500 lines
14 KiB
Go
500 lines
14 KiB
Go
// Mgmt
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// Copyright (C) 2013-2016+ James Shubin and the project contributors
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// Written by James Shubin <james@shubin.ca> and the project contributors
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package main
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import (
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"log"
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"time"
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)
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//go:generate stringer -type=resState -output=resstate_stringer.go
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type resState int
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const (
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resStateNil resState = iota
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resStateWatching
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resStateEvent // an event has happened, but we haven't poked yet
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resStateCheckApply
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resStatePoking
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)
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//go:generate stringer -type=resConvergedState -output=resconvergedstate_stringer.go
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type resConvergedState int
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const (
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resConvergedNil resConvergedState = iota
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//resConverged
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resConvergedTimeout
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)
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// a unique identifier for a resource, namely it's name, and the kind ("type")
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type ResUUID interface {
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GetName() string
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Kind() string
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IFF(ResUUID) bool
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Reversed() bool // true means this resource happens before the generator
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}
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type BaseUUID struct {
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name string // name and kind are the values of where this is coming from
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kind string
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reversed *bool // piggyback edge information here
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}
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type AutoEdge interface {
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Next() []ResUUID // call to get list of edges to add
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Test([]bool) bool // call until false
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}
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type MetaParams struct {
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AutoEdge bool `yaml:"autoedge"` // metaparam, should we generate auto edges? // XXX should default to true
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}
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type Res interface {
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Init()
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GetName() string // can't be named "Name()" because of struct field
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GetUUIDs() []ResUUID // most resources only return one
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GetMeta() MetaParams
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Kind() string
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Watch()
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CheckApply(bool) (bool, error)
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AutoEdges() AutoEdge
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SetVertex(*Vertex)
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SetConvergedCallback(ctimeout int, converged chan bool)
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Compare(Res) bool
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SendEvent(eventName, bool, bool) bool
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IsWatching() bool
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SetWatching(bool)
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GetConvergedState() resConvergedState
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SetConvergedState(resConvergedState)
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GetState() resState
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SetState(resState)
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GetTimestamp() int64
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UpdateTimestamp() int64
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OKTimestamp() bool
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Poke(bool)
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BackPoke()
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}
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type BaseRes struct {
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Name string `yaml:"name"`
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Meta MetaParams `yaml:"meta"` // struct of all the metaparams
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kind string
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timestamp int64 // last updated timestamp ?
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events chan Event
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vertex *Vertex
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state resState
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convergedState resConvergedState
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watching bool // is Watch() loop running ?
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ctimeout int // converged timeout
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converged chan bool
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isStateOK bool // whether the state is okay based on events or not
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}
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type NoopRes struct {
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BaseRes `yaml:",inline"`
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Comment string `yaml:"comment"` // extra field for example purposes
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}
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func NewNoopRes(name string) *NoopRes {
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// FIXME: we could get rid of this New constructor and use raw object creation with a required Init()
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obj := &NoopRes{
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BaseRes: BaseRes{
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Name: name,
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},
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Comment: "",
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}
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obj.Init()
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return obj
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}
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// wraps the IFF method when used with a list of UUID's
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func UUIDExistsInUUIDs(uuid ResUUID, uuids []ResUUID) bool {
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for _, u := range uuids {
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if uuid.IFF(u) {
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return true
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}
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}
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return false
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}
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func (obj *BaseUUID) GetName() string {
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return obj.name
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}
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func (obj *BaseUUID) Kind() string {
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return obj.kind
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}
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// if and only if they are equivalent, return true
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// if they are not equivalent, return false
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// most resource will want to override this method, since it does the important
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// work of actually discerning if two resources are identical in function
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func (obj *BaseUUID) IFF(uuid ResUUID) bool {
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res, ok := uuid.(*BaseUUID)
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if !ok {
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return false
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}
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return obj.name == res.name
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}
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func (obj *BaseUUID) Reversed() bool {
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if obj.reversed == nil {
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log.Fatal("Programming error!")
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}
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return *obj.reversed
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}
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// initialize structures like channels if created without New constructor
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func (obj *BaseRes) Init() {
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obj.events = make(chan Event) // unbuffered chan size to avoid stale events
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}
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// this method gets used by all the resources, if we have one of (obj NoopRes) it would get overridden in that case!
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func (obj *BaseRes) GetName() string {
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return obj.Name
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}
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// return the kind of resource this is
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func (obj *BaseRes) Kind() string {
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return obj.kind
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}
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func (obj *BaseRes) GetMeta() MetaParams {
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return obj.Meta
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}
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func (obj *BaseRes) GetVertex() *Vertex {
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return obj.vertex
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}
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func (obj *BaseRes) SetVertex(v *Vertex) {
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obj.vertex = v
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}
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func (obj *BaseRes) SetConvergedCallback(ctimeout int, converged chan bool) {
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obj.ctimeout = ctimeout
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obj.converged = converged
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}
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// is the Watch() function running?
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func (obj *BaseRes) IsWatching() bool {
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return obj.watching
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}
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// store status of if the Watch() function is running
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func (obj *BaseRes) SetWatching(b bool) {
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obj.watching = b
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}
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func (obj *BaseRes) GetConvergedState() resConvergedState {
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return obj.convergedState
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}
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func (obj *BaseRes) SetConvergedState(state resConvergedState) {
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obj.convergedState = state
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}
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func (obj *BaseRes) GetState() resState {
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return obj.state
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}
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func (obj *BaseRes) SetState(state resState) {
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if DEBUG {
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log.Printf("%v[%v]: State: %v -> %v", obj.Kind(), obj.GetName(), obj.GetState(), state)
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}
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obj.state = state
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}
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// GetTimestamp returns the timestamp of a vertex
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func (obj *BaseRes) GetTimestamp() int64 {
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return obj.timestamp
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}
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// UpdateTimestamp updates the timestamp on a vertex and returns the new value
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func (obj *BaseRes) UpdateTimestamp() int64 {
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obj.timestamp = time.Now().UnixNano() // update
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return obj.timestamp
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}
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// can this element run right now?
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func (obj *BaseRes) OKTimestamp() bool {
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v := obj.GetVertex()
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g := v.GetGraph()
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// these are all the vertices pointing TO v, eg: ??? -> v
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for _, n := range g.IncomingGraphEdges(v) {
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// if the vertex has a greater timestamp than any pre-req (n)
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// then we can't run right now...
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// if they're equal (eg: on init of 0) then we also can't run
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// b/c we should let our pre-req's go first...
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x, y := obj.GetTimestamp(), n.Res.GetTimestamp()
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if DEBUG {
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log.Printf("%v[%v]: OKTimestamp: (%v) >= %v[%v](%v): !%v", obj.Kind(), obj.GetName(), x, n.Kind(), n.GetName(), y, x >= y)
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}
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if x >= y {
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return false
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}
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}
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return true
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}
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// notify nodes after me in the dependency graph that they need refreshing...
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// NOTE: this assumes that this can never fail or need to be rescheduled
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func (obj *BaseRes) Poke(activity bool) {
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v := obj.GetVertex()
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g := v.GetGraph()
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// these are all the vertices pointing AWAY FROM v, eg: v -> ???
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for _, n := range g.OutgoingGraphEdges(v) {
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// XXX: if we're in state event and haven't been cancelled by
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// apply, then we can cancel a poke to a child, right? XXX
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// XXX: if n.Res.GetState() != resStateEvent { // is this correct?
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if true { // XXX
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if DEBUG {
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log.Printf("%v[%v]: Poke: %v[%v]", v.Kind(), v.GetName(), n.Kind(), n.GetName())
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}
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n.SendEvent(eventPoke, false, activity) // XXX: can this be switched to sync?
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} else {
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if DEBUG {
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log.Printf("%v[%v]: Poke: %v[%v]: Skipped!", v.Kind(), v.GetName(), n.Kind(), n.GetName())
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}
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}
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}
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}
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// poke the pre-requisites that are stale and need to run before I can run...
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func (obj *BaseRes) BackPoke() {
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v := obj.GetVertex()
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g := v.GetGraph()
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// these are all the vertices pointing TO v, eg: ??? -> v
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for _, n := range g.IncomingGraphEdges(v) {
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x, y, s := obj.GetTimestamp(), n.Res.GetTimestamp(), n.Res.GetState()
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// if the parent timestamp needs poking AND it's not in state
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// resStateEvent, then poke it. If the parent is in resStateEvent it
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// means that an event is pending, so we'll be expecting a poke
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// back soon, so we can safely discard the extra parent poke...
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// TODO: implement a stateLT (less than) to tell if something
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// happens earlier in the state cycle and that doesn't wrap nil
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if x >= y && (s != resStateEvent && s != resStateCheckApply) {
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if DEBUG {
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log.Printf("%v[%v]: BackPoke: %v[%v]", v.Kind(), v.GetName(), n.Kind(), n.GetName())
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}
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n.SendEvent(eventBackPoke, false, false) // XXX: can this be switched to sync?
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} else {
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if DEBUG {
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log.Printf("%v[%v]: BackPoke: %v[%v]: Skipped!", v.Kind(), v.GetName(), n.Kind(), n.GetName())
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}
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}
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}
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}
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// push an event into the message queue for a particular vertex
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func (obj *BaseRes) SendEvent(event eventName, sync bool, activity bool) bool {
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// TODO: isn't this race-y ?
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if !obj.IsWatching() { // element has already exited
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return false // if we don't return, we'll block on the send
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}
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if !sync {
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obj.events <- Event{event, nil, "", activity}
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return true
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}
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resp := make(chan bool)
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obj.events <- Event{event, resp, "", activity}
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for {
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value := <-resp
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// wait until true value
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if value {
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return true
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}
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}
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}
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// process events when a select gets one, this handles the pause code too!
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// the return values specify if we should exit and poke respectively
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func (obj *BaseRes) ReadEvent(event *Event) (exit, poke bool) {
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event.ACK()
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switch event.Name {
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case eventStart:
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return false, true
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case eventPoke:
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return false, true
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case eventBackPoke:
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return false, true // forward poking in response to a back poke!
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case eventExit:
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return true, false
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case eventPause:
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// wait for next event to continue
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select {
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case e := <-obj.events:
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e.ACK()
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if e.Name == eventExit {
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return true, false
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} else if e.Name == eventStart { // eventContinue
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return false, false // don't poke on unpause!
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} else {
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// if we get a poke event here, it's a bug!
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log.Fatalf("%v[%v]: Unknown event: %v, while paused!", obj.Kind(), obj.GetName(), e)
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}
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}
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default:
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log.Fatal("Unknown event: ", event)
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}
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return true, false // required to keep the stupid go compiler happy
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}
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// XXX: rename this function
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func Process(obj Res) {
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if DEBUG {
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log.Printf("%v[%v]: Process()", obj.Kind(), obj.GetName())
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}
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obj.SetState(resStateEvent)
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var ok = true
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var apply = false // did we run an apply?
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// is it okay to run dependency wise right now?
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// if not, that's okay because when the dependency runs, it will poke
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// us back and we will run if needed then!
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if obj.OKTimestamp() {
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if DEBUG {
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log.Printf("%v[%v]: OKTimestamp(%v)", obj.Kind(), obj.GetName(), obj.GetTimestamp())
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}
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obj.SetState(resStateCheckApply)
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// if this fails, don't UpdateTimestamp()
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stateok, err := obj.CheckApply(true)
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if stateok && err != nil { // should never return this way
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log.Fatalf("%v[%v]: CheckApply(): %t, %+v", obj.Kind(), obj.GetName(), stateok, err)
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}
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if DEBUG {
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log.Printf("%v[%v]: CheckApply(): %t, %v", obj.Kind(), obj.GetName(), stateok, err)
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}
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if !stateok { // if state *was* not ok, we had to have apply'ed
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if err != nil { // error during check or apply
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ok = false
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} else {
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apply = true
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}
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}
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if ok {
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// update this timestamp *before* we poke or the poked
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// nodes might fail due to having a too old timestamp!
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obj.UpdateTimestamp() // this was touched...
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obj.SetState(resStatePoking) // can't cancel parent poke
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obj.Poke(apply)
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}
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// poke at our pre-req's instead since they need to refresh/run...
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} else {
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// only poke at the pre-req's that need to run
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go obj.BackPoke()
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}
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}
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func (obj *NoopRes) Init() {
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obj.BaseRes.kind = "Noop"
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obj.BaseRes.Init() // call base init, b/c we're overriding
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}
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// validate if the params passed in are valid data
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// FIXME: where should this get called ?
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func (obj *NoopRes) Validate() bool {
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return true
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}
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func (obj *NoopRes) Watch() {
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if obj.IsWatching() {
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return
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}
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obj.SetWatching(true)
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defer obj.SetWatching(false)
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//vertex := obj.vertex // stored with SetVertex
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var send = false // send event?
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var exit = false
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for {
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obj.SetState(resStateWatching) // reset
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select {
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case event := <-obj.events:
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obj.SetConvergedState(resConvergedNil)
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// we avoid sending events on unpause
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if exit, send = obj.ReadEvent(&event); exit {
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return // exit
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}
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case _ = <-TimeAfterOrBlock(obj.ctimeout):
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obj.SetConvergedState(resConvergedTimeout)
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obj.converged <- true
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continue
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}
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// do all our event sending all together to avoid duplicate msgs
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if send {
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send = false
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// only do this on certain types of events
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//obj.isStateOK = false // something made state dirty
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Process(obj) // XXX: rename this function
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}
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}
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}
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// CheckApply method for Noop resource. Does nothing, returns happy!
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func (obj *NoopRes) CheckApply(apply bool) (stateok bool, err error) {
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log.Printf("%v[%v]: CheckApply(%t)", obj.Kind(), obj.GetName(), apply)
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return true, nil // state is always okay
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}
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type NoopUUID struct {
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BaseUUID
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name string
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}
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func (obj *NoopRes) AutoEdges() AutoEdge {
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return nil
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}
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// include all params to make a unique identification of this object
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// most resources only return one, although some resources return multiple
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func (obj *NoopRes) GetUUIDs() []ResUUID {
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x := &NoopUUID{
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BaseUUID: BaseUUID{name: obj.GetName(), kind: obj.Kind()},
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name: obj.Name,
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}
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return []ResUUID{x}
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}
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func (obj *NoopRes) Compare(res Res) bool {
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switch res.(type) {
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// we can only compare NoopRes to others of the same resource
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case *NoopRes:
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res := res.(*NoopRes)
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if obj.Name != res.Name {
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return false
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}
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default:
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return false
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}
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return true
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}
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