Merge pull request #3580 from filecoin-project/fix/mpool-selection-bug

fix selection bug; priority messages were not included if other chains were negative
This commit is contained in:
Łukasz Magiera 2020-09-05 21:44:03 +02:00 committed by GitHub
commit 5e97e29f95
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GPG Key ID: 4AEE18F83AFDEB23
3 changed files with 100 additions and 3 deletions

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@ -34,6 +34,8 @@ type testMpoolAPI struct {
tipsets []*types.TipSet tipsets []*types.TipSet
published int published int
baseFee types.BigInt
} }
func newTestMpoolAPI() *testMpoolAPI { func newTestMpoolAPI() *testMpoolAPI {
@ -41,6 +43,7 @@ func newTestMpoolAPI() *testMpoolAPI {
bmsgs: make(map[cid.Cid][]*types.SignedMessage), bmsgs: make(map[cid.Cid][]*types.SignedMessage),
statenonce: make(map[address.Address]uint64), statenonce: make(map[address.Address]uint64),
balance: make(map[address.Address]types.BigInt), balance: make(map[address.Address]types.BigInt),
baseFee: types.NewInt(100),
} }
genesis := mock.MkBlock(nil, 1, 1) genesis := mock.MkBlock(nil, 1, 1)
tma.tipsets = append(tma.tipsets, mock.TipSet(genesis)) tma.tipsets = append(tma.tipsets, mock.TipSet(genesis))
@ -182,7 +185,7 @@ func (tma *testMpoolAPI) LoadTipSet(tsk types.TipSetKey) (*types.TipSet, error)
} }
func (tma *testMpoolAPI) ChainComputeBaseFee(ctx context.Context, ts *types.TipSet) (types.BigInt, error) { func (tma *testMpoolAPI) ChainComputeBaseFee(ctx context.Context, ts *types.TipSet) (types.BigInt, error) {
return types.NewInt(100), nil return tma.baseFee, nil
} }
func assertNonce(t *testing.T, mp *MessagePool, addr address.Address, val uint64) { func assertNonce(t *testing.T, mp *MessagePool, addr address.Address, val uint64) {

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@ -102,7 +102,7 @@ func (mp *MessagePool) selectMessagesOptimal(curTs, ts *types.TipSet, tq float64
if len(chains) != 0 && chains[0].gasPerf < 0 { if len(chains) != 0 && chains[0].gasPerf < 0 {
log.Warnw("all messages in mpool have non-positive gas performance", "bestGasPerf", chains[0].gasPerf) log.Warnw("all messages in mpool have non-positive gas performance", "bestGasPerf", chains[0].gasPerf)
return nil, nil return result, nil
} }
// 3. Parition chains into blocks (without trimming) // 3. Parition chains into blocks (without trimming)
@ -351,7 +351,7 @@ func (mp *MessagePool) selectMessagesGreedy(curTs, ts *types.TipSet) ([]*types.S
if len(chains) != 0 && chains[0].gasPerf < 0 { if len(chains) != 0 && chains[0].gasPerf < 0 {
log.Warnw("all messages in mpool have non-positive gas performance", "bestGasPerf", chains[0].gasPerf) log.Warnw("all messages in mpool have non-positive gas performance", "bestGasPerf", chains[0].gasPerf)
return nil, nil return result, nil
} }
// 3. Merge the head chains to produce the list of messages selected for inclusion, subject to // 3. Merge the head chains to produce the list of messages selected for inclusion, subject to

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@ -728,6 +728,100 @@ func TestPriorityMessageSelection2(t *testing.T) {
} }
} }
func TestPriorityMessageSelection3(t *testing.T) {
mp, tma := makeTestMpool()
// the actors
w1, err := wallet.NewWallet(wallet.NewMemKeyStore())
if err != nil {
t.Fatal(err)
}
a1, err := w1.GenerateKey(crypto.SigTypeSecp256k1)
if err != nil {
t.Fatal(err)
}
w2, err := wallet.NewWallet(wallet.NewMemKeyStore())
if err != nil {
t.Fatal(err)
}
a2, err := w2.GenerateKey(crypto.SigTypeSecp256k1)
if err != nil {
t.Fatal(err)
}
block := tma.nextBlock()
ts := mock.TipSet(block)
tma.applyBlock(t, block)
gasLimit := gasguess.Costs[gasguess.CostKey{Code: builtin.StorageMarketActorCodeID, M: 2}]
tma.setBalance(a1, 1) // in FIL
tma.setBalance(a2, 1) // in FIL
mp.cfg.PriorityAddrs = []address.Address{a1}
tma.baseFee = types.NewInt(1000)
nMessages := 10
for i := 0; i < nMessages; i++ {
bias := (nMessages - i) / 3
m := makeTestMessage(w1, a1, a2, uint64(i), gasLimit, uint64(1000+i%3+bias))
mustAdd(t, mp, m)
// messages from a2 have negative performance
m = makeTestMessage(w2, a2, a1, uint64(i), gasLimit, 100)
mustAdd(t, mp, m)
}
// test greedy selection
msgs, err := mp.SelectMessages(ts, 1.0)
if err != nil {
t.Fatal(err)
}
expectedMsgs := 10
if len(msgs) != expectedMsgs {
t.Fatalf("expected %d messages but got %d", expectedMsgs, len(msgs))
}
// all messages must be from a1
nextNonce := uint64(0)
for _, m := range msgs {
if m.Message.From != a1 {
t.Fatal("expected messages from a1 before messages from a2")
}
if m.Message.Nonce != nextNonce {
t.Fatalf("expected nonce %d but got %d", nextNonce, m.Message.Nonce)
}
nextNonce++
}
// test optimal selection
msgs, err = mp.SelectMessages(ts, 0.1)
if err != nil {
t.Fatal(err)
}
expectedMsgs = 10
if len(msgs) != expectedMsgs {
t.Fatalf("expected %d messages but got %d", expectedMsgs, len(msgs))
}
// all messages must be from a1
nextNonce = uint64(0)
for _, m := range msgs {
if m.Message.From != a1 {
t.Fatal("expected messages from a1 before messages from a2")
}
if m.Message.Nonce != nextNonce {
t.Fatalf("expected nonce %d but got %d", nextNonce, m.Message.Nonce)
}
nextNonce++
}
}
func TestOptimalMessageSelection1(t *testing.T) { func TestOptimalMessageSelection1(t *testing.T) {
// this test uses just a single actor sending messages with a low tq // this test uses just a single actor sending messages with a low tq
// the chain depenent merging algorithm should pick messages from the actor // the chain depenent merging algorithm should pick messages from the actor