |
mark()
Marks the current position, so that the position may return to this point
later by calling
reset(). |
int |
mismatch(LongBuffer that)
Finds and returns the relative index of the first mismatch between this
buffer and a given buffer.
|
abstract ByteOrder |
order()
Returns the byte order used by this buffer when converting longs from/to
bytes.
|
LongBuffer |
position(int newPosition)
Sets the position of this buffer.
|
abstract LongBuffer |
put(int index,
long l)
Writes a long to the specified index of this buffer; the position is not
changed.
|
abstract LongBuffer |
put(long l)
Writes the given long to the current position and increases the position
by 1.
|
LongBuffer |
put(long[] src)
Writes longs from the given long array to the current position and
increases the position by the number of longs written.
|
LongBuffer |
put(long[] src,
int srcOffset,
int longCount)
Writes longs from the given long array, starting from the specified
offset, to the current position and increases the position by the number
of longs written.
|
LongBuffer |
put(LongBuffer src)
Writes all the remaining longs of the
src long buffer to this
buffer's current position, and increases both buffers' position by the
number of longs copied. |
LongBuffer |
reset()
Resets the position of this buffer to the
mark. |
LongBuffer |
rewind()
Rewinds this buffer.
|
abstract LongBuffer |
slice()
Returns a sliced buffer that shares its content with this buffer.
|
static LongBuffer |
wrap(long[] array)
Creates a new long buffer by wrapping the given long array.
|
static LongBuffer |
wrap(long[] array,
int start,
int longCount)
Creates a new long buffer by wrapping the given long array.
|
capacity, getElementSizeShift, hasRemaining, isReadOnly, limit, position, remaining, toStringpublic static LongBuffer allocate(int capacity)
capacity - the capacity of the new buffer.IllegalArgumentException - if capacity is less than zero.public static LongBuffer wrap(long[] array)
Calling this method has the same effect as
wrap(array, 0, array.length).
array - the long array which the new buffer will be based on.public static LongBuffer wrap(long[] array, int start, int longCount)
The new buffer's position will be start, limit will be
start + longCount, capacity will be the length of the array.
array - the long array which the new buffer will be based on.start - the start index, must not be negative and not greater than
array.length.longCount - the length, must not be negative and not greater than
array.length - start.IndexOutOfBoundsException - if either start or longCount is invalid.public final long[] array()
BufferSubclasses should override this method with a covariant return type to provide the exact type of the array.
Use hasArray to ensure this method won't throw.
(A separate call to isReadOnly is not necessary.)
public final int arrayOffset()
Bufferarray of the first
element of the buffer (optional operation). The backing array (if there is one)
is not necessarily the same size as the buffer, and position 0 in the buffer is
not necessarily the 0th element in the array. Use
buffer.array()[offset + buffer.arrayOffset() to access element offset
in buffer.
Use hasArray to ensure this method won't throw.
(A separate call to isReadOnly is not necessary.)
arrayOffset in class Bufferpublic abstract LongBuffer asReadOnlyBuffer()
The returned buffer is guaranteed to be a new instance, even if this buffer is read-only itself. The new buffer's position, limit, capacity and mark are the same as this buffer's.
The new buffer shares its content with this buffer, which means this buffer's change of content will be visible to the new buffer. The two buffer's position, limit and mark are independent.
public final LongBuffer position(int newPosition)
If the mark is set and it is greater than the new position, then it is cleared.
public final LongBuffer limit(int newLimit)
If the current position in the buffer is in excess of
newLimit then, on returning from this call, it will have
been adjusted to be equivalent to newLimit. If the mark
is set and is greater than the new limit, then it is cleared.
public final LongBuffer mark()
reset().public final LongBuffer reset()
mark.public final LongBuffer clear()
While the content of this buffer is not changed, the following internal changes take place: the current position is reset back to the start of the buffer, the value of the buffer limit is made equal to the capacity and mark is cleared.
public final LongBuffer flip()
The limit is set to the current position, then the position is set to zero, and the mark is cleared.
The content of this buffer is not changed.
public final LongBuffer rewind()
The position is set to zero, and the mark is cleared. The content of this buffer is not changed.
public abstract LongBuffer compact()
The remaining longs will be moved to the head of the buffer, staring from
position zero. Then the position is set to remaining(); the
limit is set to capacity; the mark is cleared.
ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public int compareTo(LongBuffer otherBuffer)
compareTo in interface Comparable<LongBuffer>otherBuffer - another long buffer.otherBuffer; 0 if
this equals to otherBuffer; a positive value if this is
greater than otherBufferClassCastException - if otherBuffer is not a long buffer.public int mismatch(LongBuffer that)
position of each buffer and will be in the range of
0 (inclusive) up to the smaller of the remaining
elements in each buffer (exclusive).
If the two buffers share a common prefix then the returned index is the length of the common prefix and it follows that there is a mismatch between the two buffers at that index within the respective buffers. If one buffer is a proper prefix of the other then the returned index is the smaller of the remaining elements in each buffer, and it follows that the index is only valid for the buffer with the larger number of remaining elements. Otherwise, there is no mismatch.
that - The byte buffer to be tested for a mismatch with this bufferpublic abstract LongBuffer duplicate()
The duplicated buffer's position, limit, capacity and mark are the same as this buffer. The duplicated buffer's read-only property and byte order are same as this buffer's, too.
The new buffer shares its content with this buffer, which means either buffer's change of content will be visible to the other. The two buffers' position, limit and mark are independent.
public boolean equals(Object other)
If other is not a long buffer then false is returned. Two
long buffers are equal if and only if their remaining longs are exactly
the same. Position, limit, capacity and mark are not considered.
equals in class Objectother - the object to compare with this long buffer.true if this long buffer is equal to other,
false otherwise.Object.hashCode()public abstract long get()
BufferUnderflowException - if the position is equal or greater than limit.public LongBuffer get(long[] dst)
Calling this method has the same effect as
get(dst, 0, dst.length).
dst - the destination long array.BufferUnderflowException - if dst.length is greater than remaining().public LongBuffer get(long[] dst, int dstOffset, int longCount)
dst - the target long array.dstOffset - the offset of the long array, must not be negative and not
greater than dst.length.longCount - the number of longs to read, must be no less than zero and not
greater than dst.length - dstOffset.IndexOutOfBoundsException - if either dstOffset or longCount is invalid.BufferUnderflowException - if longCount is greater than remaining().public abstract long get(int index)
index - the index, must not be negative and less than limit.IndexOutOfBoundsException - if index is invalid.public final boolean hasArray()
Bufferarray and arrayOffset won't throw. This method does not
return true for buffers not backed by arrays because the other methods would throw
UnsupportedOperationException, nor does it return true for buffers backed by
read-only arrays, because the other methods would throw ReadOnlyBufferException.public int hashCode()
hashCode in class ObjectObject.equals(java.lang.Object)public abstract boolean isDirect()
A long buffer is direct if it is based on a byte buffer and the byte buffer is direct.
public abstract ByteOrder order()
If this buffer is not based on a byte buffer, then always return the platform's native byte order.
public abstract LongBuffer put(long l)
l - the long to write.BufferOverflowException - if position is equal or greater than limit.ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public final LongBuffer put(long[] src)
Calling this method has the same effect as
put(src, 0, src.length).
src - the source long array.BufferOverflowException - if remaining() is less than src.length.ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public LongBuffer put(long[] src, int srcOffset, int longCount)
src - the source long array.srcOffset - the offset of long array, must not be negative and not greater
than src.length.longCount - the number of longs to write, must be no less than zero and
not greater than src.length - srcOffset.BufferOverflowException - if remaining() is less than longCount.IndexOutOfBoundsException - if either srcOffset or longCount is invalid.ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public LongBuffer put(LongBuffer src)
src long buffer to this
buffer's current position, and increases both buffers' position by the
number of longs copied.src - the source long buffer.BufferOverflowException - if src.remaining() is greater than this buffer's
remaining().IllegalArgumentException - if src is this buffer.ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public abstract LongBuffer put(int index, long l)
index - the index, must not be negative and less than the limit.l - the long to write.IndexOutOfBoundsException - if index is invalid.ReadOnlyBufferException - if no changes may be made to the contents of this buffer.public abstract LongBuffer slice()
The sliced buffer's capacity will be this buffer's remaining(),
and its zero position will correspond to this buffer's current position.
The new buffer's position will be 0, limit will be its capacity, and its
mark is cleared. The new buffer's read-only property and byte order are
same as this buffer's.
The new buffer shares its content with this buffer, which means either buffer's change of content will be visible to the other. The two buffers' position, limit and mark are independent.