Remove compile time crypto material.
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@@ -35,7 +35,6 @@ elf2tab = "0.6.0"
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enum-iterator = "0.6.0"
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[build-dependencies]
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openssl = "0.10"
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uuid = { version = "0.8", features = ["v4"] }
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[profile.dev]
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59
build.rs
59
build.rs
@@ -12,11 +12,6 @@
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use openssl::asn1;
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use openssl::ec;
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use openssl::nid::Nid;
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use openssl::pkey::PKey;
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use openssl::x509;
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use std::env;
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use std::fs::File;
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use std::io::Read;
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@@ -25,65 +20,11 @@ use std::path::Path;
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use uuid::Uuid;
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fn main() {
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println!("cargo:rerun-if-changed=crypto_data/opensk.key");
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println!("cargo:rerun-if-changed=crypto_data/opensk_cert.pem");
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println!("cargo:rerun-if-changed=crypto_data/aaguid.txt");
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let out_dir = env::var_os("OUT_DIR").unwrap();
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let priv_key_bin_path = Path::new(&out_dir).join("opensk_pkey.bin");
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let cert_bin_path = Path::new(&out_dir).join("opensk_cert.bin");
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let aaguid_bin_path = Path::new(&out_dir).join("opensk_aaguid.bin");
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// Load the OpenSSL PEM ECC key
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let ecc_data = include_bytes!("crypto_data/opensk.key");
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let pkey =
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ec::EcKey::private_key_from_pem(ecc_data).expect("Failed to load OpenSK private key file");
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// Check key validity
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pkey.check_key().unwrap();
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assert_eq!(pkey.group().curve_name(), Some(Nid::X9_62_PRIME256V1));
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// Private keys generated by OpenSSL have variable size but we only handle
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// constant size. Serialization is done in big endian so if the size is less
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// than 32 bytes, we need to prepend with null bytes.
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// If the size is 33 bytes, this means the serialized BigInt is negative.
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// Any other size is invalid.
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let priv_key_hex = pkey.private_key().to_hex_str().unwrap();
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let priv_key_vec = pkey.private_key().to_vec();
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let key_len = priv_key_vec.len();
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assert!(
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key_len <= 33,
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"Invalid private key (too big): {} ({:#?})",
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priv_key_hex,
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priv_key_vec,
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);
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// Copy OpenSSL generated key to our vec, starting from the end
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let mut output_vec = [0u8; 32];
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let min_key_len = std::cmp::min(key_len, 32);
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output_vec[32 - min_key_len..].copy_from_slice(&priv_key_vec[key_len - min_key_len..]);
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// Create the raw private key out of the OpenSSL data
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let mut priv_key_bin_file = File::create(&priv_key_bin_path).unwrap();
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priv_key_bin_file.write_all(&output_vec).unwrap();
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// Convert the PEM certificate to DER and extract the serial for AAGUID
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let input_pem_cert = include_bytes!("crypto_data/opensk_cert.pem");
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let cert = x509::X509::from_pem(input_pem_cert).expect("Failed to load OpenSK certificate");
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// Do some sanity check on the certificate
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assert!(cert
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.public_key()
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.unwrap()
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.public_eq(&PKey::from_ec_key(pkey).unwrap()));
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let now = asn1::Asn1Time::days_from_now(0).unwrap();
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assert!(cert.not_after() > now);
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assert!(cert.not_before() <= now);
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let mut cert_bin_file = File::create(&cert_bin_path).unwrap();
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cert_bin_file.write_all(&cert.to_der().unwrap()).unwrap();
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let mut aaguid_bin_file = File::create(&aaguid_bin_path).unwrap();
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let mut aaguid_txt_file = File::open("crypto_data/aaguid.txt").unwrap();
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let mut content = String::new();
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@@ -17,9 +17,3 @@ pub const AAGUID_LENGTH: usize = 16;
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pub const AAGUID: &[u8; AAGUID_LENGTH] =
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include_bytes!(concat!(env!("OUT_DIR"), "/opensk_aaguid.bin"));
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pub const ATTESTATION_CERTIFICATE: &[u8] =
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include_bytes!(concat!(env!("OUT_DIR"), "/opensk_cert.bin"));
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pub const ATTESTATION_PRIVATE_KEY: &[u8; ATTESTATION_PRIVATE_KEY_LENGTH] =
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include_bytes!(concat!(env!("OUT_DIR"), "/opensk_pkey.bin"));
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@@ -115,36 +115,12 @@ impl PersistentStore {
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self.store.insert(key::CRED_RANDOM_SECRET, &cred_random)?;
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}
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// TODO(jmichel): remove this when vendor command is in place
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#[cfg(not(test))]
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self.load_attestation_data_from_firmware()?;
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if self.store.find_handle(key::AAGUID)?.is_none() {
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self.set_aaguid(key_material::AAGUID)?;
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}
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Ok(())
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}
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// TODO(jmichel): remove this function when vendor command is in place.
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#[cfg(not(test))]
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fn load_attestation_data_from_firmware(&mut self) -> Result<(), Ctap2StatusCode> {
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// The following 2 entries are meant to be written by vendor-specific commands.
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if self
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.store
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.find_handle(key::ATTESTATION_PRIVATE_KEY)?
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.is_none()
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{
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self.set_attestation_private_key(key_material::ATTESTATION_PRIVATE_KEY)?;
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}
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if self
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.store
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.find_handle(key::ATTESTATION_CERTIFICATE)?
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.is_none()
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{
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self.set_attestation_certificate(key_material::ATTESTATION_CERTIFICATE)?;
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}
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Ok(())
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}
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/// Returns the first matching credential.
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///
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/// Returns `None` if no credentials are matched or if `check_cred_protect` is set and the first
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@@ -989,11 +965,14 @@ mod test {
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.is_none());
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// Make sure the persistent keys are initialized.
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// Put dummy values
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let dummy_key = [0x41u8; key_material::ATTESTATION_PRIVATE_KEY_LENGTH];
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let dummy_cert = [0xddu8; 20];
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persistent_store
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.set_attestation_private_key(key_material::ATTESTATION_PRIVATE_KEY)
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.set_attestation_private_key(&dummy_key)
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.unwrap();
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persistent_store
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.set_attestation_certificate(key_material::ATTESTATION_CERTIFICATE)
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.set_attestation_certificate(&dummy_cert)
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.unwrap();
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assert_eq!(&persistent_store.aaguid().unwrap(), key_material::AAGUID);
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@@ -1001,11 +980,11 @@ mod test {
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persistent_store.reset(&mut rng).unwrap();
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assert_eq!(
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&persistent_store.attestation_private_key().unwrap().unwrap(),
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key_material::ATTESTATION_PRIVATE_KEY
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&dummy_key
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);
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assert_eq!(
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persistent_store.attestation_certificate().unwrap().unwrap(),
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key_material::ATTESTATION_CERTIFICATE
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&dummy_cert
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);
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assert_eq!(&persistent_store.aaguid().unwrap(), key_material::AAGUID);
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}
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