aacs: split no-key resolution reason into E7021 vs E7022
When key resolution had derivation material (device or processing keys) but no Volume ID was available to derive the unit key, surface Error::AacsVidUnavailable instead of the generic NoDiscKey. When there was no usable key material at all, keep NoDiscKey. resolve_keys_classical / resolve_keys_v21 still return a bare Option<ResolvedKeys> (all existing callers unchanged); a new resolve_keys_with_reason wrapper threads the typed ResolveFailure (VidUnavailable | NoMaterial) out. decrypt_with uses it; the ensure_decryptable_keys gate maps a captured AacsVidUnavailable reason to E7021, otherwise E7022. No decryption math, key derivation, or descramble logic changed -- only the reason reported on a resolution failure. Adds ensure_decryptable_aacs_vid_unavailable_vs_no_key proving both branches (device-keys + zero VID -> E7021; no keys -> E7022).
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@@ -1116,6 +1116,69 @@ pub struct ResolveContext<'a> {
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pub mkb: Option<&'a [u8]>,
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}
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/// Why a key resolution attempt produced no usable key.
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///
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/// Distinguishes the two no-key outcomes that an application must report
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/// differently:
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/// * [`ResolveFailure::VidUnavailable`] — the key source DID provide
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/// derivation material (device or processing keys), but no Volume ID
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/// (VID) was available to derive the Volume Unique Key. The fix is to
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/// recover the VID (a drive / handshake problem), not to add keys.
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/// * [`ResolveFailure::NoMaterial`] — no usable key material was found at
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/// all (no DK/PK material, no disc-keyed hit). The fix is to add keys.
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///
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/// This carries no key bytes and is independent of the decryption math; it
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/// is purely the *reason* a resolution returned no key.
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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pub enum ResolveFailure {
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/// Derivation material was present (DKs or PKs) but no VID was available
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/// to derive the unit key. Surfaced as [`crate::error::Error::AacsVidUnavailable`].
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VidUnavailable,
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/// No usable key material at all. Surfaced as
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/// [`crate::error::Error::NoDiscKey`].
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NoMaterial,
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}
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/// Version-dispatched resolution that preserves the *reason* on failure.
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///
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/// Identical key derivation to the [`resolve_keys_v1`] / [`resolve_keys_v2`] /
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/// [`resolve_keys_v21`] chain (it calls straight through to them); the only
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/// addition is that an unresolved disc returns a typed [`ResolveFailure`]
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/// instead of a bare `None`, so callers can report E7021 (material but no VID)
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/// vs E7022 (no material). `version_u8` is the on-disc AACS major (1 → V10,
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/// anything else → the V20/V21 chain), matching `AacsState::version`.
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pub fn resolve_keys_with_reason(
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ctx: &ResolveContext<'_>,
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version_u8: u8,
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) -> std::result::Result<ResolvedKeys, ResolveFailure> {
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let resolved = match version_u8 {
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1 => resolve_keys_v1(ctx),
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_ => resolve_keys_v2(ctx).or_else(|| resolve_keys_v21(ctx)),
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};
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match resolved {
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Some(r) => Ok(r),
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None => Err(classify_resolve_failure(ctx)),
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}
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}
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/// Classify why resolution found no key. The key source provided derivation
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/// material (device or processing keys) but the VID sentinel is all-zero →
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/// [`ResolveFailure::VidUnavailable`]; otherwise → [`ResolveFailure::NoMaterial`].
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///
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/// Reads only what the resolver already had (provider material + the VID
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/// sentinel) — no key derivation, no descramble.
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fn classify_resolve_failure(ctx: &ResolveContext<'_>) -> ResolveFailure {
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let has_vid = *ctx.volume_id != [0u8; 16];
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let providers = super::provider::Providers(ctx.providers);
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let has_derivation_material =
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!providers.device_keys().is_empty() || !providers.processing_keys().is_empty();
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if !has_vid && has_derivation_material {
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ResolveFailure::VidUnavailable
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} else {
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ResolveFailure::NoMaterial
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}
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}
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/// AACS 1.0 key resolution. Parses `Unit_Key_RO.inf` with 48-byte
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/// stride. Tries paths 1 → 4 in order.
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pub fn resolve_keys_v1(ctx: &ResolveContext<'_>) -> Option<ResolvedKeys> {
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+6
-6
@@ -32,12 +32,12 @@ pub use keydb::{DeviceKey, DiscEntry, HostCert, KeyDb};
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pub use keys::probe;
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pub use keys::{
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AacsVersion, ContentCert, MKB_20_CATEGORY_C, MKB_21_CATEGORY_C, MKB_TYPE_3_RECORDABLE,
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MKB_TYPE_4_PRERECORDED, MKB_TYPE_10_CLASS_II, MkbType, ResolveContext, ResolvedKeys,
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UnitKeyFile, decrypt_unit_key, derive_media_key_and_pk_from_dk, derive_media_key_from_dk,
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derive_media_key_from_pk, derive_vuk, disc_hash, disc_hash_hex, mkb_content_len, mkb_is_uhd,
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mkb_type, mkb_type_raw, mkb_version, parse_content_cert, parse_unit_key_ro,
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read_mkb_from_drive, recover_dk_position, resolve_keys_v1, resolve_keys_v2, resolve_keys_v21,
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trim_mkb,
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MKB_TYPE_4_PRERECORDED, MKB_TYPE_10_CLASS_II, MkbType, ResolveContext, ResolveFailure,
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ResolvedKeys, UnitKeyFile, decrypt_unit_key, derive_media_key_and_pk_from_dk,
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derive_media_key_from_dk, derive_media_key_from_pk, derive_vuk, disc_hash, disc_hash_hex,
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mkb_content_len, mkb_is_uhd, mkb_type, mkb_type_raw, mkb_version, parse_content_cert,
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parse_unit_key_ro, read_mkb_from_drive, recover_dk_position, resolve_keys_v1, resolve_keys_v2,
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resolve_keys_v21, resolve_keys_with_reason, trim_mkb,
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};
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pub use provider::KeyProvider;
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pub use variants::{
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+108
-7
@@ -2048,6 +2048,15 @@ impl Disc {
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let needs_key = matches!(keys, crate::decrypt::DecryptKeys::None);
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if needs_key {
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if self.aacs.is_some() {
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// E7021 vs E7022 split: when key resolution had derivation
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// material (device / processing keys) but no Volume ID to derive
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// the unit key, the captured `aacs_error` is `AacsVidUnavailable`
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// — report THAT (the fix is recovering the VID, not adding keys),
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// not the generic `NoDiscKey`. Any other (or absent) reason →
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// `NoDiscKey` naming the disc by hash, unchanged.
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if matches!(self.aacs_error, Some(Error::AacsVidUnavailable)) {
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return Err(Error::AacsVidUnavailable);
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}
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return Err(Error::NoDiscKey {
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disc_hash: self.aacs_disc_hash(),
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});
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@@ -2267,13 +2276,12 @@ impl Disc {
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// Version dispatch — V10 uses the classical resolver at 48-byte
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// stride; V20/V21 share the 64-byte stride, so try the classical V20
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// paths first and fall back to the 2.1 variant chain.
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let resolved = match version_u8 {
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1 => crate::aacs::resolve_keys_v1(&ctx),
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_ => crate::aacs::resolve_keys_v2(&ctx)
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.or_else(|| crate::aacs::resolve_keys_v21(&ctx)),
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}
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.ok_or(crate::error::Error::AacsKeyRejected)?;
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// paths first and fall back to the 2.1 variant chain. The
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// reason-preserving wrapper threads the no-key cause out so the
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// decrypt gate can report E7021 (had derivation material but no VID)
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// vs E7022 (no usable material) instead of a flat AacsKeyRejected.
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let resolved = crate::aacs::resolve_keys_with_reason(&ctx, version_u8)
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.map_err(|_reason| crate::error::Error::AacsKeyRejected)?;
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if resolved.unit_keys.is_empty() {
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return Err(crate::error::Error::AacsKeyRejected);
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@@ -3995,6 +4003,99 @@ mod tests {
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);
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}
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/// E7021 vs E7022 split (rc.6 WS1). When key resolution HAD derivation
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/// material (device / processing keys) but no Volume ID was available to
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/// derive the unit key, the captured `aacs_error` is `AacsVidUnavailable`
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/// — the gate must surface THAT (E7021), not the generic `NoDiscKey`
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/// (E7022). When there was no usable key material at all, the reason is
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/// absent and the gate keeps `NoDiscKey` (E7022). Both branches proven here.
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#[test]
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fn ensure_decryptable_aacs_vid_unavailable_vs_no_key() {
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// Branch 1 — derivation material present, but no VID: E7021.
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// The resolver classifies a device-keys-but-zero-VID context as
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// `VidUnavailable`; that reason rides on `aacs_error`.
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let supplied = crate::aacs::provider::SuppliedKey {
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device_keys: vec![crate::aacs::DeviceKey {
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key: [0x11; 16],
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node: 1,
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uv: 1,
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u_mask_shift: 0,
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}],
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processing_keys: Vec::new(),
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media_keys: Vec::new(),
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disc_entry: None,
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};
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let provider_refs: [&dyn crate::aacs::KeyProvider; 1] = [&supplied];
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// A minimal but parseable Unit_Key_RO.inf (uk_pos=32, zero unit keys)
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// so resolution proceeds to the path-try logic and fails for lack of a
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// VID — not because the .inf failed to parse.
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let mut uk_ro = vec![0u8; 40];
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uk_ro[0..4].copy_from_slice(&32u32.to_be_bytes()); // uk_pos = 32
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// num_unit_keys = 0 (BE16) at uk_pos -> parses to an empty key file.
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let ctx = crate::aacs::ResolveContext {
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unit_key_ro: &uk_ro,
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content_cert: None,
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volume_id: &[0u8; 16], // the "no VID" sentinel
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providers: &provider_refs,
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mkb: None,
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};
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assert_eq!(
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crate::aacs::resolve_keys_with_reason(&ctx, 2).err(),
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Some(crate::aacs::ResolveFailure::VidUnavailable),
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"device keys + zero VID must classify as VidUnavailable"
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);
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let mut disc_e7021 = make_test_disc(1000, "UHD");
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disc_e7021.encrypted = true;
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disc_e7021.aacs = Some(aacs_with(Vec::new())); // present but no unit keys
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disc_e7021.aacs_error = Some(crate::error::Error::AacsVidUnavailable);
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let err = disc_e7021
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.ensure_decryptable(false)
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.expect_err("AACS disc, material-but-no-VID, !raw must error");
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assert_eq!(
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err.code(),
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crate::error::Error::AacsVidUnavailable.code(),
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"material-but-no-VID must surface E7021 (AacsVidUnavailable), not E7022"
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);
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// Branch 2 — no key material at all: classified NoMaterial, gate E7022.
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let supplied_none = crate::aacs::provider::SuppliedKey {
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device_keys: Vec::new(),
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processing_keys: Vec::new(),
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media_keys: Vec::new(),
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disc_entry: None,
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};
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let provider_refs_none: [&dyn crate::aacs::KeyProvider; 1] = [&supplied_none];
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let ctx_none = crate::aacs::ResolveContext {
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unit_key_ro: &uk_ro,
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content_cert: None,
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volume_id: &[0u8; 16],
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providers: &provider_refs_none,
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mkb: None,
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};
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assert_eq!(
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crate::aacs::resolve_keys_with_reason(&ctx_none, 2).err(),
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Some(crate::aacs::ResolveFailure::NoMaterial),
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"no key material must classify as NoMaterial"
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);
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let mut disc_e7022 = make_test_disc(1000, "UHD");
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disc_e7022.encrypted = true;
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disc_e7022.aacs = Some(aacs_with(Vec::new()));
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disc_e7022.aacs_error = None; // no reason captured → generic no-key
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let err = disc_e7022
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.ensure_decryptable(false)
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.expect_err("AACS disc, no material, !raw must error");
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assert_eq!(
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err.code(),
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crate::error::Error::NoDiscKey {
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disc_hash: String::new()
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}
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.code(),
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"no-material must keep E7022 (NoDiscKey)"
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);
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}
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/// Same AACS-no-key disc under `--raw` (raw=true) must PROCEED — the user
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/// asked for the encrypted image and needs no key.
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#[test]
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