mirror of
https://github.com/scottlamb/moonfire-nvr.git
synced 2024-12-25 14:45:54 -05:00
add a TimerGuard around db locks & ops
I moved the clocks member from LockedDatabase to Database to make this happen, so the new DatabaseGuard (replacing a direct MutexGuard<LockedDatabase>) can access it before acquiring the lock. I also made the type of clock a type parameter of Database (and so several other things throughout the system). This allowed me to drop the Arc<>, but more importantly it means that the Clocks trait doesn't need to stay object-safe. I plan to take advantage of that shortly.
This commit is contained in:
parent
c0da1ef880
commit
addeb9d2f6
@ -62,7 +62,7 @@ pub fn retry_forever<T, E: Into<Error>>(clocks: &Clocks, f: &mut FnMut() -> Resu
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}
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}
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#[derive(Clone)]
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#[derive(Copy, Clone)]
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pub struct RealClocks {}
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impl RealClocks {
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166
db/db.rs
166
db/db.rs
@ -52,7 +52,7 @@
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//! A list of mutations is built up in-memory and occasionally flushed to reduce SSD write
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//! cycles.
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use base::clock::Clocks;
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use base::clock::{self, Clocks};
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use dir;
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use failure::Error;
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use fnv::{self, FnvHashMap, FnvHashSet};
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@ -565,7 +565,6 @@ fn init_recordings(conn: &mut rusqlite::Connection, stream_id: i32, camera: &Cam
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}
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pub struct LockedDatabase {
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clocks: Arc<Clocks>,
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conn: rusqlite::Connection,
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uuid: Uuid,
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@ -812,16 +811,10 @@ impl LockedDatabase {
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Ok(())
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}
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/// Tries to flush unwritten changes from the stream directories.
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/// Helper for `DatabaseGuard::flush()` and `Database::drop()`.
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///
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/// * commits any recordings added with `add_recording` that have since been marked as
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/// synced.
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/// * moves old recordings to the garbage table as requested by `delete_oldest_recordings`.
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/// * removes entries from the garbage table as requested by `mark_sample_files_deleted`.
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///
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/// On success, for each affected sample file directory with a flush watcher set, sends a
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/// `Flush` event.
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pub(crate) fn flush(&mut self, reason: &str) -> Result<(), Error> {
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/// The public API is in `DatabaseGuard::flush()`; it supplies the `Clocks` to this function.
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fn flush<C: Clocks>(&mut self, clocks: &C, reason: &str) -> Result<(), Error> {
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let o = match self.open.as_ref() {
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None => bail!("database is read-only"),
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Some(o) => o,
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@ -873,8 +866,8 @@ impl LockedDatabase {
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let mut stmt = tx.prepare_cached(
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r"update open set duration_90k = ?, end_time_90k = ? where id = ?")?;
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let rows = stmt.execute(&[
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&(recording::Time::new(self.clocks.monotonic()) - self.open_monotonic).0,
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&recording::Time::new(self.clocks.realtime()).0,
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&(recording::Time::new(clocks.monotonic()) - self.open_monotonic).0,
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&recording::Time::new(clocks.realtime()).0,
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&o.id,
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])?;
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if rows != 1 {
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@ -1692,6 +1685,21 @@ impl LockedDatabase {
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}
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}
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/// Initializes a database.
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/// Note this doesn't set journal options, so that it can be used on in-memory databases for
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/// test code.
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pub fn init(conn: &mut rusqlite::Connection) -> Result<(), Error> {
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let tx = conn.transaction()?;
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tx.execute_batch(include_str!("schema.sql"))?;
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{
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let uuid = ::uuid::Uuid::new_v4();
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let uuid_bytes = &uuid.as_bytes()[..];
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tx.execute("insert into meta (uuid) values (?)", &[&uuid_bytes])?;
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}
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tx.commit()?;
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Ok(())
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}
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/// Gets the schema version from the given database connection.
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/// A fully initialized database will return `Ok(Some(version))` where `version` is an integer that
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/// can be compared to `EXPECTED_VERSION`. An empty database will return `Ok(None)`. A partially
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@ -1709,28 +1717,37 @@ pub fn get_schema_version(conn: &rusqlite::Connection) -> Result<Option<i32>, Er
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/// The recording database. Abstracts away SQLite queries. Also maintains in-memory state
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/// (loaded on startup, and updated on successful commit) to avoid expensive scans over the
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/// recording table on common queries.
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pub struct Database(
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pub struct Database<C: Clocks + Clone = clock::RealClocks> {
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/// This is wrapped in an `Option` to allow the `Drop` implementation and `close` to coexist.
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Option<Mutex<LockedDatabase>>
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);
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db: Option<Mutex<LockedDatabase>>,
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impl Drop for Database {
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/// This is kept separately from the `LockedDatabase` to allow the `lock()` operation itself to
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/// access it. It doesn't need a `Mutex` anyway; it's `Sync`, and all operations work on
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/// `&self`.
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clocks: C,
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}
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impl<C: Clocks + Clone> Drop for Database<C> {
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fn drop(&mut self) {
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if ::std::thread::panicking() {
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return; // don't flush while panicking.
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}
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if let Some(m) = self.0.take() {
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if let Err(e) = m.into_inner().flush("drop") {
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if let Some(m) = self.db.take() {
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if let Err(e) = m.into_inner().flush(&self.clocks, "drop") {
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error!("Final database flush failed: {}", e);
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}
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}
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}
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}
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impl Database {
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// Helpers for Database::lock(). Closures don't implement Fn.
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fn acquisition() -> &'static str { "database lock acquisition" }
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fn operation() -> &'static str { "database operation" }
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impl<C: Clocks + Clone> Database<C> {
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/// Creates the database from a caller-supplied SQLite connection.
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pub fn new(clocks: Arc<Clocks>, conn: rusqlite::Connection,
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read_write: bool) -> Result<Database, Error> {
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pub fn new(clocks: C, conn: rusqlite::Connection,
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read_write: bool) -> Result<Database<C>, Error> {
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conn.execute("pragma foreign_keys = on", &[])?;
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{
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let ver = get_schema_version(&conn)?.ok_or_else(|| format_err!(
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@ -1767,20 +1784,22 @@ impl Database {
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uuid,
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})
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} else { None };
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let db = Database(Some(Mutex::new(LockedDatabase {
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let db = Database {
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db: Some(Mutex::new(LockedDatabase {
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conn,
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uuid,
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open,
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open_monotonic,
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sample_file_dirs_by_id: BTreeMap::new(),
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cameras_by_id: BTreeMap::new(),
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cameras_by_uuid: BTreeMap::new(),
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streams_by_id: BTreeMap::new(),
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video_sample_entries_by_id: BTreeMap::new(),
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video_index_cache: RefCell::new(LruCache::with_hasher(1024, Default::default())),
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on_flush: Vec::new(),
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})),
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clocks,
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conn,
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uuid,
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open,
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open_monotonic,
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sample_file_dirs_by_id: BTreeMap::new(),
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cameras_by_id: BTreeMap::new(),
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cameras_by_uuid: BTreeMap::new(),
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streams_by_id: BTreeMap::new(),
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video_sample_entries_by_id: BTreeMap::new(),
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video_index_cache: RefCell::new(LruCache::with_hasher(1024, Default::default())),
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on_flush: Vec::new(),
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})));
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};
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{
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let l = &mut *db.lock();
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l.init_video_sample_entries()?;
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@ -1796,35 +1815,62 @@ impl Database {
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Ok(db)
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}
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/// Initializes a database.
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/// Note this doesn't set journal options, so that it can be used on in-memory databases for
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/// test code.
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pub fn init(conn: &mut rusqlite::Connection) -> Result<(), Error> {
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let tx = conn.transaction()?;
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tx.execute_batch(include_str!("schema.sql"))?;
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{
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let uuid = ::uuid::Uuid::new_v4();
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let uuid_bytes = &uuid.as_bytes()[..];
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tx.execute("insert into meta (uuid) values (?)", &[&uuid_bytes])?;
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}
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tx.commit()?;
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Ok(())
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}
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#[inline(always)]
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pub fn clocks(&self) -> C { self.clocks.clone() }
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/// Locks the database; the returned reference is the only way to perform (read or write)
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/// operations.
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pub fn lock(&self) -> MutexGuard<LockedDatabase> {
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self.0.as_ref().unwrap().lock()
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pub fn lock(&self) -> DatabaseGuard<C> {
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let timer = clock::TimerGuard::new(&self.clocks, acquisition);
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let db = self.db.as_ref().unwrap().lock();
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drop(timer);
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let _timer = clock::TimerGuard::<C, &'static str, fn() -> &'static str>::new(
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&self.clocks, operation);
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DatabaseGuard {
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clocks: &self.clocks,
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db,
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_timer,
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}
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}
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/// For testing: closes the database (without flushing) and returns the connection.
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/// This allows verification that a newly opened database is in an acceptable state.
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#[cfg(test)]
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fn close(mut self) -> rusqlite::Connection {
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self.0.take().unwrap().into_inner().conn
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self.db.take().unwrap().into_inner().conn
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}
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}
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pub struct DatabaseGuard<'db, C: Clocks> {
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clocks: &'db C,
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db: MutexGuard<'db, LockedDatabase>,
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_timer: clock::TimerGuard<'db, C, &'static str, fn() -> &'static str>,
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}
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impl<'db, C: Clocks + Clone> DatabaseGuard<'db, C> {
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/// Tries to flush unwritten changes from the stream directories.
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///
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/// * commits any recordings added with `add_recording` that have since been marked as
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/// synced.
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/// * moves old recordings to the garbage table as requested by `delete_oldest_recordings`.
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/// * removes entries from the garbage table as requested by `mark_sample_files_deleted`.
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///
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/// On success, for each affected sample file directory with a flush watcher set, sends a
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/// `Flush` event.
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pub(crate) fn flush(&mut self, reason: &str) -> Result<(), Error> {
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self.db.flush(self.clocks, reason)
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}
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}
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impl<'db, C: Clocks + Clone> ::std::ops::Deref for DatabaseGuard<'db, C> {
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type Target = LockedDatabase;
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fn deref(&self) -> &LockedDatabase { &*self.db }
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}
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impl<'db, C: Clocks + Clone> ::std::ops::DerefMut for DatabaseGuard<'db, C> {
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fn deref_mut(&mut self) -> &mut LockedDatabase { &mut *self.db }
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}
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#[cfg(test)]
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mod tests {
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extern crate tempdir;
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@ -1840,7 +1886,7 @@ mod tests {
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fn setup_conn() -> Connection {
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let mut conn = Connection::open_in_memory().unwrap();
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Database::init(&mut conn).unwrap();
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super::init(&mut conn).unwrap();
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conn
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}
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@ -1995,7 +2041,7 @@ mod tests {
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#[test]
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fn test_no_meta_or_version() {
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testutil::init();
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let e = Database::new(Arc::new(clock::RealClocks{}), Connection::open_in_memory().unwrap(),
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let e = Database::new(clock::RealClocks {}, Connection::open_in_memory().unwrap(),
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false).err().unwrap();
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assert!(e.to_string().starts_with("no such table"), "{}", e);
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}
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@ -2005,7 +2051,7 @@ mod tests {
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testutil::init();
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let c = setup_conn();
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c.execute_batch("delete from version; insert into version values (2, 0, '');").unwrap();
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let e = Database::new(Arc::new(clock::RealClocks{}), c, false).err().unwrap();
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let e = Database::new(clock::RealClocks {}, c, false).err().unwrap();
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assert!(e.to_string().starts_with(
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"Database schema version 2 is too old (expected 3)"), "got: {:?}", e);
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}
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@ -2015,7 +2061,7 @@ mod tests {
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testutil::init();
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let c = setup_conn();
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c.execute_batch("delete from version; insert into version values (4, 0, '');").unwrap();
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let e = Database::new(Arc::new(clock::RealClocks{}), c, false).err().unwrap();
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let e = Database::new(clock::RealClocks {}, c, false).err().unwrap();
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assert!(e.to_string().starts_with(
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"Database schema version 4 is too new (expected 3)"), "got: {:?}", e);
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}
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@ -2025,7 +2071,7 @@ mod tests {
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fn test_fresh_db() {
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testutil::init();
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let conn = setup_conn();
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let db = Database::new(Arc::new(clock::RealClocks{}), conn, true).unwrap();
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let db = Database::new(clock::RealClocks {}, conn, true).unwrap();
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let db = db.lock();
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assert_eq!(0, db.cameras_by_id().values().count());
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}
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@ -2035,7 +2081,7 @@ mod tests {
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fn test_full_lifecycle() {
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testutil::init();
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let conn = setup_conn();
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let db = Database::new(Arc::new(clock::RealClocks{}), conn, true).unwrap();
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let db = Database::new(clock::RealClocks {}, conn, true).unwrap();
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let tmpdir = tempdir::TempDir::new("moonfire-nvr-test").unwrap();
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let path = tmpdir.path().to_str().unwrap().to_owned();
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let sample_file_dir_id = { db.lock() }.add_sample_file_dir(path).unwrap();
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@ -2091,7 +2137,7 @@ mod tests {
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// Closing and reopening the database should present the same contents.
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let conn = db.close();
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let db = Database::new(Arc::new(clock::RealClocks{}), conn, true).unwrap();
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let db = Database::new(clock::RealClocks {}, conn, true).unwrap();
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assert_eq!(db.lock().streams_by_id().get(&sub_stream_id).unwrap().flush_if_sec, 2);
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assert_no_recordings(&db, camera_uuid);
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@ -2132,7 +2178,7 @@ mod tests {
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// Queries on a fresh database should return the correct result (with caches populated from
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// existing database contents rather than built on insert).
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let conn = db.close();
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let db = Database::new(Arc::new(clock::RealClocks{}), conn, true).unwrap();
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let db = Database::new(clock::RealClocks {}, conn, true).unwrap();
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assert_single_recording(&db, main_stream_id, &recording);
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// Deleting a recording should succeed, update the min/max times, and mark it as garbage.
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@ -498,6 +498,7 @@ impl Segment {
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#[cfg(test)]
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mod tests {
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use base::clock::RealClocks;
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use super::*;
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use testutil::{self, TestDb};
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@ -643,7 +644,7 @@ mod tests {
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let bytes = 3 * i;
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encoder.add_sample(duration_90k, bytes, true, &mut r);
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}
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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// Time range [2, 2 + 4 + 6 + 8) means the 2nd, 3rd, 4th samples should be
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// included.
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@ -662,7 +663,7 @@ mod tests {
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let bytes = 3 * i;
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encoder.add_sample(duration_90k, bytes, (i % 2) == 1, &mut r);
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}
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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// Time range [2 + 4 + 6, 2 + 4 + 6 + 8) means the 4th sample should be included.
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// The 3rd also gets pulled in because it is a sync frame and the 4th is not.
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@ -678,7 +679,7 @@ mod tests {
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encoder.add_sample(1, 1, true, &mut r);
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encoder.add_sample(1, 2, true, &mut r);
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encoder.add_sample(0, 3, true, &mut r);
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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let segment = Segment::new(&db.db.lock(), &row, 1 .. 2).unwrap();
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assert_eq!(&get_frames(&db.db, &segment, |it| it.bytes), &[2, 3]);
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@ -691,7 +692,7 @@ mod tests {
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let mut r = db::RecordingToInsert::default();
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let mut encoder = SampleIndexEncoder::new();
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encoder.add_sample(1, 1, true, &mut r);
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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let segment = Segment::new(&db.db.lock(), &row, 0 .. 0).unwrap();
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assert_eq!(&get_frames(&db.db, &segment, |it| it.bytes), &[1]);
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@ -709,7 +710,7 @@ mod tests {
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let bytes = 3 * i;
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encoder.add_sample(duration_90k, bytes, (i % 2) == 1, &mut r);
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}
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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let segment = Segment::new(&db.db.lock(), &row, 0 .. 2+4+6+8+10).unwrap();
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assert_eq!(&get_frames(&db.db, &segment, |it| it.duration_90k), &[2, 4, 6, 8, 10]);
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@ -723,7 +724,7 @@ mod tests {
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encoder.add_sample(1, 1, true, &mut r);
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encoder.add_sample(1, 2, true, &mut r);
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encoder.add_sample(0, 3, true, &mut r);
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let db = TestDb::new();
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let db = TestDb::new(RealClocks {});
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let row = db.insert_recording_from_encoder(r);
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let segment = Segment::new(&db.db.lock(), &row, 0 .. 2).unwrap();
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assert_eq!(&get_frames(&db.db, &segment, |it| it.bytes), &[1, 2, 3]);
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@ -28,7 +28,7 @@
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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use base::clock;
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use base::clock::Clocks;
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use db;
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use dir;
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use fnv::FnvHashMap;
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@ -64,8 +64,8 @@ pub fn init() {
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});
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}
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pub struct TestDb {
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pub db: Arc<db::Database>,
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pub struct TestDb<C: Clocks + Clone> {
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pub db: Arc<db::Database<C>>,
|
||||
pub dirs_by_stream_id: Arc<FnvHashMap<i32, Arc<dir::SampleFileDir>>>,
|
||||
pub syncer_channel: writer::SyncerChannel<::std::fs::File>,
|
||||
pub syncer_join: thread::JoinHandle<()>,
|
||||
@ -73,14 +73,13 @@ pub struct TestDb {
|
||||
pub test_camera_uuid: Uuid,
|
||||
}
|
||||
|
||||
impl TestDb {
|
||||
impl<C: Clocks + Clone> TestDb<C> {
|
||||
/// Creates a test database with one camera.
|
||||
pub fn new() -> TestDb {
|
||||
pub fn new(clocks: C) -> Self {
|
||||
let tmpdir = TempDir::new("moonfire-nvr-test").unwrap();
|
||||
|
||||
let clocks = Arc::new(clock::RealClocks{});
|
||||
let mut conn = rusqlite::Connection::open_in_memory().unwrap();
|
||||
db::Database::init(&mut conn).unwrap();
|
||||
db::init(&mut conn).unwrap();
|
||||
let db = Arc::new(db::Database::new(clocks, conn, true).unwrap());
|
||||
let (test_camera_uuid, sample_file_dir_id);
|
||||
let path = tmpdir.path().to_str().unwrap().to_owned();
|
||||
|
100
db/writer.rs
100
db/writer.rs
@ -97,11 +97,10 @@ impl<F> ::std::clone::Clone for SyncerChannel<F> {
|
||||
}
|
||||
|
||||
/// State of the worker thread.
|
||||
struct Syncer<C: Clocks, D: DirWriter> {
|
||||
clocks: C,
|
||||
struct Syncer<C: Clocks + Clone, D: DirWriter> {
|
||||
dir_id: i32,
|
||||
dir: D,
|
||||
db: Arc<db::Database>,
|
||||
db: Arc<db::Database<C>>,
|
||||
}
|
||||
|
||||
/// Starts a syncer for the given sample file directory.
|
||||
@ -121,8 +120,9 @@ struct Syncer<C: Clocks, D: DirWriter> {
|
||||
/// Note that dropping all `SyncerChannel` clones currently includes calling
|
||||
/// `LockedDatabase::clear_on_flush`, as this function installs a hook to watch database flushes.
|
||||
/// TODO: add a join wrapper which arranges for the on flush hook to be removed automatically.
|
||||
pub fn start_syncer(db: Arc<db::Database>, dir_id: i32)
|
||||
-> Result<(SyncerChannel<::std::fs::File>, thread::JoinHandle<()>), Error> {
|
||||
pub fn start_syncer<C>(db: Arc<db::Database<C>>, dir_id: i32)
|
||||
-> Result<(SyncerChannel<::std::fs::File>, thread::JoinHandle<()>), Error>
|
||||
where C: Clocks + Clone {
|
||||
let db2 = db.clone();
|
||||
let (mut syncer, path) = Syncer::new(&db.lock(), db2, dir_id)?;
|
||||
syncer.initial_rotation()?;
|
||||
@ -216,8 +216,30 @@ impl<F: FileWriter> SyncerChannel<F> {
|
||||
}
|
||||
}
|
||||
|
||||
impl Syncer<clock::RealClocks, Arc<dir::SampleFileDir>> {
|
||||
fn new(l: &db::LockedDatabase, db: Arc<db::Database>, dir_id: i32)
|
||||
/// Lists files which should be "abandoned" (deleted without ever recording in the database)
|
||||
/// on opening.
|
||||
fn list_files_to_abandon(path: &str, streams_to_next: FnvHashMap<i32, i32>)
|
||||
-> Result<Vec<CompositeId>, Error> {
|
||||
let mut v = Vec::new();
|
||||
for e in ::std::fs::read_dir(path)? {
|
||||
let e = e?;
|
||||
let id = match dir::parse_id(e.file_name().as_bytes()) {
|
||||
Ok(i) => i,
|
||||
Err(_) => continue,
|
||||
};
|
||||
let next = match streams_to_next.get(&id.stream()) {
|
||||
Some(n) => *n,
|
||||
None => continue, // unknown stream.
|
||||
};
|
||||
if id.recording() >= next {
|
||||
v.push(id);
|
||||
}
|
||||
}
|
||||
Ok(v)
|
||||
}
|
||||
|
||||
impl<C: Clocks + Clone> Syncer<C, Arc<dir::SampleFileDir>> {
|
||||
fn new(l: &db::LockedDatabase, db: Arc<db::Database<C>>, dir_id: i32)
|
||||
-> Result<(Self, String), Error> {
|
||||
let d = l.sample_file_dirs_by_id()
|
||||
.get(&dir_id)
|
||||
@ -237,7 +259,7 @@ impl Syncer<clock::RealClocks, Arc<dir::SampleFileDir>> {
|
||||
}
|
||||
})
|
||||
.collect();
|
||||
let to_abandon = Syncer::list_files_to_abandon(&d.path, streams_to_next)?;
|
||||
let to_abandon = list_files_to_abandon(&d.path, streams_to_next)?;
|
||||
let mut undeletable = 0;
|
||||
for &id in &to_abandon {
|
||||
if let Err(e) = dir.unlink_file(id) {
|
||||
@ -254,35 +276,12 @@ impl Syncer<clock::RealClocks, Arc<dir::SampleFileDir>> {
|
||||
}
|
||||
|
||||
Ok((Syncer {
|
||||
clocks: clock::RealClocks{},
|
||||
dir_id,
|
||||
dir,
|
||||
db,
|
||||
}, d.path.clone()))
|
||||
}
|
||||
|
||||
/// Lists files which should be "abandoned" (deleted without ever recording in the database)
|
||||
/// on opening.
|
||||
fn list_files_to_abandon(path: &str, streams_to_next: FnvHashMap<i32, i32>)
|
||||
-> Result<Vec<CompositeId>, Error> {
|
||||
let mut v = Vec::new();
|
||||
for e in ::std::fs::read_dir(path)? {
|
||||
let e = e?;
|
||||
let id = match dir::parse_id(e.file_name().as_bytes()) {
|
||||
Ok(i) => i,
|
||||
Err(_) => continue,
|
||||
};
|
||||
let next = match streams_to_next.get(&id.stream()) {
|
||||
Some(n) => *n,
|
||||
None => continue, // unknown stream.
|
||||
};
|
||||
if id.recording() >= next {
|
||||
v.push(id);
|
||||
}
|
||||
}
|
||||
Ok(v)
|
||||
}
|
||||
|
||||
/// Rotates files for all streams and deletes stale files from previous runs.
|
||||
/// Called from main thread.
|
||||
fn initial_rotation(&mut self) -> Result<(), Error> {
|
||||
@ -331,7 +330,7 @@ impl Syncer<clock::RealClocks, Arc<dir::SampleFileDir>> {
|
||||
}
|
||||
}
|
||||
|
||||
impl<C: Clocks, D: DirWriter> Syncer<C, D> {
|
||||
impl<C: Clocks + Clone, D: DirWriter> Syncer<C, D> {
|
||||
fn run(&mut self, cmds: mpsc::Receiver<SyncerCommand<D::File>>) {
|
||||
loop {
|
||||
match cmds.recv() {
|
||||
@ -353,7 +352,7 @@ impl<C: Clocks, D: DirWriter> Syncer<C, D> {
|
||||
if garbage.is_empty() {
|
||||
return;
|
||||
}
|
||||
let c = &self.clocks;
|
||||
let c = &self.db.clocks();
|
||||
for &id in &garbage {
|
||||
clock::retry_forever(c, &mut || {
|
||||
if let Err(e) = self.dir.unlink_file(id) {
|
||||
@ -380,8 +379,8 @@ impl<C: Clocks, D: DirWriter> Syncer<C, D> {
|
||||
let stream_id = id.stream();
|
||||
|
||||
// Free up a like number of bytes.
|
||||
clock::retry_forever(&self.clocks, &mut || f.sync_all());
|
||||
clock::retry_forever(&self.clocks, &mut || self.dir.sync());
|
||||
clock::retry_forever(&self.db.clocks(), &mut || f.sync_all());
|
||||
clock::retry_forever(&self.db.clocks(), &mut || self.dir.sync());
|
||||
let mut db = self.db.lock();
|
||||
db.mark_synced(id).unwrap();
|
||||
delete_recordings(&mut db, stream_id, 0).unwrap();
|
||||
@ -412,10 +411,9 @@ impl<C: Clocks, D: DirWriter> Syncer<C, D> {
|
||||
/// metadata to the database. `Writer` hands off each recording's state to the syncer when done. It
|
||||
/// saves the recording to the database (if I/O errors do not prevent this), retries forever,
|
||||
/// or panics (if further writing on this stream is impossible).
|
||||
pub struct Writer<'a, C: Clocks, D: DirWriter> {
|
||||
clocks: &'a C,
|
||||
pub struct Writer<'a, C: Clocks + Clone, D: DirWriter> {
|
||||
dir: &'a D,
|
||||
db: &'a db::Database,
|
||||
db: &'a db::Database<C>,
|
||||
channel: &'a SyncerChannel<D::File>,
|
||||
stream_id: i32,
|
||||
video_sample_entry_id: i32,
|
||||
@ -523,11 +521,10 @@ struct PreviousWriter {
|
||||
run_offset: i32,
|
||||
}
|
||||
|
||||
impl<'a, C: Clocks, D: DirWriter> Writer<'a, C, D> {
|
||||
pub fn new(clocks: &'a C, dir: &'a D, db: &'a db::Database, channel: &'a SyncerChannel<D::File>,
|
||||
impl<'a, C: Clocks + Clone, D: DirWriter> Writer<'a, C, D> {
|
||||
pub fn new(dir: &'a D, db: &'a db::Database<C>, channel: &'a SyncerChannel<D::File>,
|
||||
stream_id: i32, video_sample_entry_id: i32) -> Self {
|
||||
Writer {
|
||||
clocks,
|
||||
dir,
|
||||
db,
|
||||
channel,
|
||||
@ -553,7 +550,7 @@ impl<'a, C: Clocks, D: DirWriter> Writer<'a, C, D> {
|
||||
flags: db::RecordingFlags::Growing as i32,
|
||||
..Default::default()
|
||||
})?;
|
||||
let f = clock::retry_forever(self.clocks, &mut || self.dir.create_file(id));
|
||||
let f = clock::retry_forever(&self.db.clocks(), &mut || self.dir.create_file(id));
|
||||
|
||||
self.state = WriterState::Open(InnerWriter {
|
||||
f,
|
||||
@ -601,7 +598,7 @@ impl<'a, C: Clocks, D: DirWriter> Writer<'a, C, D> {
|
||||
}
|
||||
let mut remaining = pkt;
|
||||
while !remaining.is_empty() {
|
||||
let written = clock::retry_forever(self.clocks, &mut || w.f.write(remaining));
|
||||
let written = clock::retry_forever(&self.db.clocks(), &mut || w.f.write(remaining));
|
||||
remaining = &remaining[written..];
|
||||
}
|
||||
w.unflushed_sample = Some(UnflushedSample {
|
||||
@ -669,7 +666,7 @@ impl<F: FileWriter> InnerWriter<F> {
|
||||
}
|
||||
}
|
||||
|
||||
impl<'a, C: Clocks, D: DirWriter> Drop for Writer<'a, C, D> {
|
||||
impl<'a, C: Clocks + Clone, D: DirWriter> Drop for Writer<'a, C, D> {
|
||||
fn drop(&mut self) {
|
||||
if ::std::thread::panicking() {
|
||||
// This will probably panic again. Don't do it.
|
||||
@ -779,8 +776,8 @@ mod tests {
|
||||
}
|
||||
|
||||
struct Harness {
|
||||
clocks: SimulatedClocks,
|
||||
db: Arc<db::Database>,
|
||||
//clocks: SimulatedClocks,
|
||||
db: Arc<db::Database<SimulatedClocks>>,
|
||||
dir_id: i32,
|
||||
_tmpdir: ::tempdir::TempDir,
|
||||
dir: MockDir,
|
||||
@ -789,7 +786,8 @@ mod tests {
|
||||
}
|
||||
|
||||
fn new_harness() -> Harness {
|
||||
let tdb = testutil::TestDb::new();
|
||||
let clocks = SimulatedClocks::new(::time::Timespec::new(0, 0));
|
||||
let tdb = testutil::TestDb::new(clocks);
|
||||
let dir_id = *tdb.db.lock().sample_file_dirs_by_id().keys().next().unwrap();
|
||||
|
||||
// This starts a real fs-backed syncer. Get rid of it.
|
||||
@ -798,10 +796,8 @@ mod tests {
|
||||
tdb.syncer_join.join().unwrap();
|
||||
|
||||
// Start a mocker syncer.
|
||||
let clocks = SimulatedClocks::new(::time::Timespec::new(0, 0));
|
||||
let dir = MockDir::new();
|
||||
let mut syncer = super::Syncer {
|
||||
clocks: clocks.clone(),
|
||||
dir_id: *tdb.db.lock().sample_file_dirs_by_id().keys().next().unwrap(),
|
||||
dir: dir.clone(),
|
||||
db: tdb.db.clone(),
|
||||
@ -818,7 +814,7 @@ mod tests {
|
||||
.spawn(move || syncer.run(rcv)).unwrap();
|
||||
|
||||
Harness {
|
||||
clocks,
|
||||
//clocks,
|
||||
dir_id,
|
||||
dir,
|
||||
db: tdb.db,
|
||||
@ -837,7 +833,7 @@ mod tests {
|
||||
let video_sample_entry_id = h.db.lock().insert_video_sample_entry(
|
||||
1920, 1080, [0u8; 100].to_vec(), "avc1.000000".to_owned()).unwrap();
|
||||
{
|
||||
let mut w = Writer::new(&h.clocks, &h.dir, &h.db, &h.channel, testutil::TEST_STREAM_ID,
|
||||
let mut w = Writer::new(&h.dir, &h.db, &h.channel, testutil::TEST_STREAM_ID,
|
||||
video_sample_entry_id);
|
||||
h.dir.expect(MockDirAction::Create(CompositeId::new(1, 1), Box::new(|_id| Err(eio()))));
|
||||
let f = MockFile::new();
|
||||
@ -895,7 +891,7 @@ mod tests {
|
||||
let video_sample_entry_id = h.db.lock().insert_video_sample_entry(
|
||||
1920, 1080, [0u8; 100].to_vec(), "avc1.000000".to_owned()).unwrap();
|
||||
{
|
||||
let mut w = Writer::new(&h.clocks, &h.dir, &h.db, &h.channel, testutil::TEST_STREAM_ID,
|
||||
let mut w = Writer::new(&h.dir, &h.db, &h.channel, testutil::TEST_STREAM_ID,
|
||||
video_sample_entry_id);
|
||||
let f = MockFile::new();
|
||||
h.dir.expect(MockDirAction::Create(CompositeId::new(1, 1),
|
||||
|
@ -125,7 +125,7 @@ struct Args {
|
||||
pub fn run() -> Result<(), Error> {
|
||||
let args: Args = super::parse_args(USAGE)?;
|
||||
let (_db_dir, conn) = super::open_conn(&args.flag_db_dir, super::OpenMode::ReadWrite)?;
|
||||
let clocks = Arc::new(clock::RealClocks{});
|
||||
let clocks = clock::RealClocks {};
|
||||
let db = Arc::new(db::Database::new(clocks, conn, true)?);
|
||||
|
||||
let mut siv = Cursive::new();
|
||||
|
@ -66,7 +66,7 @@ pub fn run() -> Result<(), Error> {
|
||||
pragma journal_mode = wal;
|
||||
pragma page_size = 16384;
|
||||
"#)?;
|
||||
db::Database::init(&mut conn)?;
|
||||
db::init(&mut conn)?;
|
||||
info!("Database initialized.");
|
||||
Ok(())
|
||||
}
|
||||
|
@ -96,7 +96,7 @@ struct Syncer {
|
||||
|
||||
pub fn run() -> Result<(), Error> {
|
||||
let args: Args = super::parse_args(USAGE)?;
|
||||
let clocks = Arc::new(clock::RealClocks{});
|
||||
let clocks = clock::RealClocks {};
|
||||
let (_db_dir, conn) = super::open_conn(
|
||||
&args.flag_db_dir,
|
||||
if args.flag_read_only { super::OpenMode::ReadOnly } else { super::OpenMode::ReadWrite })?;
|
||||
@ -123,7 +123,6 @@ pub fn run() -> Result<(), Error> {
|
||||
let streams = l.streams_by_id().len();
|
||||
let env = streamer::Environment {
|
||||
db: &db,
|
||||
clocks: clocks.clone(),
|
||||
opener: &*stream::FFMPEG,
|
||||
shutdown: &shutdown_streamers,
|
||||
};
|
||||
|
34
src/mp4.rs
34
src/mp4.rs
@ -1518,6 +1518,7 @@ impl http_serve::Entity for File {
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use byteorder::{BigEndian, ByteOrder};
|
||||
use clock::RealClocks;
|
||||
use db::recording::{self, TIME_UNITS_PER_SEC};
|
||||
use db::testutil::{self, TestDb, TEST_STREAM_ID};
|
||||
use db::writer;
|
||||
@ -1745,7 +1746,7 @@ mod tests {
|
||||
}
|
||||
}
|
||||
|
||||
fn copy_mp4_to_db(db: &TestDb) {
|
||||
fn copy_mp4_to_db(db: &TestDb<RealClocks>) {
|
||||
let mut input =
|
||||
stream::FFMPEG.open(stream::Source::File("src/testdata/clip.mp4")).unwrap();
|
||||
|
||||
@ -1756,8 +1757,7 @@ mod tests {
|
||||
extra_data.width, extra_data.height, extra_data.sample_entry,
|
||||
extra_data.rfc6381_codec).unwrap();
|
||||
let dir = db.dirs_by_stream_id.get(&TEST_STREAM_ID).unwrap();
|
||||
let mut output = writer::Writer::new(&::base::clock::RealClocks{}, dir, &db.db,
|
||||
&db.syncer_channel, TEST_STREAM_ID,
|
||||
let mut output = writer::Writer::new(dir, &db.db, &db.syncer_channel, TEST_STREAM_ID,
|
||||
video_sample_entry_id);
|
||||
|
||||
// end_pts is the pts of the end of the most recent frame (start + duration).
|
||||
@ -1785,7 +1785,7 @@ mod tests {
|
||||
db.syncer_channel.flush();
|
||||
}
|
||||
|
||||
pub fn create_mp4_from_db(tdb: &TestDb,
|
||||
pub fn create_mp4_from_db(tdb: &TestDb<RealClocks>,
|
||||
skip_90k: i32, shorten_90k: i32, include_subtitles: bool) -> File {
|
||||
let mut builder = FileBuilder::new(Type::Normal);
|
||||
builder.include_timestamp_subtitle_track(include_subtitles);
|
||||
@ -1858,7 +1858,7 @@ mod tests {
|
||||
|
||||
/// Makes a `.mp4` file which is only good for exercising the `Slice` logic for producing
|
||||
/// sample tables that match the supplied encoder.
|
||||
fn make_mp4_from_encoders(type_: Type, db: &TestDb,
|
||||
fn make_mp4_from_encoders(type_: Type, db: &TestDb<RealClocks>,
|
||||
mut recordings: Vec<db::RecordingToInsert>,
|
||||
desired_range_90k: Range<i32>) -> File {
|
||||
let mut builder = FileBuilder::new(type_);
|
||||
@ -1879,7 +1879,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_all_sync_frames() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
let mut r = db::RecordingToInsert::default();
|
||||
let mut encoder = recording::SampleIndexEncoder::new();
|
||||
for i in 1..6 {
|
||||
@ -1933,7 +1933,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_half_sync_frames() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
let mut r = db::RecordingToInsert::default();
|
||||
let mut encoder = recording::SampleIndexEncoder::new();
|
||||
for i in 1..6 {
|
||||
@ -1996,7 +1996,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_multi_segment() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
let mut encoders = Vec::new();
|
||||
let mut r = db::RecordingToInsert::default();
|
||||
let mut encoder = recording::SampleIndexEncoder::new();
|
||||
@ -2033,7 +2033,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_zero_duration_recording() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
let mut encoders = Vec::new();
|
||||
let mut r = db::RecordingToInsert::default();
|
||||
let mut encoder = recording::SampleIndexEncoder::new();
|
||||
@ -2059,7 +2059,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_media_segment() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
let mut r = db::RecordingToInsert::default();
|
||||
let mut encoder = recording::SampleIndexEncoder::new();
|
||||
for i in 1..6 {
|
||||
@ -2102,7 +2102,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_round_trip() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
copy_mp4_to_db(&db);
|
||||
let mp4 = create_mp4_from_db(&db, 0, 0, false);
|
||||
let new_filename = write_mp4(&mp4, db.tmpdir.path());
|
||||
@ -2123,7 +2123,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_round_trip_with_subtitles() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
copy_mp4_to_db(&db);
|
||||
let mp4 = create_mp4_from_db(&db, 0, 0, true);
|
||||
let new_filename = write_mp4(&mp4, db.tmpdir.path());
|
||||
@ -2144,7 +2144,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_round_trip_with_edit_list() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
copy_mp4_to_db(&db);
|
||||
let mp4 = create_mp4_from_db(&db, 1, 0, false);
|
||||
let new_filename = write_mp4(&mp4, db.tmpdir.path());
|
||||
@ -2165,7 +2165,7 @@ mod tests {
|
||||
#[test]
|
||||
fn test_round_trip_with_shorten() {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
copy_mp4_to_db(&db);
|
||||
let mp4 = create_mp4_from_db(&db, 0, 1, false);
|
||||
let new_filename = write_mp4(&mp4, db.tmpdir.path());
|
||||
@ -2214,7 +2214,7 @@ mod bench {
|
||||
|
||||
impl BenchServer {
|
||||
fn new() -> BenchServer {
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
testutil::add_dummy_recordings_to_db(&db.db, 60);
|
||||
let mp4 = create_mp4_from_db(&db, 0, 0, false);
|
||||
let p = mp4.0.initial_sample_byte_pos;
|
||||
@ -2256,7 +2256,7 @@ mod bench {
|
||||
#[bench]
|
||||
fn build_index(b: &mut Bencher) {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
testutil::add_dummy_recordings_to_db(&db.db, 1);
|
||||
|
||||
let db = db.db.lock();
|
||||
@ -2307,7 +2307,7 @@ mod bench {
|
||||
#[bench]
|
||||
fn mp4_construction(b: &mut Bencher) {
|
||||
testutil::init();
|
||||
let db = TestDb::new();
|
||||
let db = TestDb::new(RealClocks {});
|
||||
testutil::add_dummy_recordings_to_db(&db.db, 60);
|
||||
b.iter(|| {
|
||||
create_mp4_from_db(&db, 0, 0, false);
|
||||
|
@ -41,23 +41,21 @@ use time;
|
||||
pub static ROTATE_INTERVAL_SEC: i64 = 60;
|
||||
|
||||
/// Common state that can be used by multiple `Streamer` instances.
|
||||
pub struct Environment<'a, 'b, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
pub clocks: Arc<C>,
|
||||
pub struct Environment<'a, 'b, C, S> where C: Clocks + Clone, S: 'a + stream::Stream {
|
||||
pub opener: &'a stream::Opener<S>,
|
||||
pub db: &'b Arc<Database>,
|
||||
pub db: &'b Arc<Database<C>>,
|
||||
pub shutdown: &'b Arc<AtomicBool>,
|
||||
}
|
||||
|
||||
pub struct Streamer<'a, C, S> where C: Clocks, S: 'a + stream::Stream {
|
||||
pub struct Streamer<'a, C, S> where C: Clocks + Clone, S: 'a + stream::Stream {
|
||||
shutdown: Arc<AtomicBool>,
|
||||
|
||||
// State below is only used by the thread in Run.
|
||||
rotate_offset_sec: i64,
|
||||
rotate_interval_sec: i64,
|
||||
db: Arc<Database>,
|
||||
db: Arc<Database<C>>,
|
||||
dir: Arc<dir::SampleFileDir>,
|
||||
syncer_channel: writer::SyncerChannel<::std::fs::File>,
|
||||
clocks: Arc<C>,
|
||||
opener: &'a stream::Opener<S>,
|
||||
stream_id: i32,
|
||||
short_name: String,
|
||||
@ -65,7 +63,7 @@ pub struct Streamer<'a, C, S> where C: Clocks, S: 'a + stream::Stream {
|
||||
redacted_url: String,
|
||||
}
|
||||
|
||||
impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks + Clone, S: 'a + stream::Stream {
|
||||
pub fn new<'b>(env: &Environment<'a, 'b, C, S>, dir: Arc<dir::SampleFileDir>,
|
||||
syncer_channel: writer::SyncerChannel<::std::fs::File>,
|
||||
stream_id: i32, c: &Camera, s: &Stream, rotate_offset_sec: i64,
|
||||
@ -77,7 +75,6 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
db: env.db.clone(),
|
||||
dir,
|
||||
syncer_channel: syncer_channel,
|
||||
clocks: env.clocks.clone(),
|
||||
opener: env.opener,
|
||||
stream_id: stream_id,
|
||||
short_name: format!("{}-{}", c.short_name, s.type_.as_str()),
|
||||
@ -93,7 +90,7 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
if let Err(e) = self.run_once() {
|
||||
let sleep_time = time::Duration::seconds(1);
|
||||
warn!("{}: sleeping for {:?} after error: {:?}", self.short_name, sleep_time, e);
|
||||
self.clocks.sleep(sleep_time);
|
||||
self.db.clocks().sleep(sleep_time);
|
||||
}
|
||||
}
|
||||
info!("{}: shutting down", self.short_name);
|
||||
@ -101,16 +98,17 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
|
||||
fn run_once(&mut self) -> Result<(), Error> {
|
||||
info!("{}: Opening input: {}", self.short_name, self.redacted_url);
|
||||
let clocks = self.db.clocks();
|
||||
|
||||
let mut stream = {
|
||||
let _t = TimerGuard::new(&*self.clocks, || format!("opening {}", self.redacted_url));
|
||||
let _t = TimerGuard::new(&clocks, || format!("opening {}", self.redacted_url));
|
||||
self.opener.open(stream::Source::Rtsp(&self.url))?
|
||||
};
|
||||
let realtime_offset = self.clocks.realtime() - self.clocks.monotonic();
|
||||
let realtime_offset = self.db.clocks().realtime() - clocks.monotonic();
|
||||
// TODO: verify width/height.
|
||||
let extra_data = stream.get_extra_data()?;
|
||||
let video_sample_entry_id = {
|
||||
let _t = TimerGuard::new(&*self.clocks, || "inserting video sample entry");
|
||||
let _t = TimerGuard::new(&clocks, || "inserting video sample entry");
|
||||
self.db.lock().insert_video_sample_entry(extra_data.width, extra_data.height,
|
||||
extra_data.sample_entry,
|
||||
extra_data.rfc6381_codec)?
|
||||
@ -121,11 +119,11 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
// Seconds since epoch at which to next rotate.
|
||||
let mut rotate: Option<i64> = None;
|
||||
let mut transformed = Vec::new();
|
||||
let mut w = writer::Writer::new(&*self.clocks, &self.dir, &self.db, &self.syncer_channel,
|
||||
self.stream_id, video_sample_entry_id);
|
||||
let mut w = writer::Writer::new(&self.dir, &self.db, &self.syncer_channel, self.stream_id,
|
||||
video_sample_entry_id);
|
||||
while !self.shutdown.load(Ordering::SeqCst) {
|
||||
let pkt = {
|
||||
let _t = TimerGuard::new(&*self.clocks, || "getting next packet");
|
||||
let _t = TimerGuard::new(&clocks, || "getting next packet");
|
||||
stream.get_next()?
|
||||
};
|
||||
let pts = pkt.pts().ok_or_else(|| format_err!("packet with no pts"))?;
|
||||
@ -135,12 +133,12 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
debug!("{}: have first key frame", self.short_name);
|
||||
seen_key_frame = true;
|
||||
}
|
||||
let frame_realtime = self.clocks.monotonic() + realtime_offset;
|
||||
let frame_realtime = clocks.monotonic() + realtime_offset;
|
||||
let local_time = recording::Time::new(frame_realtime);
|
||||
rotate = if let Some(r) = rotate {
|
||||
if frame_realtime.sec > r && pkt.is_key() {
|
||||
trace!("{}: write on normal rotation", self.short_name);
|
||||
let _t = TimerGuard::new(&*self.clocks, || "closing writer");
|
||||
let _t = TimerGuard::new(&clocks, || "closing writer");
|
||||
w.close(Some(pts));
|
||||
None
|
||||
} else {
|
||||
@ -159,7 +157,7 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
// usual. This ensures there's plenty of frame times to use when calculating
|
||||
// the start time.
|
||||
let r = r + if w.previously_opened()? { 0 } else { self.rotate_interval_sec };
|
||||
let _t = TimerGuard::new(&*self.clocks, || "creating writer");
|
||||
let _t = TimerGuard::new(&clocks, || "creating writer");
|
||||
r
|
||||
},
|
||||
};
|
||||
@ -173,13 +171,13 @@ impl<'a, C, S> Streamer<'a, C, S> where C: 'a + Clocks, S: 'a + stream::Stream {
|
||||
} else {
|
||||
orig_data
|
||||
};
|
||||
let _t = TimerGuard::new(&*self.clocks,
|
||||
let _t = TimerGuard::new(&clocks,
|
||||
|| format!("writing {} bytes", transformed_data.len()));
|
||||
w.write(transformed_data, local_time, pts, pkt.is_key())?;
|
||||
rotate = Some(r);
|
||||
}
|
||||
if rotate.is_some() {
|
||||
let _t = TimerGuard::new(&*self.clocks, || "closing writer");
|
||||
let _t = TimerGuard::new(&clocks, || "closing writer");
|
||||
w.close(None);
|
||||
}
|
||||
Ok(())
|
||||
@ -322,7 +320,7 @@ mod tests {
|
||||
fn basic() {
|
||||
testutil::init();
|
||||
// 2015-04-25 00:00:00 UTC
|
||||
let clocks = Arc::new(clock::SimulatedClocks::new(time::Timespec::new(1429920000, 0)));
|
||||
let clocks = clock::SimulatedClocks::new(time::Timespec::new(1429920000, 0));
|
||||
clocks.sleep(time::Duration::seconds(86400)); // to 2015-04-26 00:00:00 UTC
|
||||
|
||||
let stream = stream::FFMPEG.open(stream::Source::File("src/testdata/clip.mp4")).unwrap();
|
||||
@ -335,9 +333,8 @@ mod tests {
|
||||
streams: Mutex::new(vec![stream]),
|
||||
shutdown: Arc::new(AtomicBool::new(false)),
|
||||
};
|
||||
let db = testutil::TestDb::new();
|
||||
let env = super::Environment{
|
||||
clocks: Arc::clone(&clocks),
|
||||
let db = testutil::TestDb::new(clocks.clone());
|
||||
let env = super::Environment {
|
||||
opener: &opener,
|
||||
db: &db.db,
|
||||
shutdown: &opener.shutdown,
|
||||
|
Loading…
Reference in New Issue
Block a user