The contract block asserted that neither side reclaims .publish-new- 'today'. True when written and about to stop being true: gitdan#30 tracks adding both .publish-* prefixes to the arbiter's enumeration, and a sibling track is landing it this round. A comment that dates itself against a merge in flight is worse than no comment. Rewords all four sites (cache-lib.sh, publish-snapshot.sh, and README's table row and prose) to reference gitdan#30 and keep the mechanism that made the shape worth catching — .publish-new- is tagged per job per run exactly as .stage- is — rather than the arbiter's momentary contents. The rule itself is unchanged; it is the durable part, and it is what found this. Adds the counting check while there: the five names here and the prefixes ci-cache-reclaim.sh enumerates are meant to be the same length, so a mismatch is the cheapest signal that one side gained a shape without telling the other.
125 lines
6.4 KiB
Bash
Executable File
125 lines
6.4 KiB
Bash
Executable File
#!/usr/bin/env bash
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# Publish side: atomically republish this reference branch's live target dir
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# as the immutable snapshot other branches seed from.
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#
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# Usage: publish-snapshot.sh <own-key> <cache-root> <tag>
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#
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# Run only after the build has already succeeded, and only on a branch that is
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# a publisher (see the cargo-cache-publish action, which makes that decision).
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# A red build must never overwrite a known-good snapshot: the caller's step
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# ordering is the whole gate here, so keep this step last.
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#
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# The swap is two renames, not one, because POSIX rename() can only replace an
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# EMPTY directory and a snapshot from a prior publish is not one:
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#
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# 1. stage the new snapshot at .stage-<tag> (copy time is off every
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# consumer's hot path — nothing reads a staging path);
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# 2. rename the current snapshot aside to .publish-old-<tag>, if present;
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# 3. rename the staged snapshot into place.
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#
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# Step 3 is a single atomic rename onto a path now guaranteed absent, so it
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# can never partially overwrite a live snapshot. A consumer landing in the
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# window between 2 and 3 sees the snapshot as absent and falls through to its
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# own cold-start path — a safe degrade that self-heals on its next run, not
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# corruption.
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#
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# `rm -rf` on the old snapshot removes directory entries only, so a consumer
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# that has ALREADY FINISHED cloning from it keeps every inode alive through
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# its own links. That is the easy half, and on its own it is not enough: a
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# consumer still WALKING the old generation has its entries unlinked out from
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# under it, and `cp -al` does not report a subtree that was removed before it
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# read the parent's listing. That is a silently truncated clone — the failure
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# mode seed-target-dir-selftest.sh's scenario 8b reproduces from the consumer's
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# side, against the unguarded version. (This script's own selftest also has a
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# scenario 8; that one is the abandoned-reader-marker case, not this.)
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#
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# So the unlink is interlocked with the consume side rather than
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# unconditional: after the swap, this script waits for every in-flight reader
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# of this snapshot to drain (see the reader-marker ordering proof in
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# cache-lib.sh) and only then reclaims the rotated-away generation. If the
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# grace period expires first, reclamation is DEFERRED — the directory is left
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# under `.publish-old-<key>-<tag>` and swept by a later publish once no reader
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# holds it. The residual of a very slow consumer is therefore one extra
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# generation of directory entries on disk, never a torn clone.
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set -euo pipefail
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. "$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)/cache-lib.sh"
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OWN_KEY="${1:?usage: publish-snapshot.sh <own-key> <cache-root> <tag>}"
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ROOT="${2:?}"; TAG="${3:?}"
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SRC=$(target_dir_for "$ROOT" "$OWN_KEY")
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DST=$(snapshot_dir_for "$ROOT" "$OWN_KEY")
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# Keyed by cache key as well as tag, so a deferred generation can be matched
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# back to the snapshot whose readers must drain before it is safe to reclaim.
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#
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# `.publish-old-` and `.publish-new-` are dot-prefixed names under a cache
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# root, so the cross-repo contract at the top of cache-lib.sh covers them:
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# renaming either, or adding a third, requires a matching prefix in
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# daniel/gitdan's ci-cache-reclaim.sh. Both were outside its list when that
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# contract was written, and `.publish-new-` is why it mattered: it is tagged
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# per job per run, so a publisher killed between staging its snapshot and the
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# swap below strands a full hardlink clone that no later run of this script
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# will ever match. `.publish-old-` is milder — the sweep further down reclaims
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# it on the next publish of the same key. Bringing both under the arbiter's
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# enumeration is tracked as daniel/gitdan#30.
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OLD="${ROOT}/.publish-old-${OWN_KEY}-${TAG}"
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SNAP_NAME=$(basename "$DST")
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GRACE="${CACHE_READ_GRACE_SECONDS}"
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if [ ! -d "$SRC" ]; then
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echo "publish: no target dir at ${SRC} — nothing to snapshot"
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exit 0
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fi
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# Leftovers from a run cancelled mid-swap. Scoped to this job's own tag so a
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# concurrently running job's staging directory is never touched.
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rm -rf "${ROOT}/.stage-${TAG}" "$OLD"
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# Deferred reclamation from an earlier publish of THIS snapshot whose readers
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# had not drained in time. Safe to sweep now only if nothing is reading the
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# snapshot at all: a reader holds the snapshot path, not the deferred name, so
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# "no readers of snapshot-<key>" is the condition that makes every deferred
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# generation of it unreachable. Over-conservative by design — a reader of the
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# CURRENT generation also defers the sweep to the next publish, which costs a
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# directory listing, not correctness.
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if [ "$(live_reader_count "$ROOT" "$SNAP_NAME")" -eq 0 ]; then
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for stale_old in "${ROOT}/.publish-old-${OWN_KEY}-"*; do
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[ -d "$stale_old" ] || continue
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echo "publish: reclaiming deferred snapshot generation $(basename "$stale_old")"
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rm -rf "$stale_old"
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done
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fi
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start=$(date +%s)
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# The staged snapshot is hardlinked to SRC's artifacts and holds its OWN copy
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# of every file Cargo rewrites in place (unshare_mutable_paths, called inside
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# hardlink_clone_into). Without that, this branch's NEXT build would mutate
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# the snapshot it just published — the same aliasing hazard the consume side
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# closes, pointing the other way. The staging path is not the final name, so
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# `hardlink_clone_into`'s rename lands on DST only after OLD is out of the way.
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TMP_DST="${ROOT}/.publish-new-${TAG}"
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rm -rf "$TMP_DST"
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hardlink_clone_into "$SRC" "$TMP_DST" "$TAG" || {
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echo "::error::publish: failed to stage a snapshot of ${SRC}"
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exit 1
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}
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if [ -d "$DST" ]; then mv -T "$DST" "$OLD"; fi
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mv -T "$TMP_DST" "$DST"
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# The scan below happens strictly after the rename above, which is what makes
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# it impossible for a consumer holding the OLD generation to be missed: such a
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# consumer resolved the path before that rename, and published its marker
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# before that. See cache-lib.sh's reader-marker section.
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if [ -d "$OLD" ]; then
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if wait_for_readers "$ROOT" "$SNAP_NAME" "$GRACE"; then
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rm -rf "$OLD"
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else
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echo "::warning::publish: a consumer is still cloning the previous ${SNAP_NAME} after ${GRACE}s — deferring reclamation of $(basename "$OLD") rather than unlinking a tree being read"
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summary_line "- deferred reclaiming the previous \`${SNAP_NAME}\` generation (a consumer is still cloning it); it will be swept by a later publish"
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fi
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fi
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echo "publish: ${DST} ($(usage_gb "$DST") GB) published in $(( $(date +%s) - start ))s"
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summary_line "- published cache snapshot \`$(basename "$DST")\` ($(usage_gb "$DST") GB)"
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