1 Commits
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Author SHA1 Message Date
4fe7571329 Release ignored error contexts
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2026-08-03 13:46:00 -04:00
5 changed files with 22 additions and 27 deletions

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@@ -337,6 +337,7 @@ if(Python3_FOUND)
) )
endif() endif()
set(main_lib_dest "lib/my_library-${MY_LIBRARY_VERSION}")
install(TARGETS akerror install(TARGETS akerror
EXPORT akerrorTargets EXPORT akerrorTargets
ARCHIVE DESTINATION ${CMAKE_INSTALL_LIBDIR} ARCHIVE DESTINATION ${CMAKE_INSTALL_LIBDIR}

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@@ -14,9 +14,11 @@ What that covers:
against each other and against lookups. Two threads reserving the same range against each other and against lookups. Two threads reserving the same range
cannot both win — exactly one gets `NULL` and the other gets cannot both win — exactly one gets `NULL` and the other gets
`AKERR_STATUS_RANGE_OVERLAP` naming the winner. `AKERR_STATUS_RANGE_OVERLAP` naming the winner.
* **Per-thread state.** The context behind `IGNORE` (`__akerr_last_ignored`) and * **Per-thread state.** `IGNORE` uses `__akerr_last_ignored` as a scratch pointer
the last-ditch context used to report `akerr_release_error(NULL)` are while it logs an error, then releases the context and clears the pointer.
thread-local, so one thread's ignored error is never another's. That scratch pointer and the last-ditch context used to report
`akerr_release_error(NULL)` are thread-local, so concurrent calls cannot
overwrite each other's state.
* **Handing a context from one thread to another.** A context is not thread * **Handing a context from one thread to another.** A context is not thread
state — it lives in `AKERR_ARRAY_ERROR`, which is process-global — so it state — it lives in `AKERR_ARRAY_ERROR`, which is process-global — so it
outlives the thread that raised it. The reference count is the only field the outlives the thread that raised it. The reference count is the only field the

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@@ -173,9 +173,10 @@ extern akerr_ErrorContext AKERR_ARRAY_ERROR[AKERR_MAX_ARRAY_ERROR];
extern akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error; extern akerr_ErrorUnhandledErrorHandler akerr_handler_unhandled_error;
extern akerr_ErrorLogFunction akerr_log_method; extern akerr_ErrorLogFunction akerr_log_method;
/* /*
* The error IGNORE() last swallowed, per thread: an ignored error is a fact * IGNORE()'s per-thread scratch pointer. It is non-NULL only while IGNORE()
* about the thread that ignored it, and one shared slot would have two threads * logs the swallowed error; IGNORE() releases the context and clears this
* overwriting each other's. Thread local only when AKERR_THREAD_SAFE is 1. * pointer before returning to its caller. Thread local only when
* AKERR_THREAD_SAFE is 1.
*/ */
extern AKERR_THREAD_LOCAL akerr_ErrorContext *__akerr_last_ignored; extern AKERR_THREAD_LOCAL akerr_ErrorContext *__akerr_last_ignored;
@@ -437,6 +438,7 @@ akerr_ErrorContext AKERR_NOIGNORE *__akerr_copy_string(char *destination, int ca
__akerr_last_ignored = __stmt; \ __akerr_last_ignored = __stmt; \
if ( __akerr_last_ignored != NULL ) { \ if ( __akerr_last_ignored != NULL ) { \
LOG_ERROR_WITH_MESSAGE(__akerr_last_ignored, "** IGNORED ERROR **"); \ LOG_ERROR_WITH_MESSAGE(__akerr_last_ignored, "** IGNORED ERROR **"); \
RELEASE_ERROR(__akerr_last_ignored); \
} }
#define CLEANUP \ #define CLEANUP \

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@@ -1,11 +1,7 @@
#include "akerror.h" #include "akerror.h"
#include "err_capture.h" #include "err_capture.h"
/* /* IGNORE logs and releases an error, then lets execution continue. */
* 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 +17,15 @@ int main(void)
PREPARE_ERROR(e); PREPARE_ERROR(e);
(void)e; (void)e;
IGNORE(boom()); /* More failures than the pool has slots must remain safe: a leaking
* IGNORE used to exhaust the pool and terminate the process here. */
for ( int i = 0; i < AKERR_MAX_ARRAY_ERROR + 1; i++ ) {
IGNORE(boom());
AKERR_CHECK(__akerr_last_ignored == NULL);
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");

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@@ -90,9 +90,6 @@ static void one_checkout(akerr_ThreadArg *arg)
static void *pool_body(void *raw) static void *pool_body(void *raw)
{ {
akerr_ThreadArg *arg = raw; akerr_ThreadArg *arg = raw;
char expected[64];
snprintf(expected, sizeof(expected), "ignored by thread %d", arg->id);
pthread_barrier_wait(arg->barrier); pthread_barrier_wait(arg->barrier);
for ( int i = 0; i < ITERATIONS; i++ ) { for ( int i = 0; i < ITERATIONS; i++ ) {
@@ -100,17 +97,10 @@ 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 scratch pointer is thread-local while logging and cleared 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 == NULL);
if ( __akerr_last_ignored != NULL ) {
AKERR_TCHECK(arg, __akerr_last_ignored->status == AKERR_IO);
AKERR_TCHECK(arg, strcmp(__akerr_last_ignored->message, expected) == 0);
}
/* IGNORE keeps the reference by design; hand it back so the pool is empty
* at the end of the test. */
RELEASE_ERROR(__akerr_last_ignored);
return NULL; return NULL;
} }