cubefs/objectnode/util.go
2020-05-29 10:57:13 +08:00

301 lines
7.3 KiB
Go

// Copyright 2019 The ChubaoFS Authors.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
// implied. See the License for the specific language governing
// permissions and limitations under the License.
package objectnode
import (
"regexp"
"strings"
"net"
"net/http"
"time"
"github.com/chubaofs/chubaofs/util"
"github.com/chubaofs/chubaofs/util/log"
)
const (
pathSep = "/"
tempFileNameSep = "_"
)
var (
emptyPathItem = PathItem{}
// Regular expression used to match one or more path separators.
regexpSepPrefix = regexp.MustCompile("^/+")
// Regular expression to match more than two consecutive path separators.
regexpDupSep = regexp.MustCompile("/{2,}")
)
// PathItem defines path node attribute information,
// including node name and whether it is a directory.
type PathItem struct {
Name string
IsDirectory bool
}
// PathIterator is a path iterator. Used to sequentially iterate each path node from a complete path.
type PathIterator struct {
cursor int
path string
inited bool
}
func (p *PathIterator) init() {
if !p.inited {
p.path = strings.TrimSpace(p.path)
loc := regexpSepPrefix.FindStringIndex(p.path)
if len(loc) == 2 {
p.path = p.path[loc[1]:]
}
p.path = regexpDupSep.ReplaceAllString(p.path, pathSep)
p.inited = true
}
}
func (p *PathIterator) HasNext() bool {
p.init()
return p.cursor < len(p.path)
}
func (p *PathIterator) Reset() {
p.cursor = 0
}
func (p PathIterator) ToSlice() []PathItem {
newIterator := NewPathIterator(p.path)
result := make([]PathItem, 0)
for newIterator.HasNext() {
result = append(result, newIterator.Next())
}
return result
}
func (p *PathIterator) Next() PathItem {
p.init()
if p.cursor >= len(p.path) {
return emptyPathItem
}
var item PathItem
index := strings.Index(p.path[p.cursor:], pathSep)
if index >= 0 {
item = PathItem{
Name: p.path[p.cursor : p.cursor+index],
IsDirectory: true,
}
p.cursor = p.cursor + index + 1
} else {
item = PathItem{
Name: p.path[p.cursor:],
IsDirectory: false,
}
p.cursor = len(p.path)
}
return item
}
func NewPathIterator(path string) PathIterator {
return PathIterator{
path: path,
}
}
func splitPath(path string) (dirs []string, filename string) {
pathParts := strings.Split(path, pathSep)
if len(pathParts) > 1 {
dirs = pathParts[:len(pathParts)-1]
}
filename = pathParts[len(pathParts)-1]
return
}
func tempFileName(origin string) string {
return "." + origin + tempFileNameSep + util.RandomString(16, util.LowerLetter|util.UpperLetter)
}
func formatSimpleTime(time time.Time) string {
return time.UTC().Format("2006-01-02T15:04:05")
}
func formatTimeISO(time time.Time) string {
return time.UTC().Format("2006-01-02T15:04:05.000Z")
}
func formatTimeISOLocal(time time.Time) string {
return time.Local().Format("2006-01-02T15:04:05.000Z")
}
func formatTimeRFC1123(time time.Time) string {
return time.UTC().Format(http.TimeFormat)
}
func parseTimeRFC1123(timeStr string) (time.Time, error) {
t, err := time.Parse("Mon, 2 Jan 2006 15:04:05 GMT", timeStr)
if err != nil {
return t, err
}
return t, err
}
func transferError(key string, err error) Error {
// TODO: complete sys error transfer
ossError := Error{
Key: key,
Message: err.Error(),
}
return ossError
}
// get request remote IP
func getRequestIP(r *http.Request) string {
IPAddress := r.Header.Get("X-Real-Ip")
if IPAddress == "" {
IPAddress = r.Header.Get("X-Forwarded-For")
}
if IPAddress == "" {
IPAddress = r.RemoteAddr
}
if ok := strings.Contains(IPAddress, ":"); ok {
IPAddress = strings.Split(IPAddress, ":")[0]
}
return IPAddress
}
// check ipnet contains ip
// ip: 172.17.0.2
// ipnet: 172.17.0.0/16
func isIPNetContainsIP(ipStr, ipnetStr string) (bool, error) {
if !strings.Contains(ipnetStr, "/") {
if ipStr == ipnetStr {
return true, nil
} else {
return false, nil
}
}
_, ipnet, err := net.ParseCIDR(ipnetStr)
if err != nil {
log.LogInfof("parse ipnet error ipnet %v", ipnetStr)
return false, err
}
ip := net.ParseIP(ipStr)
if ipnet.Contains(ip) {
return true, nil
}
return false, nil
}
func patternMatch(pattern, key string) bool {
if pattern == "" {
return key == pattern
}
if pattern == "*" {
return true
}
matched, err := regexp.MatchString(pattern, key)
if err != nil {
log.LogErrorf("patternMatch error %v", err)
return false
}
return matched
}
func wrapUnescapedQuot(src string) string {
return "\"" + src + "\""
}
func SplitFileRange(size, blockSize int64) (ranges [][2]int64) {
blocks := size / blockSize
if size%blockSize != 0 {
blocks += 1
}
ranges = make([][2]int64, 0, blocks)
remain := size
aboveRage := [2]int64{0, 0}
for remain > 0 {
curRange := [2]int64{aboveRage[1], 0}
if remain < blockSize {
curRange[1] = size
remain = 0
} else {
curRange[1] = blockSize
remain -= blockSize
}
ranges = append(ranges, curRange)
aboveRage[0], aboveRage[1] = curRange[0], curRange[1]
}
return ranges
}
// Checking and parsing user-defined metadata from request header.
// The optional user-defined metadata names must begin with "x-amz-meta-" to
// distinguish them from other HTTP headers.
// Notes:
// The PUT request header is limited to 8 KB in size. Within the PUT request header,
// the user-defined metadata is limited to 2 KB in size. The size of user-defined
// metadata is measured by taking the sum of the number of bytes in the UTF-8 encoding
// of each key and value.
// Reference: https://docs.aws.amazon.com/AmazonS3/latest/dev/UsingMetadata.html
func ParseUserDefinedMetadata(header http.Header) map[string]string {
metadata := make(map[string]string)
for name, values := range header {
if strings.HasPrefix(name, http.CanonicalHeaderKey(HeaderNameXAmzMetaPrefix)) &&
name != http.CanonicalHeaderKey(HeaderNameXAmzMetadataDirective) {
metaName := strings.ToLower(name[len(HeaderNameXAmzMetaPrefix):])
metaValue := strings.Join(values, ",")
if !strings.HasPrefix(metaName, "oss:") {
metadata[metaName] = metaValue
}
}
}
return metadata
}
// validate Cache-Control
var cacheControlDir = []string{"public", "private", "no-cache", "no-store", "no-transform", "must-revalidate", "proxy-revalidate"}
var maxAgeRegexp = regexp.MustCompile("^((max-age)|(s-maxage))=[1-9][0-9]*$")
func ValidateCacheControl(cacheControl string) bool {
var cacheDirs = strings.Split(cacheControl, ",")
for _, dir := range cacheDirs {
if !contains(cacheControlDir, dir) && !maxAgeRegexp.MatchString(dir) {
log.LogErrorf("invalid cache-control directive: %v", dir)
return false
}
}
return true
}
func ValidateCacheExpires(expires string) bool {
var err error
var stamp time.Time
if stamp, err = time.Parse(RFC1123Format, expires); err != nil {
log.LogErrorf("invalid expires: %v", expires)
return false
}
expiresInt := stamp.Unix()
now := time.Now().UTC().Unix()
if now < expiresInt {
return true
}
log.LogErrorf("Expires less than now: %v, now: %v", expires, now)
return false
}