commonware_cryptography/secp256r1/
scheme.rs

1use crate::{Array, PrivateKeyExt};
2use bytes::{Buf, BufMut};
3use commonware_codec::{Error as CodecError, FixedSize, Read, ReadExt, Write};
4use commonware_utils::{hex, union_unique, Span};
5use p256::{
6    ecdsa::{
7        signature::{Signer, Verifier},
8        SigningKey, VerifyingKey,
9    },
10    elliptic_curve::scalar::IsHigh,
11};
12use rand::{CryptoRng, Rng};
13use std::{
14    borrow::Cow,
15    fmt::{Debug, Display},
16    hash::{Hash, Hasher},
17    ops::Deref,
18};
19use zeroize::{Zeroize, ZeroizeOnDrop};
20
21const CURVE_NAME: &str = "secp256r1";
22const PRIVATE_KEY_LENGTH: usize = 32;
23const PUBLIC_KEY_LENGTH: usize = 33; // Y-Parity || X
24const SIGNATURE_LENGTH: usize = 64; // R || S
25
26/// Secp256r1 Private Key.
27#[derive(Clone, Eq, PartialEq, Zeroize, ZeroizeOnDrop)]
28pub struct PrivateKey {
29    raw: [u8; PRIVATE_KEY_LENGTH],
30    // `ZeroizeOnDrop` is implemented for `SigningKey` and can't be called directly.
31    //
32    // Reference: https://github.com/RustCrypto/signatures/blob/a83c494216b6f3dacba5d4e4376785e2ea142044/ecdsa/src/signing.rs#L487-L493
33    #[zeroize(skip)]
34    key: SigningKey,
35}
36
37impl crate::PrivateKey for PrivateKey {}
38
39impl crate::Signer for PrivateKey {
40    type Signature = Signature;
41    type PublicKey = PublicKey;
42
43    fn sign(&self, namespace: Option<&[u8]>, msg: &[u8]) -> Self::Signature {
44        let signature: p256::ecdsa::Signature = match namespace {
45            Some(namespace) => self.key.sign(&union_unique(namespace, msg)),
46            None => self.key.sign(msg),
47        };
48        let signature = match signature.normalize_s() {
49            Some(normalized) => normalized,
50            None => signature,
51        };
52        Signature::from(signature)
53    }
54
55    fn public_key(&self) -> Self::PublicKey {
56        let encoded = self.key.verifying_key().to_encoded_point(true);
57        let raw: [u8; PUBLIC_KEY_LENGTH] = encoded.as_bytes().try_into().unwrap();
58        Self::PublicKey {
59            raw,
60            key: self.key.verifying_key().to_owned(),
61        }
62    }
63}
64
65impl PrivateKeyExt for PrivateKey {
66    fn from_rng<R: Rng + CryptoRng>(rng: &mut R) -> Self {
67        let key = SigningKey::random(rng);
68        let raw = key.to_bytes().into();
69        Self { raw, key }
70    }
71}
72
73impl Write for PrivateKey {
74    fn write(&self, buf: &mut impl BufMut) {
75        self.raw.write(buf);
76    }
77}
78
79impl Read for PrivateKey {
80    type Cfg = ();
81
82    fn read_cfg(buf: &mut impl Buf, _: &()) -> Result<Self, CodecError> {
83        let raw = <[u8; Self::SIZE]>::read(buf)?;
84        let key =
85            SigningKey::from_slice(&raw).map_err(|e| CodecError::Wrapped(CURVE_NAME, e.into()))?;
86        Ok(Self { raw, key })
87    }
88}
89
90impl FixedSize for PrivateKey {
91    const SIZE: usize = PRIVATE_KEY_LENGTH;
92}
93
94impl Span for PrivateKey {}
95
96impl Array for PrivateKey {}
97
98impl Hash for PrivateKey {
99    fn hash<H: Hasher>(&self, state: &mut H) {
100        self.raw.hash(state);
101    }
102}
103
104impl Ord for PrivateKey {
105    fn cmp(&self, other: &Self) -> std::cmp::Ordering {
106        self.raw.cmp(&other.raw)
107    }
108}
109
110impl PartialOrd for PrivateKey {
111    fn partial_cmp(&self, other: &Self) -> Option<std::cmp::Ordering> {
112        Some(self.cmp(other))
113    }
114}
115
116impl AsRef<[u8]> for PrivateKey {
117    fn as_ref(&self) -> &[u8] {
118        &self.raw
119    }
120}
121
122impl Deref for PrivateKey {
123    type Target = [u8];
124    fn deref(&self) -> &[u8] {
125        &self.raw
126    }
127}
128
129impl From<SigningKey> for PrivateKey {
130    fn from(signer: SigningKey) -> Self {
131        let raw = signer.to_bytes().into();
132        Self { raw, key: signer }
133    }
134}
135
136impl Debug for PrivateKey {
137    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
138        write!(f, "{}", hex(&self.raw))
139    }
140}
141
142impl Display for PrivateKey {
143    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
144        write!(f, "{}", hex(&self.raw))
145    }
146}
147
148/// Secp256r1 Public Key.
149#[derive(Clone, Eq, PartialEq, Ord, PartialOrd)]
150pub struct PublicKey {
151    raw: [u8; PUBLIC_KEY_LENGTH],
152    key: VerifyingKey,
153}
154
155impl From<PrivateKey> for PublicKey {
156    fn from(value: PrivateKey) -> Self {
157        let encoded = value.key.verifying_key().to_encoded_point(true);
158        let raw: [u8; PUBLIC_KEY_LENGTH] = encoded.as_bytes().try_into().unwrap();
159        Self {
160            raw,
161            key: *value.key.verifying_key(),
162        }
163    }
164}
165
166impl crate::PublicKey for PublicKey {}
167
168impl crate::Verifier for PublicKey {
169    type Signature = Signature;
170
171    fn verify(&self, namespace: Option<&[u8]>, msg: &[u8], sig: &Self::Signature) -> bool {
172        let payload = match namespace {
173            Some(namespace) => Cow::Owned(union_unique(namespace, msg)),
174            None => Cow::Borrowed(msg),
175        };
176        self.key.verify(&payload, &sig.signature).is_ok()
177    }
178}
179
180impl Write for PublicKey {
181    fn write(&self, buf: &mut impl BufMut) {
182        self.raw.write(buf);
183    }
184}
185
186impl Read for PublicKey {
187    type Cfg = ();
188
189    fn read_cfg(buf: &mut impl Buf, _: &()) -> Result<Self, CodecError> {
190        let raw = <[u8; PUBLIC_KEY_LENGTH]>::read(buf)?;
191        let key = VerifyingKey::from_sec1_bytes(&raw)
192            .map_err(|_| CodecError::Invalid(CURVE_NAME, "Invalid PublicKey"))?;
193        Ok(Self { raw, key })
194    }
195}
196
197impl FixedSize for PublicKey {
198    const SIZE: usize = PUBLIC_KEY_LENGTH;
199}
200
201impl Span for PublicKey {}
202
203impl Array for PublicKey {}
204
205impl Hash for PublicKey {
206    fn hash<H: Hasher>(&self, state: &mut H) {
207        self.raw.hash(state);
208    }
209}
210
211impl AsRef<[u8]> for PublicKey {
212    fn as_ref(&self) -> &[u8] {
213        &self.raw
214    }
215}
216
217impl Deref for PublicKey {
218    type Target = [u8];
219    fn deref(&self) -> &[u8] {
220        &self.raw
221    }
222}
223
224impl From<VerifyingKey> for PublicKey {
225    fn from(verifier: VerifyingKey) -> Self {
226        let encoded = verifier.to_encoded_point(true);
227        let raw: [u8; PUBLIC_KEY_LENGTH] = encoded.as_bytes().try_into().unwrap();
228        Self { raw, key: verifier }
229    }
230}
231
232impl Debug for PublicKey {
233    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
234        write!(f, "{}", hex(&self.raw))
235    }
236}
237
238impl Display for PublicKey {
239    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
240        write!(f, "{}", hex(&self.raw))
241    }
242}
243
244/// Secp256r1 Signature.
245#[derive(Clone, Eq, PartialEq)]
246pub struct Signature {
247    raw: [u8; SIGNATURE_LENGTH],
248    signature: p256::ecdsa::Signature,
249}
250
251impl crate::Signature for Signature {}
252
253impl Write for Signature {
254    fn write(&self, buf: &mut impl BufMut) {
255        self.raw.write(buf);
256    }
257}
258
259impl Read for Signature {
260    type Cfg = ();
261
262    fn read_cfg(buf: &mut impl Buf, _: &()) -> Result<Self, CodecError> {
263        let raw = <[u8; Self::SIZE]>::read(buf)?;
264        let signature = p256::ecdsa::Signature::from_slice(&raw)
265            .map_err(|e| CodecError::Wrapped(CURVE_NAME, e.into()))?;
266        if signature.s().is_high().into() {
267            // Reject any signatures with a `s` value in the upper half of the curve order.
268            return Err(CodecError::Invalid(CURVE_NAME, "Signature S is high"));
269        }
270        Ok(Self { raw, signature })
271    }
272}
273
274impl FixedSize for Signature {
275    const SIZE: usize = SIGNATURE_LENGTH;
276}
277
278impl Span for Signature {}
279
280impl Array for Signature {}
281
282impl Hash for Signature {
283    fn hash<H: Hasher>(&self, state: &mut H) {
284        self.raw.hash(state);
285    }
286}
287
288impl Ord for Signature {
289    fn cmp(&self, other: &Self) -> std::cmp::Ordering {
290        self.raw.cmp(&other.raw)
291    }
292}
293
294impl PartialOrd for Signature {
295    fn partial_cmp(&self, other: &Self) -> Option<std::cmp::Ordering> {
296        Some(self.cmp(other))
297    }
298}
299
300impl AsRef<[u8]> for Signature {
301    fn as_ref(&self) -> &[u8] {
302        &self.raw
303    }
304}
305
306impl Deref for Signature {
307    type Target = [u8];
308    fn deref(&self) -> &[u8] {
309        &self.raw
310    }
311}
312
313impl From<p256::ecdsa::Signature> for Signature {
314    fn from(signature: p256::ecdsa::Signature) -> Self {
315        let raw = signature.to_bytes().into();
316        Self { raw, signature }
317    }
318}
319
320impl Debug for Signature {
321    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
322        write!(f, "{}", hex(&self.raw))
323    }
324}
325
326impl Display for Signature {
327    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
328        write!(f, "{}", hex(&self.raw))
329    }
330}
331
332/// Test vectors sourced from (FIPS 186-4)
333/// https://csrc.nist.gov/projects/cryptographic-algorithm-validation-program/digital-signatures.
334#[cfg(test)]
335mod tests {
336    use super::*;
337    use crate::{Signer as _, Verifier as _};
338    use bytes::Bytes;
339    use commonware_codec::{DecodeExt, Encode};
340
341    fn create_private_key() -> PrivateKey {
342        const HEX: &str = "519b423d715f8b581f4fa8ee59f4771a5b44c8130b4e3eacca54a56dda72b464";
343        PrivateKey::decode(commonware_utils::from_hex_formatted(HEX).unwrap().as_ref()).unwrap()
344    }
345
346    fn parse_vector_keypair(private_key: &str, qx: &str, qy: &str) -> (PrivateKey, PublicKey) {
347        let public_key = parse_public_key_as_compressed(qx, qy);
348        (
349            PrivateKey::decode(
350                commonware_utils::from_hex_formatted(private_key)
351                    .unwrap()
352                    .as_ref(),
353            )
354            .unwrap(),
355            public_key,
356        )
357    }
358
359    fn parse_vector_sig_verification(
360        qx: &str,
361        qy: &str,
362        r: &str,
363        s: &str,
364        m: &str,
365    ) -> (PublicKey, Vec<u8>, Vec<u8>) {
366        let public_key = parse_public_key_as_compressed(qx, qy);
367        let signature = parse_signature(r, s);
368        let message = commonware_utils::from_hex_formatted(m).unwrap();
369        (public_key, signature, message)
370    }
371
372    fn parse_signature(r: &str, s: &str) -> Vec<u8> {
373        let vec_r = commonware_utils::from_hex_formatted(r).unwrap();
374        let vec_s = commonware_utils::from_hex_formatted(s).unwrap();
375        let f1 = p256::FieldBytes::from_slice(&vec_r);
376        let f2 = p256::FieldBytes::from_slice(&vec_s);
377        let s = p256::ecdsa::Signature::from_scalars(*f1, *f2).unwrap();
378        s.to_vec()
379    }
380
381    fn parse_public_key_as_compressed(qx: &str, qy: &str) -> PublicKey {
382        PublicKey::decode(parse_public_key_as_compressed_vector(qx, qy).as_ref()).unwrap()
383    }
384
385    fn parse_public_key_as_compressed_vector(qx: &str, qy: &str) -> Vec<u8> {
386        let qx = commonware_utils::from_hex_formatted(&padding_odd_length_hex(qx)).unwrap();
387        let qy = commonware_utils::from_hex_formatted(&padding_odd_length_hex(qy)).unwrap();
388        let mut compressed = Vec::with_capacity(qx.len() + 1);
389        if qy.last().unwrap() % 2 == 0 {
390            compressed.push(0x02);
391        } else {
392            compressed.push(0x03);
393        }
394        compressed.extend_from_slice(&qx);
395        compressed
396    }
397
398    fn parse_public_key_as_uncompressed_vector(qx: &str, qy: &str) -> Vec<u8> {
399        let qx = commonware_utils::from_hex_formatted(qx).unwrap();
400        let qy = commonware_utils::from_hex_formatted(qy).unwrap();
401        let mut uncompressed_public_key = Vec::with_capacity(65);
402        uncompressed_public_key.push(0x04);
403        uncompressed_public_key.extend_from_slice(&qx);
404        uncompressed_public_key.extend_from_slice(&qy);
405        uncompressed_public_key
406    }
407
408    fn padding_odd_length_hex(value: &str) -> String {
409        if value.len() % 2 != 0 {
410            return format!("0{value}");
411        }
412        value.to_string()
413    }
414
415    #[test]
416    fn test_codec_private_key() {
417        let original: PrivateKey = create_private_key();
418        let encoded = original.encode();
419        assert_eq!(encoded.len(), PRIVATE_KEY_LENGTH);
420
421        let decoded = PrivateKey::decode(encoded).unwrap();
422        assert_eq!(original, decoded);
423    }
424
425    #[test]
426    fn test_codec_public_key() {
427        let private_key = create_private_key();
428        let original = PublicKey::from(private_key);
429
430        let encoded = original.encode();
431        assert_eq!(encoded.len(), PUBLIC_KEY_LENGTH);
432
433        let decoded = PublicKey::decode(encoded).unwrap();
434        assert_eq!(original, decoded);
435    }
436
437    #[test]
438    fn test_codec_signature() {
439        let private_key = create_private_key();
440        let original = private_key.sign(None, "Hello World".as_bytes());
441
442        let encoded = original.encode();
443        assert_eq!(encoded.len(), SIGNATURE_LENGTH);
444
445        let decoded = Signature::decode(encoded).unwrap();
446        assert_eq!(original, decoded);
447    }
448
449    #[test]
450    fn test_codec_signature_invalid() {
451        let (_, sig, ..) = vector_sig_verification_5();
452        let result = Signature::decode(Bytes::from(sig));
453        assert!(result.is_err());
454    }
455
456    #[test]
457    fn test_scheme_sign() {
458        let private_key: PrivateKey = PrivateKey::decode(
459            commonware_utils::from_hex_formatted(
460                "519b423d715f8b581f4fa8ee59f4771a5b44c8130b4e3eacca54a56dda72b464",
461            )
462            .unwrap()
463            .as_ref(),
464        )
465        .unwrap();
466        let public_key: PublicKey = private_key.clone().into();
467        let message = commonware_utils::from_hex_formatted(
468            "5905238877c77421f73e43ee3da6f2d9e2ccad5fc942dcec0cbd25482935faaf416983fe165b1a045e
469            e2bcd2e6dca3bdf46c4310a7461f9a37960ca672d3feb5473e253605fb1ddfd28065b53cb5858a8ad28175bf
470            9bd386a5e471ea7a65c17cc934a9d791e91491eb3754d03799790fe2d308d16146d5c9b0d0debd97d79ce8",
471        )
472        .unwrap();
473        let signature = private_key.sign(None, &message);
474        assert_eq!(SIGNATURE_LENGTH, signature.len());
475        assert!(public_key.verify(None, &message, &signature));
476    }
477
478    #[test]
479    fn test_decode_zero_signature_fails() {
480        let result = Signature::decode(vec![0u8; SIGNATURE_LENGTH].as_ref());
481        assert!(result.is_err());
482    }
483
484    #[test]
485    fn test_decode_high_s_signature_fails() {
486        let (private_key, _) = vector_keypair_1();
487        let message = b"edge";
488        let signature = private_key.sign(None, message);
489        let mut bad_signature = signature.to_vec();
490        bad_signature[32] |= 0x80; // force S into upper range
491        assert!(Signature::decode(bad_signature.as_ref()).is_err());
492    }
493
494    #[test]
495    fn test_decode_zero_r_signature_fails() {
496        let (private_key, _) = vector_keypair_1();
497        let message = b"edge";
498        let signature = private_key.sign(None, message);
499        let mut bad_signature = signature.to_vec();
500        for b in bad_signature.iter_mut().take(32) {
501            *b = 0x00;
502        }
503        // ensure S component is non-zero
504        bad_signature[32] = 1;
505        assert!(Signature::decode(bad_signature.as_ref()).is_err());
506    }
507
508    // Ensure RFC6979 compliance (should also be tested by underlying library)
509    #[test]
510    fn test_rfc6979() {
511        let private_key: PrivateKey = PrivateKey::decode(
512            commonware_utils::from_hex_formatted(
513                "c9afa9d845ba75166b5c215767b1d6934e50c3db36e89b127b8a622b120f6721",
514            )
515            .unwrap()
516            .as_ref(),
517        )
518        .unwrap();
519
520        let (message, exp_sig) = (
521            b"sample",
522            p256::ecdsa::Signature::from_slice(
523                &commonware_utils::from_hex_formatted(
524                    "efd48b2aacb6a8fd1140dd9cd45e81d69d2c877b56aaf991c34d0ea84eaf3716
525                    f7cb1c942d657c41d436c7a1b6e29f65f3e900dbb9aff4064dc4ab2f843acda8",
526                )
527                .unwrap(),
528            )
529            .unwrap(),
530        );
531        let signature = private_key.sign(None, message);
532        assert_eq!(signature.to_vec(), exp_sig.normalize_s().unwrap().to_vec());
533
534        let (message, exp_sig) = (
535            b"test",
536            p256::ecdsa::Signature::from_slice(
537                &commonware_utils::from_hex_formatted(
538                    "f1abb023518351cd71d881567b1ea663ed3efcf6c5132b354f28d3b0b7d38367
539                    019f4113742a2b14bd25926b49c649155f267e60d3814b4c0cc84250e46f0083",
540                )
541                .unwrap(),
542            )
543            .unwrap(),
544        );
545
546        let signature = private_key.sign(None, message);
547        assert_eq!(signature.to_vec(), exp_sig.to_vec());
548    }
549
550    #[test]
551    fn test_scheme_validate_public_key_too_long() {
552        let qx_hex = "d0720dc691aa80096ba32fed1cb97c2b620690d06de0317b8618d5ce65eb728f";
553        let qy_hex = "d0720dc691aa80096ba32fed1cb97c2b620690d06de0317b8618d5ce65eb728f";
554
555        // Invalid
556        let uncompressed_public_key = parse_public_key_as_uncompressed_vector(qx_hex, qy_hex);
557        let public_key = PublicKey::decode(uncompressed_public_key.as_ref());
558        assert!(matches!(public_key, Err(CodecError::Invalid(_, _))));
559
560        // Too long
561        let mut compressed_public_key = parse_public_key_as_compressed_vector(qx_hex, qy_hex);
562        compressed_public_key.push(0u8);
563        let public_key = PublicKey::decode(compressed_public_key.as_ref());
564        assert!(matches!(public_key, Err(CodecError::ExtraData(1))));
565
566        // Valid
567        let compressed_public_key = parse_public_key_as_compressed_vector(qx_hex, qy_hex);
568        let public_key = PublicKey::decode(compressed_public_key.as_ref());
569        assert!(public_key.is_ok());
570    }
571
572    #[test]
573    fn test_scheme_verify_signature_r0() {
574        // Generate bad signature
575        let private_key: PrivateKey = PrivateKey::decode(
576            commonware_utils::from_hex_formatted(
577                "c9806898a0334916c860748880a541f093b579a9b1f32934d86c363c39800357",
578            )
579            .unwrap()
580            .as_ref(),
581        )
582        .unwrap();
583        let message = b"sample";
584        let signature = private_key.sign(None, message);
585        let (_, s) = signature.split_at(32);
586        let mut signature: Vec<u8> = vec![0x00; 32];
587        signature.extend_from_slice(s);
588
589        // Try to parse signature
590        assert!(Signature::decode(signature.as_ref()).is_err());
591    }
592
593    #[test]
594    fn test_scheme_verify_signature_s0() {
595        // Generate bad signature
596        let private_key: PrivateKey = PrivateKey::decode(
597            commonware_utils::from_hex_formatted(
598                "c9806898a0334916c860748880a541f093b579a9b1f32934d86c363c39800357",
599            )
600            .unwrap()
601            .as_ref(),
602        )
603        .unwrap();
604        let message = b"sample";
605        let signature = private_key.sign(None, message);
606        let (r, _) = signature.split_at(32);
607        let s: Vec<u8> = vec![0x00; 32];
608        let mut signature = r.to_vec();
609        signature.extend(s);
610
611        // Try to parse signature
612        assert!(Signature::decode(signature.as_ref()).is_err());
613    }
614
615    #[test]
616    fn test_keypairs() {
617        let cases = [
618            vector_keypair_1(),
619            vector_keypair_2(),
620            vector_keypair_3(),
621            vector_keypair_4(),
622            vector_keypair_5(),
623            vector_keypair_6(),
624            vector_keypair_7(),
625            vector_keypair_8(),
626            vector_keypair_9(),
627            vector_keypair_10(),
628        ];
629
630        for (index, test) in cases.into_iter().enumerate() {
631            let (private_key, exp_public_key) = test;
632            let public_key = PublicKey::from(private_key.clone());
633            assert_eq!(exp_public_key, public_key, "vector_keypair_{}", index + 1);
634            assert!(public_key.len() == PUBLIC_KEY_LENGTH);
635        }
636    }
637
638    #[test]
639    fn test_public_key_validation() {
640        // We use SEC 1-encoded public keys (only include y-parity) whereas vectors
641        // assume public keys are uncompressed (both x and y packed in encoding).
642        //
643        // For this reason, test vector 2 (y out of range) and 11 (y not on curve) are skipped.
644        let cases = [
645            (1, vector_public_key_validation_1()),
646            (3, vector_public_key_validation_3()),
647            (4, vector_public_key_validation_4()),
648            (5, vector_public_key_validation_5()),
649            (6, vector_public_key_validation_6()),
650            (7, vector_public_key_validation_7()),
651            (8, vector_public_key_validation_8()),
652            (9, vector_public_key_validation_9()),
653            (10, vector_public_key_validation_10()),
654            (12, vector_public_key_validation_12()),
655        ];
656
657        for (n, test) in cases.iter() {
658            let (public_key, exp_valid) = test;
659            let res = PublicKey::decode(public_key.as_ref());
660            assert_eq!(*exp_valid, res.is_ok(), "vector_public_key_validation_{n}");
661        }
662    }
663
664    #[test]
665    fn test_signature_verification() {
666        let cases = [
667            vector_sig_verification_1(),
668            vector_sig_verification_2(),
669            vector_sig_verification_3(),
670            vector_sig_verification_4(),
671            vector_sig_verification_5(),
672            vector_sig_verification_6(),
673            vector_sig_verification_7(),
674            vector_sig_verification_8(),
675            vector_sig_verification_9(),
676            vector_sig_verification_10(),
677            vector_sig_verification_11(),
678            vector_sig_verification_12(),
679            vector_sig_verification_13(),
680            vector_sig_verification_14(),
681            vector_sig_verification_15(),
682        ];
683
684        for (index, test) in cases.into_iter().enumerate() {
685            let (public_key, sig, message, expected) = test;
686            let expected = if expected {
687                let mut ecdsa_signature = p256::ecdsa::Signature::from_slice(&sig).unwrap();
688                if ecdsa_signature.s().is_high().into() {
689                    // Valid signatures not normalized must be considered invalid.
690                    assert!(Signature::decode(sig.as_ref()).is_err());
691                    assert!(Signature::decode(Bytes::from(sig)).is_err());
692
693                    // Normalizing sig to test its validity.
694                    if let Some(normalized_sig) = ecdsa_signature.normalize_s() {
695                        ecdsa_signature = normalized_sig;
696                    }
697                }
698                let signature = Signature::from(ecdsa_signature);
699                public_key.verify(None, &message, &signature)
700            } else {
701                let tf_res = Signature::decode(sig.as_ref());
702                let dc_res = Signature::decode(Bytes::from(sig));
703                if tf_res.is_err() && dc_res.is_err() {
704                    // The parsing should fail
705                    true
706                } else {
707                    // Or the validation should fail
708                    let f1 = !public_key.verify(None, &message, &tf_res.unwrap());
709                    let f2 = !public_key.verify(None, &message, &dc_res.unwrap());
710                    f1 && f2
711                }
712            };
713            assert!(expected, "vector_signature_verification_{}", index + 1);
714        }
715    }
716
717    fn vector_keypair_1() -> (PrivateKey, PublicKey) {
718        parse_vector_keypair(
719            "c9806898a0334916c860748880a541f093b579a9b1f32934d86c363c39800357",
720            "d0720dc691aa80096ba32fed1cb97c2b620690d06de0317b8618d5ce65eb728f",
721            "9681b517b1cda17d0d83d335d9c4a8a9a9b0b1b3c7106d8f3c72bc5093dc275f",
722        )
723    }
724
725    fn vector_keypair_2() -> (PrivateKey, PublicKey) {
726        parse_vector_keypair(
727            "710735c8388f48c684a97bd66751cc5f5a122d6b9a96a2dbe73662f78217446d",
728            "f6836a8add91cb182d8d258dda6680690eb724a66dc3bb60d2322565c39e4ab9",
729            "1f837aa32864870cb8e8d0ac2ff31f824e7beddc4bb7ad72c173ad974b289dc2",
730        )
731    }
732
733    fn vector_keypair_3() -> (PrivateKey, PublicKey) {
734        parse_vector_keypair(
735            "78d5d8b7b3e2c16b3e37e7e63becd8ceff61e2ce618757f514620ada8a11f6e4",
736            "76711126cbb2af4f6a5fe5665dad4c88d27b6cb018879e03e54f779f203a854e",
737            "a26df39960ab5248fd3620fd018398e788bd89a3cea509b352452b69811e6856",
738        )
739    }
740
741    fn vector_keypair_4() -> (PrivateKey, PublicKey) {
742        parse_vector_keypair(
743            "2a61a0703860585fe17420c244e1de5a6ac8c25146b208ef88ad51ae34c8cb8c",
744            "e1aa7196ceeac088aaddeeba037abb18f67e1b55c0a5c4e71ec70ad666fcddc8",
745            "d7d35bdce6dedc5de98a7ecb27a9cd066a08f586a733b59f5a2cdb54f971d5c8",
746        )
747    }
748
749    fn vector_keypair_5() -> (PrivateKey, PublicKey) {
750        parse_vector_keypair(
751            "01b965b45ff386f28c121c077f1d7b2710acc6b0cb58d8662d549391dcf5a883",
752            "1f038c5422e88eec9e88b815e8f6b3e50852333fc423134348fc7d79ef8e8a10",
753            "43a047cb20e94b4ffb361ef68952b004c0700b2962e0c0635a70269bc789b849",
754        )
755    }
756
757    fn vector_keypair_6() -> (PrivateKey, PublicKey) {
758        parse_vector_keypair(
759            "fac92c13d374c53a085376fe4101618e1e181b5a63816a84a0648f3bdc24e519",
760            "7258f2ab96fc84ef6ccb33e308cd392d8b568ea635730ceb4ebd72fa870583b9",
761            "489807ca55bdc29ca5c8fe69b94f227b0345cccdbe89975e75d385cc2f6bb1e2",
762        )
763    }
764
765    fn vector_keypair_7() -> (PrivateKey, PublicKey) {
766        parse_vector_keypair(
767            "f257a192dde44227b3568008ff73bcf599a5c45b32ab523b5b21ca582fef5a0a",
768            "d2e01411817b5512b79bbbe14d606040a4c90deb09e827d25b9f2fc068997872",
769            "503f138f8bab1df2c4507ff663a1fdf7f710e7adb8e7841eaa902703e314e793",
770        )
771    }
772
773    fn vector_keypair_8() -> (PrivateKey, PublicKey) {
774        parse_vector_keypair(
775            "add67e57c42a3d28708f0235eb86885a4ea68e0d8cfd76eb46134c596522abfd",
776            "55bed2d9c029b7f230bde934c7124ed52b1330856f13cbac65a746f9175f85d7",
777            "32805e311d583b4e007c40668185e85323948e21912b6b0d2cda8557389ae7b0",
778        )
779    }
780
781    fn vector_keypair_9() -> (PrivateKey, PublicKey) {
782        parse_vector_keypair(
783            "4494860fd2c805c5c0d277e58f802cff6d731f76314eb1554142a637a9bc5538",
784            "5190277a0c14d8a3d289292f8a544ce6ea9183200e51aec08440e0c1a463a4e4",
785            "ecd98514821bd5aaf3419ab79b71780569470e4fed3da3c1353b28fe137f36eb",
786        )
787    }
788
789    fn vector_keypair_10() -> (PrivateKey, PublicKey) {
790        parse_vector_keypair(
791            "d40b07b1ea7b86d4709ef9dc634c61229feb71abd63dc7fc85ef46711a87b210",
792            "fbcea7c2827e0e8085d7707b23a3728823ea6f4878b24747fb4fd2842d406c73",
793            "2393c85f1f710c5afc115a39ba7e18abe03f19c9d4bb3d47d19468b818efa535",
794        )
795    }
796
797    fn vector_public_key_validation_1() -> (Vec<u8>, bool) {
798        (
799            parse_public_key_as_compressed_vector(
800                "e0f7449c5588f24492c338f2bc8f7865f755b958d48edb0f2d0056e50c3fd5b7",
801                "86d7e9255d0f4b6f44fa2cd6f8ba3c0aa828321d6d8cc430ca6284ce1d5b43a0",
802            ),
803            true,
804        )
805    }
806
807    fn vector_public_key_validation_3() -> (Vec<u8>, bool) {
808        (
809            parse_public_key_as_compressed_vector(
810                "17875397ae87369365656d490e8ce956911bd97607f2aff41b56f6f3a61989826",
811                "980a3c4f61b9692633fbba5ef04c9cb546dd05cdec9fa8428b8849670e2fba92",
812            ),
813            false, // x out of range
814        )
815    }
816
817    fn vector_public_key_validation_4() -> (Vec<u8>, bool) {
818        (
819            parse_public_key_as_compressed_vector(
820                "f2d1c0dc0852c3d8a2a2500a23a44813ccce1ac4e58444175b440469ffc12273",
821                "32bfe992831b305d8c37b9672df5d29fcb5c29b4a40534683e3ace23d24647dd",
822            ),
823            false, // point not on the curve
824        )
825    }
826
827    fn vector_public_key_validation_5() -> (Vec<u8>, bool) {
828        (
829            parse_public_key_as_compressed_vector(
830                "10b0ca230fff7c04768f4b3d5c75fa9f6c539bea644dffbec5dc796a213061b58",
831                "f5edf37c11052b75f771b7f9fa050e353e464221fec916684ed45b6fead38205",
832            ),
833            false, // x out of range
834        )
835    }
836
837    fn vector_public_key_validation_6() -> (Vec<u8>, bool) {
838        (
839            parse_public_key_as_compressed_vector(
840                "2c1052f25360a15062d204a056274e93cbe8fc4c4e9b9561134ad5c15ce525da",
841                "ced9783713a8a2a09eff366987639c625753295d9a85d0f5325e32dedbcada0b",
842            ),
843            true,
844        )
845    }
846
847    fn vector_public_key_validation_7() -> (Vec<u8>, bool) {
848        (
849            parse_public_key_as_compressed_vector(
850                "a40d077a87dae157d93dcccf3fe3aca9c6479a75aa2669509d2ef05c7de6782f",
851                "503d86b87d743ba20804fd7e7884aa017414a7b5b5963e0d46e3a9611419ddf3",
852            ),
853            false, // point not on the curve
854        )
855    }
856
857    fn vector_public_key_validation_8() -> (Vec<u8>, bool) {
858        (
859            parse_public_key_as_compressed_vector(
860                "2633d398a3807b1895548adbb0ea2495ef4b930f91054891030817df87d4ac0a",
861                "d6b2f738e3873cc8364a2d364038ce7d0798bb092e3dd77cbdae7c263ba618d2",
862            ),
863            true,
864        )
865    }
866
867    fn vector_public_key_validation_9() -> (Vec<u8>, bool) {
868        (
869            parse_public_key_as_compressed_vector(
870                "14bf57f76c260b51ec6bbc72dbd49f02a56eaed070b774dc4bad75a54653c3d56",
871                "7a231a23bf8b3aa31d9600d888a0678677a30e573decd3dc56b33f365cc11236",
872            ),
873            false, // x out of range
874        )
875    }
876
877    fn vector_public_key_validation_10() -> (Vec<u8>, bool) {
878        (
879            parse_public_key_as_compressed_vector(
880                "2fa74931ae816b426f484180e517f5050c92decfc8daf756cd91f54d51b302f1",
881                "5b994346137988c58c14ae2152ac2f6ad96d97decb33099bd8a0210114cd1141",
882            ),
883            true,
884        )
885    }
886
887    fn vector_public_key_validation_12() -> (Vec<u8>, bool) {
888        (
889            parse_public_key_as_compressed_vector(
890                "7a81a7e0b015252928d8b36e4ca37e92fdc328eb25c774b4f872693028c4be38",
891                "08862f7335147261e7b1c3d055f9a316e4cab7daf99cc09d1c647f5dd6e7d5bb",
892            ),
893            false, // point not on the curve
894        )
895    }
896
897    fn vector_sig_verification_1() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
898        let (public_key, sig, message) = parse_vector_sig_verification(
899            "87f8f2b218f49845f6f10eec3877136269f5c1a54736dbdf69f89940cad41555",
900            "e15f369036f49842fac7a86c8a2b0557609776814448b8f5e84aa9f4395205e9",
901            "d19ff48b324915576416097d2544f7cbdf8768b1454ad20e0baac50e211f23b0",
902            "a3e81e59311cdfff2d4784949f7a2cb50ba6c3a91fa54710568e61aca3e847c6",
903            "e4796db5f785f207aa30d311693b3702821dff1168fd2e04c0836825aefd850d9aa60326d88cde1a23c7
904            745351392ca2288d632c264f197d05cd424a30336c19fd09bb229654f0222fcb881a4b35c290a093ac159ce1
905            3409111ff0358411133c24f5b8e2090d6db6558afc36f06ca1f6ef779785adba68db27a409859fc4c4a0",
906        );
907        (public_key, sig, message, false)
908    }
909
910    fn vector_sig_verification_2() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
911        let (public_key, sig, message) = parse_vector_sig_verification(
912            "5cf02a00d205bdfee2016f7421807fc38ae69e6b7ccd064ee689fc1a94a9f7d2",
913            "ec530ce3cc5c9d1af463f264d685afe2b4db4b5828d7e61b748930f3ce622a85",
914            "dc23d130c6117fb5751201455e99f36f59aba1a6a21cf2d0e7481a97451d6693",
915            "d6ce7708c18dbf35d4f8aa7240922dc6823f2e7058cbc1484fcad1599db5018c",
916            "069a6e6b93dfee6df6ef6997cd80dd2182c36653cef10c655d524585655462d683877f95ecc6d6c81623
917            d8fac4e900ed0019964094e7de91f1481989ae1873004565789cbf5dc56c62aedc63f62f3b894c9c6f7788c8
918            ecaadc9bd0e81ad91b2b3569ea12260e93924fdddd3972af5273198f5efda0746219475017557616170e",
919        );
920        (public_key, sig, message, false)
921    }
922
923    fn vector_sig_verification_3() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
924        let (public_key, sig, message) = parse_vector_sig_verification(
925            "2ddfd145767883ffbb0ac003ab4a44346d08fa2570b3120dcce94562422244cb",
926            "5f70c7d11ac2b7a435ccfbbae02c3df1ea6b532cc0e9db74f93fffca7c6f9a64",
927            "9913111cff6f20c5bf453a99cd2c2019a4e749a49724a08774d14e4c113edda8",
928            "9467cd4cd21ecb56b0cab0a9a453b43386845459127a952421f5c6382866c5cc",
929            "df04a346cf4d0e331a6db78cca2d456d31b0a000aa51441defdb97bbeb20b94d8d746429a393ba88840d
930            661615e07def615a342abedfa4ce912e562af714959896858af817317a840dcff85a057bb91a3c2bf9010550
931            0362754a6dd321cdd86128cfc5f04667b57aa78c112411e42da304f1012d48cd6a7052d7de44ebcc01de",
932        );
933        (public_key, sig, message, false)
934    }
935
936    fn vector_sig_verification_4() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
937        let (public_key, sig, message) = parse_vector_sig_verification(
938            "e424dc61d4bb3cb7ef4344a7f8957a0c5134e16f7a67c074f82e6e12f49abf3c",
939            "970eed7aa2bc48651545949de1dddaf0127e5965ac85d1243d6f60e7dfaee927",
940            "bf96b99aa49c705c910be33142017c642ff540c76349b9dab72f981fd9347f4f",
941            "17c55095819089c2e03b9cd415abdf12444e323075d98f31920b9e0f57ec871c",
942            "e1130af6a38ccb412a9c8d13e15dbfc9e69a16385af3c3f1e5da954fd5e7c45fd75e2b8c36699228e928
943            40c0562fbf3772f07e17f1add56588dd45f7450e1217ad239922dd9c32695dc71ff2424ca0dec1321aa47064
944            a044b7fe3c2b97d03ce470a592304c5ef21eed9f93da56bb232d1eeb0035f9bf0dfafdcc4606272b20a3",
945        );
946        (public_key, sig, message, true)
947    }
948
949    fn vector_sig_verification_5() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
950        let (public_key, sig, message) = parse_vector_sig_verification(
951            "e0fc6a6f50e1c57475673ee54e3a57f9a49f3328e743bf52f335e3eeaa3d2864",
952            "7f59d689c91e463607d9194d99faf316e25432870816dde63f5d4b373f12f22a",
953            "1d75830cd36f4c9aa181b2c4221e87f176b7f05b7c87824e82e396c88315c407",
954            "cb2acb01dac96efc53a32d4a0d85d0c2e48955214783ecf50a4f0414a319c05a",
955            "73c5f6a67456ae48209b5f85d1e7de7758bf235300c6ae2bdceb1dcb27a7730fb68c950b7fcada0ecc46
956            61d3578230f225a875e69aaa17f1e71c6be5c831f22663bac63d0c7a9635edb0043ff8c6f26470f02a7bc565
957            56f1437f06dfa27b487a6c4290d8bad38d4879b334e341ba092dde4e4ae694a9c09302e2dbf443581c08",
958        );
959        // Valid vector we switch to invalid as the signature is not normalized.
960        (public_key, sig, message, true)
961    }
962
963    fn vector_sig_verification_6() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
964        let (public_key, sig, message) = parse_vector_sig_verification(
965            "a849bef575cac3c6920fbce675c3b787136209f855de19ffe2e8d29b31a5ad86",
966            "bf5fe4f7858f9b805bd8dcc05ad5e7fb889de2f822f3d8b41694e6c55c16b471",
967            "25acc3aa9d9e84c7abf08f73fa4195acc506491d6fc37cb9074528a7db87b9d6",
968            "9b21d5b5259ed3f2ef07dfec6cc90d3a37855d1ce122a85ba6a333f307d31537",
969            "666036d9b4a2426ed6585a4e0fd931a8761451d29ab04bd7dc6d0c5b9e38e6c2b263ff6cb837bd04399d
970            e3d757c6c7005f6d7a987063cf6d7e8cb38a4bf0d74a282572bd01d0f41e3fd066e3021575f0fa04f27b700d
971            5b7ddddf50965993c3f9c7118ed78888da7cb221849b3260592b8e632d7c51e935a0ceae15207bedd548",
972        );
973        (public_key, sig, message, false)
974    }
975
976    fn vector_sig_verification_7() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
977        let (public_key, sig, message) = parse_vector_sig_verification(
978            "3dfb6f40f2471b29b77fdccba72d37c21bba019efa40c1c8f91ec405d7dcc5df",
979            "f22f953f1e395a52ead7f3ae3fc47451b438117b1e04d613bc8555b7d6e6d1bb",
980            "548886278e5ec26bed811dbb72db1e154b6f17be70deb1b210107decb1ec2a5a",
981            "e93bfebd2f14f3d827ca32b464be6e69187f5edbd52def4f96599c37d58eee75",
982            "7e80436bce57339ce8da1b5660149a20240b146d108deef3ec5da4ae256f8f894edcbbc57b34ce37089c
983            0daa17f0c46cd82b5a1599314fd79d2fd2f446bd5a25b8e32fcf05b76d644573a6df4ad1dfea707b479d9723
984            7a346f1ec632ea5660efb57e8717a8628d7f82af50a4e84b11f21bdff6839196a880ae20b2a0918d58cd",
985        );
986        (public_key, sig, message, false)
987    }
988
989    fn vector_sig_verification_8() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
990        let (public_key, sig, message) = parse_vector_sig_verification(
991            "69b7667056e1e11d6caf6e45643f8b21e7a4bebda463c7fdbc13bc98efbd0214",
992            "d3f9b12eb46c7c6fda0da3fc85bc1fd831557f9abc902a3be3cb3e8be7d1aa2f",
993            "288f7a1cd391842cce21f00e6f15471c04dc182fe4b14d92dc18910879799790",
994            "247b3c4e89a3bcadfea73c7bfd361def43715fa382b8c3edf4ae15d6e55e9979",
995            "1669bfb657fdc62c3ddd63269787fc1c969f1850fb04c933dda063ef74a56ce13e3a649700820f0061ef
996            abf849a85d474326c8a541d99830eea8131eaea584f22d88c353965dabcdc4bf6b55949fd529507dfb803ab6
997            b480cd73ca0ba00ca19c438849e2cea262a1c57d8f81cd257fb58e19dec7904da97d8386e87b84948169",
998        );
999        (public_key, sig, message, false)
1000    }
1001
1002    fn vector_sig_verification_9() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1003        let (public_key, sig, message) = parse_vector_sig_verification(
1004            "bf02cbcf6d8cc26e91766d8af0b164fc5968535e84c158eb3bc4e2d79c3cc682",
1005            "069ba6cb06b49d60812066afa16ecf7b51352f2c03bd93ec220822b1f3dfba03",
1006            "f5acb06c59c2b4927fb852faa07faf4b1852bbb5d06840935e849c4d293d1bad",
1007            "049dab79c89cc02f1484c437f523e080a75f134917fda752f2d5ca397addfe5d",
1008            "3fe60dd9ad6caccf5a6f583b3ae65953563446c4510b70da115ffaa0ba04c076115c7043ab8733403cd6
1009            9c7d14c212c655c07b43a7c71b9a4cffe22c2684788ec6870dc2013f269172c822256f9e7cc674791bf2d848
1010            6c0f5684283e1649576efc982ede17c7b74b214754d70402fb4bb45ad086cf2cf76b3d63f7fce39ac970",
1011        );
1012        (public_key, sig, message, false)
1013    }
1014
1015    fn vector_sig_verification_10() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1016        let (public_key, sig, message) = parse_vector_sig_verification(
1017            "224a4d65b958f6d6afb2904863efd2a734b31798884801fcab5a590f4d6da9de",
1018            "178d51fddada62806f097aa615d33b8f2404e6b1479f5fd4859d595734d6d2b9",
1019            "87b93ee2fecfda54deb8dff8e426f3c72c8864991f8ec2b3205bb3b416de93d2",
1020            "4044a24df85be0cc76f21a4430b75b8e77b932a87f51e4eccbc45c263ebf8f66",
1021            "983a71b9994d95e876d84d28946a041f8f0a3f544cfcc055496580f1dfd4e312a2ad418fe69dbc61db23
1022            0cc0c0ed97e360abab7d6ff4b81ee970a7e97466acfd9644f828ffec538abc383d0e92326d1c88c55e1f46a6
1023            68a039beaa1be631a89129938c00a81a3ae46d4aecbf9707f764dbaccea3ef7665e4c4307fa0b0a3075c",
1024        );
1025        (public_key, sig, message, false)
1026    }
1027
1028    fn vector_sig_verification_11() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1029        let (public_key, sig, message) = parse_vector_sig_verification(
1030            "43691c7795a57ead8c5c68536fe934538d46f12889680a9cb6d055a066228369",
1031            "f8790110b3c3b281aa1eae037d4f1234aff587d903d93ba3af225c27ddc9ccac",
1032            "8acd62e8c262fa50dd9840480969f4ef70f218ebf8ef9584f199031132c6b1ce",
1033            "cfca7ed3d4347fb2a29e526b43c348ae1ce6c60d44f3191b6d8ea3a2d9c92154",
1034            "4a8c071ac4fd0d52faa407b0fe5dab759f7394a5832127f2a3498f34aac287339e043b4ffa79528faf19
1035            9dc917f7b066ad65505dab0e11e6948515052ce20cfdb892ffb8aa9bf3f1aa5be30a5bbe85823bddf70b39fd
1036            7ebd4a93a2f75472c1d4f606247a9821f1a8c45a6cb80545de2e0c6c0174e2392088c754e9c8443eb5af",
1037        );
1038        (public_key, sig, message, false)
1039    }
1040
1041    fn vector_sig_verification_12() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1042        let (public_key, sig, message) = parse_vector_sig_verification(
1043            "9157dbfcf8cf385f5bb1568ad5c6e2a8652ba6dfc63bc1753edf5268cb7eb596",
1044            "972570f4313d47fc96f7c02d5594d77d46f91e949808825b3d31f029e8296405",
1045            "dfaea6f297fa320b707866125c2a7d5d515b51a503bee817de9faa343cc48eeb",
1046            "8f780ad713f9c3e5a4f7fa4c519833dfefc6a7432389b1e4af463961f09764f2",
1047            "0a3a12c3084c865daf1d302c78215d39bfe0b8bf28272b3c0b74beb4b7409db0718239de700785581514
1048            321c6440a4bbaea4c76fa47401e151e68cb6c29017f0bce4631290af5ea5e2bf3ed742ae110b04ade83a5dbd
1049            7358f29a85938e23d87ac8233072b79c94670ff0959f9c7f4517862ff829452096c78f5f2e9a7e4e9216",
1050        );
1051        (public_key, sig, message, false)
1052    }
1053
1054    fn vector_sig_verification_13() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1055        let (public_key, sig, message) = parse_vector_sig_verification(
1056            "072b10c081a4c1713a294f248aef850e297991aca47fa96a7470abe3b8acfdda",
1057            "9581145cca04a0fb94cedce752c8f0370861916d2a94e7c647c5373ce6a4c8f5",
1058            "09f5483eccec80f9d104815a1be9cc1a8e5b12b6eb482a65c6907b7480cf4f19",
1059            "a4f90e560c5e4eb8696cb276e5165b6a9d486345dedfb094a76e8442d026378d",
1060            "785d07a3c54f63dca11f5d1a5f496ee2c2f9288e55007e666c78b007d95cc28581dce51f490b30fa73dc
1061            9e2d45d075d7e3a95fb8a9e1465ad191904124160b7c60fa720ef4ef1c5d2998f40570ae2a870ef3e894c2bc
1062            617d8a1dc85c3c55774928c38789b4e661349d3f84d2441a3b856a76949b9f1f80bc161648a1cad5588e",
1063        );
1064        (public_key, sig, message, false)
1065    }
1066
1067    fn vector_sig_verification_14() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1068        let (public_key, sig, message) = parse_vector_sig_verification(
1069            "09308ea5bfad6e5adf408634b3d5ce9240d35442f7fe116452aaec0d25be8c24",
1070            "f40c93e023ef494b1c3079b2d10ef67f3170740495ce2cc57f8ee4b0618b8ee5",
1071            "5cc8aa7c35743ec0c23dde88dabd5e4fcd0192d2116f6926fef788cddb754e73",
1072            "9c9c045ebaa1b828c32f82ace0d18daebf5e156eb7cbfdc1eff4399a8a900ae7",
1073            "76f987ec5448dd72219bd30bf6b66b0775c80b394851a43ff1f537f140a6e7229ef8cd72ad58b1d2d202
1074            98539d6347dd5598812bc65323aceaf05228f738b5ad3e8d9fe4100fd767c2f098c77cb99c2992843ba3eed9
1075            1d32444f3b6db6cd212dd4e5609548f4bb62812a920f6e2bf1581be1ebeebdd06ec4e971862cc42055ca",
1076        );
1077        (public_key, sig, message, false)
1078    }
1079
1080    fn vector_sig_verification_15() -> (PublicKey, Vec<u8>, Vec<u8>, bool) {
1081        let (public_key, sig, message) = parse_vector_sig_verification(
1082            "2d98ea01f754d34bbc3003df5050200abf445ec728556d7ed7d5c54c55552b6d",
1083            "9b52672742d637a32add056dfd6d8792f2a33c2e69dafabea09b960bc61e230a",
1084            "06108e525f845d0155bf60193222b3219c98e3d49424c2fb2a0987f825c17959",
1085            "62b5cdd591e5b507e560167ba8f6f7cda74673eb315680cb89ccbc4eec477dce",
1086            "60cd64b2cd2be6c33859b94875120361a24085f3765cb8b2bf11e026fa9d8855dbe435acf7882e84f3c7
1087            857f96e2baab4d9afe4588e4a82e17a78827bfdb5ddbd1c211fbc2e6d884cddd7cb9d90d5bf4a7311b83f352
1088            508033812c776a0e00c003c7e0d628e50736c7512df0acfa9f2320bd102229f46495ae6d0857cc452a84",
1089        );
1090        (public_key, sig, message, true)
1091    }
1092}