本文整理匯總了Golang中doozer/store.MustEncodeSet函數的典型用法代碼示例。如果您正苦於以下問題:Golang MustEncodeSet函數的具體用法?Golang MustEncodeSet怎麽用?Golang MustEncodeSet使用的例子?那麽, 這裏精選的函數代碼示例或許可以為您提供幫助。
在下文中一共展示了MustEncodeSet函數的15個代碼示例,這些例子默認根據受歡迎程度排序。您可以為喜歡或者感覺有用的代碼點讚,您的評價將有助於係統推薦出更棒的Golang代碼示例。
示例1: TestMemberSimple
func TestMemberSimple(t *testing.T) {
st := store.New()
defer close(st.Ops)
fp := &test.FakeProposer{Store: st}
c := make(chan string)
go Clean(c, fp.Store, fp)
fp.Propose([]byte(store.MustEncodeSet("/ctl/node/a/x", "a", store.Missing)))
fp.Propose([]byte(store.MustEncodeSet("/ctl/node/a/y", "b", store.Missing)))
fp.Propose([]byte(store.MustEncodeSet("/ctl/node/a/addr", "1.2.3.4", store.Missing)))
fp.Propose([]byte(store.MustEncodeSet("/ctl/cal/0", "a", store.Missing)))
calCh := fp.Watch(store.MustCompileGlob("/ctl/cal/0"))
nodeCh := fp.Watch(store.MustCompileGlob("/ctl/node/a/?"))
// indicate that this peer is inactive
go func() { c <- "1.2.3.4" }()
ev := <-calCh
assert.T(t, ev.IsSet())
assert.Equal(t, "", ev.Body)
cs := []int{}
ev = <-nodeCh
assert.T(t, ev.IsDel())
cs = append(cs, int(ev.Path[len(ev.Path)-1]))
ev = <-nodeCh
assert.T(t, ev.IsDel())
cs = append(cs, int(ev.Path[len(ev.Path)-1]))
sort.SortInts(cs)
assert.Equal(t, []int{'x', 'y'}, cs)
}
示例2: TestManagerFilterPropSeqn
func TestManagerFilterPropSeqn(t *testing.T) {
ps := make(chan int64, 100)
st := store.New()
defer close(st.Ops)
m := &Manager{
DefRev: 2,
Alpha: 1,
Self: "b",
PSeqn: ps,
Store: st,
}
go m.Run()
st.Ops <- store.Op{1, store.MustEncodeSet("/ctl/cal/0", "a", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet("/ctl/cal/1", "b", 0)}
st.Ops <- store.Op{3, store.Nop}
st.Ops <- store.Op{4, store.Nop}
assert.Equal(t, int64(3), <-ps)
assert.Equal(t, int64(5), <-ps)
st.Ops <- store.Op{5, store.Nop}
st.Ops <- store.Op{6, store.Nop}
assert.Equal(t, int64(7), <-ps)
}
示例3: TestManagerEvent
func TestManagerEvent(t *testing.T) {
const alpha = 2
runs := make(map[int64]*run)
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/a/addr", "1.2.3.4:5", 0),
}
st.Ops <- store.Op{
Seqn: 2,
Mut: store.MustEncodeSet(cal+"/1", "a", 0),
}
ch, err := st.Wait(store.Any, 2)
if err != nil {
panic(err)
}
x, _ := net.ResolveUDPAddr("udp", "1.2.3.4:5")
pseqn := make(chan int64, 1)
m := &Manager{
Alpha: alpha,
Self: "a",
PSeqn: pseqn,
Ops: st.Ops,
Out: make(chan Packet),
run: runs,
}
m.event(<-ch)
exp := &run{
self: "a",
seqn: 2 + alpha,
cals: []string{"a"},
addr: []*net.UDPAddr{x},
ops: st.Ops,
out: m.Out,
bound: initialWaitBound,
}
exp.c = coordinator{
crnd: 1,
size: 1,
quor: exp.quorum(),
}
exp.l = learner{
round: 1,
size: 1,
quorum: int64(exp.quorum()),
votes: map[string]int64{},
voted: []bool{false},
}
assert.Equal(t, 1, len(runs))
assert.Equal(t, exp, runs[exp.seqn])
assert.Equal(t, exp.seqn, <-pseqn)
assert.Equal(t, exp.seqn+1, m.next)
}
示例4: TestAddRun
func TestAddRun(t *testing.T) {
const alpha = 2
runs := make(map[int64]*run)
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/a/addr", "x", 0),
}
st.Ops <- store.Op{
Seqn: 2,
Mut: store.MustEncodeSet(cal+"/1", "a", 0),
}
ch, err := st.Wait(store.Any, 2)
if err != nil {
panic(err)
}
pseqn := make(chan int64, 1)
c := &Config{
Alpha: alpha,
Self: "a",
PSeqn: pseqn,
Ops: st.Ops,
Out: make(chan Packet),
}
m := &Manager{cfg: *c, run: runs}
got := m.addRun(<-ch)
exp := &run{
self: "a",
seqn: 2 + alpha,
cals: []string{"a"},
addr: []string{"x"},
ops: st.Ops,
out: c.Out,
bound: initialWaitBound,
}
exp.c = coordinator{
crnd: 1,
size: 1,
quor: exp.quorum(),
}
exp.l = learner{
round: 1,
quorum: int64(exp.quorum()),
votes: map[string]int64{},
voted: map[string]bool{},
}
assert.Equal(t, exp, got)
assert.Equal(t, exp, runs[got.seqn])
assert.Equal(t, 1, len(runs))
assert.Equal(t, exp.seqn, <-pseqn)
}
示例5: TestConsensusOne
func TestConsensusOne(t *testing.T) {
self := "test"
const alpha = 1
st := store.New()
st.Ops <- store.Op{1, store.MustEncodeSet("/ctl/node/"+self+"/addr", "1.2.3.4:5", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet("/ctl/cal/1", self, 0)}
<-st.Seqns
in := make(chan Packet)
out := make(chan Packet)
seqns := make(chan int64, alpha)
props := make(chan *Prop)
m := &Manager{
Self: self,
DefRev: 2,
Alpha: alpha,
In: in,
Out: out,
Ops: st.Ops,
PSeqn: seqns,
Props: props,
TFill: 10e9,
Store: st,
Ticker: time.Tick(10e6),
}
go m.Run()
go func() {
for o := range out {
in <- o
}
}()
n := <-seqns
w, err := st.Wait(store.Any, n)
if err != nil {
panic(err)
}
props <- &Prop{n, []byte("foo")}
e := <-w
exp := store.Event{
Seqn: 3,
Path: "/ctl/err",
Body: "bad mutation",
Rev: 3,
Mut: "foo",
Err: errors.New("bad mutation"),
}
e.Getter = nil
assert.Equal(t, exp, e)
}
示例6: TestConsensusOne
func TestConsensusOne(t *testing.T) {
self := "test"
const alpha = 1
st := store.New()
st.Ops <- store.Op{1, store.MustEncodeSet("/ctl/node/"+self+"/addr", "x", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet("/ctl/cal/1", self, 0)}
<-st.Seqns
in := make(chan Packet)
out := make(chan Packet)
seqns := make(chan int64, alpha)
props := make(chan *Prop)
cfg := &Config{
self,
2,
alpha,
in,
out,
st.Ops,
seqns,
props,
10e9,
st,
time.Tick(10e6),
}
NewManager(cfg)
go func() {
for o := range out {
in <- o
}
}()
n := <-seqns
w, err := st.Wait(store.Any, n)
if err != nil {
panic(err)
}
props <- &Prop{n, []byte("foo")}
e := <-w
exp := store.Event{
Seqn: 3,
Path: "/ctl/err",
Body: "bad mutation",
Rev: 3,
Mut: "foo",
Err: os.NewError("bad mutation"),
}
e.Getter = nil
assert.Equal(t, exp, e)
}
示例7: TestGetAddrs
func TestGetAddrs(t *testing.T) {
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{1, store.MustEncodeSet(node+"/1/addr", "x", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet(node+"/2/addr", "y", 0)}
st.Ops <- store.Op{3, store.MustEncodeSet(node+"/3/addr", "z", 0)}
<-st.Seqns
assert.Equal(t, map[string]bool{"x": true, "y": true, "z": true}, getAddrs(st))
}
示例8: TestGetCalsPartial
func TestGetCalsPartial(t *testing.T) {
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{Seqn: 1, Mut: store.MustEncodeSet(cal+"/1", "a", 0)}
st.Ops <- store.Op{Seqn: 2, Mut: store.MustEncodeSet(cal+"/2", "", 0)}
st.Ops <- store.Op{Seqn: 3, Mut: store.MustEncodeSet(cal+"/3", "", 0)}
<-st.Seqns
assert.Equal(t, []string{"a"}, getCals(st))
}
示例9: alphaTest
func alphaTest(t *testing.T, alpha int64) {
runs := make(chan *run)
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/a/addr", "x", 0),
}
st.Ops <- store.Op{
Seqn: 2,
Mut: store.MustEncodeSet(cal+"/1", "a", 0),
}
for 2 != <-st.Seqns {
}
tr := run{
self: "a",
ops: st.Ops,
out: make(chan Packet),
bound: initialWaitBound,
}
go generateRuns(alpha, st.Watch(store.Any), runs, tr)
// The only way to generate a run is on an event.
// Send a nop here to get things started.
st.Ops <- store.Op{3, store.Nop}
exp := &run{
self: "a",
seqn: 3 + alpha,
cals: []string{"a"},
addrs: map[string]bool{"x": true},
ops: st.Ops,
out: tr.out,
bound: initialWaitBound,
}
exp.c = coordinator{
crnd: 1,
size: 1,
quor: exp.quorum(),
}
exp.l = learner{
round: 1,
quorum: int64(exp.quorum()),
votes: map[string]int64{},
voted: map[string]bool{},
}
assert.Equal(t, exp, <-runs)
}
示例10: TestGetAddrs
func TestGetAddrs(t *testing.T) {
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{1, store.MustEncodeSet(node+"/1/addr", "x", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet(node+"/2/addr", "y", 0)}
st.Ops <- store.Op{3, store.MustEncodeSet(node+"/3/addr", "z", 0)}
<-st.Seqns
addrs := getAddrs(st, []string{"1", "2", "3"})
assert.Equal(t, []string{"x", "y", "z"}, addrs)
}
示例11: TestManagerPumpDropsOldPackets
func TestManagerPumpDropsOldPackets(t *testing.T) {
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{1, store.MustEncodeSet(node+"/a/addr", "x", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet("/ctl/cal/0", "a", 0)}
var m Manager
m.run = make(map[int64]*run)
m.event(<-mustWait(st, 2))
m.pump()
recvPacket(&m.packet, Packet{"x", mustMarshal(&msg{Seqn: proto.Int64(1)})})
m.pump()
assert.Equal(t, 0, m.Stats.WaitPackets)
}
示例12: TestRunAfterWatch
func TestRunAfterWatch(t *testing.T) {
alpha := int64(3)
runs := make(chan *run)
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/b/addr", "y", 0),
}
for 1 != <-st.Seqns {
}
tr := run{
self: "b",
ops: st.Ops,
out: make(chan Packet),
bound: initialWaitBound,
}
go generateRuns(alpha, st.Watch(store.Any), runs, tr)
st.Ops <- store.Op{
Seqn: 2,
Mut: store.MustEncodeSet(cal+"/1", "b", 0),
}
exp := &run{
self: "b",
seqn: 2 + alpha,
cals: []string{"b"},
addrs: map[string]bool{"y": true},
ops: st.Ops,
out: tr.out,
bound: initialWaitBound,
}
exp.c = coordinator{
crnd: 1,
size: 1,
quor: exp.quorum(),
}
exp.l = learner{
round: 1,
quorum: int64(exp.quorum()),
votes: map[string]int64{},
voted: map[string]bool{},
}
assert.Equal(t, exp, <-runs)
}
示例13: TestGetAddrs
func TestGetAddrs(t *testing.T) {
st := store.New()
defer close(st.Ops)
st.Ops <- store.Op{1, store.MustEncodeSet(node+"/1/addr", "1.2.3.4:5", 0)}
st.Ops <- store.Op{2, store.MustEncodeSet(node+"/2/addr", "2.3.4.5:6", 0)}
st.Ops <- store.Op{3, store.MustEncodeSet(node+"/3/addr", "3.4.5.6:7", 0)}
<-st.Seqns
x, _ := net.ResolveUDPAddr("udp", "1.2.3.4:5")
y, _ := net.ResolveUDPAddr("udp", "2.3.4.5:6")
z, _ := net.ResolveUDPAddr("udp", "3.4.5.6:7")
addrs := getAddrs(st, []string{"1", "2", "3"})
assert.Equal(t, []*net.UDPAddr{x, y, z}, addrs)
}
示例14: TestManagerDeletesSuccessfulRun
func TestManagerDeletesSuccessfulRun(t *testing.T) {
st := store.New()
defer close(st.Ops)
in := make(chan Packet)
out := make(chan Packet, 100)
cfg := &Config{
Alpha: 1,
Store: st,
In: in,
Out: out,
Ops: st.Ops,
}
m := NewManager(cfg)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/a/addr", "x", 0),
}
for (<-m.Stats).TotalRuns < 1 {
}
in <- Packet{
Data: mustMarshal(&msg{Seqn: proto.Int64(2), Cmd: learn, Value: []byte("foo")}),
Addr: "127.0.0.1:9999",
}
for (<-m.Stats).TotalRuns < 2 {
}
assert.Equal(t, 1, (<-m.Stats).Runs)
}
示例15: TestManagerTickQueue
func TestManagerTickQueue(t *testing.T) {
ticker := make(chan int64)
st := store.New()
defer close(st.Ops)
in := make(chan Packet)
cfg := &Config{
Alpha: 1,
Store: st,
In: in,
Ticker: ticker,
Out: make(chan Packet, 100),
}
m := NewManager(cfg)
st.Ops <- store.Op{
Seqn: 1,
Mut: store.MustEncodeSet(node+"/a/addr", "x", 0),
}
for (<-m.Stats).Runs < 1 {
}
// get it to tick for seqn 2
in <- Packet{Data: mustMarshal(&msg{Seqn: proto.Int64(2), Cmd: propose})}
assert.Equal(t, 1, (<-m.Stats).WaitTicks)
ticker <- time.Nanoseconds() + initialWaitBound*2
assert.Equal(t, int64(1), (<-m.Stats).TotalTicks)
}