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https://github.com/seaweedfs/seaweedfs.git
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ac15868694
warnings.
146 lines
3.4 KiB
Go
146 lines
3.4 KiB
Go
package storage
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import (
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"code.google.com/p/weed-fs/go/util"
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"encoding/hex"
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"errors"
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"log"
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"io/ioutil"
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"mime"
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"net/http"
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"path"
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"strconv"
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"strings"
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"time"
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)
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const (
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NeedleHeaderSize = 16 //should never change this
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NeedlePaddingSize = 8
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NeedleChecksumSize = 4
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)
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type Needle struct {
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Cookie uint32 `comment:"random number to mitigate brute force lookups"`
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Id uint64 `comment:"needle id"`
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Size uint32 `comment:"sum of DataSize,Data,NameSize,Name,MimeSize,Mime"`
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DataSize uint32 `comment:"Data size"` //version2
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Data []byte `comment:"The actual file data"`
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Flags byte `comment:"boolean flags"` //version2
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NameSize uint8 //version2
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Name []byte `comment:"maximum 256 characters"` //version2
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MimeSize uint8 //version2
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Mime []byte `comment:"maximum 256 characters"` //version2
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LastModified uint64 //only store LastModifiedBytesLength bytes, which is 5 bytes to disk
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Checksum CRC `comment:"CRC32 to check integrity"`
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Padding []byte `comment:"Aligned to 8 bytes"`
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}
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func NewNeedle(r *http.Request) (n *Needle, e error) {
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n = new(Needle)
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form, fe := r.MultipartReader()
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if fe != nil {
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log.Println("MultipartReader [ERROR]", fe)
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e = fe
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return
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}
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part, fe := form.NextPart()
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if fe != nil {
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log.Println("Reading Multi part [ERROR]", fe)
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e = fe
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return
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}
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fname := part.FileName()
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if fname != "" {
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fname = path.Base(part.FileName())
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} else {
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e = errors.New("No file found!")
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return
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}
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data, _ := ioutil.ReadAll(part)
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dotIndex := strings.LastIndex(fname, ".")
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ext, mtype := "", ""
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if dotIndex > 0 {
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ext = fname[dotIndex:]
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mtype = mime.TypeByExtension(ext)
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}
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contentType := part.Header.Get("Content-Type")
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if contentType != "" && mtype != contentType && len(contentType) < 256 {
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n.Mime = []byte(contentType)
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n.SetHasMime()
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mtype = contentType
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}
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if IsGzippable(ext, mtype) {
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if data, e = GzipData(data); e != nil {
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return
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}
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n.SetGzipped()
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}
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if ext == ".gz" {
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n.SetGzipped()
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}
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if len(fname) < 256 {
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if strings.HasSuffix(fname, ".gz") {
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n.Name = []byte(fname[:len(fname)-3])
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} else {
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n.Name = []byte(fname)
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}
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n.SetHasName()
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}
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var parseError error
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if n.LastModified, parseError = strconv.ParseUint(r.FormValue("ts"), 10, 64); parseError != nil {
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n.LastModified = uint64(time.Now().Unix())
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}
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n.SetHasLastModifiedDate()
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n.Data = data
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n.Checksum = NewCRC(data)
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commaSep := strings.LastIndex(r.URL.Path, ",")
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dotSep := strings.LastIndex(r.URL.Path, ".")
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fid := r.URL.Path[commaSep+1:]
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if dotSep > 0 {
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fid = r.URL.Path[commaSep+1 : dotSep]
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}
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n.ParsePath(fid)
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return
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}
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func (n *Needle) ParsePath(fid string) {
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length := len(fid)
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if length <= 8 {
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if length > 0 {
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log.Println("Invalid fid", fid, "length", length)
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}
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return
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}
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delta := ""
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deltaIndex := strings.LastIndex(fid, "_")
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if deltaIndex > 0 {
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fid, delta = fid[0:deltaIndex], fid[deltaIndex+1:]
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}
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n.Id, n.Cookie = ParseKeyHash(fid)
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if delta != "" {
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d, e := strconv.ParseUint(delta, 10, 64)
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if e == nil {
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n.Id += d
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}
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}
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}
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func ParseKeyHash(key_hash_string string) (uint64, uint32) {
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key_hash_bytes, khe := hex.DecodeString(key_hash_string)
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key_hash_len := len(key_hash_bytes)
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if khe != nil || key_hash_len <= 4 {
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log.Println("Invalid key_hash", key_hash_string, "length:", key_hash_len, "error", khe)
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return 0, 0
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}
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key := util.BytesToUint64(key_hash_bytes[0 : key_hash_len-4])
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hash := util.BytesToUint32(key_hash_bytes[key_hash_len-4 : key_hash_len])
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return key, hash
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}
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