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Python 3.11+: Add __notes__
to error_already_set::what()
output. (#4678)
* First version adding `__notes__` to `error_already_set::what()` output.
* Fix trivial oversight (missing adjustment in existing test).
* Minor enhancements of new code.
* Re-enable `cmake --target cpptest -j 2`
* Revert "Re-enable `cmake --target cpptest -j 2`"
This reverts commit 60816285e9
.
* Add general comment explaining why the `error_fetch_and_normalize` code is so unusual.
This commit is contained in:
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19816f0db7
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@ -471,13 +471,24 @@ inline const char *obj_class_name(PyObject *obj) {
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std::string error_string();
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// The code in this struct is very unusual, to minimize the chances of
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// masking bugs (elsewhere) by errors during the error handling (here).
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// This is meant to be a lifeline for troubleshooting long-running processes
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// that crash under conditions that are virtually impossible to reproduce.
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// Low-level implementation alternatives are preferred to higher-level ones
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// that might raise cascading exceptions. Last-ditch-kind-of attempts are made
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// to report as much of the original error as possible, even if there are
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// secondary issues obtaining some of the details.
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struct error_fetch_and_normalize {
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// This comment only applies to Python <= 3.11:
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// Immediate normalization is long-established behavior (starting with
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// https://github.com/pybind/pybind11/commit/135ba8deafb8bf64a15b24d1513899eb600e2011
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// from Sep 2016) and safest. Normalization could be deferred, but this could mask
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// errors elsewhere, the performance gain is very minor in typical situations
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// (usually the dominant bottleneck is EH unwinding), and the implementation here
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// would be more complex.
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// Starting with Python 3.12, PyErr_Fetch() normalizes exceptions immediately.
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// Any errors during normalization are tracked under __notes__.
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explicit error_fetch_and_normalize(const char *called) {
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PyErr_Fetch(&m_type.ptr(), &m_value.ptr(), &m_trace.ptr());
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if (!m_type) {
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@ -492,6 +503,14 @@ struct error_fetch_and_normalize {
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"of the original active exception type.");
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}
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m_lazy_error_string = exc_type_name_orig;
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#if PY_VERSION_HEX >= 0x030C0000
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// The presence of __notes__ is likely due to exception normalization
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// errors, although that is not necessarily true, therefore insert a
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// hint only:
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if (PyObject_HasAttrString(m_value.ptr(), "__notes__")) {
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m_lazy_error_string += "[WITH __notes__]";
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}
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#else
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// PyErr_NormalizeException() may change the exception type if there are cascading
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// failures. This can potentially be extremely confusing.
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PyErr_NormalizeException(&m_type.ptr(), &m_value.ptr(), &m_trace.ptr());
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@ -523,6 +542,7 @@ struct error_fetch_and_normalize {
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msg += ": " + format_value_and_trace();
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pybind11_fail(msg);
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}
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# endif
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#endif
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}
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@ -558,6 +578,40 @@ struct error_fetch_and_normalize {
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}
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}
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}
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#if PY_VERSION_HEX >= 0x030B0000
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auto notes
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= reinterpret_steal<object>(PyObject_GetAttrString(m_value.ptr(), "__notes__"));
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if (!notes) {
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PyErr_Clear(); // No notes is good news.
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} else {
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auto len_notes = PyList_Size(notes.ptr());
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if (len_notes < 0) {
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result += "\nFAILURE obtaining len(__notes__): " + detail::error_string();
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} else {
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result += "\n__notes__ (len=" + std::to_string(len_notes) + "):";
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for (ssize_t i = 0; i < len_notes; i++) {
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PyObject *note = PyList_GET_ITEM(notes.ptr(), i);
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auto note_bytes = reinterpret_steal<object>(
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PyUnicode_AsEncodedString(note, "utf-8", "backslashreplace"));
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if (!note_bytes) {
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result += "\nFAILURE obtaining __notes__[" + std::to_string(i)
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+ "]: " + detail::error_string();
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} else {
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char *buffer = nullptr;
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Py_ssize_t length = 0;
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if (PyBytes_AsStringAndSize(note_bytes.ptr(), &buffer, &length)
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== -1) {
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result += "\nFAILURE formatting __notes__[" + std::to_string(i)
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+ "]: " + detail::error_string();
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} else {
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result += '\n';
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result += std::string(buffer, static_cast<std::size_t>(length));
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}
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}
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}
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}
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}
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#endif
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} else {
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result = "<MESSAGE UNAVAILABLE>";
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}
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@ -317,13 +317,7 @@ def test_error_already_set_what_with_happy_exceptions(
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assert what == expected_what
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@pytest.mark.skipif(
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# Intentionally very specific:
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"sys.version_info == (3, 12, 0, 'alpha', 7)",
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reason="WIP: https://github.com/python/cpython/issues/102594",
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)
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@pytest.mark.skipif("env.PYPY", reason="PyErr_NormalizeException Segmentation fault")
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def test_flaky_exception_failure_point_init():
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def _test_flaky_exception_failure_point_init_before_py_3_12():
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with pytest.raises(RuntimeError) as excinfo:
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m.error_already_set_what(FlakyException, ("failure_point_init",))
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lines = str(excinfo.value).splitlines()
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@ -337,7 +331,33 @@ def test_flaky_exception_failure_point_init():
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# Checking the first two lines of the traceback as formatted in error_string():
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assert "test_exceptions.py(" in lines[3]
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assert lines[3].endswith("): __init__")
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assert lines[4].endswith("): test_flaky_exception_failure_point_init")
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assert lines[4].endswith(
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"): _test_flaky_exception_failure_point_init_before_py_3_12"
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)
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def _test_flaky_exception_failure_point_init_py_3_12():
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# Behavior change in Python 3.12: https://github.com/python/cpython/issues/102594
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what, py_err_set_after_what = m.error_already_set_what(
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FlakyException, ("failure_point_init",)
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)
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assert not py_err_set_after_what
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lines = what.splitlines()
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assert lines[0].endswith("ValueError[WITH __notes__]: triggered_failure_point_init")
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assert lines[1] == "__notes__ (len=1):"
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assert "Normalization failed:" in lines[2]
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assert "FlakyException" in lines[2]
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@pytest.mark.skipif(
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"env.PYPY and sys.version_info[:2] < (3, 12)",
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reason="PyErr_NormalizeException Segmentation fault",
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)
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def test_flaky_exception_failure_point_init():
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if sys.version_info[:2] < (3, 12):
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_test_flaky_exception_failure_point_init_before_py_3_12()
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else:
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_test_flaky_exception_failure_point_init_py_3_12()
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def test_flaky_exception_failure_point_str():
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