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use std::io;
use std::io::ErrorKind::InvalidData;
use {MAX_ENTRY_SIZE, Hash, Value, ValueRef};
use crypto::{HashState, Vault, Key, Identity, CryptoError};
use encode;
#[derive(Clone)]
pub struct Entry {
hash_state: Option<HashState>,
entry_hash: Option<Hash>,
hash: Hash,
doc: Hash,
field: String,
entry_len: usize,
entry: Vec<u8>,
signed_by: Vec<Identity>,
compressed: Option<Vec<u8>>,
override_compression: bool,
compression: Option<i32>,
validated: bool,
}
impl PartialEq for Entry {
fn eq(&self, other: &Self) -> bool {
self.hash() == other.hash()
}
}
impl Eq for Entry {}
impl Entry {
pub(crate) fn from_parts(
hash_state: Option<HashState>,
entry_hash: Option<Hash>,
hash: Hash,
doc: Hash,
field: String,
entry_len: usize,
entry: Vec<u8>,
signed_by: Vec<Identity>,
compressed: Option<Vec<u8>>,
override_compression: bool,
compression: Option<i32>,
) -> Entry {
Entry {
hash_state,
entry_hash,
hash,
doc,
field,
entry_len,
entry,
signed_by,
compressed,
override_compression,
compression,
validated: true
}
}
pub fn new(doc: Hash, field: String, v: Value) -> Result<Entry, ()> {
let mut entry = Vec::new();
encode::write_value(&mut entry, &v);
let entry_len = entry.len();
if entry_len > MAX_ENTRY_SIZE {
return Err(());
}
let mut entry = Entry {
doc,
field,
hash_state: None,
entry_hash: None,
hash: Hash::new_empty(),
entry_len,
entry,
signed_by: Vec::new(),
compressed: None,
override_compression: false,
compression: None,
validated: false
};
entry.populate_hash_state();
Ok(entry)
}
pub(crate) fn populate_hash_state(&mut self) {
let mut temp = Vec::new();
let mut hash_state = HashState::new();
self.doc.encode(&mut temp);
hash_state.update(&temp[..]);
temp.clear();
encode::write_value(&mut temp, &Value::from(self.field.clone()));
hash_state.update(&temp[..]);
hash_state.update(&self.entry[..self.entry_len]);
let entry_hash = hash_state.get_hash();
let hash = if self.entry.len() > self.entry_len {
hash_state.update(&self.entry[self.entry_len..]);
hash_state.get_hash()
} else {
entry_hash.clone()
};
self.hash_state = Some(hash_state);
self.entry_hash = Some(entry_hash);
self.hash = hash;
}
pub fn sign(&mut self, vault: &Vault, key: &Key) -> Result<(), CryptoError> {
if self.hash_state.is_none() || self.entry_hash.is_none() {
self.populate_hash_state();
}
let signature = vault.sign(self.entry_hash.as_ref().unwrap(), key)?;
self.signed_by.push(signature.signed_by().clone());
let len = self.entry.len();
signature.encode(&mut self.entry);
let new_len = self.entry.len();
if new_len > MAX_ENTRY_SIZE {
return Err(CryptoError::Io(io::Error::new(InvalidData, "Entry is too large with signature")));
}
if new_len > len {
let hash_state = self.hash_state.as_mut().unwrap();
hash_state.update(&self.entry[len..]);
self.hash = hash_state.get_hash();
}
self.compressed = None;
Ok(())
}
pub fn set_compression(&mut self, compression: Option<i32>) {
self.override_compression = true;
self.compression = compression;
}
pub fn reset_compression(&mut self) {
self.override_compression = false;
}
pub fn signed_by(&self) -> std::slice::Iter<Identity> {
self.signed_by.iter()
}
pub fn len(&self) -> usize {
self.entry.len()
}
pub fn hash(&self) -> &Hash {
&self.hash
}
pub fn doc_hash(&self) -> &Hash {
&self.doc
}
pub fn field(&self) -> &str {
self.field.as_str()
}
pub fn compression(&self) -> Option<i32> {
self.compression
}
pub fn override_compression(&self) -> bool {
self.override_compression
}
pub fn validated(&self) -> bool {
self.validated
}
pub fn value(&self) -> ValueRef {
super::decode::read_value_ref(&mut &self.entry[..]).unwrap()
}
pub(crate) fn raw_entry(&self) -> &[u8] {
&self.entry
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::crypto::{Vault, PasswordLevel};
fn test_entry() -> Entry {
let test: Value = fogpack!(vec![0u8, 1u8, 2u8]);
Entry::new(Hash::new_empty(), String::from(""), test).expect("Should be able to make entry")
}
fn prep_vault() -> (Vault, Key) {
let mut vault = Vault::new_from_password(PasswordLevel::Interactive, "test".to_string())
.expect("Should have been able to make a new vault for testing");
let key = vault.new_key();
(vault, key)
}
#[test]
fn equality_checks() {
let test0 = Entry::new(Hash::new_empty(), String::from("a"), fogpack!(vec![0u8, 1u8, 2u8]))
.expect("Should be able to make entry");
let test1 = test_entry();
let test2 = test_entry();
assert!(test0 != test1, "Different entries were considered equal");
assert!(test2 == test1, "Identically-generated entries weren't considered equal");
}
#[test]
fn large_data() {
let mut large_bin = Vec::new();
large_bin.resize(MAX_ENTRY_SIZE, 0u8);
let test: Value = fogpack!(large_bin.clone());
let test = Entry::new(Hash::new_empty(), String::from(""), test);
assert!(test.is_err(), "Should've been too large to encode as a document");
large_bin.resize(MAX_ENTRY_SIZE-5, 0u8);
let test: Value = fogpack!(large_bin);
let test = Entry::new(Hash::new_empty(), String::from(""), test);
assert!(test.is_ok(), "Should've been just small enough to encode as a document");
let mut test = test.unwrap();
let (vault, key) = prep_vault();
assert!(test.sign(&vault, &key).is_err(), "Should've failed because signing put it past the maximum allowed size");
}
}