trait Explicitly extends AnyRef
Provides ScalaTest's “explicitly DSL,” which facilitates the
explicit specification of an Equality[T]
or a Uniformity[T]
where
Equality[T]
is taken implicitly.
The Explicitly DSL can be used with the ===
and !==
operators of Scalactic
as well as the should
equal
, be
, contain
, and
===
syntax of ScalaTest matchers.
If you want to customize equality for a type in general, you would likely want to place an
implicit Equality[T]
for that type in scope (or in T
's companion object). That implicit
equality definition will then be picked
up and used when that type is compared for equality with the equal
, be
, and
contain
matchers in ScalaTest tests and with
===
in both tests and production code.
If you just want to use a custom equality for a single comparison, however, you may prefer to pass it explicitly. For
example, if you have an implicit
Equality[String]
in scope, you can force a comparison to use the default equality with this syntax:
// In production code: if ((result === "hello")(decided by defaultEquality)) true else false // In tests: result should equal ("hello") (decided by defaultEquality)
The explicitly DSL also provides support for specifying a one-off equality that is based on a normalization. For
example, Scalactic offers a StringNormalizations
trait that
provides methods such as trimmed
and lowerCased
that return
Normalization[String]
instances that normalize by trimming and lower-casing, respectively. If you bring
those into scope by mixing in or importing the members of StringNormalizations
, you could use the
explicitly DSL like this:
// In production code: if ((result === "hello")(after being lowerCased)) true else false // In tests: result should equal ("hello") (after being lowerCased and trimmed)
If you prefer not to use English-like DSLs in your production code, you can alternatively
not use the Explicitly
trait and instead write:
// To explicitly specify an Equality instance, just specify it: if ((result === "hello")(Equality.default)) true else false // To base an Equality instance on a Uniformity, just // call toEquality on it: if ((result === "hello")(lowerCased.toEquality)) true else false
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class
DecidedByEquality[A] extends Equality[A]
This class is part of the Scalactic “explicitly DSL”.
This class is part of the Scalactic “explicitly DSL”. Please see the documentation for
Explicitly
for an overview of the explicitly DSL.Instances of this class are returned via the
decided
by
<an Equality>
syntax, and enablesafterBeing
to be invoked on it. Here's an example, given anEquality[String]
namedmyStringEquality
:result should equal ("hello") (decided by myStringEquality afterBeing lowerCased)
-
class
DecidedWord extends AnyRef
This class is part of the Scalactic “explicitly DSL”.
This class is part of the Scalactic “explicitly DSL”. Please see the documentation for
Explicitly
for an overview of the explicitly DSL. -
class
DeterminedByEquivalence[T] extends Equivalence[T]
This class is part of the Scalactic “explicitly DSL”.
This class is part of the Scalactic “explicitly DSL”. Please see the documentation for
Explicitly
for an overview of the explicitly DSL.Instances of this class are returned via the
decided
by
<an Equivalence>
syntax, and enablesafterBeing
to be invoked on it. Here's an example, given anEquivalence[String]
namedmyStringEquivalence
:result should equal ("hello") (determined by myStringEquivalence afterBeing lowerCased)
-
class
DeterminedWord extends AnyRef
This class is part of the Scalactic “explicitly DSL”.
This class is part of the Scalactic “explicitly DSL”. Please see the documentation for
Explicitly
for an overview of the explicitly DSL. -
class
TheAfterWord extends AnyRef
This class is part of the Scalactic “explicitly DSL”.
This class is part of the Scalactic “explicitly DSL”. Please see the documentation for
Explicitly
for an overview of the explicitly DSL.
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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val
after: TheAfterWord
This field enables syntax such as the following:
This field enables syntax such as the following:
result should equal ("hello") (after being lowerCased) ^
-
final
def
asInstanceOf[T0]: T0
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clone(): AnyRef
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val
decided: DecidedWord
This field enables syntax such as the following:
This field enables syntax such as the following:
result should equal ("hello") (decided by defaultEquality) ^
-
val
determined: DeterminedWord
This field enables syntax such as the following, given an
Equivalence[String]
namedmyStringEquivalence
:This field enables syntax such as the following, given an
Equivalence[String]
namedmyStringEquivalence
:result should equal ("hello") (determined by myStringEquivalence) ^
-
final
def
eq(arg0: AnyRef): Boolean
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def
equals(arg0: Any): Boolean
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def
finalize(): Unit
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def
getClass(): Class[_]
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def
hashCode(): Int
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final
def
isInstanceOf[T0]: Boolean
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final
def
ne(arg0: AnyRef): Boolean
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final
def
notify(): Unit
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def
notifyAll(): Unit
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def
synchronized[T0](arg0: ⇒ T0): T0
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def
toString(): String
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def
wait(): Unit
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def
wait(arg0: Long, arg1: Int): Unit
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