334 lines
8.8 KiB
Rust
334 lines
8.8 KiB
Rust
use libc::c_uint;
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use std::iter::repeat;
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use std::old_io::{IoError, Writer};
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use ffi;
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/// Message digest (hash) type.
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#[derive(Copy)]
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pub enum Type {
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MD5,
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SHA1,
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SHA224,
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SHA256,
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SHA384,
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SHA512,
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RIPEMD160
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}
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impl Type {
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/// Returns the length of the message digest.
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#[inline]
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pub fn md_len(&self) -> usize {
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use self::Type::*;
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match *self {
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MD5 => 16,
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SHA1 => 20,
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SHA224 => 28,
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SHA256 => 32,
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SHA384 => 48,
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SHA512 => 64,
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RIPEMD160 => 20,
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}
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}
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/// Internal interface subject to removal.
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#[inline]
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pub fn evp_md(&self) -> *const ffi::EVP_MD {
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unsafe {
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use self::Type::*;
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match *self {
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MD5 => ffi::EVP_md5(),
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SHA1 => ffi::EVP_sha1(),
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SHA224 => ffi::EVP_sha224(),
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SHA256 => ffi::EVP_sha256(),
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SHA384 => ffi::EVP_sha384(),
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SHA512 => ffi::EVP_sha512(),
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RIPEMD160 => ffi::EVP_ripemd160(),
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}
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}
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}
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}
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#[derive(PartialEq, Copy)]
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enum State {
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Reset,
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Updated,
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Finalized,
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}
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use self::State::*;
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/// Provides message digest (hash) computation.
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///
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/// # Examples
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///
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/// Calculate a hash in one go.
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///
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/// ```
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/// use openssl::crypto::hash::{hash, Type};
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/// let data = b"\x42\xF4\x97\xE0";
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/// let spec = b"\x7c\x43\x0f\x17\x8a\xef\xdf\x14\x87\xfe\xe7\x14\x4e\x96\x41\xe2";
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/// let res = hash(Type::MD5, data);
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/// assert_eq!(res, spec);
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/// ```
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///
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/// Use the `Writer` trait to supply the input in chunks.
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///
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/// ```
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/// use std::old_io::Writer;
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/// use openssl::crypto::hash::{Hasher, Type};
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/// let data = [b"\x42\xF4", b"\x97\xE0"];
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/// let spec = b"\x7c\x43\x0f\x17\x8a\xef\xdf\x14\x87\xfe\xe7\x14\x4e\x96\x41\xe2";
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/// let mut h = Hasher::new(Type::MD5);
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/// h.write_all(data[0]);
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/// h.write_all(data[1]);
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/// let res = h.finish();
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/// assert_eq!(res, spec);
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/// ```
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///
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/// # Warning
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///
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/// Don't actually use MD5 and SHA-1 hashes, they're not secure anymore.
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///
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/// Don't ever hash passwords, use `crypto::pkcs5` or bcrypt/scrypt instead.
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pub struct Hasher {
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ctx: *mut ffi::EVP_MD_CTX,
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md: *const ffi::EVP_MD,
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type_: Type,
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state: State,
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}
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impl Hasher {
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/// Creates a new `Hasher` with the specified hash type.
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pub fn new(ty: Type) -> Hasher {
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ffi::init();
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let ctx = unsafe {
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let r = ffi::EVP_MD_CTX_create();
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assert!(!r.is_null());
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r
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};
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let md = ty.evp_md();
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let mut h = Hasher { ctx: ctx, md: md, type_: ty, state: Finalized };
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h.init();
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h
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}
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#[inline]
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fn init(&mut self) {
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match self.state {
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Reset => return,
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Updated => { self.finalize(); },
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Finalized => (),
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}
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unsafe {
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let r = ffi::EVP_DigestInit_ex(self.ctx, self.md, 0 as *const _);
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assert_eq!(r, 1);
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}
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self.state = Reset;
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}
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#[inline]
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fn update(&mut self, data: &[u8]) {
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if self.state == Finalized {
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self.init();
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}
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unsafe {
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let r = ffi::EVP_DigestUpdate(self.ctx, data.as_ptr(),
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data.len() as c_uint);
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assert_eq!(r, 1);
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}
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self.state = Updated;
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}
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#[inline]
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fn finalize(&mut self) -> Vec<u8> {
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if self.state == Finalized {
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self.init();
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}
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let md_len = self.type_.md_len();
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let mut res: Vec<u8> = repeat(0).take(md_len).collect();
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unsafe {
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let mut len = 0;
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let r = ffi::EVP_DigestFinal_ex(self.ctx, res.as_mut_ptr(), &mut len);
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self.state = Finalized;
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assert_eq!(len as usize, md_len);
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assert_eq!(r, 1);
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}
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res
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}
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/// Returns the hash of the data written since creation or
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/// the last `finish` and resets the hasher.
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#[inline]
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pub fn finish(&mut self) -> Vec<u8> {
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self.finalize()
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}
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}
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impl Writer for Hasher {
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#[inline]
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fn write_all(&mut self, buf: &[u8]) -> Result<(), IoError> {
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self.update(buf);
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Ok(())
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}
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}
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impl Clone for Hasher {
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fn clone(&self) -> Hasher {
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let ctx = unsafe {
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let ctx = ffi::EVP_MD_CTX_create();
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assert!(!ctx.is_null());
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let r = ffi::EVP_MD_CTX_copy_ex(ctx, self.ctx);
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assert_eq!(r, 1);
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ctx
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};
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Hasher { ctx: ctx, md: self.md, type_: self.type_, state: self.state }
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}
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}
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impl Drop for Hasher {
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fn drop(&mut self) {
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unsafe {
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if self.state != Finalized {
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let mut buf: Vec<u8> = repeat(0).take(self.type_.md_len()).collect();
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let mut len = 0;
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ffi::EVP_DigestFinal_ex(self.ctx, buf.as_mut_ptr(), &mut len);
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}
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ffi::EVP_MD_CTX_destroy(self.ctx);
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}
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}
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}
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/// Computes the hash of the `data` with the hash `t`.
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pub fn hash(t: Type, data: &[u8]) -> Vec<u8> {
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let mut h = Hasher::new(t);
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let _ = h.write_all(data);
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h.finish()
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}
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#[cfg(test)]
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mod tests {
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use serialize::hex::{FromHex, ToHex};
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use super::{hash, Hasher, Type};
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use std::old_io::Writer;
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fn hash_test(hashtype: Type, hashtest: &(&str, &str)) {
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let res = hash(hashtype, &*hashtest.0.from_hex().unwrap());
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assert_eq!(res.to_hex(), hashtest.1);
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}
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fn hash_recycle_test(h: &mut Hasher, hashtest: &(&str, &str)) {
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let _ = h.write_all(&*hashtest.0.from_hex().unwrap());
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let res = h.finish();
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assert_eq!(res.to_hex(), hashtest.1);
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}
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// Test vectors from http://www.nsrl.nist.gov/testdata/
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#[allow(non_upper_case_globals)]
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const md5_tests: [(&'static str, &'static str); 13] = [
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("", "d41d8cd98f00b204e9800998ecf8427e"),
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("7F", "83acb6e67e50e31db6ed341dd2de1595"),
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("EC9C", "0b07f0d4ca797d8ac58874f887cb0b68"),
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("FEE57A", "e0d583171eb06d56198fc0ef22173907"),
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("42F497E0", "7c430f178aefdf1487fee7144e9641e2"),
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("C53B777F1C", "75ef141d64cb37ec423da2d9d440c925"),
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("89D5B576327B", "ebbaf15eb0ed784c6faa9dc32831bf33"),
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("5D4CCE781EB190", "ce175c4b08172019f05e6b5279889f2c"),
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("81901FE94932D7B9", "cd4d2f62b8cdb3a0cf968a735a239281"),
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("C9FFDEE7788EFB4EC9", "e0841a231ab698db30c6c0f3f246c014"),
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("66AC4B7EBA95E53DC10B", "a3b3cea71910d9af56742aa0bb2fe329"),
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("A510CD18F7A56852EB0319", "577e216843dd11573574d3fb209b97d8"),
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("AAED18DBE8938C19ED734A8D", "6f80fb775f27e0a4ce5c2f42fc72c5f1")
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];
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#[test]
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fn test_md5() {
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for test in md5_tests.iter() {
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hash_test(Type::MD5, test);
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}
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}
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#[test]
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fn test_md5_recycle() {
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let mut h = Hasher::new(Type::MD5);
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for test in md5_tests.iter() {
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hash_recycle_test(&mut h, test);
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}
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}
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#[test]
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fn test_finish_twice() {
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let mut h = Hasher::new(Type::MD5);
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let _ = h.write_all(&*md5_tests[6].0.from_hex().unwrap());
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let _ = h.finish();
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let res = h.finish();
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let null = hash(Type::MD5, &[]);
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assert_eq!(res, null);
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}
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#[test]
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fn test_clone() {
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let i = 7;
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let inp = md5_tests[i].0.from_hex().unwrap();
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assert!(inp.len() > 2);
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let p = inp.len() / 2;
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let h0 = Hasher::new(Type::MD5);
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println!("Clone a new hasher");
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let mut h1 = h0.clone();
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let _ = h1.write_all(&inp[..p]);
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{
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println!("Clone an updated hasher");
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let mut h2 = h1.clone();
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let _ = h2.write_all(&inp[p..]);
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let res = h2.finish();
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assert_eq!(res.to_hex(), md5_tests[i].1);
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}
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let _ = h1.write_all(&inp[p..]);
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let res = h1.finish();
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assert_eq!(res.to_hex(), md5_tests[i].1);
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println!("Clone a finished hasher");
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let mut h3 = h1.clone();
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let _ = h3.write_all(&*md5_tests[i + 1].0.from_hex().unwrap());
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let res = h3.finish();
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assert_eq!(res.to_hex(), md5_tests[i + 1].1);
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}
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#[test]
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fn test_sha1() {
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let tests = [
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("616263", "a9993e364706816aba3e25717850c26c9cd0d89d"),
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];
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for test in tests.iter() {
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hash_test(Type::SHA1, test);
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}
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}
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#[test]
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fn test_sha256() {
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let tests = [
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("616263", "ba7816bf8f01cfea414140de5dae2223b00361a396177a9cb410ff61f20015ad")
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];
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for test in tests.iter() {
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hash_test(Type::SHA256, test);
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}
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}
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#[test]
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fn test_ripemd160() {
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let tests = [
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("616263", "8eb208f7e05d987a9b044a8e98c6b087f15a0bfc")
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];
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for test in tests.iter() {
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hash_test(Type::RIPEMD160, test);
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}
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}
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}
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