* Moves all CTAP logic into its own library * workflows fix test * more coveralls workflow tests
154 lines
5.5 KiB
Rust
154 lines
5.5 KiB
Rust
// Copyright 2022 Google LLC
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use crate::ctap::hid::{
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CtapHid, CtapHidCommand, CtapHidError, HidPacket, HidPacketIterator, Message,
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};
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use crate::ctap::{Channel, CtapState};
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use crate::env::Env;
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/// Implements the non-standard command processing for HID.
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///
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/// Outside of the pure HID commands like INIT, only PING and CBOR commands are allowed.
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pub struct VendorHid<E: Env> {
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hid: CtapHid<E>,
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}
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impl<E: Env> Default for VendorHid<E> {
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/// Instantiates a HID handler for CTAP1, CTAP2 and Wink.
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fn default() -> Self {
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let hid = CtapHid::<E>::new(CtapHid::<E>::CAPABILITY_CBOR | CtapHid::<E>::CAPABILITY_NMSG);
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VendorHid { hid }
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}
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}
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impl<E: Env> VendorHid<E> {
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/// Processes an incoming USB HID packet, and returns an iterator for all outgoing packets.
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pub fn process_hid_packet(
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&mut self,
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env: &mut E,
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packet: &HidPacket,
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ctap_state: &mut CtapState<E>,
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) -> HidPacketIterator {
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if let Some(message) = self.hid.parse_packet(env, packet) {
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let processed_message = self.process_message(env, message, ctap_state);
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debug_ctap!(
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env,
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"Sending message through the second usage page: {:02x?}",
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processed_message
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);
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CtapHid::<E>::split_message(processed_message)
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} else {
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HidPacketIterator::none()
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}
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}
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/// Processes a message's commands that affect the protocol outside HID.
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pub fn process_message(
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&mut self,
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env: &mut E,
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message: Message,
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ctap_state: &mut CtapState<E>,
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) -> Message {
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let cid = message.cid;
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match message.cmd {
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// There are no custom CTAP1 commands.
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CtapHidCommand::Msg => CtapHid::<E>::error_message(cid, CtapHidError::InvalidCmd),
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// The CTAP2 processing function multiplexes internally.
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CtapHidCommand::Cbor => {
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let response =
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ctap_state.process_command(env, &message.payload, Channel::VendorHid(cid));
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Message {
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cid,
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cmd: CtapHidCommand::Cbor,
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payload: response,
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}
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}
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// Call Wink over the main HID.
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CtapHidCommand::Wink => CtapHid::<E>::error_message(cid, CtapHidError::InvalidCmd),
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// All other commands have already been processed, keep them as is.
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_ => message,
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}
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}
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}
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#[cfg(test)]
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mod test {
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use super::*;
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use crate::ctap::hid::ChannelID;
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use crate::env::test::TestEnv;
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fn new_initialized() -> (VendorHid<TestEnv>, ChannelID) {
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let (hid, cid) = CtapHid::new_initialized();
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(VendorHid::<TestEnv> { hid }, cid)
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}
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#[test]
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fn test_process_hid_packet() {
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let mut env = TestEnv::default();
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let mut ctap_state = CtapState::<TestEnv>::new(&mut env);
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let (mut vendor_hid, cid) = new_initialized();
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let mut ping_packet = [0x00; 64];
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ping_packet[..4].copy_from_slice(&cid);
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ping_packet[4..9].copy_from_slice(&[0x81, 0x00, 0x02, 0x99, 0x99]);
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let mut response = vendor_hid.process_hid_packet(&mut env, &ping_packet, &mut ctap_state);
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assert_eq!(response.next(), Some(ping_packet));
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assert_eq!(response.next(), None);
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}
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#[test]
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fn test_process_hid_packet_empty() {
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let mut env = TestEnv::default();
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let mut ctap_state = CtapState::<TestEnv>::new(&mut env);
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let (mut vendor_hid, cid) = new_initialized();
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let mut cancel_packet = [0x00; 64];
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cancel_packet[..4].copy_from_slice(&cid);
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cancel_packet[4..7].copy_from_slice(&[0x91, 0x00, 0x00]);
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let mut response = vendor_hid.process_hid_packet(&mut env, &cancel_packet, &mut ctap_state);
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assert_eq!(response.next(), None);
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}
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#[test]
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fn test_blocked_commands() {
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let mut env = TestEnv::default();
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let mut ctap_state = CtapState::<TestEnv>::new(&mut env);
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let (mut vendor_hid, cid) = new_initialized();
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// Usually longer, but we don't parse them anyway.
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let mut msg_packet = [0x00; 64];
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msg_packet[..4].copy_from_slice(&cid);
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msg_packet[4..7].copy_from_slice(&[0x83, 0x00, 0x00]);
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let mut wink_packet = [0x00; 64];
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wink_packet[..4].copy_from_slice(&cid);
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wink_packet[4..7].copy_from_slice(&[0x88, 0x00, 0x00]);
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let mut error_packet = [0x00; 64];
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error_packet[..4].copy_from_slice(&cid);
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error_packet[4..8].copy_from_slice(&[0xBF, 0x00, 0x01, 0x01]);
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let mut response = vendor_hid.process_hid_packet(&mut env, &msg_packet, &mut ctap_state);
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assert_eq!(response.next(), Some(error_packet));
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assert_eq!(response.next(), None);
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let mut response = vendor_hid.process_hid_packet(&mut env, &wink_packet, &mut ctap_state);
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assert_eq!(response.next(), Some(error_packet));
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assert_eq!(response.next(), None);
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}
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}
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