Compare commits
3 Commits
576722ee06
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14
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5a269ea01b
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55090d2419
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4fe7571329
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@@ -37,23 +37,6 @@ jobs:
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fail_on_failure: 'true'
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fail_on_failure: 'true'
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- run: echo "🍏 This job's status is ${{ job.status }}."
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- run: echo "🍏 This job's status is ${{ job.status }}."
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sanitizer:
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runs-on: ubuntu-latest
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steps:
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- name: Check out repository code
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uses: actions/checkout@v4
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- name: dependencies
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run: |
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sudo apt-get update -y
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sudo apt-get install -y cmake gcc moreutils
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- name: build with AddressSanitizer and UBSan
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run: |
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cmake -S . -B build/asan -DAKERR_SANITIZE=address,undefined
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cmake --build build/asan
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- name: test with AddressSanitizer and UBSan
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run: ctest --test-dir build/asan --output-on-failure
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- run: echo "🍏 This job's status is ${{ job.status }}."
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coverage:
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coverage:
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runs-on: ubuntu-latest
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runs-on: ubuntu-latest
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steps:
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steps:
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@@ -1,7 +1,7 @@
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cmake_minimum_required(VERSION 3.10)
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cmake_minimum_required(VERSION 3.10)
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# 1.0.0 replaced the consumer-sized __AKERR_ERROR_NAMES array with private
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# 1.0.0 replaced the consumer-sized __AKERR_ERROR_NAMES array with private
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# storage. 2.0.0 makes the library thread safe, which is a second ABI break in
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# storage. 2.0.0 makes the library thread safe, which is a second ABI break in
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# the same places: __akerr_last_ignored became thread-local storage, and
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# the same places: akerr_last_ignored became thread-local storage, and
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# ENSURE_ERROR_READY no longer takes the pool reference that akerr_next_error()
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# ENSURE_ERROR_READY no longer takes the pool reference that akerr_next_error()
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# now takes for it. Consumer code compiled against a 1.x header would
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# now takes for it. Consumer code compiled against a 1.x header would
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# double-count every reference. Hence the major bump and the SOVERSION, so a
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# double-count every reference. Hence the major bump and the SOVERSION, so a
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@@ -170,7 +170,7 @@ the exit code was the status truncated to a byte, and every consumer status
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starts at 256. Use `akerr_exit()` instead of `exit()` — see
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starts at 256. Use `akerr_exit()` instead of `exit()` — see
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[docs/exit-status.md](docs/exit-status.md). No ABI break.
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[docs/exit-status.md](docs/exit-status.md). No ABI break.
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2.0.0 makes the library thread safe. That is an ABI break — `__akerr_last_ignored`
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2.0.0 makes the library thread safe. That is an ABI break — `akerr_last_ignored`
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became thread-local storage and the pool now takes its own reference — so
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became thread-local storage and the pool now takes its own reference — so
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everything built against a 1.x header must be rebuilt. 1.0.0 replaced the
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everything built against a 1.x header must be rebuilt. 1.0.0 replaced the
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consumer-sized status-name array with a private, ownership-enforced registry.
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consumer-sized status-name array with a private, ownership-enforced registry.
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@@ -52,7 +52,7 @@ accident.
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What moved at the ABI:
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What moved at the ABI:
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* `__akerr_last_ignored` is thread-local storage. An ignored error is a fact
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* `akerr_last_ignored` is thread-local storage. An ignored error is a fact
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about the thread that ignored it, and one shared slot had two threads
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about the thread that ignored it, and one shared slot had two threads
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overwriting each other's. The `IGNORE` macro expands at *your* call site, so
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overwriting each other's. The `IGNORE` macro expands at *your* call site, so
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your objects reference the symbol under whichever storage model your header
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your objects reference the symbol under whichever storage model your header
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@@ -14,9 +14,12 @@ What that covers:
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against each other and against lookups. Two threads reserving the same range
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against each other and against lookups. Two threads reserving the same range
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cannot both win — exactly one gets `NULL` and the other gets
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cannot both win — exactly one gets `NULL` and the other gets
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`AKERR_STATUS_RANGE_OVERLAP` naming the winner.
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`AKERR_STATUS_RANGE_OVERLAP` naming the winner.
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* **Per-thread state.** The context behind `IGNORE` (`__akerr_last_ignored`) and
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* **Per-thread state.** `IGNORE` copies the swallowed context into its
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the last-ditch context used to report `akerr_release_error(NULL)` are
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thread-local `akerr_last_ignored` snapshot before releasing the pool slot.
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thread-local, so one thread's ignored error is never another's.
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The snapshot remains valid until that thread ignores another error, so a
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later pool checkout cannot overwrite it. The snapshot and the last-ditch
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context used to report `akerr_release_error(NULL)` are thread-local, so
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concurrent calls cannot overwrite each other's state.
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* **Handing a context from one thread to another.** A context is not thread
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* **Handing a context from one thread to another.** A context is not thread
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state — it lives in `AKERR_ARRAY_ERROR`, which is process-global — so it
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state — it lives in `AKERR_ARRAY_ERROR`, which is process-global — so it
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outlives the thread that raised it. The reference count is the only field the
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outlives the thread that raised it. The reference count is the only field the
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@@ -15,7 +15,7 @@
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* scripts/generrno.sh stamps this value in at build time from the AKERR_THREADS
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* scripts/generrno.sh stamps this value in at build time from the AKERR_THREADS
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* build option, the same way it stamps AKERR_LAST_ERRNO_VALUE. It is generated
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* build option, the same way it stamps AKERR_LAST_ERRNO_VALUE. It is generated
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* rather than defined by the consumer on purpose: whether the library
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* rather than defined by the consumer on purpose: whether the library
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* serializes its global state and whether __akerr_last_ignored is a
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* serializes its global state and whether akerr_last_ignored is a
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* thread-local are the same decision, and a consumer that disagreed with the
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* thread-local are the same decision, and a consumer that disagreed with the
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* library about it would link against a differently shaped symbol.
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* library about it would link against a differently shaped symbol.
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*
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*
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@@ -173,11 +173,12 @@ extern akerr_ErrorContext AKERR_ARRAY_ERROR[AKERR_MAX_ARRAY_ERROR];
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extern akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error;
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extern akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error;
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extern akerr_ErrorLogFunction akerr_log_method;
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extern akerr_ErrorLogFunction akerr_log_method;
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/*
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/*
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* The error IGNORE() last swallowed, per thread: an ignored error is a fact
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* IGNORE()'s public per-thread snapshot. IGNORE() copies the swallowed error here
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* about the thread that ignored it, and one shared slot would have two threads
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* before releasing its pool context, so this remains a useful debugging aid
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* overwriting each other's. Thread local only when AKERR_THREAD_SAFE is 1.
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* after the pool slot is reused. The snapshot is read-only and is replaced by
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* the next ignored error. Thread local only when AKERR_THREAD_SAFE is 1.
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*/
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*/
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extern AKERR_THREAD_LOCAL akerr_ErrorContext *__akerr_last_ignored;
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static AKERR_THREAD_LOCAL akerr_ErrorContext akerr_last_ignored;
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/*
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/*
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* Drop one reference, returning NULL once the last one is gone so the caller can
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* Drop one reference, returning NULL once the last one is gone so the caller can
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@@ -434,10 +435,20 @@ akerr_ErrorContext AKERR_NOIGNORE *__akerr_copy_string(char *destination, int ca
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FINISH_LOGIC(__err_context, true);
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FINISH_LOGIC(__err_context, true);
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#define IGNORE(__stmt) \
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#define IGNORE(__stmt) \
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__akerr_last_ignored = __stmt; \
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do { \
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if ( __akerr_last_ignored != NULL ) { \
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akerr_ErrorContext *__akerr_ignored = __stmt; \
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LOG_ERROR_WITH_MESSAGE(__akerr_last_ignored, "** IGNORED ERROR **"); \
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if ( __akerr_ignored != NULL ) { \
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}
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memcpy(&akerr_last_ignored, __akerr_ignored, \
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sizeof(akerr_last_ignored)); \
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akerr_last_ignored.stacktracebufptr = \
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(char *)&akerr_last_ignored.stacktracebuf; \
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akerr_ErrorContext *__akerr_ignored_snapshot = \
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&akerr_last_ignored; \
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LOG_ERROR_WITH_MESSAGE(__akerr_ignored_snapshot, \
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"** IGNORED ERROR **"); \
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RELEASE_ERROR(__akerr_ignored); \
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} \
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} while ( 0 )
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#define CLEANUP \
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#define CLEANUP \
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};
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};
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@@ -25,8 +25,6 @@ Usage:
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--work DIR scratch dir for the mutated copy (default: a temp dir)
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--work DIR scratch dir for the mutated copy (default: a temp dir)
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--timeout SECONDS per-suite ctest timeout (default: 120)
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--timeout SECONDS per-suite ctest timeout (default: 120)
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--threshold PCT exit non-zero if mutation score < PCT (default: 0 = off)
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--threshold PCT exit non-zero if mutation score < PCT (default: 0 = off)
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--cmake-arg ARG pass an additional argument to the mutant CMake configure;
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repeat for multiple arguments (e.g. -DAKERR_SANITIZE=thread)
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--list only list the mutants that would be run, then exit
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--list only list the mutants that would be run, then exit
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--keep keep the scratch working copy on exit (for debugging)
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--keep keep the scratch working copy on exit (for debugging)
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-j N (reserved) currently runs sequentially
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-j N (reserved) currently runs sequentially
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@@ -201,11 +199,10 @@ def generate_mutants(root, rel_target):
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# --------------------------------------------------------------------------- #
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# --------------------------------------------------------------------------- #
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class Runner:
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class Runner:
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def __init__(self, work, timeout, cmake_args):
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def __init__(self, work, timeout):
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self.work = work
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self.work = work
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self.build = os.path.join(work, "build")
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self.build = os.path.join(work, "build")
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self.timeout = timeout
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self.timeout = timeout
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self.cmake_args = cmake_args
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def _run(self, cmd, timeout=None):
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def _run(self, cmd, timeout=None):
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return subprocess.run(
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return subprocess.run(
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@@ -214,8 +211,7 @@ class Runner:
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)
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)
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def configure(self):
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def configure(self):
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r = self._run(["cmake", "-S", ".", "-B", "build", *self.cmake_args],
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r = self._run(["cmake", "-S", ".", "-B", "build"], timeout=self.timeout)
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timeout=self.timeout)
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return r.returncode == 0, r.stdout
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return r.returncode == 0, r.stdout
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def build_and_test(self):
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def build_and_test(self):
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@@ -311,8 +307,6 @@ def main():
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ap.add_argument("--work", default=None)
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ap.add_argument("--work", default=None)
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ap.add_argument("--timeout", type=int, default=120)
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ap.add_argument("--timeout", type=int, default=120)
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ap.add_argument("--threshold", type=float, default=0.0)
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ap.add_argument("--threshold", type=float, default=0.0)
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ap.add_argument("--cmake-arg", action="append", default=[],
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help="pass an argument to the mutant CMake configure; repeatable")
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ap.add_argument("--junit", default=None,
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ap.add_argument("--junit", default=None,
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help="write a JUnit XML report to this path")
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help="write a JUnit XML report to this path")
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ap.add_argument("--max-mutants", type=int, default=0,
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ap.add_argument("--max-mutants", type=int, default=0,
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@@ -360,7 +354,7 @@ def main():
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print(f"\nCopying sources to scratch dir: {work}")
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print(f"\nCopying sources to scratch dir: {work}")
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copy_tree(root, work)
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copy_tree(root, work)
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|
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runner = Runner(work, args.timeout, args.cmake_arg)
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runner = Runner(work, args.timeout)
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|
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print("Configuring baseline ...")
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print("Configuring baseline ...")
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ok, out = runner.configure()
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ok, out = runner.configure()
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@@ -20,10 +20,10 @@
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* It is not small (an akerr_ErrorContext is tens of kilobytes), but the storage
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* It is not small (an akerr_ErrorContext is tens of kilobytes), but the storage
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* is allocated per thread only when that thread first touches the library's
|
* is allocated per thread only when that thread first touches the library's
|
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* thread-local block, and the alternative is a shared buffer that two threads
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* thread-local block, and the alternative is a shared buffer that two threads
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* can be writing at once.
|
* can be writing at once. The per-thread IGNORE() snapshot lives in the public
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|
* template header because the macro copies into it at the call site.
|
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*/
|
*/
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static AKERR_THREAD_LOCAL akerr_ErrorContext __akerr_last_ditch;
|
static AKERR_THREAD_LOCAL akerr_ErrorContext __akerr_last_ditch;
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AKERR_THREAD_LOCAL akerr_ErrorContext *__akerr_last_ignored;
|
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akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error;
|
akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error;
|
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akerr_ErrorLogFunction akerr_log_method = NULL;
|
akerr_ErrorLogFunction akerr_log_method = NULL;
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|
|
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@@ -233,7 +233,6 @@ static void akerr_init_state(void)
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AKERR_ARRAY_ERROR[i].arrayid = i;
|
AKERR_ARRAY_ERROR[i].arrayid = i;
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AKERR_ARRAY_ERROR[i].stacktracebufptr = (char *)&AKERR_ARRAY_ERROR[i].stacktracebuf;
|
AKERR_ARRAY_ERROR[i].stacktracebufptr = (char *)&AKERR_ARRAY_ERROR[i].stacktracebuf;
|
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}
|
}
|
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__akerr_last_ignored = NULL;
|
|
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(void)akerr_last_ditch_context();
|
(void)akerr_last_ditch_context();
|
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if ( akerr_log_method == NULL ) {
|
if ( akerr_log_method == NULL ) {
|
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akerr_log_method = &akerr_default_logger;
|
akerr_log_method = &akerr_default_logger;
|
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@@ -664,7 +663,7 @@ static akerr_ErrorContext AKERR_NOIGNORE *akerr_reserve_status_range_locked(int
|
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"must not overflow int)",
|
"must not overflow int)",
|
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count, first_status, owner == NULL ? "(null)" : owner,
|
count, first_status, owner == NULL ? "(null)" : owner,
|
||||||
AKERR_MAX_STATUS_RANGE_OWNER_LENGTH);
|
AKERR_MAX_STATUS_RANGE_OWNER_LENGTH);
|
||||||
last_status = first_status + (count - 1);
|
last_status = first_status + count - 1;
|
||||||
|
|
||||||
for ( int i = 0; i < akerr_status_range_count; i++ ) {
|
for ( int i = 0; i < akerr_status_range_count; i++ ) {
|
||||||
if ( first_status <= akerr_status_ranges[i].last &&
|
if ( first_status <= akerr_status_ranges[i].last &&
|
||||||
|
|||||||
@@ -32,9 +32,6 @@ scripts/mutation_test.py --target src/error.c --list
|
|||||||
|
|
||||||
# Gate CI: exit non-zero if the score drops below 90%
|
# Gate CI: exit non-zero if the score drops below 90%
|
||||||
scripts/mutation_test.py --threshold 90
|
scripts/mutation_test.py --threshold 90
|
||||||
|
|
||||||
# Check concurrency mutants under ThreadSanitizer
|
|
||||||
scripts/mutation_test.py --cmake-arg=-DAKERR_SANITIZE=thread
|
|
||||||
```
|
```
|
||||||
|
|
||||||
Via CMake (configures a build first if needed):
|
Via CMake (configures a build first if needed):
|
||||||
@@ -43,10 +40,8 @@ Via CMake (configures a build first if needed):
|
|||||||
cmake --build build --target mutation
|
cmake --build build --target mutation
|
||||||
```
|
```
|
||||||
|
|
||||||
Useful flags: `--cmake-arg ARG` (pass a CMake configure argument to every
|
Useful flags: `--timeout SECONDS` (per-suite build+test cap; a mutant that
|
||||||
mutant build; repeat it for multiple arguments), `--timeout SECONDS` (per-suite
|
hangs is counted as killed), `--keep` (retain the scratch copy for debugging),
|
||||||
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
|
`--work DIR` (use a specific scratch directory), `--junit FILE` (write a JUnit
|
||||||
XML report — surviving mutants appear as failing test cases).
|
XML report — surviving mutants appear as failing test cases).
|
||||||
|
|
||||||
@@ -112,7 +107,7 @@ The remaining survivors are dominated by:
|
|||||||
|
|
||||||
* **Equivalent mutants** in `akerr_init`: deleting the `memset`/`NULL` setup of
|
* **Equivalent mutants** in `akerr_init`: deleting the `memset`/`NULL` setup of
|
||||||
file-scope statics (`AKERR_ARRAY_ERROR`, `__akerr_last_ditch`,
|
file-scope statics (`AKERR_ARRAY_ERROR`, `__akerr_last_ditch`,
|
||||||
`__akerr_last_ignored`) changes nothing, because C already zero-initializes
|
`akerr_last_ignored`) changes nothing, because C already zero-initializes
|
||||||
objects with static storage duration. `int oldid = 0;` → `1` is likewise
|
objects with static storage duration. `int oldid = 0;` → `1` is likewise
|
||||||
dead: it is overwritten before use, and so is clearing `akerr_initializing`
|
dead: it is overwritten before use, and so is clearing `akerr_initializing`
|
||||||
at the end of initialization — nothing reads that flag once the once-routine
|
at the end of initialization — nothing reads that flag once the once-routine
|
||||||
|
|||||||
@@ -1,11 +1,8 @@
|
|||||||
#include "akerror.h"
|
#include "akerror.h"
|
||||||
#include "err_capture.h"
|
#include "err_capture.h"
|
||||||
|
#include <string.h>
|
||||||
|
|
||||||
/*
|
/* IGNORE snapshots and logs an error, releases its pool slot, then continues. */
|
||||||
* IGNORE deliberately swallows an error: it records the context in
|
|
||||||
* __akerr_last_ignored, logs it with an "IGNORED ERROR" marker, and lets
|
|
||||||
* execution continue.
|
|
||||||
*/
|
|
||||||
|
|
||||||
akerr_ErrorContext *boom(void)
|
akerr_ErrorContext *boom(void)
|
||||||
{
|
{
|
||||||
@@ -21,11 +18,19 @@ int main(void)
|
|||||||
PREPARE_ERROR(e);
|
PREPARE_ERROR(e);
|
||||||
(void)e;
|
(void)e;
|
||||||
|
|
||||||
|
/* More failures than the pool has slots must remain safe: a leaking
|
||||||
|
* IGNORE used to exhaust the pool and terminate the process here. The
|
||||||
|
* copied snapshot must also survive the slot being reused on the next
|
||||||
|
* iteration. */
|
||||||
|
for ( int i = 0; i < AKERR_MAX_ARRAY_ERROR + 1; i++ ) {
|
||||||
IGNORE(boom());
|
IGNORE(boom());
|
||||||
|
AKERR_CHECK(akerr_last_ignored.status == AKERR_VALUE);
|
||||||
|
AKERR_CHECK(strcmp(akerr_last_ignored.message,
|
||||||
|
"this error is ignored on purpose") == 0);
|
||||||
|
AKERR_CHECK(akerr_slots_in_use() == 0);
|
||||||
|
}
|
||||||
reached_after_ignore = 1;
|
reached_after_ignore = 1;
|
||||||
|
|
||||||
AKERR_CHECK(__akerr_last_ignored != NULL);
|
|
||||||
AKERR_CHECK(__akerr_last_ignored->status == AKERR_VALUE);
|
|
||||||
AKERR_CHECK(reached_after_ignore == 1);
|
AKERR_CHECK(reached_after_ignore == 1);
|
||||||
AKERR_CHECK_CONTAINS("IGNORED ERROR");
|
AKERR_CHECK_CONTAINS("IGNORED ERROR");
|
||||||
AKERR_CHECK_CONTAINS("this error is ignored on purpose");
|
AKERR_CHECK_CONTAINS("this error is ignored on purpose");
|
||||||
|
|||||||
@@ -100,17 +100,21 @@ static void *pool_body(void *raw)
|
|||||||
one_checkout(arg);
|
one_checkout(arg);
|
||||||
}
|
}
|
||||||
|
|
||||||
/* An ignored error is a fact about the thread that ignored it: each thread
|
/* IGNORE's snapshot is thread-local while logging and remains valid after
|
||||||
* must see its own, not the last one any thread swallowed. */
|
* release. Concurrent ignored errors must all return their pool slots. */
|
||||||
IGNORE(ignorable(arg));
|
IGNORE(ignorable(arg));
|
||||||
AKERR_TCHECK(arg, __akerr_last_ignored != NULL);
|
AKERR_TCHECK(arg, akerr_last_ignored.status == AKERR_IO);
|
||||||
if ( __akerr_last_ignored != NULL ) {
|
AKERR_TCHECK(arg, strcmp(akerr_last_ignored.message, expected) == 0);
|
||||||
AKERR_TCHECK(arg, __akerr_last_ignored->status == AKERR_IO);
|
|
||||||
AKERR_TCHECK(arg, strcmp(__akerr_last_ignored->message, expected) == 0);
|
/* Reuse a slot after IGNORE and prove that the copied snapshot did not
|
||||||
|
* become an alias for the newly acquired context. */
|
||||||
|
akerr_ErrorContext *reused = akerr_next_error();
|
||||||
|
AKERR_TCHECK(arg, reused != NULL);
|
||||||
|
if ( reused != NULL ) {
|
||||||
|
RELEASE_ERROR(reused);
|
||||||
}
|
}
|
||||||
/* IGNORE keeps the reference by design; hand it back so the pool is empty
|
AKERR_TCHECK(arg, akerr_last_ignored.status == AKERR_IO);
|
||||||
* at the end of the test. */
|
AKERR_TCHECK(arg, strcmp(akerr_last_ignored.message, expected) == 0);
|
||||||
RELEASE_ERROR(__akerr_last_ignored);
|
|
||||||
|
|
||||||
return NULL;
|
return NULL;
|
||||||
}
|
}
|
||||||
|
|||||||
Reference in New Issue
Block a user