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/* Generated code for Python module 'chardet.compat'
* created by Nuitka version 1.3rc9
*
* This code is in part copyright 2022 Kay Hayen.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "nuitka/prelude.h"
#include "nuitka/unfreezing.h"
#include "__helpers.h"
/* The "module_chardet$compat" is a Python object pointer of module type.
*
* Note: For full compatibility with CPython, every module variable access
* needs to go through it except for cases where the module cannot possibly
* have changed in the mean time.
*/
PyObject *module_chardet$compat;
PyDictObject *moduledict_chardet$compat;
/* The declarations of module constants used, if any. */
static PyObject *mod_consts[15];
#ifndef __NUITKA_NO_ASSERT__
static Py_hash_t mod_consts_hash[15];
#endif
static PyObject *module_filename_obj = NULL;
/* Indicator if this modules private constants were created yet. */
static bool constants_created = false;
/* Function to create module private constants. */
static void createModuleConstants(void) {
if (constants_created == false) {
loadConstantsBlob(&mod_consts[0], UNTRANSLATE("chardet.compat"));
constants_created = true;
#ifndef __NUITKA_NO_ASSERT__
for (int i = 0; i < 15; i++) {
mod_consts_hash[i] = DEEP_HASH(mod_consts[i]);
}
#endif
}
}
// We want to be able to initialize the "__main__" constants in any case.
#if 0
void createMainModuleConstants(void) {
createModuleConstants();
}
#endif
/* Function to verify module private constants for non-corruption. */
#ifndef __NUITKA_NO_ASSERT__
void checkModuleConstants_chardet$compat(void) {
// The module may not have been used at all, then ignore this.
if (constants_created == false) return;
for (int i = 0; i < 15; i++) {
assert(mod_consts_hash[i] == DEEP_HASH(mod_consts[i]));
CHECK_OBJECT_DEEP(mod_consts[i]);
}
}
#endif
// The module code objects.
static PyCodeObject *codeobj_539fe608538f335bc1f02b864dc33944;
static void createModuleCodeObjects(void) {
module_filename_obj = mod_consts[1]; CHECK_OBJECT(module_filename_obj);
codeobj_539fe608538f335bc1f02b864dc33944 = MAKE_CODE_OBJECT(module_filename_obj, 1, CO_NOFREE, mod_consts[13], mod_consts[13], NULL, NULL, 0, 0, 0);
}
// The module function declarations.
// The module function definitions.
extern void _initCompiledCellType();
extern void _initCompiledGeneratorType();
extern void _initCompiledFunctionType();
extern void _initCompiledMethodType();
extern void _initCompiledFrameType();
extern PyTypeObject Nuitka_Loader_Type;
#ifdef _NUITKA_PLUGIN_DILL_ENABLED
// Provide a way to create find a function via its C code and create it back
// in another process, useful for multiprocessing extensions like dill
extern void registerDillPluginTables(char const *module_name, PyMethodDef *reduce_compiled_function, PyMethodDef *create_compiled_function);
function_impl_code functable_chardet$compat[] = {
NULL
};
static char const *_reduce_compiled_function_argnames[] = {
"func",
NULL
};
static PyObject *_reduce_compiled_function(PyObject *self, PyObject *args, PyObject *kwds) {
PyObject *func;
if (!PyArg_ParseTupleAndKeywords(args, kwds, "O:reduce_compiled_function", (char **)_reduce_compiled_function_argnames, &func, NULL)) {
return NULL;
}
if (Nuitka_Function_Check(func) == false) {
SET_CURRENT_EXCEPTION_TYPE0_STR(PyExc_TypeError, "not a compiled function");
return NULL;
}
struct Nuitka_FunctionObject *function = (struct Nuitka_FunctionObject *)func;
function_impl_code *current = functable_chardet$compat;
int offset = 0;
while (*current != NULL) {
if (*current == function->m_c_code) {
break;
}
current += 1;
offset += 1;
}
if (*current == NULL) {
SET_CURRENT_EXCEPTION_TYPE0_STR(PyExc_TypeError, "Cannot find compiled function in module.");
return NULL;
}
PyObject *code_object_desc = MAKE_TUPLE_EMPTY(6);
PyTuple_SET_ITEM0(code_object_desc, 0, function->m_code_object->co_filename);
PyTuple_SET_ITEM0(code_object_desc, 1, function->m_code_object->co_name);
PyTuple_SET_ITEM(code_object_desc, 2, PyLong_FromLong(function->m_code_object->co_firstlineno));
PyTuple_SET_ITEM0(code_object_desc, 3, function->m_code_object->co_varnames);
PyTuple_SET_ITEM(code_object_desc, 4, PyLong_FromLong(function->m_code_object->co_argcount));
PyTuple_SET_ITEM(code_object_desc, 5, PyLong_FromLong(function->m_code_object->co_flags));
CHECK_OBJECT_DEEP(code_object_desc);
PyObject *result = MAKE_TUPLE_EMPTY(4);
PyTuple_SET_ITEM(result, 0, PyLong_FromLong(offset));
PyTuple_SET_ITEM(result, 1, code_object_desc);
PyTuple_SET_ITEM0(result, 2, function->m_defaults);
PyTuple_SET_ITEM0(result, 3, function->m_doc != NULL ? function->m_doc : Py_None);
CHECK_OBJECT_DEEP(result);
return result;
}
static PyMethodDef _method_def_reduce_compiled_function = {"reduce_compiled_function", (PyCFunction)_reduce_compiled_function,
METH_VARARGS | METH_KEYWORDS, NULL};
static char const *_create_compiled_function_argnames[] = {
"func",
"code_object_desc",
"defaults",
"doc",
NULL
};
static PyObject *_create_compiled_function(PyObject *self, PyObject *args, PyObject *kwds) {
CHECK_OBJECT_DEEP(args);
PyObject *func;
PyObject *code_object_desc;
PyObject *defaults;
PyObject *doc;
if (!PyArg_ParseTupleAndKeywords(args, kwds, "OOOO:create_compiled_function", (char **)_create_compiled_function_argnames, &func, &code_object_desc, &defaults, &doc, NULL)) {
return NULL;
}
int offset = PyLong_AsLong(func);
if (offset == -1 && ERROR_OCCURRED()) {
return NULL;
}
if (offset > sizeof(functable_chardet$compat) || offset < 0) {
SET_CURRENT_EXCEPTION_TYPE0_STR(PyExc_TypeError, "Wrong offset for compiled function.");
return NULL;
}
PyObject *filename = PyTuple_GET_ITEM(code_object_desc, 0);
PyObject *function_name = PyTuple_GET_ITEM(code_object_desc, 1);
PyObject *line = PyTuple_GET_ITEM(code_object_desc, 2);
int line_int = PyLong_AsLong(line);
assert(!ERROR_OCCURRED());
PyObject *argnames = PyTuple_GET_ITEM(code_object_desc, 3);
PyObject *arg_count = PyTuple_GET_ITEM(code_object_desc, 4);
int arg_count_int = PyLong_AsLong(arg_count);
assert(!ERROR_OCCURRED());
PyObject *flags = PyTuple_GET_ITEM(code_object_desc, 5);
int flags_int = PyLong_AsLong(flags);
assert(!ERROR_OCCURRED());
PyCodeObject *code_object = MAKE_CODE_OBJECT(
filename,
line_int,
flags_int,
function_name,
argnames,
NULL, // freevars
arg_count_int,
0, // TODO: Missing kw_only_count
0 // TODO: Missing pos_only_count
);
struct Nuitka_FunctionObject *result = Nuitka_Function_New(
functable_chardet$compat[offset],
code_object->co_name,
#if PYTHON_VERSION >= 0x300
NULL, // TODO: Not transferring qualname yet
#endif
code_object,
defaults,
#if PYTHON_VERSION >= 0x300
NULL, // kwdefaults are done on the outside currently
NULL, // TODO: Not transferring annotations
#endif
module_chardet$compat,
doc,
NULL,
0
);
return (PyObject *)result;
}
static PyMethodDef _method_def_create_compiled_function = {
"create_compiled_function",
(PyCFunction)_create_compiled_function,
METH_VARARGS | METH_KEYWORDS, NULL
};
#endif
// Internal entry point for module code.
PyObject *modulecode_chardet$compat(PyObject *module, struct Nuitka_MetaPathBasedLoaderEntry const *loader_entry) {
// Report entry to PGO.
PGO_onModuleEntered("chardet.compat");
// Store the module for future use.
module_chardet$compat = module;
// Modules can be loaded again in case of errors, avoid the init being done again.
static bool init_done = false;
if (init_done == false) {
#if defined(_NUITKA_MODULE) && 0
// In case of an extension module loaded into a process, we need to call
// initialization here because that's the first and potentially only time
// we are going called.
// Initialize the constant values used.
_initBuiltinModule();
createGlobalConstants();
/* Initialize the compiled types of Nuitka. */
_initCompiledCellType();
_initCompiledGeneratorType();
_initCompiledFunctionType();
_initCompiledMethodType();
_initCompiledFrameType();
_initSlotCompare();
#if PYTHON_VERSION >= 0x270
_initSlotIterNext();
#endif
patchTypeComparison();
// Enable meta path based loader if not already done.
#ifdef _NUITKA_TRACE
PRINT_STRING("chardet.compat: Calling setupMetaPathBasedLoader().\n");
#endif
setupMetaPathBasedLoader();
#if PYTHON_VERSION >= 0x300
patchInspectModule();
#endif
#endif
/* The constants only used by this module are created now. */
#ifdef _NUITKA_TRACE
PRINT_STRING("chardet.compat: Calling createModuleConstants().\n");
#endif
createModuleConstants();
/* The code objects used by this module are created now. */
#ifdef _NUITKA_TRACE
PRINT_STRING("chardet.compat: Calling createModuleCodeObjects().\n");
#endif
createModuleCodeObjects();
init_done = true;
}
// PRINT_STRING("in initchardet$compat\n");
moduledict_chardet$compat = MODULE_DICT(module_chardet$compat);
#ifdef _NUITKA_PLUGIN_DILL_ENABLED
registerDillPluginTables(loader_entry->name, &_method_def_reduce_compiled_function, &_method_def_create_compiled_function);
#endif
// Set "__compiled__" to what version information we have.
UPDATE_STRING_DICT0(
moduledict_chardet$compat,
(Nuitka_StringObject *)const_str_plain___compiled__,
Nuitka_dunder_compiled_value
);
// Update "__package__" value to what it ought to be.
{
#if 0
UPDATE_STRING_DICT0(
moduledict_chardet$compat,
(Nuitka_StringObject *)const_str_plain___package__,
mod_consts[14]
);
#elif 0
PyObject *module_name = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___name__);
UPDATE_STRING_DICT0(
moduledict_chardet$compat,
(Nuitka_StringObject *)const_str_plain___package__,
module_name
);
#else
#if PYTHON_VERSION < 0x300
PyObject *module_name = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___name__);
char const *module_name_cstr = PyString_AS_STRING(module_name);
char const *last_dot = strrchr(module_name_cstr, '.');
if (last_dot != NULL) {
UPDATE_STRING_DICT1(
moduledict_chardet$compat,
(Nuitka_StringObject *)const_str_plain___package__,
PyString_FromStringAndSize(module_name_cstr, last_dot - module_name_cstr)
);
}
#else
PyObject *module_name = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___name__);
Py_ssize_t dot_index = PyUnicode_Find(module_name, const_str_dot, 0, PyUnicode_GetLength(module_name), -1);
if (dot_index != -1) {
UPDATE_STRING_DICT1(
moduledict_chardet$compat,
(Nuitka_StringObject *)const_str_plain___package__,
PyUnicode_Substring(module_name, 0, dot_index)
);
}
#endif
#endif
}
CHECK_OBJECT(module_chardet$compat);
// For deep importing of a module we need to have "__builtins__", so we set
// it ourselves in the same way than CPython does. Note: This must be done
// before the frame object is allocated, or else it may fail.
if (GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___builtins__) == NULL) {
PyObject *value = (PyObject *)builtin_module;
// Check if main module, not a dict then but the module itself.
#if defined(_NUITKA_MODULE) || !0
value = PyModule_GetDict(value);
#endif
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___builtins__, value);
}
#if PYTHON_VERSION >= 0x300
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___loader__, (PyObject *)&Nuitka_Loader_Type);
#endif
#if PYTHON_VERSION >= 0x340
// Set the "__spec__" value
#if 0
// Main modules just get "None" as spec.
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___spec__, Py_None);
#else
// Other modules get a "ModuleSpec" from the standard mechanism.
{
PyObject *bootstrap_module = getImportLibBootstrapModule();
CHECK_OBJECT(bootstrap_module);
PyObject *_spec_from_module = PyObject_GetAttrString(bootstrap_module, "_spec_from_module");
CHECK_OBJECT(_spec_from_module);
PyObject *spec_value = CALL_FUNCTION_WITH_SINGLE_ARG(_spec_from_module, module_chardet$compat);
Py_DECREF(_spec_from_module);
// We can assume this to never fail, or else we are in trouble anyway.
// CHECK_OBJECT(spec_value);
if (spec_value == NULL) {
PyErr_PrintEx(0);
abort();
}
// Mark the execution in the "__spec__" value.
SET_ATTRIBUTE(spec_value, const_str_plain__initializing, Py_True);
UPDATE_STRING_DICT1(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___spec__, spec_value);
}
#endif
#endif
// Temp variables if any
struct Nuitka_FrameObject *frame_539fe608538f335bc1f02b864dc33944;
NUITKA_MAY_BE_UNUSED char const *type_description_1 = NULL;
bool tmp_result;
PyObject *exception_type = NULL;
PyObject *exception_value = NULL;
PyTracebackObject *exception_tb = NULL;
NUITKA_MAY_BE_UNUSED int exception_lineno = 0;
// Module code.
{
PyObject *tmp_assign_source_1;
tmp_assign_source_1 = Py_None;
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[0], tmp_assign_source_1);
}
{
PyObject *tmp_assign_source_2;
tmp_assign_source_2 = mod_consts[1];
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[2], tmp_assign_source_2);
}
// Frame without reuse.
frame_539fe608538f335bc1f02b864dc33944 = MAKE_MODULE_FRAME(codeobj_539fe608538f335bc1f02b864dc33944, module_chardet$compat);
// Push the new frame as the currently active one, and we should be exclusively
// owning it.
pushFrameStack(frame_539fe608538f335bc1f02b864dc33944);
assert(Py_REFCNT(frame_539fe608538f335bc1f02b864dc33944) == 2);
// Framed code:
{
PyObject *tmp_assattr_value_1;
PyObject *tmp_assattr_target_1;
tmp_assattr_value_1 = mod_consts[1];
tmp_assattr_target_1 = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[3]);
if (unlikely(tmp_assattr_target_1 == NULL)) {
tmp_assattr_target_1 = GET_MODULE_VARIABLE_VALUE_FALLBACK(mod_consts[3]);
}
assert(!(tmp_assattr_target_1 == NULL));
tmp_result = SET_ATTRIBUTE(tmp_assattr_target_1, mod_consts[4], tmp_assattr_value_1);
if (tmp_result == false) {
assert(ERROR_OCCURRED());
FETCH_ERROR_OCCURRED(&exception_type, &exception_value, &exception_tb);
exception_lineno = 1;
goto frame_exception_exit_1;
}
}
{
PyObject *tmp_assattr_value_2;
PyObject *tmp_assattr_target_2;
tmp_assattr_value_2 = Py_True;
tmp_assattr_target_2 = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[3]);
if (unlikely(tmp_assattr_target_2 == NULL)) {
tmp_assattr_target_2 = GET_MODULE_VARIABLE_VALUE_FALLBACK(mod_consts[3]);
}
assert(!(tmp_assattr_target_2 == NULL));
tmp_result = SET_ATTRIBUTE(tmp_assattr_target_2, mod_consts[5], tmp_assattr_value_2);
if (tmp_result == false) {
assert(ERROR_OCCURRED());
FETCH_ERROR_OCCURRED(&exception_type, &exception_value, &exception_tb);
exception_lineno = 1;
goto frame_exception_exit_1;
}
}
// Restore frame exception if necessary.
#if 0
RESTORE_FRAME_EXCEPTION(frame_539fe608538f335bc1f02b864dc33944);
#endif
popFrameStack();
goto frame_no_exception_1;
frame_exception_exit_1:;
#if 0
RESTORE_FRAME_EXCEPTION(frame_539fe608538f335bc1f02b864dc33944);
#endif
if (exception_tb == NULL) {
exception_tb = MAKE_TRACEBACK(frame_539fe608538f335bc1f02b864dc33944, exception_lineno);
} else if (exception_tb->tb_frame != &frame_539fe608538f335bc1f02b864dc33944->m_frame) {
exception_tb = ADD_TRACEBACK(exception_tb, frame_539fe608538f335bc1f02b864dc33944, exception_lineno);
}
// Put the previous frame back on top.
popFrameStack();
// Return the error.
goto module_exception_exit;
frame_no_exception_1:;
{
PyObject *tmp_assign_source_3;
tmp_assign_source_3 = Py_None;
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[6], tmp_assign_source_3);
}
{
PyObject *tmp_assign_source_4;
tmp_assign_source_4 = IMPORT_HARD_SYS();
assert(!(tmp_assign_source_4 == NULL));
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[7], tmp_assign_source_4);
}
{
PyObject *tmp_assign_source_5;
tmp_assign_source_5 = Py_False;
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[8], tmp_assign_source_5);
}
{
PyObject *tmp_assign_source_6;
tmp_assign_source_6 = Py_True;
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[9], tmp_assign_source_6);
}
{
PyObject *tmp_assign_source_7;
tmp_assign_source_7 = mod_consts[10];
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[11], tmp_assign_source_7);
}
{
PyObject *tmp_assign_source_8;
tmp_assign_source_8 = (PyObject *)&PyUnicode_Type;
UPDATE_STRING_DICT0(moduledict_chardet$compat, (Nuitka_StringObject *)mod_consts[12], tmp_assign_source_8);
}
// Report to PGO about leaving the module without error.
PGO_onModuleExit("chardet.compat", false);
Py_INCREF(module_chardet$compat);
return module_chardet$compat;
module_exception_exit:
#if defined(_NUITKA_MODULE) && 0
{
PyObject *module_name = GET_STRING_DICT_VALUE(moduledict_chardet$compat, (Nuitka_StringObject *)const_str_plain___name__);
if (module_name != NULL) {
Nuitka_DelModule(module_name);
}
}
#endif
PGO_onModuleExit("chardet$compat", false);
RESTORE_ERROR_OCCURRED(exception_type, exception_value, exception_tb);
return NULL;
}