// You should have received a copy of the GNU General Public License
// along with this program. If not, see <https://www.gnu.org/licenses/>.
-use serde::ser::{Serialize, SerializeStruct, Serializer};
+use serde::{Deserialize, Serialize};
use std::collections::HashMap;
use std::net::UdpSocket;
use std::time::{Duration, SystemTime, UNIX_EPOCH};
seq: u16,
}
-#[derive(Debug)]
+#[derive(Debug, Deserialize, Serialize)]
struct Message {
- key: MessageKey,
+ epoch: u32,
+ device: u16,
+ seq: u16,
t: u64,
}
-impl Serialize for Message {
- // https://github.com/BurntSushi/rust-csv/issues/155
- // https://github.com/BurntSushi/rust-csv/issues/98
- // https://github.com/BurntSushi/rust-csv/pull/223
- // csv doesn't support #[serde(flatten)], so we implement this directly. :(
- fn serialize<S: Serializer>(&self, serializer: S) -> Result<S::Ok, S::Error> {
- let mut row = serializer.serialize_struct("Message", 4)?;
- row.serialize_field("epoch", &self.key.epoch)?;
- row.serialize_field("device", &self.key.device)?;
- row.serialize_field("seq", &self.key.seq)?;
- row.serialize_field("t", &self.t)?;
- row.end()
+impl Message {
+ fn key(&self) -> MessageKey {
+ MessageKey {
+ epoch: self.epoch,
+ device: self.device,
+ seq: self.seq,
+ }
}
}
let ago = u32::from_be_bytes(value[8..=11].try_into().expect("I can't count"));
let press_time = SystemTime::now() - Duration::new(ago.into(), 0);
Self {
- key: MessageKey {
- epoch: u32::from_be_bytes(value[0..=3].try_into().expect("I can't count")),
- device: u16::from_be_bytes(value[4..=5].try_into().expect("I can't count")),
- seq: u16::from_be_bytes(value[6..=7].try_into().expect("I can't count")),
- },
+ epoch: u32::from_be_bytes(value[0..=3].try_into().expect("I can't count")),
+ device: u16::from_be_bytes(value[4..=5].try_into().expect("I can't count")),
+ seq: u16::from_be_bytes(value[6..=7].try_into().expect("I can't count")),
t: press_time
.duration_since(UNIX_EPOCH)
.expect("Bad time?")
}
fn merge_message(presses: &mut HashMap<MessageKey, Range>, message: Message) {
- if let Some(r) = presses.get_mut(&message.key) {
+ let key = message.key();
+ if let Some(r) = presses.get_mut(&key) {
if !r.contains(&message.t) {
r.extend(&message.t);
}
} else {
- presses.insert(message.key, Range::new(&message.t));
+ presses.insert(key, Range::new(&message.t));
+ }
+}
+
+fn replay_log() -> HashMap<MessageKey, Range> {
+ let mut presses = HashMap::new();
+ if std::path::Path::new(LOGFILENAME).exists() {
+ let mut log = csv::Reader::from_path(LOGFILENAME).expect("Couldn't open log for replay");
+ for message in log.deserialize() {
+ merge_message(
+ &mut presses,
+ message.expect("Error reading log during replay"),
+ );
+ }
}
+ presses
}
fn open_log_for_writing() -> csv::Writer<std::fs::File> {
fn main() {
let socket = UdpSocket::bind("0.0.0.0:29803").expect("couldn't bind to address");
- let mut presses = HashMap::<MessageKey, Range>::new();
+ let mut presses = replay_log();
let mut log = open_log_for_writing();
loop {
let mut buf = [0; MESSAGE_SIZE];