mirror of https://github.com/python/cpython
gh-112529: Make the GC scheduling thread-safe (#114880)
The GC keeps track of the number of allocations (less deallocations) since the last GC. This buffers the count in thread-local state and uses atomic operations to modify the per-interpreter count. The thread-local buffering avoids contention on shared state. A consequence is that the GC scheduling is not as precise, so "test_sneaky_frame_object" is skipped because it requires that the GC be run exactly after allocating a frame object.
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@ -260,6 +260,13 @@ struct _gc_runtime_state {
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Py_ssize_t long_lived_pending;
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};
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#ifdef Py_GIL_DISABLED
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struct _gc_thread_state {
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/* Thread-local allocation count. */
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Py_ssize_t alloc_count;
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};
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#endif
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extern void _PyGC_InitState(struct _gc_runtime_state *);
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@ -28,6 +28,7 @@ typedef struct _PyThreadStateImpl {
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PyThreadState base;
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#ifdef Py_GIL_DISABLED
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struct _gc_thread_state gc;
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struct _mimalloc_thread_state mimalloc;
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struct _Py_object_freelists freelists;
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struct _brc_thread_state brc;
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@ -13,7 +13,7 @@ except ImportError:
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_testcapi = None
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from test import support
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from test.support import threading_helper
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from test.support import threading_helper, Py_GIL_DISABLED
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from test.support.script_helper import assert_python_ok
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@ -294,6 +294,7 @@ class TestIncompleteFrameAreInvisible(unittest.TestCase):
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assert_python_ok("-c", code)
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@support.cpython_only
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@unittest.skipIf(Py_GIL_DISABLED, "test requires precise GC scheduling")
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def test_sneaky_frame_object(self):
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def trace(frame, event, arg):
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@ -363,6 +363,7 @@ class GCTests(unittest.TestCase):
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# To minimize variations, though, we first store the get_count() results
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# and check them at the end.
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@refcount_test
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@unittest.skipIf(Py_GIL_DISABLED, 'needs precise allocation counts')
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def test_get_count(self):
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gc.collect()
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a, b, c = gc.get_count()
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@ -201,6 +201,16 @@ gc_get_count_impl(PyObject *module)
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/*[clinic end generated code: output=354012e67b16398f input=a392794a08251751]*/
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{
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GCState *gcstate = get_gc_state();
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#ifdef Py_GIL_DISABLED
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_PyThreadStateImpl *tstate = (_PyThreadStateImpl *)_PyThreadState_GET();
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struct _gc_thread_state *gc = &tstate->gc;
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// Flush the local allocation count to the global count
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_Py_atomic_add_int(&gcstate->generations[0].count, (int)gc->alloc_count);
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gc->alloc_count = 0;
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#endif
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return Py_BuildValue("(iii)",
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gcstate->generations[0].count,
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gcstate->generations[1].count,
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@ -1835,6 +1835,8 @@ _PyType_AllocNoTrack(PyTypeObject *type, Py_ssize_t nitems)
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if (presize) {
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((PyObject **)alloc)[0] = NULL;
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((PyObject **)alloc)[1] = NULL;
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}
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if (PyType_IS_GC(type)) {
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_PyObject_GC_Link(obj);
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}
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memset(obj, '\0', size);
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@ -23,6 +23,11 @@ typedef struct _gc_runtime_state GCState;
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# define GC_DEBUG
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#endif
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// Each thread buffers the count of allocated objects in a thread-local
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// variable up to +/- this amount to reduce the overhead of updating
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// the global count.
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#define LOCAL_ALLOC_COUNT_THRESHOLD 512
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// Automatically choose the generation that needs collecting.
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#define GENERATION_AUTO (-1)
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@ -959,6 +964,41 @@ gc_should_collect(GCState *gcstate)
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gcstate->generations[1].threshold == 0);
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}
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static void
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record_allocation(PyThreadState *tstate)
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{
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struct _gc_thread_state *gc = &((_PyThreadStateImpl *)tstate)->gc;
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// We buffer the allocation count to avoid the overhead of atomic
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// operations for every allocation.
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gc->alloc_count++;
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if (gc->alloc_count >= LOCAL_ALLOC_COUNT_THRESHOLD) {
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// TODO: Use Py_ssize_t for the generation count.
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GCState *gcstate = &tstate->interp->gc;
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_Py_atomic_add_int(&gcstate->generations[0].count, (int)gc->alloc_count);
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gc->alloc_count = 0;
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if (gc_should_collect(gcstate) &&
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!_Py_atomic_load_int_relaxed(&gcstate->collecting))
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{
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_Py_ScheduleGC(tstate->interp);
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}
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}
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}
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static void
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record_deallocation(PyThreadState *tstate)
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{
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struct _gc_thread_state *gc = &((_PyThreadStateImpl *)tstate)->gc;
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gc->alloc_count--;
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if (gc->alloc_count <= -LOCAL_ALLOC_COUNT_THRESHOLD) {
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GCState *gcstate = &tstate->interp->gc;
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_Py_atomic_add_int(&gcstate->generations[0].count, (int)gc->alloc_count);
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gc->alloc_count = 0;
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}
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}
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static void
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gc_collect_internal(PyInterpreterState *interp, struct collection_state *state)
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{
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@ -981,6 +1021,9 @@ gc_collect_internal(PyInterpreterState *interp, struct collection_state *state)
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}
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}
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// Record the number of live GC objects
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interp->gc.long_lived_total = state->long_lived_total;
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// Clear weakrefs and enqueue callbacks (but do not call them).
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clear_weakrefs(state);
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_PyEval_StartTheWorld(interp);
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@ -1090,7 +1133,6 @@ gc_collect_main(PyThreadState *tstate, int generation, _PyGC_Reason reason)
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m = state.collected;
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n = state.uncollectable;
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gcstate->long_lived_total = state.long_lived_total;
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if (gcstate->debug & _PyGC_DEBUG_STATS) {
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double d = _PyTime_AsSecondsDouble(_PyTime_GetPerfCounter() - t1);
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@ -1530,15 +1572,7 @@ _Py_ScheduleGC(PyInterpreterState *interp)
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void
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_PyObject_GC_Link(PyObject *op)
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{
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PyThreadState *tstate = _PyThreadState_GET();
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GCState *gcstate = &tstate->interp->gc;
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gcstate->generations[0].count++;
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if (gc_should_collect(gcstate) &&
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!_Py_atomic_load_int_relaxed(&gcstate->collecting))
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{
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_Py_ScheduleGC(tstate->interp);
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}
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record_allocation(_PyThreadState_GET());
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}
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void
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@ -1564,7 +1598,7 @@ gc_alloc(PyTypeObject *tp, size_t basicsize, size_t presize)
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((PyObject **)mem)[1] = NULL;
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}
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PyObject *op = (PyObject *)(mem + presize);
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_PyObject_GC_Link(op);
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record_allocation(tstate);
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return op;
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}
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@ -1646,10 +1680,9 @@ PyObject_GC_Del(void *op)
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PyErr_SetRaisedException(exc);
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#endif
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}
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GCState *gcstate = get_gc_state();
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if (gcstate->generations[0].count > 0) {
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gcstate->generations[0].count--;
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}
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record_deallocation(_PyThreadState_GET());
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PyObject_Free(((char *)op)-presize);
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}
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