Upgrading server dependancies (#8308)
Этот коммит содержится в:
коммит произвёл
Joram Wilander
родитель
b112747de7
Коммит
6d8f122a51
64
vendor/github.com/stretchr/testify/assert/assertions.go
сгенерированный
поставляемый
64
vendor/github.com/stretchr/testify/assert/assertions.go
сгенерированный
поставляемый
@@ -307,8 +307,6 @@ func IsType(t TestingT, expectedType interface{}, object interface{}, msgAndArgs
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//
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// assert.Equal(t, 123, 123)
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//
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// Returns whether the assertion was successful (true) or not (false).
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//
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// Pointer variable equality is determined based on the equality of the
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// referenced values (as opposed to the memory addresses). Function equality
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// cannot be determined and will always fail.
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@@ -350,8 +348,6 @@ func formatUnequalValues(expected, actual interface{}) (e string, a string) {
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// and equal.
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//
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// assert.EqualValues(t, uint32(123), int32(123))
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//
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// Returns whether the assertion was successful (true) or not (false).
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func EqualValues(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool {
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if !ObjectsAreEqualValues(expected, actual) {
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@@ -369,8 +365,6 @@ func EqualValues(t TestingT, expected, actual interface{}, msgAndArgs ...interfa
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// Exactly asserts that two objects are equal in value and type.
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//
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// assert.Exactly(t, int32(123), int64(123))
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Exactly(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool {
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aType := reflect.TypeOf(expected)
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@@ -387,8 +381,6 @@ func Exactly(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}
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// NotNil asserts that the specified object is not nil.
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//
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// assert.NotNil(t, err)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotNil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool {
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if !isNil(object) {
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return true
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@@ -414,8 +406,6 @@ func isNil(object interface{}) bool {
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// Nil asserts that the specified object is nil.
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//
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// assert.Nil(t, err)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Nil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool {
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if isNil(object) {
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return true
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@@ -455,8 +445,6 @@ func isEmpty(object interface{}) bool {
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// a slice or a channel with len == 0.
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//
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// assert.Empty(t, obj)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool {
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pass := isEmpty(object)
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@@ -474,8 +462,6 @@ func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool {
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// if assert.NotEmpty(t, obj) {
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// assert.Equal(t, "two", obj[1])
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// }
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotEmpty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool {
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pass := !isEmpty(object)
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@@ -503,8 +489,6 @@ func getLen(x interface{}) (ok bool, length int) {
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// Len also fails if the object has a type that len() not accept.
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//
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// assert.Len(t, mySlice, 3)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{}) bool {
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ok, l := getLen(object)
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if !ok {
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@@ -520,8 +504,6 @@ func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{})
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// True asserts that the specified value is true.
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//
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// assert.True(t, myBool)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func True(t TestingT, value bool, msgAndArgs ...interface{}) bool {
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if value != true {
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@@ -535,8 +517,6 @@ func True(t TestingT, value bool, msgAndArgs ...interface{}) bool {
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// False asserts that the specified value is false.
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//
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// assert.False(t, myBool)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func False(t TestingT, value bool, msgAndArgs ...interface{}) bool {
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if value != false {
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@@ -551,8 +531,6 @@ func False(t TestingT, value bool, msgAndArgs ...interface{}) bool {
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//
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// assert.NotEqual(t, obj1, obj2)
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//
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// Returns whether the assertion was successful (true) or not (false).
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//
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// Pointer variable equality is determined based on the equality of the
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// referenced values (as opposed to the memory addresses).
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func NotEqual(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool {
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@@ -613,8 +591,6 @@ func includeElement(list interface{}, element interface{}) (ok, found bool) {
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// assert.Contains(t, "Hello World", "World")
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// assert.Contains(t, ["Hello", "World"], "World")
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// assert.Contains(t, {"Hello": "World"}, "Hello")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Contains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool {
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ok, found := includeElement(s, contains)
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@@ -635,8 +611,6 @@ func Contains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bo
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// assert.NotContains(t, "Hello World", "Earth")
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// assert.NotContains(t, ["Hello", "World"], "Earth")
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// assert.NotContains(t, {"Hello": "World"}, "Earth")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotContains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool {
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ok, found := includeElement(s, contains)
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@@ -655,8 +629,6 @@ func NotContains(t TestingT, s, contains interface{}, msgAndArgs ...interface{})
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// elements given in the specified subset(array, slice...).
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//
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// assert.Subset(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Subset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) {
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if subset == nil {
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return true // we consider nil to be equal to the nil set
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@@ -698,8 +670,6 @@ func Subset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok
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// elements given in the specified subset(array, slice...).
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//
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// assert.NotSubset(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotSubset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) {
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if subset == nil {
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return Fail(t, fmt.Sprintf("nil is the empty set which is a subset of every set"), msgAndArgs...)
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@@ -741,9 +711,7 @@ func NotSubset(t TestingT, list, subset interface{}, msgAndArgs ...interface{})
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// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements,
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// the number of appearances of each of them in both lists should match.
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//
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// assert.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2]))
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//
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// Returns whether the assertion was successful (true) or not (false).
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// assert.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2])
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func ElementsMatch(t TestingT, listA, listB interface{}, msgAndArgs ...interface{}) (ok bool) {
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if isEmpty(listA) && isEmpty(listB) {
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return true
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@@ -831,8 +799,6 @@ func didPanic(f PanicTestFunc) (bool, interface{}) {
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// Panics asserts that the code inside the specified PanicTestFunc panics.
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//
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// assert.Panics(t, func(){ GoCrazy() })
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Panics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool {
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if funcDidPanic, panicValue := didPanic(f); !funcDidPanic {
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@@ -846,8 +812,6 @@ func Panics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool {
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// the recovered panic value equals the expected panic value.
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//
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// assert.PanicsWithValue(t, "crazy error", func(){ GoCrazy() })
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//
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// Returns whether the assertion was successful (true) or not (false).
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func PanicsWithValue(t TestingT, expected interface{}, f PanicTestFunc, msgAndArgs ...interface{}) bool {
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funcDidPanic, panicValue := didPanic(f)
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@@ -864,8 +828,6 @@ func PanicsWithValue(t TestingT, expected interface{}, f PanicTestFunc, msgAndAr
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// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic.
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//
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// assert.NotPanics(t, func(){ RemainCalm() })
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotPanics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool {
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if funcDidPanic, panicValue := didPanic(f); funcDidPanic {
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@@ -878,8 +840,6 @@ func NotPanics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool {
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// WithinDuration asserts that the two times are within duration delta of each other.
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//
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// assert.WithinDuration(t, time.Now(), time.Now(), 10*time.Second)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func WithinDuration(t TestingT, expected, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) bool {
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dt := expected.Sub(actual)
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@@ -929,8 +889,6 @@ func toFloat(x interface{}) (float64, bool) {
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// InDelta asserts that the two numerals are within delta of each other.
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//
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// assert.InDelta(t, math.Pi, (22 / 7.0), 0.01)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func InDelta(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool {
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af, aok := toFloat(expected)
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@@ -989,7 +947,7 @@ func InDeltaMapValues(t TestingT, expected, actual interface{}, delta float64, m
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actualMap := reflect.ValueOf(actual)
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if expectedMap.Len() != actualMap.Len() {
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return Fail(t, "Arguments must have the same numbe of keys", msgAndArgs...)
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return Fail(t, "Arguments must have the same number of keys", msgAndArgs...)
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}
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for _, k := range expectedMap.MapKeys() {
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@@ -1035,8 +993,6 @@ func calcRelativeError(expected, actual interface{}) (float64, error) {
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}
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// InEpsilon asserts that expected and actual have a relative error less than epsilon
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//
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// Returns whether the assertion was successful (true) or not (false).
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func InEpsilon(t TestingT, expected, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool {
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actualEpsilon, err := calcRelativeError(expected, actual)
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if err != nil {
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@@ -1081,8 +1037,6 @@ func InEpsilonSlice(t TestingT, expected, actual interface{}, epsilon float64, m
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// if assert.NoError(t, err) {
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// assert.Equal(t, expectedObj, actualObj)
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// }
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NoError(t TestingT, err error, msgAndArgs ...interface{}) bool {
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if err != nil {
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return Fail(t, fmt.Sprintf("Received unexpected error:\n%+v", err), msgAndArgs...)
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@@ -1097,8 +1051,6 @@ func NoError(t TestingT, err error, msgAndArgs ...interface{}) bool {
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// if assert.Error(t, err) {
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// assert.Equal(t, expectedError, err)
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// }
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Error(t TestingT, err error, msgAndArgs ...interface{}) bool {
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if err == nil {
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@@ -1113,8 +1065,6 @@ func Error(t TestingT, err error, msgAndArgs ...interface{}) bool {
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//
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// actualObj, err := SomeFunction()
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// assert.EqualError(t, err, expectedErrorString)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func EqualError(t TestingT, theError error, errString string, msgAndArgs ...interface{}) bool {
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if !Error(t, theError, msgAndArgs...) {
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return false
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@@ -1148,8 +1098,6 @@ func matchRegexp(rx interface{}, str interface{}) bool {
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//
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// assert.Regexp(t, regexp.MustCompile("start"), "it's starting")
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// assert.Regexp(t, "start...$", "it's not starting")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool {
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match := matchRegexp(rx, str)
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@@ -1165,8 +1113,6 @@ func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface
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//
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// assert.NotRegexp(t, regexp.MustCompile("starts"), "it's starting")
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// assert.NotRegexp(t, "^start", "it's not starting")
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//
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// Returns whether the assertion was successful (true) or not (false).
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func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool {
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match := matchRegexp(rx, str)
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@@ -1178,7 +1124,7 @@ func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interf
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}
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// Zero asserts that i is the zero value for its type and returns the truth.
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// Zero asserts that i is the zero value for its type.
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func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool {
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if i != nil && !reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) {
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return Fail(t, fmt.Sprintf("Should be zero, but was %v", i), msgAndArgs...)
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@@ -1186,7 +1132,7 @@ func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool {
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return true
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}
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// NotZero asserts that i is not the zero value for its type and returns the truth.
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// NotZero asserts that i is not the zero value for its type.
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func NotZero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool {
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if i == nil || reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) {
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return Fail(t, fmt.Sprintf("Should not be zero, but was %v", i), msgAndArgs...)
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@@ -1227,8 +1173,6 @@ func DirExists(t TestingT, path string, msgAndArgs ...interface{}) bool {
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// JSONEq asserts that two JSON strings are equivalent.
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//
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// assert.JSONEq(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`)
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//
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// Returns whether the assertion was successful (true) or not (false).
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func JSONEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) bool {
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var expectedJSONAsInterface, actualJSONAsInterface interface{}
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