upgrade to secp256k1 0.15 and bitcoinconsensus 0.17
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@ -23,15 +23,17 @@ use-serde = ["serde", "bitcoin_hashes/serde"]
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bech32 = "0.7.1"
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byteorder = "1.2"
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bitcoin_hashes = "0.7"
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bitcoinconsensus = { version = "0.16", optional = true }
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secp256k1 = "0.12"
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bitcoinconsensus = { version = "0.17", optional = true }
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serde = { version = "1", optional = true }
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[dependencies.hex]
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version = "=0.3.2"
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[dependencies.secp256k1]
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version = "0.15"
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features = [ "rand" ]
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[dev-dependencies]
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serde_derive = "<1.0.99"
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serde_json = "1"
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serde_test = "1"
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secp256k1 = { version = "0.12", features = [ "rand" ] }
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@ -497,7 +497,7 @@ mod tests {
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use hashes::hex::{FromHex, ToHex};
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use hashes::{sha256d, Hash};
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use secp256k1::rand::{weak_rng, Rng, XorShiftRng};
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use secp256k1::rand::prelude::*;
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use consensus::encode::{deserialize, serialize};
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use util::hash::{bitcoin_merkle_root, BitcoinHash};
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@ -506,7 +506,7 @@ mod tests {
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#[test]
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fn pmt_tests() {
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let mut rng = weak_rng();
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let mut rng = thread_rng();
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let tx_counts = vec![1, 4, 7, 17, 56, 100, 127, 256, 312, 513, 1000, 4095];
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for num_tx in tx_counts {
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@ -693,7 +693,7 @@ mod tests {
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impl PartialMerkleTree {
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/// Flip one bit in one of the hashes - this should break the authentication
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fn damage(&mut self, rng: &mut XorShiftRng) {
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fn damage(&mut self, rng: &mut ThreadRng) {
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let n = rng.gen_range(0, self.hashes.len());
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let bit = rng.gen::<u8>();
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let hashes = &mut self.hashes;
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@ -125,6 +125,7 @@ pub fn signed_msg_hash(msg: &str) -> sha256d::Hash {
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#[cfg(all(test, feature="unstable"))]
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mod benches {
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use secp256k1::rand::{Rng, thread_rng};
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use secp256k1::rand::distributions::Standard;
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use super::hex_bytes;
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use test::Bencher;
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@ -138,7 +139,7 @@ mod benches {
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fn bench_from_hex(b: &mut Bencher, data_size: usize) {
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let data_bytes = thread_rng()
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.gen_iter()
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.sample_iter(&Standard)
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.take(data_size)
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.collect::<Vec<u8>>();
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let data = join(data_bytes.iter().map(|x| format!("{:02x}", x)), data_size * 2);
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