This commit is contained in:
Jeffrey Wilcke 2016-03-09 21:17:51 +00:00
commit 98a8cf905a
5 changed files with 500 additions and 7 deletions

198
balancer/balancer.go Normal file
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@ -0,0 +1,198 @@
package balancer
import "container/heap"
var maxTaskBuffer = 3000 // maximum amount of work a worker can have in its buffer
// Task repsents a single batch of work offered to a worker.
type Task struct {
fn func() error // work function
c chan error // return channel
}
// NewTask returns a new task and sets the proper fields.
func NewTask(fn func() error, c chan error) Task {
return Task{
fn: fn,
c: c,
}
}
// Worker is a worker that will take one it's assigned tasks
// and execute it
type Worker struct {
id int // worker id
// work attributes
tasks chan Task // tasks to do (buffered)
pending int // count of pending work
quit chan struct{} // quit channel
// heap attributes
index int // index in the heap
// temporary worker attributes
temp bool // is temporary worker
start int // start pending count
}
// work will take the oldest task and execute the function and
// yield the result back in to the return error channel.
func (w *Worker) work(done chan *Worker) {
for {
select {
case task := <-w.tasks: // get task...
task.c <- task.fn() // ...execute the task
done <- w // we're done
case <-w.quit:
return
}
}
}
// Pool is a pool of workers and implements containers.Heap
type Pool []*Worker
// Len returns teh length of the pool.
func (p Pool) Len() int { return len(p) }
// Less returns whether p[i} has less burden than p[j].
func (p Pool) Less(i, j int) bool { return p[i].pending < p[j].pending }
// Swap swaps p[i] with p[j] and swaps their internal indices.
func (p Pool) Swap(i, j int) {
p[i].index = j // trade i<->j
p[j].index = i // trade j<->i
p[i], p[j] = p[j], p[i]
}
// Push pushes the worker x to the pool and sets the index.
func (p *Pool) Push(x interface{}) {
w := x.(*Worker) // cast the worker
w.index = len(*p) // assign the new index
*p = append(*p, x.(*Worker))
}
// Pop pops and returns the last item in p.
func (p *Pool) Pop() interface{} {
old := *p
n := len(old)
x := old[n-1]
*p = old[0 : n-1]
return x
}
// Balancer is responsible for balancing any given tasks
// to the pool of workers. The workers are managed by the
// balancer and will try to make sure that the workers are
// equally balanced in "work to complete".
type Balancer struct {
poolSize int // initial pool size, important for temp workers.
pool Pool
done chan *Worker
work chan Task
}
// New returns a new load balancer
func New(poolSize int) *Balancer {
balancer := &Balancer{
poolSize: poolSize,
done: make(chan *Worker, poolSize),
work: make(chan Task, poolSize*10),
pool: make(Pool, 0, poolSize),
}
heap.Init(&balancer.pool)
// fill the pool with the given pool size
for i := 0; i < poolSize; i++ {
// create new worker
worker := &Worker{id: i, tasks: make(chan Task, maxTaskBuffer)}
// spawn worker process
go worker.work(balancer.done)
heap.Push(&balancer.pool, worker)
}
// spawn own balancer task
go balancer.balance(balancer.work)
return balancer
}
// Push pushes the given tasks in to the work channel.
func (b *Balancer) Push(work Task) {
b.work <- work
}
// balance is the main thread of the balancer and handles the dispatching
// of workers and completion of them.
func (b *Balancer) balance(work chan Task) {
for {
select {
case task := <-work: // get task
b.dispatch(task) // dispatch the tasks
case w := <-b.done: // worker is done
b.completed(w) // handle worker
}
}
}
// dispatch dispatches the tasks to the least loaded worker.
func (b *Balancer) dispatch(task Task) {
// Take least loaded worker
w := heap.Pop(&b.pool).(*Worker)
// If a worker is full the next write to the channel will block
// we then instead create a new temporary worker that will take
// over the task we originally wanted to push on the worker.
// What this will do is create a new worker and set the state to be
// "temporary". This means that when the "completed" handler is
// called we check for temporaryness and discard it if it's empty.
// Temporary workers never get precedence over non-temporary
// workers by setting their start state to that equal of the
// pool size - start pool size * max task buffer.
// This may result in false positives with the falsity being that
// len(w.tasks) is higher than the actual. This will then create
// a temporary worker that may not have been necessary, this is
// considered to be a reasonable tradeoff.
if len(w.tasks) == cap(w.tasks) {
heap.Push(&b.pool, w) // push full worker back to heap
// set the pending state (i.e. high load)
pending := (len(b.pool) - b.poolSize + 1) * maxTaskBuffer
// create the new temporary worker
worker := &Worker{
tasks: make(chan Task, maxTaskBuffer),
temp: true,
start: pending,
pending: pending,
quit: make(chan struct{}),
}
go worker.work(b.done) // spawn worker process
w = worker // set new worker
}
// send it a task
w.tasks <- task
// add to its queue
w.pending++
// put it back in the heap
heap.Push(&b.pool, w)
}
// completed handles the worker and puts it back in the pool
// based on it's load.
func (b *Balancer) completed(w *Worker) {
// reduce one task
w.pending--
// remove it from the heap
heap.Remove(&b.pool, w.index)
// short circuit if temp worker depleted
// results in temp worker being discarded
if w.temp && w.pending == w.start {
close(w.quit)
return
}
// put it back in place
heap.Push(&b.pool, w)
}

194
balancer/balancer_test.go Normal file
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@ -0,0 +1,194 @@
package balancer
import (
"container/heap"
"math/big"
"testing"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto"
)
func TestTemporaryWorker(t *testing.T) {
size := 5
maxTaskBuffer = 1
balancer := New(4)
qchan := make([]chan struct{}, size)
errch := make(chan error, size)
for i := 0; i < size; i++ {
i := i
qchan[i] = make(chan struct{})
balancer.dispatch(NewTask(func() error {
<-qchan[i] // blocks
return nil
}, errch))
}
if len(balancer.pool) != balancer.poolSize+1 {
t.Fatal("expected pool to be size", balancer.poolSize+1, "got", len(balancer.pool))
}
lastWorker := balancer.pool[len(balancer.pool)-1]
if !lastWorker.temp {
t.Error("expected last worker to be temp worker")
}
if lastWorker.start != (len(balancer.pool)-balancer.poolSize)*maxTaskBuffer {
t.Error("expected temp worker start", balancer.poolSize, "got", lastWorker.start)
}
// clean up
for i := 0; i < cap(qchan); i++ {
close(qchan[i])
}
}
func TestLoad(t *testing.T) {
maxTaskBuffer = 2
size := 5
balancer := New(4)
qchan := make([]chan struct{}, size)
errch := make(chan error, size)
for i := 0; i < size; i++ {
i := i
qchan[i] = make(chan struct{})
balancer.dispatch(NewTask(func() error {
<-qchan[i] // blocks
return nil
}, errch))
}
var foundTwo bool
for _, worker := range balancer.pool {
if worker.pending == 2 {
foundTwo = true
}
}
if !foundTwo {
t.Error("expected to have at least one item with pending 2")
}
// clean up
for i := 0; i < cap(qchan); i++ {
close(qchan[i])
}
}
func TestPool(t *testing.T) {
pool := make(Pool, 0)
heap.Init(&pool)
var workers = []*Worker{
&Worker{id: 0, pending: 0},
&Worker{id: 1, pending: 1},
}
for _, worker := range workers {
heap.Push(&pool, worker)
}
worker := heap.Pop(&pool).(*Worker)
if worker.id != 0 {
t.Error("expected worker 0 to be popped")
}
worker.pending = 2
heap.Push(&pool, worker)
if pool[worker.index] != worker {
t.Error("expected", worker.index, "to be at index but got different worker")
}
worker = heap.Pop(&pool).(*Worker)
if worker.id != 1 {
t.Error("expected worker 1 to be popped")
}
heap.Push(&pool, worker)
if pool[worker.index] != worker {
t.Error("expected", worker.index, "to be at index but got different worker")
}
}
func makeTxs(size int, b *testing.B) []types.Transactions {
key, _ := crypto.GenerateKey()
batches := make([]types.Transactions, b.N)
for i := 0; i < b.N; i++ {
txs := make(types.Transactions, size)
for j := range txs {
var err error
txs[j], err = types.NewTransaction(0, common.Address{}, new(big.Int), new(big.Int), new(big.Int), nil).SignECDSA(key)
if err != nil {
b.Fatal(err)
}
}
batches[i] = txs
}
return batches
}
const benchTxSize = 1024
func BenchmarkTxsRaw(b *testing.B) {
batches := makeTxs(benchTxSize, b)
b.ResetTimer()
for i := 0; i < b.N; i++ {
txs := batches[i]
b.StartTimer()
for _, tx := range txs {
if _, err := tx.From(); err != nil {
b.Fatal(err)
}
}
}
}
func BenchmarkTxsLoadBalancer(b *testing.B) {
balancer := New(4)
batches := makeTxs(benchTxSize, b)
b.ResetTimer()
for i := 0; i < b.N; i++ {
txs := batches[i]
var (
size = 8
batchsize = len(txs) / size
ch = make(chan error, size)
)
for j := 0; j < size; j++ {
j := j
task := Task{
fn: func() error {
for _, tx := range txs[j*size : j*size+batchsize] {
if _, err := tx.From(); err != nil {
return err
}
}
return nil
},
c: ch,
}
balancer.Push(task)
}
for j := 0; j < size; j++ {
if err := <-ch; err != nil {
b.Error(err)
}
}
close(ch)
}
}

View file

@ -175,7 +175,7 @@ func (v *BlockValidator) VerifyUncles(block, parent *types.Block) error {
return UncleError("uncle[%d](%x)'s parent is not ancestor (%x)", i, hash[:4], uncle.ParentHash[0:4]) return UncleError("uncle[%d](%x)'s parent is not ancestor (%x)", i, hash[:4], uncle.ParentHash[0:4])
} }
if err := ValidateHeader(v.Pow, uncle, ancestors[uncle.ParentHash].Header(), true, true); err != nil { if err := ValidateHeader(v.Pow, uncle, ancestors[uncle.ParentHash].Header(), false, true); err != nil {
return ValidationError(fmt.Sprintf("uncle[%d](%x) header invalid: %v", i, hash[:4], err)) return ValidationError(fmt.Sprintf("uncle[%d](%x) header invalid: %v", i, hash[:4], err))
} }
} }

99
core/block_work.go Normal file
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@ -0,0 +1,99 @@
package core
import (
"fmt"
"github.com/ethereum/go-ethereum/balancer"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/pow"
)
// nonceResult returns whether the nonce was valid or not.
type nonceResult struct {
index int
err error
}
// CreateBlockTasks creates new work for the load balancer and returns a
// channel on which the results of each block is written.
func CreateBlockTasks(b *balancer.Balancer, blocks []*types.Block, checker pow.PoW) chan nonceResult {
if len(blocks) == 0 {
return nil
}
var (
// Nonce result channel used to post the result of each nonce
// checked by the task.
nonceResults = make(chan nonceResult, len(blocks))
// Error channel (ignored, see below)
errch = make(chan error, len(blocks))
)
for i, block := range blocks {
i := i
task := balancer.NewTask(func() error {
var err error
// verify the block's nonce...
if !checker.Verify(block) {
err = &BlockNonceErr{Hash: block.Hash(), Number: block.Number(), Nonce: block.Nonce()}
}
// ...verify the block uncle's nonces...
for _, u := range block.Uncles() {
if !checker.Verify(types.NewBlockWithHeader(u)) {
err = fmt.Errorf("uncle: %v", BlockNonceErr{Hash: u.Hash(), Number: u.Number, Nonce: block.Nonce()})
break
}
}
// ...and write the result on the results chan
nonceResults <- nonceResult{i, err}
// return nil, ignore error handling by the balancer
return nil
}, errch)
// push task to the balancer
b.Push(task)
// create transaction tasks for this block
CreateTxWork(b, block.Transactions())
}
// we aren't at all interested in the errors
// since we handle errors ourself.
go func() {
// empty out the error channel
for i := 0; i < len(blocks); i++ {
<-errch
}
close(errch)
}()
return nonceResults
}
// CreateTxWork creates new tasks for the load balancer and derives the public
// key for each transaction.
func CreateTxWork(b *balancer.Balancer, txs types.Transactions) {
if len(txs) == 0 {
return
}
// error channel (ignored, see below)
errch := make(chan error, len(txs))
// create a new tasks for each transaction and derive the public
// key from the sender signature.
for i := 0; i < len(txs); i++ {
i := i
// create new tasks
task := balancer.NewTask(func() error {
txs[i].FromFrontier()
return nil
}, errch)
// push task to the balancer
b.Push(task)
}
// we aren't at all interested in the errors
go func() {
for i := 0; i < cap(errch); i++ {
<-errch
}
close(errch)
}()
}

View file

@ -30,6 +30,7 @@ import (
"sync/atomic" "sync/atomic"
"time" "time"
"github.com/ethereum/go-ethereum/balancer"
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/state" "github.com/ethereum/go-ethereum/core/state"
"github.com/ethereum/go-ethereum/core/types" "github.com/ethereum/go-ethereum/core/types"
@ -113,6 +114,7 @@ type BlockChain struct {
rand *mrand.Rand rand *mrand.Rand
processor Processor processor Processor
validator Validator validator Validator
balancer *balancer.Balancer
} }
// NewBlockChain returns a fully initialised block chain using information // NewBlockChain returns a fully initialised block chain using information
@ -137,6 +139,7 @@ func NewBlockChain(chainDb ethdb.Database, pow pow.PoW, mux *event.TypeMux) (*Bl
blockCache: blockCache, blockCache: blockCache,
futureBlocks: futureBlocks, futureBlocks: futureBlocks,
pow: pow, pow: pow,
balancer: balancer.New(runtime.GOMAXPROCS(0)),
} }
// Seed a fast but crypto originating random generator // Seed a fast but crypto originating random generator
seed, err := crand.Int(crand.Reader, big.NewInt(math.MaxInt64)) seed, err := crand.Int(crand.Reader, big.NewInt(math.MaxInt64))
@ -1120,10 +1123,8 @@ func (self *BlockChain) InsertChain(chain types.Blocks) (int, error) {
nonceChecked = make([]bool, len(chain)) nonceChecked = make([]bool, len(chain))
) )
// Start the parallel nonce verifier. // Start the parallel nonce verifier.
nonceAbort, nonceResults := verifyNoncesFromBlocks(self.pow, chain) nonceResults := CreateBlockTasks(self.balancer, chain, self.pow)
defer close(nonceAbort)
txcount := 0 txcount := 0
for i, block := range chain { for i, block := range chain {
@ -1138,9 +1139,8 @@ func (self *BlockChain) InsertChain(chain types.Blocks) (int, error) {
for !nonceChecked[i] { for !nonceChecked[i] {
r := <-nonceResults r := <-nonceResults
nonceChecked[r.index] = true nonceChecked[r.index] = true
if !r.valid { if r.err != nil {
block := chain[r.index] return r.index, r.err
return r.index, &BlockNonceErr{Hash: block.Hash(), Number: block.Number(), Nonce: block.Nonce()}
} }
} }
@ -1252,6 +1252,8 @@ func (self *BlockChain) InsertChain(chain types.Blocks) (int, error) {
} }
stats.processed++ stats.processed++
} }
// close the bogus errch. errors are delivered using owned channel
//close(errch) // we don't need to bother with checking
if (stats.queued > 0 || stats.processed > 0 || stats.ignored > 0) && bool(glog.V(logger.Info)) { if (stats.queued > 0 || stats.processed > 0 || stats.ignored > 0) && bool(glog.V(logger.Info)) {
tend := time.Since(tstart) tend := time.Since(tstart)