The pool manager keeps terminating function pod periodically even there are traffic to the function. The root cause is that executor, poolmgr, newdeploy manage their own functionServiceCache separately. And when router taps a function, executor updates the access time of the function service entry in its own cache without notifying executor types to do the update as well. Hence, the access time of function service entry in poolmanager cache never gets updated. Due to the access time never gets updated, the idle pod reaper in poolmanager then thinks the function pod is in idle state and recycle it. This PR removes the cache in executor itself, and when router tries to tap a function, executor will call executor type to tap the function and update access time.
362 lines
12 KiB
Go
362 lines
12 KiB
Go
/*
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Copyright 2019 The Fission Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package function
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import (
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"fmt"
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"testing"
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"github.com/stretchr/testify/assert"
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fv1 "github.com/fission/fission/pkg/apis/fission.io/v1"
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"github.com/fission/fission/pkg/fission-cli/cliwrapper/driver/dummy"
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flagkey "github.com/fission/fission/pkg/fission-cli/flag/key"
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)
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func TestGetInvokeStrategy(t *testing.T) {
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cases := []struct {
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testArgs map[string]interface{}
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existingInvokeStrategy *fv1.InvokeStrategy
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expectedResult *fv1.InvokeStrategy
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expectError bool
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}{
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{
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// case: use default executor poolmgr
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testArgs: map[string]interface{}{},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypePoolmgr,
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},
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},
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expectError: false,
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},
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{
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// case: executor type set to poolmgr
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testArgs: map[string]interface{}{flagkey.FnExecutorType: string(fv1.ExecutorTypePoolmgr)},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypePoolmgr,
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},
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},
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expectError: false,
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},
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{
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// case: executor type set to newdeploy
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testArgs: map[string]interface{}{flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy)},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: DEFAULT_MIN_SCALE,
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MaxScale: DEFAULT_MIN_SCALE,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: executor type change from poolmgr to newdeploy
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testArgs: map[string]interface{}{flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy)},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypePoolmgr,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: DEFAULT_MIN_SCALE,
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MaxScale: DEFAULT_MIN_SCALE,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: executor type change from newdeploy to poolmgr
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testArgs: map[string]interface{}{flagkey.FnExecutorType: string(fv1.ExecutorTypePoolmgr)},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: DEFAULT_MIN_SCALE,
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MaxScale: DEFAULT_MIN_SCALE,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypePoolmgr,
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},
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},
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expectError: false,
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},
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{
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// case: minscale < maxscale
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMinscale: 2,
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flagkey.ReplicasMaxscale: 3,
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},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 3,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: minscale > maxscale
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMinscale: 5,
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flagkey.ReplicasMaxscale: 3,
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},
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existingInvokeStrategy: nil,
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expectedResult: nil,
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expectError: true,
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},
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{
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// case: maxscale not specified
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMinscale: 5,
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},
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existingInvokeStrategy: nil,
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expectedResult: nil,
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expectError: true,
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},
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{
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// case: minscale not specified
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMaxscale: 3,
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},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: DEFAULT_MIN_SCALE,
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MaxScale: 3,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: maxscale set to 0
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMaxscale: 0,
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},
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existingInvokeStrategy: nil,
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expectedResult: nil,
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expectError: true,
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},
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{
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// case: maxscale set to 9 when existing is 5
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.ReplicasMaxscale: 9,
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},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 9,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: change nothing for existing strategy
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: set target cpu percentage
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.RuntimeTargetcpu: 50,
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},
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existingInvokeStrategy: nil,
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: DEFAULT_MIN_SCALE,
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MaxScale: DEFAULT_MIN_SCALE,
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TargetCPUPercent: 50,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: change target cpu percentage
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.RuntimeTargetcpu: 20,
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},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: 88,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: 20,
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SpecializationTimeout: fv1.DefaultSpecializationTimeOut,
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},
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},
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expectError: false,
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},
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{
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// case: change specializationtimeout
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.FnSpecializationTimeout: 200,
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},
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existingInvokeStrategy: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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},
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},
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expectedResult: &fv1.InvokeStrategy{
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StrategyType: fv1.StrategyTypeExecution,
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ExecutionStrategy: fv1.ExecutionStrategy{
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ExecutorType: fv1.ExecutorTypeNewdeploy,
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MinScale: 2,
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MaxScale: 5,
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SpecializationTimeout: 200,
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TargetCPUPercent: DEFAULT_TARGET_CPU_PERCENTAGE,
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},
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},
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expectError: false,
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},
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{
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// case: specializationtimeout should not work for poolmgr
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypePoolmgr),
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flagkey.FnSpecializationTimeout: 10,
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},
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existingInvokeStrategy: nil,
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expectedResult: nil,
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expectError: true,
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},
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{
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// case: specializationtimeout should not be less than 120
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testArgs: map[string]interface{}{
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flagkey.FnExecutorType: string(fv1.ExecutorTypeNewdeploy),
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flagkey.FnSpecializationTimeout: 90,
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},
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existingInvokeStrategy: nil,
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expectedResult: nil,
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expectError: true,
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},
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}
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for i, c := range cases {
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fmt.Printf("=== Test Case %v ===\n", i)
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flags := dummy.TestFlagSet()
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for k, v := range c.testArgs {
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flags.Set(k, v)
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}
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strategy, err := getInvokeStrategy(flags, c.existingInvokeStrategy)
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if c.expectError {
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assert.NotNil(t, err)
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if err != nil {
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fmt.Println(err)
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}
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} else {
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assert.Nil(t, err)
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assert.NoError(t, strategy.Validate(), fmt.Sprintf("Failed at test case %v", i))
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assert.Equal(t, *c.expectedResult, *strategy)
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}
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}
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}
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