Files
Archivum/backend/internal/db/db.go

394 lines
10 KiB
Go

package db
import (
"database/sql"
"errors"
"strings"
"time"
_ "modernc.org/sqlite"
)
var ErrUserNotFound = errors.New("user not found")
var ErrUserExists = errors.New("username already exists")
// User represents a local account stored in SQLite.
type User struct {
ID int64
Username string
PassHash string
Role string
IsLDAP bool
CreatedAt time.Time
}
// DB wraps the SQLite connection.
type DB struct {
sql *sql.DB
}
// New opens (or creates) the SQLite database at path and runs migrations.
func New(path string) (*DB, error) {
sqldb, err := sql.Open("sqlite", path+"?_journal=WAL&_timeout=5000")
if err != nil {
return nil, err
}
d := &DB{sql: sqldb}
if err := d.init(); err != nil {
sqldb.Close()
return nil, err
}
return d, nil
}
func (d *DB) Close() error {
return d.sql.Close()
}
func (d *DB) init() error {
_, err := d.sql.Exec(`
CREATE TABLE IF NOT EXISTS users (
id INTEGER PRIMARY KEY AUTOINCREMENT,
username TEXT NOT NULL UNIQUE,
pass_hash TEXT NOT NULL,
role TEXT NOT NULL DEFAULT 'user',
is_ldap BOOLEAN NOT NULL DEFAULT 0,
created_at DATETIME DEFAULT CURRENT_TIMESTAMP
);
CREATE TABLE IF NOT EXISTS groups (
id INTEGER PRIMARY KEY AUTOINCREMENT,
name TEXT NOT NULL UNIQUE,
is_ldap BOOLEAN NOT NULL DEFAULT 0,
created_at DATETIME DEFAULT CURRENT_TIMESTAMP
);
CREATE TABLE IF NOT EXISTS user_groups (
user_id INTEGER NOT NULL,
group_id INTEGER NOT NULL,
PRIMARY KEY(user_id, group_id),
FOREIGN KEY(user_id) REFERENCES users(id) ON DELETE CASCADE,
FOREIGN KEY(group_id) REFERENCES groups(id) ON DELETE CASCADE
);
CREATE TABLE IF NOT EXISTS acl (
id INTEGER PRIMARY KEY AUTOINCREMENT,
path TEXT NOT NULL,
subject_type TEXT NOT NULL CHECK(subject_type IN ('user', 'group')),
subject_id INTEGER NOT NULL,
can_search BOOLEAN NOT NULL DEFAULT 0,
can_view BOOLEAN NOT NULL DEFAULT 0,
can_read BOOLEAN NOT NULL DEFAULT 0,
can_edit BOOLEAN NOT NULL DEFAULT 0,
can_create BOOLEAN NOT NULL DEFAULT 0,
can_delete BOOLEAN NOT NULL DEFAULT 0,
can_move BOOLEAN NOT NULL DEFAULT 0,
UNIQUE(path, subject_type, subject_id)
);
`)
return err
}
// HasUsers returns true if at least one user account exists.
func (d *DB) HasUsers() bool {
var n int
d.sql.QueryRow(`SELECT COUNT(*) FROM users`).Scan(&n)
return n > 0
}
// CreateUser inserts a new user. Returns ErrUserExists if the username is taken.
func (d *DB) CreateUser(username, passHash, role string) error {
_, err := d.sql.Exec(
`INSERT INTO users (username, pass_hash, role) VALUES (?, ?, ?)`,
username, passHash, role,
)
if err != nil && strings.Contains(err.Error(), "UNIQUE constraint failed") {
return ErrUserExists
}
return err
}
// GetUser fetches a single user by username.
func (d *DB) GetUser(username string) (*User, error) {
row := d.sql.QueryRow(
`SELECT id, username, pass_hash, role, is_ldap, created_at FROM users WHERE username = ?`,
username,
)
u := &User{}
var createdAt string
err := row.Scan(&u.ID, &u.Username, &u.PassHash, &u.Role, &u.IsLDAP, &createdAt)
if errors.Is(err, sql.ErrNoRows) {
return nil, ErrUserNotFound
}
if err != nil {
return nil, err
}
u.CreatedAt, _ = time.Parse("2006-01-02 15:04:05", createdAt)
return u, nil
}
// ListUsers returns all users ordered by id.
func (d *DB) ListUsers() ([]*User, error) {
rows, err := d.sql.Query(
`SELECT id, username, role, is_ldap, created_at FROM users ORDER BY id`,
)
if err != nil {
return nil, err
}
defer rows.Close()
var users []*User
for rows.Next() {
u := &User{}
var createdAt string
if err := rows.Scan(&u.ID, &u.Username, &u.Role, &u.IsLDAP, &createdAt); err != nil {
return nil, err
}
u.CreatedAt, _ = time.Parse("2006-01-02 15:04:05", createdAt)
users = append(users, u)
}
return users, rows.Err()
}
// DeleteUser removes a user. Returns ErrUserNotFound if they don't exist.
func (d *DB) DeleteUser(username string) error {
res, err := d.sql.Exec(`DELETE FROM users WHERE username = ?`, username)
if err != nil {
return err
}
n, _ := res.RowsAffected()
if n == 0 {
return ErrUserNotFound
}
return nil
}
// UpdatePassword replaces the stored hash for a user.
func (d *DB) UpdatePassword(username, passHash string) error {
res, err := d.sql.Exec(
`UPDATE users SET pass_hash = ? WHERE username = ?`,
passHash, username,
)
if err != nil {
return err
}
n, _ := res.RowsAffected()
if n == 0 {
return ErrUserNotFound
}
return nil
}
// UserCount returns the total number of local accounts.
func (d *DB) UserCount() (int, error) {
var n int
err := d.sql.QueryRow(`SELECT COUNT(*) FROM users`).Scan(&n)
return n, err
}
// --- LDAP & Roles ---
// CreateOrUpdateLDAPUser inserts or updates an LDAP user (without password, role='user').
// Existing accounts with a non-empty pass_hash are never overwritten so that
// a local admin cannot be accidentally converted to an LDAP-only account.
func (d *DB) CreateOrUpdateLDAPUser(username string) error {
_, err := d.sql.Exec(`
INSERT INTO users (username, pass_hash, role, is_ldap)
VALUES (?, '', 'user', 1)
ON CONFLICT(username) DO UPDATE SET is_ldap=1
WHERE excluded.pass_hash = '' AND pass_hash = '';
`, username)
return err
}
// CreateOrUpdateGroup inserts or updates a group (local or LDAP).
func (d *DB) CreateOrUpdateGroup(name string, isLdap bool) error {
ldVal := 0
if isLdap {
ldVal = 1
}
_, err := d.sql.Exec(`
INSERT INTO groups (name, is_ldap)
VALUES (?, ?)
ON CONFLICT(name) DO UPDATE SET is_ldap=excluded.is_ldap;
`, name, ldVal)
return err
}
// --- ACL Methods ---
type ACLEntry struct {
ID int64
Path string
SubjectType string
SubjectID int64
CanSearch bool
CanView bool
CanRead bool
CanEdit bool
CanCreate bool
CanDelete bool
CanMove bool
}
// SetACL inserts or replaces an ACL entry.
func (d *DB) SetACL(entry ACLEntry) error {
_, err := d.sql.Exec(`
INSERT INTO acl (path, subject_type, subject_id, can_search, can_view, can_read, can_edit, can_create, can_delete, can_move)
VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
ON CONFLICT(path, subject_type, subject_id) DO UPDATE SET
can_search = excluded.can_search,
can_view = excluded.can_view,
can_read = excluded.can_read,
can_edit = excluded.can_edit,
can_create = excluded.can_create,
can_delete = excluded.can_delete,
can_move = excluded.can_move;
`, entry.Path, entry.SubjectType, entry.SubjectID,
entry.CanSearch, entry.CanView, entry.CanRead, entry.CanEdit,
entry.CanCreate, entry.CanDelete, entry.CanMove)
return err
}
// RemoveACL deletes an ACL entry by ID.
func (d *DB) RemoveACL(id int64) error {
_, err := d.sql.Exec(`DELETE FROM acl WHERE id = ?`, id)
return err
}
// GetACLsForSubject retrieves all ACL entries for a specific subject (user or group).
func (d *DB) GetACLsForSubject(subjectType string, subjectID int64) ([]ACLEntry, error) {
rows, err := d.sql.Query(`
SELECT id, path, subject_type, subject_id, can_search, can_view, can_read, can_edit, can_create, can_delete, can_move
FROM acl WHERE subject_type = ? AND subject_id = ?
ORDER BY path
`, subjectType, subjectID)
if err != nil {
return nil, err
}
defer rows.Close()
var entries []ACLEntry
for rows.Next() {
var e ACLEntry
if err := rows.Scan(
&e.ID, &e.Path, &e.SubjectType, &e.SubjectID,
&e.CanSearch, &e.CanView, &e.CanRead, &e.CanEdit,
&e.CanCreate, &e.CanDelete, &e.CanMove,
); err != nil {
return nil, err
}
entries = append(entries, e)
}
return entries, rows.Err()
}
// GetACLsForPath retrieves all ACL definitions for a specific document or folder.
func (d *DB) GetACLsForPath(path string) ([]ACLEntry, error) {
rows, err := d.sql.Query(`
SELECT id, path, subject_type, subject_id, can_search, can_view, can_read, can_edit, can_create, can_delete, can_move
FROM acl WHERE path = ?
`, path)
if err != nil {
return nil, err
}
defer rows.Close()
var entries []ACLEntry
for rows.Next() {
var e ACLEntry
if err := rows.Scan(
&e.ID, &e.Path, &e.SubjectType, &e.SubjectID,
&e.CanSearch, &e.CanView, &e.CanRead, &e.CanEdit,
&e.CanCreate, &e.CanDelete, &e.CanMove,
); err != nil {
return nil, err
}
entries = append(entries, e)
}
return entries, nil
}
// Group represents a group stored in SQLite.
type Group struct {
ID int64
Name string
IsLDAP bool
}
// ListGroups returns all groups ordered by name.
func (d *DB) ListGroups() ([]*Group, error) {
rows, err := d.sql.Query(`SELECT id, name, is_ldap FROM groups ORDER BY name`)
if err != nil {
return nil, err
}
defer rows.Close()
var groups []*Group
for rows.Next() {
g := &Group{}
if err := rows.Scan(&g.ID, &g.Name, &g.IsLDAP); err != nil {
return nil, err
}
groups = append(groups, g)
}
return groups, rows.Err()
}
// EnsureGuestUser creates the built-in guest account if it does not already exist.
func (d *DB) EnsureGuestUser() error {
_, err := d.sql.Exec(`
INSERT INTO users (username, pass_hash, role) VALUES ('guest', '', 'guest')
ON CONFLICT(username) DO NOTHING;
`)
return err
}
// CanUserReadPath returns true if the given username has can_read access on the
// exact path or any of its ancestor folder paths.
func (d *DB) CanUserReadPath(username, path string) bool {
// Build a list of candidate paths: the path itself and each parent segment.
candidates := pathAncestors(path)
for _, p := range candidates {
var n int
d.sql.QueryRow(`
SELECT COUNT(*) FROM acl
JOIN users ON users.id = acl.subject_id AND acl.subject_type = 'user'
WHERE users.username = ? AND acl.path = ? AND acl.can_read = 1
`, username, p).Scan(&n)
if n > 0 {
return true
}
}
return false
}
// CanUserViewPath returns true if the given username has can_view access on the
// exact path or any of its ancestor folder paths.
func (d *DB) CanUserViewPath(username, path string) bool {
candidates := pathAncestors(path)
for _, p := range candidates {
var n int
d.sql.QueryRow(`
SELECT COUNT(*) FROM acl
JOIN users ON users.id = acl.subject_id AND acl.subject_type = 'user'
WHERE users.username = ? AND acl.path = ? AND acl.can_view = 1
`, username, p).Scan(&n)
if n > 0 {
return true
}
}
return false
}
// pathAncestors returns the path and all its parent segments.
// e.g. "a/b/c" → ["a/b/c", "a/b", "a"]
func pathAncestors(path string) []string {
out := []string{path}
for {
idx := strings.LastIndex(path, "/")
if idx < 0 {
break
}
path = path[:idx]
out = append(out, path)
}
return out
}