Added section on passing contextual information to logging and documentation for...
[python.git] / PC / _winreg.c
blob19f928e6c1dec5aeda1dafe246a39765761ba79d
1 /*
2 _winreg.c
4 Windows Registry access module for Python.
6 * Simple registry access written by Mark Hammond in win32api
7 module circa 1995.
8 * Bill Tutt expanded the support significantly not long after.
9 * Numerous other people have submitted patches since then.
10 * Ripped from win32api module 03-Feb-2000 by Mark Hammond, and
11 basic Unicode support added.
15 #include "Python.h"
16 #include "structmember.h"
17 #include "malloc.h" /* for alloca */
18 #include "windows.h"
20 static BOOL PyHKEY_AsHKEY(PyObject *ob, HKEY *pRes, BOOL bNoneOK);
21 static PyObject *PyHKEY_FromHKEY(HKEY h);
22 static BOOL PyHKEY_Close(PyObject *obHandle);
24 static char errNotAHandle[] = "Object is not a handle";
26 /* The win32api module reports the function name that failed,
27 but this concept is not in the Python core.
28 Hopefully it will one day, and in the meantime I dont
29 want to lose this info...
31 #define PyErr_SetFromWindowsErrWithFunction(rc, fnname) \
32 PyErr_SetFromWindowsErr(rc)
34 /* Forward declares */
36 /* Doc strings */
37 PyDoc_STRVAR(module_doc,
38 "This module provides access to the Windows registry API.\n"
39 "\n"
40 "Functions:\n"
41 "\n"
42 "CloseKey() - Closes a registry key.\n"
43 "ConnectRegistry() - Establishes a connection to a predefined registry handle\n"
44 " on another computer.\n"
45 "CreateKey() - Creates the specified key, or opens it if it already exists.\n"
46 "DeleteKey() - Deletes the specified key.\n"
47 "DeleteValue() - Removes a named value from the specified registry key.\n"
48 "EnumKey() - Enumerates subkeys of the specified open registry key.\n"
49 "EnumValue() - Enumerates values of the specified open registry key.\n"
50 "ExpandEnvironmentStrings() - Expand the env strings in a REG_EXPAND_SZ string.\n"
51 "FlushKey() - Writes all the attributes of the specified key to the registry.\n"
52 "LoadKey() - Creates a subkey under HKEY_USER or HKEY_LOCAL_MACHINE and stores\n"
53 " registration information from a specified file into that subkey.\n"
54 "OpenKey() - Alias for <om win32api.RegOpenKeyEx>\n"
55 "OpenKeyEx() - Opens the specified key.\n"
56 "QueryValue() - Retrieves the value associated with the unnamed value for a\n"
57 " specified key in the registry.\n"
58 "QueryValueEx() - Retrieves the type and data for a specified value name\n"
59 " associated with an open registry key.\n"
60 "QueryInfoKey() - Returns information about the specified key.\n"
61 "SaveKey() - Saves the specified key, and all its subkeys a file.\n"
62 "SetValue() - Associates a value with a specified key.\n"
63 "SetValueEx() - Stores data in the value field of an open registry key.\n"
64 "\n"
65 "Special objects:\n"
66 "\n"
67 "HKEYType -- type object for HKEY objects\n"
68 "error -- exception raised for Win32 errors\n"
69 "\n"
70 "Integer constants:\n"
71 "Many constants are defined - see the documentation for each function\n"
72 "to see what constants are used, and where.");
75 PyDoc_STRVAR(CloseKey_doc,
76 "CloseKey(hkey) - Closes a previously opened registry key.\n"
77 "\n"
78 "The hkey argument specifies a previously opened key.\n"
79 "\n"
80 "Note that if the key is not closed using this method, it will be\n"
81 "closed when the hkey object is destroyed by Python.");
83 PyDoc_STRVAR(ConnectRegistry_doc,
84 "key = ConnectRegistry(computer_name, key) - "
85 "Establishes a connection to a predefined registry handle on another computer.\n"
86 "\n"
87 "computer_name is the name of the remote computer, of the form \\\\computername.\n"
88 " If None, the local computer is used.\n"
89 "key is the predefined handle to connect to.\n"
90 "\n"
91 "The return value is the handle of the opened key.\n"
92 "If the function fails, an EnvironmentError exception is raised.");
94 PyDoc_STRVAR(CreateKey_doc,
95 "key = CreateKey(key, sub_key) - Creates or opens the specified key.\n"
96 "\n"
97 "key is an already open key, or one of the predefined HKEY_* constants\n"
98 "sub_key is a string that names the key this method opens or creates.\n"
99 " If key is one of the predefined keys, sub_key may be None. In that case,\n"
100 " the handle returned is the same key handle passed in to the function.\n"
101 "\n"
102 "If the key already exists, this function opens the existing key\n"
103 "\n"
104 "The return value is the handle of the opened key.\n"
105 "If the function fails, an exception is raised.");
107 PyDoc_STRVAR(DeleteKey_doc,
108 "DeleteKey(key, sub_key) - Deletes the specified key.\n"
109 "\n"
110 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
111 "sub_key is a string that must be a subkey of the key identified by the key parameter.\n"
112 " This value must not be None, and the key may not have subkeys.\n"
113 "\n"
114 "This method can not delete keys with subkeys.\n"
115 "\n"
116 "If the method succeeds, the entire key, including all of its values,\n"
117 "is removed. If the method fails, an EnvironmentError exception is raised.");
119 PyDoc_STRVAR(DeleteValue_doc,
120 "DeleteValue(key, value) - Removes a named value from a registry key.\n"
121 "\n"
122 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
123 "value is a string that identifies the value to remove.");
125 PyDoc_STRVAR(EnumKey_doc,
126 "string = EnumKey(key, index) - Enumerates subkeys of an open registry key.\n"
127 "\n"
128 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
129 "index is an integer that identifies the index of the key to retrieve.\n"
130 "\n"
131 "The function retrieves the name of one subkey each time it is called.\n"
132 "It is typically called repeatedly until an EnvironmentError exception is\n"
133 "raised, indicating no more values are available.");
135 PyDoc_STRVAR(EnumValue_doc,
136 "tuple = EnumValue(key, index) - Enumerates values of an open registry key.\n"
137 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
138 "index is an integer that identifies the index of the value to retrieve.\n"
139 "\n"
140 "The function retrieves the name of one subkey each time it is called.\n"
141 "It is typically called repeatedly, until an EnvironmentError exception\n"
142 "is raised, indicating no more values.\n"
143 "\n"
144 "The result is a tuple of 3 items:\n"
145 "value_name is a string that identifies the value.\n"
146 "value_data is an object that holds the value data, and whose type depends\n"
147 " on the underlying registry type.\n"
148 "data_type is an integer that identifies the type of the value data.");
150 PyDoc_STRVAR(ExpandEnvironmentStrings_doc,
151 "string = ExpandEnvironmentStrings(string) - Expand environment vars.\n");
153 PyDoc_STRVAR(FlushKey_doc,
154 "FlushKey(key) - Writes all the attributes of a key to the registry.\n"
155 "\n"
156 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
157 "\n"
158 "It is not necessary to call RegFlushKey to change a key.\n"
159 "Registry changes are flushed to disk by the registry using its lazy flusher.\n"
160 "Registry changes are also flushed to disk at system shutdown.\n"
161 "Unlike CloseKey(), the FlushKey() method returns only when all the data has\n"
162 "been written to the registry.\n"
163 "An application should only call FlushKey() if it requires absolute certainty that registry changes are on disk.\n"
164 "If you don't know whether a FlushKey() call is required, it probably isn't.");
166 PyDoc_STRVAR(LoadKey_doc,
167 "LoadKey(key, sub_key, file_name) - Creates a subkey under the specified key\n"
168 "and stores registration information from a specified file into that subkey.\n"
169 "\n"
170 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
171 "sub_key is a string that identifies the sub_key to load\n"
172 "file_name is the name of the file to load registry data from.\n"
173 " This file must have been created with the SaveKey() function.\n"
174 " Under the file allocation table (FAT) file system, the filename may not\n"
175 "have an extension.\n"
176 "\n"
177 "A call to LoadKey() fails if the calling process does not have the\n"
178 "SE_RESTORE_PRIVILEGE privilege.\n"
179 "\n"
180 "If key is a handle returned by ConnectRegistry(), then the path specified\n"
181 "in fileName is relative to the remote computer.\n"
182 "\n"
183 "The docs imply key must be in the HKEY_USER or HKEY_LOCAL_MACHINE tree");
185 PyDoc_STRVAR(OpenKey_doc,
186 "key = OpenKey(key, sub_key, res = 0, sam = KEY_READ) - Opens the specified key.\n"
187 "\n"
188 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
189 "sub_key is a string that identifies the sub_key to open\n"
190 "res is a reserved integer, and must be zero. Default is zero.\n"
191 "sam is an integer that specifies an access mask that describes the desired\n"
192 " security access for the key. Default is KEY_READ\n"
193 "\n"
194 "The result is a new handle to the specified key\n"
195 "If the function fails, an EnvironmentError exception is raised.");
197 PyDoc_STRVAR(OpenKeyEx_doc, "See OpenKey()");
199 PyDoc_STRVAR(QueryInfoKey_doc,
200 "tuple = QueryInfoKey(key) - Returns information about a key.\n"
201 "\n"
202 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
203 "\n"
204 "The result is a tuple of 3 items:"
205 "An integer that identifies the number of sub keys this key has.\n"
206 "An integer that identifies the number of values this key has.\n"
207 "A long integer that identifies when the key was last modified (if available)\n"
208 " as 100's of nanoseconds since Jan 1, 1600.");
210 PyDoc_STRVAR(QueryValue_doc,
211 "string = QueryValue(key, sub_key) - retrieves the unnamed value for a key.\n"
212 "\n"
213 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
214 "sub_key is a string that holds the name of the subkey with which the value\n"
215 " is associated. If this parameter is None or empty, the function retrieves\n"
216 " the value set by the SetValue() method for the key identified by key."
217 "\n"
218 "Values in the registry have name, type, and data components. This method\n"
219 "retrieves the data for a key's first value that has a NULL name.\n"
220 "But the underlying API call doesn't return the type, Lame Lame Lame, DONT USE THIS!!!");
222 PyDoc_STRVAR(QueryValueEx_doc,
223 "value,type_id = QueryValueEx(key, value_name) - Retrieves the type and data for a specified value name associated with an open registry key.\n"
224 "\n"
225 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
226 "value_name is a string indicating the value to query");
228 PyDoc_STRVAR(SaveKey_doc,
229 "SaveKey(key, file_name) - Saves the specified key, and all its subkeys to the specified file.\n"
230 "\n"
231 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
232 "file_name is the name of the file to save registry data to.\n"
233 " This file cannot already exist. If this filename includes an extension,\n"
234 " it cannot be used on file allocation table (FAT) file systems by the\n"
235 " LoadKey(), ReplaceKey() or RestoreKey() methods.\n"
236 "\n"
237 "If key represents a key on a remote computer, the path described by\n"
238 "file_name is relative to the remote computer.\n"
239 "The caller of this method must possess the SeBackupPrivilege security privilege.\n"
240 "This function passes NULL for security_attributes to the API.");
242 PyDoc_STRVAR(SetValue_doc,
243 "SetValue(key, sub_key, type, value) - Associates a value with a specified key.\n"
244 "\n"
245 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
246 "sub_key is a string that names the subkey with which the value is associated.\n"
247 "type is an integer that specifies the type of the data. Currently this\n"
248 " must be REG_SZ, meaning only strings are supported.\n"
249 "value is a string that specifies the new value.\n"
250 "\n"
251 "If the key specified by the sub_key parameter does not exist, the SetValue\n"
252 "function creates it.\n"
253 "\n"
254 "Value lengths are limited by available memory. Long values (more than\n"
255 "2048 bytes) should be stored as files with the filenames stored in \n"
256 "the configuration registry. This helps the registry perform efficiently.\n"
257 "\n"
258 "The key identified by the key parameter must have been opened with\n"
259 "KEY_SET_VALUE access.");
261 PyDoc_STRVAR(SetValueEx_doc,
262 "SetValueEx(key, value_name, reserved, type, value) - Stores data in the value field of an open registry key.\n"
263 "\n"
264 "key is an already open key, or any one of the predefined HKEY_* constants.\n"
265 "value_name is a string containing the name of the value to set, or None\n"
266 "type is an integer that specifies the type of the data. This should be one of:\n"
267 " REG_BINARY -- Binary data in any form.\n"
268 " REG_DWORD -- A 32-bit number.\n"
269 " REG_DWORD_LITTLE_ENDIAN -- A 32-bit number in little-endian format.\n"
270 " REG_DWORD_BIG_ENDIAN -- A 32-bit number in big-endian format.\n"
271 " REG_EXPAND_SZ -- A null-terminated string that contains unexpanded references\n"
272 " to environment variables (for example, %PATH%).\n"
273 " REG_LINK -- A Unicode symbolic link.\n"
274 " REG_MULTI_SZ -- An sequence of null-terminated strings, terminated by\n"
275 " two null characters. Note that Python handles this\n"
276 " termination automatically.\n"
277 " REG_NONE -- No defined value type.\n"
278 " REG_RESOURCE_LIST -- A device-driver resource list.\n"
279 " REG_SZ -- A null-terminated string.\n"
280 "reserved can be anything - zero is always passed to the API.\n"
281 "value is a string that specifies the new value.\n"
282 "\n"
283 "This method can also set additional value and type information for the\n"
284 "specified key. The key identified by the key parameter must have been\n"
285 "opened with KEY_SET_VALUE access.\n"
286 "\n"
287 "To open the key, use the CreateKeyEx() or OpenKeyEx() methods.\n"
288 "\n"
289 "Value lengths are limited by available memory. Long values (more than\n"
290 "2048 bytes) should be stored as files with the filenames stored in \n"
291 "the configuration registry. This helps the registry perform efficiently.");
293 /* PyHKEY docstrings */
294 PyDoc_STRVAR(PyHKEY_doc,
295 "PyHKEY Object - A Python object, representing a win32 registry key.\n"
296 "\n"
297 "This object wraps a Windows HKEY object, automatically closing it when\n"
298 "the object is destroyed. To guarantee cleanup, you can call either\n"
299 "the Close() method on the PyHKEY, or the CloseKey() method.\n"
300 "\n"
301 "All functions which accept a handle object also accept an integer - \n"
302 "however, use of the handle object is encouraged.\n"
303 "\n"
304 "Functions:\n"
305 "Close() - Closes the underlying handle.\n"
306 "Detach() - Returns the integer Win32 handle, detaching it from the object\n"
307 "\n"
308 "Properties:\n"
309 "handle - The integer Win32 handle.\n"
310 "\n"
311 "Operations:\n"
312 "__nonzero__ - Handles with an open object return true, otherwise false.\n"
313 "__int__ - Converting a handle to an integer returns the Win32 handle.\n"
314 "__cmp__ - Handle objects are compared using the handle value.");
317 PyDoc_STRVAR(PyHKEY_Close_doc,
318 "key.Close() - Closes the underlying Windows handle.\n"
319 "\n"
320 "If the handle is already closed, no error is raised.");
322 PyDoc_STRVAR(PyHKEY_Detach_doc,
323 "int = key.Detach() - Detaches the Windows handle from the handle object.\n"
324 "\n"
325 "The result is the value of the handle before it is detached. If the\n"
326 "handle is already detached, this will return zero.\n"
327 "\n"
328 "After calling this function, the handle is effectively invalidated,\n"
329 "but the handle is not closed. You would call this function when you\n"
330 "need the underlying win32 handle to exist beyond the lifetime of the\n"
331 "handle object.\n"
332 "On 64 bit windows, the result of this function is a long integer");
335 /************************************************************************
337 The PyHKEY object definition
339 ************************************************************************/
340 typedef struct {
341 PyObject_VAR_HEAD
342 HKEY hkey;
343 } PyHKEYObject;
345 #define PyHKEY_Check(op) ((op)->ob_type == &PyHKEY_Type)
347 static char *failMsg = "bad operand type";
349 static PyObject *
350 PyHKEY_unaryFailureFunc(PyObject *ob)
352 PyErr_SetString(PyExc_TypeError, failMsg);
353 return NULL;
355 static PyObject *
356 PyHKEY_binaryFailureFunc(PyObject *ob1, PyObject *ob2)
358 PyErr_SetString(PyExc_TypeError, failMsg);
359 return NULL;
361 static PyObject *
362 PyHKEY_ternaryFailureFunc(PyObject *ob1, PyObject *ob2, PyObject *ob3)
364 PyErr_SetString(PyExc_TypeError, failMsg);
365 return NULL;
368 static void
369 PyHKEY_deallocFunc(PyObject *ob)
371 /* Can not call PyHKEY_Close, as the ob->tp_type
372 has already been cleared, thus causing the type
373 check to fail!
375 PyHKEYObject *obkey = (PyHKEYObject *)ob;
376 if (obkey->hkey)
377 RegCloseKey((HKEY)obkey->hkey);
378 PyObject_DEL(ob);
381 static int
382 PyHKEY_nonzeroFunc(PyObject *ob)
384 return ((PyHKEYObject *)ob)->hkey != 0;
387 static PyObject *
388 PyHKEY_intFunc(PyObject *ob)
390 PyHKEYObject *pyhkey = (PyHKEYObject *)ob;
391 return PyLong_FromVoidPtr(pyhkey->hkey);
394 static int
395 PyHKEY_printFunc(PyObject *ob, FILE *fp, int flags)
397 PyHKEYObject *pyhkey = (PyHKEYObject *)ob;
398 char resBuf[160];
399 wsprintf(resBuf, "<PyHKEY at %p (%p)>",
400 ob, pyhkey->hkey);
401 fputs(resBuf, fp);
402 return 0;
405 static PyObject *
406 PyHKEY_strFunc(PyObject *ob)
408 PyHKEYObject *pyhkey = (PyHKEYObject *)ob;
409 char resBuf[160];
410 wsprintf(resBuf, "<PyHKEY:%p>", pyhkey->hkey);
411 return PyString_FromString(resBuf);
414 static int
415 PyHKEY_compareFunc(PyObject *ob1, PyObject *ob2)
417 PyHKEYObject *pyhkey1 = (PyHKEYObject *)ob1;
418 PyHKEYObject *pyhkey2 = (PyHKEYObject *)ob2;
419 return pyhkey1 == pyhkey2 ? 0 :
420 (pyhkey1 < pyhkey2 ? -1 : 1);
423 static long
424 PyHKEY_hashFunc(PyObject *ob)
426 /* Just use the address.
427 XXX - should we use the handle value?
429 return _Py_HashPointer(ob);
433 static PyNumberMethods PyHKEY_NumberMethods =
435 PyHKEY_binaryFailureFunc, /* nb_add */
436 PyHKEY_binaryFailureFunc, /* nb_subtract */
437 PyHKEY_binaryFailureFunc, /* nb_multiply */
438 PyHKEY_binaryFailureFunc, /* nb_divide */
439 PyHKEY_binaryFailureFunc, /* nb_remainder */
440 PyHKEY_binaryFailureFunc, /* nb_divmod */
441 PyHKEY_ternaryFailureFunc, /* nb_power */
442 PyHKEY_unaryFailureFunc, /* nb_negative */
443 PyHKEY_unaryFailureFunc, /* nb_positive */
444 PyHKEY_unaryFailureFunc, /* nb_absolute */
445 PyHKEY_nonzeroFunc, /* nb_nonzero */
446 PyHKEY_unaryFailureFunc, /* nb_invert */
447 PyHKEY_binaryFailureFunc, /* nb_lshift */
448 PyHKEY_binaryFailureFunc, /* nb_rshift */
449 PyHKEY_binaryFailureFunc, /* nb_and */
450 PyHKEY_binaryFailureFunc, /* nb_xor */
451 PyHKEY_binaryFailureFunc, /* nb_or */
452 0, /* nb_coerce (allowed to be zero) */
453 PyHKEY_intFunc, /* nb_int */
454 PyHKEY_unaryFailureFunc, /* nb_long */
455 PyHKEY_unaryFailureFunc, /* nb_float */
456 PyHKEY_unaryFailureFunc, /* nb_oct */
457 PyHKEY_unaryFailureFunc, /* nb_hex */
461 /* fwd declare __getattr__ */
462 static PyObject *PyHKEY_getattr(PyObject *self, const char *name);
464 /* The type itself */
465 PyTypeObject PyHKEY_Type =
467 PyVarObject_HEAD_INIT(0, 0) /* fill in type at module init */
468 "PyHKEY",
469 sizeof(PyHKEYObject),
471 PyHKEY_deallocFunc, /* tp_dealloc */
472 PyHKEY_printFunc, /* tp_print */
473 PyHKEY_getattr, /* tp_getattr */
474 0, /* tp_setattr */
475 PyHKEY_compareFunc, /* tp_compare */
476 0, /* tp_repr */
477 &PyHKEY_NumberMethods, /* tp_as_number */
478 0, /* tp_as_sequence */
479 0, /* tp_as_mapping */
480 PyHKEY_hashFunc, /* tp_hash */
481 0, /* tp_call */
482 PyHKEY_strFunc, /* tp_str */
483 0, /* tp_getattro */
484 0, /* tp_setattro */
485 0, /* tp_as_buffer */
486 0, /* tp_flags */
487 PyHKEY_doc, /* tp_doc */
490 #define OFF(e) offsetof(PyHKEYObject, e)
492 static struct memberlist PyHKEY_memberlist[] = {
493 {"handle", T_INT, OFF(hkey)},
494 {NULL} /* Sentinel */
497 /************************************************************************
499 The PyHKEY object methods
501 ************************************************************************/
502 static PyObject *
503 PyHKEY_CloseMethod(PyObject *self, PyObject *args)
505 if (!PyArg_ParseTuple(args, ":Close"))
506 return NULL;
507 if (!PyHKEY_Close(self))
508 return NULL;
509 Py_INCREF(Py_None);
510 return Py_None;
513 static PyObject *
514 PyHKEY_DetachMethod(PyObject *self, PyObject *args)
516 void* ret;
517 PyHKEYObject *pThis = (PyHKEYObject *)self;
518 if (!PyArg_ParseTuple(args, ":Detach"))
519 return NULL;
520 ret = (void*)pThis->hkey;
521 pThis->hkey = 0;
522 return PyLong_FromVoidPtr(ret);
525 static PyObject *
526 PyHKEY_Enter(PyObject *self)
528 Py_XINCREF(self);
529 return self;
532 static PyObject *
533 PyHKEY_Exit(PyObject *self, PyObject *args)
535 if (!PyHKEY_Close(self))
536 return NULL;
537 Py_RETURN_NONE;
541 static struct PyMethodDef PyHKEY_methods[] = {
542 {"Close", PyHKEY_CloseMethod, METH_VARARGS, PyHKEY_Close_doc},
543 {"Detach", PyHKEY_DetachMethod, METH_VARARGS, PyHKEY_Detach_doc},
544 {"__enter__", (PyCFunction)PyHKEY_Enter, METH_NOARGS, NULL},
545 {"__exit__", PyHKEY_Exit, METH_VARARGS, NULL},
546 {NULL}
549 /*static*/ PyObject *
550 PyHKEY_getattr(PyObject *self, const char *name)
552 PyObject *res;
554 res = Py_FindMethod(PyHKEY_methods, self, name);
555 if (res != NULL)
556 return res;
557 PyErr_Clear();
558 if (strcmp(name, "handle") == 0)
559 return PyLong_FromVoidPtr(((PyHKEYObject *)self)->hkey);
560 return PyMember_Get((char *)self, PyHKEY_memberlist, name);
563 /************************************************************************
564 The public PyHKEY API (well, not public yet :-)
565 ************************************************************************/
566 PyObject *
567 PyHKEY_New(HKEY hInit)
569 PyHKEYObject *key = PyObject_NEW(PyHKEYObject, &PyHKEY_Type);
570 if (key)
571 key->hkey = hInit;
572 return (PyObject *)key;
575 BOOL
576 PyHKEY_Close(PyObject *ob_handle)
578 LONG rc;
579 PyHKEYObject *key;
581 if (!PyHKEY_Check(ob_handle)) {
582 PyErr_SetString(PyExc_TypeError, "bad operand type");
583 return FALSE;
585 key = (PyHKEYObject *)ob_handle;
586 rc = key->hkey ? RegCloseKey((HKEY)key->hkey) : ERROR_SUCCESS;
587 key->hkey = 0;
588 if (rc != ERROR_SUCCESS)
589 PyErr_SetFromWindowsErrWithFunction(rc, "RegCloseKey");
590 return rc == ERROR_SUCCESS;
593 BOOL
594 PyHKEY_AsHKEY(PyObject *ob, HKEY *pHANDLE, BOOL bNoneOK)
596 if (ob == Py_None) {
597 if (!bNoneOK) {
598 PyErr_SetString(
599 PyExc_TypeError,
600 "None is not a valid HKEY in this context");
601 return FALSE;
603 *pHANDLE = (HKEY)0;
605 else if (PyHKEY_Check(ob)) {
606 PyHKEYObject *pH = (PyHKEYObject *)ob;
607 *pHANDLE = pH->hkey;
609 else if (PyInt_Check(ob) || PyLong_Check(ob)) {
610 /* We also support integers */
611 PyErr_Clear();
612 *pHANDLE = (HKEY)PyLong_AsVoidPtr(ob);
613 if (PyErr_Occurred())
614 return FALSE;
616 else {
617 PyErr_SetString(
618 PyExc_TypeError,
619 "The object is not a PyHKEY object");
620 return FALSE;
622 return TRUE;
625 PyObject *
626 PyHKEY_FromHKEY(HKEY h)
628 PyHKEYObject *op;
630 /* Inline PyObject_New */
631 op = (PyHKEYObject *) PyObject_MALLOC(sizeof(PyHKEYObject));
632 if (op == NULL)
633 return PyErr_NoMemory();
634 PyObject_INIT(op, &PyHKEY_Type);
635 op->hkey = h;
636 return (PyObject *)op;
640 /************************************************************************
641 The module methods
642 ************************************************************************/
643 BOOL
644 PyWinObject_CloseHKEY(PyObject *obHandle)
646 BOOL ok;
647 if (PyHKEY_Check(obHandle)) {
648 ok = PyHKEY_Close(obHandle);
650 #if SIZEOF_LONG >= SIZEOF_HKEY
651 else if (PyInt_Check(obHandle)) {
652 long rc = RegCloseKey((HKEY)PyInt_AsLong(obHandle));
653 ok = (rc == ERROR_SUCCESS);
654 if (!ok)
655 PyErr_SetFromWindowsErrWithFunction(rc, "RegCloseKey");
657 #else
658 else if (PyLong_Check(obHandle)) {
659 long rc = RegCloseKey((HKEY)PyLong_AsVoidPtr(obHandle));
660 ok = (rc == ERROR_SUCCESS);
661 if (!ok)
662 PyErr_SetFromWindowsErrWithFunction(rc, "RegCloseKey");
664 #endif
665 else {
666 PyErr_SetString(
667 PyExc_TypeError,
668 "A handle must be a HKEY object or an integer");
669 return FALSE;
671 return ok;
676 Private Helper functions for the registry interfaces
678 ** Note that fixupMultiSZ and countString have both had changes
679 ** made to support "incorrect strings". The registry specification
680 ** calls for strings to be terminated with 2 null bytes. It seems
681 ** some commercial packages install strings which dont conform,
682 ** causing this code to fail - however, "regedit" etc still work
683 ** with these strings (ie only we dont!).
685 static void
686 fixupMultiSZ(char **str, char *data, int len)
688 char *P;
689 int i;
690 char *Q;
692 Q = data + len;
693 for (P = data, i = 0; P < Q && *P != '\0'; P++, i++) {
694 str[i] = P;
695 for(; *P != '\0'; P++)
700 static int
701 countStrings(char *data, int len)
703 int strings;
704 char *P;
705 char *Q = data + len;
707 for (P = data, strings = 0; P < Q && *P != '\0'; P++, strings++)
708 for (; P < Q && *P != '\0'; P++)
710 return strings;
713 /* Convert PyObject into Registry data.
714 Allocates space as needed. */
715 static BOOL
716 Py2Reg(PyObject *value, DWORD typ, BYTE **retDataBuf, DWORD *retDataSize)
718 int i,j;
719 switch (typ) {
720 case REG_DWORD:
721 if (value != Py_None && !PyInt_Check(value))
722 return FALSE;
723 *retDataBuf = (BYTE *)PyMem_NEW(DWORD, 1);
724 if (*retDataBuf==NULL){
725 PyErr_NoMemory();
726 return FALSE;
728 *retDataSize = sizeof(DWORD);
729 if (value == Py_None) {
730 DWORD zero = 0;
731 memcpy(*retDataBuf, &zero, sizeof(DWORD));
733 else
734 memcpy(*retDataBuf,
735 &PyInt_AS_LONG((PyIntObject *)value),
736 sizeof(DWORD));
737 break;
738 case REG_SZ:
739 case REG_EXPAND_SZ:
741 int need_decref = 0;
742 if (value == Py_None)
743 *retDataSize = 1;
744 else {
745 if (PyUnicode_Check(value)) {
746 value = PyUnicode_AsEncodedString(
747 value,
748 "mbcs",
749 NULL);
750 if (value==NULL)
751 return FALSE;
752 need_decref = 1;
754 if (!PyString_Check(value))
755 return FALSE;
756 *retDataSize = 1 + strlen(
757 PyString_AS_STRING(
758 (PyStringObject *)value));
760 *retDataBuf = (BYTE *)PyMem_NEW(DWORD, *retDataSize);
761 if (*retDataBuf==NULL){
762 PyErr_NoMemory();
763 return FALSE;
765 if (value == Py_None)
766 strcpy((char *)*retDataBuf, "");
767 else
768 strcpy((char *)*retDataBuf,
769 PyString_AS_STRING(
770 (PyStringObject *)value));
771 if (need_decref)
772 Py_DECREF(value);
773 break;
775 case REG_MULTI_SZ:
777 DWORD size = 0;
778 char *P;
779 PyObject **obs = NULL;
781 if (value == Py_None)
782 i = 0;
783 else {
784 if (!PyList_Check(value))
785 return FALSE;
786 i = PyList_Size(value);
788 obs = malloc(sizeof(PyObject *) * i);
789 memset(obs, 0, sizeof(PyObject *) * i);
790 for (j = 0; j < i; j++)
792 PyObject *t;
793 t = PyList_GET_ITEM(
794 (PyListObject *)value,j);
795 if (PyString_Check(t)) {
796 obs[j] = t;
797 Py_INCREF(t);
798 } else if (PyUnicode_Check(t)) {
799 obs[j] = PyUnicode_AsEncodedString(
801 "mbcs",
802 NULL);
803 if (obs[j]==NULL)
804 goto reg_multi_fail;
805 } else
806 goto reg_multi_fail;
807 size += 1 + strlen(
808 PyString_AS_STRING(
809 (PyStringObject *)obs[j]));
812 *retDataSize = size + 1;
813 *retDataBuf = (BYTE *)PyMem_NEW(char,
814 *retDataSize);
815 if (*retDataBuf==NULL){
816 PyErr_NoMemory();
817 goto reg_multi_fail;
819 P = (char *)*retDataBuf;
821 for (j = 0; j < i; j++)
823 PyObject *t;
824 t = obs[j];
825 strcpy(P,
826 PyString_AS_STRING(
827 (PyStringObject *)t));
828 P += 1 + strlen(
829 PyString_AS_STRING(
830 (PyStringObject *)t));
831 Py_DECREF(obs[j]);
833 /* And doubly-terminate the list... */
834 *P = '\0';
835 free(obs);
836 break;
837 reg_multi_fail:
838 if (obs) {
839 for (j = 0; j < i; j++)
840 Py_XDECREF(obs[j]);
842 free(obs);
844 return FALSE;
846 case REG_BINARY:
847 /* ALSO handle ALL unknown data types here. Even if we can't
848 support it natively, we should handle the bits. */
849 default:
850 if (value == Py_None)
851 *retDataSize = 0;
852 else {
853 void *src_buf;
854 PyBufferProcs *pb = value->ob_type->tp_as_buffer;
855 if (pb==NULL) {
856 PyErr_Format(PyExc_TypeError,
857 "Objects of type '%s' can not "
858 "be used as binary registry values",
859 value->ob_type->tp_name);
860 return FALSE;
862 *retDataSize = (*pb->bf_getreadbuffer)(value, 0, &src_buf);
863 *retDataBuf = (BYTE *)PyMem_NEW(char,
864 *retDataSize);
865 if (*retDataBuf==NULL){
866 PyErr_NoMemory();
867 return FALSE;
869 memcpy(*retDataBuf, src_buf, *retDataSize);
871 break;
873 return TRUE;
876 /* Convert Registry data into PyObject*/
877 static PyObject *
878 Reg2Py(char *retDataBuf, DWORD retDataSize, DWORD typ)
880 PyObject *obData;
882 switch (typ) {
883 case REG_DWORD:
884 if (retDataSize == 0)
885 obData = Py_BuildValue("i", 0);
886 else
887 obData = Py_BuildValue("i",
888 *(int *)retDataBuf);
889 break;
890 case REG_SZ:
891 case REG_EXPAND_SZ:
892 /* retDataBuf may or may not have a trailing NULL in
893 the buffer. */
894 if (retDataSize && retDataBuf[retDataSize-1] == '\0')
895 --retDataSize;
896 if (retDataSize ==0)
897 retDataBuf = "";
898 obData = PyUnicode_DecodeMBCS(retDataBuf,
899 retDataSize,
900 NULL);
901 break;
902 case REG_MULTI_SZ:
903 if (retDataSize == 0)
904 obData = PyList_New(0);
905 else
907 int index = 0;
908 int s = countStrings(retDataBuf, retDataSize);
909 char **str = (char **)malloc(sizeof(char *)*s);
910 if (str == NULL)
911 return PyErr_NoMemory();
913 fixupMultiSZ(str, retDataBuf, retDataSize);
914 obData = PyList_New(s);
915 if (obData == NULL)
916 return NULL;
917 for (index = 0; index < s; index++)
919 size_t len = _mbstrlen(str[index]);
920 if (len > INT_MAX) {
921 PyErr_SetString(PyExc_OverflowError,
922 "registry string is too long for a Python string");
923 Py_DECREF(obData);
924 return NULL;
926 PyList_SetItem(obData,
927 index,
928 PyUnicode_DecodeMBCS(
929 (const char *)str[index],
930 (int)len,
931 NULL)
934 free(str);
936 break;
938 case REG_BINARY:
939 /* ALSO handle ALL unknown data types here. Even if we can't
940 support it natively, we should handle the bits. */
941 default:
942 if (retDataSize == 0) {
943 Py_INCREF(Py_None);
944 obData = Py_None;
946 else
947 obData = Py_BuildValue("s#",
948 (char *)retDataBuf,
949 retDataSize);
950 break;
952 if (obData == NULL)
953 return NULL;
954 else
955 return obData;
958 /* The Python methods */
960 static PyObject *
961 PyCloseKey(PyObject *self, PyObject *args)
963 PyObject *obKey;
964 if (!PyArg_ParseTuple(args, "O:CloseKey", &obKey))
965 return NULL;
966 if (!PyHKEY_Close(obKey))
967 return NULL;
968 Py_INCREF(Py_None);
969 return Py_None;
972 static PyObject *
973 PyConnectRegistry(PyObject *self, PyObject *args)
975 HKEY hKey;
976 PyObject *obKey;
977 char *szCompName = NULL;
978 HKEY retKey;
979 long rc;
980 if (!PyArg_ParseTuple(args, "zO:ConnectRegistry", &szCompName, &obKey))
981 return NULL;
982 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
983 return NULL;
984 Py_BEGIN_ALLOW_THREADS
985 rc = RegConnectRegistry(szCompName, hKey, &retKey);
986 Py_END_ALLOW_THREADS
987 if (rc != ERROR_SUCCESS)
988 return PyErr_SetFromWindowsErrWithFunction(rc,
989 "ConnectRegistry");
990 return PyHKEY_FromHKEY(retKey);
993 static PyObject *
994 PyCreateKey(PyObject *self, PyObject *args)
996 HKEY hKey;
997 PyObject *obKey;
998 char *subKey;
999 HKEY retKey;
1000 long rc;
1001 if (!PyArg_ParseTuple(args, "Oz:CreateKey", &obKey, &subKey))
1002 return NULL;
1003 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1004 return NULL;
1005 rc = RegCreateKey(hKey, subKey, &retKey);
1006 if (rc != ERROR_SUCCESS)
1007 return PyErr_SetFromWindowsErrWithFunction(rc, "CreateKey");
1008 return PyHKEY_FromHKEY(retKey);
1011 static PyObject *
1012 PyDeleteKey(PyObject *self, PyObject *args)
1014 HKEY hKey;
1015 PyObject *obKey;
1016 char *subKey;
1017 long rc;
1018 if (!PyArg_ParseTuple(args, "Os:DeleteKey", &obKey, &subKey))
1019 return NULL;
1020 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1021 return NULL;
1022 rc = RegDeleteKey(hKey, subKey );
1023 if (rc != ERROR_SUCCESS)
1024 return PyErr_SetFromWindowsErrWithFunction(rc, "RegDeleteKey");
1025 Py_INCREF(Py_None);
1026 return Py_None;
1029 static PyObject *
1030 PyDeleteValue(PyObject *self, PyObject *args)
1032 HKEY hKey;
1033 PyObject *obKey;
1034 char *subKey;
1035 long rc;
1036 if (!PyArg_ParseTuple(args, "Oz:DeleteValue", &obKey, &subKey))
1037 return NULL;
1038 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1039 return NULL;
1040 Py_BEGIN_ALLOW_THREADS
1041 rc = RegDeleteValue(hKey, subKey);
1042 Py_END_ALLOW_THREADS
1043 if (rc !=ERROR_SUCCESS)
1044 return PyErr_SetFromWindowsErrWithFunction(rc,
1045 "RegDeleteValue");
1046 Py_INCREF(Py_None);
1047 return Py_None;
1050 static PyObject *
1051 PyEnumKey(PyObject *self, PyObject *args)
1053 HKEY hKey;
1054 PyObject *obKey;
1055 int index;
1056 long rc;
1057 PyObject *retStr;
1058 char tmpbuf[256]; /* max key name length is 255 */
1059 DWORD len = sizeof(tmpbuf); /* includes NULL terminator */
1061 if (!PyArg_ParseTuple(args, "Oi:EnumKey", &obKey, &index))
1062 return NULL;
1063 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1064 return NULL;
1066 Py_BEGIN_ALLOW_THREADS
1067 rc = RegEnumKeyEx(hKey, index, tmpbuf, &len, NULL, NULL, NULL, NULL);
1068 Py_END_ALLOW_THREADS
1069 if (rc != ERROR_SUCCESS)
1070 return PyErr_SetFromWindowsErrWithFunction(rc, "RegEnumKeyEx");
1072 retStr = PyString_FromStringAndSize(tmpbuf, len);
1073 return retStr; /* can be NULL */
1076 static PyObject *
1077 PyEnumValue(PyObject *self, PyObject *args)
1079 HKEY hKey;
1080 PyObject *obKey;
1081 int index;
1082 long rc;
1083 char *retValueBuf;
1084 char *retDataBuf;
1085 DWORD retValueSize;
1086 DWORD retDataSize;
1087 DWORD typ;
1088 PyObject *obData;
1089 PyObject *retVal;
1091 if (!PyArg_ParseTuple(args, "Oi:EnumValue", &obKey, &index))
1092 return NULL;
1093 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1094 return NULL;
1096 if ((rc = RegQueryInfoKey(hKey, NULL, NULL, NULL, NULL, NULL, NULL,
1097 NULL,
1098 &retValueSize, &retDataSize, NULL, NULL))
1099 != ERROR_SUCCESS)
1100 return PyErr_SetFromWindowsErrWithFunction(rc,
1101 "RegQueryInfoKey");
1102 ++retValueSize; /* include null terminators */
1103 ++retDataSize;
1104 retValueBuf = (char *)PyMem_Malloc(retValueSize);
1105 if (retValueBuf == NULL)
1106 return PyErr_NoMemory();
1107 retDataBuf = (char *)PyMem_Malloc(retDataSize);
1108 if (retDataBuf == NULL) {
1109 PyMem_Free(retValueBuf);
1110 return PyErr_NoMemory();
1113 Py_BEGIN_ALLOW_THREADS
1114 rc = RegEnumValue(hKey,
1115 index,
1116 retValueBuf,
1117 &retValueSize,
1118 NULL,
1119 &typ,
1120 (BYTE *)retDataBuf,
1121 &retDataSize);
1122 Py_END_ALLOW_THREADS
1124 if (rc != ERROR_SUCCESS) {
1125 retVal = PyErr_SetFromWindowsErrWithFunction(rc,
1126 "PyRegEnumValue");
1127 goto fail;
1129 obData = Reg2Py(retDataBuf, retDataSize, typ);
1130 if (obData == NULL) {
1131 retVal = NULL;
1132 goto fail;
1134 retVal = Py_BuildValue("sOi", retValueBuf, obData, typ);
1135 Py_DECREF(obData);
1136 fail:
1137 PyMem_Free(retValueBuf);
1138 PyMem_Free(retDataBuf);
1139 return retVal;
1142 static PyObject *
1143 PyExpandEnvironmentStrings(PyObject *self, PyObject *args)
1145 Py_UNICODE *retValue = NULL;
1146 Py_UNICODE *src;
1147 DWORD retValueSize;
1148 DWORD rc;
1149 PyObject *o;
1151 if (!PyArg_ParseTuple(args, "u:ExpandEnvironmentStrings", &src))
1152 return NULL;
1154 retValueSize = ExpandEnvironmentStringsW(src, retValue, 0);
1155 if (retValueSize == 0) {
1156 return PyErr_SetFromWindowsErrWithFunction(retValueSize,
1157 "ExpandEnvironmentStrings");
1159 retValue = (Py_UNICODE *)PyMem_Malloc(retValueSize * sizeof(Py_UNICODE));
1160 if (retValue == NULL) {
1161 return PyErr_NoMemory();
1164 rc = ExpandEnvironmentStringsW(src, retValue, retValueSize);
1165 if (rc == 0) {
1166 PyMem_Free(retValue);
1167 return PyErr_SetFromWindowsErrWithFunction(retValueSize,
1168 "ExpandEnvironmentStrings");
1170 o = PyUnicode_FromUnicode(retValue, wcslen(retValue));
1171 PyMem_Free(retValue);
1172 return o;
1175 static PyObject *
1176 PyFlushKey(PyObject *self, PyObject *args)
1178 HKEY hKey;
1179 PyObject *obKey;
1180 long rc;
1181 if (!PyArg_ParseTuple(args, "O:FlushKey", &obKey))
1182 return NULL;
1183 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1184 return NULL;
1185 Py_BEGIN_ALLOW_THREADS
1186 rc = RegFlushKey(hKey);
1187 Py_END_ALLOW_THREADS
1188 if (rc != ERROR_SUCCESS)
1189 return PyErr_SetFromWindowsErrWithFunction(rc, "RegFlushKey");
1190 Py_INCREF(Py_None);
1191 return Py_None;
1193 static PyObject *
1194 PyLoadKey(PyObject *self, PyObject *args)
1196 HKEY hKey;
1197 PyObject *obKey;
1198 char *subKey;
1199 char *fileName;
1201 long rc;
1202 if (!PyArg_ParseTuple(args, "Oss:LoadKey", &obKey, &subKey, &fileName))
1203 return NULL;
1204 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1205 return NULL;
1206 Py_BEGIN_ALLOW_THREADS
1207 rc = RegLoadKey(hKey, subKey, fileName );
1208 Py_END_ALLOW_THREADS
1209 if (rc != ERROR_SUCCESS)
1210 return PyErr_SetFromWindowsErrWithFunction(rc, "RegLoadKey");
1211 Py_INCREF(Py_None);
1212 return Py_None;
1215 static PyObject *
1216 PyOpenKey(PyObject *self, PyObject *args)
1218 HKEY hKey;
1219 PyObject *obKey;
1221 char *subKey;
1222 int res = 0;
1223 HKEY retKey;
1224 long rc;
1225 REGSAM sam = KEY_READ;
1226 if (!PyArg_ParseTuple(args, "Oz|ii:OpenKey", &obKey, &subKey,
1227 &res, &sam))
1228 return NULL;
1229 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1230 return NULL;
1232 Py_BEGIN_ALLOW_THREADS
1233 rc = RegOpenKeyEx(hKey, subKey, res, sam, &retKey);
1234 Py_END_ALLOW_THREADS
1235 if (rc != ERROR_SUCCESS)
1236 return PyErr_SetFromWindowsErrWithFunction(rc, "RegOpenKeyEx");
1237 return PyHKEY_FromHKEY(retKey);
1241 static PyObject *
1242 PyQueryInfoKey(PyObject *self, PyObject *args)
1244 HKEY hKey;
1245 PyObject *obKey;
1246 long rc;
1247 DWORD nSubKeys, nValues;
1248 FILETIME ft;
1249 LARGE_INTEGER li;
1250 PyObject *l;
1251 PyObject *ret;
1252 if (!PyArg_ParseTuple(args, "O:QueryInfoKey", &obKey))
1253 return NULL;
1254 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1255 return NULL;
1256 if ((rc = RegQueryInfoKey(hKey, NULL, NULL, 0, &nSubKeys, NULL, NULL,
1257 &nValues, NULL, NULL, NULL, &ft))
1258 != ERROR_SUCCESS)
1259 return PyErr_SetFromWindowsErrWithFunction(rc, "RegQueryInfoKey");
1260 li.LowPart = ft.dwLowDateTime;
1261 li.HighPart = ft.dwHighDateTime;
1262 l = PyLong_FromLongLong(li.QuadPart);
1263 if (l == NULL)
1264 return NULL;
1265 ret = Py_BuildValue("iiO", nSubKeys, nValues, l);
1266 Py_DECREF(l);
1267 return ret;
1270 static PyObject *
1271 PyQueryValue(PyObject *self, PyObject *args)
1273 HKEY hKey;
1274 PyObject *obKey;
1275 char *subKey;
1276 long rc;
1277 PyObject *retStr;
1278 char *retBuf;
1279 long bufSize = 0;
1281 if (!PyArg_ParseTuple(args, "Oz:QueryValue", &obKey, &subKey))
1282 return NULL;
1284 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1285 return NULL;
1286 if ((rc = RegQueryValue(hKey, subKey, NULL, &bufSize))
1287 != ERROR_SUCCESS)
1288 return PyErr_SetFromWindowsErrWithFunction(rc,
1289 "RegQueryValue");
1290 retStr = PyString_FromStringAndSize(NULL, bufSize);
1291 if (retStr == NULL)
1292 return NULL;
1293 retBuf = PyString_AS_STRING(retStr);
1294 if ((rc = RegQueryValue(hKey, subKey, retBuf, &bufSize))
1295 != ERROR_SUCCESS) {
1296 Py_DECREF(retStr);
1297 return PyErr_SetFromWindowsErrWithFunction(rc,
1298 "RegQueryValue");
1300 _PyString_Resize(&retStr, strlen(retBuf));
1301 return retStr;
1304 static PyObject *
1305 PyQueryValueEx(PyObject *self, PyObject *args)
1307 HKEY hKey;
1308 PyObject *obKey;
1309 char *valueName;
1311 long rc;
1312 char *retBuf;
1313 DWORD bufSize = 0;
1314 DWORD typ;
1315 PyObject *obData;
1316 PyObject *result;
1318 if (!PyArg_ParseTuple(args, "Oz:QueryValueEx", &obKey, &valueName))
1319 return NULL;
1321 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1322 return NULL;
1323 if ((rc = RegQueryValueEx(hKey, valueName,
1324 NULL, NULL, NULL,
1325 &bufSize))
1326 != ERROR_SUCCESS)
1327 return PyErr_SetFromWindowsErrWithFunction(rc,
1328 "RegQueryValueEx");
1329 retBuf = (char *)PyMem_Malloc(bufSize);
1330 if (retBuf == NULL)
1331 return PyErr_NoMemory();
1332 if ((rc = RegQueryValueEx(hKey, valueName, NULL,
1333 &typ, (BYTE *)retBuf, &bufSize))
1334 != ERROR_SUCCESS) {
1335 PyMem_Free(retBuf);
1336 return PyErr_SetFromWindowsErrWithFunction(rc,
1337 "RegQueryValueEx");
1339 obData = Reg2Py(retBuf, bufSize, typ);
1340 PyMem_Free((void *)retBuf);
1341 if (obData == NULL)
1342 return NULL;
1343 result = Py_BuildValue("Oi", obData, typ);
1344 Py_DECREF(obData);
1345 return result;
1349 static PyObject *
1350 PySaveKey(PyObject *self, PyObject *args)
1352 HKEY hKey;
1353 PyObject *obKey;
1354 char *fileName;
1355 LPSECURITY_ATTRIBUTES pSA = NULL;
1357 long rc;
1358 if (!PyArg_ParseTuple(args, "Os:SaveKey", &obKey, &fileName))
1359 return NULL;
1360 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1361 return NULL;
1362 /* One day we may get security into the core?
1363 if (!PyWinObject_AsSECURITY_ATTRIBUTES(obSA, &pSA, TRUE))
1364 return NULL;
1366 Py_BEGIN_ALLOW_THREADS
1367 rc = RegSaveKey(hKey, fileName, pSA );
1368 Py_END_ALLOW_THREADS
1369 if (rc != ERROR_SUCCESS)
1370 return PyErr_SetFromWindowsErrWithFunction(rc, "RegSaveKey");
1371 Py_INCREF(Py_None);
1372 return Py_None;
1375 static PyObject *
1376 PySetValue(PyObject *self, PyObject *args)
1378 HKEY hKey;
1379 PyObject *obKey;
1380 char *subKey;
1381 char *str;
1382 DWORD typ;
1383 DWORD len;
1384 long rc;
1385 PyObject *obStrVal;
1386 PyObject *obSubKey;
1387 if (!PyArg_ParseTuple(args, "OOiO:SetValue",
1388 &obKey,
1389 &obSubKey,
1390 &typ,
1391 &obStrVal))
1392 return NULL;
1393 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1394 return NULL;
1395 if (typ != REG_SZ) {
1396 PyErr_SetString(PyExc_TypeError,
1397 "Type must be _winreg.REG_SZ");
1398 return NULL;
1400 /* XXX - need Unicode support */
1401 str = PyString_AsString(obStrVal);
1402 if (str == NULL)
1403 return NULL;
1404 len = PyString_Size(obStrVal);
1405 if (obSubKey == Py_None)
1406 subKey = NULL;
1407 else {
1408 subKey = PyString_AsString(obSubKey);
1409 if (subKey == NULL)
1410 return NULL;
1412 Py_BEGIN_ALLOW_THREADS
1413 rc = RegSetValue(hKey, subKey, REG_SZ, str, len+1);
1414 Py_END_ALLOW_THREADS
1415 if (rc != ERROR_SUCCESS)
1416 return PyErr_SetFromWindowsErrWithFunction(rc, "RegSetValue");
1417 Py_INCREF(Py_None);
1418 return Py_None;
1421 static PyObject *
1422 PySetValueEx(PyObject *self, PyObject *args)
1424 HKEY hKey;
1425 PyObject *obKey;
1426 char *valueName;
1427 PyObject *obRes;
1428 PyObject *value;
1429 BYTE *data;
1430 DWORD len;
1431 DWORD typ;
1433 LONG rc;
1435 if (!PyArg_ParseTuple(args, "OzOiO:SetValueEx",
1436 &obKey,
1437 &valueName,
1438 &obRes,
1439 &typ,
1440 &value))
1441 return NULL;
1442 if (!PyHKEY_AsHKEY(obKey, &hKey, FALSE))
1443 return NULL;
1444 if (!Py2Reg(value, typ, &data, &len))
1446 if (!PyErr_Occurred())
1447 PyErr_SetString(PyExc_ValueError,
1448 "Could not convert the data to the specified type.");
1449 return NULL;
1451 Py_BEGIN_ALLOW_THREADS
1452 rc = RegSetValueEx(hKey, valueName, 0, typ, data, len);
1453 Py_END_ALLOW_THREADS
1454 PyMem_DEL(data);
1455 if (rc != ERROR_SUCCESS)
1456 return PyErr_SetFromWindowsErrWithFunction(rc,
1457 "RegSetValueEx");
1458 Py_INCREF(Py_None);
1459 return Py_None;
1462 static struct PyMethodDef winreg_methods[] = {
1463 {"CloseKey", PyCloseKey, METH_VARARGS, CloseKey_doc},
1464 {"ConnectRegistry", PyConnectRegistry, METH_VARARGS, ConnectRegistry_doc},
1465 {"CreateKey", PyCreateKey, METH_VARARGS, CreateKey_doc},
1466 {"DeleteKey", PyDeleteKey, METH_VARARGS, DeleteKey_doc},
1467 {"DeleteValue", PyDeleteValue, METH_VARARGS, DeleteValue_doc},
1468 {"EnumKey", PyEnumKey, METH_VARARGS, EnumKey_doc},
1469 {"EnumValue", PyEnumValue, METH_VARARGS, EnumValue_doc},
1470 {"ExpandEnvironmentStrings", PyExpandEnvironmentStrings, METH_VARARGS,
1471 ExpandEnvironmentStrings_doc },
1472 {"FlushKey", PyFlushKey, METH_VARARGS, FlushKey_doc},
1473 {"LoadKey", PyLoadKey, METH_VARARGS, LoadKey_doc},
1474 {"OpenKey", PyOpenKey, METH_VARARGS, OpenKey_doc},
1475 {"OpenKeyEx", PyOpenKey, METH_VARARGS, OpenKeyEx_doc},
1476 {"QueryValue", PyQueryValue, METH_VARARGS, QueryValue_doc},
1477 {"QueryValueEx", PyQueryValueEx, METH_VARARGS, QueryValueEx_doc},
1478 {"QueryInfoKey", PyQueryInfoKey, METH_VARARGS, QueryInfoKey_doc},
1479 {"SaveKey", PySaveKey, METH_VARARGS, SaveKey_doc},
1480 {"SetValue", PySetValue, METH_VARARGS, SetValue_doc},
1481 {"SetValueEx", PySetValueEx, METH_VARARGS, SetValueEx_doc},
1482 NULL,
1485 static void
1486 insint(PyObject * d, char * name, long value)
1488 PyObject *v = PyInt_FromLong(value);
1489 if (!v || PyDict_SetItemString(d, name, v))
1490 PyErr_Clear();
1491 Py_XDECREF(v);
1494 #define ADD_INT(val) insint(d, #val, val)
1496 static void
1497 inskey(PyObject * d, char * name, HKEY key)
1499 PyObject *v = PyLong_FromVoidPtr(key);
1500 if (!v || PyDict_SetItemString(d, name, v))
1501 PyErr_Clear();
1502 Py_XDECREF(v);
1505 #define ADD_KEY(val) inskey(d, #val, val)
1507 PyMODINIT_FUNC init_winreg(void)
1509 PyObject *m, *d;
1510 m = Py_InitModule3("_winreg", winreg_methods, module_doc);
1511 if (m == NULL)
1512 return;
1513 d = PyModule_GetDict(m);
1514 PyHKEY_Type.ob_type = &PyType_Type;
1515 PyHKEY_Type.tp_doc = PyHKEY_doc;
1516 Py_INCREF(&PyHKEY_Type);
1517 if (PyDict_SetItemString(d, "HKEYType",
1518 (PyObject *)&PyHKEY_Type) != 0)
1519 return;
1520 Py_INCREF(PyExc_WindowsError);
1521 if (PyDict_SetItemString(d, "error",
1522 PyExc_WindowsError) != 0)
1523 return;
1525 /* Add the relevant constants */
1526 ADD_KEY(HKEY_CLASSES_ROOT);
1527 ADD_KEY(HKEY_CURRENT_USER);
1528 ADD_KEY(HKEY_LOCAL_MACHINE);
1529 ADD_KEY(HKEY_USERS);
1530 ADD_KEY(HKEY_PERFORMANCE_DATA);
1531 #ifdef HKEY_CURRENT_CONFIG
1532 ADD_KEY(HKEY_CURRENT_CONFIG);
1533 #endif
1534 #ifdef HKEY_DYN_DATA
1535 ADD_KEY(HKEY_DYN_DATA);
1536 #endif
1537 ADD_INT(KEY_QUERY_VALUE);
1538 ADD_INT(KEY_SET_VALUE);
1539 ADD_INT(KEY_CREATE_SUB_KEY);
1540 ADD_INT(KEY_ENUMERATE_SUB_KEYS);
1541 ADD_INT(KEY_NOTIFY);
1542 ADD_INT(KEY_CREATE_LINK);
1543 ADD_INT(KEY_READ);
1544 ADD_INT(KEY_WRITE);
1545 ADD_INT(KEY_EXECUTE);
1546 ADD_INT(KEY_ALL_ACCESS);
1547 ADD_INT(REG_OPTION_RESERVED);
1548 ADD_INT(REG_OPTION_NON_VOLATILE);
1549 ADD_INT(REG_OPTION_VOLATILE);
1550 ADD_INT(REG_OPTION_CREATE_LINK);
1551 ADD_INT(REG_OPTION_BACKUP_RESTORE);
1552 ADD_INT(REG_OPTION_OPEN_LINK);
1553 ADD_INT(REG_LEGAL_OPTION);
1554 ADD_INT(REG_CREATED_NEW_KEY);
1555 ADD_INT(REG_OPENED_EXISTING_KEY);
1556 ADD_INT(REG_WHOLE_HIVE_VOLATILE);
1557 ADD_INT(REG_REFRESH_HIVE);
1558 ADD_INT(REG_NO_LAZY_FLUSH);
1559 ADD_INT(REG_NOTIFY_CHANGE_NAME);
1560 ADD_INT(REG_NOTIFY_CHANGE_ATTRIBUTES);
1561 ADD_INT(REG_NOTIFY_CHANGE_LAST_SET);
1562 ADD_INT(REG_NOTIFY_CHANGE_SECURITY);
1563 ADD_INT(REG_LEGAL_CHANGE_FILTER);
1564 ADD_INT(REG_NONE);
1565 ADD_INT(REG_SZ);
1566 ADD_INT(REG_EXPAND_SZ);
1567 ADD_INT(REG_BINARY);
1568 ADD_INT(REG_DWORD);
1569 ADD_INT(REG_DWORD_LITTLE_ENDIAN);
1570 ADD_INT(REG_DWORD_BIG_ENDIAN);
1571 ADD_INT(REG_LINK);
1572 ADD_INT(REG_MULTI_SZ);
1573 ADD_INT(REG_RESOURCE_LIST);
1574 ADD_INT(REG_FULL_RESOURCE_DESCRIPTOR);
1575 ADD_INT(REG_RESOURCE_REQUIREMENTS_LIST);