refactor: remove unneded prints and enable mt
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7a0d1219f9
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2 changed files with 1 additions and 81 deletions
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@ -241,7 +241,7 @@ pub fn task_distribute_st(testcases: &Testcases) -> Result<Responses> {
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pub fn task_distribute(testcases: &Testcases) -> Result<Responses> {
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let cpus = num_cpus::get();
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if cpus > 1000000 {
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if cpus > 1 {
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task_distribute_mt(testcases)
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} else {
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task_distribute_st(testcases)
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@ -98,13 +98,8 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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let (m3_data, _) = parse_message(&args["m3"])?;
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eprintln!("m1 poly: {:?}", m1_h_poly.clone().to_c_array());
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eprintln!("m2 poly: {:?}", m2_h_poly.clone().to_c_array());
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let combine_poly = m1_h_poly + m2_h_poly;
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eprintln!("combine poly: {:?}", combine_poly.clone().to_c_array());
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let combine_sff = sff(combine_poly.monic());
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let mut combine_ddf: Vec<(Polynomial, u128)> = vec![];
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@ -112,8 +107,6 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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combine_ddf.extend(ddf(factor));
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}
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eprintln!("combine_ddf: {:?}", combine_ddf);
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let mut combine_edf: Vec<Polynomial> = vec![];
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for (factor, degree) in combine_ddf {
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if degree == 1 {
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@ -121,8 +114,6 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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}
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}
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eprintln!("combine_edf: {:?}", combine_edf);
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let mut m3_auth_tag: Vec<u8> = vec![];
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let mut h_candidate: FieldElement = FieldElement::zero();
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let mut eky0: Vec<u8> = vec![];
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@ -155,8 +146,6 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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);
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if m3_auth_tag == m3_data.tag {
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eprintln!("Candidate valid");
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eprintln!("{:02X?}", m3_auth_tag);
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break;
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} else {
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eprintln!("H candidate not valid");
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@ -164,16 +153,6 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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}
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}
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eprintln!(
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"M3 Authentication TAG {:02X?}",
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BASE64_STANDARD.encode(&m3_auth_tag)
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);
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if m3_auth_tag.is_empty() {
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assert!(false);
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eprintln!("No valid candidate found");
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}
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let (forgery_data, _) = parse_message(&args["forgery"])?;
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let forgery_ghash = ghash(
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@ -196,62 +175,3 @@ pub fn gcm_crack(args: &Value) -> Result<CrackAnswer> {
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mask: BASE64_STANDARD.encode(eky0),
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})
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}
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#[cfg(test)]
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mod tests {
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use anyhow::Result;
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use rand::Rng;
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use serde_json::json;
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use utils::ciphers::{aes_128_encrypt, gcm_encrypt_aes};
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// Note this useful idiom: importing names from outer (for mod tests) scope.
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use super::*;
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#[test]
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fn test_random() -> Result<()> {
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let key = vec![1, 1, 1, 1];
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let nonce = BASE64_STANDARD.decode("4gF+BtR3ku/PUQci")?;
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let ad = vec![0];
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let input: Vec<u8> = Vec::with_capacity(rand::thread_rng().gen_range(0..=60));
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let plain1 = gcm_encrypt_aes(nonce.clone(), key.clone(), input, ad.clone())?;
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let input: Vec<u8> = Vec::with_capacity(rand::thread_rng().gen_range(0..=60));
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let plain2 = gcm_encrypt_aes(nonce.clone(), key.clone(), input, ad.clone())?;
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let input: Vec<u8> = Vec::with_capacity(rand::thread_rng().gen_range(0..=60));
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let plain3 = gcm_encrypt_aes(nonce.clone(), key.clone(), input, ad.clone())?;
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let crack_input = json!({
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"testcases": {
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"gcm_crack46": {
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"action": "gcm_crack",
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"arguments": {
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"nonce": "4gF+BtR3ku/PUQci",
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"m1": {
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"ciphertext": BASE64_STANDARD.encode(plain1.0),
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"associated_data": "",
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"tag": BASE64_STANDARD.encode(plain1.1)
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},
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"m2": {
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"ciphertext": BASE64_STANDARD.encode(plain2.0),
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"associated_data": "",
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"tag": BASE64_STANDARD.encode(plain2.1)
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},
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"m3": {
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"ciphertext": BASE64_STANDARD.encode(plain3.0),
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"associated_data": "",
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"tag": BASE64_STANDARD.encode(plain3.1)
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},
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"forgery": {
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"ciphertext": "AXe/ZQ==",
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"associated_data": ""
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}
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}
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}
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}
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});
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todo!();
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}
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}
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