mirror of
https://github.com/multipleof4/ntfy.git
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174 lines
5.5 KiB
Go
174 lines
5.5 KiB
Go
package user
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import (
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"regexp"
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"strings"
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"sync"
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"heckel.io/ntfy/v2/db"
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)
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// aclCache is an in-memory index over the entire user_access table.
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//
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// exact[username][escapedTopic] returns the matching entry in O(1) for the common
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// case where the requested topic appears verbatim in some rule. The key is the
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// stored form of the topic (i.e. with \_ escapes), so Lookup escapes incoming
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// topics through escapeUnderscore before probing.
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//
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// pattern[username] is the linear-scan list of %-bearing rules for that user.
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// Walked per request; trivially small in practice. Wildcards are NOT u_everyone-
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// only -- any user can create them.
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type aclCache struct {
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exact map[string]map[string]aclEntry
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pattern map[string][]aclEntry
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mu sync.RWMutex // Protect exact and pattern
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}
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// aclEntry mirrors one user_access row in the in-memory cache.
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//
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// length is the length of the original stored value (topic for exact rows,
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// SQL LIKE pattern for wildcard rows). It is only used by better() to
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// implement the "longer pattern beats shorter" tie-break from the original
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// SQL ORDER BY. The string itself is intentionally not stored on the entry:
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// the exact map already keys on it, and surfacing it would invite misuse
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// (wildcard "topics" are actually SQL patterns like "up%").
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//
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// pattern is the pre-compiled regex equivalent of the stored LIKE pattern.
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// For exact-match entries (no % in the stored value) pattern is nil and the
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// entry is reachable only through aclCache.exact[username][topic].
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type aclEntry struct {
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length int // len() of the original stored topic/pattern
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pattern *regexp.Regexp // nil for exact entries
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read bool
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write bool
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}
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func newAccessCache() *aclCache {
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return &aclCache{
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exact: make(map[string]map[string]aclEntry),
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pattern: make(map[string][]aclEntry),
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}
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}
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// reload runs the bulk-load query against the primary and swaps in freshly-built
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// exact and pattern maps under the write lock. The primary is used (not
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// ReadOnly) so a reload immediately after an ACL mutation sees the freshly-
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// written rows without replica lag.
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func (c *aclCache) reload(d *db.DB, query string) error {
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rows, err := d.Query(query)
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if err != nil {
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return err
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}
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defer rows.Close()
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exacts := make(map[string]map[string]aclEntry)
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patterns := make(map[string][]aclEntry)
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for rows.Next() {
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var username, topic string
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var entry aclEntry
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if err := rows.Scan(&username, &topic, &entry.read, &entry.write); err != nil {
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return err
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}
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entry.length = len(topic)
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if strings.Contains(topic, "%") {
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re, err := compileLikeToRegex(topic)
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if err != nil {
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return err
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}
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entry.pattern = re
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patterns[username] = append(patterns[username], entry)
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} else {
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if exacts[username] == nil {
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exacts[username] = make(map[string]aclEntry)
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}
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exacts[username][topic] = entry
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}
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}
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if err := rows.Err(); err != nil {
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return err
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}
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c.mu.Lock()
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c.exact = exacts
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c.pattern = patterns
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c.mu.Unlock()
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return nil
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}
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// Lookup returns the effective (read, write, found) permission for the given
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// (username, topic), preserving the priority ordering of the original SQL query:
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// 1. specific user beats Everyone
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// 2. longer pattern beats shorter (more specific wins)
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// 3. write beats read at equal length (write is "stronger")
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func (c *aclCache) Lookup(usernameOrEveryone, topic string) (read, write, found bool) {
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escapedTopic := escapeUnderscore(topic)
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c.mu.RLock()
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defer c.mu.RUnlock()
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if usernameOrEveryone != Everyone {
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if entry, ok := c.pickBestNoLock(usernameOrEveryone, topic, escapedTopic); ok {
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return entry.read, entry.write, true
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}
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}
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if entry, ok := c.pickBestNoLock(Everyone, topic, escapedTopic); ok {
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return entry.read, entry.write, true
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}
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return false, false, false
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}
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// pickBestNoLock returns the highest-priority entry for a single user, combining
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// the exact-match O(1) probe with a linear scan over the (usually empty or tiny)
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// pattern list. Caller must hold c.mu (RLock is sufficient).
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func (c *aclCache) pickBestNoLock(username, topic, escapedTopic string) (*aclEntry, bool) {
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var best aclEntry
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var found bool
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if m, exists := c.exact[username]; exists {
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if entry, exists := m[escapedTopic]; exists {
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best, found = entry, true
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}
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}
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for _, pattern := range c.pattern[username] {
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if !pattern.pattern.MatchString(topic) {
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continue
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} else if !found || better(pattern, best) {
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best, found = pattern, true
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}
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}
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return &best, found
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}
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// better implements the (length DESC, write DESC) tie-break used by the original
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// query's ORDER BY for entries owned by the same user.
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func better(a, b aclEntry) bool {
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if a.length != b.length {
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return a.length > b.length
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}
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if a.write != b.write {
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return a.write
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}
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return false
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}
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// compileLikeToRegex converts a stored ntfy LIKE pattern into an equivalent Go
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// regexp. In ntfy's stored form, % is the only wildcard (translated from *) and
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// \_ is a literal underscore; no other backslashes occur. Topics themselves are
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// restricted to [A-Za-z0-9_-] (see AllowedTopic), so neither % nor stray
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// backslashes appear in user-supplied input.
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func compileLikeToRegex(pattern string) (*regexp.Regexp, error) {
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var sb strings.Builder
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sb.WriteString("^")
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i := 0
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for i < len(pattern) {
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switch {
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case pattern[i] == '\\' && i+1 < len(pattern) && pattern[i+1] == '_':
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sb.WriteString(regexp.QuoteMeta("_"))
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i += 2
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case pattern[i] == '%':
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sb.WriteString(".*")
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i++
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default:
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sb.WriteString(regexp.QuoteMeta(string(pattern[i])))
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i++
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}
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}
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sb.WriteString("$")
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return regexp.Compile(sb.String())
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}
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