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saji1970
saji1970

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I DNA-encode my encrypted database before writing it to disk - here's why (and why it's not "quantum" anything)

Every value in my little embedded key-value store gets encrypted, then
its ciphertext gets encoded as a string of A/C/G/T characters before it
ever touches the filesystem. Open the file in a text editor and you'll
see actual DNA-looking text - not because it's a gimmick, but because
that's genuinely the storage format.

This is mdc-lite, a ~348KB embeddable encrypted key-value store I
built in Rust for places a server can't reach - a watch face, a phone
app, a background service. It's part of a larger repo, ModelDB,
that also includes MDC, a Python conversational data engine (query AI
models, databases, images, and documents in plain English, no SQL) with
its own DNA-inspired archival storage tier.

The actual storage format

Every put() call does this, in order:

  1. Pack [key_len][key_bytes][value_bytes] into one plaintext buffer.
  2. Encrypt the whole thing with XChaCha20-Poly1305 (a 256-bit key you supply - the crate never generates or stores key material itself; real key custody belongs to the platform's secure hardware, iOS Secure Enclave or Android Keystore).
  3. DNA-encode the resulting [nonce][ciphertext][tag] blob: 2 bits per base, 00→A 01→C 10→G 11→T. Every byte maps to exactly 4 bases, so there's no padding ambiguity on decode.
  4. Write the ACGT text to disk, atomically (temp file + rename).

Filenames are keyed BLAKE3 hashes of the logical key, not the key name
itself, so a directory listing alone leaks nothing - no key names, no
values, no way to tell how many distinct keys exist versus how many
files are on disk.


rust
pub fn put(&self, key: &str, value: &[u8]) -> Result<(), LiteStoreError> {
    let mut plaintext = Vec::new();
    plaintext.extend_from_slice(&(key.len() as u16).to_le_bytes());
    plaintext.extend_from_slice(key.as_bytes());
    plaintext.extend_from_slice(value);

    let nonce = XChaCha20Poly1305::generate_nonce(&mut OsRng);
    let ciphertext = self.cipher().encrypt(&nonce, plaintext.as_ref())?;

    let mut record = nonce.to_vec();
    record.extend_from_slice(&ciphertext);
    let acgt_text = dna::encode(&record); // <- the actual bytes on disk

    fs::write(tmp_path, &acgt_text)?;
    fs::rename(tmp_path, final_path)?;
    Ok(())
}
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