mirror of https://github.com/python/cpython.git
411 lines
13 KiB
C
411 lines
13 KiB
C
/*[clinic input]
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preserve
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[clinic start generated code]*/
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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# include "pycore_gc.h" // PyGC_Head
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# include "pycore_runtime.h" // _Py_ID()
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#endif
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#include "pycore_modsupport.h" // _PyArg_CheckPositional()
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PyDoc_STRVAR(_lsprof_Profiler_getstats__doc__,
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"getstats($self, /)\n"
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"--\n"
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"\n"
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"list of profiler_entry objects.\n"
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"\n"
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"getstats() -> list of profiler_entry objects\n"
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"\n"
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"Return all information collected by the profiler.\n"
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"Each profiler_entry is a tuple-like object with the\n"
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"following attributes:\n"
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"\n"
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" code code object\n"
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" callcount how many times this was called\n"
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" reccallcount how many times called recursively\n"
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" totaltime total time in this entry\n"
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" inlinetime inline time in this entry (not in subcalls)\n"
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" calls details of the calls\n"
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"\n"
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"The calls attribute is either None or a list of\n"
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"profiler_subentry objects:\n"
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"\n"
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" code called code object\n"
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" callcount how many times this is called\n"
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" reccallcount how many times this is called recursively\n"
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" totaltime total time spent in this call\n"
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" inlinetime inline time (not in further subcalls)");
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#define _LSPROF_PROFILER_GETSTATS_METHODDEF \
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{"getstats", _PyCFunction_CAST(_lsprof_Profiler_getstats), METH_METHOD|METH_FASTCALL|METH_KEYWORDS, _lsprof_Profiler_getstats__doc__},
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static PyObject *
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_lsprof_Profiler_getstats_impl(ProfilerObject *self, PyTypeObject *cls);
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static PyObject *
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_lsprof_Profiler_getstats(ProfilerObject *self, PyTypeObject *cls, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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if (nargs || (kwnames && PyTuple_GET_SIZE(kwnames))) {
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PyErr_SetString(PyExc_TypeError, "getstats() takes no arguments");
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return NULL;
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}
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return _lsprof_Profiler_getstats_impl(self, cls);
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}
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PyDoc_STRVAR(_lsprof_Profiler__pystart_callback__doc__,
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"_pystart_callback($self, code, instruction_offset, /)\n"
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"--\n"
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"\n");
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#define _LSPROF_PROFILER__PYSTART_CALLBACK_METHODDEF \
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{"_pystart_callback", _PyCFunction_CAST(_lsprof_Profiler__pystart_callback), METH_FASTCALL, _lsprof_Profiler__pystart_callback__doc__},
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static PyObject *
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_lsprof_Profiler__pystart_callback_impl(ProfilerObject *self, PyObject *code,
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PyObject *instruction_offset);
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static PyObject *
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_lsprof_Profiler__pystart_callback(ProfilerObject *self, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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PyObject *code;
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PyObject *instruction_offset;
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if (!_PyArg_CheckPositional("_pystart_callback", nargs, 2, 2)) {
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goto exit;
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}
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code = args[0];
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instruction_offset = args[1];
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return_value = _lsprof_Profiler__pystart_callback_impl(self, code, instruction_offset);
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exit:
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return return_value;
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}
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PyDoc_STRVAR(_lsprof_Profiler__pyreturn_callback__doc__,
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"_pyreturn_callback($self, code, instruction_offset, retval, /)\n"
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"--\n"
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"\n");
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#define _LSPROF_PROFILER__PYRETURN_CALLBACK_METHODDEF \
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{"_pyreturn_callback", _PyCFunction_CAST(_lsprof_Profiler__pyreturn_callback), METH_FASTCALL, _lsprof_Profiler__pyreturn_callback__doc__},
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static PyObject *
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_lsprof_Profiler__pyreturn_callback_impl(ProfilerObject *self,
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PyObject *code,
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PyObject *instruction_offset,
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PyObject *retval);
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static PyObject *
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_lsprof_Profiler__pyreturn_callback(ProfilerObject *self, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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PyObject *code;
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PyObject *instruction_offset;
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PyObject *retval;
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if (!_PyArg_CheckPositional("_pyreturn_callback", nargs, 3, 3)) {
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goto exit;
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}
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code = args[0];
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instruction_offset = args[1];
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retval = args[2];
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return_value = _lsprof_Profiler__pyreturn_callback_impl(self, code, instruction_offset, retval);
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exit:
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return return_value;
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}
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PyDoc_STRVAR(_lsprof_Profiler__ccall_callback__doc__,
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"_ccall_callback($self, code, instruction_offset, callable, self_arg, /)\n"
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"--\n"
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"\n");
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#define _LSPROF_PROFILER__CCALL_CALLBACK_METHODDEF \
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{"_ccall_callback", _PyCFunction_CAST(_lsprof_Profiler__ccall_callback), METH_FASTCALL, _lsprof_Profiler__ccall_callback__doc__},
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static PyObject *
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_lsprof_Profiler__ccall_callback_impl(ProfilerObject *self, PyObject *code,
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PyObject *instruction_offset,
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PyObject *callable, PyObject *self_arg);
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static PyObject *
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_lsprof_Profiler__ccall_callback(ProfilerObject *self, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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PyObject *code;
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PyObject *instruction_offset;
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PyObject *callable;
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PyObject *self_arg;
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if (!_PyArg_CheckPositional("_ccall_callback", nargs, 4, 4)) {
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goto exit;
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}
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code = args[0];
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instruction_offset = args[1];
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callable = args[2];
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self_arg = args[3];
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return_value = _lsprof_Profiler__ccall_callback_impl(self, code, instruction_offset, callable, self_arg);
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exit:
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return return_value;
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}
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PyDoc_STRVAR(_lsprof_Profiler__creturn_callback__doc__,
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"_creturn_callback($self, code, instruction_offset, callable, self_arg,\n"
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" /)\n"
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"--\n"
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"\n");
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#define _LSPROF_PROFILER__CRETURN_CALLBACK_METHODDEF \
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{"_creturn_callback", _PyCFunction_CAST(_lsprof_Profiler__creturn_callback), METH_FASTCALL, _lsprof_Profiler__creturn_callback__doc__},
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static PyObject *
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_lsprof_Profiler__creturn_callback_impl(ProfilerObject *self, PyObject *code,
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PyObject *instruction_offset,
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PyObject *callable,
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PyObject *self_arg);
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static PyObject *
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_lsprof_Profiler__creturn_callback(ProfilerObject *self, PyObject *const *args, Py_ssize_t nargs)
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{
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PyObject *return_value = NULL;
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PyObject *code;
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PyObject *instruction_offset;
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PyObject *callable;
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PyObject *self_arg;
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if (!_PyArg_CheckPositional("_creturn_callback", nargs, 4, 4)) {
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goto exit;
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}
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code = args[0];
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instruction_offset = args[1];
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callable = args[2];
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self_arg = args[3];
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return_value = _lsprof_Profiler__creturn_callback_impl(self, code, instruction_offset, callable, self_arg);
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exit:
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return return_value;
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}
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PyDoc_STRVAR(_lsprof_Profiler_enable__doc__,
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"enable($self, /, subcalls=True, builtins=True)\n"
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"--\n"
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"\n"
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"Start collecting profiling information.\n"
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"\n"
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" subcalls\n"
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" If True, also records for each function\n"
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" statistics separated according to its current caller.\n"
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" builtins\n"
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" If True, records the time spent in\n"
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" built-in functions separately from their caller.");
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#define _LSPROF_PROFILER_ENABLE_METHODDEF \
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{"enable", _PyCFunction_CAST(_lsprof_Profiler_enable), METH_FASTCALL|METH_KEYWORDS, _lsprof_Profiler_enable__doc__},
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static PyObject *
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_lsprof_Profiler_enable_impl(ProfilerObject *self, int subcalls,
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int builtins);
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static PyObject *
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_lsprof_Profiler_enable(ProfilerObject *self, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
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{
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PyObject *return_value = NULL;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 2
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(subcalls), &_Py_ID(builtins), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"subcalls", "builtins", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "enable",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[2];
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Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 0;
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int subcalls = 1;
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int builtins = 1;
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args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser,
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/*minpos*/ 0, /*maxpos*/ 2, /*minkw*/ 0, /*varpos*/ 0, argsbuf);
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if (!args) {
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goto exit;
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}
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if (!noptargs) {
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goto skip_optional_pos;
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}
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if (args[0]) {
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subcalls = PyObject_IsTrue(args[0]);
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if (subcalls < 0) {
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goto exit;
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}
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if (!--noptargs) {
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goto skip_optional_pos;
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}
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}
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builtins = PyObject_IsTrue(args[1]);
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if (builtins < 0) {
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goto exit;
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}
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skip_optional_pos:
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return_value = _lsprof_Profiler_enable_impl(self, subcalls, builtins);
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exit:
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return return_value;
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}
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PyDoc_STRVAR(_lsprof_Profiler_disable__doc__,
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"disable($self, /)\n"
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"--\n"
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"\n"
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"Stop collecting profiling information.");
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#define _LSPROF_PROFILER_DISABLE_METHODDEF \
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{"disable", (PyCFunction)_lsprof_Profiler_disable, METH_NOARGS, _lsprof_Profiler_disable__doc__},
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static PyObject *
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_lsprof_Profiler_disable_impl(ProfilerObject *self);
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static PyObject *
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_lsprof_Profiler_disable(ProfilerObject *self, PyObject *Py_UNUSED(ignored))
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{
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return _lsprof_Profiler_disable_impl(self);
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}
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PyDoc_STRVAR(_lsprof_Profiler_clear__doc__,
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"clear($self, /)\n"
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"--\n"
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"\n"
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"Clear all profiling information collected so far.");
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#define _LSPROF_PROFILER_CLEAR_METHODDEF \
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{"clear", (PyCFunction)_lsprof_Profiler_clear, METH_NOARGS, _lsprof_Profiler_clear__doc__},
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static PyObject *
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_lsprof_Profiler_clear_impl(ProfilerObject *self);
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static PyObject *
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_lsprof_Profiler_clear(ProfilerObject *self, PyObject *Py_UNUSED(ignored))
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{
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return _lsprof_Profiler_clear_impl(self);
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}
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PyDoc_STRVAR(profiler_init__doc__,
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"Profiler(timer=None, timeunit=0.0, subcalls=True, builtins=True)\n"
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"--\n"
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"\n"
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"Build a profiler object using the specified timer function.\n"
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"\n"
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"The default timer is a fast built-in one based on real time.\n"
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"For custom timer functions returning integers, \'timeunit\' can\n"
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"be a float specifying a scale (that is, how long each integer unit\n"
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"is, in seconds).");
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static int
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profiler_init_impl(ProfilerObject *self, PyObject *timer, double timeunit,
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int subcalls, int builtins);
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static int
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profiler_init(PyObject *self, PyObject *args, PyObject *kwargs)
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{
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int return_value = -1;
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#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
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#define NUM_KEYWORDS 4
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static struct {
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PyGC_Head _this_is_not_used;
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PyObject_VAR_HEAD
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PyObject *ob_item[NUM_KEYWORDS];
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} _kwtuple = {
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.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
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.ob_item = { &_Py_ID(timer), &_Py_ID(timeunit), &_Py_ID(subcalls), &_Py_ID(builtins), },
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};
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#undef NUM_KEYWORDS
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#define KWTUPLE (&_kwtuple.ob_base.ob_base)
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#else // !Py_BUILD_CORE
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# define KWTUPLE NULL
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#endif // !Py_BUILD_CORE
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static const char * const _keywords[] = {"timer", "timeunit", "subcalls", "builtins", NULL};
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static _PyArg_Parser _parser = {
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.keywords = _keywords,
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.fname = "Profiler",
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.kwtuple = KWTUPLE,
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};
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#undef KWTUPLE
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PyObject *argsbuf[4];
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PyObject * const *fastargs;
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Py_ssize_t nargs = PyTuple_GET_SIZE(args);
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Py_ssize_t noptargs = nargs + (kwargs ? PyDict_GET_SIZE(kwargs) : 0) - 0;
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PyObject *timer = NULL;
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double timeunit = 0.0;
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int subcalls = 1;
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int builtins = 1;
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fastargs = _PyArg_UnpackKeywords(_PyTuple_CAST(args)->ob_item, nargs, kwargs, NULL, &_parser,
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/*minpos*/ 0, /*maxpos*/ 4, /*minkw*/ 0, /*varpos*/ 0, argsbuf);
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if (!fastargs) {
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goto exit;
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}
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if (!noptargs) {
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goto skip_optional_pos;
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}
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if (fastargs[0]) {
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timer = fastargs[0];
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if (!--noptargs) {
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goto skip_optional_pos;
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}
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}
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if (fastargs[1]) {
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if (PyFloat_CheckExact(fastargs[1])) {
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timeunit = PyFloat_AS_DOUBLE(fastargs[1]);
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}
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else
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{
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timeunit = PyFloat_AsDouble(fastargs[1]);
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if (timeunit == -1.0 && PyErr_Occurred()) {
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goto exit;
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}
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}
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if (!--noptargs) {
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goto skip_optional_pos;
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}
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}
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if (fastargs[2]) {
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subcalls = PyObject_IsTrue(fastargs[2]);
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if (subcalls < 0) {
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goto exit;
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}
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if (!--noptargs) {
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goto skip_optional_pos;
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}
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}
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builtins = PyObject_IsTrue(fastargs[3]);
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if (builtins < 0) {
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goto exit;
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}
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skip_optional_pos:
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return_value = profiler_init_impl((ProfilerObject *)self, timer, timeunit, subcalls, builtins);
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exit:
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return return_value;
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}
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/*[clinic end generated code: output=e56d849e35d005a5 input=a9049054013a1b77]*/
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