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1/** @file\r
2 Low-level kernel interface to the XenStore.\r
3\r
4 The XenStore interface is a simple storage system that is a means of\r
5 communicating state and configuration data between the Xen Domain 0\r
6 and the various guest domains. All configuration data other than\r
7 a small amount of essential information required during the early\r
8 boot process of launching a Xen aware guest, is managed using the\r
9 XenStore.\r
10\r
11 The XenStore is ASCII string based, and has a structure and semantics\r
12 similar to a filesystem. There are files and directories, the directories\r
8c0b0b34 13 able to contain files or other directories. The depth of the hierarchy\r
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14 is only limited by the XenStore's maximum path length.\r
15\r
16 The communication channel between the XenStore service and other\r
17 domains is via two, guest specific, ring buffers in a shared memory\r
18 area. One ring buffer is used for communicating in each direction.\r
19 The grant table references for this shared memory are given to the\r
20 guest either via the xen_start_info structure for a fully para-\r
21 virtualized guest, or via HVM hypercalls for a hardware virtualized\r
22 guest.\r
23\r
24 The XenStore communication relies on an event channel and thus\r
25 interrupts. But under OVMF this XenStore client will pull the\r
26 state of the event channel.\r
27\r
28 Several Xen services depend on the XenStore, most notably the\r
29 XenBus used to discover and manage Xen devices.\r
30\r
31 Copyright (C) 2005 Rusty Russell, IBM Corporation\r
32 Copyright (C) 2009,2010 Spectra Logic Corporation\r
33 Copyright (C) 2014, Citrix Ltd.\r
34\r
35 This file may be distributed separately from the Linux kernel, or\r
36 incorporated into other software packages, subject to the following license:\r
37\r
38 Permission is hereby granted, free of charge, to any person obtaining a copy\r
39 of this source file (the "Software"), to deal in the Software without\r
40 restriction, including without limitation the rights to use, copy, modify,\r
41 merge, publish, distribute, sublicense, and/or sell copies of the Software,\r
42 and to permit persons to whom the Software is furnished to do so, subject to\r
43 the following conditions:\r
44\r
45 The above copyright notice and this permission notice shall be included in\r
46 all copies or substantial portions of the Software.\r
47\r
48 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR\r
49 IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,\r
50 FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE\r
51 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER\r
52 LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING\r
53 FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS\r
54 IN THE SOFTWARE.\r
55**/\r
56\r
57#include "XenStore.h"\r
58\r
59#include <Library/PrintLib.h>\r
60\r
61#include <IndustryStandard/Xen/hvm/params.h>\r
62\r
a9090a94 63#include "EventChannel.h"\r
cd8ff8fd 64#include <Library/XenHypercallLib.h>\r
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65\r
66//\r
67// Private Data Structures\r
68//\r
69\r
70typedef struct {\r
71 CONST VOID *Data;\r
c47a842e 72 UINT32 Len;\r
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73} WRITE_REQUEST;\r
74\r
75/* Register callback to watch subtree (node) in the XenStore. */\r
76#define XENSTORE_WATCH_SIGNATURE SIGNATURE_32 ('X','S','w','a')\r
77struct _XENSTORE_WATCH\r
78{\r
79 UINT32 Signature;\r
80 LIST_ENTRY Link;\r
81\r
82 /* Path being watched. */\r
83 CHAR8 *Node;\r
84};\r
85\r
86#define XENSTORE_WATCH_FROM_LINK(l) \\r
87 CR (l, XENSTORE_WATCH, Link, XENSTORE_WATCH_SIGNATURE)\r
88\r
89\r
90/**\r
91 * Structure capturing messages received from the XenStore service.\r
92 */\r
93#define XENSTORE_MESSAGE_SIGNATURE SIGNATURE_32 ('X', 'S', 's', 'm')\r
94typedef struct {\r
95 UINT32 Signature;\r
96 LIST_ENTRY Link;\r
97\r
98 struct xsd_sockmsg Header;\r
99\r
100 union {\r
101 /* Queued replies. */\r
102 struct {\r
103 CHAR8 *Body;\r
104 } Reply;\r
105\r
106 /* Queued watch events. */\r
107 struct {\r
108 XENSTORE_WATCH *Handle;\r
109 CONST CHAR8 **Vector;\r
110 UINT32 VectorSize;\r
111 } Watch;\r
112 } u;\r
113} XENSTORE_MESSAGE;\r
114#define XENSTORE_MESSAGE_FROM_LINK(r) \\r
115 CR (r, XENSTORE_MESSAGE, Link, XENSTORE_MESSAGE_SIGNATURE)\r
116\r
117/**\r
118 * Container for all XenStore related state.\r
119 */\r
120typedef struct {\r
121 /**\r
122 * Pointer to shared memory communication structures allowing us\r
123 * to communicate with the XenStore service.\r
124 */\r
125 struct xenstore_domain_interface *XenStore;\r
126\r
127 XENBUS_DEVICE *Dev;\r
128\r
129 /**\r
130 * A list of replies to our requests.\r
131 *\r
132 * The reply list is filled by xs_rcv_thread(). It\r
133 * is consumed by the context that issued the request\r
134 * to which a reply is made. The requester blocks in\r
135 * XenStoreReadReply ().\r
136 *\r
137 * /note Only one requesting context can be active at a time.\r
138 */\r
139 LIST_ENTRY ReplyList;\r
140\r
141 /** Lock protecting the reply list. */\r
142 EFI_LOCK ReplyLock;\r
143\r
144 /**\r
145 * List of registered watches.\r
146 */\r
147 LIST_ENTRY RegisteredWatches;\r
148\r
149 /** Lock protecting the registered watches list. */\r
150 EFI_LOCK RegisteredWatchesLock;\r
151\r
152 /**\r
153 * List of pending watch callback events.\r
154 */\r
155 LIST_ENTRY WatchEvents;\r
156\r
157 /** Lock protecting the watch calback list. */\r
158 EFI_LOCK WatchEventsLock;\r
159\r
160 /**\r
161 * The event channel for communicating with the\r
162 * XenStore service.\r
163 */\r
164 evtchn_port_t EventChannel;\r
165\r
166 /** Handle for XenStore events. */\r
167 EFI_EVENT EventChannelEvent;\r
168} XENSTORE_PRIVATE;\r
169\r
170//\r
171// Global Data\r
172//\r
173static XENSTORE_PRIVATE xs;\r
174\r
175\r
176//\r
177// Private Utility Functions\r
178//\r
179\r
180/**\r
181 Count and optionally record pointers to a number of NUL terminated\r
182 strings in a buffer.\r
183\r
184 @param Strings A pointer to a contiguous buffer of NUL terminated strings.\r
185 @param Len The length of the buffer pointed to by strings.\r
186 @param Dst An array to store pointers to each string found in strings.\r
187\r
188 @return A count of the number of strings found.\r
189**/\r
190STATIC\r
191UINT32\r
192ExtractStrings (\r
193 IN CONST CHAR8 *Strings,\r
194 IN UINTN Len,\r
195 OUT CONST CHAR8 **Dst OPTIONAL\r
196 )\r
197{\r
198 UINT32 Num = 0;\r
199 CONST CHAR8 *Ptr;\r
200\r
201 for (Ptr = Strings; Ptr < Strings + Len; Ptr += AsciiStrSize (Ptr)) {\r
202 if (Dst != NULL) {\r
203 *Dst++ = Ptr;\r
204 }\r
205 Num++;\r
206 }\r
207\r
208 return Num;\r
209}\r
210\r
211/**\r
212 Convert a contiguous buffer containing a series of NUL terminated\r
213 strings into an array of pointers to strings.\r
214\r
215 The returned pointer references the array of string pointers which\r
216 is followed by the storage for the string data. It is the client's\r
217 responsibility to free this storage.\r
218\r
219 The storage addressed by Strings is free'd prior to Split returning.\r
220\r
221 @param Strings A pointer to a contiguous buffer of NUL terminated strings.\r
222 @param Len The length of the buffer pointed to by strings.\r
223 @param NumPtr The number of strings found and returned in the strings\r
224 array.\r
225\r
226 @return An array of pointers to the strings found in the input buffer.\r
227**/\r
228STATIC\r
229CONST CHAR8 **\r
230Split (\r
231 IN CHAR8 *Strings,\r
232 IN UINTN Len,\r
233 OUT UINT32 *NumPtr\r
234 )\r
235{\r
236 CONST CHAR8 **Dst;\r
237\r
238 ASSERT(NumPtr != NULL);\r
239 ASSERT(Strings != NULL);\r
240\r
241 /* Protect against unterminated buffers. */\r
242 if (Len > 0) {\r
243 Strings[Len - 1] = '\0';\r
244 }\r
245\r
246 /* Count the Strings. */\r
247 *NumPtr = ExtractStrings (Strings, Len, NULL);\r
248\r
249 /* Transfer to one big alloc for easy freeing by the caller. */\r
250 Dst = AllocatePool (*NumPtr * sizeof (CHAR8 *) + Len);\r
017a4866 251 CopyMem ((VOID*)&Dst[*NumPtr], Strings, Len);\r
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252 FreePool (Strings);\r
253\r
254 /* Extract pointers to newly allocated array. */\r
255 Strings = (CHAR8 *) &Dst[*NumPtr];\r
256 ExtractStrings (Strings, Len, Dst);\r
257\r
258 return (Dst);\r
259}\r
260\r
261/**\r
262 Convert from watch token (unique identifier) to the associated\r
263 internal tracking structure for this watch.\r
264\r
265 @param Tocken The unique identifier for the watch to find.\r
266\r
267 @return A pointer to the found watch structure or NULL.\r
268**/\r
269STATIC\r
270XENSTORE_WATCH *\r
271XenStoreFindWatch (\r
272 IN CONST CHAR8 *Token\r
273 )\r
274{\r
275 XENSTORE_WATCH *Watch, *WantedWatch;\r
276 LIST_ENTRY *Entry;\r
277\r
278 WantedWatch = (VOID *) AsciiStrHexToUintn (Token);\r
279\r
280 if (IsListEmpty (&xs.RegisteredWatches)) {\r
281 return NULL;\r
282 }\r
283 for (Entry = GetFirstNode (&xs.RegisteredWatches);\r
284 !IsNull (&xs.RegisteredWatches, Entry);\r
285 Entry = GetNextNode (&xs.RegisteredWatches, Entry)) {\r
286 Watch = XENSTORE_WATCH_FROM_LINK (Entry);\r
287 if (Watch == WantedWatch)\r
288 return Watch;\r
289 }\r
290\r
291 return NULL;\r
292}\r
293\r
294//\r
295// Public Utility Functions\r
296// API comments for these methods can be found in XenStore.h\r
297//\r
298\r
299CHAR8 *\r
300XenStoreJoin (\r
301 IN CONST CHAR8 *DirectoryPath,\r
302 IN CONST CHAR8 *Node\r
303 )\r
304{\r
305 CHAR8 *Buf;\r
2462bd3d 306 UINTN BufSize;\r
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307\r
308 /* +1 for '/' and +1 for '\0' */\r
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309 BufSize = AsciiStrLen (DirectoryPath) + AsciiStrLen (Node) + 2;\r
310 Buf = AllocatePool (BufSize);\r
311 ASSERT (Buf != NULL);\r
312\r
313 if (Node[0] == '\0') {\r
314 AsciiSPrint (Buf, BufSize, "%a", DirectoryPath);\r
315 } else {\r
316 AsciiSPrint (Buf, BufSize, "%a/%a", DirectoryPath, Node);\r
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317 }\r
318\r
319 return Buf;\r
320}\r
321\r
322//\r
323// Low Level Communication Management\r
324//\r
325\r
326/**\r
327 Verify that the indexes for a ring are valid.\r
328\r
329 The difference between the producer and consumer cannot\r
330 exceed the size of the ring.\r
331\r
332 @param Cons The consumer index for the ring to test.\r
333 @param Prod The producer index for the ring to test.\r
334\r
335 @retval TRUE If indexes are in range.\r
336 @retval FALSE If the indexes are out of range.\r
337**/\r
338STATIC\r
339BOOLEAN\r
340XenStoreCheckIndexes (\r
341 XENSTORE_RING_IDX Cons,\r
342 XENSTORE_RING_IDX Prod\r
343 )\r
344{\r
345 return ((Prod - Cons) <= XENSTORE_RING_SIZE);\r
346}\r
347\r
348/**\r
349 Return a pointer to, and the length of, the contiguous\r
350 free region available for output in a ring buffer.\r
351\r
352 @param Cons The consumer index for the ring.\r
353 @param Prod The producer index for the ring.\r
354 @param Buffer The base address of the ring's storage.\r
355 @param LenPtr The amount of contiguous storage available.\r
356\r
357 @return A pointer to the start location of the free region.\r
358**/\r
359STATIC\r
360VOID *\r
361XenStoreGetOutputChunk (\r
362 IN XENSTORE_RING_IDX Cons,\r
363 IN XENSTORE_RING_IDX Prod,\r
364 IN CHAR8 *Buffer,\r
365 OUT UINT32 *LenPtr\r
366 )\r
367{\r
368 UINT32 Len;\r
369 Len = XENSTORE_RING_SIZE - MASK_XENSTORE_IDX (Prod);\r
370 if ((XENSTORE_RING_SIZE - (Prod - Cons)) < Len) {\r
371 Len = XENSTORE_RING_SIZE - (Prod - Cons);\r
372 }\r
373 *LenPtr = Len;\r
374 return (Buffer + MASK_XENSTORE_IDX (Prod));\r
375}\r
376\r
377/**\r
378 Return a pointer to, and the length of, the contiguous\r
379 data available to read from a ring buffer.\r
380\r
381 @param Cons The consumer index for the ring.\r
382 @param Prod The producer index for the ring.\r
383 @param Buffer The base address of the ring's storage.\r
384 @param LenPtr The amount of contiguous data available to read.\r
385\r
386 @return A pointer to the start location of the available data.\r
387**/\r
388STATIC\r
389CONST VOID *\r
390XenStoreGetInputChunk (\r
391 IN XENSTORE_RING_IDX Cons,\r
392 IN XENSTORE_RING_IDX Prod,\r
393 IN CONST CHAR8 *Buffer,\r
394 OUT UINT32 *LenPtr\r
395 )\r
396{\r
397 UINT32 Len;\r
398\r
399 Len = XENSTORE_RING_SIZE - MASK_XENSTORE_IDX (Cons);\r
400 if ((Prod - Cons) < Len) {\r
401 Len = Prod - Cons;\r
402 }\r
403 *LenPtr = Len;\r
404 return (Buffer + MASK_XENSTORE_IDX (Cons));\r
405}\r
406\r
407/**\r
408 Wait for an event or timeout.\r
409\r
410 @param Event Event to wait for.\r
411 @param Timeout A timeout value in 100ns units.\r
412\r
413 @retval EFI_SUCCESS Event have been triggered or the current TPL is not\r
414 TPL_APPLICATION.\r
415 @retval EFI_TIMEOUT Timeout have expired.\r
416**/\r
417STATIC\r
418EFI_STATUS\r
419XenStoreWaitForEvent (\r
420 IN EFI_EVENT Event,\r
421 IN UINT64 Timeout\r
422 )\r
423{\r
424 UINTN Index;\r
425 EFI_STATUS Status;\r
426 EFI_EVENT TimerEvent;\r
427 EFI_EVENT WaitList[2];\r
428\r
429 gBS->CreateEvent (EVT_TIMER, 0, NULL, NULL, &TimerEvent);\r
430 gBS->SetTimer (TimerEvent, TimerRelative, Timeout);\r
431\r
432 WaitList[0] = xs.EventChannelEvent;\r
433 WaitList[1] = TimerEvent;\r
434 Status = gBS->WaitForEvent (2, WaitList, &Index);\r
435 ASSERT (Status != EFI_INVALID_PARAMETER);\r
436 gBS->CloseEvent (TimerEvent);\r
437 if (Status == EFI_UNSUPPORTED) {\r
438 return EFI_SUCCESS;\r
439 }\r
440 if (Index == 1) {\r
441 return EFI_TIMEOUT;\r
442 } else {\r
443 return EFI_SUCCESS;\r
444 }\r
445}\r
446\r
447/**\r
448 Transmit data to the XenStore service.\r
449\r
450 The buffer pointed to by DataPtr is at least Len bytes in length.\r
451\r
452 @param DataPtr A pointer to the contiguous data to send.\r
453 @param Len The amount of data to send.\r
454\r
455 @return On success 0, otherwise an errno value indicating the\r
456 cause of failure.\r
457**/\r
458STATIC\r
459XENSTORE_STATUS\r
460XenStoreWriteStore (\r
461 IN CONST VOID *DataPtr,\r
c47a842e 462 IN UINT32 Len\r
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463 )\r
464{\r
465 XENSTORE_RING_IDX Cons, Prod;\r
466 CONST CHAR8 *Data = (CONST CHAR8 *)DataPtr;\r
467\r
468 while (Len != 0) {\r
469 void *Dest;\r
470 UINT32 Available;\r
471\r
472 Cons = xs.XenStore->req_cons;\r
473 Prod = xs.XenStore->req_prod;\r
474 if ((Prod - Cons) == XENSTORE_RING_SIZE) {\r
475 /*\r
476 * Output ring is full. Wait for a ring event.\r
477 *\r
478 * Note that the events from both queues are combined, so being woken\r
479 * does not guarantee that data exist in the read ring.\r
480 */\r
481 EFI_STATUS Status;\r
482\r
483 Status = XenStoreWaitForEvent (xs.EventChannelEvent,\r
484 EFI_TIMER_PERIOD_SECONDS (1));\r
485 if (Status == EFI_TIMEOUT) {\r
486 DEBUG ((EFI_D_WARN, "XenStore Write, waiting for a ring event.\n"));\r
487 }\r
488 continue;\r
489 }\r
490\r
491 /* Verify queue sanity. */\r
492 if (!XenStoreCheckIndexes (Cons, Prod)) {\r
493 xs.XenStore->req_cons = xs.XenStore->req_prod = 0;\r
494 return XENSTORE_STATUS_EIO;\r
495 }\r
496\r
497 Dest = XenStoreGetOutputChunk (Cons, Prod, xs.XenStore->req, &Available);\r
498 if (Available > Len) {\r
499 Available = Len;\r
500 }\r
501\r
502 CopyMem (Dest, Data, Available);\r
503 Data += Available;\r
504 Len -= Available;\r
505\r
506 /*\r
507 * The store to the producer index, which indicates\r
508 * to the other side that new data has arrived, must\r
509 * be visible only after our copy of the data into the\r
510 * ring has completed.\r
511 */\r
512 MemoryFence ();\r
513 xs.XenStore->req_prod += Available;\r
514\r
515 /*\r
516 * The other side will see the change to req_prod at the time of the\r
517 * interrupt.\r
518 */\r
519 MemoryFence ();\r
520 XenEventChannelNotify (xs.Dev, xs.EventChannel);\r
521 }\r
522\r
523 return XENSTORE_STATUS_SUCCESS;\r
524}\r
525\r
526/**\r
527 Receive data from the XenStore service.\r
528\r
529 The buffer pointed to by DataPtr is at least Len bytes in length.\r
530\r
531 @param DataPtr A pointer to the contiguous buffer to receive the data.\r
532 @param Len The amount of data to receive.\r
533\r
534 @return On success 0, otherwise an errno value indicating the\r
535 cause of failure.\r
536**/\r
537STATIC\r
538XENSTORE_STATUS\r
539XenStoreReadStore (\r
540 OUT VOID *DataPtr,\r
c47a842e 541 IN UINT32 Len\r
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542 )\r
543{\r
544 XENSTORE_RING_IDX Cons, Prod;\r
545 CHAR8 *Data = (CHAR8 *) DataPtr;\r
546\r
547 while (Len != 0) {\r
548 UINT32 Available;\r
549 CONST CHAR8 *Src;\r
550\r
551 Cons = xs.XenStore->rsp_cons;\r
552 Prod = xs.XenStore->rsp_prod;\r
553 if (Cons == Prod) {\r
554 /*\r
555 * Nothing to read. Wait for a ring event.\r
556 *\r
557 * Note that the events from both queues are combined, so being woken\r
558 * does not guarantee that data exist in the read ring.\r
559 */\r
560 EFI_STATUS Status;\r
561\r
562 Status = XenStoreWaitForEvent (xs.EventChannelEvent,\r
563 EFI_TIMER_PERIOD_SECONDS (1));\r
564 if (Status == EFI_TIMEOUT) {\r
565 DEBUG ((EFI_D_WARN, "XenStore Read, waiting for a ring event.\n"));\r
566 }\r
567 continue;\r
568 }\r
569\r
570 /* Verify queue sanity. */\r
571 if (!XenStoreCheckIndexes (Cons, Prod)) {\r
572 xs.XenStore->rsp_cons = xs.XenStore->rsp_prod = 0;\r
573 return XENSTORE_STATUS_EIO;\r
574 }\r
575\r
576 Src = XenStoreGetInputChunk (Cons, Prod, xs.XenStore->rsp, &Available);\r
577 if (Available > Len) {\r
578 Available = Len;\r
579 }\r
580\r
581 /*\r
582 * Insure the data we read is related to the indexes\r
583 * we read above.\r
584 */\r
585 MemoryFence ();\r
586\r
587 CopyMem (Data, Src, Available);\r
588 Data += Available;\r
589 Len -= Available;\r
590\r
591 /*\r
592 * Insure that the producer of this ring does not see\r
593 * the ring space as free until after we have copied it\r
594 * out.\r
595 */\r
596 MemoryFence ();\r
597 xs.XenStore->rsp_cons += Available;\r
598\r
599 /*\r
600 * The producer will see the updated consumer index when the event is\r
601 * delivered.\r
602 */\r
603 MemoryFence ();\r
604 XenEventChannelNotify (xs.Dev, xs.EventChannel);\r
605 }\r
606\r
607 return XENSTORE_STATUS_SUCCESS;\r
608}\r
609\r
610//\r
611// Received Message Processing\r
612//\r
613\r
614/**\r
615 Block reading the next message from the XenStore service and\r
616 process the result.\r
617\r
618 @return XENSTORE_STATUS_SUCCESS on success. Otherwise an errno value\r
619 indicating the type of failure encountered.\r
620**/\r
621STATIC\r
622XENSTORE_STATUS\r
623XenStoreProcessMessage (\r
624 VOID\r
625 )\r
626{\r
627 XENSTORE_MESSAGE *Message;\r
628 CHAR8 *Body;\r
629 XENSTORE_STATUS Status;\r
630\r
631 Message = AllocateZeroPool (sizeof (XENSTORE_MESSAGE));\r
632 Message->Signature = XENSTORE_MESSAGE_SIGNATURE;\r
633 Status = XenStoreReadStore (&Message->Header, sizeof (Message->Header));\r
634 if (Status != XENSTORE_STATUS_SUCCESS) {\r
635 FreePool (Message);\r
636 DEBUG ((EFI_D_ERROR, "XenStore: Error read store (%d)\n", Status));\r
637 return Status;\r
638 }\r
639\r
640 Body = AllocatePool (Message->Header.len + 1);\r
641 Status = XenStoreReadStore (Body, Message->Header.len);\r
642 if (Status != XENSTORE_STATUS_SUCCESS) {\r
643 FreePool (Body);\r
644 FreePool (Message);\r
645 DEBUG ((EFI_D_ERROR, "XenStore: Error read store (%d)\n", Status));\r
646 return Status;\r
647 }\r
648 Body[Message->Header.len] = '\0';\r
649\r
650 if (Message->Header.type == XS_WATCH_EVENT) {\r
651 Message->u.Watch.Vector = Split(Body, Message->Header.len,\r
652 &Message->u.Watch.VectorSize);\r
653\r
654 EfiAcquireLock (&xs.RegisteredWatchesLock);\r
655 Message->u.Watch.Handle =\r
656 XenStoreFindWatch (Message->u.Watch.Vector[XS_WATCH_TOKEN]);\r
657 DEBUG ((EFI_D_INFO, "XenStore: Watch event %a\n",\r
658 Message->u.Watch.Vector[XS_WATCH_TOKEN]));\r
659 if (Message->u.Watch.Handle != NULL) {\r
660 EfiAcquireLock (&xs.WatchEventsLock);\r
661 InsertHeadList (&xs.WatchEvents, &Message->Link);\r
662 EfiReleaseLock (&xs.WatchEventsLock);\r
663 } else {\r
664 DEBUG ((EFI_D_WARN, "XenStore: Watch handle %a not found\n",\r
665 Message->u.Watch.Vector[XS_WATCH_TOKEN]));\r
017a4866 666 FreePool((VOID*)Message->u.Watch.Vector);\r
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667 FreePool(Message);\r
668 }\r
669 EfiReleaseLock (&xs.RegisteredWatchesLock);\r
670 } else {\r
671 Message->u.Reply.Body = Body;\r
672 EfiAcquireLock (&xs.ReplyLock);\r
673 InsertTailList (&xs.ReplyList, &Message->Link);\r
674 EfiReleaseLock (&xs.ReplyLock);\r
675 }\r
676\r
677 return XENSTORE_STATUS_SUCCESS;\r
678}\r
679\r
680//\r
681// XenStore Message Request/Reply Processing\r
682//\r
683\r
684/**\r
685 Convert a XenStore error string into an errno number.\r
686\r
687 Unknown error strings are converted to EINVAL.\r
688\r
689 @param errorstring The error string to convert.\r
690\r
691 @return The errno best matching the input string.\r
692\r
693**/\r
694typedef struct {\r
695 XENSTORE_STATUS Status;\r
696 CONST CHAR8 *ErrorStr;\r
697} XenStoreErrors;\r
698\r
699static XenStoreErrors gXenStoreErrors[] = {\r
700 { XENSTORE_STATUS_EINVAL, "EINVAL" },\r
701 { XENSTORE_STATUS_EACCES, "EACCES" },\r
702 { XENSTORE_STATUS_EEXIST, "EEXIST" },\r
703 { XENSTORE_STATUS_EISDIR, "EISDIR" },\r
704 { XENSTORE_STATUS_ENOENT, "ENOENT" },\r
705 { XENSTORE_STATUS_ENOMEM, "ENOMEM" },\r
706 { XENSTORE_STATUS_ENOSPC, "ENOSPC" },\r
707 { XENSTORE_STATUS_EIO, "EIO" },\r
708 { XENSTORE_STATUS_ENOTEMPTY, "ENOTEMPTY" },\r
709 { XENSTORE_STATUS_ENOSYS, "ENOSYS" },\r
710 { XENSTORE_STATUS_EROFS, "EROFS" },\r
711 { XENSTORE_STATUS_EBUSY, "EBUSY" },\r
712 { XENSTORE_STATUS_EAGAIN, "EAGAIN" },\r
713 { XENSTORE_STATUS_EISCONN, "EISCONN" },\r
714 { XENSTORE_STATUS_E2BIG, "E2BIG" }\r
715};\r
a9090a94
AP
716\r
717STATIC\r
718XENSTORE_STATUS\r
719XenStoreGetError (\r
720 CONST CHAR8 *ErrorStr\r
721 )\r
722{\r
723 UINT32 Index;\r
724\r
725 for (Index = 0; Index < ARRAY_SIZE(gXenStoreErrors); Index++) {\r
726 if (!AsciiStrCmp (ErrorStr, gXenStoreErrors[Index].ErrorStr)) {\r
727 return gXenStoreErrors[Index].Status;\r
728 }\r
729 }\r
730 DEBUG ((EFI_D_WARN, "XenStore gave unknown error %a\n", ErrorStr));\r
731 return XENSTORE_STATUS_EINVAL;\r
732}\r
733\r
734/**\r
735 Block waiting for a reply to a message request.\r
736\r
737 @param TypePtr The returned type of the reply.\r
738 @param LenPtr The returned body length of the reply.\r
739 @param Result The returned body of the reply.\r
740**/\r
741STATIC\r
742XENSTORE_STATUS\r
743XenStoreReadReply (\r
744 OUT enum xsd_sockmsg_type *TypePtr,\r
745 OUT UINT32 *LenPtr OPTIONAL,\r
746 OUT VOID **Result\r
747 )\r
748{\r
749 XENSTORE_MESSAGE *Message;\r
750 LIST_ENTRY *Entry;\r
751 CHAR8 *Body;\r
752\r
753 while (IsListEmpty (&xs.ReplyList)) {\r
754 XENSTORE_STATUS Status;\r
755 Status = XenStoreProcessMessage ();\r
756 if (Status != XENSTORE_STATUS_SUCCESS && Status != XENSTORE_STATUS_EAGAIN) {\r
757 DEBUG ((EFI_D_ERROR, "XenStore, error while reading the ring (%d).",\r
758 Status));\r
759 return Status;\r
760 }\r
761 }\r
762 EfiAcquireLock (&xs.ReplyLock);\r
763 Entry = GetFirstNode (&xs.ReplyList);\r
764 Message = XENSTORE_MESSAGE_FROM_LINK (Entry);\r
765 RemoveEntryList (Entry);\r
766 EfiReleaseLock (&xs.ReplyLock);\r
767\r
768 *TypePtr = Message->Header.type;\r
769 if (LenPtr != NULL) {\r
770 *LenPtr = Message->Header.len;\r
771 }\r
772 Body = Message->u.Reply.Body;\r
773\r
774 FreePool (Message);\r
775 *Result = Body;\r
776 return XENSTORE_STATUS_SUCCESS;\r
777}\r
778\r
779/**\r
780 Send a message with an optionally muti-part body to the XenStore service.\r
781\r
782 @param Transaction The transaction to use for this request.\r
783 @param RequestType The type of message to send.\r
784 @param WriteRequest Pointers to the body sections of the request.\r
785 @param NumRequests The number of body sections in the request.\r
786 @param LenPtr The returned length of the reply.\r
787 @param ResultPtr The returned body of the reply.\r
788\r
789 @return XENSTORE_STATUS_SUCCESS on success. Otherwise an errno indicating\r
790 the cause of failure.\r
791**/\r
792STATIC\r
793XENSTORE_STATUS\r
794XenStoreTalkv (\r
e26a83cd 795 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
796 IN enum xsd_sockmsg_type RequestType,\r
797 IN CONST WRITE_REQUEST *WriteRequest,\r
798 IN UINT32 NumRequests,\r
799 OUT UINT32 *LenPtr OPTIONAL,\r
800 OUT VOID **ResultPtr OPTIONAL\r
801 )\r
802{\r
803 struct xsd_sockmsg Message;\r
804 void *Return = NULL;\r
805 UINT32 Index;\r
806 XENSTORE_STATUS Status;\r
807\r
e26a83cd
AP
808 if (Transaction == XST_NIL) {\r
809 Message.tx_id = 0;\r
810 } else {\r
811 Message.tx_id = Transaction->Id;\r
812 }\r
a9090a94
AP
813 Message.req_id = 0;\r
814 Message.type = RequestType;\r
815 Message.len = 0;\r
816 for (Index = 0; Index < NumRequests; Index++) {\r
817 Message.len += WriteRequest[Index].Len;\r
818 }\r
819\r
820 Status = XenStoreWriteStore (&Message, sizeof (Message));\r
821 if (Status != XENSTORE_STATUS_SUCCESS) {\r
822 DEBUG ((EFI_D_ERROR, "XenStoreTalkv failed %d\n", Status));\r
823 goto Error;\r
824 }\r
825\r
826 for (Index = 0; Index < NumRequests; Index++) {\r
827 Status = XenStoreWriteStore (WriteRequest[Index].Data, WriteRequest[Index].Len);\r
828 if (Status != XENSTORE_STATUS_SUCCESS) {\r
829 DEBUG ((EFI_D_ERROR, "XenStoreTalkv failed %d\n", Status));\r
830 goto Error;\r
831 }\r
832 }\r
833\r
017a4866 834 Status = XenStoreReadReply ((enum xsd_sockmsg_type *)&Message.type, LenPtr, &Return);\r
a9090a94
AP
835\r
836Error:\r
837 if (Status != XENSTORE_STATUS_SUCCESS) {\r
838 return Status;\r
839 }\r
840\r
841 if (Message.type == XS_ERROR) {\r
842 Status = XenStoreGetError (Return);\r
843 FreePool (Return);\r
844 return Status;\r
845 }\r
846\r
847 /* Reply is either error or an echo of our request message type. */\r
017a4866 848 ASSERT ((enum xsd_sockmsg_type)Message.type == RequestType);\r
a9090a94
AP
849\r
850 if (ResultPtr) {\r
851 *ResultPtr = Return;\r
852 } else {\r
853 FreePool (Return);\r
854 }\r
855\r
856 return XENSTORE_STATUS_SUCCESS;\r
857}\r
858\r
859/**\r
860 Wrapper for XenStoreTalkv allowing easy transmission of a message with\r
861 a single, contiguous, message body.\r
862\r
863 The returned result is provided in malloced storage and thus must be free'd\r
864 by the caller.\r
865\r
866 @param Transaction The transaction to use for this request.\r
867 @param RequestType The type of message to send.\r
868 @param Body The body of the request.\r
869 @param LenPtr The returned length of the reply.\r
870 @param Result The returned body of the reply.\r
871\r
872 @return 0 on success. Otherwise an errno indicating\r
873 the cause of failure.\r
874**/\r
875STATIC\r
876XENSTORE_STATUS\r
877XenStoreSingle (\r
e26a83cd 878 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
879 IN enum xsd_sockmsg_type RequestType,\r
880 IN CONST CHAR8 *Body,\r
881 OUT UINT32 *LenPtr OPTIONAL,\r
882 OUT VOID **Result OPTIONAL\r
883 )\r
884{\r
885 WRITE_REQUEST WriteRequest;\r
886\r
887 WriteRequest.Data = (VOID *) Body;\r
c47a842e 888 WriteRequest.Len = (UINT32)AsciiStrSize (Body);\r
a9090a94
AP
889\r
890 return XenStoreTalkv (Transaction, RequestType, &WriteRequest, 1,\r
891 LenPtr, Result);\r
892}\r
893\r
894//\r
895// XenStore Watch Support\r
896//\r
897\r
898/**\r
899 Transmit a watch request to the XenStore service.\r
900\r
901 @param Path The path in the XenStore to watch.\r
902 @param Tocken A unique identifier for this watch.\r
903\r
904 @return XENSTORE_STATUS_SUCCESS on success. Otherwise an errno indicating the\r
905 cause of failure.\r
906**/\r
907STATIC\r
908XENSTORE_STATUS\r
909XenStoreWatch (\r
910 CONST CHAR8 *Path,\r
911 CONST CHAR8 *Token\r
912 )\r
913{\r
914 WRITE_REQUEST WriteRequest[2];\r
915\r
916 WriteRequest[0].Data = (VOID *) Path;\r
c47a842e 917 WriteRequest[0].Len = (UINT32)AsciiStrSize (Path);\r
a9090a94 918 WriteRequest[1].Data = (VOID *) Token;\r
c47a842e 919 WriteRequest[1].Len = (UINT32)AsciiStrSize (Token);\r
a9090a94
AP
920\r
921 return XenStoreTalkv (XST_NIL, XS_WATCH, WriteRequest, 2, NULL, NULL);\r
922}\r
923\r
924/**\r
925 Transmit an uwatch request to the XenStore service.\r
926\r
927 @param Path The path in the XenStore to watch.\r
928 @param Tocken A unique identifier for this watch.\r
929\r
930 @return XENSTORE_STATUS_SUCCESS on success. Otherwise an errno indicating\r
931 the cause of failure.\r
932**/\r
933STATIC\r
934XENSTORE_STATUS\r
935XenStoreUnwatch (\r
936 CONST CHAR8 *Path,\r
937 CONST CHAR8 *Token\r
938 )\r
939{\r
940 WRITE_REQUEST WriteRequest[2];\r
941\r
942 WriteRequest[0].Data = (VOID *) Path;\r
c47a842e 943 WriteRequest[0].Len = (UINT32)AsciiStrSize (Path);\r
a9090a94 944 WriteRequest[1].Data = (VOID *) Token;\r
c47a842e 945 WriteRequest[1].Len = (UINT32)AsciiStrSize (Token);\r
a9090a94
AP
946\r
947 return XenStoreTalkv (XST_NIL, XS_UNWATCH, WriteRequest, 2, NULL, NULL);\r
948}\r
949\r
c23c037f
AP
950STATIC\r
951XENSTORE_STATUS\r
952XenStoreWaitWatch (\r
953 VOID *Token\r
954 )\r
955{\r
956 XENSTORE_MESSAGE *Message;\r
957 LIST_ENTRY *Entry = NULL;\r
958 LIST_ENTRY *Last = NULL;\r
959 XENSTORE_STATUS Status;\r
960\r
961 while (TRUE) {\r
962 EfiAcquireLock (&xs.WatchEventsLock);\r
963 if (IsListEmpty (&xs.WatchEvents) ||\r
964 Last == GetFirstNode (&xs.WatchEvents)) {\r
965 EfiReleaseLock (&xs.WatchEventsLock);\r
966 Status = XenStoreProcessMessage ();\r
967 if (Status != XENSTORE_STATUS_SUCCESS && Status != XENSTORE_STATUS_EAGAIN) {\r
968 return Status;\r
969 }\r
970 continue;\r
971 }\r
972\r
973 for (Entry = GetFirstNode (&xs.WatchEvents);\r
974 Entry != Last && !IsNull (&xs.WatchEvents, Entry);\r
975 Entry = GetNextNode (&xs.WatchEvents, Entry)) {\r
976 Message = XENSTORE_MESSAGE_FROM_LINK (Entry);\r
977 if (Message->u.Watch.Handle == Token) {\r
978 RemoveEntryList (Entry);\r
979 EfiReleaseLock (&xs.WatchEventsLock);\r
017a4866 980 FreePool((VOID*)Message->u.Watch.Vector);\r
c23c037f
AP
981 FreePool(Message);\r
982 return XENSTORE_STATUS_SUCCESS;\r
983 }\r
984 }\r
985 Last = GetFirstNode (&xs.WatchEvents);\r
986 EfiReleaseLock (&xs.WatchEventsLock);\r
987 }\r
988}\r
989\r
a9090a94
AP
990VOID\r
991EFIAPI\r
992NotifyEventChannelCheckForEvent (\r
993 IN EFI_EVENT Event,\r
994 IN VOID *Context\r
995 )\r
996{\r
17247f53
LG
997 XENSTORE_PRIVATE *xsp;\r
998 xsp = (XENSTORE_PRIVATE *)Context;\r
999 if (TestAndClearBit (xsp->EventChannel, xsp->Dev->SharedInfo->evtchn_pending)) {\r
a9090a94
AP
1000 gBS->SignalEvent (Event);\r
1001 }\r
1002}\r
1003\r
1004/**\r
1005 Setup communication channels with the XenStore service.\r
1006\r
1007 @retval EFI_SUCCESS if everything went well.\r
1008**/\r
1009STATIC\r
1010EFI_STATUS\r
1011XenStoreInitComms (\r
17247f53 1012 XENSTORE_PRIVATE *xsp\r
a9090a94
AP
1013 )\r
1014{\r
1015 EFI_STATUS Status;\r
1016 EFI_EVENT TimerEvent;\r
17247f53 1017 struct xenstore_domain_interface *XenStore = xsp->XenStore;\r
a9090a94
AP
1018\r
1019 Status = gBS->CreateEvent (EVT_TIMER, 0, NULL, NULL, &TimerEvent);\r
1020 Status = gBS->SetTimer (TimerEvent, TimerRelative,\r
1021 EFI_TIMER_PERIOD_SECONDS (5));\r
1022 while (XenStore->rsp_prod != XenStore->rsp_cons) {\r
1023 Status = gBS->CheckEvent (TimerEvent);\r
1024 if (!EFI_ERROR (Status)) {\r
1025 DEBUG ((EFI_D_WARN, "XENSTORE response ring is not quiescent "\r
1026 "(%08x:%08x): fixing up\n",\r
1027 XenStore->rsp_cons, XenStore->rsp_prod));\r
1028 XenStore->rsp_cons = XenStore->rsp_prod;\r
1029 }\r
1030 }\r
1031 gBS->CloseEvent (TimerEvent);\r
1032\r
1033 Status = gBS->CreateEvent (EVT_NOTIFY_WAIT, TPL_NOTIFY,\r
17247f53
LG
1034 NotifyEventChannelCheckForEvent, xsp,\r
1035 &xsp->EventChannelEvent);\r
a9090a94
AP
1036 ASSERT_EFI_ERROR (Status);\r
1037\r
1038 return Status;\r
1039}\r
1040\r
1041/**\r
1042 Initialize XenStore.\r
1043\r
1044 @param Dev A XENBUS_DEVICE instance.\r
1045\r
1046 @retval EFI_SUCCESS if everything went well.\r
1047**/\r
1048EFI_STATUS\r
1049XenStoreInit (\r
1050 XENBUS_DEVICE *Dev\r
1051 )\r
1052{\r
1053 EFI_STATUS Status;\r
1054 /**\r
1055 * The HVM guest pseudo-physical frame number. This is Xen's mapping\r
1056 * of the true machine frame number into our "physical address space".\r
1057 */\r
1058 UINTN XenStoreGpfn;\r
1059\r
1060 xs.Dev = Dev;\r
1061\r
bbc3758a
AB
1062 xs.EventChannel = (evtchn_port_t)XenHypercallHvmGetParam (HVM_PARAM_STORE_EVTCHN);\r
1063 XenStoreGpfn = (UINTN)XenHypercallHvmGetParam (HVM_PARAM_STORE_PFN);\r
a9090a94
AP
1064 xs.XenStore = (VOID *) (XenStoreGpfn << EFI_PAGE_SHIFT);\r
1065 DEBUG ((EFI_D_INFO, "XenBusInit: XenBus rings @%p, event channel %x\n",\r
1066 xs.XenStore, xs.EventChannel));\r
1067\r
1068 InitializeListHead (&xs.ReplyList);\r
1069 InitializeListHead (&xs.WatchEvents);\r
1070 InitializeListHead (&xs.RegisteredWatches);\r
1071\r
1072 EfiInitializeLock (&xs.ReplyLock, TPL_NOTIFY);\r
1073 EfiInitializeLock (&xs.RegisteredWatchesLock, TPL_NOTIFY);\r
1074 EfiInitializeLock (&xs.WatchEventsLock, TPL_NOTIFY);\r
1075\r
1076 /* Initialize the shared memory rings to talk to xenstored */\r
1077 Status = XenStoreInitComms (&xs);\r
1078 if (EFI_ERROR (Status)) {\r
1079 return Status;\r
1080 }\r
1081\r
1082 return Status;\r
1083}\r
1084\r
1085VOID\r
1086XenStoreDeinit (\r
1087 IN XENBUS_DEVICE *Dev\r
1088 )\r
1089{\r
1090 //\r
1091 // Emptying the list RegisteredWatches, but this list should already be\r
1092 // empty. Every driver that is using Watches should unregister them when\r
1093 // it is stopped.\r
1094 //\r
1095 if (!IsListEmpty (&xs.RegisteredWatches)) {\r
1096 XENSTORE_WATCH *Watch;\r
1097 LIST_ENTRY *Entry;\r
1098 DEBUG ((EFI_D_WARN, "XenStore: RegisteredWatches is not empty, cleaning up..."));\r
1099 Entry = GetFirstNode (&xs.RegisteredWatches);\r
1100 while (!IsNull (&xs.RegisteredWatches, Entry)) {\r
1101 Watch = XENSTORE_WATCH_FROM_LINK (Entry);\r
1102 Entry = GetNextNode (&xs.RegisteredWatches, Entry);\r
1103\r
1104 XenStoreUnregisterWatch (Watch);\r
1105 }\r
1106 }\r
1107\r
1108 //\r
1109 // Emptying the list WatchEvents, but this list should already be empty after\r
1110 // having cleanup the list RegisteredWatches.\r
1111 //\r
1112 if (!IsListEmpty (&xs.WatchEvents)) {\r
1113 LIST_ENTRY *Entry;\r
1114 DEBUG ((EFI_D_WARN, "XenStore: WatchEvents is not empty, cleaning up..."));\r
1115 Entry = GetFirstNode (&xs.WatchEvents);\r
1116 while (!IsNull (&xs.WatchEvents, Entry)) {\r
1117 XENSTORE_MESSAGE *Message = XENSTORE_MESSAGE_FROM_LINK (Entry);\r
1118 Entry = GetNextNode (&xs.WatchEvents, Entry);\r
1119 RemoveEntryList (&Message->Link);\r
017a4866 1120 FreePool ((VOID*)Message->u.Watch.Vector);\r
a9090a94
AP
1121 FreePool (Message);\r
1122 }\r
1123 }\r
1124\r
1125 if (!IsListEmpty (&xs.ReplyList)) {\r
1126 XENSTORE_MESSAGE *Message;\r
1127 LIST_ENTRY *Entry;\r
1128 Entry = GetFirstNode (&xs.ReplyList);\r
1129 while (!IsNull (&xs.ReplyList, Entry)) {\r
1130 Message = XENSTORE_MESSAGE_FROM_LINK (Entry);\r
1131 Entry = GetNextNode (&xs.ReplyList, Entry);\r
1132 RemoveEntryList (&Message->Link);\r
1133 FreePool (Message->u.Reply.Body);\r
1134 FreePool (Message);\r
1135 }\r
1136 }\r
1137\r
1138 gBS->CloseEvent (xs.EventChannelEvent);\r
1139\r
1140 if (xs.XenStore->server_features & XENSTORE_SERVER_FEATURE_RECONNECTION) {\r
1141 xs.XenStore->connection = XENSTORE_RECONNECT;\r
1142 XenEventChannelNotify (xs.Dev, xs.EventChannel);\r
1143 while (*(volatile UINT32*)&xs.XenStore->connection == XENSTORE_RECONNECT) {\r
1144 XenStoreWaitForEvent (xs.EventChannelEvent, EFI_TIMER_PERIOD_MILLISECONDS (100));\r
1145 }\r
1146 } else {\r
1147 /* If the backend reads the state while we're erasing it then the\r
1148 * ring state will become corrupted, preventing guest frontends from\r
1149 * connecting. This is rare. To help diagnose the failure, we fill\r
1150 * the ring with XS_INVALID packets. */\r
1151 SetMem (xs.XenStore->req, XENSTORE_RING_SIZE, 0xff);\r
1152 SetMem (xs.XenStore->rsp, XENSTORE_RING_SIZE, 0xff);\r
1153 xs.XenStore->req_cons = xs.XenStore->req_prod = 0;\r
1154 xs.XenStore->rsp_cons = xs.XenStore->rsp_prod = 0;\r
1155 }\r
1156 xs.XenStore = NULL;\r
1157}\r
1158\r
1159//\r
1160// Public API\r
1161// API comments for these methods can be found in XenStore.h\r
1162//\r
1163\r
1164XENSTORE_STATUS\r
1165XenStoreListDirectory (\r
e26a83cd 1166 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1167 IN CONST CHAR8 *DirectoryPath,\r
1168 IN CONST CHAR8 *Node,\r
1169 OUT UINT32 *DirectoryCountPtr,\r
1170 OUT CONST CHAR8 ***DirectoryListPtr\r
1171 )\r
1172{\r
1173 CHAR8 *Path;\r
1174 CHAR8 *TempStr;\r
1175 UINT32 Len = 0;\r
1176 XENSTORE_STATUS Status;\r
1177\r
1178 Path = XenStoreJoin (DirectoryPath, Node);\r
1179 Status = XenStoreSingle (Transaction, XS_DIRECTORY, Path, &Len,\r
1180 (VOID **) &TempStr);\r
1181 FreePool (Path);\r
1182 if (Status != XENSTORE_STATUS_SUCCESS) {\r
1183 return Status;\r
1184 }\r
1185\r
1186 *DirectoryListPtr = Split (TempStr, Len, DirectoryCountPtr);\r
1187\r
1188 return XENSTORE_STATUS_SUCCESS;\r
1189}\r
1190\r
1191BOOLEAN\r
1192XenStorePathExists (\r
e26a83cd 1193 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1194 IN CONST CHAR8 *Directory,\r
1195 IN CONST CHAR8 *Node\r
1196 )\r
1197{\r
1198 CONST CHAR8 **TempStr;\r
1199 XENSTORE_STATUS Status;\r
1200 UINT32 TempNum;\r
1201\r
1202 Status = XenStoreListDirectory (Transaction, Directory, Node,\r
1203 &TempNum, &TempStr);\r
1204 if (Status != XENSTORE_STATUS_SUCCESS) {\r
1205 return FALSE;\r
1206 }\r
017a4866 1207 FreePool ((VOID*)TempStr);\r
a9090a94
AP
1208 return TRUE;\r
1209}\r
1210\r
1211XENSTORE_STATUS\r
1212XenStoreRead (\r
e26a83cd 1213 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1214 IN CONST CHAR8 *DirectoryPath,\r
1215 IN CONST CHAR8 *Node,\r
1216 OUT UINT32 *LenPtr OPTIONAL,\r
1217 OUT VOID **Result\r
1218 )\r
1219{\r
1220 CHAR8 *Path;\r
1221 VOID *Value;\r
1222 XENSTORE_STATUS Status;\r
1223\r
1224 Path = XenStoreJoin (DirectoryPath, Node);\r
1225 Status = XenStoreSingle (Transaction, XS_READ, Path, LenPtr, &Value);\r
1226 FreePool (Path);\r
1227 if (Status != XENSTORE_STATUS_SUCCESS) {\r
1228 return Status;\r
1229 }\r
1230\r
1231 *Result = Value;\r
1232 return XENSTORE_STATUS_SUCCESS;\r
1233}\r
1234\r
1235XENSTORE_STATUS\r
1236XenStoreWrite (\r
e26a83cd 1237 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1238 IN CONST CHAR8 *DirectoryPath,\r
1239 IN CONST CHAR8 *Node,\r
1240 IN CONST CHAR8 *Str\r
1241 )\r
1242{\r
1243 CHAR8 *Path;\r
1244 WRITE_REQUEST WriteRequest[2];\r
1245 XENSTORE_STATUS Status;\r
1246\r
1247 Path = XenStoreJoin (DirectoryPath, Node);\r
1248\r
1249 WriteRequest[0].Data = (VOID *) Path;\r
c47a842e 1250 WriteRequest[0].Len = (UINT32)AsciiStrSize (Path);\r
a9090a94 1251 WriteRequest[1].Data = (VOID *) Str;\r
c47a842e 1252 WriteRequest[1].Len = (UINT32)AsciiStrLen (Str);\r
a9090a94
AP
1253\r
1254 Status = XenStoreTalkv (Transaction, XS_WRITE, WriteRequest, 2, NULL, NULL);\r
1255 FreePool (Path);\r
1256\r
1257 return Status;\r
1258}\r
1259\r
1260XENSTORE_STATUS\r
1261XenStoreRemove (\r
e26a83cd 1262 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1263 IN CONST CHAR8 *DirectoryPath,\r
1264 IN CONST CHAR8 *Node\r
1265 )\r
1266{\r
1267 CHAR8 *Path;\r
1268 XENSTORE_STATUS Status;\r
1269\r
1270 Path = XenStoreJoin (DirectoryPath, Node);\r
1271 Status = XenStoreSingle (Transaction, XS_RM, Path, NULL, NULL);\r
1272 FreePool (Path);\r
1273\r
1274 return Status;\r
1275}\r
1276\r
1277XENSTORE_STATUS\r
1278XenStoreTransactionStart (\r
1279 OUT XENSTORE_TRANSACTION *Transaction\r
1280 )\r
1281{\r
1282 CHAR8 *IdStr;\r
1283 XENSTORE_STATUS Status;\r
1284\r
1285 Status = XenStoreSingle (XST_NIL, XS_TRANSACTION_START, "", NULL,\r
1286 (VOID **) &IdStr);\r
1287 if (Status == XENSTORE_STATUS_SUCCESS) {\r
017a4866 1288 Transaction->Id = (UINT32)AsciiStrDecimalToUintn (IdStr);\r
a9090a94
AP
1289 FreePool (IdStr);\r
1290 }\r
1291\r
1292 return Status;\r
1293}\r
1294\r
1295XENSTORE_STATUS\r
1296XenStoreTransactionEnd (\r
e26a83cd 1297 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1298 IN BOOLEAN Abort\r
1299 )\r
1300{\r
1301 CHAR8 AbortStr[2];\r
1302\r
02c6760c
LE
1303 AbortStr[0] = Abort ? 'F' : 'T';\r
1304 AbortStr[1] = '\0';\r
a9090a94
AP
1305\r
1306 return XenStoreSingle (Transaction, XS_TRANSACTION_END, AbortStr, NULL, NULL);\r
1307}\r
1308\r
1309XENSTORE_STATUS\r
1310XenStoreVSPrint (\r
e26a83cd 1311 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1312 IN CONST CHAR8 *DirectoryPath,\r
1313 IN CONST CHAR8 *Node,\r
1314 IN CONST CHAR8 *FormatString,\r
1315 IN VA_LIST Marker\r
1316 )\r
1317{\r
1318 CHAR8 *Buf;\r
1319 XENSTORE_STATUS Status;\r
1320 UINTN BufSize;\r
1250f370 1321 VA_LIST Marker2;\r
a9090a94 1322\r
1250f370
Z
1323 VA_COPY (Marker2, Marker);\r
1324 BufSize = SPrintLengthAsciiFormat (FormatString, Marker2) + 1;\r
1325 VA_END (Marker2);\r
a9090a94
AP
1326 Buf = AllocateZeroPool (BufSize);\r
1327 AsciiVSPrint (Buf, BufSize, FormatString, Marker);\r
1328 Status = XenStoreWrite (Transaction, DirectoryPath, Node, Buf);\r
1329 FreePool (Buf);\r
1330\r
1331 return Status;\r
1332}\r
1333\r
1334XENSTORE_STATUS\r
1335EFIAPI\r
1336XenStoreSPrint (\r
e26a83cd 1337 IN CONST XENSTORE_TRANSACTION *Transaction,\r
a9090a94
AP
1338 IN CONST CHAR8 *DirectoryPath,\r
1339 IN CONST CHAR8 *Node,\r
1340 IN CONST CHAR8 *FormatString,\r
1341 ...\r
1342 )\r
1343{\r
1344 VA_LIST Marker;\r
1345 XENSTORE_STATUS Status;\r
1346\r
1347 VA_START (Marker, FormatString);\r
1348 Status = XenStoreVSPrint (Transaction, DirectoryPath, Node, FormatString, Marker);\r
1349 VA_END (Marker);\r
1350\r
1351 return Status;\r
1352}\r
1353\r
1354XENSTORE_STATUS\r
1355XenStoreRegisterWatch (\r
1356 IN CONST CHAR8 *DirectoryPath,\r
1357 IN CONST CHAR8 *Node,\r
1358 OUT XENSTORE_WATCH **WatchPtr\r
1359 )\r
1360{\r
1361 /* Pointer in ascii is the token. */\r
1362 CHAR8 Token[sizeof (XENSTORE_WATCH) * 2 + 1];\r
1363 XENSTORE_STATUS Status;\r
1364 XENSTORE_WATCH *Watch;\r
1365\r
1366 Watch = AllocateZeroPool (sizeof (XENSTORE_WATCH));\r
1367 Watch->Signature = XENSTORE_WATCH_SIGNATURE;\r
1368 Watch->Node = XenStoreJoin (DirectoryPath, Node);\r
1369\r
1370 EfiAcquireLock (&xs.RegisteredWatchesLock);\r
1371 InsertTailList (&xs.RegisteredWatches, &Watch->Link);\r
1372 EfiReleaseLock (&xs.RegisteredWatchesLock);\r
1373\r
1374 AsciiSPrint (Token, sizeof (Token), "%p", (VOID*) Watch);\r
1375 Status = XenStoreWatch (Watch->Node, Token);\r
1376\r
1377 /* Ignore errors due to multiple registration. */\r
1378 if (Status == XENSTORE_STATUS_EEXIST) {\r
1379 Status = XENSTORE_STATUS_SUCCESS;\r
1380 }\r
1381\r
1382 if (Status == XENSTORE_STATUS_SUCCESS) {\r
1383 *WatchPtr = Watch;\r
1384 } else {\r
1385 EfiAcquireLock (&xs.RegisteredWatchesLock);\r
1386 RemoveEntryList (&Watch->Link);\r
1387 EfiReleaseLock (&xs.RegisteredWatchesLock);\r
1388 FreePool (Watch->Node);\r
1389 FreePool (Watch);\r
1390 }\r
1391\r
1392 return Status;\r
1393}\r
1394\r
1395VOID\r
1396XenStoreUnregisterWatch (\r
1397 IN XENSTORE_WATCH *Watch\r
1398 )\r
1399{\r
1400 CHAR8 Token[sizeof (Watch) * 2 + 1];\r
1401 LIST_ENTRY *Entry;\r
1402\r
1403 ASSERT (Watch->Signature == XENSTORE_WATCH_SIGNATURE);\r
1404\r
1405 AsciiSPrint (Token, sizeof (Token), "%p", (VOID *) Watch);\r
1406 if (XenStoreFindWatch (Token) == NULL) {\r
1407 return;\r
1408 }\r
1409\r
1410 EfiAcquireLock (&xs.RegisteredWatchesLock);\r
1411 RemoveEntryList (&Watch->Link);\r
1412 EfiReleaseLock (&xs.RegisteredWatchesLock);\r
1413\r
1414 XenStoreUnwatch (Watch->Node, Token);\r
1415\r
1416 /* Cancel pending watch events. */\r
1417 EfiAcquireLock (&xs.WatchEventsLock);\r
1418 Entry = GetFirstNode (&xs.WatchEvents);\r
1419 while (!IsNull (&xs.WatchEvents, Entry)) {\r
1420 XENSTORE_MESSAGE *Message = XENSTORE_MESSAGE_FROM_LINK (Entry);\r
1421 Entry = GetNextNode (&xs.WatchEvents, Entry);\r
1422 if (Message->u.Watch.Handle == Watch) {\r
1423 RemoveEntryList (&Message->Link);\r
017a4866 1424 FreePool ((VOID*)Message->u.Watch.Vector);\r
a9090a94
AP
1425 FreePool (Message);\r
1426 }\r
1427 }\r
1428 EfiReleaseLock (&xs.WatchEventsLock);\r
1429\r
1430 FreePool (Watch->Node);\r
1431 FreePool (Watch);\r
1432}\r
c23c037f
AP
1433\r
1434\r
1435//\r
1436// XENBUS protocol\r
1437//\r
1438\r
1439XENSTORE_STATUS\r
1440EFIAPI\r
1441XenBusWaitForWatch (\r
1442 IN XENBUS_PROTOCOL *This,\r
1443 IN VOID *Token\r
1444 )\r
1445{\r
1446 return XenStoreWaitWatch (Token);\r
1447}\r
1448\r
1449XENSTORE_STATUS\r
1450EFIAPI\r
1451XenBusXenStoreRead (\r
1452 IN XENBUS_PROTOCOL *This,\r
e26a83cd 1453 IN CONST XENSTORE_TRANSACTION *Transaction,\r
c23c037f
AP
1454 IN CONST CHAR8 *Node,\r
1455 OUT VOID **Value\r
1456 )\r
1457{\r
1458 return XenStoreRead (Transaction, This->Node, Node, NULL, Value);\r
1459}\r
1460\r
1461XENSTORE_STATUS\r
1462EFIAPI\r
1463XenBusXenStoreBackendRead (\r
1464 IN XENBUS_PROTOCOL *This,\r
e26a83cd 1465 IN CONST XENSTORE_TRANSACTION *Transaction,\r
c23c037f
AP
1466 IN CONST CHAR8 *Node,\r
1467 OUT VOID **Value\r
1468 )\r
1469{\r
1470 return XenStoreRead (Transaction, This->Backend, Node, NULL, Value);\r
1471}\r
1472\r
1473XENSTORE_STATUS\r
1474EFIAPI\r
1475XenBusXenStoreRemove (\r
1476 IN XENBUS_PROTOCOL *This,\r
e26a83cd 1477 IN CONST XENSTORE_TRANSACTION *Transaction,\r
c23c037f
AP
1478 IN const char *Node\r
1479 )\r
1480{\r
1481 return XenStoreRemove (Transaction, This->Node, Node);\r
1482}\r
1483\r
1484XENSTORE_STATUS\r
1485EFIAPI\r
1486XenBusXenStoreTransactionStart (\r
1487 IN XENBUS_PROTOCOL *This,\r
1488 OUT XENSTORE_TRANSACTION *Transaction\r
1489 )\r
1490{\r
1491 return XenStoreTransactionStart (Transaction);\r
1492}\r
1493\r
1494XENSTORE_STATUS\r
1495EFIAPI\r
1496XenBusXenStoreTransactionEnd (\r
1497 IN XENBUS_PROTOCOL *This,\r
e26a83cd 1498 IN CONST XENSTORE_TRANSACTION *Transaction,\r
c23c037f
AP
1499 IN BOOLEAN Abort\r
1500 )\r
1501{\r
1502 return XenStoreTransactionEnd (Transaction, Abort);\r
1503}\r
1504\r
1505XENSTORE_STATUS\r
1506EFIAPI\r
1507XenBusXenStoreSPrint (\r
1508 IN XENBUS_PROTOCOL *This,\r
e26a83cd 1509 IN CONST XENSTORE_TRANSACTION *Transaction,\r
c23c037f
AP
1510 IN CONST CHAR8 *DirectoryPath,\r
1511 IN CONST CHAR8 *Node,\r
1512 IN CONST CHAR8 *FormatString,\r
1513 ...\r
1514 )\r
1515{\r
1516 VA_LIST Marker;\r
1517 XENSTORE_STATUS Status;\r
1518\r
1519 VA_START (Marker, FormatString);\r
1520 Status = XenStoreVSPrint (Transaction, DirectoryPath, Node, FormatString, Marker);\r
1521 VA_END (Marker);\r
1522\r
1523 return Status;\r
1524}\r
1525\r
1526XENSTORE_STATUS\r
1527EFIAPI\r
1528XenBusRegisterWatch (\r
1529 IN XENBUS_PROTOCOL *This,\r
1530 IN CONST CHAR8 *Node,\r
1531 OUT VOID **Token\r
1532 )\r
1533{\r
1534 return XenStoreRegisterWatch (This->Node, Node, (XENSTORE_WATCH **) Token);\r
1535}\r
1536\r
1537XENSTORE_STATUS\r
1538EFIAPI\r
1539XenBusRegisterWatchBackend (\r
1540 IN XENBUS_PROTOCOL *This,\r
1541 IN CONST CHAR8 *Node,\r
1542 OUT VOID **Token\r
1543 )\r
1544{\r
1545 return XenStoreRegisterWatch (This->Backend, Node, (XENSTORE_WATCH **) Token);\r
1546}\r
1547\r
1548VOID\r
1549EFIAPI\r
1550XenBusUnregisterWatch (\r
1551 IN XENBUS_PROTOCOL *This,\r
1552 IN VOID *Token\r
1553 )\r
1554{\r
1555 XenStoreUnregisterWatch ((XENSTORE_WATCH *) Token);\r
1556}\r