mirror of
https://github.com/vbatts/go-mtree.git
synced 2024-11-24 00:55:41 +00:00
390 lines
10 KiB
Go
390 lines
10 KiB
Go
package mtree
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import (
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"fmt"
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"io"
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"os"
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"os/user"
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"path/filepath"
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"sort"
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"strings"
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"time"
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"github.com/vbatts/go-mtree/pkg/govis"
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)
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// ExcludeFunc is the type of function called on each path walked to determine
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// whether to be excluded from the assembled DirectoryHierarchy. If the func
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// returns true, then the path is not included in the spec.
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type ExcludeFunc func(path string, info os.FileInfo) bool
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// ExcludeNonDirectories is an ExcludeFunc for excluding all paths that are not directories
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var ExcludeNonDirectories = func(path string, info os.FileInfo) bool {
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return !info.IsDir()
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}
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var defaultSetKeyVals = []KeyVal{"type=file", "nlink=1", "flags=none", "mode=0664"}
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// Walk from root directory and assemble the DirectoryHierarchy
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// * `excludes` provided are used to skip paths
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// * `keywords` are the set to collect from the walked paths. The recommended default list is DefaultKeywords.
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// * `fsEval` is the interface to use in evaluating files. If `nil`, then DefaultFsEval is used.
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func Walk(root string, excludes []ExcludeFunc, keywords []Keyword, fsEval FsEval) (*DirectoryHierarchy, error) {
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if fsEval == nil {
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fsEval = DefaultFsEval{}
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}
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if info, err := os.Stat(root); err == nil {
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if !info.IsDir() {
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return nil, fmt.Errorf("%s: Not a directory", filepath.Base(root))
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}
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}
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creator := dhCreator{DH: &DirectoryHierarchy{}, fs: fsEval}
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// insert signature and metadata comments first (user, machine, tree, date)
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for _, e := range signatureEntries(root) {
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e.Pos = len(creator.DH.Entries)
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creator.DH.Entries = append(creator.DH.Entries, e)
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}
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// insert keyword metadata next
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for _, e := range keywordEntries(keywords) {
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e.Pos = len(creator.DH.Entries)
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creator.DH.Entries = append(creator.DH.Entries, e)
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}
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// walk the directory and add entries
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err := startWalk(&creator, root, func(path string, info os.FileInfo, err error) error {
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if err != nil {
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return err
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}
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for _, ex := range excludes {
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if ex(path, info) {
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return nil
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}
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}
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entryPathName := filepath.Base(path)
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if info.IsDir() {
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creator.DH.Entries = append(creator.DH.Entries, Entry{
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Type: BlankType,
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Pos: len(creator.DH.Entries),
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})
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// Insert a comment of the full path of the directory's name
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if creator.curDir != nil {
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dirname, err := creator.curDir.Path()
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if err != nil {
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return err
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}
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creator.DH.Entries = append(creator.DH.Entries, Entry{
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Pos: len(creator.DH.Entries),
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Raw: "# " + filepath.Join(dirname, entryPathName),
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Type: CommentType,
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})
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} else {
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entryPathName = "."
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creator.DH.Entries = append(creator.DH.Entries, Entry{
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Pos: len(creator.DH.Entries),
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Raw: "# .",
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Type: CommentType,
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})
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}
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// set the initial /set keywords
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if creator.curSet == nil {
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e := Entry{
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Name: "/set",
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Type: SpecialType,
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Pos: len(creator.DH.Entries),
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Keywords: keyvalSelector(defaultSetKeyVals, keywords),
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}
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for _, keyword := range SetKeywords {
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err := func() error {
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var r io.Reader
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if info.Mode().IsRegular() {
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fh, err := creator.fs.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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r = fh
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}
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keyFunc, ok := KeywordFuncs[keyword.Prefix()]
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if !ok {
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return fmt.Errorf("unknown keyword %q for file %q", keyword.Prefix(), path)
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}
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kvs, err := creator.fs.KeywordFunc(keyFunc)(path, info, r)
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if err != nil {
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return err
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}
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for _, kv := range kvs {
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if kv != "" {
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e.Keywords = append(e.Keywords, kv)
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}
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}
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return nil
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}()
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if err != nil {
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return err
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}
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}
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creator.curSet = &e
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creator.DH.Entries = append(creator.DH.Entries, e)
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} else if creator.curSet != nil {
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// check the attributes of the /set keywords and re-set if changed
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klist := []KeyVal{}
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for _, keyword := range SetKeywords {
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err := func() error {
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var r io.Reader
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if info.Mode().IsRegular() {
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fh, err := creator.fs.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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r = fh
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}
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keyFunc, ok := KeywordFuncs[keyword.Prefix()]
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if !ok {
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return fmt.Errorf("unknown keyword %q for file %q", keyword.Prefix(), path)
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}
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kvs, err := creator.fs.KeywordFunc(keyFunc)(path, info, r)
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if err != nil {
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return err
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}
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for _, kv := range kvs {
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if kv != "" {
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klist = append(klist, kv)
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}
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}
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return nil
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}()
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if err != nil {
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return err
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}
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}
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needNewSet := false
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for _, k := range klist {
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if !inKeyValSlice(k, creator.curSet.Keywords) {
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needNewSet = true
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}
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}
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if needNewSet {
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e := Entry{
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Name: "/set",
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Type: SpecialType,
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Pos: len(creator.DH.Entries),
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Keywords: keyvalSelector(append(defaultSetKeyVals, klist...), keywords),
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}
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creator.curSet = &e
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creator.DH.Entries = append(creator.DH.Entries, e)
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}
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}
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}
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encodedEntryName, err := govis.Vis(entryPathName, DefaultVisFlags)
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if err != nil {
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return err
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}
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e := Entry{
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Name: encodedEntryName,
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Pos: len(creator.DH.Entries),
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Type: RelativeType,
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Set: creator.curSet,
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Parent: creator.curDir,
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}
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for _, keyword := range keywords {
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err := func() error {
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var r io.Reader
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if info.Mode().IsRegular() {
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fh, err := creator.fs.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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r = fh
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}
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keyFunc, ok := KeywordFuncs[keyword.Prefix()]
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if !ok {
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return fmt.Errorf("unknown keyword %q for file %q", keyword.Prefix(), path)
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}
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kvs, err := creator.fs.KeywordFunc(keyFunc)(path, info, r)
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if err != nil {
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return err
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}
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for _, kv := range kvs {
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if kv != "" && !inKeyValSlice(kv, creator.curSet.Keywords) {
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e.Keywords = append(e.Keywords, kv)
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}
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}
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return nil
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}()
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if err != nil {
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return err
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}
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}
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if info.IsDir() {
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if creator.curDir != nil {
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creator.curDir.Next = &e
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}
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e.Prev = creator.curDir
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creator.curDir = &e
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} else {
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if creator.curEnt != nil {
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creator.curEnt.Next = &e
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}
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e.Prev = creator.curEnt
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creator.curEnt = &e
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}
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creator.DH.Entries = append(creator.DH.Entries, e)
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return nil
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})
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return creator.DH, err
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}
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// startWalk walks the file tree rooted at root, calling walkFn for each file or
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// directory in the tree, including root. All errors that arise visiting files
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// and directories are filtered by walkFn. The files are walked in lexical
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// order, which makes the output deterministic but means that for very
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// large directories Walk can be inefficient.
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// Walk does not follow symbolic links.
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func startWalk(c *dhCreator, root string, walkFn filepath.WalkFunc) error {
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info, err := c.fs.Lstat(root)
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if err != nil {
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return walkFn(root, nil, err)
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}
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return walk(c, root, info, walkFn)
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}
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// walk recursively descends path, calling w.
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func walk(c *dhCreator, path string, info os.FileInfo, walkFn filepath.WalkFunc) error {
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err := walkFn(path, info, nil)
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if err != nil {
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if info.IsDir() && err == filepath.SkipDir {
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return nil
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}
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return err
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}
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if !info.IsDir() {
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return nil
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}
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names, err := readOrderedDirNames(c, path)
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if err != nil {
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return walkFn(path, info, err)
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}
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for _, name := range names {
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filename := filepath.Join(path, name)
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fileInfo, err := c.fs.Lstat(filename)
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if err != nil {
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if err := walkFn(filename, fileInfo, err); err != nil && err != filepath.SkipDir {
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return err
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}
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} else {
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err = walk(c, filename, fileInfo, walkFn)
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if err != nil {
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if !fileInfo.IsDir() || err != filepath.SkipDir {
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return err
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}
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}
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}
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}
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c.DH.Entries = append(c.DH.Entries, Entry{
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Name: "..",
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Type: DotDotType,
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Pos: len(c.DH.Entries),
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})
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if c.curDir != nil {
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c.curDir = c.curDir.Parent
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}
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return nil
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}
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// readOrderedDirNames reads the directory and returns a sorted list of all
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// entries with non-directories first, followed by directories.
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func readOrderedDirNames(c *dhCreator, dirname string) ([]string, error) {
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infos, err := c.fs.Readdir(dirname)
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if err != nil {
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return nil, err
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}
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names := []string{}
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dirnames := []string{}
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for _, info := range infos {
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if info.IsDir() {
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dirnames = append(dirnames, info.Name())
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continue
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}
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names = append(names, info.Name())
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}
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sort.Strings(names)
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sort.Strings(dirnames)
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return append(names, dirnames...), nil
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}
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// signatureEntries is a simple helper function that returns a slice of Entry's
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// that describe the metadata signature about the host. Items like date, user,
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// machine, and tree (which is specified by argument `root`), are considered.
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// These Entry's construct comments in the mtree specification, so if there is
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// an error trying to obtain a particular metadata, we simply don't construct
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// the Entry.
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func signatureEntries(root string) []Entry {
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var sigEntries []Entry
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user, err := user.Current()
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if err == nil {
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userEntry := Entry{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "user: ", user.Username),
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}
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sigEntries = append(sigEntries, userEntry)
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}
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hostname, err := os.Hostname()
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if err == nil {
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hostEntry := Entry{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "machine: ", hostname),
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}
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sigEntries = append(sigEntries, hostEntry)
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}
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if tree := filepath.Clean(root); tree == "." || tree == ".." {
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root, err := os.Getwd()
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if err == nil {
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// use parent directory of current directory
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if tree == ".." {
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root = filepath.Dir(root)
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}
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treeEntry := Entry{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "tree: ", filepath.Clean(root)),
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}
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sigEntries = append(sigEntries, treeEntry)
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}
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} else {
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treeEntry := Entry{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "tree: ", filepath.Clean(root)),
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}
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sigEntries = append(sigEntries, treeEntry)
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}
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dateEntry := Entry{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "date: ", time.Now().Format("Mon Jan 2 15:04:05 2006")),
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}
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sigEntries = append(sigEntries, dateEntry)
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return sigEntries
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}
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// keywordEntries returns a slice of entries including a comment of the
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// keywords requested when generating this manifest.
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func keywordEntries(keywords []Keyword) []Entry {
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// Convert all of the keywords to zero-value keyvals.
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return []Entry{
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{
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Type: CommentType,
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Raw: fmt.Sprintf("#%16s%s", "keywords: ", strings.Join(FromKeywords(keywords), ",")),
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},
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}
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}
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