core/state, ethdb, trie: test intermediate secure key leak, fix memdb bug
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		@@ -50,3 +50,71 @@ func TestUpdateLeaks(t *testing.T) {
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		t.Errorf("State leaked into database: %x -> %x", key, value)
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							t.Errorf("State leaked into database: %x -> %x", key, value)
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	}
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						}
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}
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					}
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					// Tests that no intermediate state of an object is stored into the database,
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					// only the one right before the commit.
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					func TestIntermediateLeaks(t *testing.T) {
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						// Create two state databases, one transitioning to the final state, the other final from the beginning
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						transDb, _ := ethdb.NewMemDatabase()
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						finalDb, _ := ethdb.NewMemDatabase()
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						transState, _ := New(common.Hash{}, transDb)
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						finalState, _ := New(common.Hash{}, finalDb)
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						// Update the states with some objects
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						for i := byte(0); i < 255; i++ {
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							// Create a new state object with some data into the transition database
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							obj := transState.GetOrNewStateObject(common.BytesToAddress([]byte{i}))
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							obj.SetBalance(big.NewInt(int64(11 * i)))
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							obj.SetNonce(uint64(42 * i))
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							if i%2 == 0 {
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								obj.SetState(common.BytesToHash([]byte{i, i, i, 0}), common.BytesToHash([]byte{i, i, i, i, 0}))
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							}
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							if i%3 == 0 {
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								obj.SetCode([]byte{i, i, i, i, i, 0})
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							}
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							transState.UpdateStateObject(obj)
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							// Overwrite all the data with new values in the transition database
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							obj.SetBalance(big.NewInt(int64(11*i + 1)))
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							obj.SetNonce(uint64(42*i + 1))
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							if i%2 == 0 {
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								obj.SetState(common.BytesToHash([]byte{i, i, i, 0}), common.Hash{})
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								obj.SetState(common.BytesToHash([]byte{i, i, i, 1}), common.BytesToHash([]byte{i, i, i, i, 1}))
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							}
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							if i%3 == 0 {
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								obj.SetCode([]byte{i, i, i, i, i, 1})
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							}
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							transState.UpdateStateObject(obj)
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							// Create the final state object directly in the final database
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							obj = finalState.GetOrNewStateObject(common.BytesToAddress([]byte{i}))
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							obj.SetBalance(big.NewInt(int64(11*i + 1)))
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							obj.SetNonce(uint64(42*i + 1))
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							if i%2 == 0 {
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								obj.SetState(common.BytesToHash([]byte{i, i, i, 1}), common.BytesToHash([]byte{i, i, i, i, 1}))
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							}
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							if i%3 == 0 {
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								obj.SetCode([]byte{i, i, i, i, i, 1})
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							}
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							finalState.UpdateStateObject(obj)
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						}
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						if _, err := transState.Commit(); err != nil {
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							t.Fatalf("failed to commit transition state: %v", err)
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						}
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						if _, err := finalState.Commit(); err != nil {
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							t.Fatalf("failed to commit final state: %v", err)
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						}
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						// Cross check the databases to ensure they are the same
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						for _, key := range finalDb.Keys() {
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							if _, err := transDb.Get(key); err != nil {
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								val, _ := finalDb.Get(key)
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								t.Errorf("entry missing from the transition database: %x -> %x", key, val)
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							}
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						}
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						for _, key := range transDb.Keys() {
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							if _, err := finalDb.Get(key); err != nil {
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								val, _ := transDb.Get(key)
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								t.Errorf("extra entry in the transition database: %x -> %x", key, val)
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							}
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						}
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					}
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@@ -107,7 +107,7 @@ func (b *memBatch) Put(key, value []byte) error {
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	b.lock.Lock()
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						b.lock.Lock()
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	defer b.lock.Unlock()
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						defer b.lock.Unlock()
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	b.writes = append(b.writes, kv{key, common.CopyBytes(value)})
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						b.writes = append(b.writes, kv{common.CopyBytes(key), common.CopyBytes(value)})
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	return nil
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						return nil
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}
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					}
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@@ -109,7 +109,7 @@ func (t *SecureTrie) TryUpdate(key, value []byte) error {
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	if err != nil {
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						if err != nil {
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		return err
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							return err
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	}
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						}
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	t.secKeyCache[string(hk)] = key
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						t.secKeyCache[string(hk)] = common.CopyBytes(key)
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	return nil
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						return nil
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}
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					}
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@@ -123,7 +123,9 @@ func (t *SecureTrie) Delete(key []byte) {
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// TryDelete removes any existing value for key from the trie.
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					// TryDelete removes any existing value for key from the trie.
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// If a node was not found in the database, a MissingNodeError is returned.
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					// If a node was not found in the database, a MissingNodeError is returned.
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func (t *SecureTrie) TryDelete(key []byte) error {
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					func (t *SecureTrie) TryDelete(key []byte) error {
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	return t.Trie.TryDelete(t.hashKey(key))
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						hk := t.hashKey(key)
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						delete(t.secKeyCache, string(hk))
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						return t.Trie.TryDelete(hk)
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}
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					}
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// GetKey returns the sha3 preimage of a hashed key that was
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					// GetKey returns the sha3 preimage of a hashed key that was
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