/* * Copyright (C) 2013-2017 Ole André Vadla Ravnås * * Licence: wxWindows Library Licence, Version 3.1 */ #include #ifdef _MSC_VER # pragma warning (push) # pragma warning (disable: 4115) # pragma warning (disable: 4211) #endif #ifdef _POSIX_C_SOURCE # undef _POSIX_C_SOURCE #endif /* * Don't propogate _DEBUG state to pyconfig as it incorrectly attempts to load * debug libraries that don't normally ship with Python (e.g. 2.x). Debuggers * wishing to spelunk the Python core can override this workaround by defining * _FRIDA_ENABLE_PYDEBUG. */ #if defined (_DEBUG) && !defined (_FRIDA_ENABLE_PYDEBUG) # undef _DEBUG # include # define _DEBUG #else # include #endif #include #include #ifdef _MSC_VER # pragma warning (pop) #endif #ifdef HAVE_MACOS # include #endif #define PyUnicode_FromUTF8String(str) PyUnicode_DecodeUTF8 (str, strlen (str), "strict") #if PY_MAJOR_VERSION >= 3 # define MOD_INIT(name) PyMODINIT_FUNC PyInit_##name (void) # define MOD_DEF(ob, name, doc, methods) \ { \ static struct PyModuleDef moduledef = { \ PyModuleDef_HEAD_INIT, name, doc, -1, methods, }; \ ob = PyModule_Create (&moduledef); \ } # define MOD_SUCCESS_VAL(val) val # define MOD_ERROR_VAL NULL # define PyRepr_FromFormat PyUnicode_FromFormat # define PYFRIDA_GETARGSPEC_FUNCTION "getfullargspec" #else # define MOD_INIT(name) PyMODINIT_FUNC init##name (void) # define MOD_DEF(ob, name, doc, methods) \ ob = Py_InitModule3 (name, methods, doc); # define MOD_SUCCESS_VAL(val) # define MOD_ERROR_VAL # define PyRepr_FromFormat PyString_FromFormat # define PYFRIDA_GETARGSPEC_FUNCTION "getargspec" #endif #define PYFRIDA_TYPE(name) \ G_PASTE (G_PASTE (Py, name), Type) #define PYFRIDA_TYPE_SPEC(name) \ G_PASTE (PYFRIDA_TYPE (name), _type_spec) #define PYFRIDA_DEFINE_TYPE(name, init_from_handle, destroy) \ static const PyGObjectTypeSpec PYFRIDA_TYPE_SPEC (name) = { &PYFRIDA_TYPE (name), (PyGObjectInitFromHandleFunc) init_from_handle, destroy } #define PYFRIDA_REGISTER_TYPE(name, gtype) \ G_BEGIN_DECLS \ { \ PyTypeObject * pytype = &PYFRIDA_TYPE (name); \ pytype->tp_new = PyType_GenericNew; \ if (PyType_Ready (pytype) < 0) \ return MOD_ERROR_VAL; \ PyGObject_register_type (gtype, &PYFRIDA_TYPE_SPEC (name)); \ Py_INCREF (pytype); \ PyModule_AddObject (module, G_STRINGIFY (name), (PyObject *) pytype); \ } \ G_END_DECLS #define PY_GOBJECT(o) ((PyGObject *) (o)) #define PY_GOBJECT_HANDLE(o) (PY_GOBJECT (o)->handle) #define PY_GOBJECT_SIGNAL_CLOSURE(o) ((PyGObjectSignalClosure *) (o)) #define FRIDA_FUNCPTR_TO_POINTER(f) (GSIZE_TO_POINTER (f)) static PyObject * inspect_getargspec; static PyObject * inspect_ismethod; static GHashTable * pygobject_type_spec_by_type; static GHashTable * exception_by_error_code; typedef struct _PyGObject PyGObject; typedef struct _PyGObjectTypeSpec PyGObjectTypeSpec; typedef struct _PyGObjectSignalClosure PyGObjectSignalClosure; typedef struct _PyDeviceManager PyDeviceManager; typedef struct _PyDevice PyDevice; typedef struct _PyApplication PyApplication; typedef struct _PyProcess PyProcess; typedef struct _PySpawn PySpawn; typedef struct _PyIcon PyIcon; typedef struct _PySession PySession; typedef struct _PyScript PyScript; typedef struct _PyFileMonitor PyFileMonitor; typedef void (* PyGObjectInitFromHandleFunc) (PyObject * self, gpointer handle); struct _PyGObject { PyObject_HEAD gpointer handle; const PyGObjectTypeSpec * spec; GSList * signal_closures; }; struct _PyGObjectTypeSpec { PyTypeObject * type; PyGObjectInitFromHandleFunc init_from_handle; GDestroyNotify destroy; }; struct _PyGObjectSignalClosure { GClosure parent; guint signal_id; guint max_arg_count; }; struct _PyDeviceManager { PyGObject parent; }; struct _PyDevice { PyGObject parent; PyObject * id; PyObject * name; PyObject * icon; PyObject * type; }; struct _PyApplication { PyGObject parent; PyObject * identifier; PyObject * name; guint pid; }; struct _PyProcess { PyGObject parent; guint pid; PyObject * name; }; struct _PySpawn { PyGObject parent; guint pid; PyObject * identifier; }; struct _PyIcon { PyGObject parent; gint width; gint height; gint rowstride; PyObject * pixels; }; struct _PySession { PyGObject parent; guint pid; }; struct _PyScript { PyGObject parent; }; struct _PyFileMonitor { PyGObject parent; GFile * file; GFileMonitor * monitor; GList * on_change; }; static PyObject * PyGObject_new_take_handle (gpointer handle, const PyGObjectTypeSpec * spec); static PyObject * PyGObject_try_get_from_handle (gpointer handle); static int PyGObject_init (PyGObject * self); static void PyGObject_dealloc (PyGObject * self); static void PyGObject_take_handle (PyGObject * self, gpointer handle, const PyGObjectTypeSpec * spec); static gpointer PyGObject_steal_handle (PyGObject * self); static PyObject * PyGObject_on (PyGObject * self, PyObject * args); static PyObject * PyGObject_off (PyGObject * self, PyObject * args); static gint PyGObject_compare_signal_closure_callback (PyGObjectSignalClosure * closure, PyObject * callback); static gboolean PyGObject_parse_signal_method_args (PyObject * args, GType instance_type, guint * signal_id, PyObject ** callback); static const gchar * PyGObject_class_name_from_c (const gchar * cname); static GClosure * PyGObject_make_closure_for_signal (guint signal_id, PyObject * callback, guint max_arg_count); static void PyGObjectSignalClosure_finalize (PyObject * callback); static void PyGObjectSignalClosure_marshal (GClosure * closure, GValue * return_gvalue, guint n_param_values, const GValue * param_values, gpointer invocation_hint, gpointer marshal_data); static PyObject * PyGObjectSignalClosure_marshal_params (const GValue * params, guint params_length); static PyObject * PyGObject_marshal_value (const GValue * value); static PyObject * PyGObject_marshal_string (const gchar * str); static PyObject * PyGObject_marshal_enum (gint value, GType type); static PyObject * PyGObject_marshal_bytes (GBytes * bytes); static PyObject * PyGObject_marshal_object (gpointer handle, GType type); static int PyDeviceManager_init (PyDeviceManager * self, PyObject * args, PyObject * kwds); static void PyDeviceManager_dealloc (PyDeviceManager * self); static PyObject * PyDeviceManager_close (PyDeviceManager * self); static PyObject * PyDeviceManager_enumerate_devices (PyDeviceManager * self); static PyObject * PyDeviceManager_add_remote_device (PyDeviceManager * self, PyObject * args); static PyObject * PyDeviceManager_remove_remote_device (PyDeviceManager * self, PyObject * args); static PyObject * PyDevice_new_take_handle (FridaDevice * handle); static int PyDevice_init (PyDevice * self, PyObject * args, PyObject * kw); static void PyDevice_init_from_handle (PyDevice * self, FridaDevice * handle); static void PyDevice_dealloc (PyDevice * self); static PyObject * PyDevice_repr (PyDevice * self); static PyObject * PyDevice_get_frontmost_application (PyDevice * self); static PyObject * PyDevice_enumerate_applications (PyDevice * self); static PyObject * PyDevice_enumerate_processes (PyDevice * self); static PyObject * PyDevice_enable_spawn_gating (PyDevice * self); static PyObject * PyDevice_disable_spawn_gating (PyDevice * self); static PyObject * PyDevice_enumerate_pending_spawns (PyDevice * self); static PyObject * PyDevice_spawn (PyDevice * self, PyObject * args); static PyObject * PyDevice_input (PyDevice * self, PyObject * args); static PyObject * PyDevice_resume (PyDevice * self, PyObject * args); static PyObject * PyDevice_kill (PyDevice * self, PyObject * args); static PyObject * PyDevice_attach (PyDevice * self, PyObject * args); static PyObject * PyDevice_inject_library_file (PyDevice * self, PyObject * args); static PyObject * PyDevice_inject_library_blob (PyDevice * self, PyObject * args); static PyObject * PyApplication_new_take_handle (FridaApplication * handle); static int PyApplication_init (PyApplication * self, PyObject * args, PyObject * kw); static void PyApplication_init_from_handle (PyApplication * self, FridaApplication * handle); static void PyApplication_dealloc (PyApplication * self); static PyObject * PyApplication_repr (PyApplication * self); static PyObject * PyApplication_get_small_icon (PyApplication * self); static PyObject * PyApplication_get_large_icon (PyApplication * self); static PyObject * PyProcess_new_take_handle (FridaProcess * handle); static int PyProcess_init (PyProcess * self, PyObject * args, PyObject * kw); static void PyProcess_init_from_handle (PyProcess * self, FridaProcess * handle); static void PyProcess_dealloc (PyProcess * self); static PyObject * PyProcess_repr (PyProcess * self); static PyObject * PyProcess_get_small_icon (PyProcess * self); static PyObject * PyProcess_get_large_icon (PyProcess * self); static PyObject * PySpawn_new_take_handle (FridaSpawn * handle); static int PySpawn_init (PySpawn * self, PyObject * args, PyObject * kw); static void PySpawn_init_from_handle (PySpawn * self, FridaSpawn * handle); static void PySpawn_dealloc (PySpawn * self); static PyObject * PySpawn_repr (PySpawn * self); static PyObject * PyIcon_new_from_handle (FridaIcon * handle); static int PyIcon_init (PyIcon * self, PyObject * args, PyObject * kw); static void PyIcon_init_from_handle (PyIcon * self, FridaIcon * handle); static void PyIcon_dealloc (PyIcon * self); static PyObject * PyIcon_repr (PyIcon * self); static PyObject * PySession_new_take_handle (FridaSession * handle); static int PySession_init (PySession * self, PyObject * args, PyObject * kw); static void PySession_init_from_handle (PySession * self, FridaSession * handle); static PyObject * PySession_repr (PySession * self); static PyObject * PySession_detach (PySession * self); static PyObject * PySession_create_script (PySession * self, PyObject * args, PyObject * kw); static PyObject * PySession_create_script_from_bytes (PySession * self, PyObject * args, PyObject * kw); static PyObject * PySession_compile_script (PySession * self, PyObject * args, PyObject * kw); static PyObject * PySession_enable_debugger (PySession * self, PyObject * args, PyObject * kw); static PyObject * PySession_disable_debugger (PySession * self); static PyObject * PySession_enable_jit (PySession * self); static PyObject * PyScript_new_take_handle (FridaScript * handle); static PyObject * PyScript_load (PyScript * self); static PyObject * PyScript_unload (PyScript * self); static PyObject * PyScript_post (PyScript * self, PyObject * args, PyObject * kw); static int PyFileMonitor_init (PyFileMonitor * self, PyObject * args, PyObject * kw); static PyObject * PyFileMonitor_enable (PyFileMonitor * self); static PyObject * PyFileMonitor_disable (PyFileMonitor * self); static PyObject * PyFrida_raise (GError * error); static guint PyFrida_get_max_argument_count (PyObject * callable); static PyMethodDef PyGObject_methods[] = { { "on", (PyCFunction) PyGObject_on, METH_VARARGS, "Add a signal handler." }, { "off", (PyCFunction) PyGObject_off, METH_VARARGS, "Remove a signal handler." }, { NULL } }; static PyMethodDef PyDeviceManager_methods[] = { { "close", (PyCFunction) PyDeviceManager_close, METH_NOARGS, "Close the device manager." }, { "enumerate_devices", (PyCFunction) PyDeviceManager_enumerate_devices, METH_NOARGS, "Enumerate devices." }, { "add_remote_device", (PyCFunction) PyDeviceManager_add_remote_device, METH_VARARGS, "Add a remote device." }, { "remove_remote_device", (PyCFunction) PyDeviceManager_remove_remote_device, METH_VARARGS, "Remove a remote device." }, { NULL } }; static PyMethodDef PyDevice_methods[] = { { "get_frontmost_application", (PyCFunction) PyDevice_get_frontmost_application, METH_NOARGS, "Get details about the frontmost application." }, { "enumerate_applications", (PyCFunction) PyDevice_enumerate_applications, METH_NOARGS, "Enumerate applications." }, { "enumerate_processes", (PyCFunction) PyDevice_enumerate_processes, METH_NOARGS, "Enumerate processes." }, { "enable_spawn_gating", (PyCFunction) PyDevice_enable_spawn_gating, METH_NOARGS, "Enable spawn gating." }, { "disable_spawn_gating", (PyCFunction) PyDevice_disable_spawn_gating, METH_NOARGS, "Disable spawn gating." }, { "enumerate_pending_spawns", (PyCFunction) PyDevice_enumerate_pending_spawns, METH_NOARGS, "Enumerate pending spawns." }, { "spawn", (PyCFunction) PyDevice_spawn, METH_VARARGS, "Spawn a process into an attachable state." }, { "input", (PyCFunction) PyDevice_input, METH_VARARGS, "Input data on stdin of a spawned process." }, { "resume", (PyCFunction) PyDevice_resume, METH_VARARGS, "Resume a process from the attachable state." }, { "kill", (PyCFunction) PyDevice_kill, METH_VARARGS, "Kill a PID." }, { "attach", (PyCFunction) PyDevice_attach, METH_VARARGS, "Attach to a PID." }, { "inject_library_file", (PyCFunction) PyDevice_inject_library_file, METH_VARARGS, "Inject a library file to a PID." }, { "inject_library_blob", (PyCFunction) PyDevice_inject_library_blob, METH_VARARGS, "Inject a library blob to a PID." }, { NULL } }; static PyMemberDef PyDevice_members[] = { { "id", T_OBJECT_EX, G_STRUCT_OFFSET (PyDevice, id), READONLY, "Device ID." }, { "name", T_OBJECT_EX, G_STRUCT_OFFSET (PyDevice, name), READONLY, "Human-readable device name." }, { "icon", T_OBJECT_EX, G_STRUCT_OFFSET (PyDevice, icon), READONLY, "Icon." }, { "type", T_OBJECT_EX, G_STRUCT_OFFSET (PyDevice, type), READONLY, "Device type. One of: local, tether, remote." }, { NULL } }; static PyMethodDef PyApplication_methods[] = { { "get_small_icon", (PyCFunction) PyApplication_get_small_icon, METH_NOARGS, "Small icon." }, { "get_large_icon", (PyCFunction) PyApplication_get_large_icon, METH_NOARGS, "Large icon." }, { NULL } }; static PyMemberDef PyApplication_members[] = { { "identifier", T_OBJECT_EX, G_STRUCT_OFFSET (PyApplication, identifier), READONLY, "Application identifier." }, { "name", T_OBJECT_EX, G_STRUCT_OFFSET (PyApplication, name), READONLY, "Human-readable application name." }, { "pid", T_UINT, G_STRUCT_OFFSET (PyApplication, pid), READONLY, "Process ID, or 0 if not running." }, { NULL } }; static PyMethodDef PyProcess_methods[] = { { "get_small_icon", (PyCFunction) PyProcess_get_small_icon, METH_NOARGS, "Small icon." }, { "get_large_icon", (PyCFunction) PyProcess_get_large_icon, METH_NOARGS, "Large icon." }, { NULL } }; static PyMemberDef PyProcess_members[] = { { "pid", T_UINT, G_STRUCT_OFFSET (PyProcess, pid), READONLY, "Process ID." }, { "name", T_OBJECT_EX, G_STRUCT_OFFSET (PyProcess, name), READONLY, "Human-readable process name." }, { NULL } }; static PyMemberDef PySpawn_members[] = { { "pid", T_UINT, G_STRUCT_OFFSET (PySpawn, pid), READONLY, "Process ID." }, { "identifier", T_OBJECT_EX, G_STRUCT_OFFSET (PySpawn, identifier), READONLY, "Application identifier." }, { NULL } }; static PyMemberDef PyIcon_members[] = { { "width", T_INT, G_STRUCT_OFFSET (PyIcon, width), READONLY, "Width in pixels." }, { "height", T_INT, G_STRUCT_OFFSET (PyIcon, height), READONLY, "Height in pixels." }, { "rowstride", T_INT, G_STRUCT_OFFSET (PyIcon, rowstride), READONLY, "Row stride in bytes." }, { "pixels", T_OBJECT_EX, G_STRUCT_OFFSET (PyIcon, pixels), READONLY, "Pixels as a raw string containing RGBA data." }, { NULL } }; static PyMethodDef PySession_methods[] = { { "detach", (PyCFunction) PySession_detach, METH_NOARGS, "Detach session from the process." }, { "create_script", (PyCFunction) PySession_create_script, METH_VARARGS | METH_KEYWORDS, "Create a new script." }, { "create_script_from_bytes", (PyCFunction) PySession_create_script_from_bytes, METH_VARARGS | METH_KEYWORDS, "Create a new script from bytecode." }, { "compile_script", (PyCFunction) PySession_compile_script, METH_VARARGS | METH_KEYWORDS, "Compile script source code to bytecode." }, { "enable_debugger", (PyCFunction) PySession_enable_debugger, METH_VARARGS | METH_KEYWORDS, "Enable the Node.js compatible script debugger." }, { "disable_debugger", (PyCFunction) PySession_disable_debugger, METH_NOARGS, "Disable the Node.js compatible script debugger." }, { "enable_jit", (PyCFunction) PySession_enable_jit, METH_NOARGS, "Enable JIT." }, { NULL } }; static PyMemberDef PySession_members[] = { { "pid", T_UINT, G_STRUCT_OFFSET (PySession, pid), READONLY, "Process ID." }, { NULL } }; static PyMethodDef PyScript_methods[] = { { "load", (PyCFunction) PyScript_load, METH_NOARGS, "Load the script." }, { "unload", (PyCFunction) PyScript_unload, METH_NOARGS, "Unload the script." }, { "post", (PyCFunction) PyScript_post, METH_VARARGS | METH_KEYWORDS, "Post a JSON-encoded message to the script." }, { NULL } }; static PyMethodDef PyFileMonitor_methods[] = { { "enable", (PyCFunction) PyFileMonitor_enable, METH_NOARGS, "Enables the file monitor." }, { "disable", (PyCFunction) PyFileMonitor_disable, METH_NOARGS, "Disables the file monitor." }, { NULL } }; static PyTypeObject PyGObjectType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Object", /* tp_name */ sizeof (PyGObject), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyGObject_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ NULL, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE, /* tp_flags */ "Frida Object", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyGObject_methods, /* tp_methods */ NULL, /* tp_members */ NULL, /* tp_getset */ NULL, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyGObject_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (GObject, NULL, g_object_unref); static PyTypeObject PyDeviceManagerType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.DeviceManager", /* tp_name */ sizeof (PyDeviceManager), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyDeviceManager_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ NULL, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Device Manager", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyDeviceManager_methods, /* tp_methods */ NULL, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyDeviceManager_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (DeviceManager, NULL, frida_unref); static PyTypeObject PyDeviceType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Device", /* tp_name */ sizeof (PyDevice), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyDevice_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PyDevice_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Device", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyDevice_methods, /* tp_methods */ PyDevice_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyDevice_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Device, PyDevice_init_from_handle, frida_unref); static PyTypeObject PyApplicationType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Application", /* tp_name */ sizeof (PyApplication), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyApplication_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PyApplication_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Application", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyApplication_methods, /* tp_methods */ PyApplication_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyApplication_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Application, PyApplication_init_from_handle, g_object_unref); static PyTypeObject PyProcessType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Process", /* tp_name */ sizeof (PyProcess), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyProcess_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PyProcess_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Process", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyProcess_methods, /* tp_methods */ PyProcess_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyProcess_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Process, PyProcess_init_from_handle, g_object_unref); static PyTypeObject PySpawnType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Spawn", /* tp_name */ sizeof (PySpawn), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PySpawn_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PySpawn_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Spawn", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ NULL, /* tp_methods */ PySpawn_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PySpawn_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Spawn, PySpawn_init_from_handle, g_object_unref); static PyTypeObject PyIconType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Icon", /* tp_name */ sizeof (PyIcon), /* tp_basicsize */ 0, /* tp_itemsize */ (destructor) PyIcon_dealloc, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PyIcon_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Icon", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ NULL, /* tp_methods */ PyIcon_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyIcon_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Icon, PyIcon_init_from_handle, g_object_unref); static PyTypeObject PySessionType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Session", /* tp_name */ sizeof (PySession), /* tp_basicsize */ 0, /* tp_itemsize */ NULL, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ (reprfunc) PySession_repr, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Session", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PySession_methods, /* tp_methods */ PySession_members, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PySession_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Session, PySession_init_from_handle, frida_unref); static PyTypeObject PyScriptType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.Script", /* tp_name */ sizeof (PyScript), /* tp_basicsize */ 0, /* tp_itemsize */ NULL, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ NULL, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida Script", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyScript_methods, /* tp_methods */ NULL, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ NULL, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (Script, NULL, frida_unref); static PyTypeObject PyFileMonitorType = { PyVarObject_HEAD_INIT (NULL, 0) "_frida.FileMonitor", /* tp_name */ sizeof (PyFileMonitor), /* tp_basicsize */ 0, /* tp_itemsize */ NULL, /* tp_dealloc */ NULL, /* tp_print */ NULL, /* tp_getattr */ NULL, /* tp_setattr */ NULL, /* tp_compare */ NULL, /* tp_repr */ NULL, /* tp_as_number */ NULL, /* tp_as_sequence */ NULL, /* tp_as_mapping */ NULL, /* tp_hash */ NULL, /* tp_call */ NULL, /* tp_str */ NULL, /* tp_getattro */ NULL, /* tp_setattro */ NULL, /* tp_as_buffer */ Py_TPFLAGS_DEFAULT, /* tp_flags */ "Frida FileMonitor", /* tp_doc */ NULL, /* tp_traverse */ NULL, /* tp_clear */ NULL, /* tp_richcompare */ 0, /* tp_weaklistoffset */ NULL, /* tp_iter */ NULL, /* tp_iternext */ PyFileMonitor_methods, /* tp_methods */ NULL, /* tp_members */ NULL, /* tp_getset */ &PyGObjectType, /* tp_base */ NULL, /* tp_dict */ NULL, /* tp_descr_get */ NULL, /* tp_descr_set */ 0, /* tp_dictoffset */ (initproc) PyFileMonitor_init, /* tp_init */ }; PYFRIDA_DEFINE_TYPE (FileMonitor, NULL, frida_unref); static PyObject * PyGObject_new_take_handle (gpointer handle, const PyGObjectTypeSpec * spec) { PyObject * object; if (handle == NULL) Py_RETURN_NONE; object = PyGObject_try_get_from_handle (handle); if (object == NULL) { object = PyObject_CallFunction ((PyObject *) spec->type, NULL); PyGObject_take_handle (PY_GOBJECT (object), handle, spec); if (spec->init_from_handle != NULL) spec->init_from_handle (object, handle); } else { spec->destroy (handle); Py_INCREF (object); } return object; } static PyObject * PyGObject_try_get_from_handle (gpointer handle) { return g_object_get_data (handle, "pyobject"); } static int PyGObject_init (PyGObject * self) { self->handle = NULL; self->spec = &PYFRIDA_TYPE_SPEC (GObject); self->signal_closures = NULL; return 0; } static void PyGObject_dealloc (PyGObject * self) { gpointer handle; handle = PyGObject_steal_handle (self); if (handle != NULL) { Py_BEGIN_ALLOW_THREADS self->spec->destroy (handle); Py_END_ALLOW_THREADS } Py_TYPE (self)->tp_free ((PyObject *) self); } static void PyGObject_take_handle (PyGObject * self, gpointer handle, const PyGObjectTypeSpec * spec) { self->handle = handle; self->spec = spec; g_object_set_data (G_OBJECT (handle), "pyobject", self); } static gpointer PyGObject_steal_handle (PyGObject * self) { gpointer handle = self->handle; GSList * entry; if (handle == NULL) return NULL; for (entry = self->signal_closures; entry != NULL; entry = entry->next) { PyGObjectSignalClosure * closure = entry->data; guint num_matches; num_matches = g_signal_handlers_disconnect_matched (handle, G_SIGNAL_MATCH_CLOSURE, closure->signal_id, 0, &closure->parent, NULL, NULL); g_assert_cmpuint (num_matches, ==, 1); } g_clear_pointer (&self->signal_closures, g_slist_free); g_object_set_data (G_OBJECT (handle), "pyobject", NULL); self->handle = NULL; return handle; } static PyObject * PyGObject_on (PyGObject * self, PyObject * args) { GType instance_type; guint signal_id; PyObject * callback; guint max_arg_count, allowed_arg_count_including_sender; GSignalQuery query; GClosure * closure; instance_type = G_OBJECT_TYPE (self->handle); if (!PyGObject_parse_signal_method_args (args, instance_type, &signal_id, &callback)) return NULL; max_arg_count = PyFrida_get_max_argument_count (callback); if (max_arg_count != G_MAXUINT) { g_signal_query (signal_id, &query); allowed_arg_count_including_sender = 1 + query.n_params; if (max_arg_count > allowed_arg_count_including_sender) goto too_many_arguments; } closure = PyGObject_make_closure_for_signal (signal_id, callback, max_arg_count); g_signal_connect_closure_by_id (self->handle, signal_id, 0, closure, TRUE); self->signal_closures = g_slist_prepend (self->signal_closures, closure); Py_RETURN_NONE; too_many_arguments: { return PyErr_Format (PyExc_TypeError, "callback expects too many arguments, the '%s' signal only has %u but callback expects %u", g_signal_name (signal_id), query.n_params, max_arg_count); } } static PyObject * PyGObject_off (PyGObject * self, PyObject * args) { guint signal_id; PyObject * callback; GSList * entry; GClosure * closure; guint num_matches; if (!PyGObject_parse_signal_method_args (args, G_OBJECT_TYPE (self->handle), &signal_id, &callback)) return NULL; entry = g_slist_find_custom (self->signal_closures, callback, (GCompareFunc) PyGObject_compare_signal_closure_callback); if (entry == NULL) goto unknown_callback; closure = entry->data; self->signal_closures = g_slist_delete_link (self->signal_closures, entry); num_matches = g_signal_handlers_disconnect_matched (self->handle, G_SIGNAL_MATCH_CLOSURE, signal_id, 0, closure, NULL, NULL); g_assert_cmpuint (num_matches, ==, 1); Py_RETURN_NONE; unknown_callback: { PyErr_SetString (PyExc_ValueError, "unknown callback"); return NULL; } } static gint PyGObject_compare_signal_closure_callback (PyGObjectSignalClosure * closure, PyObject * callback) { int result; result = PyObject_RichCompareBool (closure->parent.data, callback, Py_EQ); return (result == 1) ? 0 : -1; } static gboolean PyGObject_parse_signal_method_args (PyObject * args, GType instance_type, guint * signal_id, PyObject ** callback) { const gchar * signal_name; if (!PyArg_ParseTuple (args, "sO", &signal_name, callback)) return FALSE; if (!PyCallable_Check (*callback)) { PyErr_SetString (PyExc_TypeError, "second argument must be callable"); return FALSE; } *signal_id = g_signal_lookup (signal_name, instance_type); if (*signal_id == 0) goto invalid_signal_name; return TRUE; invalid_signal_name: { GString * message; guint * ids, n_ids, i; message = g_string_sized_new (128); g_string_append (message, PyGObject_class_name_from_c (g_type_name (instance_type))); ids = g_signal_list_ids (instance_type, &n_ids); if (n_ids > 0) { g_string_append_printf (message, " does not have a signal named '%s', it only has: ", signal_name); for (i = 0; i != n_ids; i++) { if (i != 0) g_string_append (message, ", "); g_string_append_c (message, '\''); g_string_append (message, g_signal_name (ids[i])); g_string_append_c (message, '\''); } } else { g_string_append (message, " does not have any signals"); } g_free (ids); PyErr_SetString (PyExc_ValueError, message->str); g_string_free (message, TRUE); return FALSE; } } static const gchar * PyGObject_class_name_from_c (const gchar * cname) { if (g_str_has_prefix (cname, "Frida")) return cname + 5; return cname; } static void PyGObject_class_init (void) { pygobject_type_spec_by_type = g_hash_table_new_full (NULL, NULL, NULL, NULL); } static void PyGObject_register_type (GType instance_type, const PyGObjectTypeSpec * spec) { g_hash_table_insert (pygobject_type_spec_by_type, GSIZE_TO_POINTER (instance_type), (gpointer) spec); } static GClosure * PyGObject_make_closure_for_signal (guint signal_id, PyObject * callback, guint max_arg_count) { GClosure * closure; PyGObjectSignalClosure * pyclosure; closure = g_closure_new_simple (sizeof (PyGObjectSignalClosure), callback); Py_IncRef (callback); g_closure_add_finalize_notifier (closure, callback, (GClosureNotify) PyGObjectSignalClosure_finalize); g_closure_set_marshal (closure, PyGObjectSignalClosure_marshal); pyclosure = PY_GOBJECT_SIGNAL_CLOSURE (closure); pyclosure->signal_id = signal_id; pyclosure->max_arg_count = max_arg_count; return closure; } static void PyGObjectSignalClosure_finalize (PyObject * callback) { PyGILState_STATE gstate; gstate = PyGILState_Ensure (); Py_DecRef (callback); PyGILState_Release (gstate); } static void PyGObjectSignalClosure_marshal (GClosure * closure, GValue * return_gvalue, guint n_param_values, const GValue * param_values, gpointer invocation_hint, gpointer marshal_data) { PyGObjectSignalClosure * self = PY_GOBJECT_SIGNAL_CLOSURE (closure); PyObject * callback = closure->data; PyGILState_STATE gstate; PyObject * args, * result; (void) return_gvalue; (void) invocation_hint; (void) marshal_data; gstate = PyGILState_Ensure (); if (PyGObject_try_get_from_handle (g_value_get_object (¶m_values[0])) == NULL) goto beach; if (self->max_arg_count == n_param_values) args = PyGObjectSignalClosure_marshal_params (param_values, n_param_values); else args = PyGObjectSignalClosure_marshal_params (param_values + 1, MIN (n_param_values - 1, self->max_arg_count)); if (args == NULL) { PyErr_Print (); goto beach; } result = PyObject_CallObject (callback, args); if (result == NULL) PyErr_Print (); else Py_DECREF (result); Py_DECREF (args); beach: PyGILState_Release (gstate); } static PyObject * PyGObjectSignalClosure_marshal_params (const GValue * params, guint params_length) { PyObject * args; guint i; args = PyTuple_New (params_length); for (i = 0; i != params_length; i++) { PyObject * arg; arg = PyGObject_marshal_value (¶ms[i]); if (arg == NULL) goto marshal_error; PyTuple_SetItem (args, i, arg); } return args; marshal_error: { Py_DECREF (args); return NULL; } } static PyObject * PyGObject_marshal_value (const GValue * value) { GType type; type = G_VALUE_TYPE (value); switch (type) { case G_TYPE_BOOLEAN: return PyBool_FromLong (g_value_get_boolean (value)); case G_TYPE_INT: return PyLong_FromLong (g_value_get_int (value)); case G_TYPE_UINT: return PyLong_FromUnsignedLong (g_value_get_uint (value)); case G_TYPE_FLOAT: return PyFloat_FromDouble (g_value_get_float (value)); case G_TYPE_DOUBLE: return PyFloat_FromDouble (g_value_get_double (value)); case G_TYPE_STRING: return PyGObject_marshal_string (g_value_get_string (value)); default: if (G_TYPE_IS_ENUM (type)) return PyGObject_marshal_enum (g_value_get_enum (value), type); else if (type == G_TYPE_BYTES) return PyGObject_marshal_bytes (g_value_get_boxed (value)); else if (G_TYPE_IS_OBJECT (type)) return PyGObject_marshal_object (g_value_get_object (value), type); else goto unsupported_type; } g_assert_not_reached (); unsupported_type: { return PyErr_Format (PyExc_NotImplementedError, "unsupported type: '%s'", g_type_name (type)); } } static PyObject * PyGObject_marshal_string (const gchar * str) { if (str == NULL) Py_RETURN_NONE; return PyUnicode_FromUTF8String (str); } static PyObject * PyGObject_marshal_enum (gint value, GType type) { GEnumClass * enum_class; GEnumValue * enum_value; PyObject * result; enum_class = g_type_class_ref (type); enum_value = g_enum_get_value (enum_class, value); g_assert (enum_value != NULL); result = PyUnicode_FromUTF8String (enum_value->value_nick); g_type_class_unref (enum_class); return result; } static PyObject * PyGObject_marshal_bytes (GBytes * bytes) { gconstpointer data; gsize size; if (bytes == NULL) Py_RETURN_NONE; data = g_bytes_get_data (bytes, &size); return PyBytes_FromStringAndSize (data, size); } static PyObject * PyGObject_marshal_object (gpointer handle, GType type) { const PyGObjectTypeSpec * spec; if (handle == NULL) Py_RETURN_NONE; spec = g_hash_table_lookup (pygobject_type_spec_by_type, GSIZE_TO_POINTER (type)); if (spec == NULL) spec = &PYFRIDA_TYPE_SPEC (GObject); return PyGObject_new_take_handle (g_object_ref (handle), spec); } static int PyDeviceManager_init (PyDeviceManager * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; PyGObject_take_handle (&self->parent, frida_device_manager_new (), &PYFRIDA_TYPE_SPEC (DeviceManager)); return 0; } static void PyDeviceManager_dealloc (PyDeviceManager * self) { FridaDeviceManager * handle; handle = PyGObject_steal_handle (&self->parent); if (handle != NULL) { Py_BEGIN_ALLOW_THREADS frida_device_manager_close_sync (handle); frida_unref (handle); Py_END_ALLOW_THREADS } PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PyDeviceManager_close (PyDeviceManager * self) { Py_BEGIN_ALLOW_THREADS frida_device_manager_close_sync (PY_GOBJECT_HANDLE (self)); Py_END_ALLOW_THREADS Py_RETURN_NONE; } static PyObject * PyDeviceManager_enumerate_devices (PyDeviceManager * self) { GError * error = NULL; FridaDeviceList * result; gint result_length, i; PyObject * devices; Py_BEGIN_ALLOW_THREADS result = frida_device_manager_enumerate_devices_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); result_length = frida_device_list_size (result); devices = PyList_New (result_length); for (i = 0; i != result_length; i++) { PyList_SET_ITEM (devices, i, PyDevice_new_take_handle (frida_device_list_get (result, i))); } frida_unref (result); return devices; } static PyObject * PyDeviceManager_add_remote_device (PyDeviceManager * self, PyObject * args) { const char * host; GError * error = NULL; FridaDevice * result; if (!PyArg_ParseTuple (args, "s", &host)) return NULL; Py_BEGIN_ALLOW_THREADS result = frida_device_manager_add_remote_device_sync (PY_GOBJECT_HANDLE (self), host, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); return PyDevice_new_take_handle (result); } static PyObject * PyDeviceManager_remove_remote_device (PyDeviceManager * self, PyObject * args) { const char * host; GError * error = NULL; if (!PyArg_ParseTuple (args, "s", &host)) return NULL; Py_BEGIN_ALLOW_THREADS frida_device_manager_remove_remote_device_sync (PY_GOBJECT_HANDLE (self), host, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_new_take_handle (FridaDevice * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Device)); } static int PyDevice_init (PyDevice * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->id = NULL; self->name = NULL; self->icon = NULL; self->type = NULL; return 0; } static void PyDevice_init_from_handle (PyDevice * self, FridaDevice * handle) { self->id = PyUnicode_FromUTF8String (frida_device_get_id (handle)); self->name = PyUnicode_FromUTF8String (frida_device_get_name (handle)); self->icon = PyIcon_new_from_handle (frida_device_get_icon (handle)); self->type = PyGObject_marshal_enum (frida_device_get_dtype (handle), FRIDA_TYPE_DEVICE_TYPE); } static void PyDevice_dealloc (PyDevice * self) { Py_XDECREF (self->type); Py_XDECREF (self->icon); Py_XDECREF (self->name); Py_XDECREF (self->id); PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PyDevice_repr (PyDevice * self) { PyObject * id_bytes, * name_bytes, * type_bytes, * result; id_bytes = PyUnicode_AsUTF8String (self->id); name_bytes = PyUnicode_AsUTF8String (self->name); type_bytes = PyUnicode_AsUTF8String (self->type); result = PyRepr_FromFormat ("Device(id=\"%s\", name=\"%s\", type='%s')", PyBytes_AsString (id_bytes), PyBytes_AsString (name_bytes), PyBytes_AsString (type_bytes)); Py_XDECREF (type_bytes); Py_XDECREF (name_bytes); Py_XDECREF (id_bytes); return result; } static PyObject * PyDevice_get_frontmost_application (PyDevice * self) { GError * error = NULL; FridaApplication * result; Py_BEGIN_ALLOW_THREADS result = frida_device_get_frontmost_application_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); if (result != NULL) return PyApplication_new_take_handle (result); else Py_RETURN_NONE; } static PyObject * PyDevice_enumerate_applications (PyDevice * self) { GError * error = NULL; FridaApplicationList * result; gint result_length, i; PyObject * applications; Py_BEGIN_ALLOW_THREADS result = frida_device_enumerate_applications_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); result_length = frida_application_list_size (result); applications = PyList_New (result_length); for (i = 0; i != result_length; i++) { PyList_SET_ITEM (applications, i, PyApplication_new_take_handle (frida_application_list_get (result, i))); } g_object_unref (result); return applications; } static PyObject * PyDevice_enumerate_processes (PyDevice * self) { GError * error = NULL; FridaProcessList * result; gint result_length, i; PyObject * processes; Py_BEGIN_ALLOW_THREADS result = frida_device_enumerate_processes_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); result_length = frida_process_list_size (result); processes = PyList_New (result_length); for (i = 0; i != result_length; i++) { PyList_SET_ITEM (processes, i, PyProcess_new_take_handle (frida_process_list_get (result, i))); } g_object_unref (result); return processes; } static PyObject * PyDevice_enable_spawn_gating (PyDevice * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_device_enable_spawn_gating_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_disable_spawn_gating (PyDevice * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_device_enable_spawn_gating_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_enumerate_pending_spawns (PyDevice * self) { GError * error = NULL; FridaSpawnList * result; gint result_length, i; PyObject * spawns; Py_BEGIN_ALLOW_THREADS result = frida_device_enumerate_pending_spawns_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); result_length = frida_spawn_list_size (result); spawns = PyList_New (result_length); for (i = 0; i != result_length; i++) { PyList_SET_ITEM (spawns, i, PySpawn_new_take_handle (frida_spawn_list_get (result, i))); } g_object_unref (result); return spawns; } static PyObject * PyDevice_spawn (PyDevice * self, PyObject * args) { PyObject * elements; gint argc, i; gchar ** argv; gchar ** envp; gint envp_length; GError * error = NULL; guint pid; if (PyTuple_Size (args) != 1 || (!PyList_Check (PyTuple_GetItem (args, 0)) && !PyTuple_Check (PyTuple_GetItem (args, 0)))) { PyErr_SetString (PyExc_TypeError, "expecting argv as a list or a tuple"); return NULL; } elements = PyTuple_GetItem (args, 0); argc = PySequence_Size (elements); argv = g_new0 (gchar *, argc + 1); for (i = 0; i != argc; i++) { PyObject * element; element = PySequence_GetItem (elements, i); if (PyUnicode_Check (element)) { Py_DECREF (element); element = PyUnicode_AsUTF8String (element); } if (PyBytes_Check (element)) argv[i] = g_strdup (PyBytes_AsString (element)); Py_DECREF (element); if (argv[i] == NULL) { g_strfreev (argv); PyErr_SetString (PyExc_TypeError, "argv must be a sequence of strings"); return NULL; } } envp = g_get_environ (); envp_length = g_strv_length (envp); Py_BEGIN_ALLOW_THREADS pid = frida_device_spawn_sync (PY_GOBJECT_HANDLE (self), argv[0], argv, argc, envp, envp_length, &error); Py_END_ALLOW_THREADS g_strfreev (envp); g_strfreev (argv); if (error != NULL) return PyFrida_raise (error); return PyLong_FromUnsignedLong (pid); } static PyObject * PyDevice_input (PyDevice * self, PyObject * args) { long pid; gconstpointer data_buffer; int data_size; GBytes * data; GError * error = NULL; #if PY_MAJOR_VERSION >= 3 if (!PyArg_ParseTuple (args, "ly#", &pid, &data_buffer, &data_size)) #else if (!PyArg_ParseTuple (args, "ls#", &pid, &data_buffer, &data_size)) #endif return NULL; data = g_bytes_new (data_buffer, data_size); Py_BEGIN_ALLOW_THREADS frida_device_input_sync (PY_GOBJECT_HANDLE (self), (guint) pid, data, &error); Py_END_ALLOW_THREADS g_bytes_unref (data); if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_resume (PyDevice * self, PyObject * args) { long pid; GError * error = NULL; if (!PyArg_ParseTuple (args, "l", &pid)) return NULL; Py_BEGIN_ALLOW_THREADS frida_device_resume_sync (PY_GOBJECT_HANDLE (self), (guint) pid, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_kill (PyDevice * self, PyObject * args) { long pid; GError * error = NULL; if (!PyArg_ParseTuple (args, "l", &pid)) return NULL; Py_BEGIN_ALLOW_THREADS frida_device_kill_sync (PY_GOBJECT_HANDLE (self), (guint) pid, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyDevice_attach (PyDevice * self, PyObject * args) { long pid; GError * error = NULL; FridaSession * handle; if (!PyArg_ParseTuple (args, "l", &pid)) return NULL; Py_BEGIN_ALLOW_THREADS handle = frida_device_attach_sync (PY_GOBJECT_HANDLE (self), (guint) pid, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); return PySession_new_take_handle (handle); } static PyObject * PyDevice_inject_library_file (PyDevice * self, PyObject * args) { long pid; const char * path, * entrypoint, * data; GError * error = NULL; guint id; if (!PyArg_ParseTuple (args, "lsss", &pid, &path, &entrypoint, &data)) return NULL; Py_BEGIN_ALLOW_THREADS id = frida_device_inject_library_file_sync (PY_GOBJECT_HANDLE (self), (guint) pid, path, entrypoint, data, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); return PyLong_FromUnsignedLong (id); } static PyObject * PyDevice_inject_library_blob (PyDevice * self, PyObject * args) { long pid; GBytes * blob; gconstpointer blob_buffer; int blob_size; const char * entrypoint, * data; GError * error = NULL; guint id; #if PY_MAJOR_VERSION >= 3 if (!PyArg_ParseTuple (args, "ly#ss", &pid, &blob_buffer, &blob_size, &entrypoint, &data)) #else if (!PyArg_ParseTuple (args, "ls#ss", &pid, &blob_buffer, &blob_size, &entrypoint, &data)) #endif return NULL; blob = g_bytes_new (blob_buffer, blob_size); Py_BEGIN_ALLOW_THREADS id = frida_device_inject_library_blob_sync (PY_GOBJECT_HANDLE (self), (guint) pid, blob, entrypoint, data, &error); Py_END_ALLOW_THREADS g_bytes_unref (blob); if (error != NULL) return PyFrida_raise (error); return PyLong_FromUnsignedLong (id); } static PyObject * PyApplication_new_take_handle (FridaApplication * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Application)); } static int PyApplication_init (PyApplication * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->identifier = NULL; self->name = NULL; self->pid = 0; return 0; } static void PyApplication_init_from_handle (PyApplication * self, FridaApplication * handle) { self->identifier = PyUnicode_FromUTF8String (frida_application_get_identifier (handle)); self->name = PyUnicode_FromUTF8String (frida_application_get_name (handle)); self->pid = frida_application_get_pid (handle); } static void PyApplication_dealloc (PyApplication * self) { Py_XDECREF (self->name); Py_XDECREF (self->identifier); PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PyApplication_repr (PyApplication * self) { PyObject * identifier_bytes, * name_bytes, * result; identifier_bytes = PyUnicode_AsUTF8String (self->identifier); name_bytes = PyUnicode_AsUTF8String (self->name); if (self->pid != 0) { result = PyRepr_FromFormat ("Application(identifier=\"%s\", name=\"%s\", pid=%u)", PyBytes_AsString (identifier_bytes), PyBytes_AsString (name_bytes), self->pid); } else { result = PyRepr_FromFormat ("Application(identifier=\"%s\", name=\"%s\")", PyBytes_AsString (identifier_bytes), PyBytes_AsString (name_bytes)); } Py_XDECREF (name_bytes); Py_XDECREF (identifier_bytes); return result; } static PyObject * PyApplication_get_small_icon (PyApplication * self) { return PyIcon_new_from_handle (frida_application_get_small_icon (PY_GOBJECT_HANDLE (self))); } static PyObject * PyApplication_get_large_icon (PyApplication * self) { return PyIcon_new_from_handle (frida_application_get_large_icon (PY_GOBJECT_HANDLE (self))); } static PyObject * PyProcess_new_take_handle (FridaProcess * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Process)); } static int PyProcess_init (PyProcess * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->pid = 0; self->name = NULL; return 0; } static void PyProcess_init_from_handle (PyProcess * self, FridaProcess * handle) { self->pid = frida_process_get_pid (handle); self->name = PyUnicode_FromUTF8String (frida_process_get_name (handle)); } static void PyProcess_dealloc (PyProcess * self) { Py_XDECREF (self->name); PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PyProcess_repr (PyProcess * self) { PyObject * name_bytes, * result; name_bytes = PyUnicode_AsUTF8String (self->name); result = PyRepr_FromFormat ("Process(pid=%u, name=\"%s\")", self->pid, PyBytes_AsString (name_bytes)); Py_XDECREF (name_bytes); return result; } static PyObject * PyProcess_get_small_icon (PyProcess * self) { return PyIcon_new_from_handle (frida_process_get_small_icon (PY_GOBJECT_HANDLE (self))); } static PyObject * PyProcess_get_large_icon (PyProcess * self) { return PyIcon_new_from_handle (frida_process_get_large_icon (PY_GOBJECT_HANDLE (self))); } static PyObject * PySpawn_new_take_handle (FridaSpawn * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Spawn)); } static int PySpawn_init (PySpawn * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->pid = 0; self->identifier = NULL; return 0; } static void PySpawn_init_from_handle (PySpawn * self, FridaSpawn * handle) { self->pid = frida_spawn_get_pid (handle); self->identifier = PyUnicode_FromUTF8String (frida_spawn_get_identifier (handle)); } static void PySpawn_dealloc (PySpawn * self) { Py_XDECREF (self->identifier); PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PySpawn_repr (PySpawn * self) { PyObject * identifier_bytes, * result; identifier_bytes = PyUnicode_AsUTF8String (self->identifier); if (self->identifier != NULL) { result = PyRepr_FromFormat ("Spawn(pid=%u, identifier=\"%s\")", self->pid, PyBytes_AsString (identifier_bytes)); } else { result = PyRepr_FromFormat ("Spawn(pid=%u)", self->pid); } Py_XDECREF (identifier_bytes); return result; } static PyObject * PyIcon_new_from_handle (FridaIcon * handle) { if (handle != NULL) g_object_ref (handle); return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Icon)); } static int PyIcon_init (PyIcon * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->width = 0; self->height = 0; self->rowstride = 0; self->pixels = NULL; return 0; } static void PyIcon_init_from_handle (PyIcon * self, FridaIcon * handle) { gconstpointer pixels; gsize pixels_size; self->width = frida_icon_get_width (handle); self->height = frida_icon_get_height (handle); self->rowstride = frida_icon_get_rowstride (handle); pixels = g_bytes_get_data (frida_icon_get_pixels (handle), &pixels_size); self->pixels = PyBytes_FromStringAndSize ((char *) pixels, (Py_ssize_t) pixels_size); } static void PyIcon_dealloc (PyIcon * self) { Py_XDECREF (self->pixels); PyGObjectType.tp_dealloc ((PyObject *) self); } static PyObject * PyIcon_repr (PyIcon * self) { return PyRepr_FromFormat ("Icon(width=%d, height=%d, rowstride=%d, pixels=<%zd bytes>)", self->width, self->height, self->rowstride, PyBytes_Size (self->pixels)); } static PyObject * PySession_new_take_handle (FridaSession * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Session)); } static int PySession_init (PySession * self, PyObject * args, PyObject * kw) { if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; self->pid = 0; return 0; } static void PySession_init_from_handle (PySession * self, FridaSession * handle) { self->pid = frida_session_get_pid (handle); } static PyObject * PySession_repr (PySession * self) { return PyRepr_FromFormat ("Session(pid=%u)", self->pid); } static PyObject * PySession_detach (PySession * self) { Py_BEGIN_ALLOW_THREADS frida_session_detach_sync (PY_GOBJECT_HANDLE (self)); Py_END_ALLOW_THREADS Py_RETURN_NONE; } static PyObject * PySession_create_script (PySession * self, PyObject * args, PyObject * kw) { static char * keywords[] = { "source", "name", NULL }; char * source, * name = NULL; GError * error = NULL; FridaScript * handle; if (!PyArg_ParseTupleAndKeywords (args, kw, "es|es", keywords, "utf-8", &source, "utf-8", &name)) return NULL; Py_BEGIN_ALLOW_THREADS handle = frida_session_create_script_sync (PY_GOBJECT_HANDLE (self), name, source, &error); Py_END_ALLOW_THREADS PyMem_Free (source); PyMem_Free (name); if (error != NULL) return PyFrida_raise (error); return PyScript_new_take_handle (handle); } static PyObject * PySession_create_script_from_bytes (PySession * self, PyObject * args, PyObject * kw) { static char * keywords[] = { "data", NULL }; guint8 * data; int size; GBytes * bytes; GError * error = NULL; FridaScript * handle; #if PY_MAJOR_VERSION >= 3 if (!PyArg_ParseTupleAndKeywords (args, kw, "y#", keywords, &data, &size)) #else if (!PyArg_ParseTupleAndKeywords (args, kw, "s#", keywords, &data, &size)) #endif return NULL; bytes = g_bytes_new (data, size); Py_BEGIN_ALLOW_THREADS handle = frida_session_create_script_from_bytes_sync (PY_GOBJECT_HANDLE (self), bytes, &error); Py_END_ALLOW_THREADS g_bytes_unref (bytes); if (error != NULL) return PyFrida_raise (error); return PyScript_new_take_handle (handle); } static PyObject * PySession_compile_script (PySession * self, PyObject * args, PyObject * kw) { static char * keywords[] = { "source", "name", NULL }; char * source, * name = NULL; GError * error = NULL; GBytes * bytes; gconstpointer data; gsize size; PyObject * result; if (!PyArg_ParseTupleAndKeywords (args, kw, "es|es", keywords, "utf-8", &source, "utf-8", &name)) return NULL; Py_BEGIN_ALLOW_THREADS bytes = frida_session_compile_script_sync (PY_GOBJECT_HANDLE (self), name, source, &error); Py_END_ALLOW_THREADS PyMem_Free (source); PyMem_Free (name); if (error != NULL) return PyFrida_raise (error); data = g_bytes_get_data (bytes, &size); result = PyBytes_FromStringAndSize (data, size); g_bytes_unref (bytes); return result; } static PyObject * PySession_enable_debugger (PySession * self, PyObject * args, PyObject * kw) { static char * keywords[] = { "port", NULL }; unsigned short int port = 0; GError * error = NULL; if (!PyArg_ParseTupleAndKeywords (args, kw, "|H", keywords, &port)) return NULL; Py_BEGIN_ALLOW_THREADS frida_session_enable_debugger_sync (PY_GOBJECT_HANDLE (self), port, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PySession_disable_debugger (PySession * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_session_disable_debugger_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PySession_enable_jit (PySession * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_session_enable_jit_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyScript_new_take_handle (FridaScript * handle) { return PyGObject_new_take_handle (handle, &PYFRIDA_TYPE_SPEC (Script)); } static PyObject * PyScript_load (PyScript * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_script_load_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyScript_unload (PyScript * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_script_unload_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyScript_post (PyScript * self, PyObject * args, PyObject * kw) { static char * keywords[] = { "message", "data", NULL }; char * message; gconstpointer data_buffer = NULL; int data_size = 0; GBytes * data; GError * error = NULL; if (!PyArg_ParseTupleAndKeywords (args, kw, "es|z#", keywords, "utf-8", &message, &data_buffer, &data_size)) return NULL; data = (data_buffer != NULL) ? g_bytes_new (data_buffer, data_size) : NULL; Py_BEGIN_ALLOW_THREADS frida_script_post_sync (PY_GOBJECT_HANDLE (self), message, data, &error); Py_END_ALLOW_THREADS g_bytes_unref (data); PyMem_Free (message); if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static int PyFileMonitor_init (PyFileMonitor * self, PyObject * args, PyObject * kw) { const char * path; if (PyGObjectType.tp_init ((PyObject *) self, args, kw) < 0) return -1; if (!PyArg_ParseTuple (args, "s", &path)) return -1; PyGObject_take_handle (&self->parent, frida_file_monitor_new (path), &PYFRIDA_TYPE_SPEC (FileMonitor)); return 0; } static PyObject * PyFileMonitor_enable (PyFileMonitor * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_file_monitor_enable_sync (PY_GOBJECT_HANDLE (self), NULL, &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static PyObject * PyFileMonitor_disable (PyFileMonitor * self) { GError * error = NULL; Py_BEGIN_ALLOW_THREADS frida_file_monitor_disable_sync (PY_GOBJECT_HANDLE (self), &error); Py_END_ALLOW_THREADS if (error != NULL) return PyFrida_raise (error); Py_RETURN_NONE; } static void PyFrida_object_decref (gpointer obj) { PyObject * o = obj; Py_DECREF (o); } static PyObject * PyFrida_raise (GError * error) { PyObject * exception; GString * message; g_assert (error->domain == FRIDA_ERROR); exception = g_hash_table_lookup (exception_by_error_code, GINT_TO_POINTER (error->code)); g_assert (exception != NULL); message = g_string_new (""); g_string_append_unichar (message, g_unichar_tolower (g_utf8_get_char (error->message))); g_string_append (message, g_utf8_offset_to_pointer (error->message, 1)); PyErr_SetString (exception, message->str); g_string_free (message, TRUE); g_error_free (error); return NULL; } static guint PyFrida_get_max_argument_count (PyObject * callable) { guint result = G_MAXUINT; PyObject * spec; PyObject * varargs = NULL; PyObject * args = NULL; PyObject * is_method; spec = PyObject_CallFunction (inspect_getargspec, "O", callable); if (spec == NULL) { PyErr_Clear (); goto beach; } varargs = PyTuple_GetItem (spec, 1); if (varargs != Py_None) goto beach; args = PyTuple_GetItem (spec, 0); result = PyObject_Size (args); is_method = PyObject_CallFunction (inspect_ismethod, "O", callable); g_assert (is_method != NULL); if (is_method == Py_True) result--; Py_DECREF (is_method); beach: Py_XDECREF (args); Py_XDECREF (varargs); Py_XDECREF (spec); return result; } MOD_INIT (_frida) { PyObject * inspect, * module; PyEval_InitThreads (); inspect = PyImport_ImportModule ("inspect"); inspect_getargspec = PyObject_GetAttrString (inspect, PYFRIDA_GETARGSPEC_FUNCTION); inspect_ismethod = PyObject_GetAttrString (inspect, "ismethod"); Py_DECREF (inspect); frida_init (); PyGObject_class_init (); MOD_DEF (module, "_frida", "Frida", NULL); PyModule_AddStringConstant (module, "__version__", frida_version_string ()); PYFRIDA_REGISTER_TYPE (GObject, G_TYPE_OBJECT); PYFRIDA_REGISTER_TYPE (DeviceManager, FRIDA_TYPE_DEVICE_MANAGER); PYFRIDA_REGISTER_TYPE (Device, FRIDA_TYPE_DEVICE); PYFRIDA_REGISTER_TYPE (Application, FRIDA_TYPE_APPLICATION); PYFRIDA_REGISTER_TYPE (Process, FRIDA_TYPE_PROCESS); PYFRIDA_REGISTER_TYPE (Spawn, FRIDA_TYPE_SPAWN); PYFRIDA_REGISTER_TYPE (Icon, FRIDA_TYPE_ICON); PYFRIDA_REGISTER_TYPE (Session, FRIDA_TYPE_SESSION); PYFRIDA_REGISTER_TYPE (Script, FRIDA_TYPE_SCRIPT); PYFRIDA_REGISTER_TYPE (FileMonitor, FRIDA_TYPE_FILE_MONITOR); exception_by_error_code = g_hash_table_new_full (NULL, NULL, NULL, PyFrida_object_decref); #define PYFRIDA_DECLARE_EXCEPTION(code, name) \ do \ { \ PyObject * exception = PyErr_NewException ("frida." name "Error", NULL, NULL); \ g_hash_table_insert (exception_by_error_code, GINT_TO_POINTER (G_PASTE (FRIDA_ERROR_, code)), exception); \ Py_INCREF (exception); \ PyModule_AddObject (module, name "Error", exception); \ } while (FALSE) PYFRIDA_DECLARE_EXCEPTION (SERVER_NOT_RUNNING, "ServerNotRunning"); PYFRIDA_DECLARE_EXCEPTION (EXECUTABLE_NOT_FOUND, "ExecutableNotFound"); PYFRIDA_DECLARE_EXCEPTION (EXECUTABLE_NOT_SUPPORTED, "ExecutableNotSupported"); PYFRIDA_DECLARE_EXCEPTION (PROCESS_NOT_FOUND, "ProcessNotFound"); PYFRIDA_DECLARE_EXCEPTION (PROCESS_NOT_RESPONDING, "ProcessNotResponding"); PYFRIDA_DECLARE_EXCEPTION (INVALID_ARGUMENT, "InvalidArgument"); PYFRIDA_DECLARE_EXCEPTION (INVALID_OPERATION, "InvalidOperation"); PYFRIDA_DECLARE_EXCEPTION (PERMISSION_DENIED, "PermissionDenied"); PYFRIDA_DECLARE_EXCEPTION (ADDRESS_IN_USE, "AddressInUse"); PYFRIDA_DECLARE_EXCEPTION (TIMED_OUT, "TimedOut"); PYFRIDA_DECLARE_EXCEPTION (NOT_SUPPORTED, "NotSupported"); PYFRIDA_DECLARE_EXCEPTION (PROTOCOL, "Protocol"); PYFRIDA_DECLARE_EXCEPTION (TRANSPORT, "Transport"); return MOD_SUCCESS_VAL (module); }