status-go/sqlite/sqlite.go

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package sqlite
import (
"database/sql"
"database/sql/driver"
"errors"
"fmt"
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"os"
"runtime"
sqlcipher "github.com/mutecomm/go-sqlcipher" // We require go sqlcipher that overrides default implementation
"github.com/status-im/status-go/protocol/sqlite"
)
const (
// The reduced number of kdf iterations (for performance reasons) which is
// used as the default value
// https://github.com/status-im/status-go/pull/1343
// https://notes.status.im/i8Y_l7ccTiOYq09HVgoFwA
ReducedKDFIterationsNumber = 3200
// WALMode for sqlite.
WALMode = "wal"
InMemoryPath = ":memory:"
)
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// DecryptDB completely removes the encryption from the db
func DecryptDB(oldPath string, newPath string, key string, kdfIterationsNumber int) error {
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db, err := openDB(oldPath, key, kdfIterationsNumber)
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if err != nil {
return err
}
_, err = db.Exec(`ATTACH DATABASE '` + newPath + `' AS plaintext KEY ''`)
if err != nil {
return err
}
_, err = db.Exec(`SELECT sqlcipher_export('plaintext')`)
if err != nil {
return err
}
_, err = db.Exec(`DETACH DATABASE plaintext`)
return err
}
// EncryptDB takes a plaintext database and adds encryption
func EncryptDB(unencryptedPath string, encryptedPath string, key string, kdfIterationsNumber int) error {
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_ = os.Remove(encryptedPath)
db, err := OpenUnecryptedDB(unencryptedPath)
if err != nil {
return err
}
_, err = db.Exec(`ATTACH DATABASE '` + encryptedPath + `' AS encrypted KEY '` + key + `'`)
if err != nil {
return err
}
if kdfIterationsNumber <= 0 {
kdfIterationsNumber = sqlite.ReducedKDFIterationsNumber
}
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_, err = db.Exec(fmt.Sprintf("PRAGMA encrypted.kdf_iter = '%d'", kdfIterationsNumber))
if err != nil {
return err
}
_, err = db.Exec(`SELECT sqlcipher_export('encrypted')`)
if err != nil {
return err
}
_, err = db.Exec(`DETACH DATABASE encrypted`)
return err
}
func openDB(path string, key string, kdfIterationsNumber int) (*sql.DB, error) {
driverName := fmt.Sprintf("sqlcipher_with_extensions-%d", len(sql.Drivers()))
sql.Register(driverName, &sqlcipher.SQLiteDriver{
ConnectHook: func(conn *sqlcipher.SQLiteConn) error {
if _, err := conn.Exec("PRAGMA foreign_keys=ON", []driver.Value{}); err != nil {
return errors.New("failed to set `foreign_keys` pragma")
}
if _, err := conn.Exec(fmt.Sprintf("PRAGMA key = '%s'", key), []driver.Value{}); err != nil {
return errors.New("failed to set `key` pragma")
}
if kdfIterationsNumber <= 0 {
kdfIterationsNumber = sqlite.ReducedKDFIterationsNumber
}
if _, err := conn.Exec(fmt.Sprintf("PRAGMA kdf_iter = '%d'", kdfIterationsNumber), []driver.Value{}); err != nil {
return errors.New("failed to set `kdf_iter` pragma")
}
// readers do not block writers and faster i/o operations
if _, err := conn.Exec("PRAGMA journal_mode=WAL", []driver.Value{}); err != nil && path != InMemoryPath {
return errors.New("failed to set `journal_mode` pragma")
}
// workaround to mitigate the issue of "database is locked" errors during concurrent write operations
if _, err := conn.Exec("PRAGMA busy_timeout=60000", []driver.Value{}); err != nil {
return errors.New("failed to set `busy_timeout` pragma")
}
return nil
},
})
db, err := sql.Open(driverName, path)
if err != nil {
return nil, err
}
if path == InMemoryPath {
db.SetMaxOpenConns(1)
} else {
nproc := func() int {
maxProcs := runtime.GOMAXPROCS(0)
numCPU := runtime.NumCPU()
if maxProcs < numCPU {
return maxProcs
}
return numCPU
}()
db.SetMaxOpenConns(nproc)
db.SetMaxIdleConns(nproc)
}
return db, nil
}
// OpenDB opens not-encrypted database.
func OpenDB(path string, key string, kdfIterationsNumber int) (*sql.DB, error) {
return openDB(path, key, kdfIterationsNumber)
}
// OpenUnecryptedDB opens database with setting PRAGMA key.
func OpenUnecryptedDB(path string) (*sql.DB, error) {
db, err := sql.Open("sqlite3", path)
if err != nil {
return nil, err
}
// Disable concurrent access as not supported by the driver
db.SetMaxOpenConns(1)
if _, err = db.Exec("PRAGMA foreign_keys=ON"); err != nil {
return nil, err
}
// readers do not block writers and faster i/o operations
// https://www.sqlite.org/draft/wal.html
// must be set after db is encrypted
var mode string
err = db.QueryRow("PRAGMA journal_mode=WAL").Scan(&mode)
if err != nil {
return nil, err
}
if mode != WALMode {
return nil, fmt.Errorf("unable to set journal_mode to WAL. actual mode %s", mode)
}
return db, nil
}
func ChangeEncryptionKey(path string, key string, kdfIterationsNumber int, newKey string) error {
if kdfIterationsNumber <= 0 {
kdfIterationsNumber = sqlite.ReducedKDFIterationsNumber
}
db, err := openDB(path, key, kdfIterationsNumber)
if err != nil {
return err
}
resetKeyString := fmt.Sprintf("PRAGMA rekey = '%s'", newKey)
if _, err = db.Exec(resetKeyString); err != nil {
return errors.New("failed to set rekey pragma")
}
return nil
}