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https://github.com/denoland/deno.git
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fix(cli): sanitizer should ignore count of ops started before tests begin (#22932)
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commit
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5 changed files with 163 additions and 4 deletions
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@ -43,6 +43,7 @@ use deno_core::stats::RuntimeActivityDiff;
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use deno_core::stats::RuntimeActivityStats;
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use deno_core::stats::RuntimeActivityStats;
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use deno_core::stats::RuntimeActivityStatsFactory;
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use deno_core::stats::RuntimeActivityStatsFactory;
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use deno_core::stats::RuntimeActivityStatsFilter;
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use deno_core::stats::RuntimeActivityStatsFilter;
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use deno_core::stats::RuntimeActivityType;
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use deno_core::unsync::spawn;
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use deno_core::unsync::spawn;
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use deno_core::unsync::spawn_blocking;
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use deno_core::unsync::spawn_blocking;
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use deno_core::url::Url;
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use deno_core::url::Url;
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@ -64,6 +65,7 @@ use rand::seq::SliceRandom;
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use rand::SeedableRng;
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use rand::SeedableRng;
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use regex::Regex;
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use regex::Regex;
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use serde::Deserialize;
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use serde::Deserialize;
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use std::borrow::Cow;
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use std::collections::BTreeMap;
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use std::collections::BTreeMap;
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use std::collections::BTreeSet;
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use std::collections::BTreeSet;
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use std::collections::HashMap;
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use std::collections::HashMap;
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@ -103,6 +105,35 @@ use reporters::TestReporter;
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/// How many times we're allowed to spin the event loop before considering something a leak.
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/// How many times we're allowed to spin the event loop before considering something a leak.
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const MAX_SANITIZER_LOOP_SPINS: usize = 16;
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const MAX_SANITIZER_LOOP_SPINS: usize = 16;
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#[derive(Default)]
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struct TopLevelSanitizerStats {
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map: HashMap<(RuntimeActivityType, Cow<'static, str>), usize>,
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}
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fn get_sanitizer_item(
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activity: RuntimeActivity,
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) -> (RuntimeActivityType, Cow<'static, str>) {
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let activity_type = activity.activity();
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match activity {
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RuntimeActivity::AsyncOp(_, _, name) => (activity_type, name.into()),
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RuntimeActivity::Resource(_, _, name) => (activity_type, name.into()),
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RuntimeActivity::Interval(_, _) => (activity_type, "".into()),
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RuntimeActivity::Timer(_, _) => (activity_type, "".into()),
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}
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}
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fn get_sanitizer_item_ref(
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activity: &RuntimeActivity,
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) -> (RuntimeActivityType, Cow<str>) {
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let activity_type = activity.activity();
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match activity {
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RuntimeActivity::AsyncOp(_, _, name) => (activity_type, (*name).into()),
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RuntimeActivity::Resource(_, _, name) => (activity_type, name.into()),
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RuntimeActivity::Interval(_, _) => (activity_type, "".into()),
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RuntimeActivity::Timer(_, _) => (activity_type, "".into()),
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}
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}
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/// The test mode is used to determine how a specifier is to be tested.
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/// The test mode is used to determine how a specifier is to be tested.
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#[derive(Debug, Clone, Eq, PartialEq)]
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#[derive(Debug, Clone, Eq, PartialEq)]
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pub enum TestMode {
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pub enum TestMode {
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@ -734,6 +765,18 @@ async fn run_tests_for_worker_inner(
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filter = filter.omit_op(op_id_host_recv_ctrl as _);
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filter = filter.omit_op(op_id_host_recv_ctrl as _);
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filter = filter.omit_op(op_id_host_recv_message as _);
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filter = filter.omit_op(op_id_host_recv_message as _);
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// Count the top-level stats so we can filter them out if they complete and restart within
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// a test.
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let top_level_stats = stats.clone().capture(&filter);
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let mut top_level = TopLevelSanitizerStats::default();
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for activity in top_level_stats.dump().active {
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top_level
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.map
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.entry(get_sanitizer_item(activity))
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.and_modify(|n| *n += 1)
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.or_insert(1);
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}
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for (desc, function) in tests_to_run.into_iter() {
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for (desc, function) in tests_to_run.into_iter() {
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if fail_fast_tracker.should_stop() {
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if fail_fast_tracker.should_stop() {
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break;
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break;
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@ -810,6 +853,7 @@ async fn run_tests_for_worker_inner(
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worker,
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worker,
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&stats,
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&stats,
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&filter,
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&filter,
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&top_level,
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before,
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before,
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desc.sanitize_ops,
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desc.sanitize_ops,
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desc.sanitize_resources,
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desc.sanitize_resources,
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@ -836,10 +880,67 @@ async fn run_tests_for_worker_inner(
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Ok(())
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Ok(())
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}
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}
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/// The sanitizer must ignore ops, resources and timers that were started at the top-level, but
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/// completed and restarted, replacing themselves with the same "thing". For example, if you run a
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/// `Deno.serve` server at the top level and make fetch requests to it during the test, those ops
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/// should not count as completed during the test because they are immediately replaced.
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fn is_empty(
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top_level: &TopLevelSanitizerStats,
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diff: &RuntimeActivityDiff,
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) -> bool {
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// If the diff is empty, return empty
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if diff.is_empty() {
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return true;
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}
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// If the # of appeared != # of disappeared, we can exit fast with not empty
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if diff.appeared.len() != diff.disappeared.len() {
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return false;
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}
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// If there are no top-level ops and !diff.is_empty(), we can exit fast with not empty
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if top_level.map.is_empty() {
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return false;
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}
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// Otherwise we need to calculate replacement for top-level stats. Sanitizers will not fire
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// if an op, resource or timer is replaced and has a corresponding top-level op.
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let mut map = HashMap::new();
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for item in &diff.appeared {
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let item = get_sanitizer_item_ref(item);
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let Some(n1) = top_level.map.get(&item) else {
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return false;
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};
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let n2 = map.entry(item).and_modify(|n| *n += 1).or_insert(1);
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// If more ops appeared than were created at the top-level, return false
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if *n2 > *n1 {
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return false;
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}
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}
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// We know that we replaced no more things than were created at the top-level. So now we just want
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// to make sure that whatever thing was created has a corresponding disappearance record.
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for item in &diff.disappeared {
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let item = get_sanitizer_item_ref(item);
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// If more things of this type disappeared than appeared, return false
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let Some(n1) = map.get_mut(&item) else {
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return false;
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};
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*n1 -= 1;
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if *n1 == 0 {
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map.remove(&item);
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}
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}
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// If everything is accounted for, we are empty
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map.is_empty()
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}
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async fn wait_for_activity_to_stabilize(
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async fn wait_for_activity_to_stabilize(
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worker: &mut MainWorker,
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worker: &mut MainWorker,
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stats: &RuntimeActivityStatsFactory,
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stats: &RuntimeActivityStatsFactory,
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filter: &RuntimeActivityStatsFilter,
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filter: &RuntimeActivityStatsFilter,
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top_level: &TopLevelSanitizerStats,
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before: RuntimeActivityStats,
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before: RuntimeActivityStats,
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sanitize_ops: bool,
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sanitize_ops: bool,
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sanitize_resources: bool,
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sanitize_resources: bool,
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@ -847,7 +948,7 @@ async fn wait_for_activity_to_stabilize(
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// First, check to see if there's any diff at all. If not, just continue.
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// First, check to see if there's any diff at all. If not, just continue.
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let after = stats.clone().capture(filter);
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let after = stats.clone().capture(filter);
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let mut diff = RuntimeActivityStats::diff(&before, &after);
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let mut diff = RuntimeActivityStats::diff(&before, &after);
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if diff.is_empty() {
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if is_empty(top_level, &diff) {
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// No activity, so we return early
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// No activity, so we return early
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return Ok(None);
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return Ok(None);
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}
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}
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@ -862,7 +963,7 @@ async fn wait_for_activity_to_stabilize(
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let after = stats.clone().capture(filter);
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let after = stats.clone().capture(filter);
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diff = RuntimeActivityStats::diff(&before, &after);
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diff = RuntimeActivityStats::diff(&before, &after);
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if diff.is_empty() {
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if is_empty(top_level, &diff) {
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return Ok(None);
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return Ok(None);
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}
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}
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}
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}
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@ -901,7 +1002,11 @@ async fn wait_for_activity_to_stabilize(
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});
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});
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}
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}
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Ok(if diff.is_empty() { None } else { Some(diff) })
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Ok(if is_empty(top_level, &diff) {
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None
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} else {
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Some(diff)
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})
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}
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}
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fn extract_files_from_regex_blocks(
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fn extract_files_from_regex_blocks(
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@ -1,5 +1,5 @@
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{
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{
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"args": "test --quiet --reload main.js",
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"args": "test --quiet main.js",
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"output": "main.out",
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"output": "main.out",
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"exitCode": 1
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"exitCode": 1
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}
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}
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@ -0,0 +1,4 @@
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{
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"args": "test --quiet --allow-net main.js",
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"output": "main.out"
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}
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45
tests/specs/test/sanitizer_with_top_level_ops/main.js
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45
tests/specs/test/sanitizer_with_top_level_ops/main.js
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@ -0,0 +1,45 @@
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// The sanitizers must ignore any ops, resources or timers that are
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// "replaced" at the top level with a thing of the same kind.
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// An async IIFE that throws off timers every 10ms
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(async () => {
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while (true) {
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await new Promise((r) => setTimeout(r, 10));
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}
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})();
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// An HTTP server that resolves an op for every request
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const { promise, resolve } = Promise.withResolvers();
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const server = Deno.serve({
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port: 0,
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onListen: ({ port }) => resolve(port),
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handler: () => new Response("ok"),
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});
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const port = await promise;
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// A TCP listener loop
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const listener = Deno.listen({ port: 0 });
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const conn1 = await Deno.connect({ port: listener.addr.port });
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const conn2 = await listener.accept();
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// Note: we need to ensure that these read/write ops are balanced at the top-level to avoid triggering
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// the sanitizer, so we use two async IIFEs.
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(async () => {
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// This will write without blocking for a bit but eventually will start writing async
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// once the tokio coop kicks in or the buffers fill up.
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while (true) {
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await conn1.write(new Uint8Array(1024));
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}
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})();
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(async () => {
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while (true) {
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await conn2.read(new Uint8Array(10 * 1024));
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}
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})();
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Deno.test(async function waits() {
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// Trigger the server to restart its op
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await (await fetch(`http://127.0.0.1:${port}/`)).text();
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// Let the IIFEs run for a bit
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await new Promise((r) => setTimeout(r, 100));
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});
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5
tests/specs/test/sanitizer_with_top_level_ops/main.out
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5
tests/specs/test/sanitizer_with_top_level_ops/main.out
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@ -0,0 +1,5 @@
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running 1 test from ./main.js
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waits ... ok ([WILDCARD])
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ok | 1 passed | 0 failed ([WILDCARD])
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