final class NegZDouble extends AnyVal
An AnyVal for non-positive Doubles.
Because NegZDouble is an AnyVal it
will usually be as efficient as an Double, being
boxed only when a Double would have been boxed.
The NegZDouble.apply factory method is
implemented in terms of a macro that checks literals for
validity at compile time. Calling
NegZDouble.apply with a literal
Double value will either produce a valid
NegZDouble instance at run time or an error at
compile time. Here's an example:
scala> import anyvals._
import anyvals._
scala> NegZDouble(-1.1)
res1: org.scalactic.anyvals.NegZDouble = NegZDouble(-1.1)
scala> NegZDouble(1.1)
<console>:14: error: NegZDouble.apply can only be invoked on a non-positive (i <= 0.0) floating point literal, like NegZDouble(-1.1).
              NegZDouble(1.1)
                       ^
NegZDouble.apply cannot be used if the value
being passed is a variable (i.e., not a literal),
because the macro cannot determine the validity of variables
at compile time (just literals). If you try to pass a
variable to NegZDouble.apply, you'll get a
compiler error that suggests you use a different factor
method, NegZDouble.from, instead:
scala> val x = -1.1
x: Double = -1.1
scala> NegZDouble(x)
<console>:15: error: NegZDouble.apply can only be invoked on a floating point literal, like NegZDouble(-1.1). Please use NegZDouble.from instead.
              NegZDouble(x)
                       ^
The NegZDouble.from factory method will inspect
the value at runtime and return an
Option[NegZDouble]. If the value is valid,
NegZDouble.from will return a
Some[NegZDouble], else it will return a
None.  Here's an example:
scala> NegZDouble.from(x) res4: Option[org.scalactic.anyvals.NegZDouble] = Some(NegZDouble(-1.1)) scala> val y = 1.1 y: Double = 1.1 scala> NegZDouble.from(y) res5: Option[org.scalactic.anyvals.NegZDouble] = None
The NegZDouble.apply factory method is marked
implicit, so that you can pass literal Doubles
into methods that require NegZDouble, and get the
same compile-time checking you get when calling
NegZDouble.apply explicitly. Here's an example:
scala> def invert(pos: NegZDouble): Double = Double.MaxValue - pos
invert: (pos: org.scalactic.anyvals.NegZDouble)Double
scala> invert(1.1)
res6: Double = 1.7976931348623157E308
scala> invert(Double.MaxValue)
res8: Double = 0.0
scala> invert(1.1)
<console>:15: error: NegZDouble.apply can only be invoked on a non-positive (i <= 0.0) floating point literal, like NegZDouble(-1.1).
              invert(1.1)
                     ^
This example also demonstrates that the
NegZDouble companion object also defines implicit
widening conversions when a similar conversion is provided in
Scala. This makes it convenient to use a
NegZDouble where a Double is
needed. An example is the subtraction in the body of the
invert method defined above,
Double.MaxValue - pos. Although
Double.MaxValue is a Double, which
has no - method that takes a
NegZDouble (the type of pos), you
can still subtract pos, because the
NegZDouble will be implicitly widened to
Double.
- Source
- NegZDouble.scala
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- NegZDouble
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-   final  def !=(arg0: Any): Boolean- Definition Classes
- Any
 
-   final  def ##: Int- Definition Classes
- Any
 
-    def %(x: Double): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Float): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Long): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Int): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Char): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Short): DoubleReturns the remainder of the division of this value by x.
-    def %(x: Byte): DoubleReturns the remainder of the division of this value by x.
-    def *(x: Double): DoubleReturns the product of this value and x.
-    def *(x: Float): DoubleReturns the product of this value and x.
-    def *(x: Long): DoubleReturns the product of this value and x.
-    def *(x: Int): DoubleReturns the product of this value and x.
-    def *(x: Char): DoubleReturns the product of this value and x.
-    def *(x: Short): DoubleReturns the product of this value and x.
-    def *(x: Byte): DoubleReturns the product of this value and x.
-    def +(x: Double): DoubleReturns the sum of this value and x.
-    def +(x: Float): DoubleReturns the sum of this value and x.
-    def +(x: Long): DoubleReturns the sum of this value and x.
-    def +(x: Int): DoubleReturns the sum of this value and x.
-    def +(x: Char): DoubleReturns the sum of this value and x.
-    def +(x: Short): DoubleReturns the sum of this value and x.
-    def +(x: Byte): DoubleReturns the sum of this value and x.
-    def +(x: String): StringConverts this NegZDouble's value to a string then concatenates the given string.
-    def -(x: Double): DoubleReturns the difference of this value and x.
-    def -(x: Float): DoubleReturns the difference of this value and x.
-    def -(x: Long): DoubleReturns the difference of this value and x.
-    def -(x: Int): DoubleReturns the difference of this value and x.
-    def -(x: Char): DoubleReturns the difference of this value and x.
-    def -(x: Short): DoubleReturns the difference of this value and x.
-    def -(x: Byte): DoubleReturns the difference of this value and x.
-    def /(x: Double): DoubleReturns the quotient of this value and x.
-    def /(x: Float): DoubleReturns the quotient of this value and x.
-    def /(x: Long): DoubleReturns the quotient of this value and x.
-    def /(x: Int): DoubleReturns the quotient of this value and x.
-    def /(x: Char): DoubleReturns the quotient of this value and x.
-    def /(x: Short): DoubleReturns the quotient of this value and x.
-    def /(x: Byte): DoubleReturns the quotient of this value and x.
-    def <(x: Double): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Float): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Long): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Int): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Char): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Short): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <(x: Byte): BooleanReturns trueif this value is less than x,falseotherwise.
-    def <=(x: Double): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Float): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Long): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Int): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Char): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Short): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-    def <=(x: Byte): BooleanReturns trueif this value is less than or equal to x,falseotherwise.
-   final  def ==(arg0: Any): Boolean- Definition Classes
- Any
 
-    def >(x: Double): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Float): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Long): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Int): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Char): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Short): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >(x: Byte): BooleanReturns trueif this value is greater than x,falseotherwise.
-    def >=(x: Double): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Float): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Long): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Int): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Char): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Short): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-    def >=(x: Byte): BooleanReturns trueif this value is greater than or equal to x,falseotherwise.
-   final  def asInstanceOf[T0]: T0- Definition Classes
- Any
 
-    def ceil: NegZDoubleReturns the smallest (closest to 0) NegZDoublethat is greater than or equal to thisNegZDoubleand represents a mathematical integer.
-    def ensuringValid(f: (Double) => Double): NegZDoubleApplies the passed Double => Doublefunction to the underlyingDoublevalue, and if the result is positive, returns the result wrapped in aNegZDouble, else throwsAssertionError.Applies the passed Double => Doublefunction to the underlyingDoublevalue, and if the result is positive, returns the result wrapped in aNegZDouble, else throwsAssertionError.This method will inspect the result of applying the given function to this NegZDouble's underlyingDoublevalue and if the result is greater than0.0, it will return aNegZDoublerepresenting that value. Otherwise, theDoublevalue returned by the given function is0.0or negative, so this method will throwAssertionError.This method differs from a vanilla assertorensuringcall in that you get something you didn't already have if the assertion succeeds: a type that promises anDoubleis positive. With this method, you are asserting that you are convinced the result of the computation represented by applying the given function to thisNegZDouble's value will not produce zero, a negative number, includingDouble.NegativeInfinity, orDouble.NaN. Instead of producing such invalid values, this method will throwAssertionError.- f
- the - Double => Doublefunction to apply to this- NegZDouble's underlying- Doublevalue.
- returns
- the result of applying this - NegZDouble's underlying- Doublevalue to to the passed function, wrapped in a- NegZDoubleif it is positive (else throws- AssertionError).
 - Exceptions thrown
- AssertionErrorif the result of applying this- NegZDouble's underlying- Doublevalue to to the passed function is not positive.
 
-    def floor: NegZDoubleReturns the greatest (closest to infinity) NegZDoublethat is less than or equal to thisNegZDoubleand represents a mathematical integer.
-    def getClass(): Class[_ <: AnyVal]- Definition Classes
- AnyVal → Any
 
-    def isFinite: BooleanTrue if this NegZDoublevalue is any finite value (i.e., it is neither positive nor negative infinity), else false.
-   final  def isInstanceOf[T0]: Boolean- Definition Classes
- Any
 
-    def isNegInfinity: BooleanTrue if this NegZDoublevalue represents negative infinity, else false.
-    def isWhole: BooleanIndicates whether this NegZDoublehas a value that is a whole number: it is finite and it has no fraction part.
-    def max(that: NegZDouble): NegZDoubleReturns thisifthis > thatorthatotherwise.
-    def min(that: NegZDouble): NegZDoubleReturns thisifthis < thatorthatotherwise.
-    def plus(x: NegZDouble): NegZDoubleReturns the NegZDoublesum of this value andx.Returns the NegZDoublesum of this value andx.This method will always succeed (not throw an exception) because adding a non-positive Double to another non-positive Double will always result in another non-positive Double value (though the result may be infinity). 
-    def round: NegZLongRounds this NegZDoublevalue to the nearest whole number value that can be expressed as anNegZLong, returning the result as aNegZLong.
-    def toByte: ByteConverts this NegZDoubleto aByte.
-    def toChar: CharConverts this NegZDoubleto aChar.
-    def toDegrees: DoubleConverts an angle measured in radians to an approximately equivalent angle measured in degrees. Converts an angle measured in radians to an approximately equivalent angle measured in degrees. - returns
- the measurement of the angle x in degrees. 
 
-    def toDouble: DoubleConverts this NegZDoubleto aDouble.
-    def toFloat: FloatConverts this NegZDoubleto aFloat.
-    def toInt: IntConverts this NegZDoubleto anInt.
-    def toLong: LongConverts this NegZDoubleto aLong.
-    def toRadians: DoubleConverts an angle measured in degrees to an approximately equivalent angle measured in radians. Converts an angle measured in degrees to an approximately equivalent angle measured in radians. - returns
- the measurement of the angle x in radians. 
 
-    def toShort: ShortConverts this NegZDoubleto aShort.
-    def toString(): StringA string representation of this NegZDouble.A string representation of this NegZDouble.- Definition Classes
- NegZDouble → Any
 
-    def unary_+: NegZDoubleReturns this value, unmodified. 
-    def unary_-: PosZDoubleReturns the negation of this value. 
-  val value: Double