Skip to main content

agent_top_core/harness/
mod.rs

1//! Per-harness transcript readers.
2//!
3//! Each harness writes a different append-only log. A `SessionTracker` turns
4//! one of those logs into the harness-neutral `SessionSummary` incrementally.
5
6pub mod claude;
7pub mod codex;
8pub mod gemini;
9
10use crate::model::{Activity, Attribution, CostBreakdown, Harness, ProcNode, SpanKind, TokenUsage, ToolSpan};
11use crate::process::RawProc;
12use std::collections::{BTreeMap, HashSet, VecDeque};
13use std::path::{Path, PathBuf};
14use std::time::{Duration, SystemTime};
15
16/// Evidence that the parser still understands the file it is reading.
17///
18/// Every field is read with a fallback to zero, which is the right behaviour
19/// for a genuinely absent field and the wrong behaviour for a renamed one: a
20/// harness that renames `usage` next week would show a user 0 tokens and $0.00
21/// with no error at all. So count the usage records seen and how many of them
22/// yielded nothing. Records present and all of them empty is not a quiet
23/// session, it is a parser that has fallen behind the format.
24#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
25pub struct ParseHealth {
26    /// Model responses seen. Each of these should account for some tokens.
27    pub billable_messages: u64,
28    /// Usage records found on them. Zero of these, with messages present, means
29    /// the record itself moved or was renamed.
30    pub usage_records: u64,
31    /// Records found but yielding nothing, which is what a renamed field inside
32    /// an intact record looks like.
33    pub empty_usage_records: u64,
34}
35
36impl ParseHealth {
37    /// Enough responses to accuse the parser rather than the session. A couple
38    /// of odd messages must not raise the alarm.
39    const MIN_EVIDENCE: u64 = 3;
40
41    /// The session did work that must have cost tokens, and we read none.
42    ///
43    /// Covers both ways a format change reaches us: the usage record moving or
44    /// being renamed, so we never find one, and the fields inside it being
45    /// renamed, so we find records that read as empty. Neither raises an error
46    /// on its own, because every field falls back to zero.
47    pub fn fields_unrecognised(&self) -> bool {
48        self.billable_messages >= Self::MIN_EVIDENCE && self.usage_records == self.empty_usage_records
49    }
50}
51
52#[derive(Debug, Clone, Default)]
53pub struct SessionSummary {
54    pub harness: Option<Harness>,
55    pub session_id: Option<String>,
56    pub cwd: Option<PathBuf>,
57    pub model: Option<String>,
58    pub harness_version: Option<String>,
59    pub usage: TokenUsage,
60    pub cost_usd: f64,
61    /// `cost_usd` by kind of token. See `Agent::cost_breakdown`.
62    pub cost_breakdown: CostBreakdown,
63    pub unpriced_tokens: u64,
64    pub turns: u64,
65    pub subagent_turns: u64,
66    pub tool_calls: u64,
67    /// See `Agent::web_searches`.
68    pub web_searches: u64,
69    pub spans: SpanLog,
70    /// Calls to each MCP server, by the server's name.
71    pub mcp: BTreeMap<String, McpUsage>,
72    pub health: ParseHealth,
73    pub activity: Activity,
74    pub started_at: Option<SystemTime>,
75    pub last_activity: Option<SystemTime>,
76}
77
78/// What a transcript says about one MCP server: how often it was called,
79/// how often that failed, and when it was last called.
80#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
81pub struct McpUsage {
82    pub calls: u64,
83    pub errors: u64,
84    pub last_call: Option<SystemTime>,
85}
86
87impl McpUsage {
88    pub fn add(&mut self, o: &McpUsage) {
89        self.calls += o.calls;
90        self.errors += o.errors;
91        self.last_call = self.last_call.max(o.last_call);
92    }
93}
94
95/// The server behind an MCP tool name. Claude Code names them
96/// `mcp__<server>__<tool>`; the server part may itself contain underscores,
97/// so the split is on the first double underscore after the prefix and the
98/// tool part is whatever follows the last one.
99pub fn mcp_server_of(tool_name: &str) -> Option<&str> {
100    let rest = tool_name.strip_prefix("mcp__")?;
101    let server = match rest.rfind("__") {
102        Some(i) => &rest[..i],
103        None => rest,
104    };
105    if server.is_empty() { None } else { Some(server) }
106}
107
108/// Spans kept per session by the live tracker. A screenful of waterfall is
109/// a few dozen rows; the rest is history nobody scrolls to in a live view, and
110/// every span costs a clone on each refresh. An export wants the whole session
111/// and uses `SpanLog::unbounded` in a separate pass; see `SpanRetention`.
112///
113/// Sized for roughly a hundred tool calls: each model response also adds an
114/// inference span and each human prompt a turn span.
115pub const MAX_SPANS: usize = 256;
116
117/// A bounded, in-order log of tool spans, built by pairing a harness's
118/// "call started" and "call finished" records by call id.
119///
120/// Records arrive interleaved and out of order (agents run tools in parallel),
121/// so a span is closed by searching back for the still-open span with that id
122/// rather than assuming the most recent one.
123#[derive(Debug, Clone)]
124pub struct SpanLog {
125    spans: VecDeque<ToolSpan>,
126    cap: usize,
127}
128
129impl Default for SpanLog {
130    fn default() -> Self {
131        SpanLog { spans: VecDeque::new(), cap: MAX_SPANS }
132    }
133}
134
135impl SpanLog {
136    /// A log that keeps every span. For a one-shot pass over a whole
137    /// transcript, never for the live tracker, where the memory and the clone
138    /// per refresh would grow with the session.
139    pub fn unbounded() -> Self {
140        SpanLog { spans: VecDeque::new(), cap: usize::MAX }
141    }
142
143    /// Record the start of a tool call. Ignored when that id is already open,
144    /// so a transcript line replayed by the harness does not double-count.
145    pub fn open(&mut self, id: String, name: String, at: SystemTime, sidechain: bool) {
146        self.open_kind(id, name, at, sidechain, SpanKind::Tool);
147    }
148
149    /// `open`, for any kind of span.
150    pub fn open_kind(&mut self, id: String, name: String, at: SystemTime, sidechain: bool, kind: SpanKind) {
151        if id.is_empty() || self.spans.iter().any(|s| s.is_open() && s.id == id) {
152            return;
153        }
154        if self.spans.len() >= self.cap {
155            self.spans.pop_front();
156        }
157        self.spans.push_back(ToolSpan { id, name, started_at: at, duration_ms: None, sidechain, error: false, kind });
158    }
159
160    /// Move the end of the newest span with this id to `at`, open or not. An
161    /// inference span grows as the response streams in, one content block
162    /// per line, and its end is wherever the last block landed.
163    pub fn end_at(&mut self, id: &str, at: SystemTime) {
164        let Some(s) = self.spans.iter_mut().rev().find(|s| s.id == id) else { return };
165        s.duration_ms = Some(at.duration_since(s.started_at).map(|d| d.as_millis() as u64).unwrap_or(0));
166    }
167
168    /// The newest open span of this kind, if any.
169    pub fn open_of_kind(&self, kind: SpanKind) -> Option<&ToolSpan> {
170        self.spans.iter().rev().find(|s| s.is_open() && s.kind == kind)
171    }
172
173    /// Remove the newest span with this id if it is still open. For a span
174    /// that turned out not to be one: an inference that never produced a
175    /// reply because the user interrupted or submitted again.
176    pub fn discard_open(&mut self, id: &str) {
177        if let Some(i) = self.spans.iter().rposition(|s| s.is_open() && s.id == id) {
178            self.spans.remove(i);
179        }
180    }
181
182    /// Close the open call with this id. A result whose call scrolled out of
183    /// the window, or that we never saw start, is dropped.
184    pub fn close(&mut self, id: &str, at: SystemTime, error: bool) {
185        let Some(s) = self.spans.iter_mut().rev().find(|s| s.is_open() && s.id == id) else { return };
186        s.duration_ms = Some(at.duration_since(s.started_at).map(|d| d.as_millis() as u64).unwrap_or(0));
187        s.error = error;
188    }
189
190    pub fn len(&self) -> usize {
191        self.spans.len()
192    }
193
194    pub fn is_empty(&self) -> bool {
195        self.spans.is_empty()
196    }
197
198    /// Oldest first. Double-ended so callers can take the newest spans without
199    /// collecting the whole log first, which the UI and the golden tests both do.
200    pub fn iter(&self) -> impl DoubleEndedIterator<Item = &ToolSpan> + ExactSizeIterator {
201        self.spans.iter()
202    }
203
204    pub fn to_vec(&self) -> Vec<ToolSpan> {
205        self.spans.iter().cloned().collect()
206    }
207
208    /// One log from several, ordered by start time, keeping the newest `cap`.
209    /// A parent's spans and its subagents' spans interleave in wall-clock
210    /// order, which is what a waterfall wants.
211    pub fn merged<'a>(logs: impl IntoIterator<Item = &'a SpanLog>, cap: usize) -> SpanLog {
212        let mut spans: Vec<ToolSpan> = logs.into_iter().flat_map(|l| l.spans.iter().cloned()).collect();
213        spans.sort_by_key(|s| s.started_at);
214        if spans.len() > cap {
215            spans.drain(..spans.len() - cap);
216        }
217        SpanLog { spans: spans.into(), cap }
218    }
219
220    pub fn cap(&self) -> usize {
221        self.cap
222    }
223}
224
225/// How many of a session's tool spans a tracker keeps.
226#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
227pub enum SpanRetention {
228    /// The newest `MAX_SPANS`, enough for the live waterfall. The default.
229    #[default]
230    Recent,
231    /// Every span in the transcript, for a trace export. Memory grows with
232    /// the session, so this is for a single pass, not a tracker kept across
233    /// refreshes.
234    All,
235}
236
237impl SpanRetention {
238    pub(crate) fn log(self) -> SpanLog {
239        match self {
240            SpanRetention::Recent => SpanLog::default(),
241            SpanRetention::All => SpanLog::unbounded(),
242        }
243    }
244}
245
246pub trait SessionTracker {
247    /// Ingest whatever was appended since the last call. Returns true when
248    /// there is still unread data (the byte budget was exhausted).
249    fn refresh(&mut self) -> anyhow::Result<bool>;
250    fn summary(&self) -> &SessionSummary;
251    fn path(&self) -> &Path;
252
253    /// Ingest the whole file, however many refreshes that takes. For a
254    /// one-shot read such as an export; the live collector spreads a large
255    /// transcript over several ticks instead.
256    fn refresh_all(&mut self) -> anyhow::Result<()> {
257        while self.refresh()? {}
258        Ok(())
259    }
260}
261
262/// What a harness's own registry says about one of its processes, when it
263/// keeps one (Claude Code's `~/.claude/sessions/<pid>.json`). Every field is
264/// optional; a harness with no registry returns none of this.
265#[derive(Debug, Clone, Default, PartialEq, Eq)]
266pub struct RegistryHints {
267    pub name: Option<String>,
268    pub session_id: Option<String>,
269    pub cwd: Option<PathBuf>,
270    pub version: Option<String>,
271    /// The harness's own word for its state (`busy`, `idle`, ...), which beats
272    /// any transcript heuristic.
273    pub status: Option<String>,
274}
275
276/// What the collector knows about a process when it asks an adapter which
277/// transcript is the process's.
278pub struct AttributeContext<'a> {
279    pub cwd: Option<&'a Path>,
280    pub proc_start: SystemTime,
281    pub now: SystemTime,
282    /// Transcripts already given to another process this pass. An adapter
283    /// must not hand one out twice.
284    pub attached: &'a HashSet<PathBuf>,
285    /// A transcript idle for longer than this is a finished conversation, not
286    /// a thread of a process that cannot otherwise be matched.
287    pub activity_timeout: Duration,
288}
289
290/// One harness, as the collector sees it: where its transcripts are, which
291/// belongs to which process, and how to read one. The collector holds a list
292/// of these and never names a harness itself, so adding a harness is one
293/// module and one line in `adapters()`. Process recognition stays in
294/// `process::classify_agent`, which also knows the harnesses that have no
295/// transcript adapter yet.
296pub trait HarnessAdapter {
297    fn harness(&self) -> Harness;
298
299    /// Re-list the transcripts written since `since`. Called every
300    /// `fs_scan_interval`, not every tick.
301    fn rescan(&mut self, since: SystemTime);
302
303    /// Called once per pass with this harness's root processes, before any
304    /// of them is attributed. For work that must see every process at once:
305    /// Codex reads which rollouts each process holds open here, so that no
306    /// process's fallback can claim a thread another is demonstrably writing.
307    fn prepare(&mut self, _roots: &[&ProcNode]) {}
308
309    /// The harness's own registry entry for a process, if it keeps one.
310    fn hints(&self, _pid: u32) -> Option<RegistryHints> {
311        None
312    }
313
314    /// The transcripts this process is writing, newest activity first, and
315    /// how sure the adapter is. One per conversation: a Codex app-server hosts
316    /// many, a CLI runs one, a process with none gets an empty list.
317    fn attribute(&self, root: &ProcNode, raw: Option<&RawProc>, ctx: &AttributeContext) -> (Vec<PathBuf>, Attribution);
318
319    /// Recently written transcripts no process owns: the stopped list.
320    fn unowned(&self, attached: &HashSet<PathBuf>) -> Vec<PathBuf>;
321
322    /// A tracker for one transcript.
323    fn open(&self, path: &Path, spans: SpanRetention) -> Box<dyn SessionTracker>;
324
325    /// Whether this harness wrote the file, judged from its first few lines.
326    fn detect(&self, path: &Path) -> bool;
327
328    /// Every transcript on disk, however old, with the id a user would type
329    /// to name it. For `agent-top trace --session <id>`.
330    fn transcripts(&self) -> Vec<(String, PathBuf)>;
331}
332
333/// Every harness that has a transcript adapter, in the order they are asked.
334/// The order matters to `detect` alone: Gemini's metadata line carries a
335/// `sessionId` like Claude Code's lines do, so it is asked first.
336pub fn adapters() -> Vec<Box<dyn HarnessAdapter>> {
337    vec![Box::new(codex::CodexAdapter::default()), Box::new(gemini::GeminiAdapter::default()), Box::new(claude::ClaudeAdapter::default())]
338}
339
340/// The adapter for one harness, or none when it has only a process table entry.
341pub fn adapter_for(harness: Harness) -> Option<Box<dyn HarnessAdapter>> {
342    adapters().into_iter().find(|a| a.harness() == harness)
343}
344
345/// Which harness wrote a transcript, judged from its first few lines. Anything
346/// no adapter recognises is not a transcript agent-top reads.
347pub fn detect(path: &Path) -> Option<Harness> {
348    adapters().iter().find(|a| a.detect(path)).map(|a| a.harness())
349}
350
351/// A tracker for a transcript whose harness is already known, or none when
352/// that harness has no transcript adapter.
353pub fn open_transcript(path: &Path, harness: Harness, spans: SpanRetention) -> Option<Box<dyn SessionTracker>> {
354    adapter_for(harness).map(|a| a.open(path, spans))
355}
356
357/// The first few lines of a file, parsed, for `HarnessAdapter::detect`.
358pub(crate) fn head_lines(path: &Path) -> Vec<serde_json::Value> {
359    use std::io::{BufRead, BufReader};
360    let Ok(f) = std::fs::File::open(path) else { return Vec::new() };
361    BufReader::new(f).lines().map_while(Result::ok).take(5).filter_map(|l| serde_json::from_str(&l).ok()).collect()
362}
363
364/// Bytes ingested per tracker per refresh. Keeps a cold start on a 100 MB
365/// transcript from freezing the first frame; the rest streams in on later ticks.
366pub const REFRESH_BUDGET_BYTES: usize = 8 * 1024 * 1024;
367
368/// Parse an RFC 3339 timestamp like `2026-09-03T07:15:34.123Z` into SystemTime
369/// without pulling in a date crate. Only the UTC `Z` form is handled, which is
370/// what both Claude Code and Codex write.
371pub fn parse_rfc3339_utc(s: &str) -> Option<SystemTime> {
372    let s = s.strip_suffix('Z')?;
373    let (date, time) = s.split_once('T')?;
374    let mut d = date.split('-');
375    let (y, mo, da) = (d.next()?.parse::<i64>().ok()?, d.next()?.parse::<u32>().ok()?, d.next()?.parse::<u32>().ok()?);
376    let mut t = time.split(':');
377    let (h, mi) = (t.next()?.parse::<u64>().ok()?, t.next()?.parse::<u64>().ok()?);
378    let sec_str = t.next()?;
379    let (sec, frac) = match sec_str.split_once('.') {
380        Some((s, f)) => (s.parse::<u64>().ok()?, f),
381        None => (sec_str.parse::<u64>().ok()?, ""),
382    };
383    let nanos: u32 = if frac.is_empty() {
384        0
385    } else {
386        let mut f = frac.to_string();
387        f.truncate(9);
388        while f.len() < 9 {
389            f.push('0');
390        }
391        f.parse().ok()?
392    };
393    let days = days_from_civil(y, mo, da);
394    let secs = days * 86_400 + (h * 3600 + mi * 60 + sec) as i64;
395    if secs < 0 {
396        return None;
397    }
398    Some(SystemTime::UNIX_EPOCH + std::time::Duration::new(secs as u64, nanos))
399}
400
401// Howard Hinnant's days-from-civil algorithm.
402fn days_from_civil(y: i64, m: u32, d: u32) -> i64 {
403    let y = if m <= 2 { y - 1 } else { y };
404    let era = if y >= 0 { y } else { y - 399 } / 400;
405    let yoe = y - era * 400;
406    let mp = (m as i64 + 9) % 12;
407    let doy = (153 * mp + 2) / 5 + d as i64 - 1;
408    let doe = yoe * 365 + yoe / 4 - yoe / 100 + doy;
409    era * 146_097 + doe - 719_468
410}
411
412#[cfg(test)]
413mod tests {
414    use super::*;
415    use std::time::Duration;
416
417    fn at(secs: u64) -> SystemTime {
418        SystemTime::UNIX_EPOCH + Duration::from_secs(secs)
419    }
420
421    #[test]
422    fn pairs_spans_by_id_out_of_order() {
423        let mut log = SpanLog::default();
424        log.open("a".into(), "Bash".into(), at(10), false);
425        log.open("b".into(), "Read".into(), at(11), true);
426        // Replay of the same start line must not open a second span.
427        log.open("a".into(), "Bash".into(), at(10), false);
428        // Results come back in the other order.
429        log.close("b", at(12), false);
430        log.close("a", at(14), true);
431        // A result with no matching call is ignored.
432        log.close("zzz", at(15), false);
433        let v = log.to_vec();
434        assert_eq!(v.len(), 2);
435        assert_eq!(v[0].name, "Bash");
436        assert_eq!(v[0].duration_ms, Some(4_000));
437        assert!(v[0].error);
438        assert_eq!(v[1].duration_ms, Some(1_000));
439        assert!(v[1].sidechain);
440        assert!(!v[1].error);
441    }
442
443    #[test]
444    fn keeps_the_newest_spans_and_reports_open_ones() {
445        let mut log = SpanLog::default();
446        for i in 0..(MAX_SPANS + 10) {
447            log.open(format!("id{i}"), "T".into(), at(i as u64), false);
448            log.close(&format!("id{i}"), at(i as u64), false);
449        }
450        assert_eq!(log.len(), MAX_SPANS);
451        assert_eq!(log.iter().next().unwrap().id, "id10");
452        log.open("live".into(), "Bash".into(), at(500), false);
453        let last = log.to_vec().pop().unwrap();
454        assert!(last.is_open());
455        assert_eq!(last.elapsed_ms(at(503)), 3_000);
456    }
457
458    #[test]
459    fn end_at_moves_the_end_of_any_kind_of_span() {
460        let mut log = SpanLog::default();
461        log.open_kind("inference:1".into(), "inference".into(), at(10), false, SpanKind::Inference);
462        assert!(log.open_of_kind(SpanKind::Inference).is_some());
463        assert!(log.open_of_kind(SpanKind::Turn).is_none());
464        // The response streams in over three lines; the span ends at the last one.
465        log.end_at("inference:1", at(11));
466        log.end_at("inference:1", at(13));
467        log.end_at("nope", at(99));
468        let v = log.to_vec();
469        assert_eq!(v[0].duration_ms, Some(3_000));
470        assert_eq!(v[0].kind, SpanKind::Inference);
471        assert!(log.open_of_kind(SpanKind::Inference).is_none());
472        // Discarding only removes open spans; the ended one stays.
473        log.discard_open("inference:1");
474        assert_eq!(log.len(), 1);
475        log.open_kind("inference:2".into(), "inference".into(), at(20), false, SpanKind::Inference);
476        log.discard_open("inference:2");
477        assert_eq!(log.len(), 1);
478    }
479
480    #[test]
481    fn unbounded_log_keeps_everything() {
482        let mut log = SpanLog::unbounded();
483        for i in 0..(MAX_SPANS * 3) {
484            log.open(format!("id{i}"), "T".into(), at(i as u64), false);
485            log.close(&format!("id{i}"), at(i as u64 + 1), false);
486        }
487        assert_eq!(log.len(), MAX_SPANS * 3);
488        assert_eq!(log.iter().next().unwrap().id, "id0");
489        assert_eq!(SpanRetention::default(), SpanRetention::Recent);
490    }
491
492    #[test]
493    fn detects_the_harness_from_the_first_lines() {
494        let dir = std::env::temp_dir().join(format!("agent-top-detect-{}", std::process::id()));
495        std::fs::create_dir_all(&dir).unwrap();
496        let codex = dir.join("rollout.jsonl");
497        std::fs::write(&codex, "{\"type\":\"session_meta\",\"payload\":{\"id\":\"x\"}}\n").unwrap();
498        let claude = dir.join("s.jsonl");
499        // A summary line first, as Claude Code writes on resume, then a real one.
500        std::fs::write(&claude, "{\"type\":\"summary\",\"leafUuid\":\"u\"}\n{\"type\":\"user\",\"sessionId\":\"abc\"}\n").unwrap();
501        let other = dir.join("other.jsonl");
502        std::fs::write(&other, "{\"hello\":1}\nnot json\n").unwrap();
503        assert_eq!(detect(&codex), Some(Harness::Codex));
504        assert_eq!(detect(&claude), Some(Harness::Claude));
505        assert_eq!(detect(&other), None);
506        assert_eq!(detect(&dir.join("missing.jsonl")), None);
507        let _ = std::fs::remove_dir_all(&dir);
508    }
509
510    #[test]
511    fn names_the_server_behind_an_mcp_tool() {
512        assert_eq!(mcp_server_of("mcp__filesystem__read_file"), Some("filesystem"));
513        assert_eq!(mcp_server_of("mcp__chrome-devtools__take_screenshot"), Some("chrome-devtools"));
514        assert_eq!(mcp_server_of("mcp__claude_ai_Gmail__authenticate"), Some("claude_ai_Gmail"));
515        assert_eq!(mcp_server_of("mcp__odd"), Some("odd"));
516        assert_eq!(mcp_server_of("mcp____x"), None);
517        assert_eq!(mcp_server_of("Bash"), None);
518    }
519
520    #[test]
521    fn accuses_the_parser_only_with_enough_evidence() {
522        // Healthy: records found on the messages, tokens read from them.
523        let h = ParseHealth { billable_messages: 40, usage_records: 40, empty_usage_records: 0 };
524        assert!(!h.fields_unrecognised());
525        // One odd message among many is a message, not a format change.
526        let h = ParseHealth { billable_messages: 40, usage_records: 40, empty_usage_records: 39 };
527        assert!(!h.fields_unrecognised());
528        // Fields inside the record renamed: records found, all of them empty.
529        let h = ParseHealth { billable_messages: 40, usage_records: 40, empty_usage_records: 40 };
530        assert!(h.fields_unrecognised());
531        // The record itself renamed or moved: messages, but no records at all.
532        // This is the case a naive check misses, because there is nothing to count.
533        let h = ParseHealth { billable_messages: 40, usage_records: 0, empty_usage_records: 0 };
534        assert!(h.fields_unrecognised());
535        // Too early to tell: a session that has barely started.
536        let h = ParseHealth { billable_messages: 2, usage_records: 0, empty_usage_records: 0 };
537        assert!(!h.fields_unrecognised());
538        // Nothing parsed at all is silence, not evidence.
539        assert!(!ParseHealth::default().fields_unrecognised());
540    }
541
542    #[test]
543    fn parses_timestamps() {
544        let t = parse_rfc3339_utc("1970-01-02T00:00:00.000Z").unwrap();
545        assert_eq!(t, SystemTime::UNIX_EPOCH + Duration::from_secs(86_400));
546        let t = parse_rfc3339_utc("2026-09-03T07:15:34.5Z").unwrap();
547        let secs = t.duration_since(SystemTime::UNIX_EPOCH).unwrap();
548        assert_eq!(secs.as_secs(), 1_788_419_734);
549        assert_eq!(secs.subsec_millis(), 500);
550        assert!(parse_rfc3339_utc("nope").is_none());
551    }
552}