예제 #1
0
        /// <summary>
        /// The actual import hook that ties Python to the managed world.
        /// </summary>
        public static IntPtr __import__(IntPtr self, IntPtr args, IntPtr kw)
        {
            // Replacement for the builtin __import__. The original import
            // hook is saved as this.py_import. This version handles CLR
            // import and defers to the normal builtin for everything else.

            var num_args = Runtime.PyTuple_Size(args);

            if (num_args < 1)
            {
                return(Exceptions.RaiseTypeError("__import__() takes at least 1 argument (0 given)"));
            }

            // borrowed reference
            IntPtr py_mod_name = Runtime.PyTuple_GetItem(args, 0);

            if (py_mod_name == IntPtr.Zero ||
                !Runtime.IsStringType(py_mod_name))
            {
                return(Exceptions.RaiseTypeError("string expected"));
            }

            // Check whether the import is of the form 'from x import y'.
            // This determines whether we return the head or tail module.

            IntPtr fromList = IntPtr.Zero;
            var    fromlist = false;

            if (num_args >= 4)
            {
                fromList = Runtime.PyTuple_GetItem(args, 3);
                if (fromList != IntPtr.Zero &&
                    Runtime.PyObject_IsTrue(fromList) == 1)
                {
                    fromlist = true;
                }
            }

            string mod_name = Runtime.GetManagedString(py_mod_name);

            // Check these BEFORE the built-in import runs; may as well
            // do the Incref()ed return here, since we've already found
            // the module.
            if (mod_name == "clr")
            {
                IntPtr clr_module = GetCLRModule(fromList);
                if (clr_module != IntPtr.Zero)
                {
                    IntPtr sys_modules = Runtime.PyImport_GetModuleDict();
                    if (sys_modules != IntPtr.Zero)
                    {
                        Runtime.PyDict_SetItemString(sys_modules, "clr", clr_module);
                    }
                }
                return(clr_module);
            }
            if (mod_name == "CLR")
            {
                Exceptions.deprecation("The CLR module is deprecated. Please use 'clr'.");
                IntPtr clr_module = GetCLRModule(fromList);
                if (clr_module != IntPtr.Zero)
                {
                    IntPtr sys_modules = Runtime.PyImport_GetModuleDict();
                    if (sys_modules != IntPtr.Zero)
                    {
                        Runtime.PyDict_SetItemString(sys_modules, "clr", clr_module);
                    }
                }
                return(clr_module);
            }
            string realname   = mod_name;
            string clr_prefix = null;

            if (mod_name.StartsWith("CLR."))
            {
                clr_prefix = "CLR."; // prepend when adding the module to sys.modules
                realname   = mod_name.Substring(4);
                string msg = $"Importing from the CLR.* namespace is deprecated. Please import '{realname}' directly.";
                Exceptions.deprecation(msg);
            }
            else
            {
                // 2010-08-15: Always seemed smart to let python try first...
                // This shaves off a few tenths of a second on test_module.py
                // and works around a quirk where 'sys' is found by the
                // LoadImplicit() deprecation logic.
                // Turns out that the AssemblyManager.ResolveHandler() checks to see if any
                // Assembly's FullName.ToLower().StartsWith(name.ToLower()), which makes very
                // little sense to me.
                IntPtr res = Runtime.PyObject_Call(py_import, args, kw);
                if (res != IntPtr.Zero)
                {
                    // There was no error.
                    if (fromlist && IsLoadAll(fromList))
                    {
                        var mod = ManagedType.GetManagedObject(res) as ModuleObject;
                        mod?.LoadNames();
                    }
                    return(res);
                }
                // There was an error
                if (!Exceptions.ExceptionMatches(Exceptions.ImportError))
                {
                    // and it was NOT an ImportError; bail out here.
                    return(IntPtr.Zero);
                }

                if (mod_name == string.Empty)
                {
                    // Most likely a missing relative import.
                    // For example site-packages\bs4\builder\__init__.py uses it to check if a package exists:
                    //     from . import _html5lib
                    // We don't support them anyway
                    return(IntPtr.Zero);
                }
                // Otherwise,  just clear the it.
                Exceptions.Clear();
            }

            string[] names = realname.Split('.');

            // Now we need to decide if the name refers to a CLR module,
            // and may have to do an implicit load (for b/w compatibility)
            // using the AssemblyManager. The assembly manager tries
            // really hard not to use Python objects or APIs, because
            // parts of it can run recursively and on strange threads.
            //
            // It does need an opportunity from time to time to check to
            // see if sys.path has changed, in a context that is safe. Here
            // we know we have the GIL, so we'll let it update if needed.

            AssemblyManager.UpdatePath();
            if (!AssemblyManager.IsValidNamespace(realname))
            {
                if (!AssemblyManager.LoadImplicit(realname))
                {
                    // May be called when a module being imported imports a module.
                    // In particular, I've seen decimal import copy import org.python.core
                    return(Runtime.PyObject_Call(py_import, args, kw));
                }
            }

            // See if sys.modules for this interpreter already has the
            // requested module. If so, just return the existing module.
            IntPtr modules = Runtime.PyImport_GetModuleDict();
            IntPtr module  = Runtime.PyDict_GetItem(modules, py_mod_name);

            if (module != IntPtr.Zero)
            {
                if (fromlist)
                {
                    if (IsLoadAll(fromList))
                    {
                        var mod = ManagedType.GetManagedObject(module) as ModuleObject;
                        mod?.LoadNames();
                    }
                    Runtime.XIncref(module);
                    return(module);
                }
                if (clr_prefix != null)
                {
                    return(GetCLRModule(fromList));
                }
                module = Runtime.PyDict_GetItemString(modules, names[0]);
                Runtime.XIncref(module);
                return(module);
            }
            Exceptions.Clear();

            // Traverse the qualified module name to get the named module
            // and place references in sys.modules as we go. Note that if
            // we are running in interactive mode we pre-load the names in
            // each module, which is often useful for introspection. If we
            // are not interactive, we stick to just-in-time creation of
            // objects at lookup time, which is much more efficient.
            // NEW: The clr got a new module variable preload. You can
            // enable preloading in a non-interactive python processing by
            // setting clr.preload = True

            ModuleObject head = mod_name == realname ? null : root;
            ModuleObject tail = root;

            root.InitializePreload();

            foreach (string name in names)
            {
                ManagedType mt = tail.GetAttribute(name, true);
                if (!(mt is ModuleObject))
                {
                    Exceptions.SetError(Exceptions.ImportError, $"No module named {name}");
                    return(IntPtr.Zero);
                }
                if (head == null)
                {
                    head = (ModuleObject)mt;
                }
                tail = (ModuleObject)mt;
                if (CLRModule.preload)
                {
                    tail.LoadNames();
                }

                // Add the module to sys.modules
                Runtime.PyDict_SetItemString(modules, tail.moduleName, tail.pyHandle);

                // If imported from CLR add CLR.<modulename> to sys.modules as well
                if (clr_prefix != null)
                {
                    Runtime.PyDict_SetItemString(modules, clr_prefix + tail.moduleName, tail.pyHandle);
                }
            }

            {
                var mod = fromlist ? tail : head;

                if (fromlist && IsLoadAll(fromList))
                {
                    mod.LoadNames();
                }

                Runtime.XIncref(mod.pyHandle);
                return(mod.pyHandle);
            }
        }
예제 #2
0
        internal Binding Bind(IntPtr inst, IntPtr args, IntPtr kw, MethodBase info, MethodInfo[] methodinfo)
        {
            // loop to find match, return invoker w/ or /wo error
            MethodBase[] _methods  = null;
            var          pynargs   = (int)Runtime.PyTuple_Size(args);
            var          isGeneric = false;

            if (info != null)
            {
                _methods = new MethodBase[1];
                _methods.SetValue(info, 0);
            }
            else
            {
                _methods = GetMethods();
            }

            // TODO: Clean up
            foreach (MethodBase mi in _methods)
            {
                if (mi.IsGenericMethod)
                {
                    isGeneric = true;
                }
                ParameterInfo[] pi = mi.GetParameters();
                ArrayList       defaultArgList;
                bool            paramsArray;

                if (!MatchesArgumentCount(pynargs, pi, out paramsArray, out defaultArgList))
                {
                    continue;
                }
                var outs  = 0;
                var margs = TryConvertArguments(pi, paramsArray, args, pynargs, defaultArgList,
                                                needsResolution: _methods.Length > 1,
                                                outs: out outs);

                if (margs == null)
                {
                    continue;
                }

                object target = null;
                if (!mi.IsStatic && inst != IntPtr.Zero)
                {
                    //CLRObject co = (CLRObject)ManagedType.GetManagedObject(inst);
                    // InvalidCastException: Unable to cast object of type
                    // 'pyRevitLabs.PythonNet.ClassObject' to type 'pyRevitLabs.PythonNet.CLRObject'
                    var co = ManagedType.GetManagedObject(inst) as CLRObject;

                    // Sanity check: this ensures a graceful exit if someone does
                    // something intentionally wrong like call a non-static method
                    // on the class rather than on an instance of the class.
                    // XXX maybe better to do this before all the other rigmarole.
                    if (co == null)
                    {
                        return(null);
                    }
                    target = co.inst;
                }

                return(new Binding(mi, target, margs, outs));
            }
            // We weren't able to find a matching method but at least one
            // is a generic method and info is null. That happens when a generic
            // method was not called using the [] syntax. Let's introspect the
            // type of the arguments and use it to construct the correct method.
            if (isGeneric && info == null && methodinfo != null)
            {
                Type[]     types = Runtime.PythonArgsToTypeArray(args, true);
                MethodInfo mi    = MatchParameters(methodinfo, types);
                return(Bind(inst, args, kw, mi, null));
            }
            return(null);
        }
예제 #3
0
        internal static IntPtr CreateSubType(IntPtr py_name, IntPtr py_base_type, IntPtr py_dict)
        {
            // Utility to create a subtype of a managed type with the ability for the
            // a python subtype able to override the managed implementation
            string name = Runtime.GetManagedString(py_name);

            // the derived class can have class attributes __assembly__ and __module__ which
            // control the name of the assembly and module the new type is created in.
            object assembly     = null;
            object namespaceStr = null;

            var disposeList = new List <PyObject>();

            try {
                var assemblyKey = new PyObject(Converter.ToPython("__assembly__", typeof(string)));
                disposeList.Add(assemblyKey);
                if (0 != Runtime.PyMapping_HasKey(py_dict, assemblyKey.Handle))
                {
                    var pyAssembly = new PyObject(Runtime.PyDict_GetItem(py_dict, assemblyKey.Handle));
                    Runtime.XIncref(pyAssembly.Handle);
                    disposeList.Add(pyAssembly);
                    if (!Converter.ToManagedValue(pyAssembly.Handle, typeof(string), out assembly, false))
                    {
                        throw new InvalidCastException("Couldn't convert __assembly__ value to string");
                    }
                }

                var namespaceKey = new PyObject(Converter.ToPythonImplicit("__namespace__"));
                disposeList.Add(namespaceKey);
                if (0 != Runtime.PyMapping_HasKey(py_dict, namespaceKey.Handle))
                {
                    var pyNamespace = new PyObject(Runtime.PyDict_GetItem(py_dict, namespaceKey.Handle));
                    Runtime.XIncref(pyNamespace.Handle);
                    disposeList.Add(pyNamespace);
                    if (!Converter.ToManagedValue(pyNamespace.Handle, typeof(string), out namespaceStr, false))
                    {
                        throw new InvalidCastException("Couldn't convert __namespace__ value to string");
                    }
                }
            }
            finally {
                foreach (PyObject o in disposeList)
                {
                    o.Dispose();
                }
            }

            // create the new managed type subclassing the base managed type
            var baseClass = ManagedType.GetManagedObject(py_base_type) as ClassBase;

            if (null == baseClass)
            {
                return(Exceptions.RaiseTypeError("invalid base class, expected CLR class type"));
            }

            try {
                Type subType = ClassDerivedObject.CreateDerivedType(name,
                                                                    baseClass.type,
                                                                    py_dict,
                                                                    (string)namespaceStr,
                                                                    (string)assembly);

                // create the new ManagedType and python type
                ClassBase subClass = ClassManager.GetClass(subType);
                IntPtr    py_type  = GetTypeHandle(subClass, subType);

                // by default the class dict will have all the C# methods in it, but as this is a
                // derived class we want the python overrides in there instead if they exist.
                IntPtr cls_dict = Marshal.ReadIntPtr(py_type, TypeOffset.tp_dict);
                Runtime.PyDict_Update(cls_dict, py_dict);

                return(py_type);
            }
            catch (Exception e) {
                return(Exceptions.RaiseTypeError(e.Message));
            }
        }
예제 #4
0
        internal static bool ToManagedValue(IntPtr value, Type obType,
                                            out object result, bool setError)
        {
            if (obType == typeof(PyObject))
            {
                Runtime.XIncref(value); // PyObject() assumes ownership
                result = new PyObject(value);
                return(true);
            }

            // Common case: if the Python value is a wrapped managed object
            // instance, just return the wrapped object.
            ManagedType mt = ManagedType.GetManagedObject(value);

            result = null;

            if (mt != null)
            {
                if (mt is CLRObject)
                {
                    object tmp = ((CLRObject)mt).inst;
                    if (obType.IsInstanceOfType(tmp))
                    {
                        result = tmp;
                        return(true);
                    }
                    Exceptions.SetError(Exceptions.TypeError, $"value cannot be converted to {obType}");
                    return(false);
                }
                if (mt is ClassBase)
                {
                    result = ((ClassBase)mt).type;
                    return(true);
                }
                // shouldn't happen
                return(false);
            }

            if (value == Runtime.PyNone && !obType.IsValueType)
            {
                result = null;
                return(true);
            }

            if (obType.IsGenericType && obType.GetGenericTypeDefinition() == typeof(Nullable <>))
            {
                if (value == Runtime.PyNone)
                {
                    result = null;
                    return(true);
                }
                // Set type to underlying type
                obType = obType.GetGenericArguments()[0];
            }

            if (obType.IsArray)
            {
                return(ToArray(value, obType, out result, setError));
            }

            if (obType.IsEnum)
            {
                return(ToEnum(value, obType, out result, setError));
            }

            // Conversion to 'Object' is done based on some reasonable default
            // conversions (Python string -> managed string, Python int -> Int32 etc.).
            if (obType == objectType)
            {
                if (Runtime.IsStringType(value))
                {
                    return(ToPrimitive(value, stringType, out result, setError));
                }

                if (Runtime.PyBool_Check(value))
                {
                    return(ToPrimitive(value, boolType, out result, setError));
                }

                if (Runtime.PyInt_Check(value))
                {
                    return(ToPrimitive(value, int32Type, out result, setError));
                }

                if (Runtime.PyLong_Check(value))
                {
                    return(ToPrimitive(value, int64Type, out result, setError));
                }

                if (Runtime.PyFloat_Check(value))
                {
                    return(ToPrimitive(value, doubleType, out result, setError));
                }

                if (Runtime.PySequence_Check(value))
                {
                    return(ToArray(value, typeof(object[]), out result, setError));
                }

                if (setError)
                {
                    Exceptions.SetError(Exceptions.TypeError, "value cannot be converted to Object");
                }

                return(false);
            }

            // Conversion to 'Type' is done using the same mappings as above for objects.
            if (obType == typeType)
            {
                if (value == Runtime.PyStringType)
                {
                    result = stringType;
                    return(true);
                }

                if (value == Runtime.PyBoolType)
                {
                    result = boolType;
                    return(true);
                }

                if (value == Runtime.PyIntType)
                {
                    result = int32Type;
                    return(true);
                }

                if (value == Runtime.PyLongType)
                {
                    result = int64Type;
                    return(true);
                }

                if (value == Runtime.PyFloatType)
                {
                    result = doubleType;
                    return(true);
                }

                if (value == Runtime.PyListType || value == Runtime.PyTupleType)
                {
                    result = typeof(object[]);
                    return(true);
                }

                if (setError)
                {
                    Exceptions.SetError(Exceptions.TypeError, "value cannot be converted to Type");
                }

                return(false);
            }

            return(ToPrimitive(value, obType, out result, setError));
        }