mirror of
https://github.com/rclone/rclone.git
synced 2024-12-01 12:55:19 +01:00
7e2deffc62
Before this change if doing a recursive directory listing with `--files-from` if more than `--checkers` files errored (other than file not found) then rclone would deadlock. This fixes the problem by exiting on the first error.
559 lines
14 KiB
Go
559 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, gCtx = errgroup.WithContext(ctx)
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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(gCtx, 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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outer:
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for remote := range f.files {
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select {
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case remotes <- remote:
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case <-gCtx.Done():
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break outer
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}
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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
|
|
func GetUseFilter(ctx context.Context) bool {
|
|
if ctx != nil {
|
|
if pVal := ctx.Value(useFlagContextKey); pVal != nil {
|
|
return *(pVal.(*bool))
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
// SetUseFilter returns a context having (re)set the "use filter" flag
|
|
func SetUseFilter(ctx context.Context, useFilter bool) context.Context {
|
|
if useFilter == GetUseFilter(ctx) {
|
|
return ctx // Minimize depth of nested contexts
|
|
}
|
|
pVal := new(bool)
|
|
*pVal = useFilter
|
|
return context.WithValue(ctx, useFlagContextKey, pVal)
|
|
}
|