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java.lang.Objectorg.optaplanner.core.api.score.AbstractScore<HardSoftBigDecimalScore>
org.optaplanner.core.api.score.buildin.hardsoftbigdecimal.HardSoftBigDecimalScore
public final class HardSoftBigDecimalScore
This Score
is based on 2 levels of BigDecimal
constraints: hard and soft.
Hard constraints have priority over soft constraints.
Score
,
Serialized FormMethod Summary | |
---|---|
HardSoftBigDecimalScore |
add(HardSoftBigDecimalScore augment)
Returns a Score whose value is (this + augment). |
int |
compareTo(HardSoftBigDecimalScore other)
|
HardSoftBigDecimalScore |
divide(double divisor)
Returns a Score whose value is (this / divisor). |
boolean |
equals(Object o)
|
BigDecimal |
getHardScore()
The total of the broken negative hard constraints and fulfilled positive hard constraints. |
BigDecimal |
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. |
HardSoftBigDecimalScore |
multiply(double multiplicand)
Returns a Score whose value is (this * multiplicand). |
HardSoftBigDecimalScore |
negate()
Returns a Score whose value is (- this). |
static HardSoftBigDecimalScore |
parseScore(String scoreString)
|
HardSoftBigDecimalScore |
power(double exponent)
Returns a Score whose value is (this ^ exponent). |
HardSoftBigDecimalScore |
subtract(HardSoftBigDecimalScore subtrahend)
Returns a Score whose value is (this - subtrahend). |
Number[] |
toLevelNumbers()
Returns an array of numbers representing the Score. |
String |
toString()
|
static HardSoftBigDecimalScore |
valueOf(BigDecimal hardScore,
BigDecimal softScore)
|
Methods inherited from class org.optaplanner.core.api.score.AbstractScore |
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buildScorePattern, buildScorePattern, isCompatibleArithmeticArgument, parseLevelAsBigDecimal, parseLevelAsDouble, parseLevelAsInt, parseLevelAsLong, parseLevelStrings, parseLevelStrings |
Methods inherited from class java.lang.Object |
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clone, finalize, getClass, notify, notifyAll, wait, wait, wait |
Methods inherited from interface org.optaplanner.core.api.score.Score |
---|
isCompatibleArithmeticArgument |
Method Detail |
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public static HardSoftBigDecimalScore parseScore(String scoreString)
public static HardSoftBigDecimalScore valueOf(BigDecimal hardScore, BigDecimal softScore)
public BigDecimal getHardScore()
public BigDecimal getSoftScore()
public boolean isFeasible()
FeasibilityScore
Solution
is feasible if it has no broken hard constraints.
isFeasible
in interface FeasibilityScore<HardSoftBigDecimalScore>
public HardSoftBigDecimalScore add(HardSoftBigDecimalScore augment)
Score
add
in interface Score<HardSoftBigDecimalScore>
augment
- value to be added to this Score
public HardSoftBigDecimalScore subtract(HardSoftBigDecimalScore subtrahend)
Score
subtract
in interface Score<HardSoftBigDecimalScore>
subtrahend
- value to be subtracted from this Score
public HardSoftBigDecimalScore multiply(double multiplicand)
Score
Math.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<HardSoftBigDecimalScore>
multiplicand
- value to be multiplied by this Score.
public HardSoftBigDecimalScore divide(double divisor)
Score
Math.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<HardSoftBigDecimalScore>
divisor
- value by which this Score is to be divided
public HardSoftBigDecimalScore power(double exponent)
Score
Math.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<HardSoftBigDecimalScore>
exponent
- value by which this Score is to be powered
public HardSoftBigDecimalScore negate()
Score
negate
in interface Score<HardSoftBigDecimalScore>
public Number[] toLevelNumbers()
Score
Math.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<HardSoftBigDecimalScore>
public boolean equals(Object o)
equals
in class Object
public int hashCode()
hashCode
in class Object
public int compareTo(HardSoftBigDecimalScore other)
compareTo
in interface Comparable<HardSoftBigDecimalScore>
public String toString()
toString
in class Object
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