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@@ -17,17 +17,174 @@
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package eth
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import (
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+ "bytes"
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+ "fmt"
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+ "math/big"
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"reflect"
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+ "sort"
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"testing"
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"github.com/davecgh/go-spew/spew"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/rawdb"
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"github.com/ethereum/go-ethereum/core/state"
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+ "github.com/ethereum/go-ethereum/crypto"
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)
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var dumper = spew.ConfigState{Indent: " "}
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+func accountRangeTest(t *testing.T, trie *state.Trie, statedb *state.StateDB, start *common.Hash, requestedNum int, expectedNum int) AccountRangeResult {
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+ result, err := accountRange(*trie, start, requestedNum)
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+ if err != nil {
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+ t.Fatal(err)
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+ }
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+
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+ if len(result.Accounts) != expectedNum {
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+ t.Fatalf("expected %d results. Got %d", expectedNum, len(result.Accounts))
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+ }
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+
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+ for _, address := range result.Accounts {
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+ if address == nil {
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+ t.Fatalf("null address returned")
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+ }
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+ if !statedb.Exist(*address) {
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+ t.Fatalf("account not found in state %s", address.Hex())
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+ }
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+ }
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+
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+ return result
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+}
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+
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+type resultHash []*common.Hash
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+
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+func (h resultHash) Len() int { return len(h) }
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+func (h resultHash) Swap(i, j int) { h[i], h[j] = h[j], h[i] }
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+func (h resultHash) Less(i, j int) bool { return bytes.Compare(h[i].Bytes(), h[j].Bytes()) < 0 }
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+
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+func TestAccountRange(t *testing.T) {
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+ var (
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+ statedb = state.NewDatabase(rawdb.NewMemoryDatabase())
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+ state, _ = state.New(common.Hash{}, statedb)
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+ addrs = [AccountRangeMaxResults * 2]common.Address{}
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+ m = map[common.Address]bool{}
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+ )
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+
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+ for i := range addrs {
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+ hash := common.HexToHash(fmt.Sprintf("%x", i))
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+ addr := common.BytesToAddress(crypto.Keccak256Hash(hash.Bytes()).Bytes())
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+ addrs[i] = addr
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+ state.SetBalance(addrs[i], big.NewInt(1))
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+ if _, ok := m[addr]; ok {
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+ t.Fatalf("bad")
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+ } else {
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+ m[addr] = true
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+ }
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+ }
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+
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+ state.Commit(true)
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+ root := state.IntermediateRoot(true)
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+
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+ trie, err := statedb.OpenTrie(root)
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+ if err != nil {
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+ t.Fatal(err)
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+ }
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+
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+ t.Logf("test getting number of results less than max")
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+ accountRangeTest(t, &trie, state, &common.Hash{0x0}, AccountRangeMaxResults/2, AccountRangeMaxResults/2)
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+
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+ t.Logf("test getting number of results greater than max %d", AccountRangeMaxResults)
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+ accountRangeTest(t, &trie, state, &common.Hash{0x0}, AccountRangeMaxResults*2, AccountRangeMaxResults)
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+
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+ t.Logf("test with empty 'start' hash")
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+ accountRangeTest(t, &trie, state, nil, AccountRangeMaxResults, AccountRangeMaxResults)
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+
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+ t.Logf("test pagination")
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+
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+ // test pagination
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+ firstResult := accountRangeTest(t, &trie, state, &common.Hash{0x0}, AccountRangeMaxResults, AccountRangeMaxResults)
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+
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+ t.Logf("test pagination 2")
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+ secondResult := accountRangeTest(t, &trie, state, &firstResult.Next, AccountRangeMaxResults, AccountRangeMaxResults)
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+
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+ hList := make(resultHash, 0)
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+ for h1, addr1 := range firstResult.Accounts {
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+ h := &common.Hash{}
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+ h.SetBytes(h1.Bytes())
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+ hList = append(hList, h)
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+ for h2, addr2 := range secondResult.Accounts {
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+ // Make sure that the hashes aren't the same
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+ if bytes.Equal(h1.Bytes(), h2.Bytes()) {
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+ t.Fatalf("pagination test failed: results should not overlap")
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+ }
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+
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+ // If either address is nil, then it makes no sense to compare
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+ // them as they might be two different accounts.
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+ if addr1 == nil || addr2 == nil {
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+ continue
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+ }
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+
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+ // Since the two hashes are different, they should not have
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+ // the same preimage, but let's check anyway in case there
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+ // is a bug in the (hash, addr) map generation code.
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+ if bytes.Equal(addr1.Bytes(), addr2.Bytes()) {
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+ t.Fatalf("pagination test failed: addresses should not repeat")
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+ }
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+ }
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+ }
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+
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+ // Test to see if it's possible to recover from the middle of the previous
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+ // set and get an even split between the first and second sets.
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+ t.Logf("test random access pagination")
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+ sort.Sort(hList)
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+ middleH := hList[AccountRangeMaxResults/2]
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+ middleResult := accountRangeTest(t, &trie, state, middleH, AccountRangeMaxResults, AccountRangeMaxResults)
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+ innone, infirst, insecond := 0, 0, 0
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+ for h := range middleResult.Accounts {
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+ if _, ok := firstResult.Accounts[h]; ok {
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+ infirst++
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+ } else if _, ok := secondResult.Accounts[h]; ok {
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+ insecond++
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+ } else {
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+ innone++
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+ }
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+ }
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+ if innone != 0 {
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+ t.Fatalf("%d hashes in the 'middle' set were neither in the first not the second set", innone)
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+ }
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+ if infirst != AccountRangeMaxResults/2 {
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+ t.Fatalf("Imbalance in the number of first-test results: %d != %d", infirst, AccountRangeMaxResults/2)
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+ }
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+ if insecond != AccountRangeMaxResults/2 {
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+ t.Fatalf("Imbalance in the number of second-test results: %d != %d", insecond, AccountRangeMaxResults/2)
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+ }
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+}
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+
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+func TestEmptyAccountRange(t *testing.T) {
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+ var (
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+ statedb = state.NewDatabase(rawdb.NewMemoryDatabase())
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+ state, _ = state.New(common.Hash{}, statedb)
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+ )
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+
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+ state.Commit(true)
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+ root := state.IntermediateRoot(true)
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+
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+ trie, err := statedb.OpenTrie(root)
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+ if err != nil {
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+ t.Fatal(err)
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+ }
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+
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+ results, err := accountRange(trie, &common.Hash{0x0}, AccountRangeMaxResults)
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+ if err != nil {
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+ t.Fatalf("Empty results should not trigger an error: %v", err)
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+ }
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+ if results.Next != common.HexToHash("0") {
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+ t.Fatalf("Empty results should not return a second page")
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+ }
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+ if len(results.Accounts) != 0 {
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+ t.Fatalf("Empty state should not return addresses: %v", results.Accounts)
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+ }
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+}
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+
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func TestStorageRangeAt(t *testing.T) {
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// Create a state where account 0x010000... has a few storage entries.
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var (
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