The README was 794 lines: the summary, the design rationale, the whole macro reference, the threading contract, the build internals and the exit-status specification in one file. It is now 178 lines -- summary, installation, quickstart, and an index -- and the reference material lives in docs/, one file per topic: architecture, usage, status-codes, uncaught-errors, exit-status, thread-safety, building. The prose moved as written. Inbound references followed it: UPGRADING.md, TODO.md, include/akerror.tmpl.h and tests/err_threads_handoff.c now name the docs/ file that owns the text they cite, and AGENTS.md says where new documentation goes so the README does not grow back. Five factual errors fixed in the moved text: - Both NULL-pointer examples inverted their test. FAIL_ZERO_* fails when the expression is zero, so `(somePointer == NULL)` failed on a *valid* pointer. They now read `(somePointer != NULL)`. - AKERROR_NOIGNORE, four times including the #define, is AKERR_NOIGNORE. - FINISH_NORExbTURN is FINISH_NORETURN. - "functiions" is "functions". - The architecture link pointed at include/akerror.h, which is generated and not in the tree; it points at include/akerror.tmpl.h. The quickstart is new text. It compiles under -Wall -Wextra -Werror and was run through all three of its paths: handled usage error exits 0, unhandled IO error prints a trace and exits with the status, success exits 0. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
47 lines
2.2 KiB
Markdown
47 lines
2.2 KiB
Markdown
# Error codes
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The library uses integer values to specify error codes inside of its context. These integer return codes are defined in `akerror.h` in the form of `AKERR_xxxxx` where `xxxxx` is the name of the error code in question. See `akerror.h` for a list of defined errors and their descriptions.
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You can define additional error types as integer constants. Values 0 through 255
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are reserved by libakerror (the host's errno values plus the `AKERR_*` codes);
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consumers allocate codes starting at `AKERR_FIRST_CONSUMER_STATUS` (256). Status
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names are stored sparsely, so any `int` is a legal status and no compile
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definition is needed to use large values. Note that no consumer status can be a
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process exit code — see [Exit status](exit-status.md).
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Every library that may coexist in one process must reserve its range during
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initialization. `akerr_reserve_status_range()` and
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`akerr_register_status_name()` report failure the way everything else in this
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library does — they return `akerr_ErrorContext *`, and they are marked
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`AKERR_NOIGNORE` — so a collision is an exception you can `CATCH`, `HANDLE`, or
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`PASS` up out of your initialization:
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```c
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#define MYLIB_OWNER "my-library"
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akerr_ErrorContext AKERR_NOIGNORE *mylib_init(void)
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{
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PREPARE_ERROR(errctx);
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/* Another component owning part of the range propagates to our caller. */
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PASS(errctx, akerr_reserve_status_range(256, 16, MYLIB_OWNER));
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/* Then name each code, quoting the owner you reserved with. */
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PASS(errctx, akerr_register_status_name(MYLIB_OWNER, 256,
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"Some Error Code Description"));
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SUCCEED_RETURN(errctx);
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}
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```
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Reservations are process-local, fixed-capacity, and idempotent when the same
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owner repeats the exact same range. They preserve compile-time integer constants
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so `HANDLE` still works, since `case` labels require them.
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Naming a status outside your reservation raises `AKERR_STATUS_NAME_FOREIGN`, and
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naming one nobody reserved raises `AKERR_STATUS_NAME_UNRESERVED`; a colliding
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reservation raises `AKERR_STATUS_RANGE_OVERLAP`, with a message naming the real
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owner. See [UPGRADING.md](../UPGRADING.md) for the full list of statuses these two
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functions raise, the capacity limits and how to raise them, and thread-safety
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rules.
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