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T
- the numeric class, usually a subclass of Number
(although this is not required)@Immutable public interface MathOperations<T>
The set of mathematic operations for a particular class of values. This is useful for generic classes that must work with one
of the Number
subclasses.
Method Summary | |
---|---|
T |
add(T value1,
T value2)
Add the two operands and return the sum. |
BigDecimal |
asBigDecimal(T value)
Create a BigDecimal representation of the supplied value. |
int |
compare(T value1,
T value2)
Compare the two operands and return an integer that describes whether the first value is larger, smaller or the same as the second value. |
T |
create(double value)
Convert the double representation into the natural object representation. |
T |
create(int value)
Convert the integer representation into the natural object representation. |
T |
create(long value)
Convert the long representation into the natural object representation. |
T |
createZeroValue()
Create the object form of the "zero value". |
double |
divide(T value1,
T value2)
Divide the first operand by the second, and return the result. |
double |
doubleValue(T value)
Convert the value to a double. |
float |
floatValue(T value)
Convert the value to a float. |
T |
fromBigDecimal(BigDecimal value)
Convert the BigDecimal representation into the natural object representation. |
Comparator<T> |
getComparator()
Return a Comparator for this operand class . |
int |
getExponentInScientificNotation(T value)
Get the exponent if the number were written in exponential form. |
Class<T> |
getOperandClass()
Return the class that these operations operate upon. |
T |
increment(T value)
Increment the supplied operand by 1. |
int |
intValue(T value)
Convert the value to an integer. |
T |
keepSignificantFigures(T value,
int numSigFigs)
|
long |
longValue(T value)
Convert the value to a long integer. |
T |
maximum(T value1,
T value2)
Compare the two operands and return the one that is larger. |
T |
minimum(T value1,
T value2)
Compare the two operands and return the one that is smaller. |
T |
multiply(T value1,
T value2)
Multiply the two operands and return the product. |
T |
negate(T value)
Negate the supplied operand. |
T |
random(T minimum,
T maximum,
Random rng)
Generate a random instance within the specified range. |
T |
roundDown(T value,
int decimalShift)
Round down the supplied value to the desired scale. |
T |
roundUp(T value,
int decimalShift)
Round up the supplied value to the desired scale. |
short |
shortValue(T value)
Convert the value to a short. |
double |
sqrt(T value)
Return the square root of the supplied operand. |
T |
subtract(T value1,
T value2)
Subtract the second operand from the first, and return the difference. |
Method Detail |
---|
Class<T> getOperandClass()
T add(T value1, T value2)
zero value
is used in place of any operand that is
null.
value1
- the first operandvalue2
- the second operand
T subtract(T value1, T value2)
zero value
is used in
place of any operand that is null.
value1
- the first operandvalue2
- the second operand
T multiply(T value1, T value2)
zero value
is used in place of any operand
that is null.
value1
- the first operandvalue2
- the second operand
double divide(T value1, T value2)
zero value
is used in place
of any operand that is null.
value1
- the first operandvalue2
- the second operand
T negate(T value)
zero value
is used in place of any operand that is null.
value
- the value that is to be negated
T increment(T value)
operand class
. The zero value
is used in place of any operand that is
null.
value
- the value that is to be incremented
T maximum(T value1, T value2)
value1
- the first operandvalue2
- the second operand
T minimum(T value1, T value2)
value1
- the first operandvalue2
- the second operand
int compare(T value1, T value2)
Comparable
. The zero value
is used
in place of any operand that is null.
value1
- the first operandvalue2
- the second operand
BigDecimal asBigDecimal(T value)
BigDecimal
representation of the supplied value.
value
- the value that is to be converted to a BigDecimal
value
is nullT fromBigDecimal(BigDecimal value)
BigDecimal
representation into the natural object representation. This may result in loss of some data
(e.g., converting a decimal to an integer results in the loss of the fractional part of the number).
value
- the BigDecimal value
value
is nulldouble doubleValue(T value)
operand class
.
value
- the value
float floatValue(T value)
operand
class
.
value
- the value
int intValue(T value)
operand class
.
value
- the value
short shortValue(T value)
operand
class
.
value
- the value
long longValue(T value)
operand class
.
value
- the value
T createZeroValue()
T create(int value)
value
- the integer value
T create(long value)
value
- the long value
T create(double value)
value
- the double value
double sqrt(T value)
value
- the value whose root is to be found; may not be null or 0
Comparator<T> getComparator()
Comparator
for this operand class
. The implementation is free to
return the same comparator instance from multiple invocations of this method.
int getExponentInScientificNotation(T value)
value
- the value
T roundUp(T value, int decimalShift)
decimalShift
places, rounding, and then shifting the decimal point of the rounded value by
-decimalShift
For example, consider the number 10.000354. This can be rounded to 10.0004 by calling this method and supplying the value and an "exponentToKeep" value of -4.
value
- the value to be roundeddecimalShift
- the number of places the decimal point should be shifted before rounding
T roundDown(T value, int decimalShift)
decimalShift
places, rounding, and then shifting the decimal point of the rounded value by
-decimalShift
For example, consider the number 10.000354. This can be rounded to 10.0003 by calling this method and supplying the value and an "exponentToKeep" value of -4.
value
- the value to be roundeddecimalShift
- the number of places the decimal point should be shifted before rounding
T keepSignificantFigures(T value, int numSigFigs)
T random(T minimum, T maximum, Random rng)
minimum
- the minimum value, or null if the zero-value
should be used for the minimummaximum
- the maximum value, or null if the zero-value
should be used for the maximumrng
- the random number generator to use
operand class
placed within the desired range using a random
distribution, or null if this class does not support generating random instances
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