trie: add Commit-sequence tests for stacktrie commit (#21643)

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Martin Holst Swende 2020-09-30 19:49:20 +02:00 committed by GitHub
parent 053ed9cc84
commit 9d1e2027a0
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@ -666,6 +666,8 @@ func makeAccounts(size int) (addresses [][20]byte, accounts [][]byte) {
// spongeDb is a dummy db backend which accumulates writes in a sponge // spongeDb is a dummy db backend which accumulates writes in a sponge
type spongeDb struct { type spongeDb struct {
sponge hash.Hash sponge hash.Hash
id string
journal []string
} }
func (s *spongeDb) Has(key []byte) (bool, error) { panic("implement me") } func (s *spongeDb) Has(key []byte) (bool, error) { panic("implement me") }
@ -676,6 +678,11 @@ func (s *spongeDb) Stat(property string) (string, error) { panic("implement
func (s *spongeDb) Compact(start []byte, limit []byte) error { panic("implement me") } func (s *spongeDb) Compact(start []byte, limit []byte) error { panic("implement me") }
func (s *spongeDb) Close() error { return nil } func (s *spongeDb) Close() error { return nil }
func (s *spongeDb) Put(key []byte, value []byte) error { func (s *spongeDb) Put(key []byte, value []byte) error {
valbrief := value
if len(valbrief) > 8 {
valbrief = valbrief[:8]
}
s.journal = append(s.journal, fmt.Sprintf("%v: PUT([%x...], [%d bytes] %x...)\n", s.id, key[:8], len(value), valbrief))
s.sponge.Write(key) s.sponge.Write(key)
s.sponge.Write(value) s.sponge.Write(value)
return nil return nil
@ -793,6 +800,56 @@ func TestCommitSequenceRandomBlobs(t *testing.T) {
} }
} }
func TestCommitSequenceStackTrie(t *testing.T) {
for count := 1; count < 200; count++ {
prng := rand.New(rand.NewSource(int64(count)))
// This spongeDb is used to check the sequence of disk-db-writes
s := &spongeDb{sponge: sha3.NewLegacyKeccak256(), id: "a"}
db := NewDatabase(s)
trie, _ := New(common.Hash{}, db)
// Another sponge is used for the stacktrie commits
stackTrieSponge := &spongeDb{sponge: sha3.NewLegacyKeccak256(), id: "b"}
stTrie := NewStackTrie(stackTrieSponge)
// Fill the trie with elements
for i := 1; i < count; i++ {
// For the stack trie, we need to do inserts in proper order
key := make([]byte, 32)
binary.BigEndian.PutUint64(key, uint64(i))
var val []byte
// 50% short elements, 50% large elements
if prng.Intn(2) == 0 {
val = make([]byte, 1+prng.Intn(32))
} else {
val = make([]byte, 1+prng.Intn(1024))
}
prng.Read(val)
trie.TryUpdate(key, common.CopyBytes(val))
stTrie.TryUpdate(key, common.CopyBytes(val))
}
// Flush trie -> database
root, _ := trie.Commit(nil)
// Flush memdb -> disk (sponge)
db.Commit(root, false, nil)
// And flush stacktrie -> disk
stRoot := stTrie.Commit(stTrie.db)
if stRoot != root {
t.Fatalf("root wrong, got %x exp %x", stRoot, root)
}
if got, exp := stackTrieSponge.sponge.Sum(nil), s.sponge.Sum(nil); !bytes.Equal(got, exp) {
// Show the journal
t.Logf("Expected:")
for i, v := range s.journal {
t.Logf("op %d: %v", i, v)
}
t.Logf("Stacktrie:")
for i, v := range stackTrieSponge.journal {
t.Logf("op %d: %v", i, v)
}
t.Fatalf("test %d, disk write sequence wrong:\ngot %x exp %x\n", count, got, exp)
}
}
}
// BenchmarkCommitAfterHashFixedSize benchmarks the Commit (after Hash) of a fixed number of updates to a trie. // BenchmarkCommitAfterHashFixedSize benchmarks the Commit (after Hash) of a fixed number of updates to a trie.
// This benchmark is meant to capture the difference on efficiency of small versus large changes. Typically, // This benchmark is meant to capture the difference on efficiency of small versus large changes. Typically,
// storage tries are small (a couple of entries), whereas the full post-block account trie update is large (a couple // storage tries are small (a couple of entries), whereas the full post-block account trie update is large (a couple