godep: update docker/docker/pkg

Signed-off-by: Andrea Luzzardi <aluzzardi@gmail.com>
This commit is contained in:
Andrea Luzzardi 2015-05-06 23:38:19 -07:00
parent 1a82c9ce7d
commit c9199cef5a
10 changed files with 446 additions and 32 deletions

12
Godeps/Godeps.json generated
View File

@ -32,18 +32,18 @@
},
{
"ImportPath": "github.com/docker/docker/pkg/ioutils",
"Comment": "v1.4.1-216-g12fef2d",
"Rev": "12fef2d8df4e5da024418e324f7e3c3e82220a27"
"Comment": "v1.4.1-3245-g443437f",
"Rev": "443437f5ea04da9d62bf3e05d7951f7d30e77d96"
},
{
"ImportPath": "github.com/docker/docker/pkg/parsers/filters",
"Comment": "v1.4.1-216-g12fef2d",
"Rev": "12fef2d8df4e5da024418e324f7e3c3e82220a27"
"Comment": "v1.4.1-3245-g443437f",
"Rev": "443437f5ea04da9d62bf3e05d7951f7d30e77d96"
},
{
"ImportPath": "github.com/docker/docker/pkg/units",
"Comment": "v1.4.1-216-g12fef2d",
"Rev": "12fef2d8df4e5da024418e324f7e3c3e82220a27"
"Comment": "v1.4.1-3245-g443437f",
"Rev": "443437f5ea04da9d62bf3e05d7951f7d30e77d96"
},
{
"ImportPath": "github.com/gorilla/context",

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@ -2,8 +2,13 @@ package ioutils
import (
"bytes"
"crypto/rand"
"crypto/sha256"
"encoding/hex"
"io"
"math/big"
"sync"
"time"
)
type readCloserWrapper struct {
@ -42,20 +47,40 @@ func NewReaderErrWrapper(r io.Reader, closer func()) io.Reader {
}
}
// bufReader allows the underlying reader to continue to produce
// output by pre-emptively reading from the wrapped reader.
// This is achieved by buffering this data in bufReader's
// expanding buffer.
type bufReader struct {
sync.Mutex
buf *bytes.Buffer
reader io.Reader
err error
wait sync.Cond
drainBuf []byte
buf *bytes.Buffer
reader io.Reader
err error
wait sync.Cond
drainBuf []byte
reuseBuf []byte
maxReuse int64
resetTimeout time.Duration
bufLenResetThreshold int64
maxReadDataReset int64
}
func NewBufReader(r io.Reader) *bufReader {
var timeout int
if randVal, err := rand.Int(rand.Reader, big.NewInt(120)); err == nil {
timeout = int(randVal.Int64()) + 180
} else {
timeout = 300
}
reader := &bufReader{
buf: &bytes.Buffer{},
drainBuf: make([]byte, 1024),
reader: r,
buf: &bytes.Buffer{},
drainBuf: make([]byte, 1024),
reuseBuf: make([]byte, 4096),
maxReuse: 1000,
resetTimeout: time.Second * time.Duration(timeout),
bufLenResetThreshold: 100 * 1024,
maxReadDataReset: 10 * 1024 * 1024,
reader: r,
}
reader.wait.L = &reader.Mutex
go reader.drain()
@ -74,14 +99,94 @@ func NewBufReaderWithDrainbufAndBuffer(r io.Reader, drainBuffer []byte, buffer *
}
func (r *bufReader) drain() {
var (
duration time.Duration
lastReset time.Time
now time.Time
reset bool
bufLen int64
dataSinceReset int64
maxBufLen int64
reuseBufLen int64
reuseCount int64
)
reuseBufLen = int64(len(r.reuseBuf))
lastReset = time.Now()
for {
n, err := r.reader.Read(r.drainBuf)
dataSinceReset += int64(n)
r.Lock()
bufLen = int64(r.buf.Len())
if bufLen > maxBufLen {
maxBufLen = bufLen
}
// Avoid unbounded growth of the buffer over time.
// This has been discovered to be the only non-intrusive
// solution to the unbounded growth of the buffer.
// Alternative solutions such as compression, multiple
// buffers, channels and other similar pieces of code
// were reducing throughput, overall Docker performance
// or simply crashed Docker.
// This solution releases the buffer when specific
// conditions are met to avoid the continuous resizing
// of the buffer for long lived containers.
//
// Move data to the front of the buffer if it's
// smaller than what reuseBuf can store
if bufLen > 0 && reuseBufLen >= bufLen {
n, _ := r.buf.Read(r.reuseBuf)
r.buf.Write(r.reuseBuf[0:n])
// Take action if the buffer has been reused too many
// times and if there's data in the buffer.
// The timeout is also used as means to avoid doing
// these operations more often or less often than
// required.
// The various conditions try to detect heavy activity
// in the buffer which might be indicators of heavy
// growth of the buffer.
} else if reuseCount >= r.maxReuse && bufLen > 0 {
now = time.Now()
duration = now.Sub(lastReset)
timeoutReached := duration >= r.resetTimeout
// The timeout has been reached and the
// buffered data couldn't be moved to the front
// of the buffer, so the buffer gets reset.
if timeoutReached && bufLen > reuseBufLen {
reset = true
}
// The amount of buffered data is too high now,
// reset the buffer.
if timeoutReached && maxBufLen >= r.bufLenResetThreshold {
reset = true
}
// Reset the buffer if a certain amount of
// data has gone through the buffer since the
// last reset.
if timeoutReached && dataSinceReset >= r.maxReadDataReset {
reset = true
}
// The buffered data is moved to a fresh buffer,
// swap the old buffer with the new one and
// reset all counters.
if reset {
newbuf := &bytes.Buffer{}
newbuf.ReadFrom(r.buf)
r.buf = newbuf
lastReset = now
reset = false
dataSinceReset = 0
maxBufLen = 0
reuseCount = 0
}
}
if err != nil {
r.err = err
} else {
r.buf.Write(r.drainBuf[0:n])
}
reuseCount++
r.wait.Signal()
r.Unlock()
if err != nil {
@ -112,3 +217,11 @@ func (r *bufReader) Close() error {
}
return closer.Close()
}
func HashData(src io.Reader) (string, error) {
h := sha256.New()
if _, err := io.Copy(h, src); err != nil {
return "", err
}
return "sha256:" + hex.EncodeToString(h.Sum(nil)), nil
}

View File

@ -2,11 +2,92 @@ package ioutils
import (
"bytes"
"fmt"
"io"
"io/ioutil"
"strings"
"testing"
)
// Implement io.Reader
type errorReader struct{}
func (r *errorReader) Read(p []byte) (int, error) {
return 0, fmt.Errorf("Error reader always fail.")
}
func TestReadCloserWrapperClose(t *testing.T) {
reader := strings.NewReader("A string reader")
wrapper := NewReadCloserWrapper(reader, func() error {
return fmt.Errorf("This will be called when closing")
})
err := wrapper.Close()
if err == nil || !strings.Contains(err.Error(), "This will be called when closing") {
t.Fatalf("readCloserWrapper should have call the anonymous func and thus, fail.")
}
}
func TestReaderErrWrapperReadOnError(t *testing.T) {
called := false
reader := &errorReader{}
wrapper := NewReaderErrWrapper(reader, func() {
called = true
})
_, err := wrapper.Read([]byte{})
if err == nil || !strings.Contains(err.Error(), "Error reader always fail.") {
t.Fatalf("readErrWrapper should returned an error")
}
if !called {
t.Fatalf("readErrWrapper should have call the anonymous function on failure")
}
}
func TestReaderErrWrapperRead(t *testing.T) {
called := false
reader := strings.NewReader("a string reader.")
wrapper := NewReaderErrWrapper(reader, func() {
called = true // Should not be called
})
// Read 20 byte (should be ok with the string above)
num, err := wrapper.Read(make([]byte, 20))
if err != nil {
t.Fatal(err)
}
if num != 16 {
t.Fatalf("readerErrWrapper should have read 16 byte, but read %d", num)
}
}
func TestNewBufReaderWithDrainbufAndBuffer(t *testing.T) {
reader, writer := io.Pipe()
drainBuffer := make([]byte, 1024)
buffer := bytes.Buffer{}
bufreader := NewBufReaderWithDrainbufAndBuffer(reader, drainBuffer, &buffer)
// Write everything down to a Pipe
// Usually, a pipe should block but because of the buffered reader,
// the writes will go through
done := make(chan bool)
go func() {
writer.Write([]byte("hello world"))
writer.Close()
done <- true
}()
// Drain the reader *after* everything has been written, just to verify
// it is indeed buffering
<-done
output, err := ioutil.ReadAll(bufreader)
if err != nil {
t.Fatal(err)
}
if !bytes.Equal(output, []byte("hello world")) {
t.Error(string(output))
}
}
func TestBufReader(t *testing.T) {
reader, writer := io.Pipe()
bufreader := NewBufReader(reader)
@ -32,3 +113,105 @@ func TestBufReader(t *testing.T) {
t.Error(string(output))
}
}
func TestBufReaderCloseWithNonReaderCloser(t *testing.T) {
reader := strings.NewReader("buffer")
bufreader := NewBufReader(reader)
if err := bufreader.Close(); err != nil {
t.Fatal(err)
}
}
// implements io.ReadCloser
type simpleReaderCloser struct{}
func (r *simpleReaderCloser) Read(p []byte) (n int, err error) {
return 0, nil
}
func (r *simpleReaderCloser) Close() error {
return nil
}
func TestBufReaderCloseWithReaderCloser(t *testing.T) {
reader := &simpleReaderCloser{}
bufreader := NewBufReader(reader)
err := bufreader.Close()
if err != nil {
t.Fatal(err)
}
}
func TestHashData(t *testing.T) {
reader := strings.NewReader("hash-me")
actual, err := HashData(reader)
if err != nil {
t.Fatal(err)
}
expected := "sha256:4d11186aed035cc624d553e10db358492c84a7cd6b9670d92123c144930450aa"
if actual != expected {
t.Fatalf("Expecting %s, got %s", expected, actual)
}
}
type repeatedReader struct {
readCount int
maxReads int
data []byte
}
func newRepeatedReader(max int, data []byte) *repeatedReader {
return &repeatedReader{0, max, data}
}
func (r *repeatedReader) Read(p []byte) (int, error) {
if r.readCount >= r.maxReads {
return 0, io.EOF
}
r.readCount++
n := copy(p, r.data)
return n, nil
}
func testWithData(data []byte, reads int) {
reader := newRepeatedReader(reads, data)
bufReader := NewBufReader(reader)
io.Copy(ioutil.Discard, bufReader)
}
func Benchmark1M10BytesReads(b *testing.B) {
reads := 1000000
readSize := int64(10)
data := make([]byte, readSize)
b.SetBytes(readSize * int64(reads))
b.ResetTimer()
for i := 0; i < b.N; i++ {
testWithData(data, reads)
}
}
func Benchmark1M1024BytesReads(b *testing.B) {
reads := 1000000
readSize := int64(1024)
data := make([]byte, readSize)
b.SetBytes(readSize * int64(reads))
b.ResetTimer()
for i := 0; i < b.N; i++ {
testWithData(data, reads)
}
}
func Benchmark10k32KBytesReads(b *testing.B) {
reads := 10000
readSize := int64(32 * 1024)
data := make([]byte, readSize)
b.SetBytes(readSize * int64(reads))
b.ResetTimer()
for i := 0; i < b.N; i++ {
testWithData(data, reads)
}
}

View File

@ -37,3 +37,24 @@ func NewWriteCloserWrapper(r io.Writer, closer func() error) io.WriteCloser {
closer: closer,
}
}
// Wrap a concrete io.Writer and hold a count of the number
// of bytes written to the writer during a "session".
// This can be convenient when write return is masked
// (e.g., json.Encoder.Encode())
type WriteCounter struct {
Count int64
Writer io.Writer
}
func NewWriteCounter(w io.Writer) *WriteCounter {
return &WriteCounter{
Writer: w,
}
}
func (wc *WriteCounter) Write(p []byte) (count int, err error) {
count, err = wc.Writer.Write(p)
wc.Count += int64(count)
return
}

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@ -0,0 +1,65 @@
package ioutils
import (
"bytes"
"strings"
"testing"
)
func TestWriteCloserWrapperClose(t *testing.T) {
called := false
writer := bytes.NewBuffer([]byte{})
wrapper := NewWriteCloserWrapper(writer, func() error {
called = true
return nil
})
if err := wrapper.Close(); err != nil {
t.Fatal(err)
}
if !called {
t.Fatalf("writeCloserWrapper should have call the anonymous function.")
}
}
func TestNopWriteCloser(t *testing.T) {
writer := bytes.NewBuffer([]byte{})
wrapper := NopWriteCloser(writer)
if err := wrapper.Close(); err != nil {
t.Fatal("NopWriteCloser always return nil on Close.")
}
}
func TestNopWriter(t *testing.T) {
nw := &NopWriter{}
l, err := nw.Write([]byte{'c'})
if err != nil {
t.Fatal(err)
}
if l != 1 {
t.Fatalf("Expected 1 got %d", l)
}
}
func TestWriteCounter(t *testing.T) {
dummy1 := "This is a dummy string."
dummy2 := "This is another dummy string."
totalLength := int64(len(dummy1) + len(dummy2))
reader1 := strings.NewReader(dummy1)
reader2 := strings.NewReader(dummy2)
var buffer bytes.Buffer
wc := NewWriteCounter(&buffer)
reader1.WriteTo(wc)
reader2.WriteTo(wc)
if wc.Count != totalLength {
t.Errorf("Wrong count: %d vs. %d", wc.Count, totalLength)
}
if buffer.String() != dummy1+dummy2 {
t.Error("Wrong message written")
}
}

View File

@ -58,13 +58,44 @@ func FromParam(p string) (Args, error) {
if len(p) == 0 {
return args, nil
}
err := json.Unmarshal([]byte(p), &args)
if err != nil {
if err := json.NewDecoder(strings.NewReader(p)).Decode(&args); err != nil {
return nil, err
}
return args, nil
}
func (filters Args) MatchKVList(field string, sources map[string]string) bool {
fieldValues := filters[field]
//do not filter if there is no filter set or cannot determine filter
if len(fieldValues) == 0 {
return true
}
if sources == nil || len(sources) == 0 {
return false
}
outer:
for _, name2match := range fieldValues {
testKV := strings.SplitN(name2match, "=", 2)
for k, v := range sources {
if len(testKV) == 1 {
if k == testKV[0] {
continue outer
}
} else if k == testKV[0] && v == testKV[1] {
continue outer
}
}
return false
}
return true
}
func (filters Args) Match(field, source string) bool {
fieldValues := filters[field]

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@ -1,2 +0,0 @@
Victor Vieux <vieux@docker.com> (@vieux)
Jessie Frazelle <jess@docker.com> (@jfrazelle)

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@ -26,6 +26,7 @@ func HumanDuration(d time.Duration) string {
return fmt.Sprintf("%d weeks", hours/24/7)
} else if hours < 24*365*2 {
return fmt.Sprintf("%d months", hours/24/30)
} else {
return fmt.Sprintf("%d years", hours/24/365)
}
return fmt.Sprintf("%f years", d.Hours()/24/365)
}

View File

@ -41,6 +41,6 @@ func TestHumanDuration(t *testing.T) {
assertEquals(t, "13 months", HumanDuration(13*month))
assertEquals(t, "23 months", HumanDuration(23*month))
assertEquals(t, "24 months", HumanDuration(24*month))
assertEquals(t, "2.010959 years", HumanDuration(24*month+2*week))
assertEquals(t, "3.164384 years", HumanDuration(3*year+2*month))
assertEquals(t, "2 years", HumanDuration(24*month+2*week))
assertEquals(t, "3 years", HumanDuration(3*year+2*month))
}

View File

@ -37,23 +37,25 @@ var (
var decimapAbbrs = []string{"B", "kB", "MB", "GB", "TB", "PB", "EB", "ZB", "YB"}
var binaryAbbrs = []string{"B", "KiB", "MiB", "GiB", "TiB", "PiB", "EiB", "ZiB", "YiB"}
// CustomSize returns a human-readable approximation of a size
// using custom format
func CustomSize(format string, size float64, base float64, _map []string) string {
i := 0
for size >= base {
size = size / base
i++
}
return fmt.Sprintf(format, size, _map[i])
}
// HumanSize returns a human-readable approximation of a size
// using SI standard (eg. "44kB", "17MB")
func HumanSize(size float64) string {
return intToString(float64(size), 1000.0, decimapAbbrs)
return CustomSize("%.4g %s", float64(size), 1000.0, decimapAbbrs)
}
func BytesSize(size float64) string {
return intToString(size, 1024.0, binaryAbbrs)
}
func intToString(size, unit float64, _map []string) string {
i := 0
for size >= unit {
size = size / unit
i++
}
return fmt.Sprintf("%.4g %s", size, _map[i])
return CustomSize("%.4g %s", size, 1024.0, binaryAbbrs)
}
// FromHumanSize returns an integer from a human-readable specification of a