forked from gitea/gitea
310 lines
6.6 KiB
Go
310 lines
6.6 KiB
Go
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package assert
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import (
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"fmt"
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"reflect"
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)
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func compare(obj1, obj2 interface{}, kind reflect.Kind) (int, bool) {
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switch kind {
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case reflect.Int:
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{
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intobj1 := obj1.(int)
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intobj2 := obj2.(int)
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if intobj1 > intobj2 {
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return -1, true
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}
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if intobj1 == intobj2 {
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return 0, true
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}
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if intobj1 < intobj2 {
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return 1, true
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}
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}
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case reflect.Int8:
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{
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int8obj1 := obj1.(int8)
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int8obj2 := obj2.(int8)
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if int8obj1 > int8obj2 {
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return -1, true
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}
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if int8obj1 == int8obj2 {
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return 0, true
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}
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if int8obj1 < int8obj2 {
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return 1, true
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}
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}
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case reflect.Int16:
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{
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int16obj1 := obj1.(int16)
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int16obj2 := obj2.(int16)
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if int16obj1 > int16obj2 {
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return -1, true
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}
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if int16obj1 == int16obj2 {
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return 0, true
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}
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if int16obj1 < int16obj2 {
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return 1, true
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}
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}
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case reflect.Int32:
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{
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int32obj1 := obj1.(int32)
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int32obj2 := obj2.(int32)
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if int32obj1 > int32obj2 {
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return -1, true
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}
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if int32obj1 == int32obj2 {
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return 0, true
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}
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if int32obj1 < int32obj2 {
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return 1, true
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}
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}
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case reflect.Int64:
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{
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int64obj1 := obj1.(int64)
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int64obj2 := obj2.(int64)
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if int64obj1 > int64obj2 {
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return -1, true
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}
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if int64obj1 == int64obj2 {
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return 0, true
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}
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if int64obj1 < int64obj2 {
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return 1, true
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}
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}
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case reflect.Uint:
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{
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uintobj1 := obj1.(uint)
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uintobj2 := obj2.(uint)
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if uintobj1 > uintobj2 {
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return -1, true
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}
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if uintobj1 == uintobj2 {
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return 0, true
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}
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if uintobj1 < uintobj2 {
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return 1, true
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}
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}
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case reflect.Uint8:
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{
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uint8obj1 := obj1.(uint8)
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uint8obj2 := obj2.(uint8)
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if uint8obj1 > uint8obj2 {
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return -1, true
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}
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if uint8obj1 == uint8obj2 {
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return 0, true
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}
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if uint8obj1 < uint8obj2 {
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return 1, true
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}
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}
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case reflect.Uint16:
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{
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uint16obj1 := obj1.(uint16)
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uint16obj2 := obj2.(uint16)
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if uint16obj1 > uint16obj2 {
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return -1, true
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}
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if uint16obj1 == uint16obj2 {
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return 0, true
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}
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if uint16obj1 < uint16obj2 {
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return 1, true
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}
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}
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case reflect.Uint32:
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{
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uint32obj1 := obj1.(uint32)
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uint32obj2 := obj2.(uint32)
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if uint32obj1 > uint32obj2 {
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return -1, true
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}
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if uint32obj1 == uint32obj2 {
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return 0, true
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}
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if uint32obj1 < uint32obj2 {
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return 1, true
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}
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}
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case reflect.Uint64:
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{
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uint64obj1 := obj1.(uint64)
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uint64obj2 := obj2.(uint64)
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if uint64obj1 > uint64obj2 {
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return -1, true
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}
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if uint64obj1 == uint64obj2 {
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return 0, true
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}
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if uint64obj1 < uint64obj2 {
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return 1, true
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}
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}
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case reflect.Float32:
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{
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float32obj1 := obj1.(float32)
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float32obj2 := obj2.(float32)
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if float32obj1 > float32obj2 {
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return -1, true
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}
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if float32obj1 == float32obj2 {
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return 0, true
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}
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if float32obj1 < float32obj2 {
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return 1, true
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}
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}
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case reflect.Float64:
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{
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float64obj1 := obj1.(float64)
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float64obj2 := obj2.(float64)
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if float64obj1 > float64obj2 {
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return -1, true
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}
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if float64obj1 == float64obj2 {
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return 0, true
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}
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if float64obj1 < float64obj2 {
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return 1, true
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}
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}
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case reflect.String:
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{
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stringobj1 := obj1.(string)
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stringobj2 := obj2.(string)
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if stringobj1 > stringobj2 {
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return -1, true
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}
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if stringobj1 == stringobj2 {
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return 0, true
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}
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if stringobj1 < stringobj2 {
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return 1, true
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}
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}
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}
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return 0, false
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}
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// Greater asserts that the first element is greater than the second
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//
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// assert.Greater(t, 2, 1)
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// assert.Greater(t, float64(2), float64(1))
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// assert.Greater(t, "b", "a")
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func Greater(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool {
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if h, ok := t.(tHelper); ok {
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h.Helper()
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}
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e1Kind := reflect.ValueOf(e1).Kind()
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e2Kind := reflect.ValueOf(e2).Kind()
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if e1Kind != e2Kind {
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return Fail(t, "Elements should be the same type", msgAndArgs...)
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}
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res, isComparable := compare(e1, e2, e1Kind)
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if !isComparable {
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return Fail(t, fmt.Sprintf("Can not compare type \"%s\"", reflect.TypeOf(e1)), msgAndArgs...)
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}
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if res != -1 {
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return Fail(t, fmt.Sprintf("\"%v\" is not greater than \"%v\"", e1, e2), msgAndArgs...)
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}
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return true
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}
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// GreaterOrEqual asserts that the first element is greater than or equal to the second
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//
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// assert.GreaterOrEqual(t, 2, 1)
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// assert.GreaterOrEqual(t, 2, 2)
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// assert.GreaterOrEqual(t, "b", "a")
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// assert.GreaterOrEqual(t, "b", "b")
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func GreaterOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool {
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if h, ok := t.(tHelper); ok {
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h.Helper()
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}
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e1Kind := reflect.ValueOf(e1).Kind()
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e2Kind := reflect.ValueOf(e2).Kind()
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if e1Kind != e2Kind {
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return Fail(t, "Elements should be the same type", msgAndArgs...)
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}
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res, isComparable := compare(e1, e2, e1Kind)
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if !isComparable {
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return Fail(t, fmt.Sprintf("Can not compare type \"%s\"", reflect.TypeOf(e1)), msgAndArgs...)
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}
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if res != -1 && res != 0 {
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return Fail(t, fmt.Sprintf("\"%v\" is not greater than or equal to \"%v\"", e1, e2), msgAndArgs...)
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}
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return true
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}
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// Less asserts that the first element is less than the second
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//
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// assert.Less(t, 1, 2)
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// assert.Less(t, float64(1), float64(2))
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// assert.Less(t, "a", "b")
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func Less(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool {
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if h, ok := t.(tHelper); ok {
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h.Helper()
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}
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e1Kind := reflect.ValueOf(e1).Kind()
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e2Kind := reflect.ValueOf(e2).Kind()
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if e1Kind != e2Kind {
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return Fail(t, "Elements should be the same type", msgAndArgs...)
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}
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res, isComparable := compare(e1, e2, e1Kind)
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if !isComparable {
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return Fail(t, fmt.Sprintf("Can not compare type \"%s\"", reflect.TypeOf(e1)), msgAndArgs...)
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}
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if res != 1 {
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return Fail(t, fmt.Sprintf("\"%v\" is not less than \"%v\"", e1, e2), msgAndArgs...)
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}
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return true
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}
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// LessOrEqual asserts that the first element is less than or equal to the second
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//
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// assert.LessOrEqual(t, 1, 2)
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// assert.LessOrEqual(t, 2, 2)
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// assert.LessOrEqual(t, "a", "b")
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// assert.LessOrEqual(t, "b", "b")
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func LessOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool {
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if h, ok := t.(tHelper); ok {
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h.Helper()
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}
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e1Kind := reflect.ValueOf(e1).Kind()
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e2Kind := reflect.ValueOf(e2).Kind()
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if e1Kind != e2Kind {
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return Fail(t, "Elements should be the same type", msgAndArgs...)
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}
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res, isComparable := compare(e1, e2, e1Kind)
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if !isComparable {
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return Fail(t, fmt.Sprintf("Can not compare type \"%s\"", reflect.TypeOf(e1)), msgAndArgs...)
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}
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if res != 1 && res != 0 {
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return Fail(t, fmt.Sprintf("\"%v\" is not less than or equal to \"%v\"", e1, e2), msgAndArgs...)
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}
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return true
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}
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