mirror of
https://github.com/vbatts/go-mtree.git
synced 2024-10-31 22:36:38 +00:00
c5ec1c9f3a
Now that we have govis, move everything to using govis.{Vis,Unvis} and then remove the cvis build tags (because that code no longer exists). Signed-off-by: Aleksa Sarai <asarai@suse.de>
309 lines
7.4 KiB
Go
309 lines
7.4 KiB
Go
package mtree
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import (
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"fmt"
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"strings"
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"github.com/vbatts/go-mtree/pkg/govis"
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)
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// DefaultVisFlags is the set of Vis flags used when encoding filenames and
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// other similar entries.
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const DefaultVisFlags govis.VisFlag = govis.VisWhite | govis.VisOctal | govis.VisGlob
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// Keyword is the string name of a keyword, with some convenience functions for
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// determining whether it is a default or bsd standard keyword.
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type Keyword string
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// Default returns whether this keyword is in the default set of keywords
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func (k Keyword) Default() bool {
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return InKeywordSlice(k, DefaultKeywords)
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}
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// Bsd returns whether this keyword is in the upstream FreeBSD mtree(8)
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func (k Keyword) Bsd() bool {
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return InKeywordSlice(k, BsdKeywords)
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}
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// Synonym returns the canonical name for this keyword. This is provides the
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// same functionality as KeywordSynonym()
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func (k Keyword) Synonym() Keyword {
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return KeywordSynonym(string(k))
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}
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// InKeywordSlice checks for the presence of `a` in `list`
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func InKeywordSlice(a Keyword, list []Keyword) bool {
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for _, b := range list {
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if b == a {
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return true
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}
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}
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return false
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}
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func inKeyValSlice(a KeyVal, list []KeyVal) bool {
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for _, b := range list {
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if b == a {
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return true
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}
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}
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return false
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}
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// ToKeywords makes a list of Keyword from a list of string
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func ToKeywords(list []string) []Keyword {
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ret := make([]Keyword, len(list))
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for i := range list {
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ret[i] = Keyword(list[i])
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}
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return ret
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}
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// FromKeywords makes a list of string from a list of Keyword
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func FromKeywords(list []Keyword) []string {
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ret := make([]string, len(list))
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for i := range list {
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ret[i] = string(list[i])
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}
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return ret
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}
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// KeyValToString constructs a list of string from the list of KeyVal
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func KeyValToString(list []KeyVal) []string {
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ret := make([]string, len(list))
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for i := range list {
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ret[i] = string(list[i])
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}
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return ret
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}
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// StringToKeyVals constructs a list of KeyVal from the list of strings, like "keyword=value"
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func StringToKeyVals(list []string) []KeyVal {
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ret := make([]KeyVal, len(list))
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for i := range list {
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ret[i] = KeyVal(list[i])
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}
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return ret
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}
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// KeyVal is a "keyword=value"
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type KeyVal string
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// Keyword is the mapping to the available keywords
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func (kv KeyVal) Keyword() Keyword {
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if !strings.Contains(string(kv), "=") {
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return Keyword("")
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}
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chunks := strings.SplitN(strings.TrimSpace(string(kv)), "=", 2)[0]
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if !strings.Contains(chunks, ".") {
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return Keyword(chunks)
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}
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return Keyword(strings.SplitN(chunks, ".", 2)[0])
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}
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// KeywordSuffix is really only used for xattr, as the keyword is a prefix to
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// the xattr "namespace.key"
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func (kv KeyVal) KeywordSuffix() string {
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if !strings.Contains(string(kv), "=") {
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return ""
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}
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chunks := strings.SplitN(strings.TrimSpace(string(kv)), "=", 2)[0]
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if !strings.Contains(chunks, ".") {
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return ""
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}
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return strings.SplitN(chunks, ".", 2)[1]
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}
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// Value is the data/value portion of "keyword=value"
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func (kv KeyVal) Value() string {
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if !strings.Contains(string(kv), "=") {
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return ""
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}
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return strings.SplitN(strings.TrimSpace(string(kv)), "=", 2)[1]
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}
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// ChangeValue changes the value of a KeyVal
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func (kv KeyVal) ChangeValue(newval string) string {
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return fmt.Sprintf("%s=%s", kv.Keyword(), newval)
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}
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// KeyValEqual returns whether two KeyVal are equivalent. This takes
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// care of certain odd cases such as tar_mtime, and should be used over
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// using == comparisons directly unless you really know what you're
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// doing.
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func KeyValEqual(a, b KeyVal) bool {
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// TODO: Implement handling of tar_mtime.
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return a.Keyword() == b.Keyword() && a.Value() == b.Value()
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}
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// keyvalSelector takes an array of KeyVal ("keyword=value") and filters out that only the set of keywords
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func keyvalSelector(keyval []KeyVal, keyset []Keyword) []KeyVal {
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retList := []KeyVal{}
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for _, kv := range keyval {
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if InKeywordSlice(kv.Keyword(), keyset) {
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retList = append(retList, kv)
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}
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}
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return retList
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}
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func keyValDifference(this, that []KeyVal) []KeyVal {
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if len(this) == 0 {
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return that
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}
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diff := []KeyVal{}
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for _, kv := range this {
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if !inKeyValSlice(kv, that) {
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diff = append(diff, kv)
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}
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}
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return diff
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}
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func keyValCopy(set []KeyVal) []KeyVal {
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ret := make([]KeyVal, len(set))
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for i := range set {
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ret[i] = set[i]
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}
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return ret
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}
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// Has the "keyword" present in the list of KeyVal, and returns the
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// corresponding KeyVal, else an empty string.
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func Has(keyvals []KeyVal, keyword string) KeyVal {
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return HasKeyword(keyvals, Keyword(keyword))
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}
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// HasKeyword the "keyword" present in the list of KeyVal, and returns the
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// corresponding KeyVal, else an empty string.
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func HasKeyword(keyvals []KeyVal, keyword Keyword) KeyVal {
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for i := range keyvals {
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if keyvals[i].Keyword() == keyword {
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return keyvals[i]
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}
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}
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return emptyKV
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}
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var emptyKV = KeyVal("")
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// MergeSet takes the current setKeyVals, and then applies the entryKeyVals
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// such that the entry's values win. The union is returned.
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func MergeSet(setKeyVals, entryKeyVals []string) []KeyVal {
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retList := StringToKeyVals(setKeyVals)
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eKVs := StringToKeyVals(entryKeyVals)
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return MergeKeyValSet(retList, eKVs)
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}
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// MergeKeyValSet does a merge of the two sets of KeyVal, and the KeyVal of
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// entryKeyVals win when there is a duplicate Keyword.
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func MergeKeyValSet(setKeyVals, entryKeyVals []KeyVal) []KeyVal {
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retList := keyValCopy(setKeyVals)
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seenKeywords := []Keyword{}
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for i := range retList {
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word := retList[i].Keyword()
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if ekv := HasKeyword(entryKeyVals, word); ekv != emptyKV {
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retList[i] = ekv
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}
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seenKeywords = append(seenKeywords, word)
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}
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for i := range entryKeyVals {
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if !InKeywordSlice(entryKeyVals[i].Keyword(), seenKeywords) {
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retList = append(retList, entryKeyVals[i])
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}
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}
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return retList
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}
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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 = []Keyword{
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"size",
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"type",
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"uid",
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"gid",
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"mode",
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"link",
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"nlink",
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"time",
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}
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// DefaultTarKeywords has keywords that should be used when creating a manifest from
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// an archive. Currently, evaluating the # of hardlinks has not been implemented yet
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DefaultTarKeywords = []Keyword{
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"size",
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"type",
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"uid",
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"gid",
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"mode",
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"link",
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"tar_time",
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}
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// BsdKeywords is the set of keywords that is only in the upstream FreeBSD mtree
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BsdKeywords = []Keyword{
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"cksum",
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"device",
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"flags", // this one is really mostly BSD specific ...
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"ignore",
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"gid",
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"gname",
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"link",
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"md5",
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"md5digest",
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"mode",
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"nlink",
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"nochange",
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"optional",
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"ripemd160digest",
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"rmd160",
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"rmd160digest",
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"sha1",
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"sha1digest",
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"sha256",
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"sha256digest",
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"sha384",
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"sha384digest",
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"sha512",
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"sha512digest",
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"size",
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"tags",
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"time",
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"type",
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"uid",
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"uname",
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}
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// SetKeywords is the default set of keywords calculated for a `/set` SpecialType
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SetKeywords = []Keyword{
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"uid",
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"gid",
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}
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)
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// KeywordSynonym returns the canonical name for keywords that have synonyms,
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// and just returns the name provided if there is no synonym. In this way it
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// ought to be safe to wrap any keyword name.
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func KeywordSynonym(name string) Keyword {
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var retname string
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switch name {
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case "md5":
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retname = "md5digest"
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case "rmd160":
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retname = "ripemd160digest"
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case "rmd160digest":
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retname = "ripemd160digest"
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case "sha1":
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retname = "sha1digest"
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case "sha256":
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retname = "sha256digest"
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case "sha384":
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retname = "sha384digest"
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case "sha512":
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retname = "sha512digest"
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case "xattrs":
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retname = "xattr"
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default:
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retname = name
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}
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return Keyword(retname)
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}
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