mirror of
https://github.com/vbatts/go-mtree.git
synced 2024-11-05 08:25:58 +00:00
Vincent Batts
ed464af779
This is a gnarly patchset that has been mashed together. It uncovered that some aspects of Check were never really working correctly for `xattr` keywords, but also the `Update()` had been left undone for a while. This includes some API changes around the `Keyword` and `KeyVal` types. Also I would like to update the signature for the `UpdateKeywordFunc` to just accept a `KeyVal` as an argugment, rather than a keyword AND the value. with this context there would be no need to guess on the value of what's passed to the xattr update function of whether it needs or already is base64 encoded. Signed-off-by: Vincent Batts <vbatts@hashbangbash.com>
170 lines
7.4 KiB
Go
170 lines
7.4 KiB
Go
package mtree
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import (
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"archive/tar"
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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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"os"
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"github.com/vbatts/go-mtree/pkg/govis"
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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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// io.Reader `r` is to the file stream for the file payload. While this
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// function takes an io.Reader, the caller needs to reset it to the beginning
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// for each new KeywordFunc
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type KeywordFunc func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error)
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var (
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// KeywordFuncs is the map of all keywords (and the functions to produce them)
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KeywordFuncs = map[Keyword]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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"gname": gnameKeywordFunc, // The file group as a symbolic name
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"mode": modeKeywordFunc, // The current file's permissions as a numeric (octal) or symbolic value
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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("md5digest", 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("ripemd160digest", ripemd160.New), // The RIPEMD160 message digest of the file
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"rmd160digest": hasherKeywordFunc("ripemd160digest", 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("sha1digest", 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("sha256digest", 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("sha384digest", 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("sha512digest", 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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"flags": flagsKeywordFunc, // NOTE: this is a noop, but here to support the presence of the "flags" keyword.
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// This is not an upstreamed keyword, but used to vary from "time", as tar
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// archives do not store nanosecond precision. So comparing on "time" will
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// be only seconds level accurate.
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"tar_time": tartimeKeywordFunc, // The last modification time of the file, from a tar archive mtime
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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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"xattrs": xattrKeywordFunc,
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}
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)
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var (
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modeKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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permissions := info.Mode().Perm()
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if os.ModeSetuid&info.Mode() > 0 {
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permissions |= (1 << 11)
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}
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if os.ModeSetgid&info.Mode() > 0 {
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permissions |= (1 << 10)
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}
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if os.ModeSticky&info.Mode() > 0 {
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permissions |= (1 << 9)
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}
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return []KeyVal{KeyVal(fmt.Sprintf("mode=%#o", permissions))}, nil
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}
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sizeKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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if sys, ok := info.Sys().(*tar.Header); ok {
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if sys.Typeflag == tar.TypeSymlink {
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return []KeyVal{KeyVal(fmt.Sprintf("size=%d", len(sys.Linkname)))}, nil
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}
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}
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return []KeyVal{KeyVal(fmt.Sprintf("size=%d", info.Size()))}, nil
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}
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cksumKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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if !info.Mode().IsRegular() {
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return nil, nil
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}
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sum, _, err := cksum(r)
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if err != nil {
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return nil, err
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}
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return []KeyVal{KeyVal(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, r io.Reader) ([]KeyVal, error) {
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if !info.Mode().IsRegular() {
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return nil, nil
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}
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h := newHash()
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if _, err := io.Copy(h, r); err != nil {
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return nil, err
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}
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return []KeyVal{KeyVal(fmt.Sprintf("%s=%x", KeywordSynonym(name), h.Sum(nil)))}, nil
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}
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}
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tartimeKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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return []KeyVal{KeyVal(fmt.Sprintf("tar_time=%d.%9.9d", info.ModTime().Unix(), 0))}, nil
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}
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timeKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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tSec := info.ModTime().Unix()
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tNano := info.ModTime().Nanosecond()
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return []KeyVal{KeyVal(fmt.Sprintf("time=%d.%9.9d", tSec, tNano))}, nil
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}
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linkKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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if sys, ok := info.Sys().(*tar.Header); ok {
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if sys.Linkname != "" {
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linkname, err := govis.Vis(sys.Linkname, DefaultVisFlags)
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if err != nil {
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return nil, nil
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}
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return []KeyVal{KeyVal(fmt.Sprintf("link=%s", linkname))}, nil
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}
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return nil, nil
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}
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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 nil, nil
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}
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linkname, err := govis.Vis(str, DefaultVisFlags)
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if err != nil {
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return nil, nil
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}
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return []KeyVal{KeyVal(fmt.Sprintf("link=%s", linkname))}, nil
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}
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return nil, nil
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}
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typeKeywordFunc = func(path string, info os.FileInfo, r io.Reader) ([]KeyVal, error) {
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if info.Mode().IsDir() {
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return []KeyVal{"type=dir"}, nil
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}
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if info.Mode().IsRegular() {
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return []KeyVal{"type=file"}, nil
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}
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if info.Mode()&os.ModeSocket != 0 {
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return []KeyVal{"type=socket"}, nil
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}
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if info.Mode()&os.ModeSymlink != 0 {
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return []KeyVal{"type=link"}, nil
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}
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if info.Mode()&os.ModeNamedPipe != 0 {
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return []KeyVal{"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 []KeyVal{"type=char"}, nil
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}
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return []KeyVal{"type=block"}, nil
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}
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return nil, nil
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}
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)
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