2023-09-25 01:06:07 +02:00
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// apparmor.d - Full set of apparmor profiles
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2024-02-07 00:16:21 +01:00
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// Copyright (C) 2021-2024 Alexandre Pujol <alexandre@pujol.io>
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2023-09-25 01:06:07 +02:00
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// SPDX-License-Identifier: GPL-2.0-only
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package aa
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2024-05-05 15:19:25 +02:00
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import (
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"fmt"
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"slices"
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"strings"
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2024-06-29 23:27:39 +02:00
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"github.com/roddhjav/apparmor.d/pkg/util"
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)
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const (
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LINK Kind = "link"
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FILE Kind = "file"
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tokOWNER = "owner"
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tokSUBSET = "subset"
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)
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2024-05-25 23:01:29 +02:00
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func init() {
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requirements[FILE] = requirement{
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"access": {"m", "r", "w", "l", "k"},
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"transition": {
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"ix", "ux", "Ux", "px", "Px", "cx", "Cx", "pix", "Pix", "cix",
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"Cix", "pux", "PUx", "cux", "CUx", "x",
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},
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}
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}
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2024-05-25 23:26:51 +02:00
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func isOwner(log map[string]string) bool {
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fsuid, hasFsUID := log["fsuid"]
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ouid, hasOuUID := log["ouid"]
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isDbus := strings.Contains(log["operation"], "dbus")
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if hasFsUID && hasOuUID && fsuid == ouid && ouid != "0" && !isDbus {
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return true
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}
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return false
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}
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type File struct {
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Base
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Qualifier
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Owner bool
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Path string
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Access []string
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Target string
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}
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2024-06-20 00:22:49 +02:00
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func newFile(q Qualifier, rule rule) (Rule, error) {
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path, access, target, owner := "", "", "", false
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if len(rule) > 0 {
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if rule.Get(0) == tokOWNER {
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owner = true
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rule = rule[1:]
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}
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if rule.Get(0) == FILE.Tok() {
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rule = rule[1:]
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}
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r := rule.GetSlice()
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size := len(r)
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if size < 2 {
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return nil, fmt.Errorf("missing file or access in rule: %s", rule)
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}
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path, access = r[0], r[1]
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if size > 2 {
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if r[2] != tokARROW {
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return nil, fmt.Errorf("missing '%s' in rule: %s", tokARROW, rule)
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}
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target = r[3]
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}
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}
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accesses, err := toAccess(FILE, access)
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if err != nil {
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return nil, err
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}
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return &File{
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Base: newBase(rule),
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Qualifier: q,
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Owner: owner,
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Path: path,
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Access: accesses,
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Target: target,
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}, nil
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}
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2024-04-19 23:43:02 +02:00
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func newFileFromLog(log map[string]string) Rule {
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accesses, err := toAccess("file-log", log["requested_mask"])
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if err != nil {
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panic(fmt.Errorf("newFileFromLog(%v): %w", log, err))
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}
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if slices.Compare(accesses, []string{"l"}) == 0 {
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return newLinkFromLog(log)
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}
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return &File{
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Base: newBaseFromLog(log),
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Qualifier: newQualifierFromLog(log),
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Owner: isOwner(log),
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Path: log["name"],
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Access: accesses,
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Target: log["target"],
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}
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}
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func (r *File) Kind() Kind {
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return FILE
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}
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func (r *File) Constraint() Constraint {
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return BlockRule
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}
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func (r *File) String() string {
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return renderTemplate(r.Kind(), r)
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}
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func (r *File) Validate() error {
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if !isAARE(r.Path) {
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return fmt.Errorf("'%s' is not a valid AARE", r.Path)
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}
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for _, v := range r.Access {
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if v == "" {
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continue
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}
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if !slices.Contains(requirements[r.Kind()]["access"], v) ||
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!slices.Contains(requirements[r.Kind()]["transition"], v) {
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return fmt.Errorf("invalid mode '%s'", v)
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}
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}
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if r.Target != "" && !isAARE(r.Target) {
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return fmt.Errorf("'%s' is not a valid AARE", r.Target)
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}
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return nil
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}
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func (r *File) Compare(other Rule) int {
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o, _ := other.(*File)
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2023-10-01 20:00:39 +02:00
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letterR := getLetterIn(fileAlphabet, r.Path)
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letterO := getLetterIn(fileAlphabet, o.Path)
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if fileWeights[letterR] != fileWeights[letterO] && letterR != "" && letterO != "" {
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return fileWeights[letterR] - fileWeights[letterO]
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}
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if res := compare(r.Owner, o.Owner); res != 0 {
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return res
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}
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if res := compare(r.Path, o.Path); res != 0 {
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return res
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}
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if res := compare(r.Access, o.Access); res != 0 {
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return res
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}
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if res := compare(r.Target, o.Target); res != 0 {
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return res
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}
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return r.Qualifier.Compare(o.Qualifier)
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}
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2024-06-21 00:23:39 +02:00
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func (r *File) Merge(other Rule) bool {
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o, _ := other.(*File)
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2024-06-22 21:59:43 +02:00
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if !r.Qualifier.Equal(o.Qualifier) {
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return false
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}
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if r.Owner == o.Owner && r.Path == o.Path && r.Target == o.Target {
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r.Access = merge(r.Kind(), "access", r.Access, o.Access)
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b := &r.Base
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return b.merge(o.Base)
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}
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return false
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}
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2024-06-29 23:27:39 +02:00
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func (r *File) Lengths() []int {
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// Add padding to align with other transition rule
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lenPath := 0
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isTransition := util.Intersect(
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append(requirements[FILE]["transition"], "m"), r.Access,
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)
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if len(isTransition) > 0 {
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lenPath = length("", r.Path)
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}
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return []int{
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r.Qualifier.getLenAudit(),
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r.Qualifier.getLenAccess(),
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length("owner", r.Owner),
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lenPath,
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}
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}
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func (r *File) setPaddings(max []int) {
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r.Paddings = append(r.Qualifier.setPaddings(max[:2]), setPaddings(
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max[2:], []string{"owner", ""},
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[]any{r.Owner, r.Path})...,
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)
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}
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func (r *File) addLine(other Rule) bool {
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if other.Kind() != r.Kind() {
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return false
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}
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letterI := getLetterIn(fileAlphabet, r.Path)
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letterJ := getLetterIn(fileAlphabet, other.(*File).Path)
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groupI, ok1 := fileAlphabetGroups[letterI]
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groupJ, ok2 := fileAlphabetGroups[letterJ]
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return letterI != letterJ && !(ok1 && ok2 && groupI == groupJ)
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}
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type Link struct {
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Base
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Qualifier
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Owner bool
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Subset bool
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Path string
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Target string
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}
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2024-06-20 00:22:49 +02:00
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func newLink(q Qualifier, rule rule) (Rule, error) {
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owner, subset, path, target := false, false, "", ""
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if len(rule) > 0 {
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if rule.Get(0) == tokOWNER {
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owner = true
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rule = rule[1:]
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}
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if len(rule) > 0 && rule.Get(0) == tokSUBSET {
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subset = true
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rule = rule[1:]
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}
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r := rule.GetSlice()
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size := len(r)
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if size > 0 {
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path = r[0]
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}
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if size > 2 {
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if r[1] != tokARROW {
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return nil, fmt.Errorf("missing '%s' in rule: %s", tokARROW, rule)
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}
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target = r[2]
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}
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}
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return &Link{
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Base: newBase(rule),
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Qualifier: q,
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Owner: owner,
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Subset: subset,
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Path: path,
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Target: target,
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}, nil
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}
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func newLinkFromLog(log map[string]string) Rule {
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return &Link{
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Base: newBaseFromLog(log),
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Qualifier: newQualifierFromLog(log),
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Owner: isOwner(log),
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Path: log["name"],
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Target: log["target"],
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}
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}
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2024-06-25 20:56:36 +02:00
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func (r *Link) Kind() Kind {
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return LINK
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}
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2024-06-27 19:45:32 +02:00
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func (r *Link) Constraint() Constraint {
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return BlockRule
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2024-06-25 20:56:36 +02:00
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}
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func (r *Link) String() string {
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return renderTemplate(r.Kind(), r)
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}
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2024-05-25 23:36:39 +02:00
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func (r *Link) Validate() error {
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2024-09-26 23:15:46 +02:00
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if !isAARE(r.Path) {
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return fmt.Errorf("'%s' is not a valid AARE", r.Path)
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}
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if !isAARE(r.Target) {
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return fmt.Errorf("'%s' is not a valid AARE", r.Target)
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}
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return nil
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}
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2024-06-19 19:34:58 +02:00
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func (r *Link) Compare(other Rule) int {
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o, _ := other.(*Link)
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2024-06-19 19:34:58 +02:00
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if res := compare(r.Owner, o.Owner); res != 0 {
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return res
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2024-05-25 22:56:28 +02:00
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}
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2024-06-19 19:34:58 +02:00
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if res := compare(r.Path, o.Path); res != 0 {
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return res
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2024-05-25 22:56:28 +02:00
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}
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2024-06-19 19:34:58 +02:00
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if res := compare(r.Target, o.Target); res != 0 {
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return res
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2024-05-28 19:22:14 +02:00
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}
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2024-06-19 19:34:58 +02:00
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if res := compare(r.Subset, o.Subset); res != 0 {
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return res
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}
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2024-06-19 19:34:58 +02:00
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return r.Qualifier.Compare(o.Qualifier)
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2024-05-25 22:56:28 +02:00
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}
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2024-06-25 21:10:12 +02:00
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func (r *Link) Merge(other Rule) bool {
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return false // Never merge link
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}
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2024-06-29 23:52:31 +02:00
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func (r *Link) Lengths() []int {
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return []int{
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r.Qualifier.getLenAudit(),
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r.Qualifier.getLenAccess(),
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length("owner", r.Owner),
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length("subset", r.Subset),
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length("", r.Path),
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length("", r.Target),
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}
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}
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func (r *Link) setPaddings(max []int) {
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r.Paddings = append(r.Qualifier.setPaddings(max[:2]), setPaddings(
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max[2:], []string{"owner", "subset", "", ""},
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[]any{r.Owner, r.Subset, r.Path, r.Target})...,
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)
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}
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