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fake_configurer.go
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fake_configurer.go
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// Code generated by counterfeiter. DO NOT EDIT.
package kawasakifakes
import (
"sync"
"code.cloudfoundry.org/guardian/kawasaki"
lager "code.cloudfoundry.org/lager/v3"
)
type FakeConfigurer struct {
ApplyStub func(lager.Logger, kawasaki.NetworkConfig, int) error
applyMutex sync.RWMutex
applyArgsForCall []struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
arg3 int
}
applyReturns struct {
result1 error
}
applyReturnsOnCall map[int]struct {
result1 error
}
DestroyBridgeStub func(lager.Logger, kawasaki.NetworkConfig) error
destroyBridgeMutex sync.RWMutex
destroyBridgeArgsForCall []struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
}
destroyBridgeReturns struct {
result1 error
}
destroyBridgeReturnsOnCall map[int]struct {
result1 error
}
DestroyIPTablesRulesStub func(lager.Logger, kawasaki.NetworkConfig) error
destroyIPTablesRulesMutex sync.RWMutex
destroyIPTablesRulesArgsForCall []struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
}
destroyIPTablesRulesReturns struct {
result1 error
}
destroyIPTablesRulesReturnsOnCall map[int]struct {
result1 error
}
invocations map[string][][]interface{}
invocationsMutex sync.RWMutex
}
func (fake *FakeConfigurer) Apply(arg1 lager.Logger, arg2 kawasaki.NetworkConfig, arg3 int) error {
fake.applyMutex.Lock()
ret, specificReturn := fake.applyReturnsOnCall[len(fake.applyArgsForCall)]
fake.applyArgsForCall = append(fake.applyArgsForCall, struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
arg3 int
}{arg1, arg2, arg3})
stub := fake.ApplyStub
fakeReturns := fake.applyReturns
fake.recordInvocation("Apply", []interface{}{arg1, arg2, arg3})
fake.applyMutex.Unlock()
if stub != nil {
return stub(arg1, arg2, arg3)
}
if specificReturn {
return ret.result1
}
return fakeReturns.result1
}
func (fake *FakeConfigurer) ApplyCallCount() int {
fake.applyMutex.RLock()
defer fake.applyMutex.RUnlock()
return len(fake.applyArgsForCall)
}
func (fake *FakeConfigurer) ApplyCalls(stub func(lager.Logger, kawasaki.NetworkConfig, int) error) {
fake.applyMutex.Lock()
defer fake.applyMutex.Unlock()
fake.ApplyStub = stub
}
func (fake *FakeConfigurer) ApplyArgsForCall(i int) (lager.Logger, kawasaki.NetworkConfig, int) {
fake.applyMutex.RLock()
defer fake.applyMutex.RUnlock()
argsForCall := fake.applyArgsForCall[i]
return argsForCall.arg1, argsForCall.arg2, argsForCall.arg3
}
func (fake *FakeConfigurer) ApplyReturns(result1 error) {
fake.applyMutex.Lock()
defer fake.applyMutex.Unlock()
fake.ApplyStub = nil
fake.applyReturns = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) ApplyReturnsOnCall(i int, result1 error) {
fake.applyMutex.Lock()
defer fake.applyMutex.Unlock()
fake.ApplyStub = nil
if fake.applyReturnsOnCall == nil {
fake.applyReturnsOnCall = make(map[int]struct {
result1 error
})
}
fake.applyReturnsOnCall[i] = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) DestroyBridge(arg1 lager.Logger, arg2 kawasaki.NetworkConfig) error {
fake.destroyBridgeMutex.Lock()
ret, specificReturn := fake.destroyBridgeReturnsOnCall[len(fake.destroyBridgeArgsForCall)]
fake.destroyBridgeArgsForCall = append(fake.destroyBridgeArgsForCall, struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
}{arg1, arg2})
stub := fake.DestroyBridgeStub
fakeReturns := fake.destroyBridgeReturns
fake.recordInvocation("DestroyBridge", []interface{}{arg1, arg2})
fake.destroyBridgeMutex.Unlock()
if stub != nil {
return stub(arg1, arg2)
}
if specificReturn {
return ret.result1
}
return fakeReturns.result1
}
func (fake *FakeConfigurer) DestroyBridgeCallCount() int {
fake.destroyBridgeMutex.RLock()
defer fake.destroyBridgeMutex.RUnlock()
return len(fake.destroyBridgeArgsForCall)
}
func (fake *FakeConfigurer) DestroyBridgeCalls(stub func(lager.Logger, kawasaki.NetworkConfig) error) {
fake.destroyBridgeMutex.Lock()
defer fake.destroyBridgeMutex.Unlock()
fake.DestroyBridgeStub = stub
}
func (fake *FakeConfigurer) DestroyBridgeArgsForCall(i int) (lager.Logger, kawasaki.NetworkConfig) {
fake.destroyBridgeMutex.RLock()
defer fake.destroyBridgeMutex.RUnlock()
argsForCall := fake.destroyBridgeArgsForCall[i]
return argsForCall.arg1, argsForCall.arg2
}
func (fake *FakeConfigurer) DestroyBridgeReturns(result1 error) {
fake.destroyBridgeMutex.Lock()
defer fake.destroyBridgeMutex.Unlock()
fake.DestroyBridgeStub = nil
fake.destroyBridgeReturns = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) DestroyBridgeReturnsOnCall(i int, result1 error) {
fake.destroyBridgeMutex.Lock()
defer fake.destroyBridgeMutex.Unlock()
fake.DestroyBridgeStub = nil
if fake.destroyBridgeReturnsOnCall == nil {
fake.destroyBridgeReturnsOnCall = make(map[int]struct {
result1 error
})
}
fake.destroyBridgeReturnsOnCall[i] = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) DestroyIPTablesRules(arg1 lager.Logger, arg2 kawasaki.NetworkConfig) error {
fake.destroyIPTablesRulesMutex.Lock()
ret, specificReturn := fake.destroyIPTablesRulesReturnsOnCall[len(fake.destroyIPTablesRulesArgsForCall)]
fake.destroyIPTablesRulesArgsForCall = append(fake.destroyIPTablesRulesArgsForCall, struct {
arg1 lager.Logger
arg2 kawasaki.NetworkConfig
}{arg1, arg2})
stub := fake.DestroyIPTablesRulesStub
fakeReturns := fake.destroyIPTablesRulesReturns
fake.recordInvocation("DestroyIPTablesRules", []interface{}{arg1, arg2})
fake.destroyIPTablesRulesMutex.Unlock()
if stub != nil {
return stub(arg1, arg2)
}
if specificReturn {
return ret.result1
}
return fakeReturns.result1
}
func (fake *FakeConfigurer) DestroyIPTablesRulesCallCount() int {
fake.destroyIPTablesRulesMutex.RLock()
defer fake.destroyIPTablesRulesMutex.RUnlock()
return len(fake.destroyIPTablesRulesArgsForCall)
}
func (fake *FakeConfigurer) DestroyIPTablesRulesCalls(stub func(lager.Logger, kawasaki.NetworkConfig) error) {
fake.destroyIPTablesRulesMutex.Lock()
defer fake.destroyIPTablesRulesMutex.Unlock()
fake.DestroyIPTablesRulesStub = stub
}
func (fake *FakeConfigurer) DestroyIPTablesRulesArgsForCall(i int) (lager.Logger, kawasaki.NetworkConfig) {
fake.destroyIPTablesRulesMutex.RLock()
defer fake.destroyIPTablesRulesMutex.RUnlock()
argsForCall := fake.destroyIPTablesRulesArgsForCall[i]
return argsForCall.arg1, argsForCall.arg2
}
func (fake *FakeConfigurer) DestroyIPTablesRulesReturns(result1 error) {
fake.destroyIPTablesRulesMutex.Lock()
defer fake.destroyIPTablesRulesMutex.Unlock()
fake.DestroyIPTablesRulesStub = nil
fake.destroyIPTablesRulesReturns = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) DestroyIPTablesRulesReturnsOnCall(i int, result1 error) {
fake.destroyIPTablesRulesMutex.Lock()
defer fake.destroyIPTablesRulesMutex.Unlock()
fake.DestroyIPTablesRulesStub = nil
if fake.destroyIPTablesRulesReturnsOnCall == nil {
fake.destroyIPTablesRulesReturnsOnCall = make(map[int]struct {
result1 error
})
}
fake.destroyIPTablesRulesReturnsOnCall[i] = struct {
result1 error
}{result1}
}
func (fake *FakeConfigurer) Invocations() map[string][][]interface{} {
fake.invocationsMutex.RLock()
defer fake.invocationsMutex.RUnlock()
fake.applyMutex.RLock()
defer fake.applyMutex.RUnlock()
fake.destroyBridgeMutex.RLock()
defer fake.destroyBridgeMutex.RUnlock()
fake.destroyIPTablesRulesMutex.RLock()
defer fake.destroyIPTablesRulesMutex.RUnlock()
copiedInvocations := map[string][][]interface{}{}
for key, value := range fake.invocations {
copiedInvocations[key] = value
}
return copiedInvocations
}
func (fake *FakeConfigurer) recordInvocation(key string, args []interface{}) {
fake.invocationsMutex.Lock()
defer fake.invocationsMutex.Unlock()
if fake.invocations == nil {
fake.invocations = map[string][][]interface{}{}
}
if fake.invocations[key] == nil {
fake.invocations[key] = [][]interface{}{}
}
fake.invocations[key] = append(fake.invocations[key], args)
}
var _ kawasaki.Configurer = new(FakeConfigurer)