Files
libakerror/tests/MUTATION.md
Andrew Kesterson f1283e21a3 Enforce status-code ownership and harden the name registry
Reservations were advisory bookkeeping: any component could name any status,
so the registry only detected declared-range overlap between components that
both opted in. Naming a status now requires a reservation.
akerr_register_status_name() checks that the range belongs to the caller, and
the legacy two-argument akerr_name_for_status() set path, which cannot
identify its caller, requires that some reservation covers the status. Every
refusal is logged and names the real owner, because a name that fails to
register degrades that code to "Unknown Error" in every later stack trace.

Fix a reservation made before the first PREPARE_ERROR being silently
discarded. akerr_init() clears the tables, so whichever component first
triggered it wiped an earlier reservation and the next component to claim the
same range was told it was free, producing exactly the undetected aliasing
the registry exists to prevent. Every registry entry point now calls
akerr_init(), which sets its guard before doing any work so those calls do
not recurse.

Replace the linear-scan name array with an open-addressed hash table, taking
lookup from O(n) to O(1) and raising usable capacity from 512 entries (366
free to consumers after errno registration) to 3072 (~2900 free). Both table
sizes are build-time overridable and applied PRIVATE: they live entirely in
src/error.c, so raising them cannot desynchronize a library from its
consumers the way AKERR_MAX_ERR_VALUE could. Exhausting either table is now
logged and returned to the caller rather than silently dropping the entry.
No dynamic allocation is introduced; both tables remain file-scope arrays,
and the library's undefined-symbol set gains only strcmp and strlen.

Register names for AKERR_EOF, AKERR_ITERATOR_BREAK and AKERR_NOT_IMPLEMENTED,
which had none and rendered as "Unknown Error" in every stack trace carrying
them. err_error_names.c now sweeps the whole AKERR_* offset span so a code
added without a name fails there instead of in production traces.

Add static assertions that the slot count is a power of two and that
AKERR_BADEXC stays inside the library's own 0-255 band, the latter guarding
against a host errno space large enough to push library codes into the range
consumers are told to allocate from.

Set a project version and soname (1.0.0 / libakerror.so.1) so a stale
installed library can no longer be silently paired with newer headers, and so
akerror.pc ships a real Version field instead of an empty one.

Mutation testing surfaced an out-of-bounds probe in the new table that the
suite did not catch: masking with SLOTS rather than SLOTS-1 indexes past the
array, and err_maxval.c asserted only that some names registered before the
table filled, which a collapsed probe sequence still satisfies. It now
requires a substantial entry count and reads every entry back by its own
distinct name.

Tests: 28/28 pass. Coverage 99.4% line / 86.8% branch. Mutation score for
src/error.c 74% -> 77.3%.

Compatibility: source and ABI break. AKERR_MAX_ERR_VALUE and the
__AKERR_ERROR_NAMES data symbol are gone, custom codes must move out of
0-255, and names must be registered against a reserved range. README.md
carries the migration steps.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-30 18:19:25 -04:00

6.1 KiB

Mutation testing

The unit tests tell us the library works. Mutation testing tells us the tests work — that they would actually fail if the library were broken.

scripts/mutation_test.py deliberately breaks the library in small ways ("mutants"), one at a time, and runs the whole CTest suite against each broken copy:

  • if the tests fail, the mutant is killed — good, the suite caught it;
  • if the tests still pass, the mutant survived — a bug of that shape would slip through, so it points at a missing test.

The mutation score is killed / (killed + survived). A surviving mutant is a to-do item: write a test that distinguishes the mutant from the original.

Running

No third-party tools are required — just Python 3 and the normal cmake/ctest toolchain. The harness never touches your working tree; it copies the repo to a scratch directory and mutates the copy.

# Default: mutate src/error.c and include/akerror.tmpl.h
scripts/mutation_test.py

# Faster: just the C source
scripts/mutation_test.py --target src/error.c

# See what would run without building anything
scripts/mutation_test.py --target src/error.c --list

# Gate CI: exit non-zero if the score drops below 90%
scripts/mutation_test.py --threshold 90

Via CMake (configures a build first if needed):

cmake --build build --target mutation

Useful flags: --timeout SECONDS (per-suite build+test cap; a mutant that hangs is counted as killed), --keep (retain the scratch copy for debugging), --work DIR (use a specific scratch directory), --junit FILE (write a JUnit XML report — surviving mutants appear as failing test cases).

CI reporting

Both the unit tests and the mutation run emit JUnit XML that CI consumes:

  • ctest --test-dir build --output-junit "$(pwd)/ctest-junit.xml" — note the absolute path; --output-junit otherwise resolves relative to the test dir.
  • scripts/mutation_test.py --junit mutation-junit.xml

.gitea/workflows/ci.yaml runs both and feeds the XML to mikepenz/action-junit-report (with if: always(), so results publish even when a gate fails). The reporter runs with annotate_only: true: Gitea does not implement the Checks API the action uses to create a check run, so creating one 404s (mikepenz/action-junit-report#23). annotate_only skips that call and the results surface via the job summary (detailed_summary: true) instead. The generated *-junit.xml files are git-ignored.

Mutation operators

Each mutant changes exactly one location by one of:

Tag Operator Example
ROR relational operator ==!=, <<=, >=>
LCR logical connector &&||
BCR boolean constant truefalse
AOR arithmetic / compound assign +-, +=-=
ICR integer literal 01, 10
SDL statement deletion err->refcount += 1;(removed)

Preprocessor control lines, comments, and the block of error-code / buffer-size #defines are skipped: mutating those produces equivalent or uninteresting mutants that only add noise.

Interpreting survivors

Not every survivor is a test gap — some mutants are equivalent (they don't change observable behaviour, e.g. resizing an internal scratch buffer). For each survivor, decide:

  1. Real gap → add or strengthen a test in tests/ so the mutant is killed, then re-run.
  2. Equivalent mutant → no test can catch it; leave a note. If a specific line is a persistent source of equivalents, narrow the target with --target or extend the skip rules in scripts/mutation_test.py.

Re-run after adding tests and confirm the score went up.

Current status

src/error.c scores ~77% (the CI gate is set to 65% for headroom). The remaining survivors are dominated by:

  • Equivalent mutants in akerr_init: deleting the memset/NULL setup of file-scope statics (AKERR_ARRAY_ERROR, __akerr_last_ditch, __akerr_last_ignored) changes nothing, because C already zero-initializes objects with static storage duration. int oldid = 0;1 is likewise dead: it is overwritten before use.
  • Default logger / handler internals (vfprintf, va_end, the errctx == NULL branch, exit(1)): killing these needs a subprocess-based test that captures a child's stderr and exit code, rather than the in-process capturing logger the other tests use.
  • Static assertions (akerr_assert_name_slots_pow2 and the occupancy cap it guards): a mutated compile-time assertion that still compiles has no runtime behavior to observe. Unkillable by construction — the assertion is itself the test, and tests/err_maxval.c covers the runtime consequence.
  • Hash and probe details in akerr_status_slot: dropping one of the multiply steps in akerr_status_hash leaves a worse but still correct hash, and probing backwards (slot - 1u) is an equally valid sequence over a power-of-two table. Both are behaviorally equivalent.
  • The capacity <= 0 guard in akerr_copy_string, which is defensive: both call sites pass a positive constant.

Findings surfaced by mutation testing:

  • Superseded: status names now use a private sparse registry, so the old public AKERR_MAX_ERR_VALUE ceiling and its consumer ABI mismatch no longer exist. tests/err_maxval.c covers arbitrary int values and registry exhaustion.
  • Fixed: the open-addressing probe mask (& (AKERR_STATUS_NAME_SLOTS - 1)) could be mutated to - 0 or + 1 — both of which index past the end of the table — without any test noticing. tests/err_maxval.c only asserted that some names registered before the table filled, which a collapsed probe sequence still satisfies. It now requires a substantial number of entries and reads every one of them back by its own distinct name, so a probe that revisits slots fails on both counts.