Organise integration tests into modules.

This commit is contained in:
Isis Lovecruft 2018-12-30 02:17:56 +00:00
parent e88da5ea85
commit eb8ab9f06b
No known key found for this signature in database
GPG key ID: AB41313533E8E812

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@ -9,18 +9,14 @@
//! Integration tests for ed25519-dalek.
#[cfg(all(test, feature = "serde"))]
extern crate bincode;
extern crate clear_on_drop;
extern crate ed25519_dalek;
extern crate hex;
extern crate rand;
extern crate sha2;
use std::io::BufReader;
use std::io::BufRead;
use std::fs::File;
use std::string::String;
use std::vec::Vec;
use ed25519_dalek::*;
use hex::FromHex;
@ -31,65 +27,18 @@ use rand::rngs::ThreadRng;
use sha2::Sha512;
#[cfg(test)]
mod integrations {
mod vectors {
use std::io::BufReader;
use std::io::BufRead;
use std::fs::File;
use super::*;
#[cfg(all(test, feature = "serde"))]
static PUBLIC_KEY_BYTES: [u8; PUBLIC_KEY_LENGTH] = [
130, 039, 155, 015, 062, 076, 188, 063,
124, 122, 026, 251, 233, 253, 225, 220,
014, 041, 166, 120, 108, 035, 254, 077,
160, 083, 172, 058, 219, 042, 086, 120, ];
#[cfg(all(test, feature = "serde"))]
static SECRET_KEY: SecretKey = SecretKey([
062, 070, 027, 163, 092, 182, 011, 003,
077, 234, 098, 004, 011, 127, 079, 228,
243, 187, 150, 073, 201, 137, 076, 022,
085, 251, 152, 002, 241, 042, 072, 054, ]);
/// Signature with the above keypair of a blank message.
#[cfg(all(test, feature = "serde"))]
static SIGNATURE_BYTES: [u8; SIGNATURE_LENGTH] = [
010, 126, 151, 143, 157, 064, 047, 001,
196, 140, 179, 058, 226, 152, 018, 102,
160, 123, 080, 016, 210, 086, 196, 028,
053, 231, 012, 157, 169, 019, 158, 063,
045, 154, 238, 007, 053, 185, 227, 229,
079, 108, 213, 080, 124, 252, 084, 167,
216, 085, 134, 144, 129, 149, 041, 081,
063, 120, 126, 100, 092, 059, 050, 011, ];
#[test]
fn sign_verify() { // TestSignVerify
let mut csprng: ThreadRng;
let keypair: Keypair;
let good_sig: Signature;
let bad_sig: Signature;
let good: &[u8] = "test message".as_bytes();
let bad: &[u8] = "wrong message".as_bytes();
csprng = thread_rng();
keypair = Keypair::generate(&mut csprng);
good_sig = keypair.sign(&good);
bad_sig = keypair.sign(&bad);
assert!(keypair.verify(&good, &good_sig).is_ok(),
"Verification of a valid signature failed!");
assert!(keypair.verify(&good, &bad_sig).is_err(),
"Verification of a signature on a different message passed!");
assert!(keypair.verify(&bad, &good_sig).is_err(),
"Verification of a signature on a different message passed!");
}
// TESTVECTORS is taken from sign.input.gz in agl's ed25519 Golang
// package. It is a selection of test cases from
// http://ed25519.cr.yp.to/python/sign.input
#[cfg(test)]
#[cfg(not(release))]
#[test]
fn golden() { // TestGolden
fn against_reference_implementation() { // TestGolden
let mut line: String;
let mut lineno: usize = 0;
@ -161,6 +110,34 @@ mod integrations {
assert!(keypair.verify_prehashed(prehash_for_verifying, None, &sig2).is_ok(),
"Could not verify ed25519ph signature!");
}
}
#[cfg(test)]
mod integrations {
use super::*;
#[test]
fn sign_verify() { // TestSignVerify
let mut csprng: ThreadRng;
let keypair: Keypair;
let good_sig: Signature;
let bad_sig: Signature;
let good: &[u8] = "test message".as_bytes();
let bad: &[u8] = "wrong message".as_bytes();
csprng = thread_rng();
keypair = Keypair::generate(&mut csprng);
good_sig = keypair.sign(&good);
bad_sig = keypair.sign(&bad);
assert!(keypair.verify(&good, &good_sig).is_ok(),
"Verification of a valid signature failed!");
assert!(keypair.verify(&good, &bad_sig).is_err(),
"Verification of a signature on a different message passed!");
assert!(keypair.verify(&bad, &good_sig).is_err(),
"Verification of a signature on a different message passed!");
}
#[test]
fn ed25519ph_sign_verify() {
@ -236,11 +213,37 @@ mod integrations {
assert!(public_from_secret == public_from_expanded_secret);
}
}
#[cfg(all(test, feature = "serde"))]
use bincode::{serialize, serialized_size, deserialize, Infinite};
#[cfg(all(test, feature = "serde"))]
mod serialisation {
use super::*;
use self::bincode::{serialize, serialized_size, deserialize, Infinite};
static PUBLIC_KEY_BYTES: [u8; PUBLIC_KEY_LENGTH] = [
130, 039, 155, 015, 062, 076, 188, 063,
124, 122, 026, 251, 233, 253, 225, 220,
014, 041, 166, 120, 108, 035, 254, 077,
160, 083, 172, 058, 219, 042, 086, 120, ];
static SECRET_KEY_BYTES: [u8; SECRET_KEY_LENGTH] = [
062, 070, 027, 163, 092, 182, 011, 003,
077, 234, 098, 004, 011, 127, 079, 228,
243, 187, 150, 073, 201, 137, 076, 022,
085, 251, 152, 002, 241, 042, 072, 054, ];
/// Signature with the above keypair of a blank message.
static SIGNATURE_BYTES: [u8; SIGNATURE_LENGTH] = [
010, 126, 151, 143, 157, 064, 047, 001,
196, 140, 179, 058, 226, 152, 018, 102,
160, 123, 080, 016, 210, 086, 196, 028,
053, 231, 012, 157, 169, 019, 158, 063,
045, 154, 238, 007, 053, 185, 227, 229,
079, 108, 213, 080, 124, 252, 084, 167,
216, 085, 134, 144, 129, 149, 041, 081,
063, 120, 126, 100, 092, 059, 050, 011, ];
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_deserialize_signature() {
let signature: Signature = Signature::from_bytes(&SIGNATURE_BYTES).unwrap();
@ -250,7 +253,6 @@ mod integrations {
assert_eq!(signature, decoded_signature);
}
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_deserialize_public_key() {
let public_key: PublicKey = PublicKey::from_bytes(&PUBLIC_KEY_BYTES).unwrap();
@ -261,34 +263,32 @@ mod integrations {
assert_eq!(public_key, decoded_public_key);
}
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_deserialize_secret_key() {
let encoded_secret_key: Vec<u8> = serialize(&SECRET_KEY, Infinite).unwrap();
let secret_key: SecretKey = SecretKey::from_bytes(&SECRET_KEY_BYTES).unwrap();
let encoded_secret_key: Vec<u8> = serialize(&secret_key, Infinite).unwrap();
let decoded_secret_key: SecretKey = deserialize(&encoded_secret_key).unwrap();
for i in 0..32 {
assert_eq!(SECRET_KEY.0[i], decoded_secret_key.0[i]);
assert_eq!(SECRET_KEY_BYTES[i], decoded_secret_key.as_bytes()[i]);
}
}
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_public_key_size() {
let public_key: PublicKey = PublicKey::from_bytes(&PUBLIC_KEY_BYTES).unwrap();
assert_eq!(serialized_size(&public_key) as usize, 40); // These sizes are specific to bincode==1.0.1
}
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_signature_size() {
let signature: Signature = Signature::from_bytes(&SIGNATURE_BYTES).unwrap();
assert_eq!(serialized_size(&signature) as usize, 72); // These sizes are specific to bincode==1.0.1
}
#[cfg(all(test, feature = "serde"))]
#[test]
fn serialize_secret_key_size() {
assert_eq!(serialized_size(&SECRET_KEY) as usize, 40); // These sizes are specific to bincode==1.0.1
let secret_key: SecretKey = SecretKey::from_bytes(&SECRET_KEY_BYTES).unwrap();
assert_eq!(serialized_size(&secret_key) as usize, 40); // These sizes are specific to bincode==1.0.1
}
}