mirror of
https://github.com/octoleo/syncthing.git
synced 2024-11-19 03:25:16 +00:00
ed588ce335
Previous debug input didn't really give enough info to show what was happening, while it also printed full block lists which are enormously verbose. Now it consistently prints 1. what it sees on disk, 2. what it got from CurrentFile (without blocks), 3. the action taken on that file.
563 lines
14 KiB
Go
563 lines
14 KiB
Go
// Copyright (C) 2014 The Protocol Authors.
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package protocol
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import (
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"bytes"
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"encoding/binary"
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"encoding/json"
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"errors"
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"fmt"
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"time"
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"github.com/syncthing/syncthing/lib/build"
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"github.com/syncthing/syncthing/lib/rand"
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"github.com/syncthing/syncthing/lib/sha256"
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)
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const (
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SyntheticDirectorySize = 128
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HelloMessageMagic uint32 = 0x2EA7D90B
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Version13HelloMagic uint32 = 0x9F79BC40 // old
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)
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// FileIntf is the set of methods implemented by both FileInfo and
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// db.FileInfoTruncated.
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type FileIntf interface {
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FileSize() int64
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FileName() string
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FileLocalFlags() uint32
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IsDeleted() bool
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IsInvalid() bool
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IsIgnored() bool
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IsUnsupported() bool
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MustRescan() bool
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IsReceiveOnlyChanged() bool
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IsDirectory() bool
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IsSymlink() bool
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ShouldConflict() bool
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HasPermissionBits() bool
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SequenceNo() int64
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BlockSize() int
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FileVersion() Vector
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FileType() FileInfoType
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FilePermissions() uint32
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FileModifiedBy() ShortID
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ModTime() time.Time
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PlatformData() PlatformData
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InodeChangeTime() time.Time
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}
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func (Hello) Magic() uint32 {
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return HelloMessageMagic
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}
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func (f FileInfo) String() string {
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switch f.Type {
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case FileInfoTypeDirectory:
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return fmt.Sprintf("Directory{Name:%q, Sequence:%d, Permissions:0%o, ModTime:%v, Version:%v, VersionHash:%x, Deleted:%v, Invalid:%v, LocalFlags:0x%x, NoPermissions:%v, Platform:%v, InodeChangeTime:%v}",
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f.Name, f.Sequence, f.Permissions, f.ModTime(), f.Version, f.VersionHash, f.Deleted, f.RawInvalid, f.LocalFlags, f.NoPermissions, f.Platform, f.InodeChangeTime())
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case FileInfoTypeFile:
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return fmt.Sprintf("File{Name:%q, Sequence:%d, Permissions:0%o, ModTime:%v, Version:%v, VersionHash:%x, Length:%d, Deleted:%v, Invalid:%v, LocalFlags:0x%x, NoPermissions:%v, BlockSize:%d, NumBlocks:%d, BlocksHash:%x, Platform:%v, InodeChangeTime:%v}",
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f.Name, f.Sequence, f.Permissions, f.ModTime(), f.Version, f.VersionHash, f.Size, f.Deleted, f.RawInvalid, f.LocalFlags, f.NoPermissions, f.RawBlockSize, len(f.Blocks), f.BlocksHash, f.Platform, f.InodeChangeTime())
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case FileInfoTypeSymlink, FileInfoTypeSymlinkDirectory, FileInfoTypeSymlinkFile:
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return fmt.Sprintf("Symlink{Name:%q, Type:%v, Sequence:%d, Version:%v, VersionHash:%x, Deleted:%v, Invalid:%v, LocalFlags:0x%x, NoPermissions:%v, SymlinkTarget:%q, Platform:%v, InodeChangeTime:%v}",
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f.Name, f.Type, f.Sequence, f.Version, f.VersionHash, f.Deleted, f.RawInvalid, f.LocalFlags, f.NoPermissions, f.SymlinkTarget, f.Platform, f.InodeChangeTime())
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default:
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panic("mystery file type detected")
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}
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}
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func (f FileInfo) IsDeleted() bool {
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return f.Deleted
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}
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func (f FileInfo) IsInvalid() bool {
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return f.RawInvalid || f.LocalFlags&LocalInvalidFlags != 0
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}
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func (f FileInfo) IsUnsupported() bool {
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return f.LocalFlags&FlagLocalUnsupported != 0
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}
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func (f FileInfo) IsIgnored() bool {
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return f.LocalFlags&FlagLocalIgnored != 0
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}
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func (f FileInfo) MustRescan() bool {
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return f.LocalFlags&FlagLocalMustRescan != 0
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}
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func (f FileInfo) IsReceiveOnlyChanged() bool {
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return f.LocalFlags&FlagLocalReceiveOnly != 0
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}
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func (f FileInfo) IsDirectory() bool {
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return f.Type == FileInfoTypeDirectory
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}
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func (f FileInfo) ShouldConflict() bool {
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return f.LocalFlags&LocalConflictFlags != 0
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}
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func (f FileInfo) IsSymlink() bool {
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switch f.Type {
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case FileInfoTypeSymlink, FileInfoTypeSymlinkDirectory, FileInfoTypeSymlinkFile:
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return true
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default:
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return false
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}
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}
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func (f FileInfo) HasPermissionBits() bool {
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return !f.NoPermissions
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}
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func (f FileInfo) FileSize() int64 {
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if f.Deleted {
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return 0
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}
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if f.IsDirectory() || f.IsSymlink() {
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return SyntheticDirectorySize
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}
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return f.Size
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}
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func (f FileInfo) BlockSize() int {
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if f.RawBlockSize < MinBlockSize {
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return MinBlockSize
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}
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return f.RawBlockSize
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}
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func (f FileInfo) FileName() string {
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return f.Name
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}
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func (f FileInfo) FileLocalFlags() uint32 {
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return f.LocalFlags
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}
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func (f FileInfo) ModTime() time.Time {
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return time.Unix(f.ModifiedS, int64(f.ModifiedNs))
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}
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func (f FileInfo) SequenceNo() int64 {
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return f.Sequence
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}
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func (f FileInfo) FileVersion() Vector {
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return f.Version
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}
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func (f FileInfo) FileType() FileInfoType {
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return f.Type
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}
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func (f FileInfo) FilePermissions() uint32 {
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return f.Permissions
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}
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func (f FileInfo) FileModifiedBy() ShortID {
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return f.ModifiedBy
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}
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func (f FileInfo) PlatformData() PlatformData {
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return f.Platform
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}
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func (f FileInfo) InodeChangeTime() time.Time {
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return time.Unix(0, f.InodeChangeNs)
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}
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// WinsConflict returns true if "f" is the one to choose when it is in
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// conflict with "other".
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func WinsConflict(f, other FileIntf) bool {
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// If only one of the files is invalid, that one loses.
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if f.IsInvalid() != other.IsInvalid() {
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return !f.IsInvalid()
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}
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// If a modification is in conflict with a delete, we pick the
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// modification.
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if !f.IsDeleted() && other.IsDeleted() {
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return true
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}
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if f.IsDeleted() && !other.IsDeleted() {
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return false
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}
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// The one with the newer modification time wins.
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if f.ModTime().After(other.ModTime()) {
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return true
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}
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if f.ModTime().Before(other.ModTime()) {
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return false
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}
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// The modification times were equal. Use the device ID in the version
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// vector as tie breaker.
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return f.FileVersion().Compare(other.FileVersion()) == ConcurrentGreater
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}
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type FileInfoComparison struct {
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ModTimeWindow time.Duration
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IgnorePerms bool
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IgnoreBlocks bool
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IgnoreFlags uint32
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IgnoreOwnership bool
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IgnoreXattrs bool
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}
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func (f FileInfo) IsEquivalent(other FileInfo, modTimeWindow time.Duration) bool {
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return f.isEquivalent(other, FileInfoComparison{ModTimeWindow: modTimeWindow})
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}
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func (f FileInfo) IsEquivalentOptional(other FileInfo, comp FileInfoComparison) bool {
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return f.isEquivalent(other, comp)
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}
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// isEquivalent checks that the two file infos represent the same actual file content,
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// i.e. it does purposely not check only selected (see below) struct members.
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// Permissions (config) and blocks (scanning) can be excluded from the comparison.
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// Any file info is not "equivalent", if it has different
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// - type
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// - deleted flag
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// - invalid flag
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// - permissions, unless they are ignored
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//
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// A file is not "equivalent", if it has different
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// - modification time (difference bigger than modTimeWindow)
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// - size
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// - blocks, unless there are no blocks to compare (scanning)
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// - os data
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//
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// A symlink is not "equivalent", if it has different
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// - target
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//
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// A directory does not have anything specific to check.
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func (f FileInfo) isEquivalent(other FileInfo, comp FileInfoComparison) bool {
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if f.MustRescan() || other.MustRescan() {
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// These are per definition not equivalent because they don't
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// represent a valid state, even if both happen to have the
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// MustRescan bit set.
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return false
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}
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// If we are recording inode change times and it changed, they are not
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// equal.
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if f.InodeChangeNs != 0 && other.InodeChangeNs != 0 && f.InodeChangeNs != other.InodeChangeNs {
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return false
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}
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// Mask out the ignored local flags before checking IsInvalid() below
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f.LocalFlags &^= comp.IgnoreFlags
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other.LocalFlags &^= comp.IgnoreFlags
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if f.Name != other.Name || f.Type != other.Type || f.Deleted != other.Deleted || f.IsInvalid() != other.IsInvalid() {
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return false
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}
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// OS data comparison is special: we consider a difference only if an
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// entry for the same OS exists on both sides and they are different.
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// Otherwise a file would become different as soon as it's synced from
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// Windows to Linux, as Linux would add a new POSIX entry for the file.
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if !comp.IgnoreOwnership && f.Platform != other.Platform {
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if f.Platform.Unix != nil && other.Platform.Unix != nil {
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if *f.Platform.Unix != *other.Platform.Unix {
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return false
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}
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}
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if f.Platform.Windows != nil && other.Platform.Windows != nil {
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if f.Platform.Windows.OwnerName != other.Platform.Windows.OwnerName ||
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f.Platform.Windows.OwnerIsGroup != other.Platform.Windows.OwnerIsGroup {
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return false
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}
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}
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}
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if !comp.IgnoreXattrs && f.Platform != other.Platform {
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if !xattrsEqual(f.Platform.Linux, other.Platform.Linux) {
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return false
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}
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if !xattrsEqual(f.Platform.Darwin, other.Platform.Darwin) {
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return false
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}
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if !xattrsEqual(f.Platform.FreeBSD, other.Platform.FreeBSD) {
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return false
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}
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if !xattrsEqual(f.Platform.NetBSD, other.Platform.NetBSD) {
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return false
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}
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}
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if !comp.IgnorePerms && !f.NoPermissions && !other.NoPermissions && !PermsEqual(f.Permissions, other.Permissions) {
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return false
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}
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switch f.Type {
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case FileInfoTypeFile:
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return f.Size == other.Size && ModTimeEqual(f.ModTime(), other.ModTime(), comp.ModTimeWindow) && (comp.IgnoreBlocks || f.BlocksEqual(other))
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case FileInfoTypeSymlink:
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return f.SymlinkTarget == other.SymlinkTarget
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case FileInfoTypeDirectory:
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return true
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}
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return false
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}
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func ModTimeEqual(a, b time.Time, modTimeWindow time.Duration) bool {
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if a.Equal(b) {
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return true
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}
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diff := a.Sub(b)
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if diff < 0 {
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diff *= -1
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}
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return diff < modTimeWindow
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}
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func PermsEqual(a, b uint32) bool {
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if build.IsWindows {
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// There is only writeable and read only, represented for user, group
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// and other equally. We only compare against user.
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return a&0600 == b&0600
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}
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// All bits count
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return a&0777 == b&0777
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}
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// BlocksEqual returns true when the two files have identical block lists.
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func (f FileInfo) BlocksEqual(other FileInfo) bool {
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// If both sides have blocks hashes and they match, we are good. If they
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// don't match still check individual block hashes to catch differences
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// in weak hashes only (e.g. after switching weak hash algo).
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if len(f.BlocksHash) > 0 && len(other.BlocksHash) > 0 && bytes.Equal(f.BlocksHash, other.BlocksHash) {
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return true
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}
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// Actually compare the block lists in full.
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return blocksEqual(f.Blocks, other.Blocks)
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}
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// Xattrs is a convenience method to return the extended attributes of the
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// file for the current platform.
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func (f *PlatformData) Xattrs() []Xattr {
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switch {
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case build.IsLinux && f.Linux != nil:
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return f.Linux.Xattrs
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case build.IsDarwin && f.Darwin != nil:
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return f.Darwin.Xattrs
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case build.IsFreeBSD && f.FreeBSD != nil:
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return f.FreeBSD.Xattrs
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case build.IsNetBSD && f.NetBSD != nil:
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return f.NetBSD.Xattrs
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default:
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return nil
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}
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}
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// SetXattrs is a convenience method to set the extended attributes of the
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// file for the current platform.
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func (p *PlatformData) SetXattrs(xattrs []Xattr) {
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switch {
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case build.IsLinux:
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if p.Linux == nil {
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p.Linux = &XattrData{}
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}
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p.Linux.Xattrs = xattrs
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case build.IsDarwin:
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if p.Darwin == nil {
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p.Darwin = &XattrData{}
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}
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p.Darwin.Xattrs = xattrs
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case build.IsFreeBSD:
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if p.FreeBSD == nil {
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p.FreeBSD = &XattrData{}
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}
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p.FreeBSD.Xattrs = xattrs
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case build.IsNetBSD:
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if p.NetBSD == nil {
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p.NetBSD = &XattrData{}
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}
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p.NetBSD.Xattrs = xattrs
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}
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}
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// MergeWith copies platform data from other, for platforms where it's not
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// already set on p.
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func (p *PlatformData) MergeWith(other *PlatformData) {
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if p.Unix == nil {
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p.Unix = other.Unix
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}
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if p.Windows == nil {
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p.Windows = other.Windows
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}
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if p.Linux == nil {
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p.Linux = other.Linux
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}
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if p.Darwin == nil {
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p.Darwin = other.Darwin
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}
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if p.FreeBSD == nil {
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p.FreeBSD = other.FreeBSD
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}
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if p.NetBSD == nil {
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p.NetBSD = other.NetBSD
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}
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}
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// blocksEqual returns whether two slices of blocks are exactly the same hash
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// and index pair wise.
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func blocksEqual(a, b []BlockInfo) bool {
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if len(b) != len(a) {
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return false
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}
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for i, sblk := range a {
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if !bytes.Equal(sblk.Hash, b[i].Hash) {
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return false
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}
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}
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return true
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}
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func (f *FileInfo) SetMustRescan() {
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f.setLocalFlags(FlagLocalMustRescan)
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}
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func (f *FileInfo) SetIgnored() {
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f.setLocalFlags(FlagLocalIgnored)
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}
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func (f *FileInfo) SetUnsupported() {
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f.setLocalFlags(FlagLocalUnsupported)
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}
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func (f *FileInfo) SetDeleted(by ShortID) {
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f.ModifiedBy = by
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f.Deleted = true
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f.Version = f.Version.Update(by)
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f.ModifiedS = time.Now().Unix()
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f.setNoContent()
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}
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func (f *FileInfo) setLocalFlags(flags uint32) {
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f.RawInvalid = false
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f.LocalFlags = flags
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f.setNoContent()
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}
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func (f *FileInfo) setNoContent() {
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f.Blocks = nil
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f.BlocksHash = nil
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f.Size = 0
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}
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func (b BlockInfo) String() string {
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return fmt.Sprintf("Block{%d/%d/%d/%x}", b.Offset, b.Size, b.WeakHash, b.Hash)
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}
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// IsEmpty returns true if the block is a full block of zeroes.
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func (b BlockInfo) IsEmpty() bool {
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if v, ok := sha256OfEmptyBlock[int(b.Size)]; ok {
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return bytes.Equal(b.Hash, v[:])
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}
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return false
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}
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type IndexID uint64
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func (i IndexID) String() string {
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return fmt.Sprintf("0x%016X", uint64(i))
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}
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func (i IndexID) Marshal() ([]byte, error) {
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bs := make([]byte, 8)
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binary.BigEndian.PutUint64(bs, uint64(i))
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return bs, nil
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}
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func (i *IndexID) Unmarshal(bs []byte) error {
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if len(bs) != 8 {
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return errors.New("incorrect IndexID length")
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}
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*i = IndexID(binary.BigEndian.Uint64(bs))
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return nil
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}
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func NewIndexID() IndexID {
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return IndexID(rand.Uint64())
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}
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func (f Folder) Description() string {
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// used by logging stuff
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if f.Label == "" {
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return f.ID
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}
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return fmt.Sprintf("%q (%s)", f.Label, f.ID)
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}
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func BlocksHash(bs []BlockInfo) []byte {
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h := sha256.New()
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for _, b := range bs {
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_, _ = h.Write(b.Hash)
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_ = binary.Write(h, binary.BigEndian, b.WeakHash)
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}
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return h.Sum(nil)
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}
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func VectorHash(v Vector) []byte {
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h := sha256.New()
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for _, c := range v.Counters {
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if err := binary.Write(h, binary.BigEndian, c.ID); err != nil {
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panic("impossible: failed to write c.ID to hash function: " + err.Error())
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}
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if err := binary.Write(h, binary.BigEndian, c.Value); err != nil {
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panic("impossible: failed to write c.Value to hash function: " + err.Error())
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}
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}
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return h.Sum(nil)
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}
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func (x *FileInfoType) MarshalJSON() ([]byte, error) {
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return json.Marshal(x.String())
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}
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|
func (x *FileInfoType) UnmarshalJSON(data []byte) error {
|
|
var s string
|
|
if err := json.Unmarshal(data, &s); err != nil {
|
|
return err
|
|
}
|
|
n, ok := FileInfoType_value[s]
|
|
if !ok {
|
|
return errors.New("invalid value: " + s)
|
|
}
|
|
*x = FileInfoType(n)
|
|
return nil
|
|
}
|
|
|
|
func xattrsEqual(a, b *XattrData) bool {
|
|
if a == nil || b == nil {
|
|
// Having no data on either side means we have nothing to compare
|
|
// to, and we consider that equal.
|
|
return true
|
|
}
|
|
if len(a.Xattrs) != len(b.Xattrs) {
|
|
return false
|
|
}
|
|
for i := range a.Xattrs {
|
|
if a.Xattrs[i].Name != b.Xattrs[i].Name {
|
|
return false
|
|
}
|
|
if !bytes.Equal(a.Xattrs[i].Value, b.Xattrs[i].Value) {
|
|
return false
|
|
}
|
|
}
|
|
return true
|
|
}
|