3a6f1f5cd7
Fixes #6353
553 lines
14 KiB
Go
553 lines
14 KiB
Go
// Package filter controls the filtering of files
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package filter
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import (
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"context"
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"errors"
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"fmt"
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"log"
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"path"
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"strings"
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"time"
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"github.com/rclone/rclone/fs"
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"golang.org/x/sync/errgroup"
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)
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// This is the globally active filter
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//
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// This is accessed through GetConfig and AddConfig
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var globalConfig = mustNewFilter(nil)
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// Opt configures the filter
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type Opt struct {
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DeleteExcluded bool
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RulesOpt // embedded so we don't change the JSON API
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ExcludeFile []string
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FilesFrom []string
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FilesFromRaw []string
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MetaRules RulesOpt
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MinAge fs.Duration
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MaxAge fs.Duration
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MinSize fs.SizeSuffix
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MaxSize fs.SizeSuffix
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IgnoreCase bool
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}
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// DefaultOpt is the default config for the filter
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var DefaultOpt = Opt{
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MinAge: fs.DurationOff,
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MaxAge: fs.DurationOff,
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MinSize: fs.SizeSuffix(-1),
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MaxSize: fs.SizeSuffix(-1),
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}
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// FilesMap describes the map of files to transfer
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type FilesMap map[string]struct{}
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// Filter describes any filtering in operation
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type Filter struct {
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Opt Opt
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ModTimeFrom time.Time
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ModTimeTo time.Time
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fileRules rules
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dirRules rules
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metaRules rules
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files FilesMap // files if filesFrom
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dirs FilesMap // dirs from filesFrom
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}
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// NewFilter parses the command line options and creates a Filter
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// object. If opt is nil, then DefaultOpt will be used
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func NewFilter(opt *Opt) (f *Filter, err error) {
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f = &Filter{}
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// Make a copy of the options
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if opt != nil {
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f.Opt = *opt
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} else {
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f.Opt = DefaultOpt
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}
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// Filter flags
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if f.Opt.MinAge.IsSet() {
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f.ModTimeTo = time.Now().Add(-time.Duration(f.Opt.MinAge))
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fs.Debugf(nil, "--min-age %v to %v", f.Opt.MinAge, f.ModTimeTo)
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}
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if f.Opt.MaxAge.IsSet() {
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f.ModTimeFrom = time.Now().Add(-time.Duration(f.Opt.MaxAge))
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if !f.ModTimeTo.IsZero() && f.ModTimeTo.Before(f.ModTimeFrom) {
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log.Fatal("filter: --min-age can't be larger than --max-age")
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}
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fs.Debugf(nil, "--max-age %v to %v", f.Opt.MaxAge, f.ModTimeFrom)
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}
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err = parseRules(&f.Opt.RulesOpt, f.Add, f.Clear)
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if err != nil {
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return nil, err
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}
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err = parseRules(&f.Opt.MetaRules, f.metaRules.Add, f.metaRules.clear)
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if err != nil {
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return nil, err
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}
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inActive := f.InActive()
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for _, rule := range f.Opt.FilesFrom {
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if !inActive {
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return nil, fmt.Errorf("the usage of --files-from overrides all other filters, it should be used alone or with --files-from-raw")
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}
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f.initAddFile() // init to show --files-from set even if no files within
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err := forEachLine(rule, false, func(line string) error {
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return f.AddFile(line)
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})
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if err != nil {
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return nil, err
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}
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}
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for _, rule := range f.Opt.FilesFromRaw {
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// --files-from-raw can be used with --files-from, hence we do
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// not need to get the value of f.InActive again
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if !inActive {
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return nil, fmt.Errorf("the usage of --files-from-raw overrides all other filters, it should be used alone or with --files-from")
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}
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f.initAddFile() // init to show --files-from set even if no files within
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err := forEachLine(rule, true, func(line string) error {
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return f.AddFile(line)
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})
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if err != nil {
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return nil, err
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}
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}
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if fs.GetConfig(context.Background()).Dump&fs.DumpFilters != 0 {
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fmt.Println("--- start filters ---")
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fmt.Println(f.DumpFilters())
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fmt.Println("--- end filters ---")
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}
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return f, nil
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}
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func mustNewFilter(opt *Opt) *Filter {
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f, err := NewFilter(opt)
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if err != nil {
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panic(err)
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}
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return f
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}
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// addDirGlobs adds directory globs from the file glob passed in
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func (f *Filter) addDirGlobs(Include bool, glob string) error {
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for _, dirGlob := range globToDirGlobs(glob) {
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// Don't add "/" as we always include the root
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if dirGlob == "/" {
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continue
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}
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dirRe, err := GlobToRegexp(dirGlob, f.Opt.IgnoreCase)
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if err != nil {
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return err
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}
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f.dirRules.add(Include, dirRe)
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}
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return nil
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}
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// Add adds a filter rule with include or exclude status indicated
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func (f *Filter) Add(Include bool, glob string) error {
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isDirRule := strings.HasSuffix(glob, "/")
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isFileRule := !isDirRule
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// Make excluding "dir/" equivalent to excluding "dir/**"
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if isDirRule && !Include {
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glob += "**"
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}
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if strings.Contains(glob, "**") {
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isDirRule, isFileRule = true, true
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}
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re, err := GlobToRegexp(glob, f.Opt.IgnoreCase)
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if err != nil {
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return err
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}
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if isFileRule {
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f.fileRules.add(Include, re)
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// If include rule work out what directories are needed to scan
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// if exclude rule, we can't rule anything out
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// Unless it is `*` which matches everything
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// NB ** and /** are DirRules
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if Include || glob == "*" {
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err = f.addDirGlobs(Include, glob)
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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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}
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if isDirRule {
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f.dirRules.add(Include, re)
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}
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return nil
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}
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// AddRule adds a filter rule with include/exclude indicated by the prefix
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//
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// These are
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//
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// - glob
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// - glob
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// !
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//
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// '+' includes the glob, '-' excludes it and '!' resets the filter list
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//
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// Line comments may be introduced with '#' or ';'
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func (f *Filter) AddRule(rule string) error {
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return addRule(rule, f.Add, f.Clear)
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}
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// initAddFile creates f.files and f.dirs
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func (f *Filter) initAddFile() {
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if f.files == nil {
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f.files = make(FilesMap)
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f.dirs = make(FilesMap)
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}
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}
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// AddFile adds a single file to the files from list
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func (f *Filter) AddFile(file string) error {
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f.initAddFile()
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file = strings.Trim(file, "/")
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f.files[file] = struct{}{}
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// Put all the parent directories into f.dirs
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for {
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file = path.Dir(file)
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if file == "." {
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break
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}
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if _, found := f.dirs[file]; found {
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break
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}
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f.dirs[file] = struct{}{}
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}
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return nil
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}
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// Files returns all the files from the `--files-from` list
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//
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// It may be nil if the list is empty
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func (f *Filter) Files() FilesMap {
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return f.files
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}
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// Clear clears all the filter rules
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func (f *Filter) Clear() {
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f.fileRules.clear()
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f.dirRules.clear()
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f.metaRules.clear()
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}
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// InActive returns false if any filters are active
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func (f *Filter) InActive() bool {
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return (f.files == nil &&
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f.ModTimeFrom.IsZero() &&
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f.ModTimeTo.IsZero() &&
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f.Opt.MinSize < 0 &&
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f.Opt.MaxSize < 0 &&
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f.fileRules.len() == 0 &&
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f.dirRules.len() == 0 &&
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f.metaRules.len() == 0 &&
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len(f.Opt.ExcludeFile) == 0)
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}
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// IncludeRemote returns whether this remote passes the filter rules.
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func (f *Filter) IncludeRemote(remote string) bool {
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// filesFrom takes precedence
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if f.files != nil {
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_, include := f.files[remote]
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return include
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}
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return f.fileRules.include(remote)
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}
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// ListContainsExcludeFile checks if exclude file is present in the list.
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func (f *Filter) ListContainsExcludeFile(entries fs.DirEntries) bool {
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if len(f.Opt.ExcludeFile) == 0 {
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return false
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}
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for _, entry := range entries {
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obj, ok := entry.(fs.Object)
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if ok {
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basename := path.Base(obj.Remote())
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for _, excludeFile := range f.Opt.ExcludeFile {
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if basename == excludeFile {
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return true
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}
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}
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}
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}
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return false
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}
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// IncludeDirectory returns a function which checks whether this
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// directory should be included in the sync or not.
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func (f *Filter) IncludeDirectory(ctx context.Context, fs fs.Fs) func(string) (bool, error) {
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return func(remote string) (bool, error) {
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remote = strings.Trim(remote, "/")
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// first check if we need to remove directory based on
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// the exclude file
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excl, err := f.DirContainsExcludeFile(ctx, fs, remote)
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if err != nil {
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return false, err
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}
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if excl {
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return false, nil
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}
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// filesFrom takes precedence
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if f.files != nil {
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_, include := f.dirs[remote]
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return include, nil
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}
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remote += "/"
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return f.dirRules.include(remote), nil
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}
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}
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// DirContainsExcludeFile checks if exclude file is present in a
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// directory. If fs is nil, it works properly if ExcludeFile is an
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// empty string (for testing).
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func (f *Filter) DirContainsExcludeFile(ctx context.Context, fremote fs.Fs, remote string) (bool, error) {
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if len(f.Opt.ExcludeFile) > 0 {
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for _, excludeFile := range f.Opt.ExcludeFile {
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exists, err := fs.FileExists(ctx, fremote, path.Join(remote, excludeFile))
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if err != nil {
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return false, err
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}
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if exists {
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return true, nil
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}
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}
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}
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return false, nil
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}
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// Include returns whether this object should be included into the
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// sync or not
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func (f *Filter) Include(remote string, size int64, modTime time.Time, metadata fs.Metadata) bool {
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// filesFrom takes precedence
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if f.files != nil {
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_, include := f.files[remote]
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return include
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}
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if !f.ModTimeFrom.IsZero() && modTime.Before(f.ModTimeFrom) {
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return false
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}
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if !f.ModTimeTo.IsZero() && modTime.After(f.ModTimeTo) {
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return false
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}
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if f.Opt.MinSize >= 0 && size < int64(f.Opt.MinSize) {
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return false
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}
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if f.Opt.MaxSize >= 0 && size > int64(f.Opt.MaxSize) {
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return false
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}
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if f.metaRules.len() > 0 {
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metadatas := make([]string, 0, len(metadata)+1)
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for key, value := range metadata {
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metadatas = append(metadatas, fmt.Sprintf("%s=%s", key, value))
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}
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if len(metadata) == 0 {
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// If there is no metadata, add a null one
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// otherwise the default action isn't taken
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metadatas = append(metadatas, "\x00=\x00")
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}
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if !f.metaRules.includeMany(metadatas) {
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return false
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}
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}
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return f.IncludeRemote(remote)
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}
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// IncludeObject returns whether this object should be included into
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// the sync or not. This is a convenience function to avoid calling
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// o.ModTime(), which is an expensive operation.
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func (f *Filter) IncludeObject(ctx context.Context, o fs.Object) bool {
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var modTime time.Time
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if !f.ModTimeFrom.IsZero() || !f.ModTimeTo.IsZero() {
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modTime = o.ModTime(ctx)
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} else {
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modTime = time.Unix(0, 0)
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}
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var metadata fs.Metadata
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if f.metaRules.len() > 0 {
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var err error
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metadata, err = fs.GetMetadata(ctx, o)
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if err != nil {
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fs.Errorf(o, "Failed to read metadata: %v", err)
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metadata = nil
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}
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}
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return f.Include(o.Remote(), o.Size(), modTime, metadata)
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}
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// DumpFilters dumps the filters in textual form, 1 per line
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func (f *Filter) DumpFilters() string {
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rules := []string{}
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if !f.ModTimeFrom.IsZero() {
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rules = append(rules, fmt.Sprintf("Last-modified date must be equal or greater than: %s", f.ModTimeFrom.String()))
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}
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if !f.ModTimeTo.IsZero() {
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rules = append(rules, fmt.Sprintf("Last-modified date must be equal or less than: %s", f.ModTimeTo.String()))
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}
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rules = append(rules, "--- File filter rules ---")
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for _, rule := range f.fileRules.rules {
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rules = append(rules, rule.String())
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}
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rules = append(rules, "--- Directory filter rules ---")
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for _, dirRule := range f.dirRules.rules {
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rules = append(rules, dirRule.String())
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}
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if f.metaRules.len() > 0 {
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rules = append(rules, "--- Metadata filter rules ---")
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for _, metaRule := range f.metaRules.rules {
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rules = append(rules, metaRule.String())
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}
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}
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return strings.Join(rules, "\n")
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}
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// HaveFilesFrom returns true if --files-from has been supplied
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func (f *Filter) HaveFilesFrom() bool {
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return f.files != nil
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}
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var errFilesFromNotSet = errors.New("--files-from not set so can't use Filter.ListR")
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// MakeListR makes function to return all the files set using --files-from
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func (f *Filter) MakeListR(ctx context.Context, NewObject func(ctx context.Context, remote string) (fs.Object, error)) fs.ListRFn {
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return func(ctx context.Context, dir string, callback fs.ListRCallback) error {
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ci := fs.GetConfig(ctx)
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if !f.HaveFilesFrom() {
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return errFilesFromNotSet
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}
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var (
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checkers = ci.Checkers
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remotes = make(chan string, checkers)
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g errgroup.Group
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)
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for i := 0; i < checkers; i++ {
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g.Go(func() (err error) {
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var entries = make(fs.DirEntries, 1)
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for remote := range remotes {
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entries[0], err = NewObject(ctx, remote)
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if err == fs.ErrorObjectNotFound {
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// Skip files that are not found
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} else if err != nil {
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return err
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} else {
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err = callback(entries)
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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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}
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return nil
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})
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}
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for remote := range f.files {
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remotes <- remote
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}
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close(remotes)
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return g.Wait()
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}
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}
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// UsesDirectoryFilters returns true if the filter uses directory
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// filters and false if it doesn't.
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//
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// This is used in deciding whether to walk directories or use ListR
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func (f *Filter) UsesDirectoryFilters() bool {
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if len(f.dirRules.rules) == 0 {
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return false
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}
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rule := f.dirRules.rules[0]
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re := rule.Regexp.String()
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if rule.Include && re == "^.*$" {
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return false
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}
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return true
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}
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// Context key for config
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type configContextKeyType struct{}
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var configContextKey = configContextKeyType{}
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// GetConfig returns the global or context sensitive config
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func GetConfig(ctx context.Context) *Filter {
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if ctx == nil {
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return globalConfig
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}
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c := ctx.Value(configContextKey)
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if c == nil {
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return globalConfig
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}
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return c.(*Filter)
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}
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// CopyConfig copies the global config (if any) from srcCtx into
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// dstCtx returning the new context.
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func CopyConfig(dstCtx, srcCtx context.Context) context.Context {
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if srcCtx == nil {
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return dstCtx
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}
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c := srcCtx.Value(configContextKey)
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if c == nil {
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return dstCtx
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}
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return context.WithValue(dstCtx, configContextKey, c)
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}
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// AddConfig returns a mutable config structure based on a shallow
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// copy of that found in ctx and returns a new context with that added
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// to it.
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func AddConfig(ctx context.Context) (context.Context, *Filter) {
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c := GetConfig(ctx)
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cCopy := new(Filter)
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*cCopy = *c
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newCtx := context.WithValue(ctx, configContextKey, cCopy)
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return newCtx, cCopy
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}
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// ReplaceConfig replaces the filter config in the ctx with the one
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// passed in and returns a new context with that added to it.
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func ReplaceConfig(ctx context.Context, f *Filter) context.Context {
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newCtx := context.WithValue(ctx, configContextKey, f)
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return newCtx
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}
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// Context key for the "use filter" flag
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type useFlagContextKeyType struct{}
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var useFlagContextKey = useFlagContextKeyType{}
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// GetUseFilter obtains the "use filter" flag from context
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// The flag tells filter-aware backends (Drive) to constrain List using filter
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func GetUseFilter(ctx context.Context) bool {
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if ctx != nil {
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if pVal := ctx.Value(useFlagContextKey); pVal != nil {
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return *(pVal.(*bool))
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}
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}
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return false
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}
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// SetUseFilter returns a context having (re)set the "use filter" flag
|
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func SetUseFilter(ctx context.Context, useFilter bool) context.Context {
|
|
if useFilter == GetUseFilter(ctx) {
|
|
return ctx // Minimize depth of nested contexts
|
|
}
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|
pVal := new(bool)
|
|
*pVal = useFilter
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return context.WithValue(ctx, useFlagContextKey, pVal)
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|
}
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