7b66de1166
Let’s continue reexporting jid and minidom, but not their inner pub items, users of this crate can go one level deeper if they need that. Only xso::error::Error is still useful to reexport, as this is part of the public API of all of our parsers.
344 lines
12 KiB
Rust
344 lines
12 KiB
Rust
// Copyright (c) 2017 Emmanuel Gil Peyrot <linkmauve@linkmauve.fr>
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//
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// This Source Code Form is subject to the terms of the Mozilla Public
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// License, v. 2.0. If a copy of the MPL was not distributed with this
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// file, You can obtain one at http://mozilla.org/MPL/2.0/.
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use crate::data_forms::DataForm;
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use crate::disco::{DiscoInfoQuery, DiscoInfoResult, Feature, Identity};
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use crate::hashes::{Algo, Hash};
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use crate::ns;
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use crate::presence::PresencePayload;
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use base64::{engine::general_purpose::STANDARD as Base64, Engine};
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use blake2::Blake2bVar;
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use digest::{Digest, Update, VariableOutput};
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use minidom::Element;
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use sha1::Sha1;
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use sha2::{Sha256, Sha512};
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use sha3::{Sha3_256, Sha3_512};
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use xso::error::{Error, FromElementError};
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/// Represents a capability hash for a given client.
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#[derive(Debug, Clone)]
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pub struct Caps {
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/// Deprecated list of additional feature bundles.
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pub ext: Option<String>,
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/// A URI identifying an XMPP application.
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pub node: String,
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/// The hash of that application’s
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/// [disco#info](../disco/struct.DiscoInfoResult.html).
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///
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/// Warning: This protocol is insecure, you may want to switch to
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/// [ecaps2](../ecaps2/index.html) instead, see [this
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/// email](https://mail.jabber.org/pipermail/security/2009-July/000812.html).
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pub hash: Hash,
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}
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impl PresencePayload for Caps {}
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impl TryFrom<Element> for Caps {
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type Error = FromElementError;
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fn try_from(elem: Element) -> Result<Caps, FromElementError> {
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check_self!(elem, "c", CAPS, "caps");
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check_no_children!(elem, "caps");
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check_no_unknown_attributes!(elem, "caps", ["hash", "ver", "ext", "node"]);
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let ver: String = get_attr!(elem, "ver", Required);
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let hash = Hash {
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algo: get_attr!(elem, "hash", Required),
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hash: Base64.decode(ver).map_err(Error::text_parse_error)?,
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};
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Ok(Caps {
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ext: get_attr!(elem, "ext", Option),
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node: get_attr!(elem, "node", Required),
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hash,
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})
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}
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}
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impl From<Caps> for Element {
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fn from(caps: Caps) -> Element {
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Element::builder("c", ns::CAPS)
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.attr("ext", caps.ext)
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.attr("hash", caps.hash.algo)
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.attr("node", caps.node)
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.attr("ver", Base64.encode(&caps.hash.hash))
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.build()
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}
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}
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impl Caps {
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/// Create a Caps element from its node and hash.
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pub fn new<N: Into<String>>(node: N, hash: Hash) -> Caps {
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Caps {
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ext: None,
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node: node.into(),
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hash,
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}
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}
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}
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fn compute_item(field: &str) -> Vec<u8> {
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let mut bytes = field.as_bytes().to_vec();
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bytes.push(b'<');
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bytes
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}
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fn compute_items<T, F: Fn(&T) -> Vec<u8>>(things: &[T], encode: F) -> Vec<u8> {
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let mut string: Vec<u8> = vec![];
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let mut accumulator: Vec<Vec<u8>> = vec![];
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for thing in things {
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let bytes = encode(thing);
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accumulator.push(bytes);
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}
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// This works using the expected i;octet collation.
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accumulator.sort();
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for mut bytes in accumulator {
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string.append(&mut bytes);
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}
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string
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}
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fn compute_features(features: &[Feature]) -> Vec<u8> {
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compute_items(features, |feature| compute_item(&feature.var))
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}
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fn compute_identities(identities: &[Identity]) -> Vec<u8> {
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compute_items(identities, |identity| {
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let lang = identity.lang.clone().unwrap_or_default();
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let name = identity.name.clone().unwrap_or_default();
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let string = format!("{}/{}/{}/{}", identity.category, identity.type_, lang, name);
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let bytes = string.as_bytes();
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let mut vec = Vec::with_capacity(bytes.len());
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vec.extend_from_slice(bytes);
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vec.push(b'<');
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vec
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})
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}
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fn compute_extensions(extensions: &[DataForm]) -> Vec<u8> {
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compute_items(extensions, |extension| {
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let mut bytes = vec![];
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// TODO: maybe handle the error case?
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if let Some(ref form_type) = extension.form_type {
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bytes.extend_from_slice(form_type.as_bytes());
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}
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bytes.push(b'<');
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for field in extension.fields.clone() {
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if field.var.as_deref() == Some("FORM_TYPE") {
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continue;
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}
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if let Some(var) = &field.var {
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bytes.append(&mut compute_item(var));
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}
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bytes.append(&mut compute_items(&field.values, |value| {
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compute_item(value)
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}));
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}
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bytes
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})
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}
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/// Applies the caps algorithm on the provided disco#info result, to generate
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/// the hash input.
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///
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/// Warning: This protocol is insecure, you may want to switch to
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/// [ecaps2](../ecaps2/index.html) instead, see [this
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/// email](https://mail.jabber.org/pipermail/security/2009-July/000812.html).
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pub fn compute_disco(disco: &DiscoInfoResult) -> Vec<u8> {
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let identities_string = compute_identities(&disco.identities);
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let features_string = compute_features(&disco.features);
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let extensions_string = compute_extensions(&disco.extensions);
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let mut final_string = vec![];
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final_string.extend(identities_string);
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final_string.extend(features_string);
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final_string.extend(extensions_string);
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final_string
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}
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fn get_hash_vec(hash: &[u8]) -> Vec<u8> {
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hash.to_vec()
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}
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/// Hashes the result of [compute_disco()] with one of the supported [hash
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/// algorithms](../hashes/enum.Algo.html).
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pub fn hash_caps(data: &[u8], algo: Algo) -> Result<Hash, String> {
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Ok(Hash {
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hash: match algo {
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Algo::Sha_1 => {
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let hash = Sha1::digest(data);
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get_hash_vec(hash.as_slice())
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}
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Algo::Sha_256 => {
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let hash = Sha256::digest(data);
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get_hash_vec(hash.as_slice())
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}
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Algo::Sha_512 => {
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let hash = Sha512::digest(data);
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get_hash_vec(hash.as_slice())
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}
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Algo::Sha3_256 => {
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let hash = Sha3_256::digest(data);
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get_hash_vec(hash.as_slice())
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}
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Algo::Sha3_512 => {
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let hash = Sha3_512::digest(data);
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get_hash_vec(hash.as_slice())
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}
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Algo::Blake2b_256 => {
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let mut hasher = Blake2bVar::new(32).unwrap();
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hasher.update(data);
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let mut vec = vec![0u8; 32];
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hasher.finalize_variable(&mut vec).unwrap();
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vec
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}
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Algo::Blake2b_512 => {
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let mut hasher = Blake2bVar::new(64).unwrap();
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hasher.update(data);
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let mut vec = vec![0u8; 64];
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hasher.finalize_variable(&mut vec).unwrap();
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vec
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}
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Algo::Unknown(algo) => return Err(format!("Unknown algorithm: {}.", algo)),
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},
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algo,
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})
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}
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/// Helper function to create the query for the disco#info corresponding to a
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/// caps hash.
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pub fn query_caps(caps: Caps) -> DiscoInfoQuery {
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DiscoInfoQuery {
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node: Some(format!("{}#{}", caps.node, Base64.encode(&caps.hash.hash))),
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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 super::*;
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use crate::caps;
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#[cfg(target_pointer_width = "32")]
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#[test]
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fn test_size() {
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assert_size!(Caps, 48);
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}
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#[cfg(target_pointer_width = "64")]
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#[test]
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fn test_size() {
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assert_size!(Caps, 96);
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}
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#[test]
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fn test_parse() {
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let elem: Element = "<c xmlns='http://jabber.org/protocol/caps' hash='sha-256' node='coucou' ver='K1Njy3HZBThlo4moOD5gBGhn0U0oK7/CbfLlIUDi6o4='/>".parse().unwrap();
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let caps = Caps::try_from(elem).unwrap();
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assert_eq!(caps.node, String::from("coucou"));
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assert_eq!(caps.hash.algo, Algo::Sha_256);
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assert_eq!(
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caps.hash.hash,
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Base64
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.decode("K1Njy3HZBThlo4moOD5gBGhn0U0oK7/CbfLlIUDi6o4=")
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.unwrap()
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);
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}
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#[cfg(not(feature = "disable-validation"))]
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#[test]
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fn test_invalid_child() {
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let elem: Element = "<c xmlns='http://jabber.org/protocol/caps'><hash xmlns='urn:xmpp:hashes:2' algo='sha-256'>K1Njy3HZBThlo4moOD5gBGhn0U0oK7/CbfLlIUDi6o4=</hash></c>".parse().unwrap();
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let error = Caps::try_from(elem).unwrap_err();
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let message = match error {
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FromElementError::Invalid(Error::Other(string)) => string,
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_ => panic!(),
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};
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assert_eq!(message, "Unknown child in caps element.");
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}
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#[test]
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fn test_simple() {
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let elem: Element = "<query xmlns='http://jabber.org/protocol/disco#info'><identity category='client' type='pc'/><feature var='http://jabber.org/protocol/disco#info'/></query>".parse().unwrap();
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let disco = DiscoInfoResult::try_from(elem).unwrap();
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let caps = caps::compute_disco(&disco);
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assert_eq!(caps.len(), 50);
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}
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#[test]
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fn test_xep_5_2() {
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let elem: Element = r#"<query xmlns='http://jabber.org/protocol/disco#info'
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node='http://psi-im.org#q07IKJEyjvHSyhy//CH0CxmKi8w='>
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<identity category='client' name='Exodus 0.9.1' type='pc'/>
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<feature var='http://jabber.org/protocol/caps'/>
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<feature var='http://jabber.org/protocol/disco#info'/>
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<feature var='http://jabber.org/protocol/disco#items'/>
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<feature var='http://jabber.org/protocol/muc'/>
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</query>
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"#
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.parse()
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.unwrap();
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let data = b"client/pc//Exodus 0.9.1<http://jabber.org/protocol/caps<http://jabber.org/protocol/disco#info<http://jabber.org/protocol/disco#items<http://jabber.org/protocol/muc<";
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let mut expected = Vec::with_capacity(data.len());
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expected.extend_from_slice(data);
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let disco = DiscoInfoResult::try_from(elem).unwrap();
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let caps = caps::compute_disco(&disco);
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assert_eq!(caps, expected);
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let sha_1 = caps::hash_caps(&caps, Algo::Sha_1).unwrap();
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assert_eq!(
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sha_1.hash,
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Base64.decode("QgayPKawpkPSDYmwT/WM94uAlu0=").unwrap()
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);
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}
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#[test]
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fn test_xep_5_3() {
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let elem: Element = r#"<query xmlns='http://jabber.org/protocol/disco#info'
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node='http://psi-im.org#q07IKJEyjvHSyhy//CH0CxmKi8w='>
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<identity xml:lang='en' category='client' name='Psi 0.11' type='pc'/>
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<identity xml:lang='el' category='client' name='Ψ 0.11' type='pc'/>
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<feature var='http://jabber.org/protocol/caps'/>
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<feature var='http://jabber.org/protocol/disco#info'/>
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<feature var='http://jabber.org/protocol/disco#items'/>
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<feature var='http://jabber.org/protocol/muc'/>
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<x xmlns='jabber:x:data' type='result'>
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<field var='FORM_TYPE' type='hidden'>
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<value>urn:xmpp:dataforms:softwareinfo</value>
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</field>
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<field var='ip_version'>
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<value>ipv4</value>
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<value>ipv6</value>
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</field>
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<field var='os'>
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<value>Mac</value>
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</field>
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<field var='os_version'>
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<value>10.5.1</value>
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</field>
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<field var='software'>
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<value>Psi</value>
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</field>
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<field var='software_version'>
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<value>0.11</value>
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</field>
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</x>
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</query>
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"#
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.parse()
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.unwrap();
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let expected = b"client/pc/el/\xce\xa8 0.11<client/pc/en/Psi 0.11<http://jabber.org/protocol/caps<http://jabber.org/protocol/disco#info<http://jabber.org/protocol/disco#items<http://jabber.org/protocol/muc<urn:xmpp:dataforms:softwareinfo<ip_version<ipv4<ipv6<os<Mac<os_version<10.5.1<software<Psi<software_version<0.11<".to_vec();
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let disco = DiscoInfoResult::try_from(elem).unwrap();
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let caps = caps::compute_disco(&disco);
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assert_eq!(caps, expected);
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let sha_1 = caps::hash_caps(&caps, Algo::Sha_1).unwrap();
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assert_eq!(
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sha_1.hash,
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Base64.decode("q07IKJEyjvHSyhy//CH0CxmKi8w=").unwrap()
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);
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}
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}
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