public final class HardSoftLongScore extends AbstractScore<HardSoftLongScore> implements FeasibilityScore<HardSoftLongScore>
Score is based on 2 levels of long constraints: hard and soft.
Hard constraints have priority over soft constraints.
This class is immutable.Score,
Serialized Form| Modifier and Type | Method and Description |
|---|---|
HardSoftLongScore |
add(HardSoftLongScore augment)
Returns a Score whose value is (this + augment).
|
int |
compareTo(HardSoftLongScore other) |
HardSoftLongScore |
divide(double divisor)
Returns a Score whose value is (this / divisor).
|
boolean |
equals(Object o) |
long |
getHardScore()
The total of the broken negative hard constraints and fulfilled positive hard constraints.
|
long |
getSoftScore()
The total of the broken negative soft constraints and fulfilled positive soft constraints.
|
int |
hashCode() |
boolean |
isFeasible()
A
Solution is feasible if it has no broken hard constraints. |
HardSoftLongScore |
multiply(double multiplicand)
Returns a Score whose value is (this * multiplicand).
|
HardSoftLongScore |
negate()
Returns a Score whose value is (- this).
|
static HardSoftLongScore |
parseScore(String scoreString) |
HardSoftLongScore |
power(double exponent)
Returns a Score whose value is (this ^ exponent).
|
HardSoftLongScore |
subtract(HardSoftLongScore subtrahend)
Returns a Score whose value is (this - subtrahend).
|
Number[] |
toLevelNumbers()
Returns an array of numbers representing the Score.
|
String |
toString() |
static HardSoftLongScore |
valueOf(long hardScore,
long softScore) |
buildScorePattern, buildScorePattern, isCompatibleArithmeticArgument, parseLevelAsBigDecimal, parseLevelAsDouble, parseLevelAsInt, parseLevelAsLong, parseLevelStrings, parseLevelStringsclone, finalize, getClass, notify, notifyAll, wait, wait, waitisCompatibleArithmeticArgumentpublic static HardSoftLongScore parseScore(String scoreString)
public static HardSoftLongScore valueOf(long hardScore, long softScore)
public long getHardScore()
public long getSoftScore()
public boolean isFeasible()
FeasibilityScoreSolution is feasible if it has no broken hard constraints.isFeasible in interface FeasibilityScore<HardSoftLongScore>public HardSoftLongScore add(HardSoftLongScore augment)
Scoreadd in interface Score<HardSoftLongScore>augment - value to be added to this Scorepublic HardSoftLongScore subtract(HardSoftLongScore subtrahend)
Scoresubtract in interface Score<HardSoftLongScore>subtrahend - value to be subtracted from this Scorepublic HardSoftLongScore multiply(double multiplicand)
ScoreMath.floor(double).
If the implementation has a scale/precision, then the unspecified scale/precision of the double multiplicand
should have no impact on the returned scale/precision.multiply in interface Score<HardSoftLongScore>multiplicand - value to be multiplied by this Score.public HardSoftLongScore divide(double divisor)
ScoreMath.floor(double).
If the implementation has a scale/precision, then the unspecified scale/precision of the double divisor
should have no impact on the returned scale/precision.divide in interface Score<HardSoftLongScore>divisor - value by which this Score is to be dividedpublic HardSoftLongScore power(double exponent)
ScoreMath.floor(double).
If the implementation has a scale/precision, then the unspecified scale/precision of the double exponent
should have no impact on the returned scale/precision.power in interface Score<HardSoftLongScore>exponent - value by which this Score is to be poweredpublic HardSoftLongScore negate()
Scorenegate in interface Score<HardSoftLongScore>public Number[] toLevelNumbers()
ScoreMath.floor(double).
The length of the returned array must be stable for a specific Score implementation.
For example: -0hard/-7soft returns new int{-0, -7}toLevelNumbers in interface Score<HardSoftLongScore>public int compareTo(HardSoftLongScore other)
compareTo in interface Comparable<HardSoftLongScore>Copyright © 2006–2015 JBoss by Red Hat. All rights reserved.