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anodizer_core/context/
runtime.rs

1use super::*;
2
3impl Context {
4    /// Return the current `Version` template variable, or an empty string if
5    /// not yet populated.
6    pub fn version(&self) -> String {
7        self.template_vars
8            .get("Version")
9            .cloned()
10            .unwrap_or_default()
11    }
12
13    /// Reproducible-mtime seed shared by every stage that stamps a build
14    /// timestamp into a produced artifact (release archives, source archives,
15    /// PyPI wheels + sdists).
16    ///
17    /// Resolution ladder, single-sourced here so archives and wheels never
18    /// pick different timestamps in one run:
19    ///
20    /// 1. when ANY build in the crate universe is `reproducible: true`, the
21    ///    commit timestamp wins outright — a reproducible build pins its own
22    ///    output to the commit, so a stray ambient `SOURCE_DATE_EPOCH` must
23    ///    not override it;
24    /// 2. otherwise `SOURCE_DATE_EPOCH` (the standard reproducibility
25    ///    contract, set by the determinism harness on every child), falling
26    ///    back to the commit timestamp.
27    ///
28    /// Returns `None` when neither a commit timestamp nor `SOURCE_DATE_EPOCH`
29    /// is available (writers then leave the default wall-clock stamp).
30    pub fn resolve_reproducible_mtime(&self) -> Option<u64> {
31        let any_reproducible = self.config.crate_universe().into_iter().any(|c| {
32            c.builds
33                .as_ref()
34                .is_some_and(|builds| builds.iter().any(|b| b.reproducible.unwrap_or(false)))
35        });
36        let commit_ts = self
37            .template_vars()
38            .get("CommitTimestamp")
39            .and_then(|ts| ts.parse::<u64>().ok());
40        if any_reproducible {
41            commit_ts
42        } else {
43            self.env_var("SOURCE_DATE_EPOCH")
44                .and_then(|s| s.parse::<u64>().ok())
45                .or(commit_ts)
46        }
47    }
48
49    /// Derive the verbosity level from context options.
50    pub fn verbosity(&self) -> Verbosity {
51        Verbosity::from_flags(self.options.quiet, self.options.verbose, self.options.debug)
52    }
53
54    /// Resolve the user's `retry:` block into a concrete [`RetryPolicy`],
55    /// applying defaults when `retry:` is unset. Equivalent to
56    /// `ctx.config.retry.unwrap_or_default().to_policy()` but centralizes
57    /// the lookup so a future refactor can hang validation / clamping off
58    /// a single seam.
59    pub fn retry_policy(&self) -> crate::retry::RetryPolicy {
60        self.config.retry.unwrap_or_default().to_policy()
61    }
62
63    /// Resolve the retry wall-clock budget into an absolute deadline anchored at
64    /// the moment of this call. Always `Some`: `retry.max_elapsed` when the user
65    /// sets it, otherwise [`crate::retry::DEFAULT_MAX_ELAPSED`] (15 min) — so a
66    /// publisher that threads this into [`crate::retry::retry_sync_deadline`] /
67    /// [`crate::retry::retry_async_deadline`] is bounded by default and the
68    /// operator can raise or lower the ceiling with one config field. The
69    /// `Option` return lets it feed those engines verbatim (their `None` means
70    /// unbounded, reserved for callers with no context). Computed once at the
71    /// start of a publish sequence so a long transient storm exits cleanly
72    /// (resumable) instead of being SIGKILLed mid-write by the outer job timeout.
73    pub fn retry_deadline(&self) -> Option<std::time::Instant> {
74        let budget = self
75            .config
76            .retry
77            .unwrap_or_default()
78            .max_elapsed_duration()
79            .unwrap_or(crate::retry::DEFAULT_MAX_ELAPSED);
80        Some(std::time::Instant::now() + budget)
81    }
82
83    /// Create a [`StageLogger`] for the given stage name, pre-attached to
84    /// the context's env-pairs list so that subprocess stderr / stdout
85    /// flowing through [`StageLogger::check_output`] is automatically
86    /// redacted. The env list combines the template-engine env
87    /// (process + config + `.env` files) and the current `std::env::vars`
88    /// snapshot, so any secret value reachable to a hook or subprocess is
89    /// available for scrubbing.
90    pub fn logger(&self, stage: &'static str) -> StageLogger {
91        // Snapshot the current redaction env into the shared cell at
92        // construction so a secret injected via `template_vars_mut().set_env`
93        // (which has no mutation hook) is captured, matching the historical
94        // snapshot-at-`logger()` behavior. The cell stays shared afterward, so
95        // a secret minted later through an `env_source` mutation still reaches
96        // this logger via `refresh_secret_env` at that mutation point.
97        self.refresh_secret_env();
98        #[allow(unused_mut)]
99        let mut log =
100            StageLogger::new(stage, self.verbosity()).with_shared_env(Arc::clone(&self.secret_env));
101        #[cfg(feature = "test-helpers")]
102        if let Some(cap) = &self.log_capture {
103            log = log.with_capture_handle(cap.clone());
104        }
105        log
106    }
107}