dvb-csa 0.2.0

DVB Common Scrambling Algorithm (CSA2) — pure-Rust, with an optional bitsliced 64-payload batch fast path, validated against libdvbcsa known-answer vectors.
Documentation

dvb-csa

Pure-Rust implementation of the DVB Common Scrambling Algorithm (CSA2) — the cipher underneath conditional access on DVB-S, DVB-T, and DVB-C.

Status: oracle-validated, not spec-cited

DVB-CSA has no public normative specification — the algorithm was confidential and licensed through ETSI. Every open implementation is reverse-engineered. Correctness is established by byte-exact agreement with libdvbcsa 1.1.0 (VideoLAN's reference free implementation): 18 committed golden vectors in tests/fixtures/libdvbcsa-vectors.hex — 13 full 184-byte TS payloads plus one each at 8 B, 16 B, 32 B, 64 B and 100 B, the last covering a residual block that is neither empty nor a whole multiple of the 8-byte block size.

Algorithm overview

DVB-CSA2 combines a block cipher and a stream cipher, both keyed by the same 8-byte control word:

  • Block cipher — 56-round substitution/permutation network on 8-byte blocks, applied in a CBC-like chained mode across all complete blocks.
  • Stream cipher — LFSR-based byte-stream generator seeded from the nibble-swapped control word and the encrypted first block as IV, XOR'd with bytes 8..end.

Encrypt = block CBC then stream XOR; decrypt = stream XOR then block CBC undo. Payloads shorter than 8 bytes pass through unchanged.

Usage

use dvb_csa::{ControlWord, scramble, descramble};

let cw = ControlWord::from_bytes([0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08]);

let mut payload = vec![0xAA; 184];
scramble(&cw, &mut payload);
descramble(&cw, &mut payload);
// payload is back to all 0xAA

For TS-packet-level operation (extracts the payload, respects the adaptation field):

use dvb_csa::{ControlWord, ts};

let cw = ControlWord::from_bytes([0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08]);
let mut packet = [0u8; 188];
// ... fill packet ...
let _ = ts::scramble_ts_packet(&cw, &mut packet);

Bitsliced batch fast path

The optional bitsliced feature adds dvb_csa::bitsliced, which transposes the data and evaluates the cipher as a branch-free boolean circuit, so every gate acts on LANES (64) payloads at once.

[dependencies]
dvb-csa = { version = "0.2", features = ["bitsliced"] }
use dvb_csa::{ControlWord, bitsliced};

let cw = ControlWord::from_bytes([0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08]);
let mut payloads: Vec<Vec<u8>> = (0..64).map(|_| vec![0xAA; 184]).collect();

let mut batch: Vec<&mut [u8]> = payloads.iter_mut().map(|p| p.as_mut_slice()).collect();
bitsliced::scramble_batch(&cw, &mut batch);
bitsliced::descramble_batch(&cw, &mut batch);

The unit of parallelism is the payload, not the block. CSA2 offers little independence within one payload — scrambling's block cipher is a reverse CBC (C[i] = E(P[i] ^ C[i+1])) and the stream cipher is a chained LFSR, both strictly sequential; only descrambling's block half is independent per block, and the stream cipher (the sequential part) is about two thirds of the work. So the API batches independent payloads — TS packets, typically — and there is deliberately no bitsliced single-payload entry point. A batch well below 64 leaves lanes idle and scales down accordingly.

Measured by benches/throughput.rs on an Apple M2 Ultra (rustc 1.86.0), over 64 x 184-byte TS payloads:

Operation Scalar Bitsliced Speed-up
scramble 15.7 MiB/s 91.3 MiB/s 5.8x
descramble 15.1 MiB/s 99.8 MiB/s 6.6x

The fast path is bit-exact with the scalar path, held there by three independent gates: every generated circuit is checked against the table in src/tables.rs it came from over its entire input domain; a differential test requires byte-identical agreement with the scalar path over randomised payloads and lengths in both directions; and the libdvbcsa known-answer vectors are run through the batch path too, so it answers to the external oracle and not merely to our own scalar code.

The circuits are generated by tools/gen_circuits.py from src/tables.rs, which remains the single source of truth for the cipher.

Features

Feature Default What it does
std yes Enables std::error::Error on Error
bitsliced no Adds the bitsliced batch fast path (above)

Builds no_std without default features, with or without bitsliced.

License

Licensed under either of Apache License, Version 2.0 or MIT license at your option.