Files
tokio/tokio-trace/tests/support/subscriber.rs
T
Eliza Weisman 5510ba6dba trace-core: Require span IDs to be > 0 (#973)
This branch changes `tokio_trace_core::span::Id::from_u64` to assert
that the integer from which the span ID is constructed is greater than
zero. This is to enable future use of non-zero optimization.

Unfortunately, we can't actually use a `NonZeroU64` _now_, as that type
was only stabilized in Rust 1.28.0, and `tokio`'s current minimum
supported Rust version is 1.26.0.

Adding and documenting the assertion now allows us to change the
internal representation to `NonZeroU64` later (when 1.28.0 is the
minimum supported Rust version), without causing a breaking change.

Signed-off-by: Eliza Weisman <[email protected]>
2019-03-11 16:18:40 -07:00

398 lines
13 KiB
Rust

#![allow(missing_docs)]
use super::{
event::MockEvent,
field as mock_field,
span::{MockSpan, NewSpan},
};
use std::{
collections::{HashMap, VecDeque},
fmt,
sync::{
atomic::{AtomicUsize, Ordering},
Arc, Mutex,
},
};
use tokio_trace::{
span::{self, Attributes, Id},
Event, Metadata, Subscriber,
};
#[derive(Debug, Eq, PartialEq)]
enum Expect {
Event(MockEvent),
Enter(MockSpan),
Exit(MockSpan),
CloneSpan(MockSpan),
DropSpan(MockSpan),
Visit(MockSpan, mock_field::Expect),
NewSpan(NewSpan),
Nothing,
}
struct SpanState {
name: &'static str,
refs: usize,
}
struct Running<F: Fn(&Metadata) -> bool> {
spans: Mutex<HashMap<Id, SpanState>>,
expected: Arc<Mutex<VecDeque<Expect>>>,
current: Mutex<Vec<Id>>,
ids: AtomicUsize,
filter: F,
}
pub struct MockSubscriber<F: Fn(&Metadata) -> bool> {
expected: VecDeque<Expect>,
filter: F,
}
pub struct MockHandle(Arc<Mutex<VecDeque<Expect>>>);
pub fn mock() -> MockSubscriber<fn(&Metadata) -> bool> {
MockSubscriber {
expected: VecDeque::new(),
filter: (|_: &Metadata| true) as for<'r, 's> fn(&'r Metadata<'s>) -> _,
}
}
impl<F> MockSubscriber<F>
where
F: Fn(&Metadata) -> bool + 'static,
{
pub fn enter(mut self, span: MockSpan) -> Self {
self.expected.push_back(Expect::Enter(span));
self
}
pub fn event(mut self, event: MockEvent) -> Self {
self.expected.push_back(Expect::Event(event));
self
}
pub fn exit(mut self, span: MockSpan) -> Self {
self.expected.push_back(Expect::Exit(span));
self
}
pub fn clone_span(mut self, span: MockSpan) -> Self {
self.expected.push_back(Expect::CloneSpan(span));
self
}
pub fn drop_span(mut self, span: MockSpan) -> Self {
self.expected.push_back(Expect::DropSpan(span));
self
}
pub fn done(mut self) -> Self {
self.expected.push_back(Expect::Nothing);
self
}
pub fn record<I>(mut self, span: MockSpan, fields: I) -> Self
where
I: Into<mock_field::Expect>,
{
self.expected.push_back(Expect::Visit(span, fields.into()));
self
}
pub fn new_span<I>(mut self, new_span: I) -> Self
where
I: Into<NewSpan>,
{
self.expected.push_back(Expect::NewSpan(new_span.into()));
self
}
pub fn with_filter<G>(self, filter: G) -> MockSubscriber<G>
where
G: Fn(&Metadata) -> bool + 'static,
{
MockSubscriber {
filter,
expected: self.expected,
}
}
pub fn run(self) -> impl Subscriber {
let (subscriber, _) = self.run_with_handle();
subscriber
}
pub fn run_with_handle(self) -> (impl Subscriber, MockHandle) {
let expected = Arc::new(Mutex::new(self.expected));
let handle = MockHandle(expected.clone());
let subscriber = Running {
spans: Mutex::new(HashMap::new()),
expected,
current: Mutex::new(Vec::new()),
ids: AtomicUsize::new(1),
filter: self.filter,
};
(subscriber, handle)
}
}
impl<F> Subscriber for Running<F>
where
F: Fn(&Metadata) -> bool + 'static,
{
fn enabled(&self, meta: &Metadata) -> bool {
(self.filter)(meta)
}
fn record(&self, id: &Id, values: &span::Record) {
let spans = self.spans.lock().unwrap();
let mut expected = self.expected.lock().unwrap();
let span = spans
.get(id)
.unwrap_or_else(|| panic!("no span for ID {:?}", id));
println!("record: {}; id={:?}; values={:?};", span.name, id, values);
let was_expected = if let Some(Expect::Visit(_, _)) = expected.front() {
true
} else {
false
};
if was_expected {
if let Expect::Visit(expected_span, mut expected_values) = expected.pop_front().unwrap()
{
if let Some(name) = expected_span.name() {
assert_eq!(name, span.name);
}
let mut checker = expected_values.checker(format!("span {}: ", span.name));
values.record(&mut checker);
checker.finish();
}
}
}
fn event(&self, event: &Event) {
let name = event.metadata().name();
println!("event: {};", name);
match self.expected.lock().unwrap().pop_front() {
None => {}
Some(Expect::Event(expected)) => expected.check(event),
Some(ex) => ex.bad(format_args!("observed event {:?}", event)),
}
}
fn record_follows_from(&self, _span: &Id, _follows: &Id) {
// TODO: it should be possible to expect spans to follow from other spans
}
fn new_span(&self, span: &Attributes) -> Id {
use span::Parent;
let meta = span.metadata();
let id = self.ids.fetch_add(1, Ordering::SeqCst);
let id = Id::from_u64(id as u64);
println!(
"new_span: name={:?}; target={:?}; id={:?};",
meta.name(),
meta.target(),
id
);
let mut expected = self.expected.lock().unwrap();
let was_expected = match expected.front() {
Some(Expect::NewSpan(_)) => true,
_ => false,
};
let mut spans = self.spans.lock().unwrap();
if was_expected {
if let Expect::NewSpan(mut expected) = expected.pop_front().unwrap() {
let name = meta.name();
expected
.span
.metadata
.check(meta, format_args!("span `{}`", name));
let mut checker = expected.fields.checker(format!("{}", name));
span.record(&mut checker);
checker.finish();
match expected.parent {
Some(Parent::ExplicitRoot) => {
assert!(
span.is_root(),
"expected {:?} to be an explicit root span",
name
);
}
Some(Parent::Explicit(expected_parent)) => {
let actual_parent =
span.parent().and_then(|id| spans.get(id)).map(|s| s.name);
assert_eq!(Some(expected_parent.as_ref()), actual_parent);
}
Some(Parent::ContextualRoot) => {
assert!(
span.is_contextual(),
"expected {:?} to have a contextual parent",
name
);
assert!(
self.current.lock().unwrap().last().is_none(),
"expected {:?} to be a root, but we were inside a span",
name
);
}
Some(Parent::Contextual(expected_parent)) => {
assert!(
span.is_contextual(),
"expected {:?} to have a contextual parent",
name
);
let stack = self.current.lock().unwrap();
let actual_parent =
stack.last().and_then(|id| spans.get(id)).map(|s| s.name);
assert_eq!(Some(expected_parent.as_ref()), actual_parent);
}
None => {}
}
}
}
spans.insert(
id.clone(),
SpanState {
name: meta.name(),
refs: 1,
},
);
id
}
fn enter(&self, id: &Id) {
let spans = self.spans.lock().unwrap();
if let Some(span) = spans.get(id) {
println!("enter: {}; id={:?};", span.name, id);
match self.expected.lock().unwrap().pop_front() {
None => {}
Some(Expect::Enter(ref expected_span)) => {
if let Some(name) = expected_span.name() {
assert_eq!(name, span.name);
}
}
Some(ex) => ex.bad(format_args!("entered span {:?}", span.name)),
}
};
self.current.lock().unwrap().push(id.clone());
}
fn exit(&self, id: &Id) {
let spans = self.spans.lock().unwrap();
let span = spans
.get(id)
.unwrap_or_else(|| panic!("no span for ID {:?}", id));
println!("exit: {}; id={:?};", span.name, id);
match self.expected.lock().unwrap().pop_front() {
None => {}
Some(Expect::Exit(ref expected_span)) => {
if let Some(name) = expected_span.name() {
assert_eq!(name, span.name);
}
let curr = self.current.lock().unwrap().pop();
assert_eq!(
Some(id),
curr.as_ref(),
"exited span {:?}, but the current span was {:?}",
span.name,
curr.as_ref().and_then(|id| spans.get(id)).map(|s| s.name)
);
}
Some(ex) => ex.bad(format_args!("exited span {:?}", span.name)),
};
}
fn clone_span(&self, id: &Id) -> Id {
let name = self.spans.lock().unwrap().get_mut(id).map(|span| {
let name = span.name;
println!("clone_span: {}; id={:?}; refs={:?};", name, id, span.refs);
span.refs += 1;
name
});
if name.is_none() {
println!("clone_span: id={:?};", id);
}
let mut expected = self.expected.lock().unwrap();
let was_expected = if let Some(Expect::CloneSpan(ref span)) = expected.front() {
assert_eq!(name, span.name());
true
} else {
false
};
if was_expected {
expected.pop_front();
}
id.clone()
}
fn drop_span(&self, id: Id) {
let mut is_event = false;
let name = if let Ok(mut spans) = self.spans.try_lock() {
spans.get_mut(&id).map(|span| {
let name = span.name;
if name.contains("event") {
is_event = true;
}
println!("drop_span: {}; id={:?}; refs={:?};", name, id, span.refs);
span.refs -= 1;
name
})
} else {
None
};
if name.is_none() {
println!("drop_span: id={:?}", id);
}
if let Ok(mut expected) = self.expected.try_lock() {
let was_expected = match expected.front() {
Some(Expect::DropSpan(ref span)) => {
// Don't assert if this function was called while panicking,
// as failing the assertion can cause a double panic.
if !::std::thread::panicking() {
assert_eq!(name, span.name());
}
true
}
Some(Expect::Event(_)) => {
if !::std::thread::panicking() {
assert!(is_event);
}
true
}
_ => false,
};
if was_expected {
expected.pop_front();
}
}
}
}
impl MockHandle {
pub fn assert_finished(&self) {
if let Ok(ref expected) = self.0.lock() {
assert!(
!expected.iter().any(|thing| thing != &Expect::Nothing),
"more notifications expected: {:?}",
**expected
);
}
}
}
impl Expect {
fn bad<'a>(&self, what: fmt::Arguments<'a>) {
match self {
Expect::Event(e) => panic!("expected event {}, but {} instead", e, what,),
Expect::Enter(e) => panic!("expected to enter {} but {} instead", e, what,),
Expect::Exit(e) => panic!("expected to exit {} but {} instead", e, what,),
Expect::CloneSpan(e) => panic!("expected to clone {} but {} instead", e, what,),
Expect::DropSpan(e) => panic!("expected to drop {} but {} instead", e, what,),
Expect::Visit(e, fields) => {
panic!("expected {} to record {} but {} instead", e, fields, what,)
}
Expect::NewSpan(e) => panic!("expected {} but {} instead", e, what),
Expect::Nothing => panic!("expected nothing else to happen, but {} instead", what,),
}
}
}