Every entry point may now be called from any thread. akerr_init() runs exactly once however many threads race into it, the pool hands each slot to exactly one thread, and reservations, registrations and lookups are serialized against each other. One recursive lock covers both tables (src/lock.h, private). Recursive because raising an error re-enters the library -- FAIL needs a pool slot and a status name -- and single because two locks would mean an ordering to get wrong. Registry bodies that use the early-returning FAIL_*_RETURN macros are split into *_locked functions behind wrappers that take and release the lock on one path; consumer callbacks are never called under it. This is an ABI break, hence 2.0.0 and SOVERSION 2: - akerr_next_error() now returns a context that already holds its reference. Finding a free slot and claiming it has to be one operation, or two threads scanning at once are handed the same slot. ENSURE_ERROR_READY no longer increments. - __akerr_last_ignored is thread-local, as is the last-ditch context used to report akerr_release_error(NULL). The threading backend is chosen at configure time by AKERR_THREADS (auto, pthread, none). auto fails the configure when it cannot find POSIX threads rather than quietly building a library that reports itself thread safe and is not. generrno.sh stamps the decision into the generated header as AKERR_THREAD_SAFE, so a consumer cannot disagree with the library about it. Tests: err_threads_init, err_threads_pool and err_threads_registry assert exclusive slot ownership, exactly one winner for a contested range, and every registered name readable back under contention. AKERR_SANITIZE builds the library and the tests with any sanitizer; scripts/thread_test.sh runs the suite under ThreadSanitizer and CI runs it. Removing the pool lock makes both the sanitizer and the plain assertions fail, so the tests are not vacuous. Documented in README.md and UPGRADING.md, including what this does not cover: renaming a status while another thread looks it up, and which of two simultaneous unhandled errors sets the exit status. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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Repository Guidelines
Project Structure & Module Organization
This is a small C library built with CMake. Core implementation lives in
src/error.c. src/lock.h is private: it selects the threading backend
(pthread or none) and is not installed. The public header is generated at build
time from include/akerror.tmpl.h by scripts/generrno.sh, which also
generates src/errno.c under the build directory and stamps in whether the
build is thread safe. CMake package and pkg-config templates are in cmake/ and
akerror.pc.in. Tests are one-file C programs in tests/; shared test helpers
live beside them, such as tests/err_capture.h and tests/err_threads.h.
Build, Test, and Development Commands
Use an out-of-tree build:
cmake -S . -B build
cmake --build build
ctest --test-dir build --output-on-failure
cmake -S . -B build configures the build and generates akerror.h.
cmake --build build compiles libakerror and test executables. ctest
runs the registered unit tests. To emit CI-style results, use:
ctest --test-dir build --output-on-failure --output-junit "$(pwd)/ctest-junit.xml"
The suite includes thread tests. The run that proves there is no data race under them is ThreadSanitizer:
scripts/thread_test.sh
which configures build/tsan with -DAKERR_SANITIZE=thread, builds the library
and the tests with it, and runs CTest with ASLR disabled (TSan aborts with an
"unexpected memory mapping" on kernels with vm.mmap_rnd_bits above 28).
AKERR_SANITIZE takes any sanitizer list, so -DAKERR_SANITIZE=address,undefined
works the same way. Under a sanitized build a report fails the test rather than
being printed and passed over.
Mutation testing is available through:
cmake --build build --target mutation
scripts/mutation_test.py --target src/error.c --threshold 65
Code coverage is available through:
cmake --build build --target coverage
scripts/coverage.py --threshold 90 --branch-threshold 50
scripts/coverage.py configures its own instrumented build tree (default
build/coverage, -DAKERR_COVERAGE=ON), runs the CTest suite there, and
reports gcov line/branch coverage per library source. Thresholds gate each
file as well as the total. Coverage measures the library's own sources only --
src/error.c, src/lock.h and the generated src/errno.c; the public header's
macros expand at their call sites, so mutation testing is what checks those.
To build without threads (no locking, no thread-local storage, thread tests not
registered), configure with -DAKERR_THREADS=none. auto is the default and
fails the configure rather than falling back.
Coding Style & Naming Conventions
Use C99-compatible C and follow the surrounding style. Functions and types use
the akerr_ prefix; macros and constants use AKERR_ or all-caps macro names
such as PREPARE_ERROR. Keep generated-code changes in templates or generator
scripts, not in build outputs. Preserve concise comments for invariants,
macro constraints, and non-obvious error lifecycle behavior.
Locking. One recursive lock (akerr_state_lock, see src/lock.h) covers
both the error pool and the status registry. A function named *_locked is
called with that lock already held; a function without the suffix takes it.
Never take it in a body written with the FAIL_*_RETURN macros — those return
from the middle of the function and would skip the unlock. Split it instead: the
locked body does the work, and a thin wrapper takes the lock, calls it, and
releases it on the single return path. Do not call consumer code
(akerr_log_method, akerr_handler_unhandled_error) while holding it.
Testing Guidelines
Add tests as tests/err_<behavior>.c. Register each new test in the
AKERR_TESTS list in CMakeLists.txt; tests that intentionally abort must
also be listed in AKERR_WILL_FAIL_TESTS. Prefer focused executable tests that
return zero on success and use existing helpers such as AKERR_CHECK. Run the
CTest suite before submitting changes, and run mutation testing and coverage
when changing core control-flow, reference counting, stack-trace, or handler
behavior.
Tests that drive the library from several threads go in the AKERR_THREAD_SAFE
branch of the AKERR_TESTS list — an -DAKERR_THREADS=none build has no
threading to test — and use tests/err_threads.h, which runs a body on
AKERR_TEST_THREADS threads that meet at a barrier first.
Count failures per thread with AKERR_TCHECK rather than returning early: a
thread that abandons its work leaves the others holding pool slots and turns one
failure into a cascade. Anything the test shares between its own threads must go
through __atomic builtins — a race in the test is still a race, and
ThreadSanitizer cannot tell you whose it is. The capturing logger in
err_capture.h is single-threaded (shared buffer, shared length); use
akerr_thread_logger instead. Run scripts/thread_test.sh when changing
anything that touches the pool, the registry, initialization, or the lock.
Commit & Pull Request Guidelines
Recent commits use short, imperative, sentence-case subjects, for example
Fix refcount leak and stack-trace buffer overflow. Keep commits focused and
describe the observable behavior changed. Pull requests should include a brief
summary, tests run, and any compatibility impact for public macros, generated
headers, installation paths, or CMake/pkg-config consumers.
Agent-Specific Instructions
Do not overwrite uncommitted user changes. Avoid editing generated files in
build/; update include/akerror.tmpl.h, src/error.c, CMake files, tests,
or scripts instead.