class PlaceI extends Identifiable
The PlaceI
class represents a discrete place (can hold tokens).
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Instance Constructors
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new
PlaceI(x: Double, y: Double, tokens: VectorI, stays: Boolean = false)
- x
the place's x-coordinate
- y
the place's y-coordinate
- tokens
the number of tokens per color
- stays
whether the tokens stay (test arc)
Value Members
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final
def
!=(arg0: Any): Boolean
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final
def
##(): Int
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final
def
==(arg0: Any): Boolean
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def
add(_tokens: VectorI): Unit
Add tokens to 'this' discrete place.
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final
def
asInstanceOf[T0]: T0
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def
clone(): AnyRef
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final
def
eq(arg0: AnyRef): Boolean
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def
equals(that: Any): Boolean
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def
finalize(): Unit
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final
def
flaw(method: String, message: String): Unit
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final
def
getClass(): Class[_]
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def
hashCode(): Int
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def
holds(_tokens: VectorI): Boolean
Determine whether 'this' place holds at least the token vector (i.e., the requisite number of tokens of each color).
Determine whether 'this' place holds at least the token vector (i.e., the requisite number of tokens of each color). Alternative: use threshold predicate in
PetriNetRules
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val
id: Int
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final
def
isInstanceOf[T0]: Boolean
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def
me: String
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def
name: String
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def
name_=(name: String): Unit
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final
def
ne(arg0: AnyRef): Boolean
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final
def
notify(): Unit
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final
def
notifyAll(): Unit
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def
simType: String
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final
def
synchronized[T0](arg0: ⇒ T0): T0
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def
take(_tokens: VectorI): Unit
Take tokens from 'this' discrete place.
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def
toString(): String
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- var tokens: VectorI
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final
def
wait(): Unit
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final
def
wait(arg0: Long, arg1: Int): Unit
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final
def
wait(arg0: Long): Unit
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- val x: Double
- val y: Double