1use sha2::{Digest, Sha256};
2use std::{
3 borrow::Cow,
4 collections::BTreeSet,
5 ffi::OsStr,
6 fmt::Write as _,
7 fs::{self, File},
8 io::{self, Read as _},
9 path::{Path, PathBuf},
10};
11
12#[cfg(unix)]
13use std::os::unix::{ffi::OsStrExt as _, fs::MetadataExt as _};
14#[cfg(windows)]
15use std::os::windows::ffi::OsStrExt as _;
16
17#[derive(Debug)]
18struct AtomicCopyErrorContext {
19 source_path: PathBuf,
20 destination_path: PathBuf,
21 source: io::Error,
22}
23
24impl std::fmt::Display for AtomicCopyErrorContext {
25 fn fmt(&self, formatter: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
26 write!(
27 formatter,
28 "failed to atomically copy {} to {}: {}",
29 self.source_path.display(),
30 self.destination_path.display(),
31 self.source
32 )
33 }
34}
35
36impl std::error::Error for AtomicCopyErrorContext {
37 fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
38 Some(&self.source)
39 }
40}
41
42#[derive(Clone, Copy, Debug, Eq, Hash, Ord, PartialEq, PartialOrd)]
44pub struct InputDigest([u8; 32]);
45
46impl InputDigest {
47 #[must_use]
49 pub const fn as_bytes(&self) -> &[u8; 32] {
50 &self.0
51 }
52
53 #[must_use]
55 pub fn to_hex(self) -> String {
56 let mut hex = String::with_capacity(64);
57 write!(hex, "{self}").expect("writing to a String cannot fail");
58 hex
59 }
60}
61
62impl std::fmt::Display for InputDigest {
63 fn fmt(&self, formatter: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
64 for byte in self.0 {
65 write!(formatter, "{byte:02x}")?;
66 }
67 Ok(())
68 }
69}
70
71pub(super) struct InputHasher {
72 state: Sha256,
73 read_buffer: Vec<u8>,
74}
75
76impl InputHasher {
77 pub(super) fn new(domain: &str) -> Self {
78 let mut hasher = Self {
79 state: Sha256::new(),
80 read_buffer: Vec::new(),
81 };
82 hasher.field("domain", domain.as_bytes());
83 hasher
84 }
85
86 pub(super) fn field(&mut self, label: &str, value: &[u8]) {
87 self.field_header(
88 label,
89 u64::try_from(value.len()).expect("input value length must fit in u64"),
90 );
91 self.state.update(value);
92 }
93
94 fn field_header(&mut self, label: &str, value_len: u64) {
95 self.state.update(
96 u64::try_from(label.len())
97 .expect("input label length must fit in u64")
98 .to_le_bytes(),
99 );
100 self.state.update(label.as_bytes());
101 self.state.update(value_len.to_le_bytes());
102 }
103
104 fn file_field(&mut self, label: &str, path: &Path) -> io::Result<u64> {
105 let mut file = File::open(path)?;
106 let expected_len = file.metadata()?.len();
107 self.field_header(label, expected_len);
108
109 let mut actual_len = 0_u64;
110 let buffer_len = usize::try_from(expected_len.clamp(1, 64 * 1024))
113 .expect("bounded artifact buffer length must fit in usize");
114 if self.read_buffer.len() < buffer_len {
117 self.read_buffer
120 .reserve_exact(buffer_len - self.read_buffer.len());
121 self.read_buffer.resize(buffer_len, 0);
122 }
123 loop {
124 let read = file.read(&mut self.read_buffer[..buffer_len])?;
125 if read == 0 {
126 break;
127 }
128 actual_len = actual_len
129 .saturating_add(u64::try_from(read).expect("artifact read length must fit in u64"));
130 if actual_len > expected_len {
131 break;
132 }
133 self.state.update(&self.read_buffer[..read]);
134 }
135 if actual_len != expected_len {
136 return Err(io::Error::new(
137 io::ErrorKind::InvalidData,
138 format!(
139 "file changed size while hashing: expected {expected_len} bytes, read {actual_len}"
140 ),
141 ));
142 }
143 Ok(actual_len)
144 }
145
146 pub(super) fn finish(self) -> InputDigest {
147 InputDigest(self.state.finalize().into())
148 }
149}
150
151pub(super) fn digest_bytes(domain: &str, value: &[u8]) -> InputDigest {
152 let mut hasher = InputHasher::new(domain);
153 hasher.field("content", value);
154 hasher.finish()
155}
156
157#[derive(Clone, Copy, Debug, Eq, PartialEq)]
158pub(super) struct FileDigest {
159 pub(super) bytes: u64,
160 pub(super) digest: InputDigest,
161}
162
163pub(super) fn digest_file(domain: &str, path: &Path) -> io::Result<FileDigest> {
164 let mut hasher = InputHasher::new(domain);
165 let bytes = hasher.file_field("content", path)?;
166 Ok(FileDigest {
167 bytes,
168 digest: hasher.finish(),
169 })
170}
171
172pub(super) fn read_stamp_with_limit(path: &Path, maximum_len: usize) -> io::Result<Option<String>> {
175 read_file_with_limit(path, maximum_len)?
176 .map(|contents| {
177 String::from_utf8(contents)
178 .map_err(|error| io::Error::new(io::ErrorKind::InvalidData, error))
179 })
180 .transpose()
181}
182
183pub(super) fn read_file_with_limit(path: &Path, maximum_len: usize) -> io::Result<Option<Vec<u8>>> {
185 use ic_host_artifacts::artifact::ArtifactError;
186 use ic_host_fs::read::read_file;
187
188 match read_file(path, maximum_len) {
191 Ok(contents) => Ok(Some(contents)),
192 Err(ArtifactError::LimitExceeded { .. }) => Ok(None),
193 Err(ArtifactError::NotRegularFile) => Err(io::Error::new(
194 io::ErrorKind::InvalidData,
195 ArtifactError::NotRegularFile,
196 )),
197 Err(error) => Err(error.into()),
198 }
199}
200
201pub(super) fn destination_matches_digest(
204 domain: &str,
205 destination: &Path,
206 expected: &FileDigest,
207) -> bool {
208 destination_is_reusable(destination, expected.bytes)
209 && digest_file(domain, destination).is_ok_and(|actual| actual == *expected)
210}
211
212pub(super) fn destination_matches_bytes(destination: &Path, expected: &[u8]) -> bool {
213 destination_is_reusable(
214 destination,
215 u64::try_from(expected.len()).expect("artifact byte length must fit in u64"),
216 ) && read_file_with_limit(destination, expected.len())
217 .is_ok_and(|actual| actual.as_deref() == Some(expected))
218}
219
220fn destination_is_reusable(destination: &Path, expected_bytes: u64) -> bool {
221 #[cfg(unix)]
222 {
223 let Ok(metadata) = fs::symlink_metadata(destination) else {
224 return false;
225 };
226 let effective_uid = unsafe { libc::geteuid() };
228 if !metadata.file_type().is_file()
231 || metadata.nlink() != 1
232 || metadata.uid() != effective_uid
233 || metadata.mode() & 0o600 != 0o600
234 || metadata.mode() & 0o7111 != 0
235 || metadata.len() != expected_bytes
236 {
237 return false;
238 }
239 true
240 }
241 #[cfg(not(unix))]
242 {
243 let _ = (destination, expected_bytes);
245 false
246 }
247}
248
249pub(super) fn digest_labeled_paths<L: AsRef<Path>, P: AsRef<Path>>(
250 domain: &str,
251 paths: impl IntoIterator<Item = (L, P)>,
252 excluded_roots: &[PathBuf],
253) -> io::Result<InputDigest> {
254 let mut paths = paths.into_iter().collect::<Vec<_>>();
255 paths.sort_by(|(left, _), (right, _)| {
256 os_bytes(left.as_ref().as_os_str()).cmp(&os_bytes(right.as_ref().as_os_str()))
257 });
258
259 let excluded_roots = excluded_roots
260 .iter()
261 .filter_map(|path| path.canonicalize().ok())
262 .collect::<Vec<_>>();
263 let mut visited_directories = BTreeSet::new();
264 let mut hasher = InputHasher::new(domain);
265 for (label, path) in paths {
266 hash_path(
267 &mut hasher,
268 label.as_ref(),
269 path.as_ref(),
270 &excluded_roots,
271 &mut visited_directories,
272 true,
273 None,
274 )?;
275 }
276 Ok(hasher.finish())
277}
278
279#[derive(Default)]
280pub(super) struct LabeledPathDigestCache {
281 entries: Vec<LabeledPathDigestCacheEntry>,
282}
283
284struct LabeledPathDigestCacheEntry {
285 domain: String,
286 label: PathBuf,
287 path: PathBuf,
288 canonical_root: PathBuf,
289 excluded_roots: Vec<PathBuf>,
290 traversed_external_path: bool,
291 digest: InputDigest,
292}
293
294struct HashPathTrace {
295 canonical_root: PathBuf,
296 traversed_external_path: bool,
297}
298
299pub(super) fn digest_labeled_paths_composable<'a>(
300 domain: &str,
301 paths: impl IntoIterator<Item = (&'a Path, &'a Path)>,
302 excluded_roots: &[PathBuf],
303 cache: &mut LabeledPathDigestCache,
304) -> io::Result<InputDigest> {
305 let mut paths = paths.into_iter().collect::<Vec<_>>();
306 paths.sort_by(|(left, _), (right, _)| {
307 os_bytes(left.as_os_str()).cmp(&os_bytes(right.as_os_str()))
308 });
309 let excluded_roots = excluded_roots
310 .iter()
311 .filter_map(|path| path.canonicalize().ok())
312 .collect::<Vec<_>>();
313 let mut hasher = InputHasher::new(&format!("{domain}/composable-v1"));
314 for (label, path) in paths {
315 let digest = cache.digest_root(domain, label, path, &excluded_roots)?;
316 hasher.field("input-label", &os_bytes(label.as_os_str()));
317 hasher.field("input-digest", digest.as_bytes());
318 }
319 Ok(hasher.finish())
320}
321
322impl LabeledPathDigestCache {
323 fn digest_root(
324 &mut self,
325 domain: &str,
326 label: &Path,
327 path: &Path,
328 excluded_roots: &[PathBuf],
329 ) -> io::Result<InputDigest> {
330 let canonical_root = path.canonicalize()?;
331 if let Some(entry) = self.entries.iter().find(|entry| {
332 entry.domain == domain
333 && entry.label == label
334 && entry.path == path
335 && entry.excluded_roots.iter().eq(effective_root_exclusions(
336 &entry.canonical_root,
337 excluded_roots,
338 entry.traversed_external_path,
339 ))
340 }) {
341 return Ok(entry.digest);
342 }
343 let mut hasher = InputHasher::new(&format!("{domain}/root-v1"));
344 let mut trace = HashPathTrace {
345 canonical_root: canonical_root.clone(),
346 traversed_external_path: false,
347 };
348 hash_path(
349 &mut hasher,
350 label,
351 path,
352 excluded_roots,
353 &mut BTreeSet::new(),
354 true,
355 Some(&mut trace),
356 )?;
357 let digest = hasher.finish();
358 self.entries.push(LabeledPathDigestCacheEntry {
359 domain: domain.to_owned(),
360 label: label.to_owned(),
361 path: path.to_owned(),
362 canonical_root,
363 excluded_roots: effective_root_exclusions(
364 &trace.canonical_root,
365 excluded_roots,
366 trace.traversed_external_path,
367 )
368 .cloned()
369 .collect(),
370 traversed_external_path: trace.traversed_external_path,
371 digest,
372 });
373 Ok(digest)
374 }
375}
376
377fn effective_root_exclusions<'a>(
378 canonical_root: &'a Path,
379 excluded_roots: &'a [PathBuf],
380 traversed_external_path: bool,
381) -> impl Iterator<Item = &'a PathBuf> {
382 excluded_roots.iter().filter(move |excluded| {
383 traversed_external_path
384 || excluded.starts_with(canonical_root)
385 || canonical_root.starts_with(excluded)
386 })
387}
388
389fn hash_path(
390 hasher: &mut InputHasher,
391 label: &Path,
392 path: &Path,
393 excluded_roots: &[PathBuf],
394 visited_directories: &mut BTreeSet<PathBuf>,
395 declared_root: bool,
396 mut trace: Option<&mut HashPathTrace>,
397) -> io::Result<()> {
398 let context =
399 |error: io::Error| io::Error::new(error.kind(), format!("{}: {error}", path.display()));
400 let canonical = path.canonicalize().map_err(context)?;
401 if let Some(trace) = &mut trace
402 && !canonical.starts_with(&trace.canonical_root)
403 {
404 trace.traversed_external_path = true;
405 }
406 if excluded_roots
407 .iter()
408 .any(|excluded| canonical.starts_with(excluded))
409 {
410 if declared_root {
411 return Err(io::Error::new(
412 io::ErrorKind::InvalidInput,
413 format!(
414 "declared input is located inside an excluded cache root: {}",
415 path.display()
416 ),
417 ));
418 }
419 return Ok(());
420 }
421
422 let metadata = fs::metadata(path).map_err(context)?;
423 let label_bytes = os_bytes(label.as_os_str());
424 if metadata.is_file() {
425 hasher.field("file-path", &label_bytes);
426 hasher.file_field("file-content", path).map_err(context)?;
427 return Ok(());
428 }
429 if !metadata.is_dir() {
430 return Err(io::Error::new(
431 io::ErrorKind::InvalidInput,
432 format!(
433 "watched input is not a regular file or directory: {}",
434 path.display()
435 ),
436 ));
437 }
438
439 hasher.field("directory", &label_bytes);
440 if !visited_directories.insert(canonical) {
441 hasher.field("directory-already-visited", &label_bytes);
442 return Ok(());
443 }
444
445 let mut entries = fs::read_dir(path)
446 .map_err(context)?
447 .map(|entry| entry.map(|entry| entry.file_name()))
448 .collect::<Result<Vec<_>, _>>()
449 .map_err(context)?;
450 #[cfg(unix)]
453 entries.sort_unstable_by(|left, right| os_bytes(left).cmp(&os_bytes(right)));
454 #[cfg(not(unix))]
456 entries.sort_by_cached_key(|name| os_bytes(name).into_owned());
457 for name in entries {
458 hash_path(
459 hasher,
460 &label.join(&name),
461 &path.join(&name),
462 excluded_roots,
463 visited_directories,
464 false,
465 trace.as_deref_mut(),
466 )?;
467 }
468 Ok(())
469}
470
471pub(super) fn copy_file_atomic(source: &Path, destination: &Path) -> io::Result<u64> {
472 let result = (|| {
473 let mut source_file = File::open(source)?;
474 ic_host_fs::durable::write_with(destination, |destination_file| {
475 io::copy(&mut source_file, destination_file)
476 })
477 })();
478 result.map_err(|source_error| {
479 io::Error::new(
480 source_error.kind(),
481 AtomicCopyErrorContext {
482 source_path: source.to_owned(),
483 destination_path: destination.to_owned(),
484 source: source_error,
485 },
486 )
487 })
488}
489
490#[cfg(unix)]
491pub(super) fn os_bytes(value: &OsStr) -> Cow<'_, [u8]> {
492 Cow::Borrowed(value.as_bytes())
493}
494
495#[cfg(windows)]
496pub(super) fn os_bytes(value: &OsStr) -> Cow<'_, [u8]> {
497 Cow::Owned(value.encode_wide().flat_map(u16::to_le_bytes).collect())
498}
499
500#[cfg(not(any(unix, windows)))]
501pub(super) fn os_bytes(value: &OsStr) -> Cow<'_, [u8]> {
502 Cow::Owned(value.to_string_lossy().as_bytes().to_vec())
503}
504
505#[cfg(test)]
506mod tests {
507 use super::{
508 LabeledPathDigestCache, copy_file_atomic, digest_bytes, digest_file,
509 digest_labeled_paths_composable,
510 };
511 use crate::artifacts::test_support::unique_temp_directory;
512 use std::{fs, path::PathBuf};
513
514 #[cfg(unix)]
515 use super::{InputHasher, digest_labeled_paths};
516 #[cfg(unix)]
517 use std::{ffi::OsStr, os::unix::ffi::OsStrExt as _};
518 #[cfg(windows)]
519 use std::{ffi::OsString, os::windows::ffi::OsStringExt as _};
520
521 #[test]
522 fn digest_text_preserves_lowercase_hex_and_leading_zeroes() {
523 let digest = super::InputDigest(std::array::from_fn(|index| {
524 u8::try_from(index).expect("digest byte index must fit")
525 }));
526 let expected = "000102030405060708090a0b0c0d0e0f101112131415161718191a1b1c1d1e1f";
527 assert_eq!(digest.to_hex(), expected);
528 assert_eq!(digest.to_string(), expected);
529 assert_eq!(super::InputDigest([0xff; 32]).to_string(), "ff".repeat(32));
530 }
531
532 #[test]
533 #[cfg(unix)]
534 fn labeled_path_digests_preserve_native_names_and_sorted_order() {
535 let names: &[&[u8]] = &[
536 b"\xce\xbb",
537 #[cfg(target_os = "linux")]
538 b"\xff",
539 ];
540 for &name in names {
541 let root = unique_temp_directory("native-path-digest");
542 let tree = root.join("tree");
543 fs::create_dir_all(tree.join("nested")).unwrap();
544 fs::write(tree.join(OsStr::from_bytes(name)), b"native").unwrap();
545 fs::write(tree.join("nested/z"), b"last").unwrap();
546 fs::write(tree.join("a"), b"first").unwrap();
547 fs::write(root.join("top"), b"top").unwrap();
548 let mut paths = [
549 (PathBuf::from("tree"), tree),
550 (PathBuf::from("aaa"), root.join("top")),
551 ];
552
553 let tree_fields = |hasher: &mut InputHasher| {
554 hasher.field("directory", b"tree");
555 hasher.field("file-path", b"tree/a");
556 hasher.field("file-content", b"first");
557 hasher.field("directory", b"tree/nested");
558 hasher.field("file-path", b"tree/nested/z");
559 hasher.field("file-content", b"last");
560 hasher.field("file-path", &[b"tree/".as_slice(), name].concat());
561 hasher.field("file-content", b"native");
562 };
563 let mut expected = InputHasher::new("native-path-test-v1");
564 expected.field("file-path", b"aaa");
565 expected.field("file-content", b"top");
566 tree_fields(&mut expected);
567 let expected = expected.finish();
568
569 let mut top = InputHasher::new("native-path-test-v1/root-v1");
570 top.field("file-path", b"aaa");
571 top.field("file-content", b"top");
572 let mut tree = InputHasher::new("native-path-test-v1/root-v1");
573 tree_fields(&mut tree);
574 let mut composable = InputHasher::new("native-path-test-v1/composable-v1");
575 composable.field("input-label", b"aaa");
576 composable.field("input-digest", top.finish().as_bytes());
577 composable.field("input-label", b"tree");
578 composable.field("input-digest", tree.finish().as_bytes());
579 let composable = composable.finish();
580
581 for _ in 0..2 {
582 assert_eq!(
583 digest_labeled_paths(
584 "native-path-test-v1",
585 paths.iter().map(|(label, path)| (label, path)),
586 &[],
587 )
588 .unwrap(),
589 expected,
590 );
591 assert_eq!(
592 digest_labeled_paths_composable(
593 "native-path-test-v1",
594 paths
595 .iter()
596 .map(|(label, path)| (label.as_path(), path.as_path())),
597 &[],
598 &mut LabeledPathDigestCache::default(),
599 )
600 .unwrap(),
601 composable,
602 );
603 paths.reverse();
604 }
605 fs::remove_dir_all(root).unwrap();
606 }
607 }
608
609 #[test]
610 #[cfg(unix)]
611 fn native_bytes_preserve_non_utf8_without_a_filesystem_roundtrip() {
612 assert_eq!(
613 super::os_bytes(OsStr::from_bytes(b"name\xff")).as_ref(),
614 b"name\xff"
615 );
616 }
617
618 #[test]
619 #[cfg(windows)]
620 fn native_names_preserve_utf16_little_endian_encoding() {
621 let value = OsString::from_wide(&[0x0061, 0xd800, 0x0100]);
622 assert_eq!(super::os_bytes(&value).as_ref(), &[0x61, 0, 0, 0xd8, 0, 1]);
623 }
624
625 #[test]
626 fn streamed_fields_preserve_bytes_across_different_file_sizes() {
627 let root = unique_temp_directory("streamed-field-sizes");
628 let source = root.join("source");
629 let contents = (0..192 * 1024 + 37)
630 .map(|index| u8::try_from(index % 251).unwrap())
631 .collect::<Vec<_>>();
632 let mut streamed = super::InputHasher::new("streamed-fields-v1");
633 let mut expected = super::InputHasher::new("streamed-fields-v1");
634 for length in [1, 64 * 1024 - 1, contents.len(), 0, 7, 1024, 64 * 1024 + 1] {
635 let bytes = &contents[..length];
636 fs::write(&source, bytes).unwrap();
637 assert_eq!(streamed.file_field("part", &source).unwrap(), length as u64);
638 expected.field("part", bytes);
639 }
640 assert_eq!(streamed.finish(), expected.finish());
641 fs::remove_dir_all(root).unwrap();
642 }
643
644 #[test]
645 fn streaming_digest_and_atomic_copy_preserve_exact_bytes() {
646 let root = unique_temp_directory("streaming-digest");
647 let source = root.join("source");
648 let destination = root.join("destination");
649 let mut contents = vec![0_u8; 192 * 1024 + 37];
650 for (index, byte) in contents.iter_mut().enumerate() {
651 *byte = u8::try_from(index % 251).expect("test byte must fit");
652 }
653 for length in [
654 0,
655 1,
656 1024,
657 16 * 1024,
658 64 * 1024 - 1,
659 64 * 1024,
660 64 * 1024 + 1,
661 contents.len(),
662 ] {
663 let data = &contents[..length];
664 fs::write(&source, data).expect("write source");
665 let streamed = digest_file("streaming-test-v1", &source).expect("digest file");
666 assert_eq!(
667 streamed.bytes,
668 u64::try_from(length).expect("fixture length must fit in u64")
669 );
670 assert_eq!(streamed.digest, digest_bytes("streaming-test-v1", data));
671 }
672
673 ic_host_fs::durable::write_bytes(&destination, b"old").expect("write original destination");
674 assert_eq!(
675 copy_file_atomic(&source, &destination).expect("copy source atomically"),
676 u64::try_from(contents.len()).expect("fixture length must fit in u64")
677 );
678 assert_eq!(
679 fs::read(&destination).expect("read copied destination"),
680 contents
681 );
682
683 let missing = root.join("missing");
684 let error = copy_file_atomic(&missing, &destination).expect_err("missing source must fail");
685 let message = error.to_string();
686 assert!(message.contains(&missing.display().to_string()));
687 assert!(message.contains(&destination.display().to_string()));
688 fs::remove_dir_all(root).expect("remove streaming-digest test directory");
689 }
690
691 #[test]
692 #[cfg(unix)]
693 fn atomic_publication_supports_long_destination_names() {
694 let root = unique_temp_directory("atomic-long-destination");
695 let destination = root.join("a".repeat(255));
696 fs::write(&destination, b"original output").unwrap();
698 let source = root.join("source");
699 fs::write(&source, b"copied output").unwrap();
700 assert_eq!(copy_file_atomic(&source, &destination).unwrap(), 13);
701 assert_eq!(fs::read(&destination).unwrap(), b"copied output");
702 assert_eq!(fs::read_dir(&root).unwrap().count(), 2);
703 fs::remove_dir_all(root).unwrap();
704 }
705
706 #[test]
707 fn composable_digest_reuses_roots_across_irrelevant_exclusion_changes() {
708 let root = unique_temp_directory("composable-digest-cache");
709 let input = root.join("input");
710 fs::create_dir_all(&input).expect("create composable input");
711 fs::create_dir_all(root.join("generated-a")).expect("create first generated root");
712 fs::create_dir_all(root.join("generated-b")).expect("create second generated root");
713 fs::write(input.join("source"), b"source").expect("write composable input");
714 let paths = [(PathBuf::from("shared"), input)];
715 let mut cache = LabeledPathDigestCache::default();
716
717 let first = digest_labeled_paths_composable(
718 "composable-test-v1",
719 paths
720 .iter()
721 .map(|(label, path)| (label.as_path(), path.as_path())),
722 &[root.join("generated-a")],
723 &mut cache,
724 )
725 .expect("hash first composable input");
726 let second = digest_labeled_paths_composable(
727 "composable-test-v1",
728 paths
729 .iter()
730 .map(|(label, path)| (label.as_path(), path.as_path())),
731 &[root.join("generated-b")],
732 &mut cache,
733 )
734 .expect("reuse composable input root");
735
736 assert_eq!(first, second);
737 assert_eq!(cache.entries.len(), 1);
738 fs::remove_dir_all(root).expect("remove composable digest fixture");
739 }
740
741 #[test]
742 fn composable_digest_rehashes_changed_descendant_exclusions_and_rejects_ancestors() {
743 let root = unique_temp_directory("composable-relevant-exclusions");
744 let input = root.join("input");
745 let generated = input.join("generated");
746 fs::create_dir_all(&generated).unwrap();
747 fs::write(input.join("source"), b"source").unwrap();
748 fs::write(generated.join("artifact"), b"generated").unwrap();
749 let paths = [(PathBuf::from("input"), input.clone())];
750 let digest = |exclusions: &[PathBuf], cache: &mut LabeledPathDigestCache| {
751 digest_labeled_paths_composable(
752 "exclusions-test-v1",
753 paths
754 .iter()
755 .map(|(label, path)| (label.as_path(), path.as_path())),
756 exclusions,
757 cache,
758 )
759 };
760 let mut cache = LabeledPathDigestCache::default();
761 let excluded = digest(std::slice::from_ref(&generated), &mut cache).unwrap();
762 let included = digest(&[], &mut cache).unwrap();
763 assert_ne!(included, excluded);
764 assert_eq!(
765 included,
766 digest(&[], &mut LabeledPathDigestCache::default()).unwrap(),
767 );
768 for ancestor in [&input, &root] {
769 assert_eq!(
770 digest(std::slice::from_ref(ancestor), &mut cache)
771 .unwrap_err()
772 .kind(),
773 std::io::ErrorKind::InvalidInput,
774 );
775 }
776 assert_eq!(
777 digest(std::slice::from_ref(&generated), &mut cache).unwrap(),
778 excluded,
779 );
780 fs::remove_dir_all(root).unwrap();
781 }
782
783 #[test]
784 #[cfg(unix)]
785 fn composable_digest_tracks_exclusions_beyond_an_external_symlink() {
786 let root = unique_temp_directory("composable-external-exclusions");
787 let input = root.join("input");
788 let external = root.join("external");
789 fs::create_dir_all(&input).unwrap();
790 fs::create_dir_all(external.join("first")).unwrap();
791 fs::create_dir_all(external.join("second")).unwrap();
792 fs::write(input.join("source"), b"source").unwrap();
793 fs::write(external.join("first/file"), b"first").unwrap();
794 fs::write(external.join("second/file"), b"second").unwrap();
795 std::os::unix::fs::symlink(&external, input.join("linked")).unwrap();
796 let paths = [(PathBuf::from("input"), input)];
797 let digest = |exclusion: &PathBuf, cache: &mut LabeledPathDigestCache| {
798 digest_labeled_paths_composable(
799 "external-exclusions-test-v1",
800 paths
801 .iter()
802 .map(|(label, path)| (label.as_path(), path.as_path())),
803 std::slice::from_ref(exclusion),
804 cache,
805 )
806 };
807 let mut cache = LabeledPathDigestCache::default();
808 let first = digest(&external.join("first"), &mut cache).unwrap();
809 let second = digest(&external.join("second"), &mut cache).unwrap();
810 assert_ne!(first, second);
811 assert_eq!(
812 second,
813 digest(
814 &external.join("second"),
815 &mut LabeledPathDigestCache::default(),
816 )
817 .unwrap(),
818 );
819 assert_eq!(digest(&external.join("first"), &mut cache).unwrap(), first);
820 fs::remove_dir_all(root).unwrap();
821 }
822}