mirror of
https://github.com/vbatts/go-mtree.git
synced 2024-11-05 00:15:58 +00:00
Vincent Batts
211687bcc4
Initially only on linux platform, but could accommodate BSDs as well. The keyword is rather a prefix of the key. So xattr keyword will have a prefix of "xattr." followed by a suffix of its namespace and name. The value stored in the manifest is the SHA1 digest of the extended attribute's data. Signed-off-by: Vincent Batts <vbatts@hashbangbash.com>
145 lines
5.4 KiB
Go
145 lines
5.4 KiB
Go
package mtree
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import (
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"crypto/md5"
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"crypto/sha1"
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"crypto/sha256"
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"crypto/sha512"
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"fmt"
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"hash"
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"io"
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"math"
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"os"
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"golang.org/x/crypto/ripemd160"
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)
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// KeywordFunc is the type of a function called on each file to be included in
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// a DirectoryHierarchy, that will produce the string output of the keyword to
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// be included for the file entry. Otherwise, empty string.
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type KeywordFunc func(path string, info os.FileInfo) (string, error)
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var (
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// DefaultKeywords has the several default keyword producers (uid, gid,
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// mode, nlink, type, size, mtime)
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DefaultKeywords = []string{
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"size",
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"type",
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"uid",
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"gid",
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"link",
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"nlink",
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"time",
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}
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// KeywordFuncs is the map of all keywords (and the functions to produce them)
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KeywordFuncs = map[string]KeywordFunc{
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"size": sizeKeywordFunc, // The size, in bytes, of the file
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"type": typeKeywordFunc, // The type of the file
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"time": timeKeywordFunc, // The last modification time of the file
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"link": linkKeywordFunc, // The target of the symbolic link when type=link
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"uid": uidKeywordFunc, // The file owner as a numeric value
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"gid": gidKeywordFunc, // The file group as a numeric value
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"nlink": nlinkKeywordFunc, // The number of hard links the file is expected to have
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"uname": unameKeywordFunc, // The file owner as a symbolic name
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"cksum": cksumKeywordFunc, // The checksum of the file using the default algorithm specified by the cksum(1) utility
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"md5": hasherKeywordFunc("md5", md5.New), // The MD5 message digest of the file
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"md5digest": hasherKeywordFunc("md5digest", md5.New), // A synonym for `md5`
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"rmd160": hasherKeywordFunc("rmd160", ripemd160.New), // The RIPEMD160 message digest of the file
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"rmd160digest": hasherKeywordFunc("rmd160digest", ripemd160.New), // A synonym for `rmd160`
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"ripemd160digest": hasherKeywordFunc("ripemd160digest", ripemd160.New), // A synonym for `rmd160`
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"sha1": hasherKeywordFunc("sha1", sha1.New), // The SHA1 message digest of the file
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"sha1digest": hasherKeywordFunc("sha1digest", sha1.New), // A synonym for `sha1`
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"sha256": hasherKeywordFunc("sha256", sha256.New), // The SHA256 message digest of the file
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"sha256digest": hasherKeywordFunc("sha256digest", sha256.New), // A synonym for `sha256`
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"sha384": hasherKeywordFunc("sha384", sha512.New384), // The SHA384 message digest of the file
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"sha384digest": hasherKeywordFunc("sha384digest", sha512.New384), // A synonym for `sha384`
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"sha512": hasherKeywordFunc("sha512", sha512.New), // The SHA512 message digest of the file
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"sha512digest": hasherKeywordFunc("sha512digest", sha512.New), // A synonym for `sha512`
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// This is not an upstreamed keyword, but a needed attribute for file validation.
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// The pattern for this keyword key is prefixed by "xattr." followed by the extended attribute "namespace.key".
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// The keyword value is the SHA1 digest of the extended attribute's value.
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// In this way, the order of the keys does not matter, and the contents of the value is not revealed.
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"xattr": xattrKeywordFunc,
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}
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)
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var (
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sizeKeywordFunc = func(path string, info os.FileInfo) (string, error) {
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return fmt.Sprintf("size=%d", info.Size()), nil
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}
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cksumKeywordFunc = func(path string, info os.FileInfo) (string, error) {
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if !info.Mode().IsRegular() {
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return "", nil
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}
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fh, err := os.Open(path)
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if err != nil {
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return "", err
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}
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defer fh.Close()
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sum, _, err := cksum(fh)
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if err != nil {
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return "", err
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}
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return fmt.Sprintf("cksum=%d", sum), nil
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}
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hasherKeywordFunc = func(name string, newHash func() hash.Hash) KeywordFunc {
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return func(path string, info os.FileInfo) (string, error) {
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if !info.Mode().IsRegular() {
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return "", nil
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}
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fh, err := os.Open(path)
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if err != nil {
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return "", err
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}
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defer fh.Close()
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h := newHash()
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if _, err := io.Copy(h, fh); err != nil {
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return "", err
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}
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return fmt.Sprintf("%s=%x", name, h.Sum(nil)), nil
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}
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}
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timeKeywordFunc = func(path string, info os.FileInfo) (string, error) {
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t := info.ModTime()
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n := float64(t.UnixNano()) / math.Pow10(9)
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return fmt.Sprintf("time=%0.9f", n), nil
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}
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linkKeywordFunc = func(path string, info os.FileInfo) (string, error) {
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if info.Mode()&os.ModeSymlink != 0 {
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str, err := os.Readlink(path)
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if err != nil {
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return "", err
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}
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return fmt.Sprintf("link=%s", str), nil
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}
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return "", nil
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}
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typeKeywordFunc = func(path string, info os.FileInfo) (string, error) {
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if info.Mode().IsDir() {
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return "type=dir", nil
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}
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if info.Mode().IsRegular() {
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return "type=file", nil
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}
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if info.Mode()&os.ModeSocket != 0 {
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return "type=socket", nil
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}
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if info.Mode()&os.ModeSymlink != 0 {
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return "type=link", nil
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}
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if info.Mode()&os.ModeNamedPipe != 0 {
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return "type=fifo", nil
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}
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if info.Mode()&os.ModeDevice != 0 {
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if info.Mode()&os.ModeCharDevice != 0 {
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return "type=char", nil
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}
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return "type=device", nil
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}
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return "", nil
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}
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)
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