Canonical REPO_POLICIES.md:97 requires Dockerfiles to install
development prerequisites by running script/bootstrap rather than
duplicating installs inline. The build stage did the opposite: an
inline `apk add --no-cache make` and its own `go mod download`, so it
maintained a second, independent notion of the toolchain — the
local-versus-CI divergence #24 exists to close, reintroduced one layer
down.
The stage now copies script/ plus go.mod/go.sum and runs
script/bootstrap, which ends in `go mod download`.
COPY --from=lint /usr/bin/golangci-lint is kept and moved above the
bootstrap layer. It is the only edge making this stage depend on the
lint stage, so removing it as redundant would silently stop the build
gating on lint. Copying it first also puts it on PATH before bootstrap
runs, so bootstrap's version check compares the lint stage's linter
against the pin on every build: the two stages are now provably one
toolchain rather than two that happen to agree, and bootstrap does not
pay for a from-source build of its own linter.
$GOPATH/bin joins PATH so that if the copied binary ever stops matching
the pin, bootstrap's reinstall lands somewhere PATH resolves instead of
failing its own verification.
All of it sits above ARG CHECK_EPOCH, and the chown and USER builder
still precede make check.
Four independent README defects, one docs-only pass. README.md is the
only file touched: the issue's definition of done restricts the change
to the README, so TODO.md is deliberately not updated here.
Remove the trailing attribution sentence from the Description. The
paragraph above it already carries authorship and licence, so nothing
is lost, and the naming it carried is not wanted in this repo's output.
Add the required Entrypoints section. House policy wants a README
section that opens by stating adherence to Scripts to Rule Them All,
links the standard, and documents every script/ entrypoint; grep for
"script/" in the README previously returned nothing, though all twelve
entrypoints exist and the Gitea workflow runs script/cibuild. Each
entry is written from reading the script, not from its name. Two
behaviours are called out because they are unusual and were hard-won:
script/bootstrap version-checks golangci-lint against its pin and
verifies the install is the copy PATH resolves rather than a shadowed
one, and script/docker and script/cibuild pass a fresh CHECK_EPOCH so
the Dockerfile's gate layers cannot be served from cache, which is
what keeps a green build from being one that ran nothing.
Fix the stale Build section. Every Makefile target became a thin shim
into script/, so the "Makefile is the single source of truth" claim is
no longer true; point at script/ instead. Document make bootstrap and
make setup, which exist and were undocumented. Drop the make clean
clause about a legacy local files.dat, a file nothing produces any
more; the remaining files.dat references in Makefile, .gitignore and
.dockerignore are #22 and are untouched.
Fix the scan summary example, which showed 123456 files seen against
components summing to 123400. removed is deliberately excluded from
the total, as the following paragraph says and as scan.go implements,
so the total is what was wrong.
hashPhase returned the moment recordRun failed and left the pool
running: the feeder parked forever on a full jobs channel and every
worker on a full results channel. Until #4 landed the process exited
before that mattered; now that runScan returns an error and unwinds,
the goroutines are a real leak.
The pool is now an owned hashPool. Its context is derived from the
scan's, every blocking send in the feeder and the workers selects on
ctx.Done(), the feeder closes jobs on every path out so the workers'
range always terminates, and hashPhase defers pool.stop(), which
cancels and then drains results until the last goroutine has exited.
Draining is the half that matters: a worker already parked on a send
cannot observe the cancellation until a receiver frees it.
ctx comes from cmd.Context() and is threaded through runScan,
syncScan, both worker pools and the database layer as the first
parameter throughout, so graceful interrupt handling has a path to
hook into rather than a pool to rewrite.
The walk pool never leaked, because walkPhase always drains its
events to close, but it has the same unbounded-send shape and gets
the same treatment, together with a ctx.Err() guard after the walk: a
cancelled walk leaves a partial size census, and the update phase
would read every file it never reached as vanished and delete its
record.
Tests drive the scan entry point against a database whose insert
trigger aborts, with a fixture large enough that the failure lands
partway through the hash phase with more runs queued than either pool
channel can hold, and assert that the scan fails instead of hanging
and that runtime.NumGoroutine polls back to its pre-scan baseline.
fatalf called os.Exit(1), which does not run deferred functions, so
every defer db.Close() was dead on the fatal path: the SQLite WAL was
left uncheckpointed and the -wal/-shm sidecars were left for the next
process to recover. It also made those paths impossible to exercise
in-process.
fatalf is gone. runScan, runReport, runTrees, loadRecords and
resolveRoots return their errors, so the deferred close always runs,
and the only exit point is run() in main.go.
Mapping errors to exit codes needs care: cobra prints the error and
the command's usage text for anything RunE returns, and main mapped
every Execute() error to exit 2. A runtime failure is not a usage
problem, so the runE adapter silences both for the subcommands and
marks their errors fatalError; run() reports a fatalError as
"sfdupes: ..." on stderr and exits 1, and leaves everything else --
cobra's own argument, flag and unknown-command errors, which cobra has
already reported with its usage text -- on exit 2. The bare
"sfdupes" invocation still prints usage and exits 2.
Exit codes and message text are unchanged: 0 on success even with
per-file warnings, 1 fatal, 2 usage, per README section "Error
handling and exit codes". Everything on stdout is still data only.
main_test.go drives the CLI in-process and covers all three: a fatal
error raised after the database is open (a database with no files
table) closes it and leaves no -wal or -shm behind for scan, report
and trees; a nonexistent PATH operand is fatal, not usage, and prints
no usage text; the usage errors still exit 2; and a scan that skipped
an unreadable file still exits 0.
The Next Step section still named the scripts-to-rule-them-all
conversion, which landed in 3abeacf on 2026-07-26 and closed#1
without recording itself in Completed Steps. TODO.md therefore
pointed the next contributor at finished work.
The backlog is no longer file-shaped: the Gitea tracker is
authoritative, with the open issues under the 1.0.0 milestone
defining what remains before the tag. Next Step now names the
milestone instead of restating a single issue that will drift, and
Status says so explicitly.
Workflow is reconciled with how work actually happens now: take an
issue, branch, implement with tests, record the result in the same
commit, open a PR titled "... (closes #N)", pass an independent
review, merge.
The scripts-to-rule-them-all conversion gains its missing Completed
Steps entry, and the golangci-lint entry now records its merge
commit 38a01bd and issue #3 rather than only the branch date.
Docs-only: TODO.md is the only file touched.
Bump the pinned golangci-lint from v2.12.1 to v2.12.2 in the
Dockerfile lint stage (tagged, digest-pinned Debian image) and in
script/bootstrap (go install ref). Replace .golangci.yml with the
canonical config: linter settings (lll, funlen, cyclop, dupl) move
under linters.settings per the v2 schema so they are actually
applied, and the redundant issues.exclude-use-default key is
dropped. No new lint findings surfaced; make check is green.
Bring the repo into conformance with the scripts-to-rule-them-all
(STRTA) scaffold. The real logic that lived inline in the Makefile now
lives in POSIX-sh entrypoints under script/, and the Makefile's standard
targets are thin @script/NAME shims.
- script/: bootstrap, setup, projectname, test, lint, fmt, fmt-check,
check, docker, precommit, install-precommit, cibuild. All are
executable #!/bin/sh entrypoints; the go mod tidy guard from the old
inline hooks recipe moved into script/precommit.
- Makefile: the nine standard targets (bootstrap, setup, test, lint,
fmt, fmt-check, check, docker, hooks) are now thin shims; the
repo-specific sfdupes/build/clean targets and the CGO_ENABLED export
are preserved.
- .gitea/workflows/check.yml: run script/cibuild instead of a bare
docker build.
- Dockerfile: run make check (and the build) as an unprivileged builder
user rather than root. We should never build or run as root, and doing
so also lets the permission-denied tests run legitimately: root
bypasses the chmod(0) that TestScanHardlinkRunFailsTogether relies on,
which made the in-image make check fail. HOME and the Go caches point
at the user's home so go build/test and golangci-lint can write.
make check passes locally and docker build . is green (the in-image
non-root make check passes, including the hardlink permission test).
Sort the hash queue by (device, inode) so reads proceed in inode
order, which minimizes seeking on spinning disks. Paths that are hard
links to the same inode form one run: the run is read once and every
path shares the result, so link farms (rsync --link-dest backups)
cost one read per inode instead of one per path. A run that fails to
read skips all of its paths.
Zero-length files have constant head/tail hashes; return them without
opening the file.
The hash progress total now counts actual reads (runs, not paths).
Hard-linked paths still appear in reports as duplicates — their
content is identical — though they share storage; noted in README.
On a database with tens of millions of records, indexing the existing
rows before the walk takes real single-core time with no output,
which is indistinguishable from a hang. Give the load its own
spinner, and render every phase display the moment the phase starts
instead of waiting for its first completed item.
Restructure scan into three phases: walk+stat, hash, update.
The stat pass is folded into the walk workers: each regular file is
lstatted as its directory is read, while the metadata is hot. The
walk builds a scan-wide size census (walked files plus records
outside the scan roots), and unchanged already-hashed files resolve
during the walk without further work.
Only files whose size at least one other file shares are ever read:
a size-unique file cannot be a duplicate, so it is recorded without
hashes (head and tail empty). When a later scan makes its size
shared, the file is hashed then, even if otherwise unchanged. report
excludes unhashed records; trees gives them a never-matching
signature so a tree containing one never compares equal to another.
Hashed records are committed in batched transactions while the hash
phase runs, so an interrupted scan keeps everything hashed so far
and the next run resumes cheaply. The hash phase total is exact,
giving a meaningful ETA.
Memory drops accordingly: the existing-record index holds only path,
size, mtime, and a hashed flag (no hash values); the walk carries one
small record per candidate file; overlapping operands are pruned up
front instead of deduplicating every walked path in a scan-wide set.
Files no bigger than one chunk are hashed with a single read.
Plain make now builds sfdupes (previously the default was all =
check + build); make build remains as an alias, so the Dockerfile
and existing habits keep working. The sfdupes target is phony: go
build's own cache decides what to recompile.
All PATH operands belong to a single scan: every operand seeds the
shared walk worker pool, and each pass (walk, stat, hash, update)
runs exactly once over the whole scan, so pass totals, percentages,
and ETAs are scan-global. The per-operand walk/hash/update cycles and
their stderr operand announcements are gone; duplicate paths from
overlapping operands are deduplicated before stat.
The update pass now commits in batched transactions (10k changes per
batch) instead of one scan-wide transaction: the filesystem is
authoritative and the database is an eventually-consistent reflection
of it, so scan-level atomicity buys nothing, while batches keep the
WAL small and let concurrent reports observe progress.
Phases are strictly sequential again — walk, stat, hash, update per
operand — with parallelism only inside each phase. The walk
enumerates paths with per-directory workers (no lstat of file
entries); the stat pass lstats every collected path with per-file
workers, restoring its exact-total/ETA progress bar and per-file
parallelism inside wide flat directories.
With per-operand walk/hash/update cycles, a multi-operand invocation
(e.g. scan /srv/*) showed pass totals that looked like the whole
run's: an operator watching operand 3 of 14 hash 300k files concluded
the other 20M files were being skipped. Print the operand path and
its position before each cycle.
Replace the single-goroutine WalkDir traversal with a per-directory
worker pool: workers read directories concurrently and lstat entries
while each directory is fresh in cache, recording size and mtime
during the walk. This folds the separate stat pass away (halving
metadata I/O per run) and overlaps metadata latency, which dominated
on busy pools — a sequential walk of a ~22M-file tree was observed
taking over 4 hours.
Each PATH operand now loads its scope, walks, hashes, and commits in
its own transaction, so an interrupted scan keeps every operand
completed so far; a later overlapping operand sees the records
committed by earlier ones and reuses them unchanged.
The walk pass is a single goroutine; on a busy ZFS pool it manages
only a few thousand directory entries per second and takes hours at
~20M files. Respecify it as a worker-pool traversal that reads
directories concurrently and records size/mtime during the walk,
folding away the separate stat pass and halving metadata I/O. Each
PATH operand now commits in its own transaction so an interrupted
scan keeps the operands completed so far.
scan now synchronizes a database that survives between runs
(SFDUPES_DATABASE, default /var/lib/sfdupes/db.sqlite) instead of
emitting a stream: operands are resolved to absolute paths, unchanged
files (same size, mtime not newer than recorded) are never re-read, new
and changed files are hashed, and records under the scanned operands
that were not verified this run are deleted; records outside the
operands are untouched. All changes commit in a single transaction, and
WAL journaling with a busy timeout keeps a report run during a cron
scan safe.
report and trees read the database (no positional arguments); the
NUL-terminated stream format, its parser, and the malformed-record
handling are gone. The driver is modernc.org/sqlite (pure Go), so
builds keep cgo disabled.
scan will maintain a persistent database of file signatures
(default /var/lib/sfdupes/db.sqlite, overridable via
SFDUPES_DATABASE) that survives between runs; rescans hash only new
or changed files (mtime/size) and remove records for vanished files,
so scan can be cronned daily. report and trees will read the
database instead of a scan stream.
scan now takes one or more PATH operands (directories or regular
files) via cobra flags instead of the -root flag with its /srv
default; invoking scan with no operand is a usage error and a
nonexistent operand is fatal. Filesystem boundaries are crossed by
default; the new -x/--one-file-system flag (GNU du/rsync convention)
stops the walk at each operand's filesystem, implemented by comparing
lstat device IDs with build-tagged helpers for darwin's int32 Dev.
Verified against a real mounted disk image: default crosses, -x does
not, --one-file-system is identical to -x.
Adds Description (name/purpose/category/license/author), Getting
Started, Rationale, TODO, License, and Author sections; the full
normative specification is preserved under Design. The stale non-goal
about having no git repository or CI is removed, and the Build section
now documents the Makefile targets.
Multistage build per policy: a fail-fast lint stage on the pinned
golangci-lint image runs fmt-check and lint, the builder stage reuses
its linter binary (which also forces stage ordering), runs make check,
and builds; the runtime stage is pinned alpine with just the binary.
CI runs docker build . on push with the checkout action pinned by
commit SHA. All image references pinned by sha256 digest with
version/date comments.
test/lint/fmt/fmt-check/check/docker/hooks plus build, all, and clean.
make check no longer builds the binary (it must not modify files); the
test target uses the 30s-timeout conditional -v rerun pattern. Version
is injected via -ldflags and exposed as sfdupes --version.
150 findings fixed: linter autofixes for whitespace style (wsl_v5,
nlreturn, noinlineerr), named returns removed, magic numbers replaced
with named constants, static errNotRegular error, explicit Close/Parse
error handling, unused cobra params renamed to _, and runReport/
runTrees/hashPass split into helpers to satisfy cyclop, gocognit, and
funlen. Behavior verified unchanged against the README smoke test.