--- /dev/null
+import unittest
+import sys
+from threading import Thread, Barrier
+from itertools import batched
+from test.support import threading_helper
+
+
+threading_helper.requires_working_threading(module=True)
+
+class EnumerateThreading(unittest.TestCase):
+
+ @threading_helper.reap_threads
+ def test_threading(self):
+ number_of_threads = 10
+ number_of_iterations = 20
+ barrier = Barrier(number_of_threads)
+ def work(it):
+ barrier.wait()
+ while True:
+ try:
+ _ = next(it)
+ except StopIteration:
+ break
+
+ data = tuple(range(1000))
+ for it in range(number_of_iterations):
+ batch_iterator = batched(data, 2)
+ worker_threads = []
+ for ii in range(number_of_threads):
+ worker_threads.append(
+ Thread(target=work, args=[batch_iterator]))
+
+ with threading_helper.start_threads(worker_threads):
+ pass
+
+ barrier.reset()
+
+if __name__ == "__main__":
+ unittest.main()
{
batchedobject *bo = batchedobject_CAST(op);
Py_ssize_t i;
- Py_ssize_t n = bo->batch_size;
+ Py_ssize_t n = FT_ATOMIC_LOAD_SSIZE_RELAXED(bo->batch_size);
PyObject *it = bo->it;
PyObject *item;
PyObject *result;
- if (it == NULL) {
+ if (n < 0) {
return NULL;
}
result = PyTuple_New(n);
if (PyErr_Occurred()) {
if (!PyErr_ExceptionMatches(PyExc_StopIteration)) {
/* Input raised an exception other than StopIteration */
+ FT_ATOMIC_STORE_SSIZE_RELAXED(bo->batch_size, -1);
+#ifndef Py_GIL_DISABLED
Py_CLEAR(bo->it);
+#endif
Py_DECREF(result);
return NULL;
}
PyErr_Clear();
}
if (i == 0) {
+ FT_ATOMIC_STORE_SSIZE_RELAXED(bo->batch_size, -1);
+#ifndef Py_GIL_DISABLED
Py_CLEAR(bo->it);
+#endif
Py_DECREF(result);
return NULL;
}
if (bo->strict) {
+ FT_ATOMIC_STORE_SSIZE_RELAXED(bo->batch_size, -1);
+#ifndef Py_GIL_DISABLED
Py_CLEAR(bo->it);
+#endif
Py_DECREF(result);
PyErr_SetString(PyExc_ValueError, "batched(): incomplete batch");
return NULL;