core/types: optimize bloom filters (#21624)
* core/types: tests for bloom * core/types: refactored bloom filter for receipts, added tests core/types: replaced old bloom implementation core/types: change interface of bloom add+test * core/types: refactor bloom * core/types: minor tweak on LogsBloom Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>
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@ -17,6 +17,7 @@
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package types
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import (
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"encoding/binary"
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"fmt"
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"math/big"
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@ -57,28 +58,36 @@ func (b *Bloom) SetBytes(d []byte) {
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}
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// Add adds d to the filter. Future calls of Test(d) will return true.
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func (b *Bloom) Add(d *big.Int) {
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bin := new(big.Int).SetBytes(b[:])
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bin.Or(bin, bloom9(d.Bytes()))
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b.SetBytes(bin.Bytes())
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func (b *Bloom) Add(d []byte) {
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b.add(d, make([]byte, 6))
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}
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// add is internal version of Add, which takes a scratch buffer for reuse (needs to be at least 6 bytes)
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func (b *Bloom) add(d []byte, buf []byte) {
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i1, v1, i2, v2, i3, v3 := bloomValues(d, buf)
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b[i1] |= v1
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b[i2] |= v2
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b[i3] |= v3
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}
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// Big converts b to a big integer.
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// Note: Converting a bloom filter to a big.Int and then calling GetBytes
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// does not return the same bytes, since big.Int will trim leading zeroes
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func (b Bloom) Big() *big.Int {
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return new(big.Int).SetBytes(b[:])
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}
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// Bytes returns the backing byte slice of the bloom
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func (b Bloom) Bytes() []byte {
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return b[:]
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}
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func (b Bloom) Test(test *big.Int) bool {
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return BloomLookup(b, test)
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}
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func (b Bloom) TestBytes(test []byte) bool {
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return b.Test(new(big.Int).SetBytes(test))
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// Test checks if the given topic is present in the bloom filter
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func (b Bloom) Test(topic []byte) bool {
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i1, v1, i2, v2, i3, v3 := bloomValues(topic, make([]byte, 6))
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return v1 == v1&b[i1] &&
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v2 == v2&b[i2] &&
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v3 == v3&b[i3]
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}
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// MarshalText encodes b as a hex string with 0x prefix.
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@ -91,46 +100,61 @@ func (b *Bloom) UnmarshalText(input []byte) error {
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return hexutil.UnmarshalFixedText("Bloom", input, b[:])
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}
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// CreateBloom creates a bloom filter out of the give Receipts (+Logs)
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func CreateBloom(receipts Receipts) Bloom {
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bin := new(big.Int)
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buf := make([]byte, 6)
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var bin Bloom
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for _, receipt := range receipts {
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bin.Or(bin, LogsBloom(receipt.Logs))
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}
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return BytesToBloom(bin.Bytes())
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}
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func LogsBloom(logs []*Log) *big.Int {
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bin := new(big.Int)
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for _, log := range logs {
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bin.Or(bin, bloom9(log.Address.Bytes()))
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for _, log := range receipt.Logs {
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bin.add(log.Address.Bytes(), buf)
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for _, b := range log.Topics {
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bin.Or(bin, bloom9(b[:]))
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bin.add(b[:], buf)
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}
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}
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}
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return bin
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}
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func bloom9(b []byte) *big.Int {
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b = crypto.Keccak256(b)
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r := new(big.Int)
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for i := 0; i < 6; i += 2 {
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t := big.NewInt(1)
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b := (uint(b[i+1]) + (uint(b[i]) << 8)) & 2047
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r.Or(r, t.Lsh(t, b))
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// LogsBloom returns the bloom bytes for the given logs
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func LogsBloom(logs []*Log) []byte {
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buf := make([]byte, 6)
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var bin Bloom
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for _, log := range logs {
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bin.add(log.Address.Bytes(), buf)
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for _, b := range log.Topics {
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bin.add(b[:], buf)
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}
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return r
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}
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return bin[:]
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}
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var Bloom9 = bloom9
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// Bloom9 returns the bloom filter for the given data
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func Bloom9(data []byte) []byte {
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var b Bloom
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b.SetBytes(data)
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return b.Bytes()
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}
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// bloomValues returns the bytes (index-value pairs) to set for the given data
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func bloomValues(data []byte, hashbuf []byte) (uint, byte, uint, byte, uint, byte) {
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sha := hasherPool.Get().(crypto.KeccakState)
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sha.Reset()
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sha.Write(data)
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sha.Read(hashbuf)
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hasherPool.Put(sha)
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// The actual bits to flip
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v1 := byte(1 << (hashbuf[1] & 0x7))
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v2 := byte(1 << (hashbuf[3] & 0x7))
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v3 := byte(1 << (hashbuf[5] & 0x7))
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// The indices for the bytes to OR in
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i1 := BloomByteLength - uint((binary.BigEndian.Uint16(hashbuf)&0x7ff)>>3) - 1
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i2 := BloomByteLength - uint((binary.BigEndian.Uint16(hashbuf[2:])&0x7ff)>>3) - 1
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i3 := BloomByteLength - uint((binary.BigEndian.Uint16(hashbuf[4:])&0x7ff)>>3) - 1
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return i1, v1, i2, v2, i3, v3
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}
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// BloomLookup is a convenience-method to check presence int he bloom filter
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func BloomLookup(bin Bloom, topic bytesBacked) bool {
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bloom := bin.Big()
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cmp := bloom9(topic.Bytes())
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return bloom.And(bloom, cmp).Cmp(cmp) == 0
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return bin.Test(topic.Bytes())
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}
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@ -17,8 +17,12 @@
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package types
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import (
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"fmt"
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"math/big"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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)
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func TestBloom(t *testing.T) {
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@ -35,47 +39,118 @@ func TestBloom(t *testing.T) {
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var bloom Bloom
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for _, data := range positive {
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bloom.Add(new(big.Int).SetBytes([]byte(data)))
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bloom.Add([]byte(data))
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}
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for _, data := range positive {
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if !bloom.TestBytes([]byte(data)) {
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if !bloom.Test([]byte(data)) {
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t.Error("expected", data, "to test true")
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}
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}
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for _, data := range negative {
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if bloom.TestBytes([]byte(data)) {
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if bloom.Test([]byte(data)) {
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t.Error("did not expect", data, "to test true")
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}
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}
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}
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/*
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import (
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"testing"
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"github.com/ethereum/go-ethereum/core/state"
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)
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func TestBloom9(t *testing.T) {
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testCase := []byte("testtest")
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bin := LogsBloom([]state.Log{
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{testCase, [][]byte{[]byte("hellohello")}, nil},
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}).Bytes()
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res := BloomLookup(bin, testCase)
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if !res {
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t.Errorf("Bloom lookup failed")
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// TestBloomExtensively does some more thorough tests
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func TestBloomExtensively(t *testing.T) {
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var exp = common.HexToHash("c8d3ca65cdb4874300a9e39475508f23ed6da09fdbc487f89a2dcf50b09eb263")
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var b Bloom
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// Add 100 "random" things
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for i := 0; i < 100; i++ {
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data := fmt.Sprintf("xxxxxxxxxx data %d yyyyyyyyyyyyyy", i)
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b.Add([]byte(data))
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//b.Add(new(big.Int).SetBytes([]byte(data)))
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}
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got := crypto.Keccak256Hash(b.Bytes())
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if got != exp {
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t.Errorf("Got %x, exp %x", got, exp)
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}
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var b2 Bloom
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b2.SetBytes(b.Bytes())
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got2 := crypto.Keccak256Hash(b2.Bytes())
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if got != got2 {
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t.Errorf("Got %x, exp %x", got, got2)
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}
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}
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func TestAddress(t *testing.T) {
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block := &Block{}
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block.Coinbase = common.Hex2Bytes("22341ae42d6dd7384bc8584e50419ea3ac75b83f")
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fmt.Printf("%x\n", crypto.Keccak256(block.Coinbase))
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bin := CreateBloom(block)
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fmt.Printf("bin = %x\n", common.LeftPadBytes(bin, 64))
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func BenchmarkBloom9(b *testing.B) {
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test := []byte("testestestest")
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for i := 0; i < b.N; i++ {
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Bloom9(test)
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}
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}
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func BenchmarkBloom9Lookup(b *testing.B) {
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toTest := []byte("testtest")
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bloom := new(Bloom)
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for i := 0; i < b.N; i++ {
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bloom.Test(toTest)
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}
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}
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func BenchmarkCreateBloom(b *testing.B) {
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var txs = Transactions{
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NewContractCreation(1, big.NewInt(1), 1, big.NewInt(1), nil),
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NewTransaction(2, common.HexToAddress("0x2"), big.NewInt(2), 2, big.NewInt(2), nil),
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}
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var rSmall = Receipts{
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&Receipt{
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Status: ReceiptStatusFailed,
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CumulativeGasUsed: 1,
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Logs: []*Log{
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{Address: common.BytesToAddress([]byte{0x11})},
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{Address: common.BytesToAddress([]byte{0x01, 0x11})},
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},
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TxHash: txs[0].Hash(),
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ContractAddress: common.BytesToAddress([]byte{0x01, 0x11, 0x11}),
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GasUsed: 1,
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},
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&Receipt{
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PostState: common.Hash{2}.Bytes(),
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CumulativeGasUsed: 3,
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Logs: []*Log{
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{Address: common.BytesToAddress([]byte{0x22})},
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{Address: common.BytesToAddress([]byte{0x02, 0x22})},
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},
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TxHash: txs[1].Hash(),
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ContractAddress: common.BytesToAddress([]byte{0x02, 0x22, 0x22}),
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GasUsed: 2,
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},
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}
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var rLarge = make(Receipts, 200)
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// Fill it with 200 receipts x 2 logs
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for i := 0; i < 200; i += 2 {
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copy(rLarge[i:], rSmall)
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}
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b.Run("small", func(b *testing.B) {
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b.ReportAllocs()
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var bl Bloom
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for i := 0; i < b.N; i++ {
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bl = CreateBloom(rSmall)
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}
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b.StopTimer()
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var exp = common.HexToHash("c384c56ece49458a427c67b90fefe979ebf7104795be65dc398b280f24104949")
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got := crypto.Keccak256Hash(bl.Bytes())
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if got != exp {
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b.Errorf("Got %x, exp %x", got, exp)
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}
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})
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b.Run("large", func(b *testing.B) {
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b.ReportAllocs()
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var bl Bloom
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for i := 0; i < b.N; i++ {
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bl = CreateBloom(rLarge)
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}
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b.StopTimer()
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var exp = common.HexToHash("c384c56ece49458a427c67b90fefe979ebf7104795be65dc398b280f24104949")
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got := crypto.Keccak256Hash(bl.Bytes())
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if got != exp {
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b.Errorf("Got %x, exp %x", got, exp)
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}
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})
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}
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*/
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