mirror of https://github.com/python/cpython
GH-109369: Add machinery for deoptimizing tier2 executors, both individually and globally. (GH-110384)
This commit is contained in:
parent
32c37fe1ba
commit
52e902ccf0
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@ -6,9 +6,27 @@
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extern "C" {
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#endif
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typedef struct _PyExecutorLinkListNode {
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struct _PyExecutorObject *next;
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struct _PyExecutorObject *previous;
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} _PyExecutorLinkListNode;
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/* Bloom filter with m = 256
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* https://en.wikipedia.org/wiki/Bloom_filter */
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#define BLOOM_FILTER_WORDS 8
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typedef struct _bloom_filter {
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uint32_t bits[BLOOM_FILTER_WORDS];
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} _PyBloomFilter;
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typedef struct {
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uint8_t opcode;
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uint8_t oparg;
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uint8_t valid;
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uint8_t linked;
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_PyBloomFilter bloom;
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_PyExecutorLinkListNode links;
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} _PyVMData;
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typedef struct _PyExecutorObject {
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@ -45,6 +63,14 @@ _PyOptimizer_BackEdge(struct _PyInterpreterFrame *frame, _Py_CODEUNIT *src, _Py_
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extern _PyOptimizerObject _PyOptimizer_Default;
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void _Py_ExecutorInit(_PyExecutorObject *, _PyBloomFilter *);
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void _Py_ExecutorClear(_PyExecutorObject *);
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void _Py_BloomFilter_Init(_PyBloomFilter *);
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void _Py_BloomFilter_Add(_PyBloomFilter *bloom, void *obj);
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PyAPI_FUNC(void) _Py_Executor_DependsOn(_PyExecutorObject *executor, void *obj);
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PyAPI_FUNC(void) _Py_Executors_InvalidateDependency(PyInterpreterState *interp, void *obj);
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extern void _Py_Executors_InvalidateAll(PyInterpreterState *interp);
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/* For testing */
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PyAPI_FUNC(PyObject *)PyUnstable_Optimizer_NewCounter(void);
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PyAPI_FUNC(PyObject *)PyUnstable_Optimizer_NewUOpOptimizer(void);
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@ -215,6 +215,7 @@ struct _is {
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struct types_state types;
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struct callable_cache callable_cache;
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_PyOptimizerObject *optimizer;
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_PyExecutorObject *executor_list_head;
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uint16_t optimizer_resume_threshold;
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uint16_t optimizer_backedge_threshold;
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uint32_t next_func_version;
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@ -2489,6 +2489,67 @@ def get_first_executor(func):
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return None
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class TestExecutorInvalidation(unittest.TestCase):
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def setUp(self):
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self.old = _testinternalcapi.get_optimizer()
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self.opt = _testinternalcapi.get_counter_optimizer()
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_testinternalcapi.set_optimizer(self.opt)
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def tearDown(self):
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_testinternalcapi.set_optimizer(self.old)
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def test_invalidate_object(self):
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# Generate a new set of functions at each call
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ns = {}
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func_src = "\n".join(
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f"""
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def f{n}():
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for _ in range(1000):
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pass
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""" for n in range(5)
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)
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exec(textwrap.dedent(func_src), ns, ns)
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funcs = [ ns[f'f{n}'] for n in range(5)]
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objects = [object() for _ in range(5)]
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for f in funcs:
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f()
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executors = [get_first_executor(f) for f in funcs]
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# Set things up so each executor depends on the objects
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# with an equal or lower index.
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for i, exe in enumerate(executors):
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self.assertTrue(exe.valid)
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for obj in objects[:i+1]:
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_testinternalcapi.add_executor_dependency(exe, obj)
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self.assertTrue(exe.valid)
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# Assert that the correct executors are invalidated
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# and check that nothing crashes when we invalidate
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# an executor mutliple times.
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for i in (4,3,2,1,0):
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_testinternalcapi.invalidate_executors(objects[i])
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for exe in executors[i:]:
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self.assertFalse(exe.valid)
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for exe in executors[:i]:
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self.assertTrue(exe.valid)
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def test_uop_optimizer_invalidation(self):
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# Generate a new function at each call
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ns = {}
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exec(textwrap.dedent("""
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def f():
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for i in range(1000):
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pass
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"""), ns, ns)
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f = ns['f']
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opt = _testinternalcapi.get_uop_optimizer()
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with temporary_optimizer(opt):
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f()
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exe = get_first_executor(f)
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self.assertTrue(exe.valid)
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_testinternalcapi.invalidate_executors(f.__code__)
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self.assertFalse(exe.valid)
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class TestUops(unittest.TestCase):
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def test_basic_loop(self):
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@ -1002,6 +1002,32 @@ get_executor(PyObject *self, PyObject *const *args, Py_ssize_t nargs)
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return (PyObject *)PyUnstable_GetExecutor((PyCodeObject *)code, ioffset);
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}
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static PyObject *
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add_executor_dependency(PyObject *self, PyObject *args)
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{
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PyObject *exec;
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PyObject *obj;
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if (!PyArg_ParseTuple(args, "OO", &exec, &obj)) {
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return NULL;
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}
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/* No way to tell in general if exec is an executor, so we only accept
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* counting_executor */
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if (strcmp(Py_TYPE(exec)->tp_name, "counting_executor")) {
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PyErr_SetString(PyExc_TypeError, "argument must be a counting_executor");
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return NULL;
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}
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_Py_Executor_DependsOn((_PyExecutorObject *)exec, obj);
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Py_RETURN_NONE;
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}
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static PyObject *
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invalidate_executors(PyObject *self, PyObject *obj)
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{
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PyInterpreterState *interp = PyInterpreterState_Get();
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_Py_Executors_InvalidateDependency(interp, obj);
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Py_RETURN_NONE;
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}
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static int _pending_callback(void *arg)
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{
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/* we assume the argument is callable object to which we own a reference */
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@ -1565,6 +1591,8 @@ static PyMethodDef module_functions[] = {
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{"get_executor", _PyCFunction_CAST(get_executor), METH_FASTCALL, NULL},
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{"get_counter_optimizer", get_counter_optimizer, METH_NOARGS, NULL},
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{"get_uop_optimizer", get_uop_optimizer, METH_NOARGS, NULL},
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{"add_executor_dependency", add_executor_dependency, METH_VARARGS, NULL},
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{"invalidate_executors", invalidate_executors, METH_O, NULL},
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{"pending_threadfunc", _PyCFunction_CAST(pending_threadfunc),
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METH_VARARGS | METH_KEYWORDS},
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{"pending_identify", pending_identify, METH_VARARGS, NULL},
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@ -1582,6 +1582,7 @@ _Py_Instrument(PyCodeObject *code, PyInterpreterState *interp)
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if (code->co_executors != NULL) {
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_PyCode_Clear_Executors(code);
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}
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_Py_Executors_InvalidateDependency(interp, code);
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int code_len = (int)Py_SIZE(code);
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/* code->_co_firsttraceable >= code_len indicates
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* that no instrumentation can be inserted.
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@ -1803,6 +1804,7 @@ _PyMonitoring_SetEvents(int tool_id, _PyMonitoringEventSet events)
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return -1;
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}
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set_global_version(interp, new_version);
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_Py_Executors_InvalidateAll(interp);
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return instrument_all_executing_code_objects(interp);
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}
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@ -1832,6 +1834,7 @@ _PyMonitoring_SetLocalEvents(PyCodeObject *code, int tool_id, _PyMonitoringEvent
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/* Force instrumentation update */
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code->_co_instrumentation_version -= MONITORING_VERSION_INCREMENT;
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}
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_Py_Executors_InvalidateDependency(interp, code);
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if (_Py_Instrument(code, interp)) {
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return -1;
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}
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@ -220,10 +220,16 @@ typedef struct {
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static void
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counter_dealloc(_PyCounterExecutorObject *self) {
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_Py_ExecutorClear((_PyExecutorObject *)self);
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Py_DECREF(self->optimizer);
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PyObject_Free(self);
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}
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static PyMemberDef counter_members[] = {
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{ "valid", Py_T_UBYTE, offsetof(_PyCounterExecutorObject, executor.vm_data.valid), Py_READONLY, "is valid?" },
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{ NULL }
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};
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static PyTypeObject CounterExecutor_Type = {
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PyVarObject_HEAD_INIT(&PyType_Type, 0)
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.tp_name = "counting_executor",
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@ -231,6 +237,7 @@ static PyTypeObject CounterExecutor_Type = {
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.tp_itemsize = 0,
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.tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_DISALLOW_INSTANTIATION,
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.tp_dealloc = (destructor)counter_dealloc,
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.tp_members = counter_members,
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};
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static _PyInterpreterFrame *
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@ -261,6 +268,9 @@ counter_optimize(
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executor->optimizer = (_PyCounterOptimizerObject *)self;
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executor->next_instr = instr;
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*exec_ptr = (_PyExecutorObject *)executor;
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_PyBloomFilter empty;
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_Py_BloomFilter_Init(&empty);
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_Py_ExecutorInit((_PyExecutorObject *)executor, &empty);
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return 1;
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}
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@ -288,6 +298,8 @@ static PyTypeObject CounterOptimizer_Type = {
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PyObject *
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PyUnstable_Optimizer_NewCounter(void)
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{
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PyType_Ready(&CounterExecutor_Type);
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PyType_Ready(&CounterOptimizer_Type);
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_PyCounterOptimizerObject *opt = (_PyCounterOptimizerObject *)_PyObject_New(&CounterOptimizer_Type);
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if (opt == NULL) {
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return NULL;
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@ -303,6 +315,7 @@ PyUnstable_Optimizer_NewCounter(void)
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static void
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uop_dealloc(_PyUOpExecutorObject *self) {
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_Py_ExecutorClear((_PyExecutorObject *)self);
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PyObject_Free(self);
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}
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@ -356,6 +369,12 @@ PySequenceMethods uop_as_sequence = {
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.sq_item = (ssizeargfunc)uop_item,
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};
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static PyMemberDef uop_members[] = {
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{ "valid", Py_T_UBYTE, offsetof(_PyUOpExecutorObject, base.vm_data.valid), Py_READONLY, "is valid?" },
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{ NULL }
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};
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static PyTypeObject UOpExecutor_Type = {
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PyVarObject_HEAD_INIT(&PyType_Type, 0)
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.tp_name = "uop_executor",
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.tp_flags = Py_TPFLAGS_DEFAULT | Py_TPFLAGS_DISALLOW_INSTANTIATION,
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.tp_dealloc = (destructor)uop_dealloc,
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.tp_as_sequence = &uop_as_sequence,
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.tp_members = uop_members,
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};
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static int
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@ -399,9 +419,11 @@ translate_bytecode_to_trace(
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PyCodeObject *code,
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_Py_CODEUNIT *instr,
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_PyUOpInstruction *trace,
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int buffer_size)
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int buffer_size,
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_PyBloomFilter *dependencies)
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{
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PyCodeObject *initial_code = code;
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_Py_BloomFilter_Add(dependencies, initial_code);
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_Py_CODEUNIT *initial_instr = instr;
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int trace_length = 0;
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int max_length = buffer_size;
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// Increment IP to the return address
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instr += _PyOpcode_Caches[_PyOpcode_Deopt[opcode]] + 1;
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TRACE_STACK_PUSH();
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_Py_BloomFilter_Add(dependencies, new_code);
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code = new_code;
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instr = _PyCode_CODE(code);
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DPRINTF(2,
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@ -895,8 +918,10 @@ uop_optimize(
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_PyExecutorObject **exec_ptr,
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int curr_stackentries)
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{
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_PyBloomFilter dependencies;
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_Py_BloomFilter_Init(&dependencies);
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_PyUOpInstruction trace[_Py_UOP_MAX_TRACE_LENGTH];
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int trace_length = translate_bytecode_to_trace(code, instr, trace, _Py_UOP_MAX_TRACE_LENGTH);
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int trace_length = translate_bytecode_to_trace(code, instr, trace, _Py_UOP_MAX_TRACE_LENGTH, &dependencies);
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if (trace_length <= 0) {
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// Error or nothing translated
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return trace_length;
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@ -915,6 +940,7 @@ uop_optimize(
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OPT_HIST(trace_length, optimized_trace_length_hist);
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executor->base.execute = _PyUopExecute;
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memcpy(executor->trace, trace, trace_length * sizeof(_PyUOpInstruction));
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_Py_ExecutorInit((_PyExecutorObject *)executor, &dependencies);
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*exec_ptr = (_PyExecutorObject *)executor;
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return 1;
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}
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@ -936,6 +962,8 @@ static PyTypeObject UOpOptimizer_Type = {
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PyObject *
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PyUnstable_Optimizer_NewUOpOptimizer(void)
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{
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PyType_Ready(&UOpExecutor_Type);
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PyType_Ready(&UOpOptimizer_Type);
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_PyOptimizerObject *opt = PyObject_New(_PyOptimizerObject, &UOpOptimizer_Type);
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if (opt == NULL) {
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return NULL;
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@ -947,3 +975,206 @@ PyUnstable_Optimizer_NewUOpOptimizer(void)
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opt->backedge_threshold = 16 << OPTIMIZER_BITS_IN_COUNTER;
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return (PyObject *)opt;
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}
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/*****************************************
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* Executor management
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****************************************/
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/* We use a bloomfilter with k = 6, m = 256
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* The choice of k and the following constants
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* could do with a more rigourous analysis,
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* but here is a simple analysis:
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*
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* We want to keep the false positive rate low.
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* For n = 5 (a trace depends on 5 objects),
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* we expect 30 bits set, giving a false positive
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* rate of (30/256)**6 == 2.5e-6 which is plenty
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* good enough.
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*
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* However with n = 10 we expect 60 bits set (worst case),
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* giving a false positive of (60/256)**6 == 0.0001
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*
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* We choose k = 6, rather than a higher number as
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* it means the false positive rate grows slower for high n.
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*
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* n = 5, k = 6 => fp = 2.6e-6
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* n = 5, k = 8 => fp = 3.5e-7
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* n = 10, k = 6 => fp = 1.6e-4
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* n = 10, k = 8 => fp = 0.9e-4
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* n = 15, k = 6 => fp = 0.18%
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* n = 15, k = 8 => fp = 0.23%
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* n = 20, k = 6 => fp = 1.1%
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* n = 20, k = 8 => fp = 2.3%
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*
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* The above analysis assumes perfect hash functions,
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* but those don't exist, so the real false positive
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* rates may be worse.
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*/
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#define K 6
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#define SEED 20221211
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/* TO DO -- Use more modern hash functions with better distribution of bits */
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static uint64_t
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address_to_hash(void *ptr) {
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assert(ptr != NULL);
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uint64_t uhash = SEED;
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uintptr_t addr = (uintptr_t)ptr;
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for (int i = 0; i < SIZEOF_VOID_P; i++) {
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uhash ^= addr & 255;
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uhash *= (uint64_t)_PyHASH_MULTIPLIER;
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addr >>= 8;
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}
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return uhash;
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}
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void
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_Py_BloomFilter_Init(_PyBloomFilter *bloom)
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{
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for (int i = 0; i < BLOOM_FILTER_WORDS; i++) {
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bloom->bits[i] = 0;
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}
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}
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/* We want K hash functions that each set 1 bit.
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* A hash function that sets 1 bit in M bits can be trivially
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* derived from a log2(M) bit hash function.
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* So we extract 8 (log2(256)) bits at a time from
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* the 64bit hash. */
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void
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_Py_BloomFilter_Add(_PyBloomFilter *bloom, void *ptr)
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{
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uint64_t hash = address_to_hash(ptr);
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assert(K <= 8);
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for (int i = 0; i < K; i++) {
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uint8_t bits = hash & 255;
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bloom->bits[bits >> 5] |= (1 << (bits&31));
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hash >>= 8;
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}
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}
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static bool
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bloom_filter_may_contain(_PyBloomFilter *bloom, _PyBloomFilter *hashes)
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{
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for (int i = 0; i < BLOOM_FILTER_WORDS; i++) {
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if ((bloom->bits[i] & hashes->bits[i]) != hashes->bits[i]) {
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return false;
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}
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}
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return true;
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}
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static void
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link_executor(_PyExecutorObject *executor)
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{
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PyInterpreterState *interp = _PyInterpreterState_GET();
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_PyExecutorLinkListNode *links = &executor->vm_data.links;
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_PyExecutorObject *head = interp->executor_list_head;
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if (head == NULL) {
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interp->executor_list_head = executor;
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links->previous = NULL;
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links->next = NULL;
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}
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else {
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_PyExecutorObject *next = head->vm_data.links.next;
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links->previous = head;
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links->next = next;
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if (next != NULL) {
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next->vm_data.links.previous = executor;
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}
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head->vm_data.links.next = executor;
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}
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executor->vm_data.linked = true;
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/* executor_list_head must be first in list */
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assert(interp->executor_list_head->vm_data.links.previous == NULL);
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}
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static void
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unlink_executor(_PyExecutorObject *executor)
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{
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if (!executor->vm_data.linked) {
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return;
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}
|
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_PyExecutorLinkListNode *links = &executor->vm_data.links;
|
||||
_PyExecutorObject *next = links->next;
|
||||
_PyExecutorObject *prev = links->previous;
|
||||
if (next != NULL) {
|
||||
next->vm_data.links.previous = prev;
|
||||
}
|
||||
if (prev != NULL) {
|
||||
prev->vm_data.links.next = next;
|
||||
}
|
||||
else {
|
||||
// prev == NULL implies that executor is the list head
|
||||
PyInterpreterState *interp = PyInterpreterState_Get();
|
||||
assert(interp->executor_list_head == executor);
|
||||
interp->executor_list_head = next;
|
||||
}
|
||||
executor->vm_data.linked = false;
|
||||
}
|
||||
|
||||
/* This must be called by optimizers before using the executor */
|
||||
void
|
||||
_Py_ExecutorInit(_PyExecutorObject *executor, _PyBloomFilter *dependency_set)
|
||||
{
|
||||
executor->vm_data.valid = true;
|
||||
for (int i = 0; i < BLOOM_FILTER_WORDS; i++) {
|
||||
executor->vm_data.bloom.bits[i] = dependency_set->bits[i];
|
||||
}
|
||||
link_executor(executor);
|
||||
}
|
||||
|
||||
/* This must be called by executors during dealloc */
|
||||
void
|
||||
_Py_ExecutorClear(_PyExecutorObject *executor)
|
||||
{
|
||||
unlink_executor(executor);
|
||||
}
|
||||
|
||||
void
|
||||
_Py_Executor_DependsOn(_PyExecutorObject *executor, void *obj)
|
||||
{
|
||||
assert(executor->vm_data.valid = true);
|
||||
_Py_BloomFilter_Add(&executor->vm_data.bloom, obj);
|
||||
}
|
||||
|
||||
/* Invalidate all executors that depend on `obj`
|
||||
* May cause other executors to be invalidated as well
|
||||
*/
|
||||
void
|
||||
_Py_Executors_InvalidateDependency(PyInterpreterState *interp, void *obj)
|
||||
{
|
||||
_PyBloomFilter obj_filter;
|
||||
_Py_BloomFilter_Init(&obj_filter);
|
||||
_Py_BloomFilter_Add(&obj_filter, obj);
|
||||
/* Walk the list of executors */
|
||||
/* TO DO -- Use a tree to avoid traversing as many objects */
|
||||
for (_PyExecutorObject *exec = interp->executor_list_head; exec != NULL;) {
|
||||
assert(exec->vm_data.valid);
|
||||
_PyExecutorObject *next = exec->vm_data.links.next;
|
||||
if (bloom_filter_may_contain(&exec->vm_data.bloom, &obj_filter)) {
|
||||
exec->vm_data.valid = false;
|
||||
unlink_executor(exec);
|
||||
}
|
||||
exec = next;
|
||||
}
|
||||
}
|
||||
|
||||
/* Invalidate all executors */
|
||||
void
|
||||
_Py_Executors_InvalidateAll(PyInterpreterState *interp)
|
||||
{
|
||||
/* Walk the list of executors */
|
||||
for (_PyExecutorObject *exec = interp->executor_list_head; exec != NULL;) {
|
||||
assert(exec->vm_data.valid);
|
||||
_PyExecutorObject *next = exec->vm_data.links.next;
|
||||
exec->vm_data.links.next = NULL;
|
||||
exec->vm_data.links.previous = NULL;
|
||||
exec->vm_data.valid = false;
|
||||
exec->vm_data.linked = false;
|
||||
exec = next;
|
||||
}
|
||||
interp->executor_list_head = NULL;
|
||||
}
|
||||
|
|
|
@ -713,6 +713,7 @@ init_interpreter(PyInterpreterState *interp,
|
|||
interp->optimizer_backedge_threshold = _PyOptimizer_Default.backedge_threshold;
|
||||
interp->optimizer_resume_threshold = _PyOptimizer_Default.backedge_threshold;
|
||||
interp->next_func_version = 1;
|
||||
interp->executor_list_head = NULL;
|
||||
if (interp != &runtime->_main_interpreter) {
|
||||
/* Fix the self-referential, statically initialized fields. */
|
||||
interp->dtoa = (struct _dtoa_state)_dtoa_state_INIT(interp);
|
||||
|
|
Loading…
Reference in New Issue