mirror of
https://github.com/v2fly/domain-list-community.git
synced 2026-08-27 13:40:16 +03:00
* datdump: improve codes - reuse strings.Builder - no need to generate custom DomainRule type * main.go: ignore empty list instead of quit
592 lines
15 KiB
Go
592 lines
15 KiB
Go
package main
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import (
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"bufio"
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"encoding/json"
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"flag"
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"fmt"
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"os"
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"path/filepath"
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"regexp"
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"slices"
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"strings"
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"github.com/v2fly/domain-list-community/internal/dlc"
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router "github.com/v2fly/v2ray-core/v5/app/router/routercommon"
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"google.golang.org/protobuf/proto"
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)
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var (
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dataPath = flag.String("datapath", "./data", "Path to your custom 'data' directory")
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outputName = flag.String("outputname", "dlc.dat", "Name of the generated dat file")
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outputDir = flag.String("outputdir", "./", "Directory to place all generated files")
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datProfile = flag.String("datprofile", "", "Path of config file used to assemble custom dats")
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exportLists = flag.String("exportlists", "", "Lists to be flattened and exported in plaintext format, separated by ',' comma")
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)
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type Entry struct {
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Type string
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Value string
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Attrs []string
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Plain string
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}
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type Inclusion struct {
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Source string
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MustAttrs []string
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BanAttrs []string
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}
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type ParsedList struct {
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Name string
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Inclusions []*Inclusion
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Entries []*Entry
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}
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type Processor struct {
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plMap map[string]*ParsedList
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finalMap map[string][]*Entry
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cirIncMap map[string]bool
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}
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type GeoSites struct {
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Sites []*router.GeoSite
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SiteIdx map[string]int
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}
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type DatTask struct {
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Name string `json:"name"`
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Mode string `json:"mode"`
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Lists []string `json:"lists"`
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}
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const (
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ModeAll string = "all"
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ModeAllowlist string = "allowlist"
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ModeDenylist string = "denylist"
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)
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func makeProtoList(listName string, entries []*Entry) *router.GeoSite {
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site := &router.GeoSite{
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CountryCode: listName,
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Domain: make([]*router.Domain, 0, len(entries)),
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}
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for _, entry := range entries {
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pdomain := &router.Domain{Value: entry.Value}
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for _, attr := range entry.Attrs {
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pdomain.Attribute = append(pdomain.Attribute, &router.Domain_Attribute{
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Key: attr,
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TypedValue: &router.Domain_Attribute_BoolValue{BoolValue: true},
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})
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}
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switch entry.Type {
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case dlc.RuleTypeDomain:
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pdomain.Type = router.Domain_RootDomain
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case dlc.RuleTypeRegexp:
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pdomain.Type = router.Domain_Regex
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case dlc.RuleTypeKeyword:
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pdomain.Type = router.Domain_Plain
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case dlc.RuleTypeFullDomain:
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pdomain.Type = router.Domain_Full
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}
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site.Domain = append(site.Domain, pdomain)
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}
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return site
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}
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func loadTasks(path string) ([]DatTask, error) {
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f, err := os.Open(path)
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if err != nil {
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return nil, err
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}
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defer f.Close()
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var tasks []DatTask
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dec := json.NewDecoder(f)
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if err := dec.Decode(&tasks); err != nil {
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return nil, fmt.Errorf("failed to decode json: %w", err)
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}
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for i, t := range tasks {
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if t.Name == "" {
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return nil, fmt.Errorf("task[%d]: name is required", i)
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}
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switch t.Mode {
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case ModeAll, ModeAllowlist, ModeDenylist:
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default:
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return nil, fmt.Errorf("task[%d] %q: invalid mode %q", i, t.Name, t.Mode)
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}
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}
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return tasks, nil
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}
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func (gs *GeoSites) assembleDat(task DatTask) error {
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datFileName := strings.ToLower(filepath.Base(task.Name))
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geoSiteList := new(router.GeoSiteList)
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switch task.Mode {
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case ModeAll:
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geoSiteList.Entry = gs.Sites
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case ModeAllowlist:
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allowedIdxes := make([]int, 0, len(task.Lists))
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for _, list := range task.Lists {
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if idx, ok := gs.SiteIdx[strings.ToUpper(list)]; ok {
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allowedIdxes = append(allowedIdxes, idx)
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} else {
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return fmt.Errorf("list %q not found for allowlist task", list)
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}
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}
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allowedlen := len(allowedIdxes)
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if allowedlen == 0 {
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return fmt.Errorf("allowlist needs at least one valid list")
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}
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slices.Sort(allowedIdxes)
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geoSiteList.Entry = make([]*router.GeoSite, allowedlen)
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for i, idx := range allowedIdxes {
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geoSiteList.Entry[i] = gs.Sites[idx]
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}
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case ModeDenylist:
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deniedMap := make(map[int]bool, len(task.Lists))
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for _, list := range task.Lists {
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if idx, ok := gs.SiteIdx[strings.ToUpper(list)]; ok {
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deniedMap[idx] = true
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} else {
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fmt.Printf("[Warn] list %q not found in denylist task %q", list, task.Name)
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}
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}
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deniedlen := len(deniedMap)
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if deniedlen == 0 {
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fmt.Printf("[Warn] nothing to deny in task %q", task.Name)
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geoSiteList.Entry = gs.Sites
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} else {
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geoSiteList.Entry = make([]*router.GeoSite, 0, len(gs.Sites)-deniedlen)
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for i, site := range gs.Sites {
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if !deniedMap[i] {
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geoSiteList.Entry = append(geoSiteList.Entry, site)
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}
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}
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}
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}
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protoBytes, err := proto.Marshal(geoSiteList)
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if err != nil {
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return fmt.Errorf("failed to marshal: %w", err)
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}
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if err := os.WriteFile(filepath.Join(*outputDir, datFileName), protoBytes, 0644); err != nil {
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return fmt.Errorf("failed to write file %q: %w", datFileName, err)
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}
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fmt.Printf("dat %q has been generated successfully\n", datFileName)
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return nil
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}
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func writePlainList(listname string, entries []*Entry) error {
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file, err := os.Create(filepath.Join(*outputDir, strings.ToLower(listname)+".txt"))
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if err != nil {
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return err
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}
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defer file.Close()
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w := bufio.NewWriter(file)
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for _, entry := range entries {
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fmt.Fprintln(w, entry.Plain)
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}
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return w.Flush()
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}
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func parseEntry(typ, rule string) (*Entry, []string, error) {
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entry := &Entry{Type: typ}
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parts := strings.Fields(rule)
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if len(parts) == 0 {
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return entry, nil, fmt.Errorf("empty domain rule")
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}
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// Parse value
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switch entry.Type {
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case dlc.RuleTypeRegexp:
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if _, err := regexp.Compile(parts[0]); err != nil {
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return entry, nil, fmt.Errorf("invalid regexp %q: %w", parts[0], err)
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}
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entry.Value = parts[0]
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case dlc.RuleTypeDomain, dlc.RuleTypeFullDomain, dlc.RuleTypeKeyword:
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entry.Value = strings.ToLower(parts[0])
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if !validateDomainChars(entry.Value) {
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return entry, nil, fmt.Errorf("invalid domain: %q", entry.Value)
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}
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default:
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return entry, nil, fmt.Errorf("unknown rule type: %q", entry.Type)
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}
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plen := len(entry.Type) + len(entry.Value) + 1
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// Parse attributes and affiliations
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var affs []string
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for _, part := range parts[1:] {
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switch part[0] {
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case '@':
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attr := strings.ToLower(part[1:])
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if !validateAttrChars(attr) {
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return entry, affs, fmt.Errorf("invalid attribute: %q", attr)
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}
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entry.Attrs = append(entry.Attrs, attr)
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plen += 2 + len(attr)
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case '&':
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aff := strings.ToUpper(part[1:])
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if !validateSiteName(aff) {
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return entry, affs, fmt.Errorf("invalid affiliation: %q", aff)
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}
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affs = append(affs, aff)
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default:
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return entry, affs, fmt.Errorf("unknown field: %q", part)
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}
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}
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slices.Sort(entry.Attrs) // Sort attributes
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// Formated plain entry: type:domain.tld:@attr1,@attr2
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var plain strings.Builder
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plain.Grow(plen)
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plain.WriteString(entry.Type)
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plain.WriteByte(':')
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plain.WriteString(entry.Value)
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for i, attr := range entry.Attrs {
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if i == 0 {
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plain.WriteByte(':')
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} else {
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plain.WriteByte(',')
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}
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plain.WriteByte('@')
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plain.WriteString(attr)
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}
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entry.Plain = plain.String()
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return entry, affs, nil
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}
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func parseInclusion(rule string) (*Inclusion, error) {
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parts := strings.Fields(rule)
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if len(parts) == 0 {
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return nil, fmt.Errorf("empty inclusion")
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}
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inc := &Inclusion{Source: strings.ToUpper(parts[0])}
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if !validateSiteName(inc.Source) {
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return inc, fmt.Errorf("invalid included list name: %q", inc.Source)
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}
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// Parse attributes
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for _, part := range parts[1:] {
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switch part[0] {
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case '@':
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attr := strings.ToLower(part[1:])
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if attr[0] == '-' {
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battr := attr[1:]
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if !validateAttrChars(battr) {
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return inc, fmt.Errorf("invalid ban attribute: %q", battr)
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}
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inc.BanAttrs = append(inc.BanAttrs, battr)
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} else {
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if !validateAttrChars(attr) {
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return inc, fmt.Errorf("invalid must attribute: %q", attr)
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}
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inc.MustAttrs = append(inc.MustAttrs, attr)
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}
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case '&':
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return inc, fmt.Errorf("affiliation is not allowed for inclusion")
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default:
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return inc, fmt.Errorf("unknown field: %q", part)
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}
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}
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return inc, nil
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}
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func validateDomainChars(domain string) bool {
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if domain == "" {
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return false
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}
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for i := range domain {
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c := domain[i]
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if (c >= 'a' && c <= 'z') || (c >= '0' && c <= '9') || c == '.' || c == '-' {
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continue
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}
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return false
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}
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return true
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}
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func validateAttrChars(attr string) bool {
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if attr == "" {
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return false
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}
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for i := range attr {
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c := attr[i]
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if (c >= 'a' && c <= 'z') || (c >= '0' && c <= '9') || c == '!' {
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continue
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}
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return false
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}
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return true
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}
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func validateSiteName(name string) bool {
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if name == "" {
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return false
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}
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for i := range name {
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c := name[i]
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if (c >= 'A' && c <= 'Z') || (c >= '0' && c <= '9') || c == '!' || c == '-' {
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continue
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}
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return false
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}
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return true
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}
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func (p *Processor) getOrCreateParsedList(name string) *ParsedList {
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pl, exist := p.plMap[name]
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if !exist {
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pl = &ParsedList{Name: name}
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p.plMap[name] = pl
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}
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return pl
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}
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func (p *Processor) loadData(listName string, path string) error {
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file, err := os.Open(path)
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if err != nil {
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return err
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}
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defer file.Close()
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pl := p.getOrCreateParsedList(listName)
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scanner := bufio.NewScanner(file)
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lineIdx := 0
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for scanner.Scan() {
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lineIdx++
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line, _, _ := strings.Cut(scanner.Text(), "#") // Remove comments
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line = strings.TrimSpace(line)
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if line == "" {
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continue
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}
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typ, rule, isTypeSpecified := strings.Cut(line, ":")
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if !isTypeSpecified { // Default RuleType
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typ, rule = dlc.RuleTypeDomain, typ
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} else {
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typ = strings.ToLower(typ)
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}
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if typ == dlc.RuleTypeInclude {
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inc, err := parseInclusion(rule)
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if err != nil {
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return fmt.Errorf("error in %q at line %d: %w", path, lineIdx, err)
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}
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pl.Inclusions = append(pl.Inclusions, inc)
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} else {
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entry, affs, err := parseEntry(typ, rule)
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if err != nil {
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return fmt.Errorf("error in %q at line %d: %w", path, lineIdx, err)
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}
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for _, aff := range affs {
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apl := p.getOrCreateParsedList(aff)
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apl.Entries = append(apl.Entries, entry)
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}
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pl.Entries = append(pl.Entries, entry)
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}
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}
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return scanner.Err()
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}
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func isMatchAttrFilters(entry *Entry, incFilter *Inclusion) bool {
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if len(entry.Attrs) == 0 {
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return len(incFilter.MustAttrs) == 0
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}
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for _, m := range incFilter.MustAttrs {
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if !slices.Contains(entry.Attrs, m) {
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return false
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}
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}
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for _, b := range incFilter.BanAttrs {
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if slices.Contains(entry.Attrs, b) {
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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 polishList(roughMap map[string]*Entry) []*Entry {
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finalList := make([]*Entry, 0, len(roughMap))
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queuingList := make([]*Entry, 0, len(roughMap)) // Domain/full entries without attr
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domainsMap := make(map[string]bool)
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for _, entry := range roughMap {
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switch entry.Type { // Bypass regexp, keyword and "full/domain with attr"
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case dlc.RuleTypeRegexp, dlc.RuleTypeKeyword:
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finalList = append(finalList, entry)
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case dlc.RuleTypeDomain:
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domainsMap[entry.Value] = true
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if len(entry.Attrs) != 0 {
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finalList = append(finalList, entry)
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} else {
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queuingList = append(queuingList, entry)
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}
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case dlc.RuleTypeFullDomain:
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if len(entry.Attrs) != 0 {
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finalList = append(finalList, entry)
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} else {
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queuingList = append(queuingList, entry)
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}
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}
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}
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// Remove redundant subdomains for full/domain without attr
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for _, qentry := range queuingList {
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isRedundant := false
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pd := qentry.Value // To be parent domain
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if qentry.Type == dlc.RuleTypeFullDomain {
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pd = "." + pd // So that `domain:example.org` overrides `full:example.org`
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}
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for {
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var hasParent bool
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_, pd, hasParent = strings.Cut(pd, ".") // Go for next parent
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if !hasParent {
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break
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}
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if domainsMap[pd] {
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isRedundant = true
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break
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}
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}
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if !isRedundant {
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finalList = append(finalList, qentry)
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}
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}
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// Sort final entries
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slices.SortFunc(finalList, func(a, b *Entry) int {
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return strings.Compare(a.Plain, b.Plain)
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})
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return finalList
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}
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func (p *Processor) resolveList(plname string) error {
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if _, pldone := p.finalMap[plname]; pldone {
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return nil
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}
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pl, plexist := p.plMap[plname]
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if !plexist {
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return fmt.Errorf("list %q not found", plname)
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}
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if p.cirIncMap[plname] {
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return fmt.Errorf("circular inclusion in: %q", plname)
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}
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p.cirIncMap[plname] = true
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defer delete(p.cirIncMap, plname)
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roughMap := make(map[string]*Entry) // Avoid basic duplicates
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for _, dentry := range pl.Entries { // Add direct entries
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roughMap[dentry.Plain] = dentry
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}
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for _, inc := range pl.Inclusions { // Add included entries
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if err := p.resolveList(inc.Source); err != nil {
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return fmt.Errorf("failed to resolve inclusion %q: %w", inc.Source, err)
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}
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isFullInc := len(inc.MustAttrs) == 0 && len(inc.BanAttrs) == 0
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for _, ientry := range p.finalMap[inc.Source] {
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if isFullInc || isMatchAttrFilters(ientry, inc) {
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roughMap[ientry.Plain] = ientry
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}
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}
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}
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if len(roughMap) == 0 {
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fmt.Printf("[Warn] ignore empty list %q", plname)
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} else {
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p.finalMap[plname] = polishList(roughMap)
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}
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return nil
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}
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func run() error {
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fmt.Printf("using domain lists data in %q\n", *dataPath)
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// Generate plMap
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processor := &Processor{plMap: make(map[string]*ParsedList)}
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err := filepath.WalkDir(*dataPath, func(path string, d os.DirEntry, err error) error {
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if err != nil {
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return err
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}
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if d.IsDir() {
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return nil
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}
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listName := strings.ToUpper(filepath.Base(path))
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if !validateSiteName(listName) {
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return fmt.Errorf("invalid list name: %q", listName)
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}
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return processor.loadData(listName, path)
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})
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if err != nil {
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return fmt.Errorf("failed to loadData: %w", err)
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}
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// Generate finalMap
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sitesCount := len(processor.plMap)
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processor.finalMap = make(map[string][]*Entry, sitesCount)
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processor.cirIncMap = make(map[string]bool)
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for plname := range processor.plMap {
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if err := processor.resolveList(plname); err != nil {
|
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return fmt.Errorf("failed to resolveList %q: %w", plname, err)
|
|
}
|
|
}
|
|
processor.plMap = nil
|
|
|
|
// Make sure output directory exists
|
|
if err := os.MkdirAll(*outputDir, 0755); err != nil {
|
|
return fmt.Errorf("failed to create output directory: %w", err)
|
|
}
|
|
// Export plaintext lists
|
|
for rawEpList := range strings.SplitSeq(*exportLists, ",") {
|
|
if epList := strings.TrimSpace(rawEpList); epList != "" {
|
|
entries, exist := processor.finalMap[strings.ToUpper(epList)]
|
|
if !exist {
|
|
fmt.Printf("[Warn] list %q does not exist\n", epList)
|
|
continue
|
|
}
|
|
if err := writePlainList(epList, entries); err != nil {
|
|
fmt.Printf("[Error] failed to write list %q: %v\n", epList, err)
|
|
continue
|
|
}
|
|
fmt.Printf("list %q has been generated successfully\n", epList)
|
|
}
|
|
}
|
|
|
|
// Generate proto sites
|
|
gs := &GeoSites{
|
|
Sites: make([]*router.GeoSite, 0, sitesCount),
|
|
SiteIdx: make(map[string]int, sitesCount),
|
|
}
|
|
for siteName, siteEntries := range processor.finalMap {
|
|
gs.Sites = append(gs.Sites, makeProtoList(siteName, siteEntries))
|
|
}
|
|
processor = nil
|
|
// Sort proto sites so the generated file is reproducible
|
|
slices.SortFunc(gs.Sites, func(a, b *router.GeoSite) int {
|
|
return strings.Compare(a.CountryCode, b.CountryCode)
|
|
})
|
|
for i := range sitesCount {
|
|
gs.SiteIdx[gs.Sites[i].CountryCode] = i
|
|
}
|
|
|
|
// Load tasks and generate dat files
|
|
var tasks []DatTask
|
|
if *datProfile == "" {
|
|
tasks = []DatTask{{Name: *outputName, Mode: ModeAll}}
|
|
} else {
|
|
var err error
|
|
tasks, err = loadTasks(*datProfile)
|
|
if err != nil {
|
|
return fmt.Errorf("failed to loadTasks %q: %v", *datProfile, err)
|
|
}
|
|
}
|
|
for _, task := range tasks {
|
|
if err := gs.assembleDat(task); err != nil {
|
|
fmt.Printf("[Error] failed to assembleDat %q: %v", task.Name, err)
|
|
}
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func main() {
|
|
flag.Parse()
|
|
if err := run(); err != nil {
|
|
fmt.Printf("[Fatal] critical error: %v\n", err)
|
|
os.Exit(1)
|
|
}
|
|
}
|