jump-game/Jump Game/Library/PackageCache/com.unity.ext.nunit@1.0.0/net35/unity-custom/nunit.framework.xml
2020-01-29 10:05:38 +02:00

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<?xml version="1.0"?>
<doc>
<assembly>
<name>nunit.framework</name>
</assembly>
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<member name="T:NUnit.Framework.StringAssert">
<summary>
Basic Asserts on strings.
</summary>
</member>
<member name="M:NUnit.Framework.StringAssert.Equals(System.Object,System.Object)">
<summary>
The Equals method throws an InvalidOperationException. This is done
to make sure there is no mistake by calling this function.
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<param name="a"></param>
<param name="b"></param>
</member>
<member name="M:NUnit.Framework.StringAssert.ReferenceEquals(System.Object,System.Object)">
<summary>
override the default ReferenceEquals to throw an InvalidOperationException. This
implementation makes sure there is no mistake in calling this function
as part of Assert.
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<param name="a"></param>
<param name="b"></param>
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Asserts that a string is found within another string.
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<param name="message">The message to display in case of failure</param>
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Asserts that a string is found within another string.
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Asserts that a string is not found within another string.
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Asserts that a string is found within another string.
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<summary>
Asserts that a string starts with another string.
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Asserts that a string starts with another string.
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Asserts that a string does not start with another string.
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Asserts that a string does not start with another string.
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Asserts that a string ends with another string.
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Asserts that a string ends with another string.
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Asserts that a string does not end with another string.
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Asserts that a string does not end with another string.
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Asserts that two strings are equal, without regard to case.
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Asserts that two strings are equal, without regard to case.
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Asserts that two strings are not equal, without regard to case.
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Asserts that two strings are not equal, without regard to case.
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Asserts that a string matches an expected regular expression pattern.
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Asserts that a string matches an expected regular expression pattern.
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Asserts that a string does not match an expected regular expression pattern.
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Asserts that a string does not match an expected regular expression pattern.
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Combines multiple filters so that a test must pass all
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A base class for multi-part filters
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Interface to be implemented by filters applied to tests.
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<summary>
Interface to be implemented by filters applied to tests.
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loaded, since this is the only time an ITest exists.
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<member name="T:NUnit.Framework.Interfaces.IXmlNodeBuilder">
<summary>
An object implementing IXmlNodeBuilder is able to build
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Returns a TNode representing the current object.
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Returns a TNode representing the current object after
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Determine if a particular test passes the filter criteria. Pass
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Determine if a test matches the filter expicitly. That is, it must
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Unique Empty filter.
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Determine if a particular test passes the filter criteria. The default
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<summary>
Determine if a test matches the filter expicitly. That is, it must
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</summary>
<param name="test">The test to which the filter is applied</param>
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Determine whether the test itself matches the filter criteria, without
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Determine whether any ancestor of the test matches the filter criteria
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Determine whether any descendant of the test matches the filter criteria.
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Create a TestFilter instance from an xml representation.
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Create a TestFilter from it's TNode representation
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Adds an XML node
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Adds an XML node
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Indicates whether this is the EmptyFilter
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Indicates whether this is a top-level filter,
not contained in any other filter.
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Nested class provides an empty filter - one that always
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Constructs an empty CompositeFilter
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Constructs a CompositeFilter from an array of filters
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Adds a filter to the list of filters
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Checks whether the CompositeFilter is matched by a test.
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Checks whether the CompositeFilter is matched by a test.
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<param name="test">The test to be matched</param>
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Checks whether the CompositeFilter is explicit matched by a test.
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<param name="test">The test to be matched</param>
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Adds an XML node
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Return a list of the composing filters.
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Gets the element name
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<value>Element name</value>
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Constructs an empty AndFilter
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Constructs an AndFilter from an array of filters
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Checks whether the AndFilter is matched by a test
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Gets the element name
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SubstringConstraint can test whether a string contains
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StringConstraint is the abstract base for constraints
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The Constraint class is the base of all built-in constraints
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Interface for all constraints
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The IResolveConstraint interface is implemented by all
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Return the top-level constraint for this expression
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Test whether the constraint is satisfied by a given reference.
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The display name of this Constraint for use by ToString().
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The Description of what this constraint tests, for
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Arguments provided to this Constraint, for use in
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The ConstraintBuilder holding this constraint
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Construct a constraint with optional arguments
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Applies the constraint to an actual value, returning a ConstraintResult.
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Applies the constraint to an ActualValueDelegate that returns
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Test whether the constraint is satisfied by a given reference.
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Retrieves the value to be tested from an ActualValueDelegate.
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Default override of ToString returns the constraint DisplayName
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This operator creates a constraint that is satisfied if either
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This operator creates a constraint that is satisfied if the
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Returns a DelayedConstraint with the specified delay time
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The display name of this Constraint for use by ToString().
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The Description of what this constraint tests, for
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Arguments provided to this Constraint, for use in
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The ConstraintBuilder holding this constraint
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Returns a ConstraintExpression by appending And
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Returns a ConstraintExpression by appending Or
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The expected value
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Description of this constraint
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Test whether the constraint is satisfied by a given value
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<returns>True for success, false for failure</returns>
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<member name="M:NUnit.Framework.Constraints.StringConstraint.Matches(System.String)">
<summary>
Test whether the constraint is satisfied by a given string
</summary>
<param name="actual">The string to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="P:NUnit.Framework.Constraints.StringConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.StringConstraint.IgnoreCase">
<summary>
Modify the constraint to ignore case in matching.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.SubstringConstraint.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.SubstringConstraint"/> class.
</summary>
<param name="expected">The expected.</param>
</member>
<member name="M:NUnit.Framework.Constraints.SubstringConstraint.Matches(System.String)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="T:NUnit.Framework.Constraints.PrefixConstraint">
<summary>
Abstract base class used for prefixes
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.PrefixConstraint.#ctor(NUnit.Framework.Constraints.IResolveConstraint)">
<summary>
Construct given a base constraint
</summary>
<param name="baseConstraint"></param>
</member>
<member name="P:NUnit.Framework.Constraints.PrefixConstraint.BaseConstraint">
<summary>
The base constraint
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.PrefixConstraint.DescriptionPrefix">
<summary>
Prefix used in forming the constraint description
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.PrefixConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.AssignableToConstraint">
<summary>
AssignableToConstraint is used to test that an object
can be assigned to a given Type.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.TypeConstraint">
<summary>
TypeConstraint is the abstract base for constraints
that take a Type as their expected value.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.TypeConstraint.expectedType">
<summary>
The expected Type used by the constraint
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.TypeConstraint.actualType">
<summary>
The type of the actual argument to which the constraint was applied
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.TypeConstraint.#ctor(System.Type,System.String)">
<summary>
Construct a TypeConstraint for a given Type
</summary>
<param name="type">The expected type for the constraint</param>
<param name="descriptionPrefix">Prefix used in forming the constraint description</param>
</member>
<member name="M:NUnit.Framework.Constraints.TypeConstraint.ApplyTo(System.Object)">
<summary>
Applies the constraint to an actual value, returning a ConstraintResult.
</summary>
<param name="actual">The value to be tested</param>
<returns>A ConstraintResult</returns>
</member>
<member name="M:NUnit.Framework.Constraints.TypeConstraint.Matches(System.Object)">
<summary>
Apply the constraint to an actual value, returning true if it succeeds
</summary>
<param name="actual">The actual argument</param>
<returns>True if the constraint succeeds, otherwise false.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.AssignableToConstraint.#ctor(System.Type)">
<summary>
Construct an AssignableToConstraint for the type provided
</summary>
<param name="type"></param>
</member>
<member name="M:NUnit.Framework.Constraints.AssignableToConstraint.Matches(System.Object)">
<summary>
Apply the constraint to an actual value, returning true if it succeeds
</summary>
<param name="actual">The actual argument</param>
<returns>True if the constraint succeeds, otherwise false.</returns>
</member>
<member name="T:NUnit.Framework.MaxTimeAttribute">
<summary>
Summary description for MaxTimeAttribute.
</summary>
</member>
<member name="T:NUnit.Framework.PropertyAttribute">
<summary>
PropertyAttribute is used to attach information to a test as a name/value pair..
</summary>
</member>
<member name="T:NUnit.Framework.NUnitAttribute">
<summary>
The abstract base class for all custom attributes defined by NUnit.
</summary>
</member>
<member name="M:NUnit.Framework.NUnitAttribute.#ctor">
<summary>
Default constructor
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IApplyToTest">
<summary>
The IApplyToTest interface is implemented by self-applying
attributes that modify the state of a test in some way.
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<member name="M:NUnit.Framework.Interfaces.IApplyToTest.ApplyToTest(NUnit.Framework.Internal.Test)">
<summary>
Modifies a test as defined for the specific attribute.
</summary>
<param name="test">The test to modify</param>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.#ctor(System.String,System.String)">
<summary>
Construct a PropertyAttribute with a name and string value
</summary>
<param name="propertyName">The name of the property</param>
<param name="propertyValue">The property value</param>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.#ctor(System.String,System.Int32)">
<summary>
Construct a PropertyAttribute with a name and int value
</summary>
<param name="propertyName">The name of the property</param>
<param name="propertyValue">The property value</param>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.#ctor(System.String,System.Double)">
<summary>
Construct a PropertyAttribute with a name and double value
</summary>
<param name="propertyName">The name of the property</param>
<param name="propertyValue">The property value</param>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.#ctor">
<summary>
Constructor for derived classes that set the
property dictionary directly.
</summary>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.#ctor(System.Object)">
<summary>
Constructor for use by derived classes that use the
name of the type as the property name. Derived classes
must ensure that the Type of the property value is
a standard type supported by the BCL. Any custom
types will cause a serialization Exception when
in the client.
</summary>
</member>
<member name="M:NUnit.Framework.PropertyAttribute.ApplyToTest(NUnit.Framework.Internal.Test)">
<summary>
Modifies a test by adding properties to it.
</summary>
<param name="test">The test to modify</param>
</member>
<member name="P:NUnit.Framework.PropertyAttribute.Properties">
<summary>
Gets the property dictionary for this attribute
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IWrapSetUpTearDown">
<summary>
Objects implementing this interface are used to wrap
the entire test, including SetUp and TearDown.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ICommandWrapper">
<summary>
ICommandWrapper is implemented by attributes and other
objects able to wrap a TestCommand with another command.
</summary>
<remarks>
Attributes or other objects should implement one of the
derived interfaces, rather than this one, since they
indicate in which part of the command chain the wrapper
should be applied.
</remarks>
</member>
<member name="M:NUnit.Framework.Interfaces.ICommandWrapper.Wrap(NUnit.Framework.Internal.Commands.TestCommand)">
<summary>
Wrap a command and return the result.
</summary>
<param name="command">The command to be wrapped</param>
<returns>The wrapped command</returns>
</member>
<member name="M:NUnit.Framework.MaxTimeAttribute.#ctor(System.Int32)">
<summary>
Construct a MaxTimeAttribute, given a time in milliseconds.
</summary>
<param name="milliseconds">The maximum elapsed time in milliseconds</param>
</member>
<member name="T:NUnit.Framework.Internal.Randomizer">
<summary>
Randomizer returns a set of random _values in a repeatable
way, to allow re-running of tests if necessary. It extends
the .NET Random class, providing random values for a much
wider range of types.
The class is used internally by the framework to generate
test case data and is also exposed for use by users through
the TestContext.Random property.
</summary>
<remarks>
For consistency with the underlying Random Type, methods
returning a single value use the prefix "Next..." Those
without an argument return a non-negative value up to
the full positive range of the Type. Overloads are provided
for specifying a maximum or a range. Methods that return
arrays or strings use the prefix "Get..." to avoid
confusion with the single-value methods.
</remarks>
</member>
<member name="F:NUnit.Framework.Internal.Randomizer.DefaultStringChars">
<summary>
Default characters for random functions.
</summary>
<remarks>Default characters are the English alphabet (uppercase &amp; lowercase), arabic numerals, and underscore</remarks>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.GetRandomizer(System.Reflection.MemberInfo)">
<summary>
Get a Randomizer for a particular member, returning
one that has already been created if it exists.
This ensures that the same _values are generated
each time the tests are reloaded.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.GetRandomizer(System.Reflection.ParameterInfo)">
<summary>
Get a randomizer for a particular parameter, returning
one that has already been created if it exists.
This ensures that the same values are generated
each time the tests are reloaded.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.CreateRandomizer">
<summary>
Create a new Randomizer using the next seed
available to ensure that each randomizer gives
a unique sequence of values.
</summary>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.#ctor">
<summary>
Default constructor
</summary>
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<member name="M:NUnit.Framework.Internal.Randomizer.#ctor(System.Int32)">
<summary>
Construct based on seed value
</summary>
<param name="seed"></param>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUInt">
<summary>
Returns a random unsigned int.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUInt(System.UInt32)">
<summary>
Returns a random unsigned int less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUInt(System.UInt32,System.UInt32)">
<summary>
Returns a random unsigned int within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextShort">
<summary>
Returns a non-negative random short.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextShort(System.Int16)">
<summary>
Returns a non-negative random short less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextShort(System.Int16,System.Int16)">
<summary>
Returns a non-negative random short within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUShort">
<summary>
Returns a random unsigned short.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUShort(System.UInt16)">
<summary>
Returns a random unsigned short less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextUShort(System.UInt16,System.UInt16)">
<summary>
Returns a random unsigned short within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextLong">
<summary>
Returns a random long.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextLong(System.Int64)">
<summary>
Returns a random long less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextLong(System.Int64,System.Int64)">
<summary>
Returns a non-negative random long within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextULong">
<summary>
Returns a random ulong.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextULong(System.UInt64)">
<summary>
Returns a random ulong less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextULong(System.UInt64,System.UInt64)">
<summary>
Returns a non-negative random long within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextByte">
<summary>
Returns a random Byte
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextByte(System.Byte)">
<summary>
Returns a random Byte less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextByte(System.Byte,System.Byte)">
<summary>
Returns a random Byte within a specified range
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextSByte">
<summary>
Returns a random SByte
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextSByte(System.SByte)">
<summary>
Returns a random sbyte less than the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextSByte(System.SByte,System.SByte)">
<summary>
Returns a random sbyte within a specified range
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextBool">
<summary>
Returns a random bool
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextBool(System.Double)">
<summary>
Returns a random bool based on the probablility a true result
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextDouble(System.Double)">
<summary>
Returns a random double between 0.0 and the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextDouble(System.Double,System.Double)">
<summary>
Returns a random double within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextFloat">
<summary>
Returns a random float.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextFloat(System.Single)">
<summary>
Returns a random float between 0.0 and the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextFloat(System.Single,System.Single)">
<summary>
Returns a random float within a specified range.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextEnum(System.Type)">
<summary>
Returns a random enum value of the specified Type as an object.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextEnum``1">
<summary>
Returns a random enum value of the specified Type.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.GetString(System.Int32,System.String)">
<summary>
Generate a random string based on the characters from the input string.
</summary>
<param name="outputLength">desired length of output string.</param>
<param name="allowedChars">string representing the set of characters from which to construct the resulting string</param>
<returns>A random string of arbitrary length</returns>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.GetString(System.Int32)">
<summary>
Generate a random string based on the characters from the input string.
</summary>
<param name="outputLength">desired length of output string.</param>
<returns>A random string of arbitrary length</returns>
<remarks>Uses <see cref="F:NUnit.Framework.Internal.Randomizer.DefaultStringChars">DefaultStringChars</see> as the input character set </remarks>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.GetString">
<summary>
Generate a random string based on the characters from the input string.
</summary>
<returns>A random string of the default length</returns>
<remarks>Uses <see cref="F:NUnit.Framework.Internal.Randomizer.DefaultStringChars">DefaultStringChars</see> as the input character set </remarks>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextDecimal">
<summary>
Returns a random decimal.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextDecimal(System.Decimal)">
<summary>
Returns a random decimal between positive zero and the specified maximum.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Randomizer.NextDecimal(System.Decimal,System.Decimal)">
<summary>
Returns a random decimal within a specified range, which is not
permitted to exceed decimal.MaxVal in the current implementation.
</summary>
<remarks>
A limitation of this implementation is that the range from min
to max must not exceed decimal.MaxVal.
</remarks>
</member>
<member name="P:NUnit.Framework.Internal.Randomizer.InitialSeed">
<summary>
Initial seed used to create randomizers for this run
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IFixtureBuilder">
<summary>
The IFixtureBuilder interface is exposed by a class that knows how to
build a TestFixture from one or more Types. In general, it is exposed
by an attribute, but may be implemented in a helper class used by the
attribute in some cases.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IFixtureBuilder.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Build one or more TestFixtures from type provided. At least one
non-null TestSuite must always be returned, since the method is
generally called because the user has marked the target class as
a fixture. If something prevents the fixture from being used, it
will be returned nonetheless, labelled as non-runnable.
</summary>
<param name="typeInfo">The type info of the fixture to be used.</param>
<returns>A TestSuite object or one derived from TestSuite.</returns>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestBuilder">
<summary>
The ITestBuilder interface is exposed by a class that knows how to
build one or more TestMethods from a MethodInfo. In general, it is exposed
by an attribute, which has additional information available to provide
the necessary test parameters to distinguish the test cases built.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestBuilder.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Build one or more TestMethods from the provided MethodInfo.
</summary>
<param name="method">The method to be used as a test</param>
<param name="suite">The TestSuite to which the method will be added</param>
<returns>A TestMethod object</returns>
</member>
<member name="T:NUnit.Framework.Interfaces.IReflectionInfo">
<summary>
The IReflectionInfo interface is implemented by NUnit wrapper objects that perform reflection.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IReflectionInfo.GetCustomAttributes``1(System.Boolean)">
<summary>
Returns an array of custom attributes of the specified type applied to this object
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IReflectionInfo.IsDefined``1(System.Boolean)">
<summary>
Returns a value indicating whether an attribute of the specified type is defined on this object.
</summary>
</member>
<member name="T:System.Threading.SpinWait">
<summary>
</summary>
</member>
<member name="M:System.Threading.SpinWait.SpinOnce">
<summary>
</summary>
</member>
<member name="M:System.Threading.SpinWait.SpinUntil(System.Func{System.Boolean})">
<summary>
</summary>
<param name="condition"></param>
</member>
<member name="M:System.Threading.SpinWait.SpinUntil(System.Func{System.Boolean},System.TimeSpan)">
<summary>
</summary>
<param name="condition"></param>
<param name="timeout"></param>
<returns></returns>
</member>
<member name="M:System.Threading.SpinWait.SpinUntil(System.Func{System.Boolean},System.Int32)">
<summary>
</summary>
<param name="condition"></param>
<param name="millisecondsTimeout"></param>
<returns></returns>
</member>
<member name="M:System.Threading.SpinWait.Reset">
<summary>
</summary>
</member>
<member name="P:System.Threading.SpinWait.NextSpinWillYield">
<summary>
</summary>
</member>
<member name="P:System.Threading.SpinWait.Count">
<summary>
</summary>
</member>
<member name="T:NUnit.Framework.Internal.TestSuiteResult">
<summary>
Represents the result of running a test suite
</summary>
</member>
<member name="T:NUnit.Framework.Internal.TestResult">
<summary>
The TestResult class represents the result of a test.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestResult">
<summary>
The ITestResult interface represents the result of a test.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.ResultState">
<summary>
Gets the ResultState of the test result, which
indicates the success or failure of the test.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Name">
<summary>
Gets the name of the test result
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.FullName">
<summary>
Gets the full name of the test result
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Duration">
<summary>
Gets the elapsed time for running the test in seconds
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.StartTime">
<summary>
Gets or sets the time the test started running.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.EndTime">
<summary>
Gets or sets the time the test finished running.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Message">
<summary>
Gets the message associated with a test
failure or with not running the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.StackTrace">
<summary>
Gets any stacktrace associated with an
error or failure. Not available in
the Compact Framework 1.0.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.AssertCount">
<summary>
Gets the number of asserts executed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.FailCount">
<summary>
Gets the number of test cases that failed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.PassCount">
<summary>
Gets the number of test cases that passed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.SkipCount">
<summary>
Gets the number of test cases that were skipped
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.InconclusiveCount">
<summary>
Gets the number of test cases that were inconclusive
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.HasChildren">
<summary>
Indicates whether this result has any child results.
Accessing HasChildren should not force creation of the
Children collection in classes implementing this interface.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Children">
<summary>
Gets the the collection of child results.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Test">
<summary>
Gets the Test to which this result applies.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestResult.Output">
<summary>
Gets any text output written to this result.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.TestResult.MIN_DURATION">
<summary>
The minimum duration for tests
</summary>
</member>
<member name="F:NUnit.Framework.Internal.TestResult.CHILD_ERRORS_MESSAGE">
<summary>
Error message for when child tests have errors
</summary>
</member>
<member name="F:NUnit.Framework.Internal.TestResult.CHILD_IGNORE_MESSAGE">
<summary>
Error message for when child tests are ignored
</summary>
</member>
<member name="F:NUnit.Framework.Internal.TestResult.InternalAssertCount">
<summary>
Aggregate assertion count
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.#ctor(NUnit.Framework.Interfaces.ITest)">
<summary>
Construct a test result given a Test
</summary>
<param name="test">The test to be used</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.ToXml(System.Boolean)">
<summary>
Returns the Xml representation of the result.
</summary>
<param name="recursive">If true, descendant results are included</param>
<returns>An XmlNode representing the result</returns>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Adds the XML representation of the result as a child of the
supplied parent node..
</summary>
<param name="parentNode">The parent node.</param>
<param name="recursive">If true, descendant results are included</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.SetResult(NUnit.Framework.Interfaces.ResultState)">
<summary>
Set the result of the test
</summary>
<param name="resultState">The ResultState to use in the result</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.SetResult(NUnit.Framework.Interfaces.ResultState,System.String)">
<summary>
Set the result of the test
</summary>
<param name="resultState">The ResultState to use in the result</param>
<param name="message">A message associated with the result state</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.SetResult(NUnit.Framework.Interfaces.ResultState,System.String,System.String)">
<summary>
Set the result of the test
</summary>
<param name="resultState">The ResultState to use in the result</param>
<param name="message">A message associated with the result state</param>
<param name="stackTrace">Stack trace giving the location of the command</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.RecordException(System.Exception)">
<summary>
Set the test result based on the type of exception thrown
</summary>
<param name="ex">The exception that was thrown</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.RecordException(System.Exception,NUnit.Framework.Interfaces.FailureSite)">
<summary>
Set the test result based on the type of exception thrown
</summary>
<param name="ex">The exception that was thrown</param>
<param name="site">THe FailureSite to use in the result</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.RecordTearDownException(System.Exception)">
<summary>
RecordTearDownException appends the message and stacktrace
from an exception arising during teardown of the test
to any previously recorded information, so that any
earlier failure information is not lost. Note that
calling Assert.Ignore, Assert.Inconclusive, etc. during
teardown is treated as an error. If the current result
represents a suite, it may show a teardown error even
though all contained tests passed.
</summary>
<param name="ex">The Exception to be recorded</param>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.AddReasonElement(NUnit.Framework.Interfaces.TNode)">
<summary>
Adds a reason element to a node and returns it.
</summary>
<param name="targetNode">The target node.</param>
<returns>The new reason element.</returns>
</member>
<member name="M:NUnit.Framework.Internal.TestResult.AddFailureElement(NUnit.Framework.Interfaces.TNode)">
<summary>
Adds a failure element to a node and returns it.
</summary>
<param name="targetNode">The target node.</param>
<returns>The new failure element.</returns>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Test">
<summary>
Gets the test with which this result is associated.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.ResultState">
<summary>
Gets the ResultState of the test result, which
indicates the success or failure of the test.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Name">
<summary>
Gets the name of the test result
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.FullName">
<summary>
Gets the full name of the test result
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Duration">
<summary>
Gets or sets the elapsed time for running the test in seconds
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.StartTime">
<summary>
Gets or sets the time the test started running.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.EndTime">
<summary>
Gets or sets the time the test finished running.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Message">
<summary>
Gets the message associated with a test
failure or with not running the test
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.StackTrace">
<summary>
Gets any stacktrace associated with an
error or failure.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.AssertCount">
<summary>
Gets or sets the count of asserts executed
when running the test.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.FailCount">
<summary>
Gets the number of test cases that failed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.PassCount">
<summary>
Gets the number of test cases that passed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.SkipCount">
<summary>
Gets the number of test cases that were skipped
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.InconclusiveCount">
<summary>
Gets the number of test cases that were inconclusive
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.HasChildren">
<summary>
Indicates whether this result has any child results.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Children">
<summary>
Gets the collection of child results.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.OutWriter">
<summary>
Gets a TextWriter, which will write output to be included in the result.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestResult.Output">
<summary>
Gets any text output written to this result.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestSuiteResult.#ctor(NUnit.Framework.Internal.TestSuite)">
<summary>
Construct a TestSuiteResult base on a TestSuite
</summary>
<param name="suite">The TestSuite to which the result applies</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuiteResult.AddResult(NUnit.Framework.Interfaces.ITestResult)">
<summary>
Adds a child result to this result, setting this result's
ResultState to Failure if the child result failed.
</summary>
<param name="result">The result to be added</param>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.FailCount">
<summary>
Gets the number of test cases that failed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.PassCount">
<summary>
Gets the number of test cases that passed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.SkipCount">
<summary>
Gets the number of test cases that were skipped
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.InconclusiveCount">
<summary>
Gets the number of test cases that were inconclusive
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.HasChildren">
<summary>
Indicates whether this result has any child results.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuiteResult.Children">
<summary>
Gets the collection of child results.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.TestSuite">
<summary>
TestSuite represents a composite test, which contains other tests.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Test">
<summary>
The Test abstract class represents a test within the framework.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITest">
<summary>
Common interface supported by all representations
of a test. Only includes informational fields.
The Run method is specifically excluded to allow
for data-only representations of a test.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Id">
<summary>
Gets the id of the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Name">
<summary>
Gets the name of the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.FullName">
<summary>
Gets the fully qualified name of the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.ClassName">
<summary>
Gets the name of the class containing this test. Returns
null if the test is not associated with a class.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.MethodName">
<summary>
Gets the name of the method implementing this test.
Returns null if the test is not implemented as a method.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.TypeInfo">
<summary>
Gets the Type of the test fixture, if applicable, or
null if no fixture type is associated with this test.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Method">
<summary>
Gets an IMethod for the method implementing this test.
Returns null if the test is not implemented as a method.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.RunState">
<summary>
Gets the RunState of the test, indicating whether it can be run.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.TestCaseCount">
<summary>
Count of the test cases ( 1 if this is a test case )
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Properties">
<summary>
Gets the properties of the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Parent">
<summary>
Gets the parent test, if any.
</summary>
<value>The parent test or null if none exists.</value>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.IsSuite">
<summary>
Returns true if this is a test suite
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.HasChildren">
<summary>
Gets a bool indicating whether the current test
has any descendant tests.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Tests">
<summary>
Gets this test's child tests
</summary>
<value>A list of child tests</value>
</member>
<member name="P:NUnit.Framework.Interfaces.ITest.Fixture">
<summary>
Gets a fixture object for running this test.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Test._nextID">
<summary>
Static value to seed ids. It's started at 1000 so any
uninitialized ids will stand out.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Test.setUpMethods">
<summary>
The SetUp methods.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Test.tearDownMethods">
<summary>
The teardown methods
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Test.DeclaringTypeInfo">
<summary>
Used to cache the declaring type for this MethodInfo
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Test._method">
<summary>
Method property backing field
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Test.#ctor(System.String)">
<summary>
Constructs a test given its name
</summary>
<param name="name">The name of the test</param>
</member>
<member name="M:NUnit.Framework.Internal.Test.#ctor(System.String,System.String)">
<summary>
Constructs a test given the path through the
test hierarchy to its parent and a name.
</summary>
<param name="pathName">The parent tests full name</param>
<param name="name">The name of the test</param>
</member>
<member name="M:NUnit.Framework.Internal.Test.#ctor(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
TODO: Documentation needed for constructor
</summary>
<param name="typeInfo"></param>
</member>
<member name="M:NUnit.Framework.Internal.Test.#ctor(NUnit.Framework.Interfaces.IMethodInfo)">
<summary>
Construct a test from a MethodInfo
</summary>
<param name="method"></param>
</member>
<member name="M:NUnit.Framework.Internal.Test.MakeTestResult">
<summary>
Creates a TestResult for this test.
</summary>
<returns>A TestResult suitable for this type of test.</returns>
</member>
<member name="M:NUnit.Framework.Internal.Test.ApplyAttributesToTest(System.Reflection.ICustomAttributeProvider)">
<summary>
Modify a newly constructed test by applying any of NUnit's common
attributes, based on a supplied ICustomAttributeProvider, which is
usually the reflection element from which the test was constructed,
but may not be in some instances. The attributes retrieved are
saved for use in subsequent operations.
</summary>
<param name="provider">An object implementing ICustomAttributeProvider</param>
</member>
<member name="M:NUnit.Framework.Internal.Test.PopulateTestNode(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Add standard attributes and members to a test node.
</summary>
<param name="thisNode"></param>
<param name="recursive"></param>
</member>
<member name="M:NUnit.Framework.Internal.Test.ToXml(System.Boolean)">
<summary>
Returns the Xml representation of the test
</summary>
<param name="recursive">If true, include child tests recursively</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.Test.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Returns an XmlNode representing the current result after
adding it as a child of the supplied parent node.
</summary>
<param name="parentNode">The parent node.</param>
<param name="recursive">If true, descendant results are included</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.Test.CompareTo(System.Object)">
<summary>
Compares this test to another test for sorting purposes
</summary>
<param name="obj">The other test</param>
<returns>Value of -1, 0 or +1 depending on whether the current test is less than, equal to or greater than the other test</returns>
</member>
<member name="P:NUnit.Framework.Internal.Test.Id">
<summary>
Gets or sets the id of the test
</summary>
<value></value>
</member>
<member name="P:NUnit.Framework.Internal.Test.Name">
<summary>
Gets or sets the name of the test
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.FullName">
<summary>
Gets or sets the fully qualified name of the test
</summary>
<value></value>
</member>
<member name="P:NUnit.Framework.Internal.Test.ClassName">
<summary>
Gets the name of the class where this test was declared.
Returns null if the test is not associated with a class.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.MethodName">
<summary>
Gets the name of the method implementing this test.
Returns null if the test is not implemented as a method.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.TypeInfo">
<summary>
Gets the TypeInfo of the fixture used in running this test
or null if no fixture type is associated with it.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.Method">
<summary>
Gets a MethodInfo for the method implementing this test.
Returns null if the test is not implemented as a method.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.RunState">
<summary>
Whether or not the test should be run
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.XmlElementName">
<summary>
Gets the name used for the top-level element in the
XML representation of this test
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.TestType">
<summary>
Gets a string representing the type of test. Used as an attribute
value in the XML representation of a test and has no other
function in the framework.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.TestCaseCount">
<summary>
Gets a count of test cases represented by
or contained under this test.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.Properties">
<summary>
Gets the properties for this test
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.IsSuite">
<summary>
Returns true if this is a TestSuite
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.HasChildren">
<summary>
Gets a bool indicating whether the current test
has any descendant tests.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.Parent">
<summary>
Gets the parent as a Test object.
Used by the core to set the parent.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.Tests">
<summary>
Gets this test's child tests
</summary>
<value>A list of child tests</value>
</member>
<member name="P:NUnit.Framework.Internal.Test.Fixture">
<summary>
Gets or sets a fixture object for running this test.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.IdPrefix">
<summary>
Static prefix used for ids in this AppDomain.
Set by FrameworkController.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Test.Seed">
<summary>
Gets or Sets the Int value representing the seed for the RandomGenerator
</summary>
<value></value>
</member>
<member name="F:NUnit.Framework.Internal.TestSuite.tests">
<summary>
Our collection of child tests
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestSuite"/> class.
</summary>
<param name="name">The name of the suite.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.#ctor(System.String,System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestSuite"/> class.
</summary>
<param name="parentSuiteName">Name of the parent suite.</param>
<param name="name">The name of the suite.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.#ctor(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestSuite"/> class.
</summary>
<param name="fixtureType">Type of the fixture.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.#ctor(System.Type)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestSuite"/> class.
</summary>
<param name="fixtureType">Type of the fixture.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.Sort">
<summary>
Sorts tests under this suite.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.Add(NUnit.Framework.Internal.Test)">
<summary>
Adds a test to the suite.
</summary>
<param name="test">The test.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.MakeTestResult">
<summary>
Overridden to return a TestSuiteResult.
</summary>
<returns>A TestResult for this test.</returns>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Returns an XmlNode representing the current result after
adding it as a child of the supplied parent node.
</summary>
<param name="parentNode">The parent node.</param>
<param name="recursive">If true, descendant results are included</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.TestSuite.CheckSetUpTearDownMethods(System.Type)">
<summary>
Check that setup and teardown methods marked by certain attributes
meet NUnit's requirements and mark the tests not runnable otherwise.
</summary>
<param name="attrType">The attribute type to check for</param>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.Tests">
<summary>
Gets this test's child tests
</summary>
<value>The list of child tests</value>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.TestCaseCount">
<summary>
Gets a count of test cases represented by
or contained under this test.
</summary>
<value></value>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.Arguments">
<summary>
The arguments to use in creating the fixture
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.MaintainTestOrder">
<summary>
Set to true to suppress sorting this suite's contents
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.HasChildren">
<summary>
Gets a bool indicating whether the current test
has any descendant tests.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestSuite.XmlElementName">
<summary>
Gets the name used for the top-level element in the
XML representation of this test
</summary>
</member>
<member name="T:NUnit.Framework.Internal.PropertyBag">
<summary>
A PropertyBag represents a collection of name value pairs
that allows duplicate entries with the same key. Methods
are provided for adding a new pair as well as for setting
a key to a single value. All keys are strings but _values
may be of any type. Null _values are not permitted, since
a null entry represents the absence of the key.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IPropertyBag">
<summary>
A PropertyBag represents a collection of name/value pairs
that allows duplicate entries with the same key. Methods
are provided for adding a new pair as well as for setting
a key to a single value. All keys are strings but _values
may be of any type. Null _values are not permitted, since
a null entry represents the absence of the key.
The entries in a PropertyBag are of two kinds: those that
take a single value and those that take multiple _values.
However, the PropertyBag has no knowledge of which entries
fall into each category and the distinction is entirely
up to the code using the PropertyBag.
When working with multi-valued properties, client code
should use the Add method to add name/value pairs and
indexing to retrieve a list of all _values for a given
key. For example:
bag.Add("Tag", "one");
bag.Add("Tag", "two");
Assert.That(bag["Tag"],
Is.EqualTo(new string[] { "one", "two" }));
When working with single-valued propeties, client code
should use the Set method to set the value and Get to
retrieve the value. The GetSetting methods may also be
used to retrieve the value in a type-safe manner while
also providing default. For example:
bag.Set("Priority", "low");
bag.Set("Priority", "high"); // replaces value
Assert.That(bag.Get("Priority"),
Is.EqualTo("high"));
Assert.That(bag.GetSetting("Priority", "low"),
Is.EqualTo("high"));
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IPropertyBag.Add(System.String,System.Object)">
<summary>
Adds a key/value pair to the property bag
</summary>
<param name="key">The key</param>
<param name="value">The value</param>
</member>
<member name="M:NUnit.Framework.Interfaces.IPropertyBag.Set(System.String,System.Object)">
<summary>
Sets the value for a key, removing any other
_values that are already in the property set.
</summary>
<param name="key"></param>
<param name="value"></param>
</member>
<member name="M:NUnit.Framework.Interfaces.IPropertyBag.Get(System.String)">
<summary>
Gets a single value for a key, using the first
one if multiple _values are present and returning
null if the value is not found.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IPropertyBag.ContainsKey(System.String)">
<summary>
Gets a flag indicating whether the specified key has
any entries in the property set.
</summary>
<param name="key">The key to be checked</param>
<returns>True if their are _values present, otherwise false</returns>
</member>
<member name="P:NUnit.Framework.Interfaces.IPropertyBag.Item(System.String)">
<summary>
Gets or sets the list of _values for a particular key
</summary>
<param name="key">The key for which the _values are to be retrieved or set</param>
</member>
<member name="P:NUnit.Framework.Interfaces.IPropertyBag.Keys">
<summary>
Gets a collection containing all the keys in the property set
</summary>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.Add(System.String,System.Object)">
<summary>
Adds a key/value pair to the property set
</summary>
<param name="key">The key</param>
<param name="value">The value</param>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.Set(System.String,System.Object)">
<summary>
Sets the value for a key, removing any other
_values that are already in the property set.
</summary>
<param name="key"></param>
<param name="value"></param>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.Get(System.String)">
<summary>
Gets a single value for a key, using the first
one if multiple _values are present and returning
null if the value is not found.
</summary>
<param name="key"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.ContainsKey(System.String)">
<summary>
Gets a flag indicating whether the specified key has
any entries in the property set.
</summary>
<param name="key">The key to be checked</param>
<returns>
True if their are _values present, otherwise false
</returns>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.ToXml(System.Boolean)">
<summary>
Returns an XmlNode representating the current PropertyBag.
</summary>
<param name="recursive">Not used</param>
<returns>An XmlNode representing the PropertyBag</returns>
</member>
<member name="M:NUnit.Framework.Internal.PropertyBag.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Returns an XmlNode representing the PropertyBag after
adding it as a child of the supplied parent node.
</summary>
<param name="parentNode">The parent node.</param>
<param name="recursive">Not used</param>
<returns></returns>
</member>
<member name="P:NUnit.Framework.Internal.PropertyBag.Keys">
<summary>
Gets a collection containing all the keys in the property set
</summary>
<value></value>
</member>
<member name="P:NUnit.Framework.Internal.PropertyBag.Item(System.String)">
<summary>
Gets or sets the list of _values for a particular key
</summary>
</member>
<member name="T:NUnit.Framework.Internal.NUnitException">
<summary>
Thrown when an assertion failed. Here to preserve the inner
exception and hence its stack trace.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.NUnitException.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.NUnitException"/> class.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.NUnitException.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.NUnitException"/> class.
</summary>
<param name="message">The error message that explains
the reason for the exception</param>
</member>
<member name="M:NUnit.Framework.Internal.NUnitException.#ctor(System.String,System.Exception)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.NUnitException"/> class.
</summary>
<param name="message">The error message that explains
the reason for the exception</param>
<param name="inner">The exception that caused the
current exception</param>
</member>
<member name="M:NUnit.Framework.Internal.NUnitException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
<summary>
Serialization Constructor
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Filters.FullNameFilter">
<summary>
FullName filter selects tests based on their FullName
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Filters.ValueMatchFilter">
<summary>
ValueMatchFilter selects tests based on some value, which
is expected to be contained in the test.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Filters.ValueMatchFilter.#ctor(System.String)">
<summary>
Construct a ValueMatchFilter for a single value.
</summary>
<param name="expectedValue">The value to be included.</param>
</member>
<member name="M:NUnit.Framework.Internal.Filters.ValueMatchFilter.Match(System.String)">
<summary>
Match the input provided by the derived class
</summary>
<param name="input">The value to be matchedT</param>
<returns>True for a match, false otherwise.</returns>
</member>
<member name="M:NUnit.Framework.Internal.Filters.ValueMatchFilter.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Adds an XML node
</summary>
<param name="parentNode">Parent node</param>
<param name="recursive">True if recursive</param>
<returns>The added XML node</returns>
</member>
<member name="P:NUnit.Framework.Internal.Filters.ValueMatchFilter.ExpectedValue">
<summary>
Returns the value matched by the filter - used for testing
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Filters.ValueMatchFilter.IsRegex">
<summary>
Indicates whether the value is a regular expression
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Filters.ValueMatchFilter.ElementName">
<summary>
Gets the element name
</summary>
<value>Element name</value>
</member>
<member name="M:NUnit.Framework.Internal.Filters.FullNameFilter.#ctor(System.String)">
<summary>
Construct a FullNameFilter for a single name
</summary>
<param name="expectedValue">The name the filter will recognize.</param>
</member>
<member name="M:NUnit.Framework.Internal.Filters.FullNameFilter.Match(NUnit.Framework.Interfaces.ITest)">
<summary>
Match a test against a single value.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Filters.FullNameFilter.ElementName">
<summary>
Gets the element name
</summary>
<value>Element name</value>
</member>
<member name="T:NUnit.Framework.Internal.Filters.NotFilter">
<summary>
NotFilter negates the operation of another filter
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Filters.NotFilter.#ctor(NUnit.Framework.Internal.TestFilter)">
<summary>
Construct a not filter on another filter
</summary>
<param name="baseFilter">The filter to be negated</param>
</member>
<member name="M:NUnit.Framework.Internal.Filters.NotFilter.Pass(NUnit.Framework.Interfaces.ITest)">
<summary>
Determine if a particular test passes the filter criteria. The default
implementation checks the test itself, its parents and any descendants.
Derived classes may override this method or any of the Match methods
to change the behavior of the filter.
</summary>
<param name="test">The test to which the filter is applied</param>
<returns>True if the test passes the filter, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Internal.Filters.NotFilter.Match(NUnit.Framework.Interfaces.ITest)">
<summary>
Check whether the filter matches a test
</summary>
<param name="test">The test to be matched</param>
<returns>True if it matches, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Internal.Filters.NotFilter.IsExplicitMatch(NUnit.Framework.Interfaces.ITest)">
<summary>
Determine if a test matches the filter expicitly. That is, it must
be a direct match of the test itself or one of it's children.
</summary>
<param name="test">The test to which the filter is applied</param>
<returns>True if the test matches the filter explicityly, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Internal.Filters.NotFilter.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
<summary>
Adds an XML node
</summary>
<param name="parentNode">Parent node</param>
<param name="recursive">True if recursive</param>
<returns>The added XML node</returns>
</member>
<member name="P:NUnit.Framework.Internal.Filters.NotFilter.BaseFilter">
<summary>
Gets the base filter
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Builders.SequentialStrategy">
<summary>
SequentialStrategy creates test cases by using all of the
parameter data sources in parallel, substituting <c>null</c>
when any of them run out of data.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ICombiningStrategy">
<summary>
CombiningStrategy is the abstract base for classes that
know how to combine values provided for individual test
parameters to create a set of test cases.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ICombiningStrategy.GetTestCases(System.Collections.IEnumerable[])">
<summary>
Gets the test cases generated by the CombiningStrategy.
</summary>
<returns>The test cases.</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.SequentialStrategy.GetTestCases(System.Collections.IEnumerable[])">
<summary>
Gets the test cases generated by the CombiningStrategy.
</summary>
<returns>The test cases.</returns>
</member>
<member name="T:NUnit.Framework.Internal.Builders.NUnitTestFixtureBuilder">
<summary>
NUnitTestFixtureBuilder is able to build a fixture given
a class marked with a TestFixtureAttribute or an unmarked
class containing test methods. In the first case, it is
called by the attribute and in the second directly by
NUnitSuiteBuilder.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.NUnitTestFixtureBuilder.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Build a TestFixture from type provided. A non-null TestSuite
must always be returned, since the method is generally called
because the user has marked the target class as a fixture.
If something prevents the fixture from being used, it should
be returned nonetheless, labelled as non-runnable.
</summary>
<param name="typeInfo">An ITypeInfo for the fixture to be used.</param>
<returns>A TestSuite object or one derived from TestSuite.</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.NUnitTestFixtureBuilder.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo,NUnit.Framework.Interfaces.ITestFixtureData)">
<summary>
Overload of BuildFrom called by tests that have arguments.
Builds a fixture using the provided type and information
in the ITestFixtureData object.
</summary>
<param name="typeInfo">The TypeInfo for which to construct a fixture.</param>
<param name="testFixtureData">An object implementing ITestFixtureData or null.</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.NUnitTestFixtureBuilder.AddTestCasesToFixture(NUnit.Framework.Internal.TestFixture)">
<summary>
Method to add test cases to the newly constructed fixture.
</summary>
<param name="fixture">The fixture to which cases should be added</param>
</member>
<member name="M:NUnit.Framework.Internal.Builders.NUnitTestFixtureBuilder.BuildTestCase(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.TestSuite)">
<summary>
Method to create a test case from a MethodInfo and add
it to the fixture being built. It first checks to see if
any global TestCaseBuilder addin wants to build the
test case. If not, it uses the internal builder
collection maintained by this fixture builder.
The default implementation has no test case builders.
Derived classes should add builders to the collection
in their constructor.
</summary>
<param name="method">The method for which a test is to be created</param>
<param name="suite">The test suite being built.</param>
<returns>A newly constructed Test</returns>
</member>
<member name="T:NUnit.Framework.Constraints.UniqueItemsConstraint">
<summary>
UniqueItemsConstraint tests whether all the items in a
collection are unique.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.CollectionItemsEqualConstraint">
<summary>
CollectionItemsEqualConstraint is the abstract base class for all
collection constraints that apply some notion of item equality
as a part of their operation.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.CollectionConstraint">
<summary>
CollectionConstraint is the abstract base class for
constraints that operate on collections.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionConstraint.#ctor">
<summary>
Construct an empty CollectionConstraint
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionConstraint.#ctor(System.Object)">
<summary>
Construct a CollectionConstraint
</summary>
<param name="arg"></param>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionConstraint.IsEmpty(System.Collections.IEnumerable)">
<summary>
Determines whether the specified enumerable is empty.
</summary>
<param name="enumerable">The enumerable.</param>
<returns>
<c>true</c> if the specified enumerable is empty; otherwise, <c>false</c>.
</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionConstraint.Matches(System.Collections.IEnumerable)">
<summary>
Protected method to be implemented by derived classes
</summary>
<param name="collection"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.#ctor">
<summary>
Construct an empty CollectionConstraint
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.#ctor(System.Object)">
<summary>
Construct a CollectionConstraint
</summary>
<param name="arg"></param>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Using(System.Collections.IComparer)">
<summary>
Flag the constraint to use the supplied IComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Using``1(System.Collections.Generic.IComparer{``0})">
<summary>
Flag the constraint to use the supplied IComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Using``1(System.Comparison{``0})">
<summary>
Flag the constraint to use the supplied Comparison object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Using(System.Collections.IEqualityComparer)">
<summary>
Flag the constraint to use the supplied IEqualityComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Using``1(System.Collections.Generic.IEqualityComparer{``0})">
<summary>
Flag the constraint to use the supplied IEqualityComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.ItemsEqual(System.Object,System.Object)">
<summary>
Compares two collection members for equality
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.Tally(System.Collections.IEnumerable)">
<summary>
Return a new CollectionTally for use in making tests
</summary>
<param name="c">The collection to be included in the tally</param>
</member>
<member name="P:NUnit.Framework.Constraints.CollectionItemsEqualConstraint.IgnoreCase">
<summary>
Flag the constraint to ignore case and return self.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.UniqueItemsConstraint.Matches(System.Collections.IEnumerable)">
<summary>
Check that all items are unique.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="P:NUnit.Framework.Constraints.UniqueItemsConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.SamePathOrUnderConstraint">
<summary>
SamePathOrUnderConstraint tests that one path is under another
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.PathConstraint">
<summary>
PathConstraint serves as the abstract base of constraints
that operate on paths and provides several helper methods.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.PathConstraint.#ctor(System.String)">
<summary>
Construct a PathConstraint for a give expected path
</summary>
<param name="expected">The expected path</param>
</member>
<member name="M:NUnit.Framework.Constraints.PathConstraint.GetStringRepresentation">
<summary>
Returns the string representation of this constraint
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.PathConstraint.Canonicalize(System.String)">
<summary>
Canonicalize the provided path
</summary>
<param name="path"></param>
<returns>The path in standardized form</returns>
</member>
<member name="M:NUnit.Framework.Constraints.PathConstraint.IsSubPath(System.String,System.String)">
<summary>
Test whether one path in canonical form is a subpath of another path
</summary>
<param name="path1">The first path - supposed to be the parent path</param>
<param name="path2">The second path - supposed to be the child path</param>
<returns></returns>
</member>
<member name="P:NUnit.Framework.Constraints.PathConstraint.RespectCase">
<summary>
Modifies the current instance to be case-sensitive
and returns it.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.SamePathOrUnderConstraint.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.SamePathOrUnderConstraint"/> class.
</summary>
<param name="expected">The expected path</param>
</member>
<member name="M:NUnit.Framework.Constraints.SamePathOrUnderConstraint.Matches(System.String)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="P:NUnit.Framework.Constraints.SamePathOrUnderConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.NoItemConstraint">
<summary>
NoItemConstraint applies another constraint to each
item in a collection, failing if any of them succeeds.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NoItemConstraint.#ctor(NUnit.Framework.Constraints.IConstraint)">
<summary>
Construct a SomeItemsConstraint on top of an existing constraint
</summary>
<param name="itemConstraint"></param>
</member>
<member name="M:NUnit.Framework.Constraints.NoItemConstraint.ApplyTo(System.Object)">
<summary>
Apply the item constraint to each item in the collection,
failing if any item fails.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="P:NUnit.Framework.Constraints.NoItemConstraint.DisplayName">
<summary>
The display name of this Constraint for use by ToString().
The default value is the name of the constraint with
trailing "Constraint" removed. Derived classes may set
this to another name in their constructors.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.EndsWithConstraint">
<summary>
EndsWithConstraint can test whether a string ends
with an expected substring.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EndsWithConstraint.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.EndsWithConstraint"/> class.
</summary>
<param name="expected">The expected string</param>
</member>
<member name="M:NUnit.Framework.Constraints.EndsWithConstraint.Matches(System.String)">
<summary>
Test whether the constraint is matched by the actual value.
This is a template method, which calls the IsMatch method
of the derived class.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.ValuesAttribute">
<summary>
ValuesAttribute is used to provide literal arguments for
an individual parameter of a test.
</summary>
</member>
<member name="T:NUnit.Framework.DataAttribute">
<summary>
The abstract base class for all data-providing attributes
defined by NUnit. Used to select all data sources for a
method, class or parameter.
</summary>
</member>
<member name="M:NUnit.Framework.DataAttribute.#ctor">
<summary>
Default constructor
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IParameterDataSource">
<summary>
The IParameterDataSource interface is implemented by types
that can provide data for a test method parameter.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IParameterDataSource.GetData(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Gets an enumeration of data items for use as arguments
for a test method parameter.
</summary>
<param name="parameter">The parameter for which data is needed</param>
<returns>An enumeration containing individual data items</returns>
</member>
<member name="F:NUnit.Framework.ValuesAttribute.data">
<summary>
The collection of data to be returned. Must
be set by any derived attribute classes.
We use an object[] so that the individual
elements may have their type changed in GetData
if necessary
</summary>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.#ctor">
<summary>
Constructs for use with an Enum parameter. Will pass every enum
value in to the test.
</summary>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.#ctor(System.Object)">
<summary>
Construct with one argument
</summary>
<param name="arg1"></param>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.#ctor(System.Object,System.Object)">
<summary>
Construct with two arguments
</summary>
<param name="arg1"></param>
<param name="arg2"></param>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.#ctor(System.Object,System.Object,System.Object)">
<summary>
Construct with three arguments
</summary>
<param name="arg1"></param>
<param name="arg2"></param>
<param name="arg3"></param>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.#ctor(System.Object[])">
<summary>
Construct with an array of arguments
</summary>
<param name="args"></param>
</member>
<member name="M:NUnit.Framework.ValuesAttribute.GetData(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Get the collection of _values to be used as arguments
</summary>
</member>
<member name="T:NUnit.Framework.PairwiseAttribute">
<summary>
Marks a test to use a pairwise join of any argument
data provided. Arguments will be combined in such a
way that all possible pairs of arguments are used.
</summary>
</member>
<member name="T:NUnit.Framework.CombiningStrategyAttribute">
<summary>
Marks a test to use a particular CombiningStrategy to join
any parameter data provided. Since this is the default, the
attribute is optional.
</summary>
</member>
<member name="M:NUnit.Framework.CombiningStrategyAttribute.#ctor(NUnit.Framework.Interfaces.ICombiningStrategy,NUnit.Framework.Interfaces.IParameterDataProvider)">
<summary>
Construct a CombiningStrategyAttribute incorporating an
ICombiningStrategy and an IParamterDataProvider.
</summary>
<param name="strategy">Combining strategy to be used in combining data</param>
<param name="provider">An IParameterDataProvider to supply data</param>
</member>
<member name="M:NUnit.Framework.CombiningStrategyAttribute.#ctor(System.Object,System.Object)">
<summary>
Construct a CombiningStrategyAttribute incorporating an object
that implements ICombiningStrategy and an IParameterDataProvider.
This constructor is provided for CLS compliance.
</summary>
<param name="strategy">Combining strategy to be used in combining data</param>
<param name="provider">An IParameterDataProvider to supply data</param>
</member>
<member name="M:NUnit.Framework.CombiningStrategyAttribute.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Construct one or more TestMethods from a given MethodInfo,
using available parameter data.
</summary>
<param name="method">The MethodInfo for which tests are to be constructed.</param>
<param name="suite">The suite to which the tests will be added.</param>
<returns>One or more TestMethods</returns>
</member>
<member name="M:NUnit.Framework.CombiningStrategyAttribute.ApplyToTest(NUnit.Framework.Internal.Test)">
<summary>
Modify the test by adding the name of the combining strategy
to the properties.
</summary>
<param name="test">The test to modify</param>
</member>
<member name="M:NUnit.Framework.PairwiseAttribute.#ctor">
<summary>
Default constructor
</summary>
</member>
<member name="T:NUnit.Framework.CultureAttribute">
<summary>
CultureAttribute is used to mark a test fixture or an
individual method as applying to a particular Culture only.
</summary>
</member>
<member name="T:NUnit.Framework.IncludeExcludeAttribute">
<summary>
Abstract base for Attributes that are used to include tests
in the test run based on environmental settings.
</summary>
</member>
<member name="M:NUnit.Framework.IncludeExcludeAttribute.#ctor">
<summary>
Constructor with no included items specified, for use
with named property syntax.
</summary>
</member>
<member name="M:NUnit.Framework.IncludeExcludeAttribute.#ctor(System.String)">
<summary>
Constructor taking one or more included items
</summary>
<param name="include">Comma-delimited list of included items</param>
</member>
<member name="P:NUnit.Framework.IncludeExcludeAttribute.Include">
<summary>
Name of the item that is needed in order for
a test to run. Multiple items may be given,
separated by a comma.
</summary>
</member>
<member name="P:NUnit.Framework.IncludeExcludeAttribute.Exclude">
<summary>
Name of the item to be excluded. Multiple items
may be given, separated by a comma.
</summary>
</member>
<member name="P:NUnit.Framework.IncludeExcludeAttribute.Reason">
<summary>
The reason for including or excluding the test
</summary>
</member>
<member name="M:NUnit.Framework.CultureAttribute.#ctor">
<summary>
Constructor with no cultures specified, for use
with named property syntax.
</summary>
</member>
<member name="M:NUnit.Framework.CultureAttribute.#ctor(System.String)">
<summary>
Constructor taking one or more cultures
</summary>
<param name="cultures">Comma-deliminted list of cultures</param>
</member>
<member name="M:NUnit.Framework.CultureAttribute.ApplyToTest(NUnit.Framework.Internal.Test)">
<summary>
Causes a test to be skipped if this CultureAttribute is not satisfied.
</summary>
<param name="test">The test to modify</param>
</member>
<member name="M:NUnit.Framework.CultureAttribute.IsCultureSupported">
<summary>
Tests to determine if the current culture is supported
based on the properties of this attribute.
</summary>
<returns>True, if the current culture is supported</returns>
</member>
<member name="M:NUnit.Framework.CultureAttribute.IsCultureSupported(System.String)">
<summary>
Test to determine if the a particular culture or comma-
delimited set of cultures is in use.
</summary>
<param name="culture">Name of the culture or comma-separated list of culture ids</param>
<returns>True if the culture is in use on the system</returns>
</member>
<member name="M:NUnit.Framework.CultureAttribute.IsCultureSupported(System.String[])">
<summary>
Test to determine if one of a collection of cultures
is being used currently.
</summary>
<param name="cultures"></param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.Internal.Execution.WorkItemState">
<summary>
The current state of a work item
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Execution.WorkItemState.Ready">
<summary>
Ready to run or continue
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Execution.WorkItemState.Running">
<summary>
Work Item is executing
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Execution.WorkItemState.Complete">
<summary>
Complete
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Execution.WorkItem">
<summary>
A WorkItem may be an individual test case, a fixture or
a higher level grouping of tests. All WorkItems inherit
from the abstract WorkItem class, which uses the template
pattern to allow derived classes to perform work in
whatever way is needed.
A WorkItem is created with a particular TestExecutionContext
and is responsible for re-establishing that context in the
current thread before it begins or resumes execution.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.CreateWorkItem(NUnit.Framework.Interfaces.ITest,NUnit.Framework.Interfaces.ITestFilter)">
<summary>
Creates a work item.
</summary>
<param name="test">The test for which this WorkItem is being created.</param>
<param name="filter">The filter to be used in selecting any child Tests.</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.#ctor(NUnit.Framework.Internal.Test)">
<summary>
Construct a WorkItem for a particular test.
</summary>
<param name="test">The test that the WorkItem will run</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.InitializeContext(NUnit.Framework.Internal.TestExecutionContext)">
<summary>
Initialize the TestExecutionContext. This must be done
before executing the WorkItem.
</summary>
<remarks>
Originally, the context was provided in the constructor
but delaying initialization of the context until the item
is about to be dispatched allows changes in the parent
context during OneTimeSetUp to be reflected in the child.
</remarks>
<param name="context">The TestExecutionContext to use</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.Execute">
<summary>
Execute the current work item, including any
child work items.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.Cancel(System.Boolean)">
<summary>
Cancel (abort or stop) a WorkItem
</summary>
<param name="force">true if the WorkItem should be aborted, false if it should run to completion</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.PerformWork">
<summary>
Method that performs actually performs the work. It should
set the State to WorkItemState.Complete when done.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Execution.WorkItem.WorkItemComplete">
<summary>
Method called by the derived class when all work is complete
</summary>
</member>
<member name="E:NUnit.Framework.Internal.Execution.WorkItem.Completed">
<summary>
Event triggered when the item is complete
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.State">
<summary>
Gets the current state of the WorkItem
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.Test">
<summary>
The test being executed by the work item
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.Context">
<summary>
The execution context
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.WorkerId">
<summary>
The unique id of the worker executing this item.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.Actions">
<summary>
The test actions to be performed before and after this test
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Execution.WorkItem.Result">
<summary>
The test result
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Commands.MaxTimeCommand">
<summary>
TODO: Documentation needed for class
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Commands.DelegatingTestCommand">
<summary>
TODO: Documentation needed for class
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Commands.TestCommand">
<summary>
TestCommand is the abstract base class for all test commands
in the framework. A TestCommand represents a single stage in
the execution of a test, e.g.: SetUp/TearDown, checking for
Timeout, verifying the returned result from a method, etc.
TestCommands may decorate other test commands so that the
execution of a lower-level command is nested within that
of a higher level command. All nested commands are executed
synchronously, as a single unit. Scheduling test execution
on separate threads is handled at a higher level, using the
task dispatcher.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Commands.TestCommand.#ctor(NUnit.Framework.Internal.Test)">
<summary>
Construct a TestCommand for a test.
</summary>
<param name="test">The test to be executed</param>
</member>
<member name="M:NUnit.Framework.Internal.Commands.TestCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Runs the test in a specified context, returning a TestResult.
</summary>
<param name="context">The TestExecutionContext to be used for running the test.</param>
<returns>A TestResult</returns>
</member>
<member name="P:NUnit.Framework.Internal.Commands.TestCommand.Test">
<summary>
Gets the test associated with this command.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.Commands.DelegatingTestCommand.innerCommand">
<summary>TODO: Documentation needed for field</summary>
</member>
<member name="M:NUnit.Framework.Internal.Commands.DelegatingTestCommand.GetInnerCommand">
<summary>TODO: Documentation needed for method</summary>
</member>
<member name="M:NUnit.Framework.Internal.Commands.DelegatingTestCommand.#ctor(NUnit.Framework.Internal.Commands.TestCommand)">
<summary>
TODO: Documentation needed for constructor
</summary>
<param name="innerCommand"></param>
</member>
<member name="M:NUnit.Framework.Internal.Commands.MaxTimeCommand.#ctor(NUnit.Framework.Internal.Commands.TestCommand,System.Int32)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.MaxTimeCommand"/> class.
</summary>
<param name="innerCommand">The inner command.</param>
<param name="maxTime">The max time allowed in milliseconds</param>
</member>
<member name="M:NUnit.Framework.Internal.Commands.MaxTimeCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Runs the test, saving a TestResult in the supplied TestExecutionContext
</summary>
<param name="context">The context in which the test should run.</param>
<returns>A TestResult</returns>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestListener">
<summary>
The ITestListener interface is used internally to receive
notifications of significant events while a test is being
run. The events are propagated to clients by means of an
AsyncCallback. NUnit extensions may also monitor these events.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestListener.TestStarted(NUnit.Framework.Interfaces.ITest)">
<summary>
Called when a test has just started
</summary>
<param name="test">The test that is starting</param>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestListener.TestFinished(NUnit.Framework.Interfaces.ITestResult)">
<summary>
Called when a test has finished
</summary>
<param name="result">The result of the test</param>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestListener.TestOutput(NUnit.Framework.Interfaces.TestOutput)">
<summary>
Called when a test produces output for immediate display
</summary>
<param name="output">A TestOutput object containing the text to display</param>
</member>
<member name="T:NUnit.Framework.Api.ITestAssemblyBuilder">
<summary>
The ITestAssemblyBuilder interface is implemented by a class
that is able to build a suite of tests given an assembly or
an assembly filename.
</summary>
</member>
<member name="M:NUnit.Framework.Api.ITestAssemblyBuilder.Build(System.Reflection.Assembly,System.Collections.Generic.IDictionary{System.String,System.Object})">
<summary>
Build a suite of tests from a provided assembly
</summary>
<param name="assembly">The assembly from which tests are to be built</param>
<param name="options">A dictionary of options to use in building the suite</param>
<returns>A TestSuite containing the tests found in the assembly</returns>
</member>
<member name="M:NUnit.Framework.Api.ITestAssemblyBuilder.Build(System.String,System.Collections.Generic.IDictionary{System.String,System.Object})">
<summary>
Build a suite of tests given the filename of an assembly
</summary>
<param name="assemblyName">The filename of the assembly from which tests are to be built</param>
<param name="options">A dictionary of options to use in building the suite</param>
<returns>A TestSuite containing the tests found in the assembly</returns>
</member>
<member name="T:NUnit.Framework.Internal.InternalTrace">
<summary>
InternalTrace provides facilities for tracing the execution
of the NUnit framework. Tests and classes under test may make use
of Console writes, System.Diagnostics.Trace or various loggers and
NUnit itself traps and processes each of them. For that reason, a
separate internal trace is needed.
Note:
InternalTrace uses a global lock to allow multiple threads to write
trace messages. This can easily make it a bottleneck so it must be
used sparingly. Keep the trace Level as low as possible and only
insert InternalTrace writes where they are needed.
TODO: add some buffering and a separate writer thread as an option.
TODO: figure out a way to turn on trace in specific classes only.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.InternalTrace.Initialize(System.String,NUnit.Framework.Internal.InternalTraceLevel)">
<summary>
Initialize the internal trace facility using the name of the log
to be written to and the trace level.
</summary>
<param name="logName">The log name</param>
<param name="level">The trace level</param>
</member>
<member name="M:NUnit.Framework.Internal.InternalTrace.Initialize(System.IO.TextWriter,NUnit.Framework.Internal.InternalTraceLevel)">
<summary>
Initialize the internal trace using a provided TextWriter and level
</summary>
<param name="writer">A TextWriter</param>
<param name="level">The InternalTraceLevel</param>
</member>
<member name="M:NUnit.Framework.Internal.InternalTrace.GetLogger(System.String)">
<summary>
Get a named Logger
</summary>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.InternalTrace.GetLogger(System.Type)">
<summary>
Get a logger named for a particular Type.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.InternalTrace.Initialized">
<summary>
Gets a flag indicating whether the InternalTrace is initialized
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITypeInfo">
<summary>
The ITypeInfo interface is an abstraction of a .NET Type
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.IsType(System.Type)">
<summary>
Returns true if the Type wrapped is equal to the argument
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.GetDisplayName">
<summary>
Get the display name for this typeInfo.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.GetDisplayName(System.Object[])">
<summary>
Get the display name for an oject of this type, constructed with specific arguments
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.GetGenericTypeDefinition">
<summary>
Returns a Type representing a generic type definition from which this Type can be constructed.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.MakeGenericType(System.Type[])">
<summary>
Returns a new ITypeInfo representing an instance of this generic Type using the supplied Type arguments
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.HasMethodWithAttribute(System.Type)">
<summary>
Returns a value indicating whether this type has a method with a specified public attribute
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.GetMethods(System.Reflection.BindingFlags)">
<summary>
Returns an array of IMethodInfos for methods of this Type
that match the specified flags.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.GetConstructor(System.Type[])">
<summary>
Gets the public constructor taking the specified argument Types
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.HasConstructor(System.Type[])">
<summary>
Returns a value indicating whether this Type has a public constructor taking the specified argument Types.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ITypeInfo.Construct(System.Object[])">
<summary>
Construct an object of this Type, using the specified arguments.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.Type">
<summary>
Gets the underlying Type on which this ITypeInfo is based
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.BaseType">
<summary>
Gets the base type of this type as an ITypeInfo
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.Name">
<summary>
Gets the Name of the Type
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.FullName">
<summary>
Gets the FullName of the Type
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.Assembly">
<summary>
Gets the assembly in which the type is declared
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.Namespace">
<summary>
Gets the Namespace of the Type
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.IsAbstract">
<summary>
Gets a value indicating whether the type is abstract.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.IsGenericType">
<summary>
Gets a value indicating whether the Type is a generic Type
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.ContainsGenericParameters">
<summary>
Gets a value indicating whether the Type has generic parameters that have not been replaced by specific Types.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.IsGenericTypeDefinition">
<summary>
Gets a value indicating whether the Type is a generic Type definition
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.IsSealed">
<summary>
Gets a value indicating whether the type is sealed.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITypeInfo.IsStaticClass">
<summary>
Gets a value indicating whether this type is a static class.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ExceptionNotThrownConstraint.ApplyTo(System.Object)">
<summary>
Applies the constraint to an actual value, returning a ConstraintResult.
</summary>
<param name="actual">The value to be tested</param>
<returns>A ConstraintResult</returns>
</member>
<member name="P:NUnit.Framework.Constraints.ExceptionNotThrownConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:System.Collections.Concurrent.IProducerConsumerCollection`1">
<summary>
Defines methods to manipulate thread-safe collections intended for producer/consumer usage.
</summary>
<typeparam name="T">Specifies the type of elements in the collection.</typeparam>
<remarks>
All implementations of this interface must enable all members of this interface
to be used concurrently from multiple threads.
</remarks>
</member>
<member name="M:System.Collections.Concurrent.IProducerConsumerCollection`1.TryAdd(`0)">
<summary>
Attempts to add an object to the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/>.
</summary>
<param name="item">The object to add to the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/>.</param>
<returns>true if the object was added successfully; otherwise, false.</returns>
<exception cref="T:System.ArgumentException">The <paramref name="item"/> was invalid for this collection.</exception>
</member>
<member name="M:System.Collections.Concurrent.IProducerConsumerCollection`1.TryTake(`0@)">
<summary>
Attempts to remove and return an object from the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/>.
</summary>
<param name="item">
When this method returns, if the object was removed and returned successfully, <paramref name="item"/> contains the removed object. If no object was available to be removed, the value is
unspecified.
</param>
<returns>true if an object was removed and returned successfully; otherwise, false.</returns>
</member>
<member name="M:System.Collections.Concurrent.IProducerConsumerCollection`1.ToArray">
<summary>
Copies the elements contained in the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/> to a new array.
</summary>
<returns>A new array containing the elements copied from the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/>.</returns>
</member>
<member name="M:System.Collections.Concurrent.IProducerConsumerCollection`1.CopyTo(`0[],System.Int32)">
<summary>
Copies the elements of the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/> to
an
<see cref="T:System.Array"/>, starting at a specified index.
</summary>
<param name="array">The one-dimensional <see cref="T:System.Array"/> that is the destination of
the elements copied from the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection`1"/>.
The array must have zero-based indexing.</param>
<param name="index">The zero-based index in <paramref name="array"/> at which copying
begins.</param>
<exception cref="T:System.ArgumentNullException"><paramref name="array"/> is a null reference (Nothing in
Visual Basic).</exception>
<exception cref="T:System.ArgumentOutOfRangeException"><paramref name="index"/> is less than
zero.</exception>
<exception cref="T:System.ArgumentException"><paramref name="index"/> is equal to or greater than the
length of the <paramref name="array"/>
-or- The number of elements in the source <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> is greater than the
available space from <paramref name="index"/> to the end of the destination <paramref name="array"/>.
</exception>
</member>
<member name="T:NUnit.Framework.TestContext">
<summary>
Provide the context information of the current test.
This is an adapter for the internal ExecutionContext
class, hiding the internals from the user test.
</summary>
</member>
<member name="F:NUnit.Framework.TestContext.CurrentTestExecutionContext">
<summary>
</summary>
</member>
<member name="M:NUnit.Framework.TestContext.#ctor(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Construct a TestContext for an ExecutionContext
</summary>
<param name="testExecutionContext">The ExecutionContext to adapt</param>
</member>
<member name="F:NUnit.Framework.TestContext.Error">
<summary>
Gets a TextWriter that will send output directly to Console.Error
</summary>
</member>
<member name="F:NUnit.Framework.TestContext.Progress">
<summary>
Gets a TextWriter for use in displaying immediate progress messages
</summary>
</member>
<member name="F:NUnit.Framework.TestContext.Parameters">
<summary>
TestParameters object holds parameters for the test run, if any are specified
</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Boolean)">
<summary>Write the string representation of a boolean value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Char)">
<summary>Write a char to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Char[])">
<summary>Write a char array to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Double)">
<summary>Write the string representation of a double to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Int32)">
<summary>Write the string representation of an Int32 value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Int64)">
<summary>Write the string representation of an Int64 value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Decimal)">
<summary>Write the string representation of a decimal value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Object)">
<summary>Write the string representation of an object to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.Single)">
<summary>Write the string representation of a Single value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.String)">
<summary>Write a string to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.UInt32)">
<summary>Write the string representation of a UInt32 value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.UInt64)">
<summary>Write the string representation of a UInt64 value to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.String,System.Object)">
<summary>Write a formatted string to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.String,System.Object,System.Object)">
<summary>Write a formatted string to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.String,System.Object,System.Object,System.Object)">
<summary>Write a formatted string to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.Write(System.String,System.Object[])">
<summary>Write a formatted string to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine">
<summary>Write a line terminator to the current result</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Boolean)">
<summary>Write the string representation of a boolean value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Char)">
<summary>Write a char to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Char[])">
<summary>Write a char array to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Double)">
<summary>Write the string representation of a double to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Int32)">
<summary>Write the string representation of an Int32 value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Int64)">
<summary>Write the string representation of an Int64 value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Decimal)">
<summary>Write the string representation of a decimal value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Object)">
<summary>Write the string representation of an object to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.Single)">
<summary>Write the string representation of a Single value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.String)">
<summary>Write a string to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.UInt32)">
<summary>Write the string representation of a UInt32 value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.UInt64)">
<summary>Write the string representation of a UInt64 value to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.String,System.Object)">
<summary>Write a formatted string to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.String,System.Object,System.Object)">
<summary>Write a formatted string to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.String,System.Object,System.Object,System.Object)">
<summary>Write a formatted string to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.WriteLine(System.String,System.Object[])">
<summary>Write a formatted string to the current result followed by a line terminator</summary>
</member>
<member name="M:NUnit.Framework.TestContext.AddFormatter(NUnit.Framework.Constraints.ValueFormatterFactory)">
<summary>
This method adds the a new ValueFormatterFactory to the
chain of responsibility used for fomatting values in messages.
The scope of the change is the current TestContext.
</summary>
<param name="formatterFactory">The factory delegate</param>
</member>
<member name="M:NUnit.Framework.TestContext.AddFormatter``1(NUnit.Framework.Constraints.ValueFormatter)">
<summary>
This method provides a simplified way to add a ValueFormatter
delegate to the chain of responsibility, creating the factory
delegate internally. It is useful when the Type of the object
is the only criterion for selection of the formatter, since
it can be used without getting involved with a compould function.
</summary>
<typeparam name="TSUPPORTED">The type supported by this formatter</typeparam>
<param name="formatter">The ValueFormatter delegate</param>
</member>
<member name="P:NUnit.Framework.TestContext.CurrentContext">
<summary>
Get the current test context. This is created
as needed. The user may save the context for
use within a test, but it should not be used
outside the test for which it is created.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.Out">
<summary>
Gets a TextWriter that will send output to the current test result.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.Test">
<summary>
Get a representation of the current test.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.Result">
<summary>
Gets a Representation of the TestResult for the current test.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.WorkerId">
<summary>
Gets the unique name of the Worker that is executing this test.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestDirectory">
<summary>
Gets the directory containing the current test assembly.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.WorkDirectory">
<summary>
Gets the directory to be used for outputting files created
by this test run.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.Random">
<summary>
Gets the random generator.
</summary>
<value>
The random generator.
</value>
</member>
<member name="T:NUnit.Framework.TestContext.TestAdapter">
<summary>
TestAdapter adapts a Test for consumption by
the user test code.
</summary>
</member>
<member name="M:NUnit.Framework.TestContext.TestAdapter.#ctor(NUnit.Framework.Internal.Test)">
<summary>
Construct a TestAdapter for a Test
</summary>
<param name="test">The Test to be adapted</param>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.ID">
<summary>
Gets the unique Id of a test
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.Name">
<summary>
The name of the test, which may or may not be
the same as the method name.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.MethodName">
<summary>
The name of the method representing the test.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.FullName">
<summary>
The FullName of the test
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.ClassName">
<summary>
The ClassName of the test
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.TestAdapter.Properties">
<summary>
The properties of the test.
</summary>
</member>
<member name="T:NUnit.Framework.TestContext.ResultAdapter">
<summary>
ResultAdapter adapts a TestResult for consumption by
the user test code.
</summary>
</member>
<member name="M:NUnit.Framework.TestContext.ResultAdapter.#ctor(NUnit.Framework.Internal.TestResult)">
<summary>
Construct a ResultAdapter for a TestResult
</summary>
<param name="result">The TestResult to be adapted</param>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.Outcome">
<summary>
Gets a ResultState representing the outcome of the test.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.Message">
<summary>
Gets the message associated with a test
failure or with not running the test
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.StackTrace">
<summary>
Gets any stacktrace associated with an
error or failure.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.FailCount">
<summary>
Gets the number of test cases that failed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.PassCount">
<summary>
Gets the number of test cases that passed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.SkipCount">
<summary>
Gets the number of test cases that were skipped
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.TestContext.ResultAdapter.InconclusiveCount">
<summary>
Gets the number of test cases that were inconclusive
when running the test and all its children.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.ExceptionHelper">
<summary>
ExceptionHelper provides static methods for working with exceptions
</summary>
</member>
<member name="M:NUnit.Framework.Internal.ExceptionHelper.Rethrow(System.Exception)">
<summary>
Rethrows an exception, preserving its stack trace
</summary>
<param name="exception">The exception to rethrow</param>
</member>
<member name="M:NUnit.Framework.Internal.ExceptionHelper.BuildMessage(System.Exception)">
<summary>
Builds up a message, using the Message field of the specified exception
as well as any InnerExceptions.
</summary>
<param name="exception">The exception.</param>
<returns>A combined message string.</returns>
</member>
<member name="M:NUnit.Framework.Internal.ExceptionHelper.BuildStackTrace(System.Exception)">
<summary>
Builds up a message, using the Message field of the specified exception
as well as any InnerExceptions.
</summary>
<param name="exception">The exception.</param>
<returns>A combined stack trace.</returns>
</member>
<member name="M:NUnit.Framework.Internal.ExceptionHelper.GetStackTrace(System.Exception)">
<summary>
Gets the stack trace of the exception.
</summary>
<param name="exception">The exception.</param>
<returns>A string representation of the stack trace.</returns>
</member>
<member name="T:NUnit.Framework.Internal.CultureDetector">
<summary>
CultureDetector is a helper class used by NUnit to determine
whether a test should be run based on the current culture.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.CultureDetector.#ctor">
<summary>
Default constructor uses the current culture.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.CultureDetector.#ctor(System.String)">
<summary>
Construct a CultureDetector for a particular culture for testing.
</summary>
<param name="culture">The culture to be used</param>
</member>
<member name="M:NUnit.Framework.Internal.CultureDetector.IsCultureSupported(System.String[])">
<summary>
Test to determine if one of a collection of cultures
is being used currently.
</summary>
<param name="cultures"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.CultureDetector.IsCultureSupported(NUnit.Framework.CultureAttribute)">
<summary>
Tests to determine if the current culture is supported
based on a culture attribute.
</summary>
<param name="cultureAttribute">The attribute to examine</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Internal.CultureDetector.IsCultureSupported(System.String)">
<summary>
Test to determine if the a particular culture or comma-
delimited set of cultures is in use.
</summary>
<param name="culture">Name of the culture or comma-separated list of culture ids</param>
<returns>True if the culture is in use on the system</returns>
</member>
<member name="P:NUnit.Framework.Internal.CultureDetector.Reason">
<summary>
Return the last failure reason. Results are not
defined if called before IsSupported( Attribute )
is called.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy">
<summary>
PairwiseStrategy creates test cases by combining the parameter
data so that all possible pairs of data items are used.
</summary>
<remarks>
<para>
The number of test cases that cover all possible pairs of test function
parameters values is significantly less than the number of test cases
that cover all possible combination of test function parameters values.
And because different studies show that most of software failures are
caused by combination of no more than two parameters, pairwise testing
can be an effective ways to test the system when it's impossible to test
all combinations of parameters.
</para>
<para>
The PairwiseStrategy code is based on "jenny" tool by Bob Jenkins:
http://burtleburtle.net/bob/math/jenny.html
</para>
</remarks>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.GetTestCases(System.Collections.IEnumerable[])">
<summary>
Gets the test cases generated by this strategy instance.
</summary>
<returns>A set of test cases.</returns>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy.FleaRand">
<summary>
FleaRand is a pseudo-random number generator developed by Bob Jenkins:
http://burtleburtle.net/bob/rand/talksmall.html#flea
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.FleaRand.#ctor(System.UInt32)">
<summary>
Initializes a new instance of the FleaRand class.
</summary>
<param name="seed">The seed.</param>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureInfo">
<summary>
FeatureInfo represents coverage of a single value of test function
parameter, represented as a pair of indices, Dimension and Feature. In
terms of unit testing, Dimension is the index of the test parameter and
Feature is the index of the supplied value in that parameter's list of
sources.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureInfo.#ctor(System.Int32,System.Int32)">
<summary>
Initializes a new instance of FeatureInfo class.
</summary>
<param name="dimension">Index of a dimension.</param>
<param name="feature">Index of a feature.</param>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureTuple">
<summary>
A FeatureTuple represents a combination of features, one per test
parameter, which should be covered by a test case. In the
PairwiseStrategy, we are only trying to cover pairs of features, so the
tuples actually may contain only single feature or pair of features, but
the algorithm itself works with triplets, quadruples and so on.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureTuple.#ctor(NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureInfo)">
<summary>
Initializes a new instance of FeatureTuple class for a single feature.
</summary>
<param name="feature1">Single feature.</param>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureTuple.#ctor(NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureInfo,NUnit.Framework.Internal.Builders.PairwiseStrategy.FeatureInfo)">
<summary>
Initializes a new instance of FeatureTuple class for a pair of features.
</summary>
<param name="feature1">First feature.</param>
<param name="feature2">Second feature.</param>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy.TestCaseInfo">
<summary>
TestCase represents a single test case covering a list of features.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.TestCaseInfo.#ctor(System.Int32)">
<summary>
Initializes a new instance of TestCaseInfo class.
</summary>
<param name="length">A number of features in the test case.</param>
</member>
<member name="T:NUnit.Framework.Internal.Builders.PairwiseStrategy.PairwiseTestCaseGenerator">
<summary>
PairwiseTestCaseGenerator class implements an algorithm which generates
a set of test cases which covers all pairs of possible values of test
function.
</summary>
<remarks>
<para>
The algorithm starts with creating a set of all feature tuples which we
will try to cover (see <see cref="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.PairwiseTestCaseGenerator.CreateAllTuples"/> method). This set
includes every single feature and all possible pairs of features. We
store feature tuples in the 3-D collection (where axes are "dimension",
"feature", and "all combinations which includes this feature"), and for
every two feature (e.g. "A" and "B") we generate both ("A", "B") and
("B", "A") pairs. This data structure extremely reduces the amount of
time needed to calculate coverage for a single test case (this
calculation is the most time-consuming part of the algorithm).
</para>
<para>
Then the algorithm picks one tuple from the uncovered tuple, creates a
test case that covers this tuple, and then removes this tuple and all
other tuples covered by this test case from the collection of uncovered
tuples.
</para>
<para>
Picking a tuple to cover
</para>
<para>
There are no any special rules defined for picking tuples to cover. We
just pick them one by one, in the order they were generated.
</para>
<para>
Test generation
</para>
<para>
Test generation starts from creating a completely random test case which
covers, nevertheless, previously selected tuple. Then the algorithm
tries to maximize number of tuples which this test covers.
</para>
<para>
Test generation and maximization process repeats seven times for every
selected tuple and then the algorithm picks the best test case ("seven"
is a magic number which provides good results in acceptable time).
</para>
<para>Maximizing test coverage</para>
<para>
To maximize tests coverage, the algorithm walks thru the list of mutable
dimensions (mutable dimension is a dimension that are not included in
the previously selected tuple). Then for every dimension, the algorithm
walks thru the list of features and checks if this feature provides
better coverage than randomly selected feature, and if yes keeps this
feature.
</para>
<para>
This process repeats while it shows progress. If the last iteration
doesn't improve coverage, the process ends.
</para>
<para>
In addition, for better results, before start every iteration, the
algorithm "scrambles" dimensions - so for every iteration dimension
probes in a different order.
</para>
</remarks>
</member>
<member name="M:NUnit.Framework.Internal.Builders.PairwiseStrategy.PairwiseTestCaseGenerator.GetTestCases(System.Int32[])">
<summary>
Creates a set of test cases for specified dimensions.
</summary>
<param name="dimensions">
An array which contains information about dimensions. Each element of
this array represents a number of features in the specific dimension.
</param>
<returns>
A set of test cases.
</returns>
</member>
<member name="T:NUnit.Framework.Internal.Builders.DatapointProvider">
<summary>
Provides data from fields marked with the DatapointAttribute or the
DatapointsAttribute.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IParameterDataProvider">
<summary>
The IDataPointProvider interface is used by extensions
that provide data for a single test parameter.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IParameterDataProvider.HasDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Determine whether any data is available for a parameter.
</summary>
<param name="parameter">An IParameterInfo representing one
argument to a parameterized test</param>
<returns>True if any data is available, otherwise false.</returns>
</member>
<member name="M:NUnit.Framework.Interfaces.IParameterDataProvider.GetDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Return an IEnumerable providing data for use with the
supplied parameter.
</summary>
<param name="parameter">An IParameterInfo representing one
argument to a parameterized test</param>
<returns>An IEnumerable providing the required data</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DatapointProvider.HasDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Determine whether any data is available for a parameter.
</summary>
<param name="parameter">A ParameterInfo representing one
argument to a parameterized test</param>
<returns>
True if any data is available, otherwise false.
</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DatapointProvider.GetDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Return an IEnumerable providing data for use with the
supplied parameter.
</summary>
<param name="parameter">A ParameterInfo representing one
argument to a parameterized test</param>
<returns>
An IEnumerable providing the required data
</returns>
</member>
<member name="T:NUnit.Framework.Internal.Builders.CombinatorialStrategy">
<summary>
CombinatorialStrategy creates test cases by using all possible
combinations of the parameter data.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.CombinatorialStrategy.GetTestCases(System.Collections.IEnumerable[])">
<summary>
Gets the test cases generated by the CombiningStrategy.
</summary>
<returns>The test cases.</returns>
</member>
<member name="T:NUnit.Framework.Constraints.ThrowsNothingConstraint">
<summary>
ThrowsNothingConstraint tests that a delegate does not
throw an exception.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ThrowsNothingConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True if no exception is thrown, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Constraints.ThrowsNothingConstraint.ApplyTo``1(NUnit.Framework.Constraints.ActualValueDelegate{``0})">
<summary>
Applies the constraint to an ActualValueDelegate that returns
the value to be tested. The default implementation simply evaluates
the delegate but derived classes may override it to provide for
delayed processing.
</summary>
<param name="del">An ActualValueDelegate</param>
<returns>A ConstraintResult</returns>
</member>
<member name="P:NUnit.Framework.Constraints.ThrowsNothingConstraint.Description">
<summary>
Gets text describing a constraint
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.OrOperator">
<summary>
Operator that requires at least one of it's arguments to succeed
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.BinaryOperator">
<summary>
Abstract base class for all binary operators
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ConstraintOperator">
<summary>
The ConstraintOperator class is used internally by a
ConstraintBuilder to represent an operator that
modifies or combines constraints.
Constraint operators use left and right precedence
_values to determine whether the top operator on the
stack should be reduced before pushing a new operator.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ConstraintOperator.left_precedence">
<summary>
The precedence value used when the operator
is about to be pushed to the stack.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ConstraintOperator.right_precedence">
<summary>
The precedence value used when the operator
is on the top of the stack.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintOperator.Reduce(NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack)">
<summary>
Reduce produces a constraint from the operator and
any arguments. It takes the arguments from the constraint
stack and pushes the resulting constraint on it.
</summary>
<param name="stack"></param>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintOperator.LeftContext">
<summary>
The syntax element preceding this operator
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintOperator.RightContext">
<summary>
The syntax element following this operator
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintOperator.LeftPrecedence">
<summary>
The precedence value used when the operator
is about to be pushed to the stack.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintOperator.RightPrecedence">
<summary>
The precedence value used when the operator
is on the top of the stack.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.BinaryOperator.Reduce(NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack)">
<summary>
Reduce produces a constraint from the operator and
any arguments. It takes the arguments from the constraint
stack and pushes the resulting constraint on it.
</summary>
<param name="stack"></param>
</member>
<member name="M:NUnit.Framework.Constraints.BinaryOperator.ApplyOperator(NUnit.Framework.Constraints.IConstraint,NUnit.Framework.Constraints.IConstraint)">
<summary>
Abstract method that produces a constraint by applying
the operator to its left and right constraint arguments.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.BinaryOperator.LeftPrecedence">
<summary>
Gets the left precedence of the operator
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.BinaryOperator.RightPrecedence">
<summary>
Gets the right precedence of the operator
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.OrOperator.#ctor">
<summary>
Construct an OrOperator
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.OrOperator.ApplyOperator(NUnit.Framework.Constraints.IConstraint,NUnit.Framework.Constraints.IConstraint)">
<summary>
Apply the operator to produce an OrConstraint
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.Numerics">
<summary>
The Numerics class contains common operations on numeric _values.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.Numerics.IsNumericType(System.Object)">
<summary>
Checks the type of the object, returning true if
the object is a numeric type.
</summary>
<param name="obj">The object to check</param>
<returns>true if the object is a numeric type</returns>
</member>
<member name="M:NUnit.Framework.Constraints.Numerics.IsFloatingPointNumeric(System.Object)">
<summary>
Checks the type of the object, returning true if
the object is a floating point numeric type.
</summary>
<param name="obj">The object to check</param>
<returns>true if the object is a floating point numeric type</returns>
</member>
<member name="M:NUnit.Framework.Constraints.Numerics.IsFixedPointNumeric(System.Object)">
<summary>
Checks the type of the object, returning true if
the object is a fixed point numeric type.
</summary>
<param name="obj">The object to check</param>
<returns>true if the object is a fixed point numeric type</returns>
</member>
<member name="M:NUnit.Framework.Constraints.Numerics.AreEqual(System.Object,System.Object,NUnit.Framework.Constraints.Tolerance@)">
<summary>
Test two numeric _values for equality, performing the usual numeric
conversions and using a provided or default tolerance. If the tolerance
provided is Empty, this method may set it to a default tolerance.
</summary>
<param name="expected">The expected value</param>
<param name="actual">The actual value</param>
<param name="tolerance">A reference to the tolerance in effect</param>
<returns>True if the _values are equal</returns>
</member>
<member name="M:NUnit.Framework.Constraints.Numerics.Compare(System.Object,System.Object)">
<summary>
Compare two numeric _values, performing the usual numeric conversions.
</summary>
<param name="expected">The expected value</param>
<param name="actual">The actual value</param>
<returns>The relationship of the _values to each other</returns>
</member>
<member name="T:NUnit.Framework.Constraints.FalseConstraint">
<summary>
FalseConstraint tests that the actual value is false
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.FalseConstraint.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.FalseConstraint"/> class.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.FalseConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="T:NUnit.Framework.TestFixtureAttribute">
<summary>
TestFixtureAttribute is used to mark a class that represents a TestFixture.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestFixtureData">
<summary>
The ITestCaseData interface is implemented by a class
that is able to return the data required to create an
instance of a parameterized test fixture.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestData">
<summary>
The ITestData interface is implemented by a class that
represents a single instance of a parameterized test.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestData.TestName">
<summary>
Gets the name to be used for the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestData.RunState">
<summary>
Gets the RunState for this test case.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestData.Arguments">
<summary>
Gets the argument list to be provided to the test
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestData.Properties">
<summary>
Gets the property dictionary for the test case
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestFixtureData.TypeArgs">
<summary>
Get the TypeArgs if separately set
</summary>
</member>
<member name="M:NUnit.Framework.TestFixtureAttribute.#ctor">
<summary>
Default constructor
</summary>
</member>
<member name="M:NUnit.Framework.TestFixtureAttribute.#ctor(System.Object[])">
<summary>
Construct with a object[] representing a set of arguments.
In .NET 2.0, the arguments may later be separated into
type arguments and constructor arguments.
</summary>
<param name="arguments"></param>
</member>
<member name="M:NUnit.Framework.TestFixtureAttribute.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Build a fixture from type provided. Normally called for a Type
on which the attribute has been placed.
</summary>
<param name="typeInfo">The type info of the fixture to be used.</param>
<returns>A an IEnumerable holding one TestFixture object.</returns>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.TestName">
<summary>
Gets or sets the name of the test.
</summary>
<value>The name of the test.</value>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.RunState">
<summary>
Gets or sets the RunState of this test fixture.
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Arguments">
<summary>
The arguments originally provided to the attribute
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Properties">
<summary>
Properties pertaining to this fixture
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.TypeArgs">
<summary>
Get or set the type arguments. If not set
explicitly, any leading arguments that are
Types are taken as type arguments.
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Description">
<summary>
Descriptive text for this fixture
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Author">
<summary>
The author of this fixture
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.TestOf">
<summary>
The type that this fixture is testing
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Ignore">
<summary>
Gets or sets the ignore reason. May set RunState as a side effect.
</summary>
<value>The ignore reason.</value>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Reason">
<summary>
Gets or sets the reason for not running the fixture.
</summary>
<value>The reason.</value>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.IgnoreReason">
<summary>
Gets or sets the ignore reason. When set to a non-null
non-empty value, the test is marked as ignored.
</summary>
<value>The ignore reason.</value>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Explicit">
<summary>
Gets or sets a value indicating whether this <see cref="T:NUnit.Framework.TestFixtureAttribute"/> is explicit.
</summary>
<value>
<c>true</c> if explicit; otherwise, <c>false</c>.
</value>
</member>
<member name="P:NUnit.Framework.TestFixtureAttribute.Category">
<summary>
Gets and sets the category for this fixture.
May be a comma-separated list of categories.
</summary>
</member>
<member name="T:NUnit.Framework.TestCaseAttribute">
<summary>
TestCaseAttribute is used to mark parameterized test cases
and provide them with their arguments.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestCaseData">
<summary>
The ITestCaseData interface is implemented by a class
that is able to return complete testcases for use by
a parameterized test method.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestCaseData.ExpectedResult">
<summary>
Gets the expected result of the test case
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ITestCaseData.HasExpectedResult">
<summary>
Returns true if an expected result has been set
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.IImplyFixture">
<summary>
IImplyFixture is an empty marker interface used by attributes like
TestAttribute that cause the class where they are used to be treated
as a TestFixture even without a TestFixtureAttribute.
Marker interfaces are not usually considered a good practice, but
we use it here to avoid cluttering the attribute hierarchy with
classes that don't contain any extra implementation.
</summary>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.#ctor(System.Object[])">
<summary>
Construct a TestCaseAttribute with a list of arguments.
This constructor is not CLS-Compliant
</summary>
<param name="arguments"></param>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.#ctor(System.Object)">
<summary>
Construct a TestCaseAttribute with a single argument
</summary>
<param name="arg"></param>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.#ctor(System.Object,System.Object)">
<summary>
Construct a TestCaseAttribute with a two arguments
</summary>
<param name="arg1"></param>
<param name="arg2"></param>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.#ctor(System.Object,System.Object,System.Object)">
<summary>
Construct a TestCaseAttribute with a three arguments
</summary>
<param name="arg1"></param>
<param name="arg2"></param>
<param name="arg3"></param>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.PerformSpecialConversions(System.Object[],NUnit.Framework.Interfaces.IParameterInfo[])">
<summary>
Performs several special conversions allowed by NUnit in order to
permit arguments with types that cannot be used in the constructor
of an Attribute such as TestCaseAttribute or to simplify their use.
</summary>
<param name="arglist">The arguments to be converted</param>
<param name="parameters">The ParameterInfo array for the method</param>
</member>
<member name="M:NUnit.Framework.TestCaseAttribute.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Construct one or more TestMethods from a given MethodInfo,
using available parameter data.
</summary>
<param name="method">The MethodInfo for which tests are to be constructed.</param>
<param name="suite">The suite to which the tests will be added.</param>
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<member name="P:NUnit.Framework.TestCaseAttribute.TestName">
<summary>
Gets or sets the name of the test.
</summary>
<value>The name of the test.</value>
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<member name="P:NUnit.Framework.TestCaseAttribute.RunState">
<summary>
Gets or sets the RunState of this test case.
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<member name="P:NUnit.Framework.TestCaseAttribute.Arguments">
<summary>
Gets the list of arguments to a test case
</summary>
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<member name="P:NUnit.Framework.TestCaseAttribute.Properties">
<summary>
Gets the properties of the test case
</summary>
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<member name="P:NUnit.Framework.TestCaseAttribute.ExpectedResult">
<summary>
Gets or sets the expected result.
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<value>The result.</value>
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<member name="P:NUnit.Framework.TestCaseAttribute.HasExpectedResult">
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Returns true if the expected result has been set
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Gets or sets the description.
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<value>The description.</value>
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<summary>
The author of this test
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The type that this test is testing
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Gets or sets the reason for ignoring the test
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Gets or sets a value indicating whether this <see cref="T:NUnit.Framework.TestCaseAttribute"/> is explicit.
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<value>
<c>true</c> if explicit; otherwise, <c>false</c>.
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Gets or sets the reason for not running the test.
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<value>The reason.</value>
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Gets or sets the ignore reason. When set to a non-null
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<value>The ignore reason.</value>
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<member name="P:NUnit.Framework.TestCaseAttribute.IncludePlatform">
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Comma-delimited list of platforms to run the test for
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Comma-delimited list of platforms to not run the test for
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Gets and sets the category for this test case.
May be a comma-separated list of categories.
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<member name="T:NUnit.Framework.Internal.GenericMethodHelper">
<summary>
GenericMethodHelper is able to deduce the Type arguments for
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Construct a GenericMethodHelper for a method
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Return the type argments for the method, deducing them
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<member name="T:NUnit.Framework.Internal.Commands.TestActionCommand">
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TestActionCommand runs the BeforeTest actions for a test,
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.TestActionCommand"/> class.
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Runs the test, saving a TestResult in the supplied TestExecutionContext.
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<member name="T:NUnit.Framework.Internal.Logger">
<summary>
Provides internal logging to the NUnit framework
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<member name="T:NUnit.Framework.Internal.ILogger">
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Interface for logging within the engine
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<summary>
Logs the specified message at the error level.
</summary>
<param name="message">The message.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Error(System.String,System.Object[])">
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Logs the specified message at the error level.
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<param name="message">The message.</param>
<param name="args">The arguments.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Warning(System.String)">
<summary>
Logs the specified message at the warning level.
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<param name="message">The message.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Warning(System.String,System.Object[])">
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Logs the specified message at the warning level.
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<param name="message">The message.</param>
<param name="args">The arguments.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Info(System.String)">
<summary>
Logs the specified message at the info level.
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<param name="message">The message.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Info(System.String,System.Object[])">
<summary>
Logs the specified message at the info level.
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<param name="message">The message.</param>
<param name="args">The arguments.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Debug(System.String)">
<summary>
Logs the specified message at the debug level.
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<param name="message">The message.</param>
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<member name="M:NUnit.Framework.Internal.ILogger.Debug(System.String,System.Object[])">
<summary>
Logs the specified message at the debug level.
</summary>
<param name="message">The message.</param>
<param name="args">The arguments.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.#ctor(System.String,NUnit.Framework.Internal.InternalTraceLevel,System.IO.TextWriter)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Logger"/> class.
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<param name="name">The name.</param>
<param name="level">The log level.</param>
<param name="writer">The writer where logs are sent.</param>
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<member name="M:NUnit.Framework.Internal.Logger.Error(System.String)">
<summary>
Logs the message at error level.
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<param name="message">The message.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Error(System.String,System.Object[])">
<summary>
Logs the message at error level.
</summary>
<param name="message">The message.</param>
<param name="args">The message arguments.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Warning(System.String)">
<summary>
Logs the message at warm level.
</summary>
<param name="message">The message.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Warning(System.String,System.Object[])">
<summary>
Logs the message at warning level.
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<param name="message">The message.</param>
<param name="args">The message arguments.</param>
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<member name="M:NUnit.Framework.Internal.Logger.Info(System.String)">
<summary>
Logs the message at info level.
</summary>
<param name="message">The message.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Info(System.String,System.Object[])">
<summary>
Logs the message at info level.
</summary>
<param name="message">The message.</param>
<param name="args">The message arguments.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Debug(System.String)">
<summary>
Logs the message at debug level.
</summary>
<param name="message">The message.</param>
</member>
<member name="M:NUnit.Framework.Internal.Logger.Debug(System.String,System.Object[])">
<summary>
Logs the message at debug level.
</summary>
<param name="message">The message.</param>
<param name="args">The message arguments.</param>
</member>
<member name="T:NUnit.Framework.Internal.Filters.ClassNameFilter">
<summary>
ClassName filter selects tests based on the class FullName
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<member name="M:NUnit.Framework.Internal.Filters.ClassNameFilter.#ctor(System.String)">
<summary>
Construct a FullNameFilter for a single name
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<param name="expectedValue">The name the filter will recognize.</param>
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<member name="M:NUnit.Framework.Internal.Filters.ClassNameFilter.Match(NUnit.Framework.Interfaces.ITest)">
<summary>
Match a test against a single value.
</summary>
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<member name="P:NUnit.Framework.Internal.Filters.ClassNameFilter.ElementName">
<summary>
Gets the element name
</summary>
<value>Element name</value>
</member>
<member name="T:NUnit.Framework.Internal.Filters.PropertyFilter">
<summary>
PropertyFilter is able to select or exclude tests
based on their properties.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Filters.PropertyFilter.#ctor(System.String,System.String)">
<summary>
Construct a PropertyFilter using a property name and expected value
</summary>
<param name="propertyName">A property name</param>
<param name="expectedValue">The expected value of the property</param>
</member>
<member name="M:NUnit.Framework.Internal.Filters.PropertyFilter.Match(NUnit.Framework.Interfaces.ITest)">
<summary>
Check whether the filter matches a test
</summary>
<param name="test">The test to be matched</param>
<returns></returns>
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<member name="M:NUnit.Framework.Internal.Filters.PropertyFilter.AddToXml(NUnit.Framework.Interfaces.TNode,System.Boolean)">
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Adds an XML node
</summary>
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<param name="recursive">True if recursive</param>
<returns>The added XML node</returns>
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<member name="P:NUnit.Framework.Internal.Filters.PropertyFilter.ElementName">
<summary>
Gets the element name
</summary>
<value>Element name</value>
</member>
<member name="T:NUnit.Env">
<summary>
Env is a static class that provides some of the features of
System.Environment that are not available under all runtimes
</summary>
</member>
<member name="F:NUnit.Env.NewLine">
<summary>
The newline sequence in the current environment.
</summary>
</member>
<member name="F:NUnit.Env.DocumentFolder">
<summary>
Path to the 'My Documents' folder
</summary>
</member>
<member name="F:NUnit.Env.DefaultWorkDirectory">
<summary>
Directory used for file output if not specified on commandline.
</summary>
</member>
<member name="T:NUnit.Framework.Assert">
<summary>
The Assert class contains a collection of static methods that
implement the most common assertions used in NUnit.
</summary>
<summary>
The Assert class contains a collection of static methods that
implement the most common assertions used in NUnit.
</summary>
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<member name="M:NUnit.Framework.Assert.True(System.Nullable{System.Boolean},System.String,System.Object[])">
<summary>
Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
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Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display in case of failure</param>
<param name="args">Array of objects to be used in formatting the message</param>
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<member name="M:NUnit.Framework.Assert.True(System.Nullable{System.Boolean})">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>.
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<param name="condition">The evaluated condition</param>
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<member name="M:NUnit.Framework.Assert.True(System.Boolean)">
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Asserts that a condition is true. If the condition is false the method throws
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<member name="M:NUnit.Framework.Assert.IsTrue(System.Nullable{System.Boolean},System.String,System.Object[])">
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Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
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<member name="M:NUnit.Framework.Assert.IsTrue(System.Boolean,System.String,System.Object[])">
<summary>
Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display in case of failure</param>
<param name="args">Array of objects to be used in formatting the message</param>
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<member name="M:NUnit.Framework.Assert.IsTrue(System.Nullable{System.Boolean})">
<summary>
Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
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<member name="M:NUnit.Framework.Assert.IsTrue(System.Boolean)">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>.
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<param name="condition">The evaluated condition</param>
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Asserts that a condition is false. If the condition is true the method throws
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display in case of failure</param>
<param name="args">Array of objects to be used in formatting the message</param>
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<summary>
Asserts that a condition is false. If the condition is true the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>.
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display in case of failure</param>
<param name="args">Array of objects to be used in formatting the message</param>
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<member name="M:NUnit.Framework.Assert.False(System.Nullable{System.Boolean})">
<summary>
Asserts that a condition is false. If the condition is true the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>.
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<param name="condition">The evaluated condition</param>
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<member name="M:NUnit.Framework.Assert.False(System.Boolean)">
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Asserts that a condition is false. If the condition is true the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>.
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<param name="condition">The evaluated condition</param>
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Asserts that a condition is false. If the condition is true the method throws
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display in case of failure</param>
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Asserts that a condition is false. If the condition is true the method throws
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Asserts that a condition is false. If the condition is true the method throws
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<param name="condition">The evaluated condition</param>
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Asserts that a condition is false. If the condition is true the method throws
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Verifies that the object that is passed in is not equal to <code>null</code>
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Verifies that the object that is passed in is not equal to <code>null</code>
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Verifies that the object that is passed in is not equal to <code>null</code>
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<param name="anObject">The object that is to be tested</param>
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Verifies that the object that is passed in is not equal to <code>null</code>
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<param name="anObject">The object that is to be tested</param>
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Verifies that the object that is passed in is equal to <code>null</code>
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<param name="anObject">The object that is to be tested</param>
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Verifies that the object that is passed in is equal to <code>null</code>
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is thrown.
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<param name="anObject">The object that is to be tested</param>
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Verifies that the object that is passed in is equal to <code>null</code>
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Verifies that the object that is passed in is equal to <code>null</code>
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Assert that a string is empty - that is equal to string.Empty
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Assert that an array, list or other collection is empty
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Assert that an array, list or other collection is empty
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Assert that a string is not empty - that is not equal to string.Empty
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Assert that a string is not empty - that is not equal to string.Empty
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Assert that an array, list or other collection is not empty
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Assert that an array, list or other collection is not empty
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Asserts that an int is zero.
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Asserts that an int is zero.
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Apply a constraint to an actual value, succeeding if the constraint
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Apply a constraint to an actual value, succeeding if the constraint
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<summary>
Throws an <see cref="T:NUnit.Framework.AssertionException"/>.
This is used by the other Assert functions.
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<param name="args">Arguments to be used in formatting the message</param>
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passed in. This causes the test to be reported as ignored.
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Returns the constraint created by applying this
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</summary>
<param name="constraint"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionOperator.#ctor">
<summary>
Constructs a CollectionOperator
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.AllOperator.ApplyPrefix(NUnit.Framework.Constraints.IConstraint)">
<summary>
Returns a constraint that will apply the argument
to the members of a collection, succeeding if
they all succeed.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.FileExistsConstraint">
<summary>
FileExistsConstraint is used to determine if a file exists
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint">
<summary>
FileOrDirectoryExistsConstraint is used to determine if a file or directory exists
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint"/> class that
will check files and directories.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.#ctor(System.Boolean)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint"/> class that
will only check files if ignoreDirectories is true.
</summary>
<param name="ignoreDirectories">if set to <c>true</c> [ignore directories].</param>
</member>
<member name="M:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.ApplyTo(System.Object)">
<summary>
Applies the constraint to an actual value, returning a ConstraintResult.
</summary>
<param name="actual">The value to be tested</param>
<returns>A ConstraintResult</returns>
</member>
<member name="P:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.IgnoreDirectories">
<summary>
If true, the constraint will only check if files exist, not directories
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.IgnoreFiles">
<summary>
If true, the constraint will only check if directories exist, not files
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.FileOrDirectoryExistsConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.FileExistsConstraint.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.FileExistsConstraint"/> class.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.FileExistsConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.TestAssemblyDirectoryResolveAttribute">
<summary>
TestAssemblyDirectoryResolveAttribute is used to mark a test assembly as needing a
special assembly resolution hook that will explicitly search the test assembly's
directory for dependent assemblies. This works around a conflict between mixed-mode
assembly initialization and tests running in their own AppDomain in some cases.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Reflect">
<summary>
Helper methods for inspecting a type by reflection.
Many of these methods take ICustomAttributeProvider as an
argument to avoid duplication, even though certain attributes can
only appear on specific types of members, like MethodInfo or Type.
In the case where a type is being examined for the presence of
an attribute, interface or named member, the Reflect methods
operate with the full name of the member being sought. This
removes the necessity of the caller having a reference to the
assembly that defines the item being sought and allows the
NUnit core to inspect assemblies that reference an older
version of the NUnit framework.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.GetMethodsWithAttribute(System.Type,System.Type,System.Boolean)">
<summary>
Examine a fixture type and return an array of methods having a
particular attribute. The array is order with base methods first.
</summary>
<param name="fixtureType">The type to examine</param>
<param name="attributeType">The attribute Type to look for</param>
<param name="inherit">Specifies whether to search the fixture type inheritance chain</param>
<returns>The array of methods found</returns>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.HasMethodWithAttribute(System.Type,System.Type)">
<summary>
Examine a fixture type and return true if it has a method with
a particular attribute.
</summary>
<param name="fixtureType">The type to examine</param>
<param name="attributeType">The attribute Type to look for</param>
<returns>True if found, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.Construct(System.Type)">
<summary>
Invoke the default constructor on a Type
</summary>
<param name="type">The Type to be constructed</param>
<returns>An instance of the Type</returns>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.Construct(System.Type,System.Object[])">
<summary>
Invoke a constructor on a Type with arguments
</summary>
<param name="type">The Type to be constructed</param>
<param name="arguments">Arguments to the constructor</param>
<returns>An instance of the Type</returns>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.GetTypeArray(System.Object[])">
<summary>
Returns an array of types from an array of objects.
Used because the compact framework doesn't support
Type.GetTypeArray()
</summary>
<param name="objects">An array of objects</param>
<returns>An array of Types</returns>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.InvokeMethod(System.Reflection.MethodInfo,System.Object)">
<summary>
Invoke a parameterless method returning void on an object.
</summary>
<param name="method">A MethodInfo for the method to be invoked</param>
<param name="fixture">The object on which to invoke the method</param>
</member>
<member name="M:NUnit.Framework.Internal.Reflect.InvokeMethod(System.Reflection.MethodInfo,System.Object,System.Object[])">
<summary>
Invoke a method, converting any TargetInvocationException to an NUnitException.
</summary>
<param name="method">A MethodInfo for the method to be invoked</param>
<param name="fixture">The object on which to invoke the method</param>
<param name="args">The argument list for the method</param>
<returns>The return value from the invoked method</returns>
</member>
<member name="P:NUnit.Framework.Internal.Reflect.MethodCallWrapper">
<summary>
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Reflect.ConstructorCallWrapper">
<summary>
Constructor delegate, makes it possible to use a factory to create objects
</summary>
</member>
<member name="T:NUnit.Framework.Internal.InvalidTestFixtureException">
<summary>
InvalidTestFixtureException is thrown when an appropriate test
fixture constructor using the provided arguments cannot be found.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.InvalidTestFixtureException.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.InvalidTestFixtureException"/> class.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.InvalidTestFixtureException.#ctor(System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.InvalidTestFixtureException"/> class.
</summary>
<param name="message">The message.</param>
</member>
<member name="M:NUnit.Framework.Internal.InvalidTestFixtureException.#ctor(System.String,System.Exception)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.InvalidTestFixtureException"/> class.
</summary>
<param name="message">The message.</param>
<param name="inner">The inner.</param>
</member>
<member name="M:NUnit.Framework.Internal.InvalidTestFixtureException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
<summary>
Serialization Constructor
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder">
<summary>
Class to build ether a parameterized or a normal NUnitTestMethod.
There are four cases that the builder must deal with:
1. The method needs no params and none are provided
2. The method needs params and they are provided
3. The method needs no params but they are provided in error
4. The method needs params but they are not provided
This could have been done using two different builders, but it
turned out to be simpler to have just one. The BuildFrom method
takes a different branch depending on whether any parameters are
provided, but all four cases are dealt with in lower-level methods
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ITestCaseBuilder">
<summary>
The ITestCaseBuilder interface is exposed by a class that knows how to
build a test case from certain methods.
</summary>
<remarks>
This interface is not the same as the ITestCaseBuilder interface in NUnit 2.x.
We have reused the name because the two products don't interoperate at all.
</remarks>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestCaseBuilder.CanBuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Examine the method and determine if it is suitable for
this builder to use in building a TestCase to be
included in the suite being populated.
Note that returning false will cause the method to be ignored
in loading the tests. If it is desired to load the method
but label it as non-runnable, ignored, etc., then this
method must return true.
</summary>
<param name="method">The test method to examine</param>
<param name="suite">The suite being populated</param>
<returns>True is the builder can use this method</returns>
</member>
<member name="M:NUnit.Framework.Interfaces.ITestCaseBuilder.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Build a TestCase from the provided MethodInfo for
inclusion in the suite being constructed.
</summary>
<param name="method">The method to be used as a test case</param>
<param name="suite">The test suite being populated, or null</param>
<returns>A TestCase or null</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.CanBuildFrom(NUnit.Framework.Interfaces.IMethodInfo)">
<summary>
Determines if the method can be used to build an NUnit test
test method of some kind. The method must normally be marked
with an identifying attribute for this to be true.
Note that this method does not check that the signature
of the method for validity. If we did that here, any
test methods with invalid signatures would be passed
over in silence in the test run. Since we want such
methods to be reported, the check for validity is made
in BuildFrom rather than here.
</summary>
<param name="method">An IMethodInfo for the method being used as a test method</param>
<returns>True if the builder can create a test case from this method</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo)">
<summary>
Build a Test from the provided MethodInfo. Depending on
whether the method takes arguments and on the availability
of test case data, this method may return a single test
or a group of tests contained in a ParameterizedMethodSuite.
</summary>
<param name="method">The method for which a test is to be built</param>
<returns>A Test representing one or more method invocations</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.CanBuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Determines if the method can be used to build an NUnit test
test method of some kind. The method must normally be marked
with an identifying attribute for this to be true.
Note that this method does not check that the signature
of the method for validity. If we did that here, any
test methods with invalid signatures would be passed
over in silence in the test run. Since we want such
methods to be reported, the check for validity is made
in BuildFrom rather than here.
</summary>
<param name="method">An IMethodInfo for the method being used as a test method</param>
<param name="parentSuite">The test suite being built, to which the new test would be added</param>
<returns>True if the builder can create a test case from this method</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Build a Test from the provided MethodInfo. Depending on
whether the method takes arguments and on the availability
of test case data, this method may return a single test
or a group of tests contained in a ParameterizedMethodSuite.
</summary>
<param name="method">The method for which a test is to be built</param>
<param name="parentSuite">The test fixture being populated, or null</param>
<returns>A Test representing one or more method invocations</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.BuildParameterizedMethodSuite(NUnit.Framework.Interfaces.IMethodInfo,System.Collections.Generic.IEnumerable{NUnit.Framework.Internal.TestMethod})">
<summary>
Builds a ParameterizedMethodSuite containing individual test cases.
</summary>
<param name="method">The method for which a test is to be built.</param>
<param name="tests">The list of test cases to include.</param>
<returns>A ParameterizedMethodSuite populated with test cases</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.DefaultTestCaseBuilder.BuildSingleTestMethod(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Build a simple, non-parameterized TestMethod for this method.
</summary>
<param name="method">The MethodInfo for which a test is to be built</param>
<param name="suite">The test suite for which the method is being built</param>
<returns>A TestMethod.</returns>
</member>
<member name="T:NUnit.Framework.Constraints.SelfResolvingOperator">
<summary>
Abstract base class for operators that are able to reduce to a
constraint whether or not another syntactic element follows.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.NUnitEqualityComparer">
<summary>
NUnitEqualityComparer encapsulates NUnit's handling of
equality tests between objects.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.caseInsensitive">
<summary>
If true, all string comparisons will ignore case
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.compareAsCollection">
<summary>
If true, arrays will be treated as collections, allowing
those of different dimensions to be compared
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.externalComparers">
<summary>
Comparison objects used in comparisons for some constraints.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.failurePoints">
<summary>
List of points at which a failure occurred.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NUnitEqualityComparer.AreEqual(System.Object,System.Object,NUnit.Framework.Constraints.Tolerance@)">
<summary>
Compares two objects for equality within a tolerance.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NUnitEqualityComparer.ArraysEqual(System.Array,System.Array,NUnit.Framework.Constraints.Tolerance@)">
<summary>
Helper method to compare two arrays
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NUnitEqualityComparer.DirectoriesEqual(System.IO.DirectoryInfo,System.IO.DirectoryInfo)">
<summary>
Method to compare two DirectoryInfo objects
</summary>
<param name="x">first directory to compare</param>
<param name="y">second directory to compare</param>
<returns>true if equivalent, false if not</returns>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.Default">
<summary>
Returns the default NUnitEqualityComparer
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.IgnoreCase">
<summary>
Gets and sets a flag indicating whether case should
be ignored in determining equality.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.CompareAsCollection">
<summary>
Gets and sets a flag indicating that arrays should be
compared as collections, without regard to their shape.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.ExternalComparers">
<summary>
Gets the list of external comparers to be used to
test for equality. They are applied to members of
collections, in place of NUnit's own logic.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoints">
<summary>
Gets the list of failure points for the last Match performed.
The list consists of objects to be interpreted by the caller.
This generally means that the caller may only make use of
objects it has placed on the list at a particular depthy.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.NUnitEqualityComparer.WithSameOffset">
<summary>
Flags the comparer to include <see cref="P:System.DateTimeOffset.Offset"/>
property in comparison of two <see cref="T:System.DateTimeOffset"/> values.
</summary>
<remarks>
Using this modifier does not allow to use the <see cref="T:NUnit.Framework.Constraints.Tolerance"/>
modifier.
</remarks>
</member>
<member name="T:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint">
<summary>
FailurePoint class represents one point of failure
in an equality test.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint.Position">
<summary>
The location of the failure
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint.ExpectedValue">
<summary>
The expected value
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint.ActualValue">
<summary>
The actual value
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint.ExpectedHasData">
<summary>
Indicates whether the expected value is valid
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint.ActualHasData">
<summary>
Indicates whether the actual value is valid
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.NullConstraint">
<summary>
NullConstraint tests that the actual value is null
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NullConstraint.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.NullConstraint"/> class.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NullConstraint.ApplyTo(System.Object)">
<summary>
Applies the constraint to an actual value, returning a ConstraintResult.
</summary>
<param name="actual">The value to be tested</param>
<returns>A ConstraintResult</returns>
</member>
<member name="T:NUnit.Framework.Constraints.CollectionSubsetConstraint">
<summary>
CollectionSubsetConstraint is used to determine whether
one collection is a subset of another
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionSubsetConstraint.#ctor(System.Collections.IEnumerable)">
<summary>
Construct a CollectionSubsetConstraint
</summary>
<param name="expected">The collection that the actual value is expected to be a subset of</param>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionSubsetConstraint.Matches(System.Collections.IEnumerable)">
<summary>
Test whether the actual collection is a subset of
the expected collection provided.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Constraints.CollectionSubsetConstraint.Using``2(System.Func{``0,``1,System.Boolean})">
<summary>
Flag the constraint to use the supplied predicate function
</summary>
<param name="comparison">The comparison function to use.</param>
<returns>Self.</returns>
</member>
<member name="P:NUnit.Framework.Constraints.CollectionSubsetConstraint.DisplayName">
<summary>
The display name of this Constraint for use by ToString().
The default value is the name of the constraint with
trailing "Constraint" removed. Derived classes may set
this to another name in their constructors.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.CollectionSubsetConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.AndConstraint">
<summary>
AndConstraint succeeds only if both members succeed.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.BinaryConstraint">
<summary>
BinaryConstraint is the abstract base of all constraints
that combine two other constraints in some fashion.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.BinaryConstraint.Left">
<summary>
The first constraint being combined
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.BinaryConstraint.Right">
<summary>
The second constraint being combined
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.BinaryConstraint.#ctor(NUnit.Framework.Constraints.IConstraint,NUnit.Framework.Constraints.IConstraint)">
<summary>
Construct a BinaryConstraint from two other constraints
</summary>
<param name="left">The first constraint</param>
<param name="right">The second constraint</param>
</member>
<member name="M:NUnit.Framework.Constraints.AndConstraint.#ctor(NUnit.Framework.Constraints.IConstraint,NUnit.Framework.Constraints.IConstraint)">
<summary>
Create an AndConstraint from two other constraints
</summary>
<param name="left">The first constraint</param>
<param name="right">The second constraint</param>
</member>
<member name="M:NUnit.Framework.Constraints.AndConstraint.ApplyTo(System.Object)">
<summary>
Apply both member constraints to an actual value, succeeding
succeeding only if both of them succeed.
</summary>
<param name="actual">The actual value</param>
<returns>True if the constraints both succeeded</returns>
</member>
<member name="P:NUnit.Framework.Constraints.AndConstraint.Description">
<summary>
Gets text describing a constraint
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ConstraintResult">
<summary>
Contain the result of matching a <see cref="T:NUnit.Framework.Constraints.Constraint"/> against an actual value.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintResult.#ctor(NUnit.Framework.Constraints.IConstraint,System.Object)">
<summary>
Constructs a <see cref="T:NUnit.Framework.Constraints.ConstraintResult"/> for a particular <see cref="T:NUnit.Framework.Constraints.Constraint"/>.
</summary>
<param name="constraint">The Constraint to which this result applies.</param>
<param name="actualValue">The actual value to which the Constraint was applied.</param>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintResult.#ctor(NUnit.Framework.Constraints.IConstraint,System.Object,NUnit.Framework.Constraints.ConstraintStatus)">
<summary>
Constructs a <see cref="T:NUnit.Framework.Constraints.ConstraintResult"/> for a particular <see cref="T:NUnit.Framework.Constraints.Constraint"/>.
</summary>
<param name="constraint">The Constraint to which this result applies.</param>
<param name="actualValue">The actual value to which the Constraint was applied.</param>
<param name="status">The status of the new ConstraintResult.</param>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintResult.#ctor(NUnit.Framework.Constraints.IConstraint,System.Object,System.Boolean)">
<summary>
Constructs a <see cref="T:NUnit.Framework.Constraints.ConstraintResult"/> for a particular <see cref="T:NUnit.Framework.Constraints.Constraint"/>.
</summary>
<param name="constraint">The Constraint to which this result applies.</param>
<param name="actualValue">The actual value to which the Constraint was applied.</param>
<param name="isSuccess">If true, applies a status of Success to the result, otherwise Failure.</param>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintResult.WriteMessageTo(NUnit.Framework.Constraints.MessageWriter)">
<summary>
Write the failure message to the MessageWriter provided
as an argument. The default implementation simply passes
the result and the actual value to the writer, which
then displays the constraint description and the value.
Constraints that need to provide additional details,
such as where the error occured can override this.
</summary>
<param name="writer">The MessageWriter on which to display the message</param>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintResult.WriteActualValueTo(NUnit.Framework.Constraints.MessageWriter)">
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Write the actual value for a failing constraint test to a
MessageWriter. The default implementation simply writes
the raw value of actual, leaving it to the writer to
perform any formatting.
</summary>
<param name="writer">The writer on which the actual value is displayed</param>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintResult.ActualValue">
<summary>
The actual value that was passed to the <see cref="M:NUnit.Framework.Constraints.Constraint.ApplyTo(System.Object)"/> method.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintResult.Status">
<summary>
Gets and sets the ResultStatus for this result.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintResult.IsSuccess">
<summary>
True if actual value meets the Constraint criteria otherwise false.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintResult.Name">
<summary>
Display friendly name of the constraint.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintResult.Description">
<summary>
Description of the constraint may be affected by the state the constraint had
when <see cref="M:NUnit.Framework.Constraints.Constraint.ApplyTo(System.Object)"/> was performed against the actual value.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.AndConstraint.AndConstraintResult.WriteActualValueTo(NUnit.Framework.Constraints.MessageWriter)">
<summary>
Write the actual value for a failing constraint test to a
MessageWriter. The default implementation simply writes
the raw value of actual, leaving it to the writer to
perform any formatting.
</summary>
<param name="writer">The writer on which the actual value is displayed</param>
</member>
<member name="T:NUnit.Framework.TestFixtureTearDownAttribute">
<summary>
Attribute used to identify a method that is called after
all the tests in a fixture have run. The method is
guaranteed to be called, even if an exception is thrown.
</summary>
</member>
<member name="T:NUnit.Framework.OneTimeTearDownAttribute">
<summary>
Attribute used to identify a method that is called once
after all the child tests have run. The method is
guaranteed to be called, even if an exception is thrown.
</summary>
</member>
<member name="T:NUnit.Framework.PlatformAttribute">
<summary>
PlatformAttribute is used to mark a test fixture or an
individual method as applying to a particular platform only.
</summary>
</member>
<member name="M:NUnit.Framework.PlatformAttribute.#ctor">
<summary>
Constructor with no platforms specified, for use
with named property syntax.
</summary>
</member>
<member name="M:NUnit.Framework.PlatformAttribute.#ctor(System.String)">
<summary>
Constructor taking one or more platforms
</summary>
<param name="platforms">Comma-delimited list of platforms</param>
</member>
<member name="M:NUnit.Framework.PlatformAttribute.ApplyToTest(NUnit.Framework.Internal.Test)">
<summary>
Causes a test to be skipped if this PlatformAttribute is not satisfied.
</summary>
<param name="test">The test to modify</param>
</member>
<member name="T:NUnit.Framework.IgnoreAttribute">
<summary>
Attribute used to mark a test that is to be ignored.
Ignored tests result in a warning message when the
tests are run.
</summary>
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<member name="M:NUnit.Framework.IgnoreAttribute.#ctor(System.String)">
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Constructs the attribute giving a reason for ignoring the test
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<member name="M:NUnit.Framework.IgnoreAttribute.ApplyToTest(NUnit.Framework.Internal.Test)">
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Modifies a test by marking it as Ignored.
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<param name="test">The test to modify</param>
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<member name="P:NUnit.Framework.IgnoreAttribute.Reason">
<summary>
</summary>
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<member name="P:NUnit.Framework.IgnoreAttribute.Until">
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The date in the future to stop ignoring the test as a string in UTC time.
For example for a date and time, "2014-12-25 08:10:00Z" or for just a date,
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Once the ignore until date has passed, the test will be marked
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<exception cref="T:System.FormatException">The string does not contain a valid string representation of a date and time.</exception>
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<member name="T:NUnit.Framework.Interfaces.IApplyToContext">
<summary>
The IApplyToContext interface is implemented by attributes
that want to make changes to the execution context before
a test is run.
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<member name="M:NUnit.Framework.Interfaces.IApplyToContext.ApplyToContext(NUnit.Framework.Internal.ITestExecutionContext)">
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Apply changes to the execution context
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<param name="context">The execution context</param>
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<member name="T:NUnit.Framework.Internal.Execution.SimpleWorkItem">
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A SimpleWorkItem represents a single test case and is
marked as completed immediately upon execution. This
class is also used for skipped or ignored test suites.
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<member name="M:NUnit.Framework.Internal.Execution.SimpleWorkItem.#ctor(NUnit.Framework.Internal.TestMethod,NUnit.Framework.Interfaces.ITestFilter)">
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Construct a simple work item for a test.
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<param name="test">The test to be executed</param>
<param name="filter">The filter used to select this test</param>
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<member name="M:NUnit.Framework.Internal.Execution.SimpleWorkItem.PerformWork">
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Method that performs actually performs the work.
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<member name="T:NUnit.Framework.Internal.Commands.ApplyChangesToContextCommand">
<summary>
ContextSettingsCommand applies specified changes to the
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.ApplyChangesToContextCommand" /> class.
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<param name="changes"></param>
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<member name="M:NUnit.Framework.Internal.Commands.ApplyChangesToContextCommand.ApplyChanges(NUnit.Framework.Internal.ITestExecutionContext)">
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<param name="context"></param>
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<member name="M:NUnit.Framework.Internal.Commands.ApplyChangesToContextCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
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</summary>
<param name="context"></param>
<returns></returns>
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<member name="T:NUnit.Framework.Interfaces.RunState">
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The RunState enum indicates whether a test can be executed.
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<member name="F:NUnit.Framework.Interfaces.RunState.NotRunnable">
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The test is not runnable.
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<member name="F:NUnit.Framework.Interfaces.RunState.Runnable">
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The test is runnable.
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<member name="F:NUnit.Framework.Interfaces.RunState.Explicit">
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The test can only be run explicitly
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<member name="F:NUnit.Framework.Interfaces.RunState.Skipped">
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The test has been skipped. This value may
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<member name="F:NUnit.Framework.Interfaces.RunState.Ignored">
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The test has been ignored. May appear on
a Test, when the IgnoreAttribute is used.
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<member name="T:NUnit.Framework.Does">
<summary>
Helper class with properties and methods that supply
a number of constraints used in Asserts.
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<member name="M:NUnit.Framework.Does.Contain(System.Object)">
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Returns a new CollectionContainsConstraint checking for the
presence of a particular object in the collection.
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<member name="M:NUnit.Framework.Does.Contain(System.String)">
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Returns a new ContainsConstraint. This constraint
will, in turn, make use of the appropriate second-level
constraint, depending on the type of the actual argument.
This overload is only used if the item sought is a string,
since any other type implies that we are looking for a
collection member.
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<member name="M:NUnit.Framework.Does.StartWith(System.String)">
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Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Does.EndWith(System.String)">
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Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Does.Match(System.String)">
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Returns a constraint that succeeds if the actual
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<member name="P:NUnit.Framework.Does.Not">
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Returns a ConstraintExpression that negates any
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<member name="P:NUnit.Framework.Does.Exist">
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Returns a constraint that succeeds if the value
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<member name="T:NUnit.Framework.Internal.AssemblyHelper">
<summary>
AssemblyHelper provides static methods for working
with assemblies.
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<member name="M:NUnit.Framework.Internal.AssemblyHelper.GetAssemblyPath(System.Reflection.Assembly)">
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Gets the path from which an assembly was loaded.
For builds where this is not possible, returns
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Gets the path to the directory from which an assembly was loaded.
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<member name="M:NUnit.Framework.Internal.AssemblyHelper.GetAssemblyName(System.Reflection.Assembly)">
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Gets the AssemblyName of an assembly.
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<member name="M:NUnit.Framework.Internal.AssemblyHelper.Load(System.String)">
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Loads an assembly given a string, which may be the
path to the assembly or the AssemblyName
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.AssemblyHelper.GetAssemblyPathFromCodeBase(System.String)">
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Gets the assembly path from code base.
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<remarks>Public for testing purposes</remarks>
<param name="codeBase">The code base.</param>
<returns></returns>
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<member name="T:NUnit.Framework.Api.FrameworkController">
<summary>
FrameworkController provides a facade for use in loading, browsing
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framework. All calls are encapsulated in constructors for
this class and its nested classes, which only require the
types of the Common Type System as arguments.
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proper sequencing of calls. Load must be called before any of the
other actions. The driver may support other actions, such as
reload on run, by combining these calls.
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<member name="T:NUnit.Compatibility.LongLivedMarshalByRefObject">
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A MarshalByRefObject that lives forever
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<member name="M:NUnit.Compatibility.LongLivedMarshalByRefObject.InitializeLifetimeService">
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Obtains a lifetime service object to control the lifetime policy for this instance.
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Construct a FrameworkController using the default builder and runner.
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Construct a FrameworkController using the default builder and runner.
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<member name="M:NUnit.Framework.Api.FrameworkController.#ctor(System.String,System.String,System.Collections.IDictionary,System.String,System.String)">
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Construct a FrameworkController, specifying the types to be used
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purposes of development.
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<member name="M:NUnit.Framework.Api.FrameworkController.#ctor(System.Reflection.Assembly,System.String,System.Collections.IDictionary,System.String,System.String)">
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Construct a FrameworkController, specifying the types to be used
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purposes of development.
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<param name="assembly">The test assembly</param>
<param name="idPrefix">A prefix used for all test ids created under this controller.</param>
<param name="settings">A Dictionary of settings to use in loading and running the tests</param>
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<param name="builderType">The Type of the test builder</param>
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<member name="M:NUnit.Framework.Api.FrameworkController.LoadTests">
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Loads the tests in the assembly
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<member name="M:NUnit.Framework.Api.FrameworkController.ExploreTests(System.String)">
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Returns info about the tests in an assembly
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<returns>The XML result of exploring the tests</returns>
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<member name="M:NUnit.Framework.Api.FrameworkController.RunTests(System.String)">
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Runs the tests in an assembly
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Runs the tests in an assembly syncronously reporting back the test results through the callback
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Runs the tests in an assembly asyncronously reporting back the test results through the callback
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<member name="M:NUnit.Framework.Api.FrameworkController.StopRun(System.Boolean)">
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Stops the test run
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<member name="M:NUnit.Framework.Api.FrameworkController.CountTests(System.String)">
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Counts the number of test cases in the loaded TestSuite
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<returns>The number of tests</returns>
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Inserts environment element
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Inserts settings element
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<param name="settings">Settings dictionary</param>
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Gets the ITestAssemblyBuilder used by this controller instance.
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<value>The builder.</value>
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<member name="P:NUnit.Framework.Api.FrameworkController.Runner">
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Gets the ITestAssemblyRunner used by this controller instance.
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<value>The runner.</value>
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<member name="P:NUnit.Framework.Api.FrameworkController.AssemblyNameOrPath">
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Gets the AssemblyName or the path for which this FrameworkController was created
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<member name="P:NUnit.Framework.Api.FrameworkController.Assembly">
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Gets the Assembly for which this
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Gets a dictionary of settings for the FrameworkController
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<summary>
A shim of the .NET interface for platforms that do not support it.
Used to indicate that a control can be the target of a callback event on the server.
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<member name="M:System.Web.UI.ICallbackEventHandler.RaiseCallbackEvent(System.String)">
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Processes a callback event that targets a control.
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Returns the results of a callback event that targets a control.
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<member name="T:NUnit.Framework.Api.FrameworkController.FrameworkControllerAction">
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FrameworkControllerAction is the base class for all actions
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<member name="T:NUnit.Framework.Api.FrameworkController.LoadTestsAction">
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LoadTestsAction loads a test into the FrameworkController
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<member name="M:NUnit.Framework.Api.FrameworkController.LoadTestsAction.#ctor(NUnit.Framework.Api.FrameworkController,System.Object)">
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LoadTestsAction loads the tests in an assembly.
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<param name="controller">The controller.</param>
<param name="handler">The callback handler.</param>
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<member name="T:NUnit.Framework.Api.FrameworkController.ExploreTestsAction">
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ExploreTestsAction returns info about the tests in an assembly
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<member name="M:NUnit.Framework.Api.FrameworkController.ExploreTestsAction.#ctor(NUnit.Framework.Api.FrameworkController,System.String,System.Object)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Api.FrameworkController.ExploreTestsAction"/> class.
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<param name="handler">The callback handler.</param>
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<member name="T:NUnit.Framework.Api.FrameworkController.CountTestsAction">
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CountTestsAction counts the number of test cases in the loaded TestSuite
held by the FrameworkController.
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<member name="M:NUnit.Framework.Api.FrameworkController.CountTestsAction.#ctor(NUnit.Framework.Api.FrameworkController,System.String,System.Object)">
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Construct a CountsTestAction and perform the count of test cases.
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<param name="controller">A FrameworkController holding the TestSuite whose cases are to be counted</param>
<param name="filter">A string containing the XML representation of the filter to use</param>
<param name="handler">A callback handler used to report results</param>
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<member name="T:NUnit.Framework.Api.FrameworkController.RunTestsAction">
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RunTestsAction runs the loaded TestSuite held by the FrameworkController.
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Construct a RunTestsAction and run all tests in the loaded TestSuite.
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<member name="T:NUnit.Framework.Api.FrameworkController.RunAsyncAction">
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RunAsyncAction initiates an asynchronous test run, returning immediately
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Construct a RunAsyncAction and run all tests in the loaded TestSuite.
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<param name="filter">A string containing the XML representation of the filter to use</param>
<param name="handler">A callback handler used to report results</param>
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<member name="T:NUnit.Framework.Api.FrameworkController.StopRunAction">
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StopRunAction stops an ongoing run.
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Construct a StopRunAction and stop any ongoing run. If no
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<member name="T:NUnit.Framework.Constraints.ExceptionTypeConstraint">
<summary>
ExceptionTypeConstraint is a special version of ExactTypeConstraint
used to provided detailed info about the exception thrown in
an error message.
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<member name="T:NUnit.Framework.Constraints.ExactTypeConstraint">
<summary>
ExactTypeConstraint is used to test that an object
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<member name="M:NUnit.Framework.Constraints.ExactTypeConstraint.#ctor(System.Type)">
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Construct an ExactTypeConstraint for a given Type
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Apply the constraint to an actual value, returning true if it succeeds
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The display name of this Constraint for use by ToString().
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this to another name in their constructors.
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<member name="M:NUnit.Framework.Constraints.ExceptionTypeConstraint.#ctor(System.Type)">
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Constructs an ExceptionTypeConstraint
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Applies the constraint to an actual value, returning a ConstraintResult.
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<param name="actual">The value to be tested</param>
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<member name="T:NUnit.Framework.Internal.TestProgressReporter">
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TestProgressReporter translates ITestListener events into
the async callbacks that are used to inform the client
software about the progress of a test run.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestProgressReporter"/> class.
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Called when a test has just started
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Called when a test has finished. Sends a result summary to the callback.
to
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Called when a test produces output for immediate display
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Returns the parent test item for the targer test item if it exists
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Makes a string safe for use as an attribute, replacing
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<member name="T:NUnit.Framework.Constraints.PropOperator">
<summary>
Operator used to test for the presence of a named Property
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Constructs a PropOperator for a particular named property
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Reduce produces a constraint from the operator and
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<param name="stack"></param>
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<member name="P:NUnit.Framework.Constraints.PropOperator.Name">
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Gets the name of the property to which the operator applies
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<member name="T:NUnit.Framework.Constraints.NaNConstraint">
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NaNConstraint tests that the actual value is a double or float NaN
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Test that the actual value is an NaN
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<member name="P:NUnit.Framework.Constraints.NaNConstraint.Description">
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.CollectionContainsConstraint">
<summary>
CollectionContainsConstraint is used to test whether a collection
contains an expected object as a member.
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<member name="M:NUnit.Framework.Constraints.CollectionContainsConstraint.#ctor(System.Object)">
<summary>
Construct a CollectionContainsConstraint
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<member name="M:NUnit.Framework.Constraints.CollectionContainsConstraint.Matches(System.Collections.IEnumerable)">
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Test whether the expected item is contained in the collection
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Flag the constraint to use the supplied predicate function
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<member name="P:NUnit.Framework.Constraints.CollectionContainsConstraint.DisplayName">
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The display name of this Constraint for use by ToString().
The default value is the name of the constraint with
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this to another name in their constructors.
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<member name="P:NUnit.Framework.Constraints.CollectionContainsConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
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<member name="P:NUnit.Framework.Constraints.CollectionContainsConstraint.Expected">
<summary>
Gets the expected object
</summary>
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<member name="T:NUnit.Framework.SetUpAttribute">
<summary>
Attribute used to mark a class that contains one-time SetUp
and/or TearDown methods that apply to all the tests in a
namespace or an assembly.
</summary>
</member>
<member name="T:NUnit.Framework.PreTestAttribute">
<summary>
Attribute used to mark a class that contains one-time SetUp
and/or TearDown methods that apply to all the tests in a
namespace or an assembly.
</summary>
</member>
<member name="T:NUnit.Framework.PostTestAttribute">
<summary>
Attribute used to mark a class that contains one-time SetUp
and/or TearDown methods that apply to all the tests in a
namespace or an assembly.
</summary>
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<member name="T:NUnit.Framework.RepeatAttribute">
<summary>
RepeatAttribute may be applied to test case in order
to run it multiple times.
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<member name="M:NUnit.Framework.RepeatAttribute.#ctor(System.Int32)">
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Construct a RepeatAttribute
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<param name="count">The number of times to run the test</param>
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<member name="M:NUnit.Framework.RepeatAttribute.Wrap(NUnit.Framework.Internal.Commands.TestCommand)">
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Wrap a command and return the result.
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<member name="T:NUnit.Framework.RepeatAttribute.RepeatedTestCommand">
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The test command for the RepeatAttribute
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Initializes a new instance of the <see cref="T:NUnit.Framework.RepeatAttribute.RepeatedTestCommand"/> class.
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Runs the test, saving a TestResult in the supplied TestExecutionContext.
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A simplified implementation of .NET 4 CountdownEvent
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Construct a CountdownEvent
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Decrement the count by one
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Block the thread until the count reaches zero
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Gets the initial count established for the CountdownEvent
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Gets the current count remaining for the CountdownEvent
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TheoryResultCommand adjusts the result of a Theory so that
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Constructs a TheoryResultCommand
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Overridden to call the inner command and adjust the result
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NUnitTestCaseBuilder is a utility class used by attributes
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Constructs an <see cref="T:NUnit.Framework.Internal.Builders.NUnitTestCaseBuilder"/>
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Helper method that checks the signature of a TestMethod and
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The return value is no longer used internally, but is retained
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<member name="T:NUnit.Framework.Interfaces.TestStatus">
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The TestStatus enum indicates the result of running a test
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The test was inconclusive
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The test has skipped
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The test succeeded
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The test failed
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<member name="M:NUnit.Framework.Internal.ActionsHelper.GetActionsFromAttributeProvider(System.Reflection.ICustomAttributeProvider)">
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<member name="T:NUnit.Framework.Internal.TestNameGenerator">
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TestNameGenerator is able to create test names according to
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<member name="F:NUnit.Framework.Internal.TestNameGenerator.DefaultTestNamePattern">
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Default pattern used to generate names
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<member name="M:NUnit.Framework.Internal.TestNameGenerator.#ctor">
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Construct a TestNameGenerator
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<member name="M:NUnit.Framework.Internal.TestNameGenerator.#ctor(System.String)">
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Construct a TestNameGenerator
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Get the display name for a TestMethod and it's arguments
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Get the display name for a TestMethod and it's arguments
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<member name="T:NUnit.Framework.Constraints.EqualConstraintResult">
<summary>
The EqualConstraintResult class is tailored for formatting
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<member name="M:NUnit.Framework.Constraints.EqualConstraintResult.#ctor(NUnit.Framework.Constraints.EqualConstraint,System.Object,System.Boolean)">
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Construct an EqualConstraintResult
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Write a failure message. Overridden to provide custom
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Display the failure information for two collections that did not match.
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Displays a single line showing the types and sizes of the expected
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<member name="M:NUnit.Framework.Constraints.EqualConstraintResult.DisplayFailurePoint(NUnit.Framework.Constraints.MessageWriter,System.Collections.IEnumerable,System.Collections.IEnumerable,NUnit.Framework.Constraints.NUnitEqualityComparer.FailurePoint,System.Int32)">
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Displays a single line showing the point in the expected and actual
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Display the failure information for two IEnumerables that did not match.
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<member name="T:NUnit.Compatibility.TypeExtensions">
<summary>
Provides NUnit specific extensions to aid in Reflection
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This version of the class supplies GetTypeInfo() on platforms
that don't support it.
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<member name="M:NUnit.Compatibility.TypeExtensions.GetTypeInfo(System.Type)">
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GetTypeInfo gives access to most of the Type information we take for granted
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platforms, it is easiest to just code all platforms as if they worked this way,
thus the simple passthrough.
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<param name="type"></param>
<returns></returns>
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<member name="T:NUnit.Compatibility.AssemblyExtensions">
<summary>
Extensions for Assembly that are not available in pre-4.5 .NET releases
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<member name="M:NUnit.Compatibility.AssemblyExtensions.GetCustomAttribute``1(System.Reflection.Assembly)">
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An easy way to get a single custom attribute from an assembly
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<typeparam name="T">The attribute Type</typeparam>
<param name="assembly">The assembly</param>
<returns>An attribute of Type T</returns>
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<member name="T:NUnit.Compatibility.AdditionalTypeExtensions">
<summary>
Type extensions that apply to all target frameworks
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<member name="M:NUnit.Compatibility.AdditionalTypeExtensions.ParametersMatch(System.Reflection.ParameterInfo[],System.Type[])">
<summary>
Determines if the given <see cref="T:System.Type"/> array is castable/matches the <see cref="T:System.Reflection.ParameterInfo"/> array.
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<member name="M:NUnit.Compatibility.AdditionalTypeExtensions.IsCastableFrom(System.Type,System.Type)">
<summary>
Determines if one type can be implicitly converted from another
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<param name="to"></param>
<param name="from"></param>
<returns></returns>
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<member name="T:NUnit.Compatibility.NUnitNullType">
<summary>
This class is used as a flag when we get a parameter list for a method/constructor, but
we do not know one of the types because null was passed in.
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<member name="T:NUnit.Framework.TestCaseData">
<summary>
The TestCaseData class represents a set of arguments
and other parameter info to be used for a parameterized
test case. It is derived from TestCaseParameters and adds a
fluent syntax for use in initializing the test case.
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<member name="T:NUnit.Framework.Internal.TestCaseParameters">
<summary>
The TestCaseParameters class encapsulates method arguments and
other selected parameters needed for constructing
a parameterized test case.
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<member name="T:NUnit.Framework.Internal.TestParameters">
<summary>
TestParameters is the abstract base class for all classes
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<member name="M:NUnit.Framework.Internal.TestParameters.#ctor">
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Default Constructor creates an empty parameter set
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<member name="M:NUnit.Framework.Internal.TestParameters.#ctor(System.Object[])">
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Construct a parameter set with a list of arguments
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<member name="M:NUnit.Framework.Internal.TestParameters.#ctor(System.Exception)">
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Construct a non-runnable ParameterSet, specifying
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Construct a ParameterSet from an object implementing ITestData
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Applies ParameterSet _values to the test itself.
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The RunState for this set of parameters.
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The arguments to be used in running the test,
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A name to be used for this test case in lieu
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Gets the property dictionary for this test
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The original arguments provided by the user,
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<member name="F:NUnit.Framework.Internal.TestCaseParameters._expectedResult">
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The expected result to be returned
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<member name="M:NUnit.Framework.Internal.TestCaseParameters.#ctor">
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Default Constructor creates an empty parameter set
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<member name="M:NUnit.Framework.Internal.TestCaseParameters.#ctor(System.Exception)">
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Construct a non-runnable ParameterSet, specifying
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<member name="M:NUnit.Framework.Internal.TestCaseParameters.#ctor(System.Object[])">
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Construct a parameter set with a list of arguments
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<member name="M:NUnit.Framework.Internal.TestCaseParameters.#ctor(NUnit.Framework.Interfaces.ITestCaseData)">
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Construct a ParameterSet from an object implementing ITestCaseData
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<member name="P:NUnit.Framework.Internal.TestCaseParameters.ExpectedResult">
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The expected result of the test, which
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<member name="P:NUnit.Framework.Internal.TestCaseParameters.HasExpectedResult">
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Gets a value indicating whether an expected result was specified.
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<member name="M:NUnit.Framework.TestCaseData.#ctor(System.Object[])">
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Initializes a new instance of the <see cref="T:NUnit.Framework.TestCaseData"/> class.
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<member name="M:NUnit.Framework.TestCaseData.#ctor(System.Object)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.TestCaseData"/> class.
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<member name="M:NUnit.Framework.TestCaseData.#ctor(System.Object,System.Object)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.TestCaseData"/> class.
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<member name="M:NUnit.Framework.TestCaseData.#ctor(System.Object,System.Object,System.Object)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.TestCaseData"/> class.
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<param name="arg3">The third argument.</param>
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<member name="M:NUnit.Framework.TestCaseData.Returns(System.Object)">
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Sets the expected result for the test
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<member name="M:NUnit.Framework.TestCaseData.SetName(System.String)">
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Sets the name of the test case
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Sets the description for the test case
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<member name="M:NUnit.Framework.TestCaseData.SetCategory(System.String)">
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Applies a category to the test
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<member name="M:NUnit.Framework.TestCaseData.SetProperty(System.String,System.String)">
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Applies a named property to the test
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<param name="propValue"></param>
<returns></returns>
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<member name="M:NUnit.Framework.TestCaseData.SetProperty(System.String,System.Int32)">
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Applies a named property to the test
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<param name="propValue"></param>
<returns></returns>
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<member name="M:NUnit.Framework.TestCaseData.SetProperty(System.String,System.Double)">
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Applies a named property to the test
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<param name="propValue"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.TestCaseData.Explicit">
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Marks the test case as explicit.
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<member name="M:NUnit.Framework.TestCaseData.Explicit(System.String)">
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Marks the test case as explicit, specifying the reason.
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<member name="M:NUnit.Framework.TestCaseData.Ignore(System.String)">
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Ignores this TestCase, specifying the reason.
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<returns></returns>
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<member name="T:NUnit.Framework.Internal.ITestExecutionContext">
<summary>
</summary>
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<member name="M:NUnit.Framework.Internal.ITestExecutionContext.IncrementAssertCount">
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<member name="M:NUnit.Framework.Internal.ITestExecutionContext.AddFormatter(NUnit.Framework.Constraints.ValueFormatterFactory)">
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.CurrentTest">
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Gets or sets the current test
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.StartTime">
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The time the current test started execution
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.StartTicks">
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The time the current test started in Ticks
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.CurrentResult">
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Gets or sets the current test result
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.OutWriter">
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Gets a TextWriter that will send output to the current test result.
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.TestObject">
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The current test object - that is the user fixture
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Get or set the working directory
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.StopOnError">
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Get or set indicator that run should stop on the first error
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.ExecutionStatus">
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Gets an enum indicating whether a stop has been requested.
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.Dispatcher">
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The current WorkItemDispatcher. Made public for
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The ParallelScope to be used by tests running in this context.
For builds with out the parallel feature, it has no effect.
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.WorkerId">
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The unique name of the worker that spawned the context.
For builds with out the parallel feature, it is null.
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.RandomGenerator">
<summary>
Gets the RandomGenerator specific to this Test
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.TestCaseTimeout">
<summary>
Gets or sets the test case timeout value
</summary>
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.UpstreamActions">
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Gets a list of ITestActions set by upstream tests
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.CurrentCulture">
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Saves or restores the CurrentCulture
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.CurrentUICulture">
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Saves or restores the CurrentUICulture
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.CurrentValueFormatter">
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The current head of the ValueFormatter chain, copied from MsgUtils.ValueFormatter
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<member name="P:NUnit.Framework.Internal.ITestExecutionContext.IsSingleThreaded">
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If true, all tests must run on the same thread. No new thread may be spawned.
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<member name="T:NUnit.Framework.Internal.TestExecutionContext">
<summary>
Helper class used to save and restore certain static or
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An internal class is used to hold settings and a stack
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._priorContext">
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Link to a prior saved context
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._executionStatus">
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Indicates that a stop has been requested
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._listener">
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The event listener currently receiving notifications
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._assertCount">
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The number of assertions for the current test
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._currentCulture">
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The current culture
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._currentUICulture">
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The current UI culture
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._currentResult">
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The current test result
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<member name="F:NUnit.Framework.Internal.TestExecutionContext._currentPrincipal">
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The current Principal.
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<member name="M:NUnit.Framework.Internal.TestExecutionContext.#ctor">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestExecutionContext"/> class.
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<member name="M:NUnit.Framework.Internal.TestExecutionContext.#ctor(NUnit.Framework.Internal.TestExecutionContext)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestExecutionContext"/> class.
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<param name="other">An existing instance of TestExecutionContext.</param>
</member>
<member name="M:NUnit.Framework.Internal.TestExecutionContext.GetTestExecutionContext">
<summary>
Get the current context or return null if none is found.
</summary>
<remarks></remarks>
</member>
<member name="M:NUnit.Framework.Internal.TestExecutionContext.ClearCurrentContext">
<summary>
Clear the current context. This is provided to
prevent "leakage" of the CallContext containing
the current context back to any runners.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestExecutionContext.UpdateContextFromEnvironment">
<summary>
Record any changes in the environment made by
the test code in the execution context so it
will be passed on to lower level tests.
</summary>
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<member name="M:NUnit.Framework.Internal.TestExecutionContext.EstablishExecutionEnvironment">
<summary>
Set up the execution environment to match a context.
Note that we may be running on the same thread where the
context was initially created or on a different thread.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestExecutionContext.IncrementAssertCount">
<summary>
Increments the assert count by one.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.TestExecutionContext.IncrementAssertCount(System.Int32)">
<summary>
Increments the assert count by a specified amount.
</summary>
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<member name="M:NUnit.Framework.Internal.TestExecutionContext.AddFormatter(NUnit.Framework.Constraints.ValueFormatterFactory)">
<summary>
Adds a new ValueFormatterFactory to the chain of formatters
</summary>
<param name="formatterFactory">The new factory</param>
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<member name="M:NUnit.Framework.Internal.TestExecutionContext.InitializeLifetimeService">
<summary>
Obtain lifetime service object
</summary>
<returns></returns>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentContext">
<summary>
Gets and sets the current context.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentTest">
<summary>
Gets or sets the current test
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.StartTime">
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The time the current test started execution
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.StartTicks">
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The time the current test started in Ticks
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentResult">
<summary>
Gets or sets the current test result
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestExecutionContext.OutWriter">
<summary>
Gets a TextWriter that will send output to the current test result.
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.TestObject">
<summary>
The current test object - that is the user fixture
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.WorkDirectory">
<summary>
Get or set the working directory
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.StopOnError">
<summary>
Get or set indicator that run should stop on the first error
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.ExecutionStatus">
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Gets an enum indicating whether a stop has been requested.
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.Listener">
<summary>
The current test event listener
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.Dispatcher">
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The current WorkItemDispatcher. Made public for
use by nunitlite.tests
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.ParallelScope">
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The ParallelScope to be used by tests running in this context.
For builds with out the parallel feature, it has no effect.
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.WorkerId">
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The unique name of the worker that spawned the context.
For builds with out the parallel feature, it is null.
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.RandomGenerator">
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Gets the RandomGenerator specific to this Test
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.AssertCount">
<summary>
Gets the assert count.
</summary>
<value>The assert count.</value>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.TestCaseTimeout">
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Gets or sets the test case timeout value
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.UpstreamActions">
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Gets a list of ITestActions set by upstream tests
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentCulture">
<summary>
Saves or restores the CurrentCulture
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentUICulture">
<summary>
Saves or restores the CurrentUICulture
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentPrincipal">
<summary>
Gets or sets the current <see cref="T:System.Security.Principal.IPrincipal"/> for the Thread.
</summary>
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.CurrentValueFormatter">
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The current head of the ValueFormatter chain, copied from MsgUtils.ValueFormatter
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<member name="P:NUnit.Framework.Internal.TestExecutionContext.IsSingleThreaded">
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If true, all tests must run on the same thread. No new thread may be spawned.
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<member name="T:NUnit.Framework.InconclusiveException">
<summary>
Thrown when a test executes inconclusively.
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<member name="T:NUnit.Framework.ResultStateException">
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Abstract base for Exceptions that terminate a test and provide a ResultState.
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<member name="M:NUnit.Framework.ResultStateException.#ctor(System.String)">
<param name="message">The error message that explains
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<member name="M:NUnit.Framework.ResultStateException.#ctor(System.String,System.Exception)">
<param name="message">The error message that explains
the reason for the exception</param>
<param name="inner">The exception that caused the
current exception</param>
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<member name="M:NUnit.Framework.ResultStateException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
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Serialization Constructor
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<member name="P:NUnit.Framework.ResultStateException.ResultState">
<summary>
Gets the ResultState provided by this exception
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<member name="M:NUnit.Framework.InconclusiveException.#ctor(System.String)">
<param name="message">The error message that explains
the reason for the exception</param>
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<member name="M:NUnit.Framework.InconclusiveException.#ctor(System.String,System.Exception)">
<param name="message">The error message that explains
the reason for the exception</param>
<param name="inner">The exception that caused the
current exception</param>
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<member name="M:NUnit.Framework.InconclusiveException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
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Serialization Constructor
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<member name="P:NUnit.Framework.InconclusiveException.ResultState">
<summary>
Gets the ResultState provided by this exception
</summary>
</member>
<member name="T:NUnit.Framework.Contains">
<summary>
Helper class with properties and methods that supply
a number of constraints used in Asserts.
</summary>
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<member name="M:NUnit.Framework.Contains.Item(System.Object)">
<summary>
Returns a new CollectionContainsConstraint checking for the
presence of a particular object in the collection.
</summary>
</member>
<member name="M:NUnit.Framework.Contains.Key(System.Object)">
<summary>
Returns a new DictionaryContainsKeyConstraint checking for the
presence of a particular key in the dictionary.
</summary>
</member>
<member name="M:NUnit.Framework.Contains.Value(System.Object)">
<summary>
Returns a new DictionaryContainsValueConstraint checking for the
presence of a particular value in the dictionary.
</summary>
</member>
<member name="M:NUnit.Framework.Contains.Substring(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value contains the substring supplied as an argument.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.EqualConstraint">
<summary>
EqualConstraint is able to compare an actual value with the
expected value provided in its constructor. Two objects are
considered equal if both are null, or if both have the same
value. NUnit has special semantics for some object types.
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<member name="F:NUnit.Framework.Constraints.EqualConstraint._comparer">
<summary>
NUnitEqualityComparer used to test equality.
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<member name="M:NUnit.Framework.Constraints.EqualConstraint.#ctor(System.Object)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.EqualConstraint"/> class.
</summary>
<param name="expected">The expected value.</param>
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<member name="M:NUnit.Framework.Constraints.EqualConstraint.Within(System.Object)">
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Flag the constraint to use a tolerance when determining equality.
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<param name="amount">Tolerance value to be used</param>
<returns>Self.</returns>
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<member name="M:NUnit.Framework.Constraints.EqualConstraint.Using(System.Collections.IComparer)">
<summary>
Flag the constraint to use the supplied IComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.EqualConstraint.Using``1(System.Collections.Generic.IComparer{``0})">
<summary>
Flag the constraint to use the supplied IComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.EqualConstraint.Using``1(System.Comparison{``0})">
<summary>
Flag the constraint to use the supplied Comparison object.
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<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
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<member name="M:NUnit.Framework.Constraints.EqualConstraint.Using(System.Collections.IEqualityComparer)">
<summary>
Flag the constraint to use the supplied IEqualityComparer object.
</summary>
<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
</member>
<member name="M:NUnit.Framework.Constraints.EqualConstraint.Using``1(System.Collections.Generic.IEqualityComparer{``0})">
<summary>
Flag the constraint to use the supplied IEqualityComparer object.
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<param name="comparer">The IComparer object to use.</param>
<returns>Self.</returns>
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<member name="M:NUnit.Framework.Constraints.EqualConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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<returns>True for success, false for failure</returns>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Tolerance">
<summary>
Gets the tolerance for this comparison.
</summary>
<value>
The tolerance.
</value>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.CaseInsensitive">
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Gets a value indicating whether to compare case insensitive.
</summary>
<value>
<c>true</c> if comparing case insensitive; otherwise, <c>false</c>.
</value>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.ClipStrings">
<summary>
Gets a value indicating whether or not to clip strings.
</summary>
<value>
<c>true</c> if set to clip strings otherwise, <c>false</c>.
</value>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.FailurePoints">
<summary>
Gets the failure points.
</summary>
<value>
The failure points.
</value>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.IgnoreCase">
<summary>
Flag the constraint to ignore case and return self.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.NoClip">
<summary>
Flag the constraint to suppress string clipping
and return self.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.AsCollection">
<summary>
Flag the constraint to compare arrays as collections
and return self.
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.WithSameOffset">
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Flags the constraint to include <see cref="P:System.DateTimeOffset.Offset"/>
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Using this modifier does not allow to use the <see cref="M:NUnit.Framework.Constraints.EqualConstraint.Within(System.Object)"/>
constraint modifier.
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Ulps">
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Switches the .Within() modifier to interpret its tolerance as
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<remarks>
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for smaller numbers and worse for larger numbers, an ulp depends
on the size of the number. Using ulps for comparison of floating
point results instead of fixed tolerances is safer because it will
automatically compensate for the added inaccuracy of larger numbers.
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Percent">
<summary>
Switches the .Within() modifier to interpret its tolerance as
a percentage that the actual _values is allowed to deviate from
the expected value.
</summary>
<returns>Self</returns>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Days">
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Causes the tolerance to be interpreted as a TimeSpan in days.
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<returns>Self</returns>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Hours">
<summary>
Causes the tolerance to be interpreted as a TimeSpan in hours.
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<returns>Self</returns>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Minutes">
<summary>
Causes the tolerance to be interpreted as a TimeSpan in minutes.
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<returns>Self</returns>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.Seconds">
<summary>
Causes the tolerance to be interpreted as a TimeSpan in seconds.
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<returns>Self</returns>
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<member name="P:NUnit.Framework.Constraints.EqualConstraint.Milliseconds">
<summary>
Causes the tolerance to be interpreted as a TimeSpan in milliseconds.
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<returns>Self</returns>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.Ticks">
<summary>
Causes the tolerance to be interpreted as a TimeSpan in clock ticks.
</summary>
<returns>Self</returns>
</member>
<member name="P:NUnit.Framework.Constraints.EqualConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.DelayedConstraint">
<summary>
Applies a delay to the match so that a match can be evaluated in the future.
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<member name="M:NUnit.Framework.Constraints.DelayedConstraint.#ctor(NUnit.Framework.Constraints.IConstraint,System.Int32)">
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Creates a new DelayedConstraint
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<member name="M:NUnit.Framework.Constraints.DelayedConstraint.#ctor(NUnit.Framework.Constraints.IConstraint,System.Int32,System.Int32)">
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Creates a new DelayedConstraint
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<exception cref="T:System.InvalidOperationException">If the value of <paramref name="delayInMilliseconds"/> is less than 0</exception>
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<member name="M:NUnit.Framework.Constraints.DelayedConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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Test whether the constraint is satisfied by a delegate
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Test whether the constraint is satisfied by a given reference.
Overridden to wait for the specified delay period before
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<member name="M:NUnit.Framework.Constraints.DelayedConstraint.GetStringRepresentation">
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Returns the string representation of the constraint.
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Adjusts a Timestamp by a given TimeSpan
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<param name="timestamp"></param>
<param name="offset"></param>
<returns></returns>
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Returns the difference between two Timestamps as a TimeSpan
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<param name="timestamp1"></param>
<param name="timestamp2"></param>
<returns></returns>
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<member name="P:NUnit.Framework.Constraints.DelayedConstraint.Description">
<summary>
Gets text describing a constraint
</summary>
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<member name="T:NUnit.Framework.Constraints.CollectionOrderedConstraint">
<summary>
CollectionOrderedConstraint is used to test whether a collection is ordered.
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<member name="M:NUnit.Framework.Constraints.CollectionOrderedConstraint.#ctor">
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Construct a CollectionOrderedConstraint
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Modifies the constraint to use an <see cref="T:System.Collections.IComparer"/> and returns self.
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Modifies the constraint to use an <see cref="T:System.Collections.Generic.IComparer`1"/> and returns self.
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<member name="M:NUnit.Framework.Constraints.CollectionOrderedConstraint.By(System.String)">
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Modifies the constraint to test ordering by the value of
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Test whether the collection is ordered
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Returns the string representation of the constraint.
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<returns></returns>
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The display name of this Constraint for use by ToString().
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If used performs a default ascending comparison
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If used performs a reverse comparison
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Then signals a break between two ordering steps
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.CollectionOrderedConstraint.OrderingStep">
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An OrderingStep represents one stage of the sort
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<summary>
Attribute used to provide descriptive text about a
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Construct a description Attribute
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<member name="T:NUnit.Framework.Internal.InvalidDataSourceException">
<summary>
InvalidTestFixtureException is thrown when an appropriate test
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<member name="M:NUnit.Framework.Internal.InvalidDataSourceException.#ctor">
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Serialization Constructor
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<member name="T:NUnit.Framework.Internal.Execution.CompositeWorkItem">
<summary>
A CompositeWorkItem represents a test suite and
encapsulates the execution of the suite as well
as all its child tests.
</summary>
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A count of how many tests in the work item have a value for the Order Property
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Construct a CompositeWorkItem for executing a test suite
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Method that actually performs the work. Overridden
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Sorts tests under this suite.
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Cancel (abort or stop) a CompositeWorkItem and all of its children
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List of Child WorkItems
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<param name="x">The first object to compare.</param><param name="y">The second object to compare.</param>
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<member name="T:NUnit.Framework.Interfaces.ISimpleTestBuilder">
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The ISimpleTestBuilder interface is exposed by a class that knows how to
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Build a TestMethod from the provided MethodInfo.
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<member name="T:NUnit.Framework.Internal.TypeWrapper">
<summary>
The TypeWrapper class wraps a Type so it may be used in
a platform-independent manner.
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<member name="M:NUnit.Framework.Internal.TypeWrapper.#ctor(System.Type)">
<summary>
Construct a TypeWrapper for a specified Type.
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<member name="M:NUnit.Framework.Internal.TypeWrapper.IsType(System.Type)">
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Returns true if the Type wrapped is T
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetDisplayName">
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Get the display name for this type
</summary>
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetDisplayName(System.Object[])">
<summary>
Get the display name for an object of this type, constructed with the specified args.
</summary>
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<member name="M:NUnit.Framework.Internal.TypeWrapper.MakeGenericType(System.Type[])">
<summary>
Returns a new ITypeInfo representing an instance of this generic Type using the supplied Type arguments
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetGenericTypeDefinition">
<summary>
Returns a Type representing a generic type definition from which this Type can be constructed.
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetCustomAttributes``1(System.Boolean)">
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Returns an array of custom attributes of the specified type applied to this type
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<member name="M:NUnit.Framework.Internal.TypeWrapper.IsDefined``1(System.Boolean)">
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Returns a value indicating whether the type has an attribute of the specified type.
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<param name="inherit"></param>
<returns></returns>
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<member name="M:NUnit.Framework.Internal.TypeWrapper.HasMethodWithAttribute(System.Type)">
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Returns a flag indicating whether this type has a method with an attribute of the specified type.
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetMethods(System.Reflection.BindingFlags)">
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Returns an array of IMethodInfos for methods of this Type
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<member name="M:NUnit.Framework.Internal.TypeWrapper.GetConstructor(System.Type[])">
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Gets the public constructor taking the specified argument Types
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<member name="M:NUnit.Framework.Internal.TypeWrapper.HasConstructor(System.Type[])">
<summary>
Returns a value indicating whether this Type has a public constructor taking the specified argument Types.
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<member name="M:NUnit.Framework.Internal.TypeWrapper.Construct(System.Object[])">
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Construct an object of this Type, using the specified arguments.
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<member name="M:NUnit.Framework.Internal.TypeWrapper.ToString">
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Override ToString() so that error messages in NUnit's own tests make sense
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<member name="P:NUnit.Framework.Internal.TypeWrapper.Type">
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Gets the underlying Type on which this TypeWrapper is based.
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<member name="P:NUnit.Framework.Internal.TypeWrapper.BaseType">
<summary>
Gets the base type of this type as an ITypeInfo
</summary>
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<member name="P:NUnit.Framework.Internal.TypeWrapper.Name">
<summary>
Gets the Name of the Type
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TypeWrapper.FullName">
<summary>
Gets the FullName of the Type
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TypeWrapper.Assembly">
<summary>
Gets the assembly in which the type is declared
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TypeWrapper.Namespace">
<summary>
Gets the namespace of the Type
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<member name="P:NUnit.Framework.Internal.TypeWrapper.IsAbstract">
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Gets a value indicating whether the type is abstract.
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<member name="P:NUnit.Framework.Internal.TypeWrapper.IsGenericType">
<summary>
Gets a value indicating whether the Type is a generic Type
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<member name="P:NUnit.Framework.Internal.TypeWrapper.ContainsGenericParameters">
<summary>
Gets a value indicating whether the Type has generic parameters that have not been replaced by specific Types.
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<member name="P:NUnit.Framework.Internal.TypeWrapper.IsGenericTypeDefinition">
<summary>
Gets a value indicating whether the Type is a generic Type definition
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<member name="P:NUnit.Framework.Internal.TypeWrapper.IsSealed">
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Gets a value indicating whether the type is sealed.
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<member name="P:NUnit.Framework.Internal.TypeWrapper.IsStaticClass">
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Gets a value indicating whether this type represents a static class.
</summary>
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<member name="T:NUnit.Framework.Constraints.DictionaryContainsValueConstraint">
<summary>
DictionaryContainsValueConstraint is used to test whether a dictionary
contains an expected object as a value.
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<member name="M:NUnit.Framework.Constraints.DictionaryContainsValueConstraint.#ctor(System.Object)">
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Construct a DictionaryContainsValueConstraint
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<member name="M:NUnit.Framework.Constraints.DictionaryContainsValueConstraint.Matches(System.Collections.IEnumerable)">
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Test whether the expected value is contained in the dictionary
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<member name="P:NUnit.Framework.Constraints.DictionaryContainsValueConstraint.DisplayName">
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The display name of this Constraint for use by ToString().
The default value is the name of the constraint with
trailing "Constraint" removed. Derived classes may set
this to another name in their constructors.
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<member name="P:NUnit.Framework.Constraints.DictionaryContainsValueConstraint.Description">
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.TestFixtureSourceAttribute">
<summary>
TestCaseSourceAttribute indicates the source to be used to
provide test fixture instances for a test class.
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<member name="F:NUnit.Framework.TestFixtureSourceAttribute.MUST_BE_STATIC">
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Error message string is public so the tests can use it
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Construct with the name of the method, property or field that will provide data
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<member name="M:NUnit.Framework.TestFixtureSourceAttribute.#ctor(System.Type,System.String)">
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Construct with a Type and name
</summary>
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<param name="sourceName">The name of a static method, property or field that will provide data.</param>
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<member name="M:NUnit.Framework.TestFixtureSourceAttribute.#ctor(System.Type)">
<summary>
Construct with a Type
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<param name="sourceType">The type that will provide data</param>
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<member name="M:NUnit.Framework.TestFixtureSourceAttribute.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Construct one or more TestFixtures from a given Type,
using available parameter data.
</summary>
<param name="typeInfo">The TypeInfo for which fixures are to be constructed.</param>
<returns>One or more TestFixtures as TestSuite</returns>
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<member name="M:NUnit.Framework.TestFixtureSourceAttribute.GetParametersFor(System.Type)">
<summary>
Returns a set of ITestFixtureData items for use as arguments
to a parameterized test fixture.
</summary>
<param name="sourceType">The type for which data is needed.</param>
<returns></returns>
</member>
<member name="P:NUnit.Framework.TestFixtureSourceAttribute.SourceName">
<summary>
The name of a the method, property or fiend to be used as a source
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureSourceAttribute.SourceType">
<summary>
A Type to be used as a source
</summary>
</member>
<member name="P:NUnit.Framework.TestFixtureSourceAttribute.Category">
<summary>
Gets or sets the category associated with every fixture created from
this attribute. May be a single category or a comma-separated list.
</summary>
</member>
<member name="T:NUnit.Framework.OneTimeSetUpAttribute">
<summary>
Attribute used to identify a method that is called once
to perform setup before any child tests are run.
</summary>
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<member name="T:NUnit.Framework.AuthorAttribute">
<summary>
Provides the Author of a test or test fixture.
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<member name="M:NUnit.Framework.AuthorAttribute.#ctor(System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.AuthorAttribute"/> class.
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<param name="name">The name of the author.</param>
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<member name="M:NUnit.Framework.AuthorAttribute.#ctor(System.String,System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.AuthorAttribute"/> class.
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<param name="name">The name of the author.</param>
<param name="email">The email address of the author.</param>
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<member name="T:NUnit.Framework.ActionTargets">
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The different targets a test action attribute can be applied to
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<member name="F:NUnit.Framework.ActionTargets.Default">
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Default target, which is determined by where the action attribute is attached
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<member name="F:NUnit.Framework.ActionTargets.Test">
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Target a individual test case
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<member name="F:NUnit.Framework.ActionTargets.Suite">
<summary>
Target a suite of test cases
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<member name="T:NUnit.Framework.Internal.TestListener">
<summary>
TestListener provides an implementation of ITestListener that
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<member name="M:NUnit.Framework.Internal.TestListener.TestStarted(NUnit.Framework.Interfaces.ITest)">
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Called when a test has just started
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<member name="M:NUnit.Framework.Internal.TestListener.TestFinished(NUnit.Framework.Interfaces.ITestResult)">
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Called when a test case has finished
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Called when a test produces output for immediate display
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<param name="output">A TestOutput object containing the text to display</param>
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<member name="M:NUnit.Framework.Internal.TestListener.#ctor">
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Construct a new TestListener - private so it may not be used.
</summary>
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<member name="P:NUnit.Framework.Internal.TestListener.NULL">
<summary>
Get a listener that does nothing
</summary>
</member>
<member name="T:NUnit.Framework.Internal.PlatformHelper">
<summary>
PlatformHelper class is used by the PlatformAttribute class to
determine whether a platform is supported.
</summary>
</member>
<member name="F:NUnit.Framework.Internal.PlatformHelper.OSPlatforms">
<summary>
Comma-delimited list of all supported OS platform constants
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<member name="F:NUnit.Framework.Internal.PlatformHelper.RuntimePlatforms">
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Comma-delimited list of all supported Runtime platform constants
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<member name="M:NUnit.Framework.Internal.PlatformHelper.#ctor">
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Default constructor uses the operating system and
common language runtime of the system.
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<member name="M:NUnit.Framework.Internal.PlatformHelper.#ctor(NUnit.Framework.Internal.OSPlatform,NUnit.Framework.Internal.RuntimeFramework)">
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Construct a PlatformHelper for a particular operating
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<param name="os">OperatingSystem to be used</param>
<param name="rt">RuntimeFramework to be used</param>
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<member name="M:NUnit.Framework.Internal.PlatformHelper.IsPlatformSupported(System.String[])">
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Test to determine if one of a collection of platforms
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</summary>
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.PlatformHelper.IsPlatformSupported(NUnit.Framework.PlatformAttribute)">
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Tests to determine if the current platform is supported
based on a platform attribute.
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<param name="platformAttribute">The attribute to examine</param>
<returns></returns>
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<member name="M:NUnit.Framework.Internal.PlatformHelper.IsPlatformSupported(NUnit.Framework.TestCaseAttribute)">
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Tests to determine if the current platform is supported
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.PlatformHelper.IsPlatformSupported(System.String)">
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Test to determine if the a particular platform or comma-
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<param name="platform">Name of the platform or comma-separated list of platform ids</param>
<returns>True if the platform is in use on the system</returns>
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<member name="P:NUnit.Framework.Internal.PlatformHelper.Reason">
<summary>
Return the last failure reason. Results are not
defined if called before IsSupported( Attribute )
is called.
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<member name="T:NUnit.Framework.Api.DefaultTestAssemblyBuilder">
<summary>
DefaultTestAssemblyBuilder loads a single assembly and builds a TestSuite
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<member name="F:NUnit.Framework.Api.DefaultTestAssemblyBuilder._defaultSuiteBuilder">
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The default suite builder used by the test assembly builder.
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<member name="M:NUnit.Framework.Api.DefaultTestAssemblyBuilder.#ctor">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Api.DefaultTestAssemblyBuilder"/> class.
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<member name="M:NUnit.Framework.Api.DefaultTestAssemblyBuilder.Build(System.Reflection.Assembly,System.Collections.Generic.IDictionary{System.String,System.Object})">
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Build a suite of tests from a provided assembly
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A TestSuite containing the tests found in the assembly
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Build a suite of tests given the filename of an assembly
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A TestSuite containing the tests found in the assembly
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<member name="T:NUnit.Framework.Has">
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Helper class with properties and methods that supply
a number of constraints used in Asserts.
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<member name="M:NUnit.Framework.Has.Exactly(System.Int32)">
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Returns a ConstraintExpression, which will apply
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<member name="M:NUnit.Framework.Has.Property(System.String)">
<summary>
Returns a new PropertyConstraintExpression, which will either
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<member name="M:NUnit.Framework.Has.Attribute(System.Type)">
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Returns a new AttributeConstraint checking for the
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<member name="M:NUnit.Framework.Has.Attribute``1">
<summary>
Returns a new AttributeConstraint checking for the
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<member name="M:NUnit.Framework.Has.Member(System.Object)">
<summary>
Returns a new CollectionContainsConstraint checking for the
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<member name="P:NUnit.Framework.Has.No">
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Returns a ConstraintExpression that negates any
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<member name="P:NUnit.Framework.Has.All">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if all of them succeed.
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</member>
<member name="P:NUnit.Framework.Has.Some">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if at least one of them succeeds.
</summary>
</member>
<member name="P:NUnit.Framework.Has.None">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if all of them fail.
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<member name="P:NUnit.Framework.Has.Length">
<summary>
Returns a new ConstraintExpression, which will apply the following
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<member name="P:NUnit.Framework.Has.Count">
<summary>
Returns a new ConstraintExpression, which will apply the following
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<member name="P:NUnit.Framework.Has.Message">
<summary>
Returns a new ConstraintExpression, which will apply the following
constraint to the Message property of the object being tested.
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<member name="P:NUnit.Framework.Has.InnerException">
<summary>
Returns a new ConstraintExpression, which will apply the following
constraint to the InnerException property of the object being tested.
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<member name="T:NUnit.Framework.Constraints.EmptyConstraint">
<summary>
EmptyConstraint tests a whether a string or collection is empty,
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type of the actual argument is known.
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<member name="M:NUnit.Framework.Constraints.EmptyConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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<member name="P:NUnit.Framework.Constraints.EmptyConstraint.Description">
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The Description of what this constraint tests, for
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ComparisonAdapter class centralizes all comparisons of
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or <see cref="T:System.Comparison`1"/>.
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Returns a ComparisonAdapter that wraps an <see cref="T:System.Collections.IComparer"/>
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Returns a ComparisonAdapter that wraps an <see cref="T:System.Collections.Generic.IComparer`1"/>
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Returns a ComparisonAdapter that wraps a <see cref="T:System.Comparison`1"/>
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Compares two objects
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<member name="P:NUnit.Framework.Constraints.ComparisonAdapter.Default">
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Gets the default ComparisonAdapter, which wraps an
NUnitComparer object.
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<member name="M:NUnit.Framework.Constraints.ComparisonAdapter.ComparerAdapter.#ctor(System.Collections.IComparer)">
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Construct a ComparisonAdapter for an <see cref="T:System.Collections.IComparer"/>
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Compares two objects
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<param name="actual"></param>
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Construct a default ComparisonAdapter
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ComparerAdapter extends <see cref="T:NUnit.Framework.Constraints.ComparisonAdapter"/> and
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<member name="M:NUnit.Framework.Constraints.ComparisonAdapter.ComparerAdapter`1.#ctor(System.Collections.Generic.IComparer{`0})">
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Construct a ComparisonAdapter for an <see cref="T:System.Collections.Generic.IComparer`1"/>
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<member name="M:NUnit.Framework.Constraints.ComparisonAdapter.ComparerAdapter`1.Compare(System.Object,System.Object)">
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Compare a Type T to an object
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<member name="M:NUnit.Framework.Constraints.ComparisonAdapter.ComparisonAdapterForComparison`1.#ctor(System.Comparison{`0})">
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Construct a ComparisonAdapter for a <see cref="T:System.Comparison`1"/>
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<member name="M:NUnit.Framework.Constraints.ComparisonAdapter.ComparisonAdapterForComparison`1.Compare(System.Object,System.Object)">
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Compare a Type T to an object
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<member name="T:NUnit.Framework.Constraints.AssignableFromConstraint">
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AssignableFromConstraint is used to test that an object
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<member name="M:NUnit.Framework.Constraints.AssignableFromConstraint.#ctor(System.Type)">
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Construct an AssignableFromConstraint for the type provided
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<param name="type"></param>
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<member name="M:NUnit.Framework.Constraints.AssignableFromConstraint.Matches(System.Object)">
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Apply the constraint to an actual value, returning true if it succeeds
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<member name="T:NUnit.Framework.SequentialAttribute">
<summary>
Marks a test to use a Sequential join of any argument
data provided. Arguments will be combined into test cases,
taking the next value of each argument until all are used.
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<member name="M:NUnit.Framework.SequentialAttribute.#ctor">
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Default constructor
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<member name="T:NUnit.Framework.RangeAttribute">
<summary>
RangeAttribute is used to supply a range of _values to an
individual parameter of a parameterized test.
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<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Int32,System.Int32)">
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Construct a range of ints using default step of 1
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<param name="from"></param>
<param name="to"></param>
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<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Int32,System.Int32,System.Int32)">
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Construct a range of ints specifying the step size
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.UInt32,System.UInt32)">
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Construct a range of unsigned ints using default step of 1
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<param name="from"></param>
<param name="to"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.UInt32,System.UInt32,System.UInt32)">
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Construct a range of unsigned ints specifying the step size
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Int64,System.Int64)">
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Construct a range of longs using a default step of 1
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<param name="from"></param>
<param name="to"></param>
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<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Int64,System.Int64,System.Int64)">
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Construct a range of longs
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
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<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.UInt64,System.UInt64)">
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Construct a range of unsigned longs using default step of 1
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<param name="from"></param>
<param name="to"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.UInt64,System.UInt64,System.UInt64)">
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Construct a range of unsigned longs specifying the step size
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Double,System.Double,System.Double)">
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Construct a range of doubles
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
</member>
<member name="M:NUnit.Framework.RangeAttribute.#ctor(System.Single,System.Single,System.Single)">
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Construct a range of floats
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<param name="from"></param>
<param name="to"></param>
<param name="step"></param>
</member>
<member name="T:NUnit.Framework.DatapointSourceAttribute">
<summary>
Used to mark a field, property or method providing a set of datapoints to
be used in executing any theories within the same fixture that require an
argument of the Type provided. The data source may provide an array of
the required Type or an <see cref="T:System.Collections.Generic.IEnumerable`1"/>.
Synonymous with DatapointsAttribute.
</summary>
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<member name="T:NUnit.Framework.Internal.StackFilter">
<summary>
StackFilter class is used to remove internal NUnit
entries from a stack trace so that the resulting
trace provides better information about the test.
</summary>
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<member name="M:NUnit.Framework.Internal.StackFilter.Filter(System.String)">
<summary>
Filters a raw stack trace and returns the result.
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<param name="rawTrace">The original stack trace</param>
<returns>A filtered stack trace</returns>
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<member name="T:NUnit.Framework.Internal.Execution.CommandBuilder">
<summary>
A utility class to create TestCommands
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<member name="M:NUnit.Framework.Internal.Execution.CommandBuilder.MakeOneTimeSetUpCommand(NUnit.Framework.Internal.TestSuite,System.Collections.Generic.List{NUnit.Framework.Internal.Commands.SetUpTearDownItem},System.Collections.Generic.List{NUnit.Framework.Internal.Commands.TestActionItem})">
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Gets the command to be executed before any of
the child tests are run.
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<returns>A TestCommand</returns>
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Creates a test command for use in running this test.
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Creates a command for skipping a test. The result returned will
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<member name="T:NUnit.Framework.Internal.ParameterWrapper">
<summary>
The ParameterWrapper class wraps a ParameterInfo so that it may
be used in a platform-independent manner.
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<member name="T:NUnit.Framework.Interfaces.IParameterInfo">
<summary>
The IParameterInfo interface is an abstraction of a .NET parameter.
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<member name="P:NUnit.Framework.Interfaces.IParameterInfo.IsOptional">
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Gets a value indicating whether the parameter is optional
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Construct a ParameterWrapper for a given method and parameter
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Gets a value indicating whether one or more attributes of the specified type are defined on the parameter.
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Gets a value indicating whether the parameter is optional
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<member name="T:NUnit.Framework.Internal.InternalTraceWriter">
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A trace listener that writes to a separate file per domain
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Construct an InternalTraceWriter that writes to a file.
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Construct an InternalTraceWriter that writes to a
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Writes a character to the text string or stream.
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Writes a string to the text string or stream.
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Releases the unmanaged resources used by the <see cref="T:System.IO.TextWriter" /> and optionally releases the managed resources.
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Clears all buffers for the current writer and causes any buffered data to be written to the underlying device.
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<member name="T:NUnit.Framework.Internal.Filters.MethodNameFilter">
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FullName filter selects tests based on their FullName
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<member name="M:NUnit.Framework.Internal.Filters.MethodNameFilter.#ctor(System.String)">
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Construct a MethodNameFilter for a single name
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<member name="M:NUnit.Framework.Internal.Filters.MethodNameFilter.Match(NUnit.Framework.Interfaces.ITest)">
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Match a test against a single value.
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Gets the element name
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<member name="T:System.Lazy`1">
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<member name="M:System.Lazy`1.#ctor">
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<member name="M:System.Lazy`1.#ctor(System.Boolean)">
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<member name="M:System.Lazy`1.#ctor(System.Threading.LazyThreadSafetyMode)">
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<param name="mode"></param>
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<member name="M:System.Lazy`1.ToString">
<summary>
</summary>
<returns></returns>
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<member name="P:System.Lazy`1.Value">
<summary>
</summary>
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<member name="P:System.Lazy`1.IsValueCreated">
<summary>
</summary>
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<member name="T:NUnit.Compatibility.AttributeHelper">
<summary>
Provides a platform-independent methods for getting attributes
for use by AttributeConstraint and AttributeExistsConstraint.
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<member name="M:NUnit.Compatibility.AttributeHelper.GetCustomAttributes(System.Object,System.Type,System.Boolean)">
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Gets the custom attributes from the given object.
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<member name="T:NUnit.Framework.SpecialValue">
<summary>
The SpecialValue enum is used to represent TestCase arguments
that cannot be used as arguments to an Attribute.
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<member name="F:NUnit.Framework.SpecialValue.Null">
<summary>
Null represents a null value, which cannot be used as an
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<member name="T:NUnit.Framework.Internal.TypeHelper">
<summary>
TypeHelper provides static methods that operate on Types.
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A special value, which is used to indicate that BestCommonType() method
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Gets the display name for a Type as used by NUnit.
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Returns the best fit for a common type to be used in
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Convert an argument list to the required parameter types.
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Gets the _values for an enumeration, using Enum.GetTypes
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Gets the ids of the _values for an enumeration,
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ThreadUtility provides a set of static methods convenient
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Do our best to Kill a thread
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Do our best to kill a thread, passing state info
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Any ITest that implements this interface is at a level that the implementing
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Construct a PredicateConstraint from a predicate
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Determines whether the predicate succeeds when applied
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Custom value formatter factory function
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Static methods used in creating messages
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Static string used when strings are clipped
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Formatting strings used for expected and actual _values
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Add a formatter to the chain of responsibility.
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Formats text to represent a generalized value.
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Enumeration indicating whether the tests are
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A graceful stop has been requested
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A forced stop has been requested
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Construct a parameter set with a list of arguments
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Type arguments used to create a generic fixture instance
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Provides methods to support legacy string comparison methods.
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OneTimeSetUpCommand runs any one-time setup methods for a suite,
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The TestOutput class holds a unit of output from
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Get the output type
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Get the name of the test that created the output
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<member name="T:NUnit.Framework.Interfaces.IMethodInfo">
<summary>
The IMethodInfo class is used to encapsulate information
about a method in a platform-independent manner.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.IMethodInfo.GetParameters">
<summary>
Gets the parameters of the method.
</summary>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Interfaces.IMethodInfo.GetGenericArguments">
<summary>
Returns the Type arguments of a generic method or the Type parameters of a generic method definition.
</summary>
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<member name="M:NUnit.Framework.Interfaces.IMethodInfo.MakeGenericMethod(System.Type[])">
<summary>
Replaces the type parameters of the method with the array of types provided and returns a new IMethodInfo.
</summary>
<param name="typeArguments">The type arguments to be used</param>
<returns>A new IMethodInfo with the type arguments replaced</returns>
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<member name="M:NUnit.Framework.Interfaces.IMethodInfo.Invoke(System.Object,System.Object[])">
<summary>
Invokes the method, converting any TargetInvocationException to an NUnitException.
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<param name="fixture">The object on which to invoke the method</param>
<param name="args">The argument list for the method</param>
<returns>The return value from the invoked method</returns>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.TypeInfo">
<summary>
Gets the Type from which this method was reflected.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.IMethodInfo.MethodInfo">
<summary>
Gets the MethodInfo for this method.
</summary>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.Name">
<summary>
Gets the name of the method.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.IMethodInfo.IsAbstract">
<summary>
Gets a value indicating whether the method is abstract.
</summary>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.IsPublic">
<summary>
Gets a value indicating whether the method is public.
</summary>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.ContainsGenericParameters">
<summary>
Gets a value indicating whether the method contains unassigned generic type parameters.
</summary>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.IsGenericMethod">
<summary>
Gets a value indicating whether the method is a generic method.
</summary>
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<member name="P:NUnit.Framework.Interfaces.IMethodInfo.IsGenericMethodDefinition">
<summary>
Gets a value indicating whether the MethodInfo represents the definition of a generic method.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.IMethodInfo.ReturnType">
<summary>
Gets the return Type of the method.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ThrowsExceptionConstraint">
<summary>
ThrowsExceptionConstraint tests that an exception has
been thrown, without any further tests.
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<member name="M:NUnit.Framework.Constraints.ThrowsExceptionConstraint.ApplyTo(System.Object)">
<summary>
Executes the code and returns success if an exception is thrown.
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<param name="actual">A delegate representing the code to be tested</param>
<returns>True if an exception is thrown, otherwise false</returns>
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<member name="M:NUnit.Framework.Constraints.ThrowsExceptionConstraint.GetTestObject``1(NUnit.Framework.Constraints.ActualValueDelegate{``0})">
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Returns the ActualValueDelegate itself as the value to be tested.
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<param name="del">A delegate representing the code to be tested</param>
<returns>The delegate itself</returns>
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<member name="P:NUnit.Framework.Constraints.ThrowsExceptionConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
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<member name="T:NUnit.Framework.LevelOfParallelismAttribute">
<summary>
LevelOfParallelismAttribute is used to set the number of worker threads
that may be allocated by the framework for running tests.
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<member name="M:NUnit.Framework.LevelOfParallelismAttribute.#ctor(System.Int32)">
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Construct a LevelOfParallelismAttribute.
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<param name="level">The number of worker threads to be created by the framework.</param>
</member>
<member name="T:NUnit.Framework.RetryAttribute">
<summary>
RepeatAttribute may be applied to test case in order
to run it multiple times.
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<member name="M:NUnit.Framework.RetryAttribute.#ctor(System.Int32)">
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Construct a RepeatAttribute
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Wrap a command and return the result.
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<param name="command">The command to be wrapped</param>
<returns>The wrapped command</returns>
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<member name="T:NUnit.Framework.RetryAttribute.RetryCommand">
<summary>
The test command for the RetryAttribute
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<member name="M:NUnit.Framework.RetryAttribute.RetryCommand.#ctor(NUnit.Framework.Internal.Commands.TestCommand,System.Int32)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.RetryAttribute.RetryCommand"/> class.
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<param name="innerCommand">The inner command.</param>
<param name="retryCount">The number of repetitions</param>
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<member name="M:NUnit.Framework.RetryAttribute.RetryCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
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Runs the test, saving a TestResult in the supplied TestExecutionContext.
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<param name="context">The context in which the test should run.</param>
<returns>A TestResult</returns>
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<member name="T:NUnit.Framework.Internal.TestCaseResult">
<summary>
Represents the result of running a single test case.
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<member name="M:NUnit.Framework.Internal.TestCaseResult.#ctor(NUnit.Framework.Internal.TestMethod)">
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Construct a TestCaseResult based on a TestMethod
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<param name="test">A TestMethod to which the result applies.</param>
</member>
<member name="P:NUnit.Framework.Internal.TestCaseResult.FailCount">
<summary>
Gets the number of test cases that failed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestCaseResult.PassCount">
<summary>
Gets the number of test cases that passed
when running the test and all its children.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestCaseResult.SkipCount">
<summary>
Gets the number of test cases that were skipped
when running the test and all its children.
</summary>
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<member name="P:NUnit.Framework.Internal.TestCaseResult.InconclusiveCount">
<summary>
Gets the number of test cases that were inconclusive
when running the test and all its children.
</summary>
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<member name="P:NUnit.Framework.Internal.TestCaseResult.HasChildren">
<summary>
Indicates whether this result has any child results.
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</member>
<member name="P:NUnit.Framework.Internal.TestCaseResult.Children">
<summary>
Gets the collection of child results.
</summary>
</member>
<member name="T:NUnit.Framework.TestParameters">
<summary>
TestParameters class holds any named parameters supplied to the test run
</summary>
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<member name="M:NUnit.Framework.TestParameters.Exists(System.String)">
<summary>
Gets a flag indicating whether a parameter with the specified name exists.N
</summary>
<param name="name">Name of the parameter</param>
<returns>True if it exists, otherwise false</returns>
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<member name="M:NUnit.Framework.TestParameters.Get(System.String)">
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Get method is a simple alternative to the indexer
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<param name="name">Name of the paramter</param>
<returns>Value of the parameter or null if not present</returns>
</member>
<member name="M:NUnit.Framework.TestParameters.Get(System.String,System.String)">
<summary>
Get the value of a parameter or a default string
</summary>
<param name="name">Name of the parameter</param>
<param name="defaultValue">Default value of the parameter</param>
<returns>Value of the parameter or default value if not present</returns>
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<member name="M:NUnit.Framework.TestParameters.Get``1(System.String,``0)">
<summary>
Get the value of a parameter or return a default
</summary>
<typeparam name="T">The return Type</typeparam>
<param name="name">Name of the parameter</param>
<param name="defaultValue">Default value of the parameter</param>
<returns>Value of the parameter or default value if not present</returns>
</member>
<member name="M:NUnit.Framework.TestParameters.Add(System.String,System.String)">
<summary>
Adds a parameter to the list
</summary>
<param name="name">Name of the parameter</param>
<param name="value">Value of the parameter</param>
</member>
<member name="P:NUnit.Framework.TestParameters.Count">
<summary>
Gets the number of test parameters
</summary>
</member>
<member name="P:NUnit.Framework.TestParameters.Names">
<summary>
Gets a collection of the test parameter names
</summary>
</member>
<member name="P:NUnit.Framework.TestParameters.Item(System.String)">
<summary>
Indexer provides access to the internal dictionary
</summary>
<param name="name">Name of the parameter</param>
<returns>Value of the parameter or null if not present</returns>
</member>
<member name="T:NUnit.Framework.Internal.Builders.ParameterDataSourceProvider">
<summary>
ParameterDataSourceProvider supplies individual argument _values for
single parameters using attributes implementing IParameterDataSource.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.ParameterDataSourceProvider.HasDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
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Determine whether any data is available for a parameter.
</summary>
<param name="parameter">A ParameterInfo representing one
argument to a parameterized test</param>
<returns>
True if any data is available, otherwise false.
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<member name="M:NUnit.Framework.Internal.Builders.ParameterDataSourceProvider.GetDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
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Return an IEnumerable providing data for use with the
supplied parameter.
</summary>
<param name="parameter">An IParameterInfo representing one
argument to a parameterized test</param>
<returns>
An IEnumerable providing the required data
</returns>
</member>
<member name="T:NUnit.Framework.SuccessException">
<summary>
Thrown when an assertion failed.
</summary>
</member>
<member name="M:NUnit.Framework.SuccessException.#ctor(System.String)">
<param name="message"></param>
</member>
<member name="M:NUnit.Framework.SuccessException.#ctor(System.String,System.Exception)">
<param name="message">The error message that explains
the reason for the exception</param>
<param name="inner">The exception that caused the
current exception</param>
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<member name="M:NUnit.Framework.SuccessException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
<summary>
Serialization Constructor
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</member>
<member name="P:NUnit.Framework.SuccessException.ResultState">
<summary>
Gets the ResultState provided by this exception
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.OrConstraint">
<summary>
OrConstraint succeeds if either member succeeds
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.OrConstraint.#ctor(NUnit.Framework.Constraints.IConstraint,NUnit.Framework.Constraints.IConstraint)">
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Create an OrConstraint from two other constraints
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<param name="left">The first constraint</param>
<param name="right">The second constraint</param>
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<member name="M:NUnit.Framework.Constraints.OrConstraint.ApplyTo(System.Object)">
<summary>
Apply the member constraints to an actual value, succeeding
succeeding as soon as one of them succeeds.
</summary>
<param name="actual">The actual value</param>
<returns>True if either constraint succeeded</returns>
</member>
<member name="P:NUnit.Framework.Constraints.OrConstraint.Description">
<summary>
Gets text describing a constraint
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.AttributeOperator">
<summary>
Operator that tests for the presence of a particular attribute
on a type and optionally applies further tests to the attribute.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.AttributeOperator.#ctor(System.Type)">
<summary>
Construct an AttributeOperator for a particular Type
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<param name="type">The Type of attribute tested</param>
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<member name="M:NUnit.Framework.Constraints.AttributeOperator.Reduce(NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack)">
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Reduce produces a constraint from the operator and
any arguments. It takes the arguments from the constraint
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</summary>
</member>
<member name="T:NUnit.Framework.Constraints.MessageWriter">
<summary>
MessageWriter is the abstract base for classes that write
constraint descriptions and messages in some form. The
class has separate methods for writing various components
of a message, allowing implementations to tailor the
presentation as needed.
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<member name="M:NUnit.Framework.Constraints.MessageWriter.#ctor">
<summary>
Construct a MessageWriter given a culture
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<member name="M:NUnit.Framework.Constraints.MessageWriter.WriteMessageLine(System.String,System.Object[])">
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Method to write single line message with optional args, usually
written to precede the general failure message.
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<member name="M:NUnit.Framework.Constraints.MessageWriter.WriteMessageLine(System.Int32,System.String,System.Object[])">
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Method to write single line message with optional args, usually
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<param name="message">The message to be written</param>
<param name="args">Any arguments used in formatting the message</param>
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<member name="M:NUnit.Framework.Constraints.MessageWriter.DisplayDifferences(NUnit.Framework.Constraints.ConstraintResult)">
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Display Expected and Actual lines for a constraint. This
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<param name="result">The failing constraint result</param>
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<member name="M:NUnit.Framework.Constraints.MessageWriter.DisplayDifferences(System.Object,System.Object)">
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Display Expected and Actual lines for given _values. This
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by the default implementation.
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Display Expected and Actual lines for given _values, including
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Display the expected and actual string _values on separate lines.
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Writes the text for an actual value.
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Writes the text for a generalized value.
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Writes the text for a collection value,
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<member name="P:NUnit.Framework.Constraints.MessageWriter.MaxLineLength">
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Abstract method to get the max line length
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<member name="T:NUnit.Framework.Constraints.LessThanConstraint">
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Tests whether a value is less than the value supplied to its constructor
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<member name="T:NUnit.Framework.Constraints.ComparisonConstraint">
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Abstract base class for constraints that compare _values to
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the other.
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<member name="F:NUnit.Framework.Constraints.ComparisonConstraint.expected">
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The value against which a comparison is to be made
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<member name="F:NUnit.Framework.Constraints.ComparisonConstraint.lessComparisonResult">
<summary>
If true, less than returns success
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<member name="F:NUnit.Framework.Constraints.ComparisonConstraint.equalComparisonResult">
<summary>
if true, equal returns success
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<member name="F:NUnit.Framework.Constraints.ComparisonConstraint.greaterComparisonResult">
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if true, greater than returns success
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<member name="F:NUnit.Framework.Constraints.ComparisonConstraint.comparer">
<summary>
ComparisonAdapter to be used in making the comparison
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<member name="M:NUnit.Framework.Constraints.ComparisonConstraint.#ctor(System.Object,System.Boolean,System.Boolean,System.Boolean,System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ComparisonConstraint"/> class.
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<param name="value">The value against which to make a comparison.</param>
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<member name="M:NUnit.Framework.Constraints.ComparisonConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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Modifies the constraint to use an <see cref="T:System.Collections.IComparer"/> and returns self
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<member name="M:NUnit.Framework.Constraints.ComparisonConstraint.Using``1(System.Comparison{``0})">
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Modifies the constraint to use a <see cref="T:System.Comparison`1"/> and returns self
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<param name="comparer">The comparer used for comparison tests</param>
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<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.LessThanConstraint"/> class.
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<param name="expected">The expected value.</param>
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<member name="T:NUnit.Framework.Constraints.EmptyStringConstraint">
<summary>
EmptyStringConstraint tests whether a string is empty.
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<member name="M:NUnit.Framework.Constraints.EmptyStringConstraint.Matches(System.String)">
<summary>
Test whether the constraint is satisfied by a given value
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<param name="actual">The value to be tested</param>
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<member name="P:NUnit.Framework.Constraints.EmptyStringConstraint.Description">
<summary>
The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.EmptyDirectoryConstraint">
<summary>
EmptyDirectoryConstraint is used to test that a directory is empty
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<member name="M:NUnit.Framework.Constraints.EmptyDirectoryConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
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<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
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<member name="P:NUnit.Framework.Constraints.EmptyDirectoryConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
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<member name="T:NUnit.Framework.Constraints.ConstraintBuilder">
<summary>
ConstraintBuilder maintains the stacks that are used in
processing a ConstraintExpression. An OperatorStack
is used to hold operators that are waiting for their
operands to be reorganized. a ConstraintStack holds
input constraints as well as the results of each
operator applied.
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</member>
<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ConstraintBuilder"/> class.
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Appends the specified operator to the expression by first
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<param name="op">The operator to push.</param>
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Appends the specified constraint to the expression by pushing
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<param name="constraint">The constraint to push.</param>
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Sets the top operator right context.
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Reduces the operator stack until the topmost item
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<param name="targetPrecedence">The target precedence.</param>
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<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.Resolve">
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Resolves this instance, returning a Constraint. If the Builder
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<member name="P:NUnit.Framework.Constraints.ConstraintBuilder.IsResolvable">
<summary>
Gets a value indicating whether this instance is resolvable.
</summary>
<value>
<c>true</c> if this instance is resolvable; otherwise, <c>false</c>.
</value>
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<member name="T:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack">
<summary>
OperatorStack is a type-safe stack for holding ConstraintOperators
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<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack.#ctor(NUnit.Framework.Constraints.ConstraintBuilder)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack"/> class.
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<param name="builder">The ConstraintBuilder using this stack.</param>
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<summary>
Pushes the specified operator onto the stack.
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<param name="op">The operator to put onto the stack.</param>
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<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack.Pop">
<summary>
Pops the topmost operator from the stack.
</summary>
<returns>The topmost operator on the stack</returns>
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<member name="P:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack.Empty">
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Gets a value indicating whether this <see cref="T:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack"/> is empty.
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<member name="P:NUnit.Framework.Constraints.ConstraintBuilder.OperatorStack.Top">
<summary>
Gets the topmost operator without modifying the stack.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack">
<summary>
ConstraintStack is a type-safe stack for holding Constraints
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</member>
<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack.#ctor(NUnit.Framework.Constraints.ConstraintBuilder)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack"/> class.
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<param name="builder">The ConstraintBuilder using this stack.</param>
</member>
<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack.Push(NUnit.Framework.Constraints.IConstraint)">
<summary>
Pushes the specified constraint. As a side effect,
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ConstraintBuilder owning this stack.
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<param name="constraint">The constraint to put onto the stack</param>
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<member name="M:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack.Pop">
<summary>
Pops this topmost constraint from the stack.
As a side effect, the constraint's Builder
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<member name="P:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack.Empty">
<summary>
Gets a value indicating whether this <see cref="T:NUnit.Framework.Constraints.ConstraintBuilder.ConstraintStack"/> is empty.
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<value><c>true</c> if empty; otherwise, <c>false</c>.</value>
</member>
<member name="T:NUnit.Framework.Constraints.CollectionEquivalentConstraint">
<summary>
CollectionEquivalentConstraint is used to determine whether two
collections are equivalent.
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Test whether two collections are equivalent
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Flag the constraint to use the supplied predicate function
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The display name of this Constraint for use by ToString().
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The Description of what this constraint tests, for
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AttributeExistsConstraint tests for the presence of a
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Constructs an AttributeExistsConstraint for a specific attribute Type
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Tests whether the object provides the expected attribute.
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.RequiresThreadAttribute">
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Marks a test that must run on a separate thread.
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<member name="M:NUnit.Framework.RequiresThreadAttribute.#ctor">
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Construct a RequiresThreadAttribute
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Construct a RequiresThreadAttribute, specifying the apartment
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ExplicitAttribute marks a test or test fixture so that it will
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Default constructor
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Constructor with a reason
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Modifies a test by marking it as explicit.
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<member name="T:NUnit.Framework.Internal.Commands.OneTimeTearDownCommand">
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OneTimeTearDownCommand performs any teardown actions
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Overridden to run the teardown methods specified on the test.
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Class that can build a tree of automatic namespace
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NamespaceDictionary of all test suites we have created to represent
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The root of the test suite being created by this builder.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Builders.NamespaceTreeBuilder"/> class.
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Adds the specified fixtures to the tree.
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Adds the specified fixture to the tree.
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Gets the root entry in the tree created by the NamespaceTreeBuilder.
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Built-in SuiteBuilder for all types of test classes.
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The ISuiteBuilder interface is exposed by a class that knows how to
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Examine the type and determine if it is suitable for
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Build a TestSuite from type provided.
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Build a TestSuite from TypeInfo provided.
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We look for attributes implementing IFixtureBuilder at one level
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<member name="T:System.Threading.LazyThreadSafetyMode">
<summary>
</summary>
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<member name="F:System.Threading.LazyThreadSafetyMode.None">
<summary>
</summary>
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<member name="F:System.Threading.LazyThreadSafetyMode.PublicationOnly">
<summary>
</summary>
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<member name="F:System.Threading.LazyThreadSafetyMode.ExecutionAndPublication">
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</summary>
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<member name="T:NUnit.Framework.TestActionAttribute">
<summary>
Provide actions to execute before and after tests.
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<member name="T:NUnit.Framework.ITestAction">
<summary>
When implemented by an attribute, this interface implemented to provide actions to execute before and after tests.
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<member name="M:NUnit.Framework.ITestAction.BeforeTest(NUnit.Framework.Interfaces.ITest)">
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Executed before each test is run
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Executed after each test is run
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Provides the target for the action attribute
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Executed before each test is run
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Executed after each test is run
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<member name="P:NUnit.Framework.TestActionAttribute.Targets">
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Provides the target for the action attribute
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<member name="T:NUnit.Framework.ApartmentAttribute">
<summary>
Marks a test that must run in a particular threading apartment state, causing it
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Construct an ApartmentAttribute
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<member name="T:NUnit.Framework.Iz">
<summary>
The Iz class is a synonym for Is intended for use in VB,
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<member name="T:NUnit.Framework.Is">
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Helper class with properties and methods that supply
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Returns a constraint that tests two items for equality
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<member name="M:NUnit.Framework.Is.SameAs(System.Object)">
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Returns a constraint that tests that two references are the same object
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the actual
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<member name="M:NUnit.Framework.Is.TypeOf``1">
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Returns a constraint that tests whether the actual
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<member name="M:NUnit.Framework.Is.InstanceOf``1">
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the path provided
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Returns a ConstraintExpression, which will apply
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Returns a constraint that tests for null
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Returns a constraint that tests for True
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Returns a constraint that tests for False
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Returns a constraint that tests whether a collection
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Returns a constraint that tests whether an object graph is serializable in binary format.
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Returns a constraint that tests whether an object graph is serializable in xml format.
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Returns a constraint that tests whether a collection is ordered
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Objects implementing this interface are used to wrap
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The CommandStage enumeration represents the defined stages
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Use an application-defined default value.
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Make adjustments needed before and after running
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Run SetUp and TearDown for the test. This stage is used
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Make adjustments needed before and after running
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ThrowsConstraint is used to test the exception thrown by
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Get the actual exception thrown - used by Assert.Throws.
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<member name="T:NUnit.Framework.Constraints.SamePathConstraint">
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Summary description for SamePathConstraint.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.SamePathConstraint"/> class.
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Test whether the constraint is satisfied by a given value
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The Description of what this constraint tests, for
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Operator that requires both it's arguments to succeed
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Construct an AndOperator
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Apply the operator to produce an AndConstraint
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Provides static methods to express the assumptions
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override the default ReferenceEquals to throw an InvalidOperationException. This
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Apply a constraint to an actual value, succeeding if the constraint
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Apply a constraint to an actual value, succeeding if the constraint
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<typeparam name="TActual">The Type being compared.</typeparam>
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<member name="M:NUnit.Framework.Assume.That``1(NUnit.Framework.Constraints.ActualValueDelegate{``0},NUnit.Framework.Constraints.IResolveConstraint,System.Func{System.String})">
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Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an InconclusiveException on failure.
</summary>
<typeparam name="TActual">The Type being compared.</typeparam>
<param name="del">An ActualValueDelegate returning the value to be tested</param>
<param name="expr">A Constraint expression to be applied</param>
<param name="getExceptionMessage">A function to build the message included with the Exception</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Boolean,System.String,System.Object[])">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">The evaluated condition</param>
<param name="message">The message to display if the condition is false</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Boolean)">
<summary>
Asserts that a condition is true. If the condition is false the
method throws an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">The evaluated condition</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Boolean,System.Func{System.String})">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">The evaluated condition</param>
<param name="getExceptionMessage">A function to build the message included with the Exception</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Func{System.Boolean},System.String,System.Object[])">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">A lambda that returns a Boolean</param>
<param name="message">The message to display if the condition is false</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Func{System.Boolean})">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">A lambda that returns a Boolean</param>
</member>
<member name="M:NUnit.Framework.Assume.That(System.Func{System.Boolean},System.Func{System.String})">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.InconclusiveException"/>.
</summary>
<param name="condition">A lambda that returns a Boolean</param>
<param name="getExceptionMessage">A function to build the message included with the Exception</param>
</member>
<member name="M:NUnit.Framework.Assume.That(NUnit.Framework.TestDelegate,NUnit.Framework.Constraints.IResolveConstraint)">
<summary>
Asserts that the code represented by a delegate throws an exception
that satisfies the constraint provided.
</summary>
<param name="code">A TestDelegate to be executed</param>
<param name="constraint">A ThrowsConstraint used in the test</param>
</member>
<member name="M:NUnit.Framework.Assume.That``1(``0,NUnit.Framework.Constraints.IResolveConstraint)">
<summary>
Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an InconclusiveException on failure.
</summary>
<typeparam name="TActual">The Type being compared.</typeparam>
<param name="actual">The actual value to test</param>
<param name="expression">A Constraint to be applied</param>
</member>
<member name="M:NUnit.Framework.Assume.That``1(``0,NUnit.Framework.Constraints.IResolveConstraint,System.String,System.Object[])">
<summary>
Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an InconclusiveException on failure.
</summary>
<typeparam name="TActual">The Type being compared.</typeparam>
<param name="actual">The actual value to test</param>
<param name="expression">A Constraint expression to be applied</param>
<param name="message">The message that will be displayed on failure</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.Assume.That``1(``0,NUnit.Framework.Constraints.IResolveConstraint,System.Func{System.String})">
<summary>
Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an InconclusiveException on failure.
</summary>
<typeparam name="TActual">The Type being compared.</typeparam>
<param name="actual">The actual value to test</param>
<param name="expression">A Constraint to be applied</param>
<param name="getExceptionMessage">A function to build the message included with the Exception</param>
</member>
<member name="T:NUnit.Framework.Internal.Commands.SkipCommand">
<summary>
TODO: Documentation needed for class
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Commands.SkipCommand.#ctor(NUnit.Framework.Internal.Test)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.SkipCommand"/> class.
</summary>
<param name="test">The test being skipped.</param>
</member>
<member name="M:NUnit.Framework.Internal.Commands.SkipCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Overridden to simply set the CurrentResult to the
appropriate Skipped state.
</summary>
<param name="context">The execution context for the test</param>
<returns>A TestResult</returns>
</member>
<member name="T:NUnit.Framework.Internal.Execution.TextCapture">
<summary>
The TextCapture class intercepts console output and writes it
to the current execution context, if one is present on the thread.
If no execution context is found, the output is written to a
default destination, normally the original destination of the
intercepted output.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Execution.TextCapture.#ctor(System.IO.TextWriter)">
<summary>
Construct a TextCapture object
</summary>
<param name="defaultWriter">The default destination for non-intercepted output</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.TextCapture.Write(System.Char)">
<summary>
Writes a single character
</summary>
<param name="value">The char to write</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.TextCapture.Write(System.String)">
<summary>
Writes a string
</summary>
<param name="value">The string to write</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.TextCapture.WriteLine(System.String)">
<summary>
Writes a string followed by a line terminator
</summary>
<param name="value">The string to write</param>
</member>
<member name="P:NUnit.Framework.Internal.Execution.TextCapture.Encoding">
<summary>
Gets the Encoding in use by this TextWriter
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Execution.SimpleWorkItemDispatcher">
<summary>
SimpleWorkItemDispatcher handles execution of WorkItems by
directly executing them. It is provided so that a dispatcher
is always available in the context, thereby simplifying the
code needed to run child tests.
</summary>
</member>
<member name="T:NUnit.Framework.Internal.Execution.IWorkItemDispatcher">
<summary>
An IWorkItemDispatcher handles execution of work items.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Execution.IWorkItemDispatcher.Dispatch(NUnit.Framework.Internal.Execution.WorkItem)">
<summary>
Dispatch a single work item for execution. The first
work item dispatched is saved as the top-level
work item and used when stopping the run.
</summary>
<param name="work">The item to dispatch</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.IWorkItemDispatcher.CancelRun(System.Boolean)">
<summary>
Cancel the ongoing run completely.
If no run is in process, the call has no effect.
</summary>
<param name="force">true if the IWorkItemDispatcher should abort all currently running WorkItems, false if it should allow all currently running WorkItems to complete</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.SimpleWorkItemDispatcher.Dispatch(NUnit.Framework.Internal.Execution.WorkItem)">
<summary>
Dispatch a single work item for execution. The first
work item dispatched is saved as the top-level
work item and a thread is created on which to
run it. Subsequent calls come from the top level
item or its descendants on the proper thread.
</summary>
<param name="work">The item to dispatch</param>
</member>
<member name="M:NUnit.Framework.Internal.Execution.SimpleWorkItemDispatcher.CancelRun(System.Boolean)">
<summary>
Cancel (abort or stop) the ongoing run.
If no run is in process, the call has no effect.
</summary>
<param name="force">true if the run should be aborted, false if it should allow its currently running test to complete</param>
</member>
<member name="T:NUnit.Framework.DirectoryAssert">
<summary>
Asserts on Directories
</summary>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.Equals(System.Object,System.Object)">
<summary>
The Equals method throws an InvalidOperationException. This is done
to make sure there is no mistake by calling this function.
</summary>
<param name="a"></param>
<param name="b"></param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.ReferenceEquals(System.Object,System.Object)">
<summary>
override the default ReferenceEquals to throw an InvalidOperationException. This
implementation makes sure there is no mistake in calling this function
as part of Assert.
</summary>
<param name="a"></param>
<param name="b"></param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.AreEqual(System.IO.DirectoryInfo,System.IO.DirectoryInfo,System.String,System.Object[])">
<summary>
Verifies that two directories are equal. Two directories are considered
equal if both are null, or if both point to the same directory.
If they are not equal an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="expected">A directory containing the value that is expected</param>
<param name="actual">A directory containing the actual value</param>
<param name="message">The message to display if the directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.AreEqual(System.IO.DirectoryInfo,System.IO.DirectoryInfo)">
<summary>
Verifies that two directories are equal. Two directories are considered
equal if both are null, or if both point to the same directory.
If they are not equal an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="expected">A directory containing the value that is expected</param>
<param name="actual">A directory containing the actual value</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.AreNotEqual(System.IO.DirectoryInfo,System.IO.DirectoryInfo,System.String,System.Object[])">
<summary>
Asserts that two directories are not equal. If they are equal
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="expected">A directory containing the value that is expected</param>
<param name="actual">A directory containing the actual value</param>
<param name="message">The message to display if directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.AreNotEqual(System.IO.DirectoryInfo,System.IO.DirectoryInfo)">
<summary>
Asserts that two directories are not equal. If they are equal
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="expected">A directory containing the value that is expected</param>
<param name="actual">A directory containing the actual value</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.Exists(System.IO.DirectoryInfo,System.String,System.Object[])">
<summary>
Asserts that the directory exists. If it does not exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">A directory containing the actual value</param>
<param name="message">The message to display if directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.Exists(System.IO.DirectoryInfo)">
<summary>
Asserts that the directory exists. If it does not exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">A directory containing the actual value</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.Exists(System.String,System.String,System.Object[])">
<summary>
Asserts that the directory exists. If it does not exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">The path to a directory containing the actual value</param>
<param name="message">The message to display if directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.Exists(System.String)">
<summary>
Asserts that the directory exists. If it does not exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">The path to a directory containing the actual value</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.DoesNotExist(System.IO.DirectoryInfo,System.String,System.Object[])">
<summary>
Asserts that the directory does not exist. If it does exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">A directory containing the actual value</param>
<param name="message">The message to display if directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.DoesNotExist(System.IO.DirectoryInfo)">
<summary>
Asserts that the directory does not exist. If it does exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">A directory containing the actual value</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.DoesNotExist(System.String,System.String,System.Object[])">
<summary>
Asserts that the directory does not exist. If it does exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">The path to a directory containing the actual value</param>
<param name="message">The message to display if directories are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.DirectoryAssert.DoesNotExist(System.String)">
<summary>
Asserts that the directory does not exist. If it does exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
</summary>
<param name="actual">The path to a directory containing the actual value</param>
</member>
<member name="T:NUnit.Framework.Internal.Filters.TestNameFilter">
<summary>
TestName filter selects tests based on their Name
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Filters.TestNameFilter.#ctor(System.String)">
<summary>
Construct a TestNameFilter for a single name
</summary>
<param name="expectedValue">The name the filter will recognize.</param>
</member>
<member name="M:NUnit.Framework.Internal.Filters.TestNameFilter.Match(NUnit.Framework.Interfaces.ITest)">
<summary>
Match a test against a single value.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.Filters.TestNameFilter.ElementName">
<summary>
Gets the element name
</summary>
<value>Element name</value>
</member>
<member name="T:NUnit.Framework.Internal.Builders.ParameterDataProvider">
<summary>
The ParameterDataProvider class implements IParameterDataProvider
and hosts one or more individual providers.
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.ParameterDataProvider.#ctor(NUnit.Framework.Interfaces.IParameterDataProvider[])">
<summary>
Construct with a collection of individual providers
</summary>
</member>
<member name="M:NUnit.Framework.Internal.Builders.ParameterDataProvider.HasDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Determine whether any data is available for a parameter.
</summary>
<param name="parameter">An IParameterInfo representing one
argument to a parameterized test</param>
<returns>True if any data is available, otherwise false.</returns>
</member>
<member name="M:NUnit.Framework.Internal.Builders.ParameterDataProvider.GetDataFor(NUnit.Framework.Interfaces.IParameterInfo)">
<summary>
Return an IEnumerable providing data for use with the
supplied parameter.
</summary>
<param name="parameter">An IParameterInfo representing one
argument to a parameterized test</param>
<returns>An IEnumerable providing the required data</returns>
</member>
<member name="T:NUnit.Framework.Constraints.ExactCountConstraint">
<summary>
ExactCountConstraint applies another constraint to each
item in a collection, succeeding only if a specified
number of items succeed.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ExactCountConstraint.#ctor(System.Int32,NUnit.Framework.Constraints.IConstraint)">
<summary>
Construct an ExactCountConstraint on top of an existing constraint
</summary>
<param name="expectedCount"></param>
<param name="itemConstraint"></param>
</member>
<member name="M:NUnit.Framework.Constraints.ExactCountConstraint.ApplyTo(System.Object)">
<summary>
Apply the item constraint to each item in the collection,
succeeding only if the expected number of items pass.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.AssertionException">
<summary>
Thrown when an assertion failed.
</summary>
</member>
<member name="M:NUnit.Framework.AssertionException.#ctor(System.String)">
<param name="message">The error message that explains
the reason for the exception</param>
</member>
<member name="M:NUnit.Framework.AssertionException.#ctor(System.String,System.Exception)">
<param name="message">The error message that explains
the reason for the exception</param>
<param name="inner">The exception that caused the
current exception</param>
</member>
<member name="M:NUnit.Framework.AssertionException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
<summary>
Serialization Constructor
</summary>
</member>
<member name="P:NUnit.Framework.AssertionException.ResultState">
<summary>
Gets the ResultState provided by this exception
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.XmlSerializableConstraint">
<summary>
XmlSerializableConstraint tests whether
an object is serializable in xml format.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.XmlSerializableConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
</summary>
<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
</member>
<member name="M:NUnit.Framework.Constraints.XmlSerializableConstraint.GetStringRepresentation">
<summary>
Returns the string representation of this constraint
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.XmlSerializableConstraint.Description">
<summary>
Gets text describing a constraint
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.FloatingPointNumerics">
<summary>Helper routines for working with floating point numbers</summary>
<remarks>
<para>
The floating point comparison code is based on this excellent article:
http://www.cygnus-software.com/papers/comparingfloats/comparingfloats.htm
</para>
<para>
"ULP" means Unit in the Last Place and in the context of this library refers to
the distance between two adjacent floating point numbers. IEEE floating point
numbers can only represent a finite subset of natural numbers, with greater
accuracy for smaller numbers and lower accuracy for very large numbers.
</para>
<para>
If a comparison is allowed "2 ulps" of deviation, that means the _values are
allowed to deviate by up to 2 adjacent floating point _values, which might be
as low as 0.0000001 for small numbers or as high as 10.0 for large numbers.
</para>
</remarks>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.AreAlmostEqualUlps(System.Single,System.Single,System.Int32)">
<summary>Compares two floating point _values for equality</summary>
<param name="left">First floating point value to be compared</param>
<param name="right">Second floating point value t be compared</param>
<param name="maxUlps">
Maximum number of representable floating point _values that are allowed to
be between the left and the right floating point _values
</param>
<returns>True if both numbers are equal or close to being equal</returns>
<remarks>
<para>
Floating point _values can only represent a finite subset of natural numbers.
For example, the _values 2.00000000 and 2.00000024 can be stored in a float,
but nothing inbetween them.
</para>
<para>
This comparison will count how many possible floating point _values are between
the left and the right number. If the number of possible _values between both
numbers is less than or equal to maxUlps, then the numbers are considered as
being equal.
</para>
<para>
Implementation partially follows the code outlined here:
http://www.anttirt.net/2007/08/19/proper-floating-point-comparisons/
</para>
</remarks>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.AreAlmostEqualUlps(System.Double,System.Double,System.Int64)">
<summary>Compares two double precision floating point _values for equality</summary>
<param name="left">First double precision floating point value to be compared</param>
<param name="right">Second double precision floating point value t be compared</param>
<param name="maxUlps">
Maximum number of representable double precision floating point _values that are
allowed to be between the left and the right double precision floating point _values
</param>
<returns>True if both numbers are equal or close to being equal</returns>
<remarks>
<para>
Double precision floating point _values can only represent a limited series of
natural numbers. For example, the _values 2.0000000000000000 and 2.0000000000000004
can be stored in a double, but nothing inbetween them.
</para>
<para>
This comparison will count how many possible double precision floating point
_values are between the left and the right number. If the number of possible
_values between both numbers is less than or equal to maxUlps, then the numbers
are considered as being equal.
</para>
<para>
Implementation partially follows the code outlined here:
http://www.anttirt.net/2007/08/19/proper-floating-point-comparisons/
</para>
</remarks>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.ReinterpretAsInt(System.Single)">
<summary>
Reinterprets the memory contents of a floating point value as an integer value
</summary>
<param name="value">
Floating point value whose memory contents to reinterpret
</param>
<returns>
The memory contents of the floating point value interpreted as an integer
</returns>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.ReinterpretAsLong(System.Double)">
<summary>
Reinterprets the memory contents of a double precision floating point
value as an integer value
</summary>
<param name="value">
Double precision floating point value whose memory contents to reinterpret
</param>
<returns>
The memory contents of the double precision floating point value
interpreted as an integer
</returns>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.ReinterpretAsFloat(System.Int32)">
<summary>
Reinterprets the memory contents of an integer as a floating point value
</summary>
<param name="value">Integer value whose memory contents to reinterpret</param>
<returns>
The memory contents of the integer value interpreted as a floating point value
</returns>
</member>
<member name="M:NUnit.Framework.Constraints.FloatingPointNumerics.ReinterpretAsDouble(System.Int64)">
<summary>
Reinterprets the memory contents of an integer value as a double precision
floating point value
</summary>
<param name="value">Integer whose memory contents to reinterpret</param>
<returns>
The memory contents of the integer interpreted as a double precision
floating point value
</returns>
</member>
<member name="T:NUnit.Framework.Constraints.FloatingPointNumerics.FloatIntUnion">
<summary>Union of a floating point variable and an integer</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.FloatIntUnion.Float">
<summary>The union's value as a floating point variable</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.FloatIntUnion.Int">
<summary>The union's value as an integer</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.FloatIntUnion.UInt">
<summary>The union's value as an unsigned integer</summary>
</member>
<member name="T:NUnit.Framework.Constraints.FloatingPointNumerics.DoubleLongUnion">
<summary>Union of a double precision floating point variable and a long</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.DoubleLongUnion.Double">
<summary>The union's value as a double precision floating point variable</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.DoubleLongUnion.Long">
<summary>The union's value as a long</summary>
</member>
<member name="F:NUnit.Framework.Constraints.FloatingPointNumerics.DoubleLongUnion.ULong">
<summary>The union's value as an unsigned long</summary>
</member>
<member name="T:NUnit.Framework.Constraints.EqualityAdapter">
<summary>
EqualityAdapter class handles all equality comparisons
that use an <see cref="T:System.Collections.IEqualityComparer"/>, <see cref="T:System.Collections.Generic.IEqualityComparer`1"/>
or a <see cref="T:NUnit.Framework.Constraints.ComparisonAdapter"/>.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.AreEqual(System.Object,System.Object)">
<summary>
Compares two objects, returning true if they are equal
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.CanCompare(System.Object,System.Object)">
<summary>
Returns true if the two objects can be compared by this adapter.
The base adapter cannot handle IEnumerables except for strings.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For(System.Collections.IComparer)">
<summary>
Returns an <see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.IComparer"/>.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For(System.Collections.IEqualityComparer)">
<summary>
Returns an <see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.IEqualityComparer"/>.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For``2(System.Func{``0,``1,System.Boolean})">
<summary>
Returns an EqualityAdapter that uses a predicate function for items comparison.
</summary>
<typeparam name="TExpected"></typeparam>
<typeparam name="TActual"></typeparam>
<param name="comparison"></param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For``1(System.Collections.Generic.IEqualityComparer{``0})">
<summary>
Returns an <see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.Generic.IEqualityComparer`1"/>.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For``1(System.Collections.Generic.IComparer{``0})">
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Returns an <see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.Generic.IComparer`1"/>.
</summary>
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<member name="M:NUnit.Framework.Constraints.EqualityAdapter.For``1(System.Comparison{``0})">
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Returns an <see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps a <see cref="T:System.Comparison`1"/>.
</summary>
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<member name="T:NUnit.Framework.Constraints.EqualityAdapter.ComparerAdapter">
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<see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.IComparer"/>.
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Returns true if the two objects can be compared by this adapter.
The base adapter cannot handle IEnumerables except for strings.
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Compares two objects, returning true if they are equal
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Returns true if the two objects can be compared by this adapter.
Generic adapter requires objects of the specified type.
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<member name="T:NUnit.Framework.Constraints.EqualityAdapter.ComparerAdapter`1">
<summary>
<see cref="T:NUnit.Framework.Constraints.EqualityAdapter"/> that wraps an <see cref="T:System.Collections.IComparer"/>.
</summary>
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<member name="T:NUnit.Framework.Constraints.EmptyCollectionConstraint">
<summary>
EmptyCollectionConstraint tests whether a collection is empty.
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<member name="M:NUnit.Framework.Constraints.EmptyCollectionConstraint.Matches(System.Collections.IEnumerable)">
<summary>
Check that the collection is empty
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<member name="P:NUnit.Framework.Constraints.EmptyCollectionConstraint.Description">
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.ConstraintFactory">
<summary>
Helper class with properties and methods that supply
a number of constraints used in Asserts.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Exactly(System.Int32)">
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Returns a ConstraintExpression, which will apply
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Property(System.String)">
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Returns a new PropertyConstraintExpression, which will either
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being tested or apply any following constraint to that property.
</summary>
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Attribute(System.Type)">
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Returns a new AttributeConstraint checking for the
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Attribute``1">
<summary>
Returns a new AttributeConstraint checking for the
presence of a particular attribute on an object.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.EqualTo(System.Object)">
<summary>
Returns a constraint that tests two items for equality
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.SameAs(System.Object)">
<summary>
Returns a constraint that tests that two references are the same object
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.GreaterThan(System.Object)">
<summary>
Returns a constraint that tests whether the
actual value is greater than the supplied argument
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.GreaterThanOrEqualTo(System.Object)">
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Returns a constraint that tests whether the
actual value is greater than or equal to the supplied argument
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AtLeast(System.Object)">
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Returns a constraint that tests whether the
actual value is greater than or equal to the supplied argument
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Returns a constraint that tests whether the
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.LessThanOrEqualTo(System.Object)">
<summary>
Returns a constraint that tests whether the
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AtMost(System.Object)">
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Returns a constraint that tests whether the
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.TypeOf(System.Type)">
<summary>
Returns a constraint that tests whether the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.TypeOf``1">
<summary>
Returns a constraint that tests whether the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.InstanceOf(System.Type)">
<summary>
Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.InstanceOf``1">
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AssignableFrom(System.Type)">
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AssignableFrom``1">
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AssignableTo(System.Type)">
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.AssignableTo``1">
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.EquivalentTo(System.Collections.IEnumerable)">
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Returns a constraint that tests whether the actual value
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collection supplied as an argument.
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Member(System.Object)">
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Returns a new CollectionContainsConstraint checking for the
presence of a particular object in the collection.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Contains(System.Object)">
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Returns a new CollectionContainsConstraint checking for the
presence of a particular object in the collection.
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Returns a new ContainsConstraint. This constraint
will, in turn, make use of the appropriate second-level
constraint, depending on the type of the actual argument.
This overload is only used if the item sought is a string,
since any other type implies that we are looking for a
collection member.
</summary>
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StringContaining(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value contains the substring supplied as an argument.
</summary>
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.ContainsSubstring(System.String)">
<summary>
Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.DoesNotContain(System.String)">
<summary>
Returns a constraint that fails if the actual
value contains the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StartWith(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value starts with the substring supplied as an argument.
</summary>
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StartsWith(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value starts with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StringStarting(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value starts with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.DoesNotStartWith(System.String)">
<summary>
Returns a constraint that fails if the actual
value starts with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.EndWith(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value ends with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.EndsWith(System.String)">
<summary>
Returns a constraint that succeeds if the actual
value ends with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StringEnding(System.String)">
<summary>
Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.DoesNotEndWith(System.String)">
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Returns a constraint that fails if the actual
value ends with the substring supplied as an argument.
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Match(System.String)">
<summary>
Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.Matches(System.String)">
<summary>
Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.StringMatching(System.String)">
<summary>
Returns a constraint that succeeds if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.DoesNotMatch(System.String)">
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Returns a constraint that fails if the actual
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.SamePath(System.String)">
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Returns a constraint that tests whether the path provided
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Returns a constraint that tests whether the path provided
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Returns a constraint that tests whether the path provided
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<member name="M:NUnit.Framework.Constraints.ConstraintFactory.InRange(System.IComparable,System.IComparable)">
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Returns a constraint that tests whether the actual value falls
within a specified range.
</summary>
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Not">
<summary>
Returns a ConstraintExpression that negates any
following constraint.
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ConstraintFactory.No">
<summary>
Returns a ConstraintExpression that negates any
following constraint.
</summary>
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.All">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if all of them succeed.
</summary>
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Some">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if at least one of them succeeds.
</summary>
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.None">
<summary>
Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding if all of them fail.
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Length">
<summary>
Returns a new ConstraintExpression, which will apply the following
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Count">
<summary>
Returns a new ConstraintExpression, which will apply the following
constraint to the Count property of the object being tested.
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Message">
<summary>
Returns a new ConstraintExpression, which will apply the following
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.InnerException">
<summary>
Returns a new ConstraintExpression, which will apply the following
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Null">
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Returns a constraint that tests for null
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.True">
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Returns a constraint that tests for True
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.False">
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Returns a constraint that tests for False
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Positive">
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Returns a constraint that tests for a positive value
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Negative">
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Returns a constraint that tests for a negative value
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Zero">
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Returns a constraint that tests for equality with zero
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.NaN">
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Returns a constraint that tests for NaN
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Empty">
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Returns a constraint that tests for empty
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Unique">
<summary>
Returns a constraint that tests whether a collection
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</summary>
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.BinarySerializable">
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Returns a constraint that tests whether an object graph is serializable in binary format.
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.XmlSerializable">
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Returns a constraint that tests whether an object graph is serializable in xml format.
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<member name="P:NUnit.Framework.Constraints.ConstraintFactory.Ordered">
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Returns a constraint that tests whether a collection is ordered
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<member name="T:NUnit.Framework.Constraints.BinarySerializableConstraint">
<summary>
BinarySerializableConstraint tests whether
an object is serializable in binary format.
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<member name="M:NUnit.Framework.Constraints.BinarySerializableConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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<member name="M:NUnit.Framework.Constraints.BinarySerializableConstraint.GetStringRepresentation">
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Returns the string representation
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<member name="P:NUnit.Framework.Constraints.BinarySerializableConstraint.Description">
<summary>
The Description of what this constraint tests, for
use in messages and in the ConstraintResult.
</summary>
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<member name="T:NUnit.Framework.TimeoutAttribute">
<summary>
Used on a method, marks the test with a timeout value in milliseconds.
The test will be run in a separate thread and is cancelled if the timeout
is exceeded. Used on a class or assembly, sets the default timeout
for all contained test methods.
</summary>
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<member name="M:NUnit.Framework.TimeoutAttribute.#ctor(System.Int32)">
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Construct a TimeoutAttribute given a time in milliseconds
</summary>
<param name="timeout">The timeout value in milliseconds</param>
</member>
<member name="T:NUnit.Framework.TestAttribute">
<summary>
Adding this attribute to a method within a <seealso cref="T:NUnit.Framework.TestFixtureAttribute"/>
class makes the method callable from the NUnit test runner. There is a property
called Description which is optional which you can provide a more detailed test
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</summary>
<example>
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public class Fixture
{
[Test]
public void MethodToTest()
{}
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Modifies a test by adding a description, if not already set.
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Construct a TestMethod from a given method.
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Descriptive text for this test
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The author of this test
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<member name="P:NUnit.Framework.TestAttribute.TestOf">
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The type that this test is testing
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<member name="P:NUnit.Framework.TestAttribute.ExpectedResult">
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Gets or sets the expected result.
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<member name="P:NUnit.Framework.TestAttribute.HasExpectedResult">
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Returns true if an expected result has been set
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<member name="T:NUnit.Framework.SetUICultureAttribute">
<summary>
Summary description for SetUICultureAttribute.
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<member name="M:NUnit.Framework.SetUICultureAttribute.#ctor(System.String)">
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Construct given the name of a culture
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<param name="culture"></param>
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<member name="T:NUnit.Framework.RequiresSTAAttribute">
<summary>
Marks a test that must run in the STA, causing it
to run in a separate thread if necessary.
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<member name="M:NUnit.Framework.RequiresSTAAttribute.#ctor">
<summary>
Construct a RequiresSTAAttribute
</summary>
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<member name="T:NUnit.Framework.DatapointsAttribute">
<summary>
Used to mark a field, property or method providing a set of datapoints to
be used in executing any theories within the same fixture that require an
argument of the Type provided. The data source may provide an array of
the required Type or an <see cref="T:System.Collections.Generic.IEnumerable`1"/>.
Synonymous with DatapointSourceAttribute.
</summary>
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<member name="T:NUnit.Framework.Internal.Commands.TestActionItem">
<summary>
TestActionItem represents a single execution of an
ITestAction. It is used to track whether the BeforeTest
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<member name="M:NUnit.Framework.Internal.Commands.TestActionItem.#ctor(NUnit.Framework.ITestAction)">
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Construct a TestActionItem
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<member name="M:NUnit.Framework.Internal.Commands.TestActionItem.BeforeTest(NUnit.Framework.Interfaces.ITest)">
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Run the BeforeTest method of the action and remember that it has been run.
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Run the AfterTest action, but only if the BeforeTest
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<member name="T:NUnit.Framework.Internal.InternalTraceLevel">
<summary>
InternalTraceLevel is an enumeration controlling the
level of detailed presented in the internal log.
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Default">
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Use the default settings as specified by the user.
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Off">
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Do not display any trace messages
</summary>
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Error">
<summary>
Display Error messages only
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Warning">
<summary>
Display Warning level and higher messages
</summary>
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Info">
<summary>
Display informational and higher messages
</summary>
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<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Debug">
<summary>
Display debug messages and higher - i.e. all messages
</summary>
</member>
<member name="F:NUnit.Framework.Internal.InternalTraceLevel.Verbose">
<summary>
Display debug messages and higher - i.e. all messages
</summary>
</member>
<member name="T:NUnit.Framework.ParallelScope">
<summary>
The ParallelScope enumeration permits specifying the degree to
which a test and its descendants may be run in parallel.
</summary>
</member>
<member name="F:NUnit.Framework.ParallelScope.None">
<summary>
No Parallelism is permitted
</summary>
</member>
<member name="F:NUnit.Framework.ParallelScope.Self">
<summary>
The test itself may be run in parallel with others at the same level
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</member>
<member name="F:NUnit.Framework.ParallelScope.Children">
<summary>
Descendants of the test may be run in parallel with one another
</summary>
</member>
<member name="F:NUnit.Framework.ParallelScope.Fixtures">
<summary>
Descendants of the test down to the level of TestFixtures may be run in parallel
</summary>
</member>
<member name="T:NUnit.Framework.ListMapper">
<summary>
ListMapper is used to transform a collection used as an actual argument
producing another collection to be used in the assertion.
</summary>
</member>
<member name="M:NUnit.Framework.ListMapper.#ctor(System.Collections.ICollection)">
<summary>
Construct a ListMapper based on a collection
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<param name="original">The collection to be transformed</param>
</member>
<member name="M:NUnit.Framework.ListMapper.Property(System.String)">
<summary>
Produces a collection containing all the _values of a property
</summary>
<param name="name">The collection of property _values</param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.List">
<summary>
The List class is a helper class with properties and methods
that supply a number of constraints used with lists and collections.
</summary>
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<member name="M:NUnit.Framework.List.Map(System.Collections.ICollection)">
<summary>
List.Map returns a ListMapper, which can be used to map
the original collection to another collection.
</summary>
<param name="actual"></param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.Internal.TestAssembly">
<summary>
TestAssembly is a TestSuite that represents the execution
of tests in a managed assembly.
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<member name="M:NUnit.Framework.Internal.TestAssembly.#ctor(System.Reflection.Assembly,System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestAssembly"/> class
specifying the Assembly and the path from which it was loaded.
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<param name="assembly">The assembly this test represents.</param>
<param name="path">The path used to load the assembly.</param>
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<member name="M:NUnit.Framework.Internal.TestAssembly.#ctor(System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestAssembly"/> class
for a path which could not be loaded.
</summary>
<param name="path">The path used to load the assembly.</param>
</member>
<member name="P:NUnit.Framework.Internal.TestAssembly.Assembly">
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Gets the Assembly represented by this instance.
</summary>
</member>
<member name="P:NUnit.Framework.Internal.TestAssembly.TestType">
<summary>
Gets the name used for the top-level element in the
XML representation of this test
</summary>
</member>
<member name="T:NUnit.Framework.Internal.SetUpFixture">
<summary>
SetUpFixture extends TestSuite and supports
Setup and TearDown methods.
</summary>
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<member name="M:NUnit.Framework.Internal.SetUpFixture.#ctor(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.SetUpFixture"/> class.
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<param name="type">The type.</param>
</member>
<member name="T:NUnit.Framework.Constraints.TrueConstraint">
<summary>
TrueConstraint tests that the actual value is true
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<member name="M:NUnit.Framework.Constraints.TrueConstraint.#ctor">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.TrueConstraint"/> class.
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</member>
<member name="M:NUnit.Framework.Constraints.TrueConstraint.ApplyTo(System.Object)">
<summary>
Test whether the constraint is satisfied by a given value
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<param name="actual">The value to be tested</param>
<returns>True for success, false for failure</returns>
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<member name="T:NUnit.Framework.Constraints.Tolerance">
<summary>
The Tolerance class generalizes the notion of a tolerance
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used with numeric types, but it can be used with any
type that supports taking a difference between two
objects and comparing that difference to a value.
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<member name="M:NUnit.Framework.Constraints.Tolerance.#ctor(System.Object)">
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Constructs a linear tolerance of a specified amount
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Constructs a tolerance given an amount and <see cref="T:NUnit.Framework.Constraints.ToleranceMode"/>
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Tests that the current Tolerance is linear with a
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Returns a default Tolerance object, equivalent to
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Returns an empty Tolerance object, equivalent to
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Gets the <see cref="T:NUnit.Framework.Constraints.ToleranceMode"/> for the current Tolerance
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Gets the value of the current Tolerance instance.
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Returns a new tolerance, using the current amount as a percentage.
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Returns a new tolerance, using the current amount in Ulps
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
the current amount as a number of days.
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
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<member name="P:NUnit.Framework.Constraints.Tolerance.Minutes">
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
the current amount as a number of seconds.
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
the current amount as a number of milliseconds.
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Returns a new tolerance with a <see cref="T:System.TimeSpan"/> as the amount, using
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Returns true if the current tolerance has not been set or is using the .
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<member name="T:NUnit.Framework.Constraints.StartsWithConstraint">
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StartsWithConstraint can test whether a string starts
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.StartsWithConstraint"/> class.
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Test whether the constraint is matched by the actual value.
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of the derived class.
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<param name="actual"></param>
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<member name="T:NUnit.Framework.Constraints.ThrowsOperator">
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Operator that tests that an exception is thrown and
optionally applies further tests to the exception.
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<member name="M:NUnit.Framework.Constraints.ThrowsOperator.#ctor">
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Construct a ThrowsOperator
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Reduce produces a constraint from the operator and
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ConstraintExpression represents a compound constraint in the
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reorganized. When a constraint is appended, it is returned as the
value of the operation so that modifiers may be applied. However,
any partially built expression is attached to the constraint for
later resolution. When an operator is appended, the partial
expression is returned. If it's a self-resolving operator, then
a ResolvableConstraintExpression is returned.
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<member name="F:NUnit.Framework.Constraints.ConstraintExpression.builder">
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The ConstraintBuilder holding the elements recognized so far
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ConstraintExpression"/> class.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.ConstraintExpression"/>
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Returns a string representation of the expression as it
currently stands. This should only be used for testing,
since it has the side-effect of resolving the expression.
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<returns></returns>
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Appends an operator to the expression and returns the
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Appends a self-resolving operator to the expression and
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Appends a constraint to the expression and returns that
constraint, which is associated with the current state
of the expression being built. Note that the constraint
is not reduced at this time. For example, if there
is a NotOperator on the stack we don't reduce and
return a NotConstraint. The original constraint must
be returned because it may support modifiers that
are yet to be applied.
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<member name="M:NUnit.Framework.Constraints.ConstraintExpression.Exactly(System.Int32)">
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Returns a ConstraintExpression, which will apply
the following constraint to all members of a collection,
succeeding only if a specified number of them succeed.
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Returns a new PropertyConstraintExpression, which will either
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being tested or apply any following constraint to that property.
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Returns a new AttributeConstraint checking for the
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Returns a new AttributeConstraint checking for the
presence of a particular attribute on an object.
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Returns the constraint provided as an argument - used to allow custom
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<member name="M:NUnit.Framework.Constraints.ConstraintExpression.EqualTo(System.Object)">
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Returns a constraint that tests two items for equality
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<member name="M:NUnit.Framework.Constraints.ConstraintExpression.SameAs(System.Object)">
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Returns a constraint that tests that two references are the same object
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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<member name="M:NUnit.Framework.Constraints.ConstraintExpression.AtLeast(System.Object)">
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Returns a constraint that tests whether the
actual value is greater than or equal to the supplied argument
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the
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Returns a constraint that tests whether the actual
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Returns a constraint that tests whether the actual
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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Returns a constraint that tests whether the actual value
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Returns a new CollectionContainsConstraint checking for the
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Returns a new ContainsConstraint. This constraint
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constraint, depending on the type of the actual argument.
This overload is only used if the item sought is a string,
since any other type implies that we are looking for a
collection member.
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Returns a new ContainsConstraint. This constraint
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constraint, depending on the type of the actual argument.
This overload is only used if the item sought is a string,
since any other type implies that we are looking for a
collection member.
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Returns a constraint that succeeds if the actual
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Returns a constraint that succeeds if the actual
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Returns a constraint that succeeds if the actual
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Returns a constraint that succeeds if the actual
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Returns a ConstraintExpression that negates any
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Returns a new ConstraintExpression, which will apply the following
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Attribute used to apply a category to a test
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The name of the category
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Construct attribute for a given category based on
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The name of the category
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IdFilter selects tests based on their id
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Full path of the directory to be used for work and result files.
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Integer value in milliseconds for the default timeout value
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<member name="F:NUnit.FrameworkPackageSettings.InternalTraceWriter">
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A TextWriter to which the internal trace will be sent.
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<member name="F:NUnit.FrameworkPackageSettings.LOAD">
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A list of tests to be loaded.
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The number of test threads to run for the assembly. If set to
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The random seed to be used for this assembly. If specified
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If true, execution stops after the first error or failure.
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If true, use of the event queue is suppressed and test events are synchronous.
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The default naming pattern used in generating test names
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Parameters to be passed on to the test
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Represents a constraint that succeeds if the specified
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Construct an ExactCountOperator for a specified count
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Returns a constraint that will apply the argument
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ParameterizedFixtureSuite serves as a container for the set of test
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.ParameterizedFixtureSuite"/> class.
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Gets a string representing the type of test
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<value></value>
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<member name="T:NUnit.Framework.Constraints.ReusableConstraint">
<summary>
ReusableConstraint wraps a constraint expression after
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Construct a ReusableConstraint from a constraint expression
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Converts a constraint to a ReusableConstraint
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<member name="M:NUnit.Framework.Constraints.ReusableConstraint.ToString">
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Returns a <see cref="T:System.String"/> that represents this instance.
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A <see cref="T:System.String"/> that represents this instance.
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<member name="M:NUnit.Framework.Constraints.ReusableConstraint.Resolve">
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Return the top-level constraint for this expression
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<member name="T:NUnit.Framework.Constraints.PropertyExistsConstraint">
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PropertyExistsConstraint tests that a named property
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.PropertyExistsConstraint"/> class.
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Test whether the property exists for a given object
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<member name="M:NUnit.Framework.Constraints.PropertyExistsConstraint.GetStringRepresentation">
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Returns the string representation of the constraint.
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.PropertyConstraint">
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PropertyConstraint extracts a named property and uses
its value as the actual value for a chained constraint.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.PropertyConstraint"/> class.
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Test whether the constraint is satisfied by a given value
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<member name="M:NUnit.Framework.Constraints.PropertyConstraint.GetStringRepresentation">
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Returns the string representation of the constraint.
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<returns></returns>
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<member name="T:NUnit.Framework.Constraints.WithOperator">
<summary>
Represents a constraint that simply wraps the
constraint provided as an argument, without any
further functionality, but which modifies the
order of evaluation because of its precedence.
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<member name="M:NUnit.Framework.Constraints.WithOperator.#ctor">
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Constructor for the WithOperator
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Returns a constraint that wraps its argument
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<member name="T:NUnit.Framework.Constraints.NUnitComparer">
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NUnitComparer encapsulates NUnit's default behavior
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Compares two objects
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<param name="y"></param>
<returns></returns>
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<member name="P:NUnit.Framework.Constraints.NUnitComparer.Default">
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Returns the default NUnitComparer.
</summary>
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<member name="T:NUnit.Framework.Constraints.LessThanOrEqualConstraint">
<summary>
Tests whether a value is less than or equal to the value supplied to its constructor
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<member name="M:NUnit.Framework.Constraints.LessThanOrEqualConstraint.#ctor(System.Object)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.LessThanOrEqualConstraint"/> class.
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<param name="expected">The expected value.</param>
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<member name="T:NUnit.Framework.TestFixtureSetUpAttribute">
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Attribute used to identify a method that is
called before any tests in a fixture are run.
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<member name="T:NUnit.Framework.DatapointAttribute">
<summary>
Used to mark a field for use as a datapoint when executing a theory
within the same fixture that requires an argument of the field's Type.
</summary>
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<member name="T:NUnit.Framework.AssertionHelper">
<summary>
AssertionHelper is an optional base class for user tests,
allowing the use of shorter ids for constraints and
asserts and avoiding conflict with the definition of
<see cref="T:NUnit.Framework.Is"/>, from which it inherits much of its
behavior, in certain mock object frameworks.
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<member name="M:NUnit.Framework.AssertionHelper.Expect(System.Boolean,System.String,System.Object[])">
<summary>
Asserts that a condition is true. If the condition is false the method throws
an <see cref="T:NUnit.Framework.AssertionException"/>. Works Identically to
<see cref="M:NUnit.Framework.Assert.That(System.Boolean,System.String,System.Object[])"/>.
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<param name="condition">The evaluated condition</param>
<param name="message">The message to display if the condition is false</param>
<param name="args">Arguments to be used in formatting the message</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect(System.Boolean)">
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Asserts that a condition is true. If the condition is false the method throws
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<param name="condition">The evaluated condition</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect``1(NUnit.Framework.Constraints.ActualValueDelegate{``0},NUnit.Framework.Constraints.IResolveConstraint)">
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Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an assertion exception on failure.
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<param name="expr">A Constraint expression to be applied</param>
<param name="del">An ActualValueDelegate returning the value to be tested</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect``1(NUnit.Framework.Constraints.ActualValueDelegate{``0},NUnit.Framework.Constraints.IResolveConstraint,System.String,System.Object[])">
<summary>
Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an assertion exception on failure.
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<param name="expr">A Constraint expression to be applied</param>
<param name="message">The message that will be displayed on failure</param>
<param name="args">Arguments to be used in formatting the message</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect(NUnit.Framework.TestDelegate,NUnit.Framework.Constraints.IResolveConstraint)">
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Asserts that the code represented by a delegate throws an exception
that satisfies the constraint provided.
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<param name="code">A TestDelegate to be executed</param>
<param name="constraint">A ThrowsConstraint used in the test</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect``1(``0,NUnit.Framework.Constraints.IResolveConstraint)">
<summary>
Apply a constraint to an actual value, succeeding if the constraint
is satisfied and throwing an assertion exception on failure.
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<param name="expression">A Constraint to be applied</param>
<param name="actual">The actual value to test</param>
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<member name="M:NUnit.Framework.AssertionHelper.Expect``1(``0,NUnit.Framework.Constraints.IResolveConstraint,System.String,System.Object[])">
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Apply a constraint to an actual value, succeeding if the constraint
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<param name="message">The message that will be displayed on failure</param>
<param name="args">Arguments to be used in formatting the message</param>
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<member name="M:NUnit.Framework.AssertionHelper.Map(System.Collections.ICollection)">
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Returns a ListMapper based on a collection.
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<param name="original">The original collection</param>
<returns></returns>
</member>
<member name="T:NUnit.Framework.Internal.TextMessageWriter">
<summary>
TextMessageWriter writes constraint descriptions and messages
in displayable form as a text stream. It tailors the display
of individual message components to form the standard message
format of NUnit assertion failure messages.
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<member name="F:NUnit.Framework.Internal.TextMessageWriter.Pfx_Expected">
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Prefix used for the expected value line of a message
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Prefix used for the actual value line of a message
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Length of a message prefix
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Construct a TextMessageWriter
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Construct a TextMessageWriter, specifying a user message
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Method to write single line message with optional args, usually
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Display Expected and Actual lines for a constraint. This
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Display Expected and Actual lines for given _values. This
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Display Expected and Actual lines for given _values, including
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Display the expected and actual string _values on separate lines.
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Writes the text for an actual value.
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Writes the text for a generalized value.
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Writes the text for a collection value,
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Write the generic 'Expected' line for a constraint
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Write the generic 'Expected' line for a given value
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Write the generic 'Expected' line for a given value
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Write the generic 'Actual' line for a constraint
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<member name="M:NUnit.Framework.Internal.TextMessageWriter.WriteActualLine(System.Object)">
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Write the generic 'Actual' line for a given value
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<param name="actual">The actual value causing a failure</param>
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<member name="P:NUnit.Framework.Internal.TextMessageWriter.MaxLineLength">
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EventListenerTextWriter sends text output to the currently active
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<member name="M:NUnit.Framework.Internal.Execution.EventListenerTextWriter.#ctor(System.String,System.IO.TextWriter)">
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Construct an EventListenerTextWriter
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Write a single char
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<member name="M:NUnit.Framework.Internal.Execution.EventListenerTextWriter.Write(System.String)">
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Write a string
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Write a string followed by a newline
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Get the Encoding for this TextWriter
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CollectionSupersetConstraint is used to determine whether
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Construct a CollectionSupersetConstraint
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Test whether the actual collection is a superset of
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Flag the constraint to use the supplied predicate function
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Internal.OSPlatform">
<summary>
OSPlatform represents a particular operating system platform
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Platform ID for Unix as defined by Microsoft .NET 2.0 and greater
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Platform ID for Unix as defined by Mono
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<member name="F:NUnit.Framework.Internal.OSPlatform.XBoxPlatformID">
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Platform ID for XBox as defined by .NET and Mono, but not CF
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<member name="F:NUnit.Framework.Internal.OSPlatform.MacOSXPlatformID">
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Platform ID for MacOSX as defined by .NET and Mono, but not CF
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Gets the actual OS Version, not the incorrect value that might be
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Construct from a platform ID and version
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Construct from a platform ID, version and product type
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Get the OSPlatform under which we are currently running
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<member name="P:NUnit.Framework.Internal.OSPlatform.Platform">
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Get the platform ID of this instance
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<member name="P:NUnit.Framework.Internal.OSPlatform.Version">
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Get the Version of this instance
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<member name="P:NUnit.Framework.Internal.OSPlatform.Product">
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Get the Product Type of this instance
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWindows">
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Return true if this is a windows platform
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsUnix">
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Return true if this is a Unix or Linux platform
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin32S">
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Return true if the platform is Win32S
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin32Windows">
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Return true if the platform is Win32Windows
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin32NT">
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Return true if the platform is Win32NT
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWinCE">
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Return true if the platform is Windows CE
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsXbox">
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Return true if the platform is Xbox
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsMacOSX">
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Return true if the platform is MacOSX
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin95">
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Return true if the platform is Windows 95
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin98">
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Return true if the platform is Windows 98
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWinME">
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Return true if the platform is Windows ME
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsNT3">
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Return true if the platform is NT 3
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsNT4">
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Return true if the platform is NT 4
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsNT5">
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Return true if the platform is NT 5
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin2K">
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Return true if the platform is Windows 2000
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWinXP">
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Return true if the platform is Windows XP
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsWin2003Server">
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Return true if the platform is Windows 2003 Server
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<member name="P:NUnit.Framework.Internal.OSPlatform.IsNT6">
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Return true if the platform is NT 6.0
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Return true if the platform is NT 6.1
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Return true if the platform is Windows 2012 Server (original or R2)
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Return true if the platform is Windows 2012 Server (original)
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Return true if the platform is Windows 2012 Server R2
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Return true if the platform is Windows 7
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Return true if the platform is Windows 8.1
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Return true if the platform is Windows 10
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Product Type Enumeration used for Windows
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Product type is unknown or unspecified
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Product type is Workstation
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Product type is Domain Controller
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Product type is Server
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The Description of what this constraint tests, for
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<member name="P:NUnit.Framework.Constraints.ContainsConstraint.Description">
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The Description of what this constraint tests, for
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Flag the constraint to ignore case and return self.
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CollectionTally counts (tallies) the number of
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Construct a CollectionTally object from a comparer and a collection
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Try to remove an object from the tally
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Try to remove a set of objects from the tally
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<member name="P:NUnit.Framework.Constraints.CollectionTally.Count">
<summary>
The number of objects remaining in the tally
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<member name="T:NUnit.Framework.Constraints.AllItemsConstraint">
<summary>
AllItemsConstraint applies another constraint to each
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<member name="M:NUnit.Framework.Constraints.AllItemsConstraint.#ctor(NUnit.Framework.Constraints.IConstraint)">
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Construct an AllItemsConstraint on top of an existing constraint
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Apply the item constraint to each item in the collection,
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The display name of this Constraint for use by ToString().
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<member name="T:NUnit.Framework.CollectionAssert">
<summary>
A set of Assert methods operating on one or more collections
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<member name="M:NUnit.Framework.CollectionAssert.Equals(System.Object,System.Object)">
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The Equals method throws an InvalidOperationException. This is done
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<param name="b"></param>
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override the default ReferenceEquals to throw an InvalidOperationException. This
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Asserts that all items contained in collection are not equal to null.
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Ensures that every object contained in collection exists within the collection
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<member name="M:NUnit.Framework.CollectionAssert.AllItemsAreUnique(System.Collections.IEnumerable,System.String,System.Object[])">
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Ensures that every object contained in collection exists within the collection
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<param name="args">Arguments to be used in formatting the message</param>
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Asserts that expected and actual are exactly equal. The collections must have the same count,
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<param name="expected">The first IEnumerable of objects to be considered</param>
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Asserts that expected and actual are exactly equal. The collections must have the same count,
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Asserts that expected and actual are exactly equal. The collections must have the same count,
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<member name="M:NUnit.Framework.CollectionAssert.IsOrdered(System.Collections.IEnumerable)">
<summary>
Assert that an array, list or other collection is ordered
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<param name="collection">An array, list or other collection implementing IEnumerable</param>
</member>
<member name="M:NUnit.Framework.CollectionAssert.IsOrdered(System.Collections.IEnumerable,System.Collections.IComparer,System.String,System.Object[])">
<summary>
Assert that an array, list or other collection is ordered
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<param name="collection">An array, list or other collection implementing IEnumerable</param>
<param name="comparer">A custom comparer to perform the comparisons</param>
<param name="message">The message to be displayed on failure</param>
<param name="args">Arguments to be used in formatting the message</param>
</member>
<member name="M:NUnit.Framework.CollectionAssert.IsOrdered(System.Collections.IEnumerable,System.Collections.IComparer)">
<summary>
Assert that an array, list or other collection is ordered
</summary>
<param name="collection">An array, list or other collection implementing IEnumerable</param>
<param name="comparer">A custom comparer to perform the comparisons</param>
</member>
<member name="T:NUnit.Framework.TestCaseSourceAttribute">
<summary>
TestCaseSourceAttribute indicates the source to be used to
provide test cases for a test method.
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.#ctor(System.String)">
<summary>
Construct with the name of the method, property or field that will provide data
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<param name="sourceName">The name of a static method, property or field that will provide data.</param>
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.#ctor(System.Type,System.String,System.Object[])">
<summary>
Construct with a Type and name
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.#ctor(System.Type,System.String)">
<summary>
Construct with a Type and name
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<param name="sourceType">The Type that will provide data</param>
<param name="sourceName">The name of a static method, property or field that will provide data.</param>
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.#ctor(System.Type)">
<summary>
Construct with a Type
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.BuildFrom(NUnit.Framework.Interfaces.IMethodInfo,NUnit.Framework.Internal.Test)">
<summary>
Construct one or more TestMethods from a given MethodInfo,
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<member name="M:NUnit.Framework.TestCaseSourceAttribute.GetTestCasesFor(NUnit.Framework.Interfaces.IMethodInfo)">
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Returns a set of ITestCaseDataItems for use as arguments
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<param name="method">The method for which data is needed.</param>
<returns></returns>
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<member name="P:NUnit.Framework.TestCaseSourceAttribute.MethodParams">
<summary>
A set of parameters passed to the method, works only if the Source Name is a method.
If the source name is a field or property has no effect.
</summary>
</member>
<member name="P:NUnit.Framework.TestCaseSourceAttribute.SourceName">
<summary>
The name of a the method, property or fiend to be used as a source
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</member>
<member name="P:NUnit.Framework.TestCaseSourceAttribute.SourceType">
<summary>
A Type to be used as a source
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<member name="P:NUnit.Framework.TestCaseSourceAttribute.Category">
<summary>
Gets or sets the category associated with every fixture created from
this attribute. May be a single category or a comma-separated list.
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<member name="T:NUnit.Framework.Internal.Commands.TestMethodCommand">
<summary>
TestMethodCommand is the lowest level concrete command
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<member name="M:NUnit.Framework.Internal.Commands.TestMethodCommand.#ctor(NUnit.Framework.Internal.TestMethod)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.TestMethodCommand"/> class.
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<param name="testMethod">The test.</param>
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<member name="M:NUnit.Framework.Internal.Commands.TestMethodCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
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Runs the test, saving a TestResult in the execution context, as
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<param name="context">The execution context</param>
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<member name="T:NUnit.Framework.Internal.Commands.SetUpTearDownCommand">
<summary>
SetUpTearDownCommand runs any SetUp methods for a suite,
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<member name="M:NUnit.Framework.Internal.Commands.SetUpTearDownCommand.#ctor(NUnit.Framework.Internal.Commands.TestCommand)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.Commands.SetUpTearDownCommand"/> class.
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<member name="M:NUnit.Framework.Internal.Commands.SetUpTearDownCommand.Execute(NUnit.Framework.Internal.ITestExecutionContext)">
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Runs the test, saving a TestResult in the supplied TestExecutionContext.
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<param name="context">The context in which the test should run.</param>
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<member name="T:NUnit.Framework.Internal.Commands.SetUpTearDownItem">
<summary>
SetUpTearDownItem holds the setup and teardown methods
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<member name="M:NUnit.Framework.Internal.Commands.SetUpTearDownItem.#ctor(System.Collections.Generic.IList{System.Reflection.MethodInfo},System.Collections.Generic.IList{System.Reflection.MethodInfo})">
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Construct a SetUpTearDownNode
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<member name="M:NUnit.Framework.Internal.Commands.SetUpTearDownItem.RunSetUp(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Run SetUp on this level.
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<member name="M:NUnit.Framework.Internal.Commands.SetUpTearDownItem.RunTearDown(NUnit.Framework.Internal.ITestExecutionContext)">
<summary>
Run TearDown for this level.
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<member name="P:NUnit.Framework.Internal.Commands.SetUpTearDownItem.HasMethods">
<summary>
Returns true if this level has any methods at all.
This flag is used to discard levels that do nothing.
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<member name="T:NUnit.Framework.Guard">
<summary>
Class used to guard against unexpected argument values
or operations by throwing an appropriate exception.
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<member name="M:NUnit.Framework.Guard.ArgumentNotNull(System.Object,System.String)">
<summary>
Throws an exception if an argument is null
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<param name="value">The value to be tested</param>
<param name="name">The name of the argument</param>
</member>
<member name="M:NUnit.Framework.Guard.ArgumentNotNullOrEmpty(System.String,System.String)">
<summary>
Throws an exception if a string argument is null or empty
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<param name="value">The value to be tested</param>
<param name="name">The name of the argument</param>
</member>
<member name="M:NUnit.Framework.Guard.ArgumentInRange(System.Boolean,System.String,System.String)">
<summary>
Throws an ArgumentOutOfRangeException if the specified condition is not met.
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<param name="message">The exception message to be used</param>
<param name="paramName">The name of the argument</param>
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<member name="M:NUnit.Framework.Guard.ArgumentValid(System.Boolean,System.String,System.String)">
<summary>
Throws an ArgumentException if the specified condition is not met.
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<param name="message">The exception message to be used</param>
<param name="paramName">The name of the argument</param>
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<member name="M:NUnit.Framework.Guard.OperationValid(System.Boolean,System.String)">
<summary>
Throws an InvalidOperationException if the specified condition is not met.
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<param name="condition">The condition that must be met</param>
<param name="message">The exception message to be used</param>
</member>
<member name="T:NUnit.Framework.Constraints.SubPathConstraint">
<summary>
SubPathConstraint tests that the actual path is under the expected path
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<member name="M:NUnit.Framework.Constraints.SubPathConstraint.#ctor(System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.SubPathConstraint"/> class.
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<member name="M:NUnit.Framework.Constraints.SubPathConstraint.Matches(System.String)">
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Test whether the constraint is satisfied by a given value
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<member name="P:NUnit.Framework.Constraints.SubPathConstraint.Description">
<summary>
The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.ParallelizableAttribute">
<summary>
ParallelizableAttribute is used to mark tests that may be run in parallel.
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<member name="M:NUnit.Framework.ParallelizableAttribute.#ctor">
<summary>
Construct a ParallelizableAttribute using default ParallelScope.Self.
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<member name="M:NUnit.Framework.ParallelizableAttribute.#ctor(NUnit.Framework.ParallelScope)">
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Construct a ParallelizableAttribute with a specified scope.
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<member name="M:NUnit.Framework.ParallelizableAttribute.ApplyToContext(NUnit.Framework.Internal.ITestExecutionContext)">
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Modify the context to be used for child tests
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<member name="T:NUnit.Framework.Throws">
<summary>
Helper class with properties and methods that supply
constraints that operate on exceptions.
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<member name="M:NUnit.Framework.Throws.TypeOf(System.Type)">
<summary>
Creates a constraint specifying the exact type of exception expected
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<member name="M:NUnit.Framework.Throws.TypeOf``1">
<summary>
Creates a constraint specifying the exact type of exception expected
</summary>
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<member name="M:NUnit.Framework.Throws.InstanceOf(System.Type)">
<summary>
Creates a constraint specifying the type of exception expected
</summary>
</member>
<member name="M:NUnit.Framework.Throws.InstanceOf``1">
<summary>
Creates a constraint specifying the type of exception expected
</summary>
</member>
<member name="P:NUnit.Framework.Throws.Exception">
<summary>
Creates a constraint specifying an expected exception
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<member name="P:NUnit.Framework.Throws.InnerException">
<summary>
Creates a constraint specifying an exception with a given InnerException
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<member name="P:NUnit.Framework.Throws.TargetInvocationException">
<summary>
Creates a constraint specifying an expected TargetInvocationException
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<member name="P:NUnit.Framework.Throws.ArgumentException">
<summary>
Creates a constraint specifying an expected ArgumentException
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<member name="P:NUnit.Framework.Throws.ArgumentNullException">
<summary>
Creates a constraint specifying an expected ArgumentNUllException
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<member name="P:NUnit.Framework.Throws.InvalidOperationException">
<summary>
Creates a constraint specifying an expected InvalidOperationException
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<member name="P:NUnit.Framework.Throws.Nothing">
<summary>
Creates a constraint specifying that no exception is thrown
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<member name="T:NUnit.Framework.Internal.RuntimeType">
<summary>
Enumeration identifying a common language
runtime implementation.
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<member name="F:NUnit.Framework.Internal.RuntimeType.Any">
<summary>Any supported runtime framework</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.Net">
<summary>Microsoft .NET Framework</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.NetCF">
<summary>Microsoft .NET Compact Framework</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.SSCLI">
<summary>Microsoft Shared Source CLI</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.Mono">
<summary>Mono</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.Silverlight">
<summary>Silverlight</summary>
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<member name="F:NUnit.Framework.Internal.RuntimeType.MonoTouch">
<summary>MonoTouch</summary>
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<member name="T:NUnit.Framework.Internal.RuntimeFramework">
<summary>
RuntimeFramework represents a particular version
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<member name="F:NUnit.Framework.Internal.RuntimeFramework.DefaultVersion">
<summary>
DefaultVersion is an empty Version, used to indicate that
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<member name="M:NUnit.Framework.Internal.RuntimeFramework.#ctor(NUnit.Framework.Internal.RuntimeType,System.Version)">
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Construct from a runtime type and version. If the version has
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version is deduced based on the runtime type and provided version.
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<param name="runtime">The runtime type of the framework</param>
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Parses a string representing a RuntimeFramework.
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<param name="s"></param>
<returns></returns>
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<member name="M:NUnit.Framework.Internal.RuntimeFramework.ToString">
<summary>
Overridden to return the short name of the framework
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.RuntimeFramework.Supports(NUnit.Framework.Internal.RuntimeFramework)">
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Returns true if the current framework matches the
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components are ignored.
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<param name="target">The RuntimeFramework to be matched.</param>
<returns>True on match, otherwise false</returns>
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.CurrentFramework">
<summary>
Static method to return a RuntimeFramework object
for the framework that is currently in use.
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.Runtime">
<summary>
The type of this runtime framework
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.FrameworkVersion">
<summary>
The framework version for this runtime framework
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.ClrVersion">
<summary>
The CLR version for this runtime framework
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.AllowAnyVersion">
<summary>
Return true if any CLR version may be used in
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<member name="P:NUnit.Framework.Internal.RuntimeFramework.DisplayName">
<summary>
Returns the Display name for this framework
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<member name="T:NUnit.Framework.Internal.Filters.CategoryFilter">
<summary>
CategoryFilter is able to select or exclude tests
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<member name="M:NUnit.Framework.Internal.Filters.CategoryFilter.#ctor(System.String)">
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Construct a CategoryFilter using a single category name
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Check whether the filter matches a test
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<member name="P:NUnit.Framework.Internal.Filters.CategoryFilter.ElementName">
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Gets the element name
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<value>Element name</value>
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<member name="T:NUnit.Framework.GlobalSettings">
<summary>
GlobalSettings is a place for setting default values used
by the framework in performing asserts. Anything set through
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<member name="F:NUnit.Framework.GlobalSettings.DefaultFloatingPointTolerance">
<summary>
Default tolerance for floating point equality
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<member name="T:NUnit.Framework.FileAssert">
<summary>
Asserts on Files
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The Equals method throws an InvalidOperationException. This is done
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<member name="M:NUnit.Framework.FileAssert.ReferenceEquals(System.Object,System.Object)">
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override the default ReferenceEquals to throw an InvalidOperationException. This
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<param name="b"></param>
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Verifies that two Streams are equal. Two Streams are considered
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<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.AreEqual(System.IO.Stream,System.IO.Stream)">
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Verifies that two Streams are equal. Two Streams are considered
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If they are not equal an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
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<param name="expected">The expected Stream</param>
<param name="actual">The actual Stream</param>
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<member name="M:NUnit.Framework.FileAssert.AreEqual(System.IO.FileInfo,System.IO.FileInfo,System.String,System.Object[])">
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Verifies that two files are equal. Two files are considered
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<member name="M:NUnit.Framework.FileAssert.AreEqual(System.IO.FileInfo,System.IO.FileInfo)">
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Verifies that two files are equal. Two files are considered
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<param name="expected">A file containing the value that is expected</param>
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<member name="M:NUnit.Framework.FileAssert.AreEqual(System.String,System.String,System.String,System.Object[])">
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Verifies that two files are equal. Two files are considered
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<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.AreEqual(System.String,System.String)">
<summary>
Verifies that two files are equal. Two files are considered
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<param name="expected">The path to a file containing the value that is expected</param>
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Asserts that two Streams are not equal. If they are equal
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Asserts that two Streams are not equal. If they are equal
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<param name="expected">The expected Stream</param>
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<member name="M:NUnit.Framework.FileAssert.AreNotEqual(System.IO.FileInfo,System.IO.FileInfo,System.String,System.Object[])">
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Asserts that two files are not equal. If they are equal
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<param name="actual">A file containing the actual value</param>
<param name="message">The message to display if Streams are not equal</param>
<param name="args">Arguments to be used in formatting the message</param>
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<member name="M:NUnit.Framework.FileAssert.AreNotEqual(System.IO.FileInfo,System.IO.FileInfo)">
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Asserts that two files are not equal. If they are equal
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<param name="expected">A file containing the value that is expected</param>
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Asserts that two files are not equal. If they are equal
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<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.AreNotEqual(System.String,System.String)">
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Asserts that two files are not equal. If they are equal
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<param name="expected">The path to a file containing the value that is expected</param>
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Asserts that the file exists. If it does not exist
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<param name="actual">A file containing the actual value</param>
<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.Exists(System.IO.FileInfo)">
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Asserts that the file exists. If it does not exist
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<param name="actual">A file containing the actual value</param>
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Asserts that the file exists. If it does not exist
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<param name="actual">The path to a file containing the actual value</param>
<param name="message">The message to display if Streams are not equal</param>
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Asserts that the file exists. If it does not exist
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<param name="actual">The path to a file containing the actual value</param>
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Asserts that the file does not exist. If it does exist
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<param name="actual">A file containing the actual value</param>
<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.DoesNotExist(System.IO.FileInfo)">
<summary>
Asserts that the file does not exist. If it does exist
an <see cref="T:NUnit.Framework.AssertionException"/> is thrown.
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<param name="actual">A file containing the actual value</param>
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<member name="M:NUnit.Framework.FileAssert.DoesNotExist(System.String,System.String,System.Object[])">
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Asserts that the file does not exist. If it does exist
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<param name="actual">The path to a file containing the actual value</param>
<param name="message">The message to display if Streams are not equal</param>
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<member name="M:NUnit.Framework.FileAssert.DoesNotExist(System.String)">
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Asserts that the file does not exist. If it does exist
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<param name="actual">The path to a file containing the actual value</param>
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<member name="T:NUnit.Framework.IgnoreException">
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Thrown when an assertion failed.
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<member name="M:NUnit.Framework.IgnoreException.#ctor(System.String)">
<param name="message"></param>
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<member name="M:NUnit.Framework.IgnoreException.#ctor(System.String,System.Exception)">
<param name="message">The error message that explains
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<param name="inner">The exception that caused the
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<member name="M:NUnit.Framework.IgnoreException.#ctor(System.Runtime.Serialization.SerializationInfo,System.Runtime.Serialization.StreamingContext)">
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Serialization Constructor
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<member name="P:NUnit.Framework.IgnoreException.ResultState">
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Gets the ResultState provided by this exception
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<member name="T:NUnit.Framework.Constraints.SomeItemsConstraint">
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SomeItemsConstraint applies another constraint to each
item in a collection, succeeding if any of them succeeds.
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<member name="M:NUnit.Framework.Constraints.SomeItemsConstraint.#ctor(NUnit.Framework.Constraints.IConstraint)">
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Construct a SomeItemsConstraint on top of an existing constraint
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<param name="itemConstraint"></param>
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<member name="M:NUnit.Framework.Constraints.SomeItemsConstraint.ApplyTo(System.Object)">
<summary>
Apply the item constraint to each item in the collection,
succeeding if any item succeeds.
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<param name="actual"></param>
<returns></returns>
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<member name="P:NUnit.Framework.Constraints.SomeItemsConstraint.DisplayName">
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The display name of this Constraint for use by ToString().
The default value is the name of the constraint with
trailing "Constraint" removed. Derived classes may set
this to another name in their constructors.
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<member name="T:NUnit.Framework.Constraints.SameAsConstraint">
<summary>
SameAsConstraint tests whether an object is identical to
the object passed to its constructor
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<member name="M:NUnit.Framework.Constraints.SameAsConstraint.#ctor(System.Object)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.SameAsConstraint"/> class.
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<param name="expected">The expected object.</param>
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<member name="M:NUnit.Framework.Constraints.SameAsConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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<member name="P:NUnit.Framework.Constraints.SameAsConstraint.Description">
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The Description of what this constraint tests, for
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<member name="T:NUnit.Framework.Constraints.RegexConstraint">
<summary>
RegexConstraint can test whether a string matches
the pattern provided.
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<member name="M:NUnit.Framework.Constraints.RegexConstraint.#ctor(System.String)">
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.RegexConstraint"/> class.
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<param name="pattern">The pattern.</param>
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<member name="M:NUnit.Framework.Constraints.RegexConstraint.Matches(System.String)">
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Test whether the constraint is satisfied by a given value
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<member name="T:NUnit.Framework.Constraints.ConstraintStatus">
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ConstraintStatus represents the status of a ConstraintResult
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<member name="F:NUnit.Framework.Constraints.ConstraintStatus.Unknown">
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The status has not yet been set
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<member name="F:NUnit.Framework.Constraints.ConstraintStatus.Success">
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The constraint succeeded
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<member name="F:NUnit.Framework.Constraints.ConstraintStatus.Failure">
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The constraint failed
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<member name="F:NUnit.Framework.Constraints.ConstraintStatus.Error">
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An error occured in applying the constraint (reserved for future use)
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<member name="T:NUnit.Framework.TearDownAttribute">
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Attribute used to identify a method that is called
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<member name="T:NUnit.Framework.CombinatorialAttribute">
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Marks a test to use a combinatorial join of any argument
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Default constructor
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<member name="T:NUnit.Framework.Internal.PropertyNames">
<summary>
The PropertyNames class provides static constants for the
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<member name="F:NUnit.Framework.Internal.PropertyNames.AppDomain">
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The FriendlyName of the AppDomain in which the assembly is running
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</member>
<member name="F:NUnit.Framework.Internal.PropertyNames.JoinType">
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The selected strategy for joining parameter data into test cases
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</member>
<member name="F:NUnit.Framework.Internal.PropertyNames.ProcessID">
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The process ID of the executing assembly
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</member>
<member name="F:NUnit.Framework.Internal.PropertyNames.ProviderStackTrace">
<summary>
The stack trace from any data provider that threw
an exception.
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</member>
<member name="F:NUnit.Framework.Internal.PropertyNames.SkipReason">
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The reason a test was not run
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<member name="F:NUnit.Framework.Internal.PropertyNames.Author">
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The author of the tests
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<member name="F:NUnit.Framework.Internal.PropertyNames.ApartmentState">
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The ApartmentState required for running the test
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<member name="F:NUnit.Framework.Internal.PropertyNames.Category">
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The categories applying to a test
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<member name="F:NUnit.Framework.Internal.PropertyNames.Description">
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The Description of a test
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<member name="F:NUnit.Framework.Internal.PropertyNames.LevelOfParallelism">
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The number of threads to be used in running tests
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<member name="F:NUnit.Framework.Internal.PropertyNames.MaxTime">
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The maximum time in ms, above which the test is considered to have failed
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<member name="F:NUnit.Framework.Internal.PropertyNames.ParallelScope">
<summary>
The ParallelScope associated with a test
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<member name="F:NUnit.Framework.Internal.PropertyNames.RepeatCount">
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The number of times the test should be repeated
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<member name="F:NUnit.Framework.Internal.PropertyNames.RequiresThread">
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Indicates that the test should be run on a separate thread
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<member name="F:NUnit.Framework.Internal.PropertyNames.SetCulture">
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The culture to be set for a test
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<member name="F:NUnit.Framework.Internal.PropertyNames.SetUICulture">
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The UI culture to be set for a test
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<member name="F:NUnit.Framework.Internal.PropertyNames.TestOf">
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The type that is under test
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<member name="F:NUnit.Framework.Internal.PropertyNames.Timeout">
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The timeout value for the test
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<member name="F:NUnit.Framework.Internal.PropertyNames.IgnoreUntilDate">
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The test will be ignored until the given date
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<member name="F:NUnit.Framework.Internal.PropertyNames.Order">
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The optional Order the test will run in
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<member name="T:NUnit.Framework.Internal.MethodWrapper">
<summary>
The MethodWrapper class wraps a MethodInfo so that it may
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<member name="M:NUnit.Framework.Internal.MethodWrapper.#ctor(System.Type,System.Reflection.MethodInfo)">
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Construct a MethodWrapper for a Type and a MethodInfo.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.#ctor(System.Type,System.String)">
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Construct a MethodInfo for a given Type and method name.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.GetParameters">
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Gets the parameters of the method.
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<returns></returns>
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<member name="M:NUnit.Framework.Internal.MethodWrapper.GetGenericArguments">
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Returns the Type arguments of a generic method or the Type parameters of a generic method definition.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.MakeGenericMethod(System.Type[])">
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Replaces the type parameters of the method with the array of types provided and returns a new IMethodInfo.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.GetCustomAttributes``1(System.Boolean)">
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Returns an array of custom attributes of the specified type applied to this method
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<member name="M:NUnit.Framework.Internal.MethodWrapper.IsDefined``1(System.Boolean)">
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Gets a value indicating whether one or more attributes of the spcified type are defined on the method.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.Invoke(System.Object,System.Object[])">
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Invokes the method, converting any TargetInvocationException to an NUnitException.
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<member name="M:NUnit.Framework.Internal.MethodWrapper.ToString">
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Override ToString() so that error messages in NUnit's own tests make sense
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<member name="P:NUnit.Framework.Internal.MethodWrapper.TypeInfo">
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Gets the Type from which this method was reflected.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.MethodInfo">
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Gets the MethodInfo for this method.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.Name">
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Gets the name of the method.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.IsAbstract">
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Gets a value indicating whether the method is abstract.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.IsPublic">
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Gets a value indicating whether the method is public.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.ContainsGenericParameters">
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Gets a value indicating whether the method contains unassigned generic type parameters.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.IsGenericMethod">
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Gets a value indicating whether the method is a generic method.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.IsGenericMethodDefinition">
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Gets a value indicating whether the MethodInfo represents the definition of a generic method.
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<member name="P:NUnit.Framework.Internal.MethodWrapper.ReturnType">
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Gets the return Type of the method.
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<member name="T:NUnit.Framework.Constraints.SomeOperator">
<summary>
Represents a constraint that succeeds if any of the
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<member name="M:NUnit.Framework.Constraints.SomeOperator.ApplyPrefix(NUnit.Framework.Constraints.IConstraint)">
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Returns a constraint that will apply the argument
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<member name="T:NUnit.Framework.Internal.TestMethod">
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The TestMethod class represents a Test implemented as a method.
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<member name="F:NUnit.Framework.Internal.TestMethod.parms">
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The ParameterSet used to create this test method
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestMethod"/> class.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Internal.TestMethod"/> class.
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<member name="M:NUnit.Framework.Internal.TestMethod.MakeTestResult">
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Overridden to return a TestCaseResult.
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Returns a TNode representing the current result after
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<param name="recursive">If true, descendant results are included</param>
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<member name="P:NUnit.Framework.Internal.TestMethod.HasChildren">
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Gets a bool indicating whether the current test
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<member name="P:NUnit.Framework.Internal.TestMethod.Tests">
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Gets this test's child tests
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<member name="P:NUnit.Framework.Internal.TestMethod.XmlElementName">
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Gets the name used for the top-level element in the
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<member name="P:NUnit.Framework.Internal.TestMethod.MethodName">
<summary>
Returns the name of the method
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<member name="T:NUnit.Framework.Constraints.RangeConstraint">
<summary>
RangeConstraint tests whether two _values are within a
specified range.
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Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.RangeConstraint"/> class.
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<remarks>from must be less than or equal to true</remarks>
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<member name="M:NUnit.Framework.Constraints.RangeConstraint.ApplyTo(System.Object)">
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Test whether the constraint is satisfied by a given value
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Modifies the constraint to use an <see cref="T:System.Collections.IComparer"/> and returns self.
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Modifies the constraint to use an <see cref="T:System.Collections.Generic.IComparer`1"/> and returns self.
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Modifies the constraint to use a <see cref="T:System.Comparison`1"/> and returns self.
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<member name="P:NUnit.Framework.Constraints.RangeConstraint.Description">
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Gets text describing a constraint
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<member name="T:NUnit.Framework.Constraints.GreaterThanOrEqualConstraint">
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Tests whether a value is greater than or equal to the value supplied to its constructor
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<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Constraints.GreaterThanOrEqualConstraint"/> class.
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<param name="expected">The expected value.</param>
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<member name="T:NUnit.Framework.Constraints.ActualValueDelegate`1">
<summary>
Delegate used to delay evaluation of the actual value
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<member name="T:NUnit.Framework.Constraints.AttributeConstraint">
<summary>
AttributeConstraint tests that a specified attribute is present
on a Type or other provider and that the value of the attribute
satisfies some other constraint.
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<member name="M:NUnit.Framework.Constraints.AttributeConstraint.#ctor(System.Type,NUnit.Framework.Constraints.IConstraint)">
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Constructs an AttributeConstraint for a specified attribute
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<param name="type"></param>
<param name="baseConstraint"></param>
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<member name="M:NUnit.Framework.Constraints.AttributeConstraint.ApplyTo(System.Object)">
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Determines whether the Type or other provider has the
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<member name="M:NUnit.Framework.Constraints.AttributeConstraint.GetStringRepresentation">
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Returns a string representation of the constraint.
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<member name="T:NUnit.Framework.ValueSourceAttribute">
<summary>
ValueSourceAttribute indicates the source to be used to
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<member name="M:NUnit.Framework.ValueSourceAttribute.#ctor(System.String)">
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Construct with the name of the factory - for use with languages
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<member name="M:NUnit.Framework.ValueSourceAttribute.#ctor(System.Type,System.String)">
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Construct with a Type and name - for use with languages
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Gets an enumeration of data items for use as arguments
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An enumeration containing individual data items
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<member name="P:NUnit.Framework.ValueSourceAttribute.SourceName">
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The name of a the method, property or fiend to be used as a source
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<member name="P:NUnit.Framework.ValueSourceAttribute.SourceType">
<summary>
A Type to be used as a source
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<member name="T:NUnit.Framework.SetCultureAttribute">
<summary>
Summary description for SetCultureAttribute.
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<member name="M:NUnit.Framework.SetCultureAttribute.#ctor(System.String)">
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Construct given the name of a culture
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<member name="T:NUnit.Framework.RandomAttribute">
<summary>
RandomAttribute is used to supply a set of random _values
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<member name="M:NUnit.Framework.RandomAttribute.#ctor(System.Int32)">
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Construct a random set of values appropriate for the Type of the
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Construct a set of ints within a specified range
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Construct a set of unsigned ints within a specified range
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Construct a set of longs within a specified range
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Construct a set of unsigned longs within a specified range
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Construct a set of shorts within a specified range
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<member name="M:NUnit.Framework.RandomAttribute.#ctor(System.UInt16,System.UInt16,System.Int32)">
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Construct a set of unsigned shorts within a specified range
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Construct a set of doubles within a specified range
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<member name="M:NUnit.Framework.RandomAttribute.#ctor(System.Single,System.Single,System.Int32)">
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Construct a set of floats within a specified range
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<member name="M:NUnit.Framework.RandomAttribute.#ctor(System.Byte,System.Byte,System.Int32)">
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Construct a set of bytes within a specified range
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<member name="M:NUnit.Framework.RandomAttribute.#ctor(System.SByte,System.SByte,System.Int32)">
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Construct a set of sbytes within a specified range
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<member name="M:NUnit.Framework.RandomAttribute.GetData(NUnit.Framework.Interfaces.IParameterInfo)">
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Get the collection of _values to be used as arguments.
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<member name="T:NUnit.Framework.TestDelegate">
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Delegate used by tests that execute code and
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TNode represents a single node in the XML representation
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<member name="M:NUnit.Framework.Interfaces.TNode.#ctor(System.String)">
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Constructs a new instance of TNode
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<member name="M:NUnit.Framework.Interfaces.TNode.#ctor(System.String,System.String)">
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Constructs a new instance of TNode with a value
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<member name="M:NUnit.Framework.Interfaces.TNode.#ctor(System.String,System.String,System.Boolean)">
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Constructs a new instance of TNode with a value
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<member name="M:NUnit.Framework.Interfaces.TNode.FromXml(System.String)">
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Create a TNode from it's XML text representation
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Adds a new element as a child of the current node and returns it.
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Adds a new element with a value as a child of the current node and returns it.
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<param name="name">The element name</param>
<param name="value">The text content of the new element</param>
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Adds a new element with a value as a child of the current node and returns it.
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<param name="name">The element name</param>
<param name="value">The text content of the new element</param>
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Adds an attribute with a specified name and value to the XmlNode.
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Finds a single descendant of this node matching an xpath
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Finds all descendants of this node matching an xpath
specification. The format of the specification is
limited to what is needed by NUnit and its tests.
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Writes the XML representation of the node to an XmlWriter
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Gets the name of the node
</summary>
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<member name="P:NUnit.Framework.Interfaces.TNode.Value">
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Gets the value of the node
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<member name="P:NUnit.Framework.Interfaces.TNode.ValueIsCDATA">
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Gets a flag indicating whether the value should be output using CDATA.
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<member name="P:NUnit.Framework.Interfaces.TNode.Attributes">
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Gets the dictionary of attributes
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<member name="P:NUnit.Framework.Interfaces.TNode.ChildNodes">
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Gets a list of child nodes
</summary>
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Gets the first ChildNode
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Gets the XML representation of this node.
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Class used to represent a list of XmlResults
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<member name="T:NUnit.Framework.Interfaces.AttributeDictionary">
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Class used to represent the attributes of a node
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.AttributeDictionary.Item(System.String)">
<summary>
Gets or sets the value associated with the specified key.
Overridden to return null if attribute is not found.
</summary>
<param name="key">The key.</param>
<returns>Value of the attribute or null</returns>
</member>
<member name="T:NUnit.Framework.Api.ITestAssemblyRunner">
<summary>
The ITestAssemblyRunner interface is implemented by classes
that are able to execute a suite of tests loaded
from an assembly.
</summary>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.Load(System.String,System.Collections.Generic.IDictionary{System.String,System.Object})">
<summary>
Loads the tests found in an Assembly, returning an
indication of whether or not the load succeeded.
</summary>
<param name="assemblyName">File name of the assembly to load</param>
<param name="settings">Dictionary of options to use in loading the test</param>
<returns>An ITest representing the loaded tests</returns>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.Load(System.Reflection.Assembly,System.Collections.Generic.IDictionary{System.String,System.Object})">
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Loads the tests found in an Assembly, returning an
indication of whether or not the load succeeded.
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<param name="settings">Dictionary of options to use in loading the test</param>
<returns>An ITest representing the loaded tests</returns>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.CountTestCases(NUnit.Framework.Interfaces.ITestFilter)">
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Count Test Cases using a filter
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<returns>The number of test cases found</returns>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.Run(NUnit.Framework.Interfaces.ITestListener,NUnit.Framework.Interfaces.ITestFilter)">
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Run selected tests and return a test result. The test is run synchronously,
and the listener interface is notified as it progresses.
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.RunAsync(NUnit.Framework.Interfaces.ITestListener,NUnit.Framework.Interfaces.ITestFilter)">
<summary>
Run selected tests asynchronously, notifying the listener interface as it progresses.
</summary>
<param name="listener">Interface to receive EventListener notifications.</param>
<param name="filter">A test filter used to select tests to be run</param>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.WaitForCompletion(System.Int32)">
<summary>
Wait for the ongoing run to complete.
</summary>
<param name="timeout">Time to wait in milliseconds</param>
<returns>True if the run completed, otherwise false</returns>
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<member name="M:NUnit.Framework.Api.ITestAssemblyRunner.StopRun(System.Boolean)">
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Signal any test run that is in process to stop. Return without error if no test is running.
</summary>
<param name="force">If true, kill any test-running threads</param>
</member>
<member name="P:NUnit.Framework.Api.ITestAssemblyRunner.LoadedTest">
<summary>
Gets the tree of loaded tests, or null if
no tests have been loaded.
</summary>
</member>
<member name="P:NUnit.Framework.Api.ITestAssemblyRunner.Result">
<summary>
Gets the tree of test results, if the test
run is completed, otherwise null.
</summary>
</member>
<member name="P:NUnit.Framework.Api.ITestAssemblyRunner.IsTestLoaded">
<summary>
Indicates whether a test has been loaded
</summary>
</member>
<member name="P:NUnit.Framework.Api.ITestAssemblyRunner.IsTestRunning">
<summary>
Indicates whether a test is currently running
</summary>
</member>
<member name="P:NUnit.Framework.Api.ITestAssemblyRunner.IsTestComplete">
<summary>
Indicates whether a test run is complete
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ToleranceMode">
<summary>
Modes in which the tolerance value for a comparison can be interpreted.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ToleranceMode.Unset">
<summary>
The tolerance was created with a value, without specifying
how the value would be used. This is used to prevent setting
the mode more than once and is generally changed to Linear
upon execution of the test.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ToleranceMode.Linear">
<summary>
The tolerance is used as a numeric range within which
two compared _values are considered to be equal.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ToleranceMode.Percent">
<summary>
Interprets the tolerance as the percentage by which
the two compared _values my deviate from each other.
</summary>
</member>
<member name="F:NUnit.Framework.Constraints.ToleranceMode.Ulps">
<summary>
Compares two _values based in their distance in
representable numbers.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.ResolvableConstraintExpression">
<summary>
ResolvableConstraintExpression is used to represent a compound
constraint being constructed at a point where the last operator
may either terminate the expression or may have additional
qualifying constraints added to it.
It is used, for example, for a Property element or for
an Exception element, either of which may be optionally
followed by constraints that apply to the property or
exception.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ResolvableConstraintExpression.#ctor">
<summary>
Create a new instance of ResolvableConstraintExpression
</summary>
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<member name="M:NUnit.Framework.Constraints.ResolvableConstraintExpression.#ctor(NUnit.Framework.Constraints.ConstraintBuilder)">
<summary>
Create a new instance of ResolvableConstraintExpression,
passing in a pre-populated ConstraintBuilder.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.ResolvableConstraintExpression.NUnit#Framework#Constraints#IResolveConstraint#Resolve">
<summary>
Resolve the current expression to a Constraint
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ResolvableConstraintExpression.And">
<summary>
Appends an And Operator to the expression
</summary>
</member>
<member name="P:NUnit.Framework.Constraints.ResolvableConstraintExpression.Or">
<summary>
Appends an Or operator to the expression.
</summary>
</member>
<member name="T:NUnit.Framework.Constraints.NotOperator">
<summary>
Negates the test of the constraint it wraps.
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NotOperator.#ctor">
<summary>
Constructs a new NotOperator
</summary>
</member>
<member name="M:NUnit.Framework.Constraints.NotOperator.ApplyPrefix(NUnit.Framework.Constraints.IConstraint)">
<summary>
Returns a NotConstraint applied to its argument.
</summary>
</member>
<member name="T:NUnit.Framework.SetUpFixtureAttribute">
<summary>
SetUpFixtureAttribute is used to identify a SetUpFixture
</summary>
</member>
<member name="M:NUnit.Framework.SetUpFixtureAttribute.BuildFrom(NUnit.Framework.Interfaces.ITypeInfo)">
<summary>
Build a SetUpFixture from type provided. Normally called for a Type
on which the attribute has been placed.
</summary>
<param name="typeInfo">The type info of the fixture to be used.</param>
<returns>A SetUpFixture object as a TestSuite.</returns>
</member>
<member name="T:NUnit.Framework.RequiresMTAAttribute">
<summary>
Marks a test that must run in the MTA, causing it
to run in a separate thread if necessary.
On methods, you may also use MTAThreadAttribute
to serve the same purpose.
</summary>
</member>
<member name="M:NUnit.Framework.RequiresMTAAttribute.#ctor">
<summary>
Construct a RequiresMTAAttribute
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.ResultState">
<summary>
The ResultState class represents the outcome of running a test.
It contains two pieces of information. The Status of the test
is an enum indicating whether the test passed, failed, was
skipped or was inconclusive. The Label provides a more
detailed breakdown for use by client runners.
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.#ctor(NUnit.Framework.Interfaces.TestStatus)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Interfaces.ResultState"/> class.
</summary>
<param name="status">The TestStatus.</param>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.#ctor(NUnit.Framework.Interfaces.TestStatus,System.String)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Interfaces.ResultState"/> class.
</summary>
<param name="status">The TestStatus.</param>
<param name="label">The label.</param>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.#ctor(NUnit.Framework.Interfaces.TestStatus,NUnit.Framework.Interfaces.FailureSite)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Interfaces.ResultState"/> class.
</summary>
<param name="status">The TestStatus.</param>
<param name="site">The stage at which the result was produced</param>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.#ctor(NUnit.Framework.Interfaces.TestStatus,System.String,NUnit.Framework.Interfaces.FailureSite)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Interfaces.ResultState"/> class.
</summary>
<param name="status">The TestStatus.</param>
<param name="label">The label.</param>
<param name="site">The stage at which the result was produced</param>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Inconclusive">
<summary>
The result is inconclusive
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Skipped">
<summary>
The test has been skipped.
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Ignored">
<summary>
The test has been ignored.
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Explicit">
<summary>
The test was skipped because it is explicit
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Success">
<summary>
The test succeeded
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Failure">
<summary>
The test failed
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Error">
<summary>
The test encountered an unexpected exception
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.Cancelled">
<summary>
The test was cancelled by the user
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.NotRunnable">
<summary>
The test was not runnable.
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.ChildFailure">
<summary>
A suite failed because one or more child tests failed or had errors
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.SetUpFailure">
<summary>
A suite failed in its OneTimeSetUp
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.SetUpError">
<summary>
A suite had an unexpected exception in its OneTimeSetUp
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.ResultState.TearDownError">
<summary>
A suite had an unexpected exception in its OneTimeDown
</summary>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.WithSite(NUnit.Framework.Interfaces.FailureSite)">
<summary>
Get a new ResultState, which is the same as the current
one but with the FailureSite set to the specified value.
</summary>
<param name="site">The FailureSite to use</param>
<returns>A new ResultState</returns>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.Equals(System.Object)">
<summary>
Determines whether the specified <see cref="T:System.Object"/>, is equal to this instance.
</summary>
<param name="obj">The <see cref="T:System.Object"/> to compare with this instance.</param>
<returns>
<c>true</c> if the specified <see cref="T:System.Object"/> is equal to this instance; otherwise, <c>false</c>.
</returns>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.GetHashCode">
<summary>
Returns a hash code for this instance.
</summary>
<returns>
A hash code for this instance, suitable for use in hashing algorithms and data structures like a hash table.
</returns>
</member>
<member name="M:NUnit.Framework.Interfaces.ResultState.ToString">
<summary>
Returns a <see cref="T:System.String"/> that represents this instance.
</summary>
<returns>
A <see cref="T:System.String"/> that represents this instance.
</returns>
</member>
<member name="P:NUnit.Framework.Interfaces.ResultState.Status">
<summary>
Gets the TestStatus for the test.
</summary>
<value>The status.</value>
</member>
<member name="P:NUnit.Framework.Interfaces.ResultState.Label">
<summary>
Gets the label under which this test result is
categorized, if any.
</summary>
</member>
<member name="P:NUnit.Framework.Interfaces.ResultState.Site">
<summary>
Gets the stage of test execution in which
the failure or other result took place.
</summary>
</member>
<member name="T:NUnit.Framework.Interfaces.FailureSite">
<summary>
The FailureSite enum indicates the stage of a test
in which an error or failure occurred.
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.FailureSite.Test">
<summary>
Failure in the test itself
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.FailureSite.SetUp">
<summary>
Failure in the SetUp method
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.FailureSite.TearDown">
<summary>
Failure in the TearDown method
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.FailureSite.Parent">
<summary>
Failure of a parent test
</summary>
</member>
<member name="F:NUnit.Framework.Interfaces.FailureSite.Child">
<summary>
Failure of a child test
</summary>
</member>
<member name="T:NUnit.Framework.TestFixtureData">
<summary>
The TestFixtureData class represents a set of arguments
and other parameter info to be used for a parameterized
fixture. It is derived from TestFixtureParameters and adds a
fluent syntax for use in initializing the fixture.
</summary>
</member>
<member name="M:NUnit.Framework.TestFixtureData.#ctor(System.Object[])">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.TestFixtureData"/> class.
</summary>
<param name="args">The arguments.</param>
</member>
<member name="M:NUnit.Framework.TestFixtureData.#ctor(System.Object)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.TestFixtureData"/> class.
</summary>
<param name="arg">The argument.</param>
</member>
<member name="M:NUnit.Framework.TestFixtureData.#ctor(System.Object,System.Object)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.TestFixtureData"/> class.
</summary>
<param name="arg1">The first argument.</param>
<param name="arg2">The second argument.</param>
</member>
<member name="M:NUnit.Framework.TestFixtureData.#ctor(System.Object,System.Object,System.Object)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.TestFixtureData"/> class.
</summary>
<param name="arg1">The first argument.</param>
<param name="arg2">The second argument.</param>
<param name="arg3">The third argument.</param>
</member>
<member name="M:NUnit.Framework.TestFixtureData.Explicit">
<summary>
Marks the test fixture as explicit.
</summary>
</member>
<member name="M:NUnit.Framework.TestFixtureData.Explicit(System.String)">
<summary>
Marks the test fixture as explicit, specifying the reason.
</summary>
</member>
<member name="M:NUnit.Framework.TestFixtureData.Ignore(System.String)">
<summary>
Ignores this TestFixture, specifying the reason.
</summary>
<param name="reason">The reason.</param>
<returns></returns>
</member>
<member name="T:System.Collections.Concurrent.ConcurrentQueue`1">
<summary>
Represents a thread-safe first-in, first-out collection of objects.
</summary>
<typeparam name="T">Specifies the type of elements in the queue.</typeparam>
<remarks>
All public and protected members of <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> are thread-safe and may be used
concurrently from multiple threads.
</remarks>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.#ctor">
<summary>
Initializes a new instance of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> class.
</summary>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.#ctor(System.Collections.Generic.IEnumerable{`0})">
<summary>
Initializes a new instance of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>
class that contains elements copied from the specified collection
</summary>
<param name="collection">The collection whose elements are copied to the new <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.</param>
<exception cref="T:System.ArgumentNullException">The <paramref name="collection"/> argument is
null.</exception>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.Enqueue(`0)">
<summary>
Adds an object to the end of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.
</summary>
<param name="item">The object to add to the end of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>. The value can be a null reference
(Nothing in Visual Basic) for reference types.
</param>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#Concurrent#IProducerConsumerCollection{T}#TryAdd(`0)">
<summary>
Attempts to add an object to the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection{T}"/>.
</summary>
<param name="item">The object to add to the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection{T}"/>. The value can be a null
reference (Nothing in Visual Basic) for reference types.
</param>
<returns>true if the object was added successfully; otherwise, false.</returns>
<remarks>For <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>, this operation will always add the object to the
end of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>
and return true.</remarks>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.TryDequeue(`0@)">
<summary>
Attempts to remove and return the object at the beginning of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.
</summary>
<param name="result">
When this method returns, if the operation was successful, <paramref name="result"/> contains the
object removed. If no object was available to be removed, the value is unspecified.
</param>
<returns>true if an element was removed and returned from the beginning of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>
successfully; otherwise, false.</returns>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.TryPeek(`0@)">
<summary>
Attempts to return an object from the beginning of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>
without removing it.
</summary>
<param name="result">When this method returns, <paramref name="result"/> contains an object from
the beginning of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue{T}"/> or an
unspecified value if the operation failed.</param>
<returns>true if and object was returned successfully; otherwise, false.</returns>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#IEnumerable#GetEnumerator">
<summary>
Returns an enumerator that iterates through a collection.
</summary>
<returns>An <see cref="T:System.Collections.IEnumerator"/> that can be used to iterate through the collection.</returns>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.GetEnumerator">
<summary>
Returns an enumerator that iterates through the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.
</summary>
<returns>An enumerator for the contents of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.</returns>
<remarks>
The enumeration represents a moment-in-time snapshot of the contents
of the queue. It does not reflect any updates to the collection after
<see cref="M:System.Collections.Concurrent.ConcurrentQueue`1.GetEnumerator"/> was called. The enumerator is safe to use
concurrently with reads from and writes to the queue.
</remarks>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#ICollection#CopyTo(System.Array,System.Int32)">
<summary>
Copies the elements of the <see cref="T:System.Collections.ICollection"/> to an <see cref="T:System.Array"/>, starting at a particular
<see cref="T:System.Array"/> index.
</summary>
<param name="array">The one-dimensional <see cref="T:System.Array">Array</see> that is the
destination of the elements copied from the
<see cref="T:System.Collections.Concurrent.ConcurrentBag"/>. The <see cref="T:System.Array">Array</see> must have zero-based indexing.</param>
<param name="index">The zero-based index in <paramref name="array"/> at which copying
begins.</param>
<exception cref="T:System.ArgumentNullException"><paramref name="array"/> is a null reference (Nothing in
Visual Basic).</exception>
<exception cref="T:System.ArgumentOutOfRangeException"><paramref name="index"/> is less than
zero.</exception>
<exception cref="T:System.ArgumentException">
<paramref name="array"/> is multidimensional. -or-
<paramref name="array"/> does not have zero-based indexing. -or-
<paramref name="index"/> is equal to or greater than the length of the <paramref name="array"/>
-or- The number of elements in the source <see cref="T:System.Collections.ICollection"/> is
greater than the available space from <paramref name="index"/> to the end of the destination
<paramref name="array"/>. -or- The type of the source <see cref="T:System.Collections.ICollection"/> cannot be cast automatically to the type of the
destination <paramref name="array"/>.
</exception>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.CopyTo(`0[],System.Int32)">
<summary>
Copies the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> elements to an existing one-dimensional <see cref="T:System.Array">Array</see>, starting at the specified array index.
</summary>
<param name="array">The one-dimensional <see cref="T:System.Array">Array</see> that is the
destination of the elements copied from the
<see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>. The <see cref="T:System.Array">Array</see> must have zero-based
indexing.</param>
<param name="index">The zero-based index in <paramref name="array"/> at which copying
begins.</param>
<exception cref="T:System.ArgumentNullException"><paramref name="array"/> is a null reference (Nothing in
Visual Basic).</exception>
<exception cref="T:System.ArgumentOutOfRangeException"><paramref name="index"/> is less than
zero.</exception>
<exception cref="T:System.ArgumentException"><paramref name="index"/> is equal to or greater than the
length of the <paramref name="array"/>
-or- The number of elements in the source <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> is greater than the
available space from <paramref name="index"/> to the end of the destination <paramref name="array"/>.
</exception>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.ToArray">
<summary>
Copies the elements stored in the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> to a new array.
</summary>
<returns>A new array containing a snapshot of elements copied from the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.</returns>
</member>
<member name="M:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#Concurrent#IProducerConsumerCollection{T}#TryTake(`0@)">
<summary>
Attempts to remove and return an object from the <see cref="T:System.Collections.Concurrent.IProducerConsumerCollection{T}"/>.
</summary>
<param name="item">
When this method returns, if the operation was successful, <paramref name="item"/> contains the
object removed. If no object was available to be removed, the value is unspecified.
</param>
<returns>true if an element was removed and returned successfully; otherwise, false.</returns>
<remarks>For <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>, this operation will attempt to remove the object
from the beginning of the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.
</remarks>
</member>
<member name="P:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#ICollection#IsSynchronized">
<summary>
Gets a value indicating whether access to the <see cref="T:System.Collections.ICollection"/> is
synchronized with the SyncRoot.
</summary>
<value>true if access to the <see cref="T:System.Collections.ICollection"/> is synchronized
with the SyncRoot; otherwise, false. For <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>, this property always
returns false.</value>
</member>
<member name="P:System.Collections.Concurrent.ConcurrentQueue`1.System#Collections#ICollection#SyncRoot">
<summary>
Gets an object that can be used to synchronize access to the <see
cref="T:System.Collections.ICollection"/>. This property is not supported.
</summary>
<exception cref="T:System.NotSupportedException">The SyncRoot property is not supported.</exception>
</member>
<member name="P:System.Collections.Concurrent.ConcurrentQueue`1.Count">
<summary>
Gets the number of elements contained in the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.
</summary>
<value>The number of elements contained in the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/>.</value>
<remarks>
For determining whether the collection contains any items, use of the <see cref="P:System.Collections.Concurrent.ConcurrentQueue`1.IsEmpty"/>
property is recommended rather than retrieving the number of items from the <see cref="P:System.Collections.Concurrent.ConcurrentQueue`1.Count"/>
property and comparing it to 0.
</remarks>
</member>
<member name="P:System.Collections.Concurrent.ConcurrentQueue`1.IsEmpty">
<summary>
Gets a value that indicates whether the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> is empty.
</summary>
<value>true if the <see cref="T:System.Collections.Concurrent.ConcurrentQueue`1"/> is empty; otherwise, false.</value>
<remarks>
For determining whether the collection contains any items, use of this property is recommended
rather than retrieving the number of items from the <see cref="P:System.Collections.Concurrent.ConcurrentQueue`1.Count"/> property and comparing it
to 0. However, as this collection is intended to be accessed concurrently, it may be the case
that another thread will modify the collection after <see cref="P:System.Collections.Concurrent.ConcurrentQueue`1.IsEmpty"/> returns, thus invalidating
the result.
</remarks>
</member>
<member name="T:NUnit.Framework.Api.NUnitTestAssemblyRunner">
<summary>
Implementation of ITestAssemblyRunner
</summary>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.#ctor(NUnit.Framework.Api.ITestAssemblyBuilder)">
<summary>
Initializes a new instance of the <see cref="T:NUnit.Framework.Api.NUnitTestAssemblyRunner"/> class.
</summary>
<param name="builder">The builder.</param>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.Load(System.String,System.Collections.Generic.IDictionary{System.String,System.Object})">
<summary>
Loads the tests found in an Assembly
</summary>
<param name="assemblyName">File name of the assembly to load</param>
<param name="settings">Dictionary of option settings for loading the assembly</param>
<returns>True if the load was successful</returns>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.Load(System.Reflection.Assembly,System.Collections.Generic.IDictionary{System.String,System.Object})">
<summary>
Loads the tests found in an Assembly
</summary>
<param name="assembly">The assembly to load</param>
<param name="settings">Dictionary of option settings for loading the assembly</param>
<returns>True if the load was successful</returns>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.CountTestCases(NUnit.Framework.Interfaces.ITestFilter)">
<summary>
Count Test Cases using a filter
</summary>
<param name="filter">The filter to apply</param>
<returns>The number of test cases found</returns>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.Run(NUnit.Framework.Interfaces.ITestListener,NUnit.Framework.Interfaces.ITestFilter)">
<summary>
Run selected tests and return a test result. The test is run synchronously,
and the listener interface is notified as it progresses.
</summary>
<param name="listener">Interface to receive EventListener notifications.</param>
<param name="filter">A test filter used to select tests to be run</param>
<returns></returns>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.RunAsync(NUnit.Framework.Interfaces.ITestListener,NUnit.Framework.Interfaces.ITestFilter)">
<summary>
Run selected tests asynchronously, notifying the listener interface as it progresses.
</summary>
<param name="listener">Interface to receive EventListener notifications.</param>
<param name="filter">A test filter used to select tests to be run</param>
<remarks>
RunAsync is a template method, calling various abstract and
virtual methods to be overridden by derived classes.
</remarks>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.WaitForCompletion(System.Int32)">
<summary>
Wait for the ongoing run to complete.
</summary>
<param name="timeout">Time to wait in milliseconds</param>
<returns>True if the run completed, otherwise false</returns>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.StopRun(System.Boolean)">
<summary>
Signal any test run that is in process to stop. Return without error if no test is running.
</summary>
<param name="force">If true, kill any tests that are currently running</param>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.StartRun(NUnit.Framework.Interfaces.ITestListener)">
<summary>
Initiate the test run.
</summary>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.CreateTestExecutionContext(NUnit.Framework.Interfaces.ITestListener)">
<summary>
Create the initial TestExecutionContext used to run tests
</summary>
<param name="listener">The ITestListener specified in the RunAsync call</param>
</member>
<member name="M:NUnit.Framework.Api.NUnitTestAssemblyRunner.OnRunCompleted(System.Object,System.EventArgs)">
<summary>
Handle the the Completed event for the top level work item
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.LoadedTest">
<summary>
The tree of tests that was loaded by the builder
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.Result">
<summary>
The test result, if a run has completed
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.IsTestLoaded">
<summary>
Indicates whether a test is loaded
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.IsTestRunning">
<summary>
Indicates whether a test is running
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.IsTestComplete">
<summary>
Indicates whether a test run is complete
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.Settings">
<summary>
Our settings, specified when loading the assembly
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.TopLevelWorkItem">
<summary>
The top level WorkItem created for the assembly as a whole
</summary>
</member>
<member name="P:NUnit.Framework.Api.NUnitTestAssemblyRunner.Context">
<summary>
The TestExecutionContext for the top level WorkItem
</summary>
</member>
</members>
</doc>