1 /* SPDX-License-Identifier: (GPL-2.0 OR CDDL-1.0) */
3 * vboxguest vmm-req and hgcm-call code, VBoxGuestR0LibHGCMInternal.cpp,
4 * VBoxGuestR0LibGenericRequest.cpp and RTErrConvertToErrno.cpp in vbox svn.
6 * Copyright (C) 2006-2016 Oracle Corporation
9 #include <linux/errno.h>
11 #include <linux/kernel.h>
13 #include <linux/module.h>
14 #include <linux/sizes.h>
15 #include <linux/slab.h>
16 #include <linux/uaccess.h>
17 #include <linux/vmalloc.h>
18 #include <linux/vbox_err.h>
19 #include <linux/vbox_utils.h>
20 #include "vboxguest_core.h"
22 /* Get the pointer to the first parameter of a HGCM call request. */
23 #define VMMDEV_HGCM_CALL_PARMS(a) \
24 ((struct vmmdev_hgcm_function_parameter *)( \
25 (u8 *)(a) + sizeof(struct vmmdev_hgcm_call)))
27 /* The max parameter buffer size for a user request. */
28 #define VBG_MAX_HGCM_USER_PARM (24 * SZ_1M)
29 /* The max parameter buffer size for a kernel request. */
30 #define VBG_MAX_HGCM_KERNEL_PARM (16 * SZ_1M)
32 #define VBG_DEBUG_PORT 0x504
34 /* This protects vbg_log_buf and serializes VBG_DEBUG_PORT accesses */
35 static DEFINE_SPINLOCK(vbg_log_lock
);
36 static char vbg_log_buf
[128];
38 #define VBG_LOG(name, pr_func) \
39 void name(const char *fmt, ...) \
41 unsigned long flags; \
45 va_start(args, fmt); \
46 spin_lock_irqsave(&vbg_log_lock, flags); \
48 count = vscnprintf(vbg_log_buf, sizeof(vbg_log_buf), fmt, args);\
49 for (i = 0; i < count; i++) \
50 outb(vbg_log_buf[i], VBG_DEBUG_PORT); \
52 pr_func("%s", vbg_log_buf); \
54 spin_unlock_irqrestore(&vbg_log_lock, flags); \
59 VBG_LOG(vbg_info
, pr_info
);
60 VBG_LOG(vbg_warn
, pr_warn
);
61 VBG_LOG(vbg_err
, pr_err
);
62 VBG_LOG(vbg_err_ratelimited
, pr_err_ratelimited
);
63 #if defined(DEBUG) && !defined(CONFIG_DYNAMIC_DEBUG)
64 VBG_LOG(vbg_debug
, pr_debug
);
67 void *vbg_req_alloc(size_t len
, enum vmmdev_request_type req_type
,
70 struct vmmdev_request_header
*req
;
71 int order
= get_order(PAGE_ALIGN(len
));
73 req
= (void *)__get_free_pages(GFP_KERNEL
| GFP_DMA32
, order
);
77 memset(req
, 0xaa, len
);
80 req
->version
= VMMDEV_REQUEST_HEADER_VERSION
;
81 req
->request_type
= req_type
;
82 req
->rc
= VERR_GENERAL_FAILURE
;
84 req
->requestor
= requestor
;
89 void vbg_req_free(void *req
, size_t len
)
94 free_pages((unsigned long)req
, get_order(PAGE_ALIGN(len
)));
97 /* Note this function returns a VBox status code, not a negative errno!! */
98 int vbg_req_perform(struct vbg_dev
*gdev
, void *req
)
100 unsigned long phys_req
= virt_to_phys(req
);
102 outl(phys_req
, gdev
->io_port
+ VMMDEV_PORT_OFF_REQUEST
);
104 * The host changes the request as a result of the outl, make sure
105 * the outl and any reads of the req happen in the correct order.
109 return ((struct vmmdev_request_header
*)req
)->rc
;
112 static bool hgcm_req_done(struct vbg_dev
*gdev
,
113 struct vmmdev_hgcmreq_header
*header
)
118 spin_lock_irqsave(&gdev
->event_spinlock
, flags
);
119 done
= header
->flags
& VMMDEV_HGCM_REQ_DONE
;
120 spin_unlock_irqrestore(&gdev
->event_spinlock
, flags
);
125 int vbg_hgcm_connect(struct vbg_dev
*gdev
, u32 requestor
,
126 struct vmmdev_hgcm_service_location
*loc
,
127 u32
*client_id
, int *vbox_status
)
129 struct vmmdev_hgcm_connect
*hgcm_connect
= NULL
;
132 hgcm_connect
= vbg_req_alloc(sizeof(*hgcm_connect
),
133 VMMDEVREQ_HGCM_CONNECT
, requestor
);
137 hgcm_connect
->header
.flags
= 0;
138 memcpy(&hgcm_connect
->loc
, loc
, sizeof(*loc
));
139 hgcm_connect
->client_id
= 0;
141 rc
= vbg_req_perform(gdev
, hgcm_connect
);
143 if (rc
== VINF_HGCM_ASYNC_EXECUTE
)
144 wait_event(gdev
->hgcm_wq
,
145 hgcm_req_done(gdev
, &hgcm_connect
->header
));
148 *client_id
= hgcm_connect
->client_id
;
149 rc
= hgcm_connect
->header
.result
;
152 vbg_req_free(hgcm_connect
, sizeof(*hgcm_connect
));
157 EXPORT_SYMBOL(vbg_hgcm_connect
);
159 int vbg_hgcm_disconnect(struct vbg_dev
*gdev
, u32 requestor
,
160 u32 client_id
, int *vbox_status
)
162 struct vmmdev_hgcm_disconnect
*hgcm_disconnect
= NULL
;
165 hgcm_disconnect
= vbg_req_alloc(sizeof(*hgcm_disconnect
),
166 VMMDEVREQ_HGCM_DISCONNECT
,
168 if (!hgcm_disconnect
)
171 hgcm_disconnect
->header
.flags
= 0;
172 hgcm_disconnect
->client_id
= client_id
;
174 rc
= vbg_req_perform(gdev
, hgcm_disconnect
);
176 if (rc
== VINF_HGCM_ASYNC_EXECUTE
)
177 wait_event(gdev
->hgcm_wq
,
178 hgcm_req_done(gdev
, &hgcm_disconnect
->header
));
181 rc
= hgcm_disconnect
->header
.result
;
183 vbg_req_free(hgcm_disconnect
, sizeof(*hgcm_disconnect
));
188 EXPORT_SYMBOL(vbg_hgcm_disconnect
);
190 static u32
hgcm_call_buf_size_in_pages(void *buf
, u32 len
)
192 u32 size
= PAGE_ALIGN(len
+ ((unsigned long)buf
& ~PAGE_MASK
));
194 return size
>> PAGE_SHIFT
;
197 static void hgcm_call_add_pagelist_size(void *buf
, u32 len
, size_t *extra
)
201 page_count
= hgcm_call_buf_size_in_pages(buf
, len
);
202 *extra
+= offsetof(struct vmmdev_hgcm_pagelist
, pages
[page_count
]);
205 static int hgcm_call_preprocess_linaddr(
206 const struct vmmdev_hgcm_function_parameter
*src_parm
,
207 void **bounce_buf_ret
, size_t *extra
)
209 void *buf
, *bounce_buf
;
214 buf
= (void *)src_parm
->u
.pointer
.u
.linear_addr
;
215 len
= src_parm
->u
.pointer
.size
;
216 copy_in
= src_parm
->type
!= VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
;
218 if (len
> VBG_MAX_HGCM_USER_PARM
)
221 bounce_buf
= kvmalloc(len
, GFP_KERNEL
);
225 *bounce_buf_ret
= bounce_buf
;
228 ret
= copy_from_user(bounce_buf
, (void __user
*)buf
, len
);
232 memset(bounce_buf
, 0, len
);
235 hgcm_call_add_pagelist_size(bounce_buf
, len
, extra
);
240 * hgcm_call_preprocess - Preprocesses the HGCM call, validate parameters,
241 * alloc bounce buffers and figure out how much extra storage we need for
243 * @src_parm: Pointer to source function call parameters
244 * @parm_count: Number of function call parameters.
245 * @bounce_bufs_ret: Where to return the allocated bouncebuffer array
246 * @extra: Where to return the extra request space needed for
247 * physical page lists.
249 * Return: %0 or negative errno value.
251 static int hgcm_call_preprocess(
252 const struct vmmdev_hgcm_function_parameter
*src_parm
,
253 u32 parm_count
, void ***bounce_bufs_ret
, size_t *extra
)
255 void *buf
, **bounce_bufs
= NULL
;
259 for (i
= 0; i
< parm_count
; i
++, src_parm
++) {
260 switch (src_parm
->type
) {
261 case VMMDEV_HGCM_PARM_TYPE_32BIT
:
262 case VMMDEV_HGCM_PARM_TYPE_64BIT
:
265 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
266 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
267 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
269 bounce_bufs
= kcalloc(parm_count
,
275 *bounce_bufs_ret
= bounce_bufs
;
278 ret
= hgcm_call_preprocess_linaddr(src_parm
,
286 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL
:
287 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_IN
:
288 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_OUT
:
289 buf
= (void *)src_parm
->u
.pointer
.u
.linear_addr
;
290 len
= src_parm
->u
.pointer
.size
;
291 if (WARN_ON(len
> VBG_MAX_HGCM_KERNEL_PARM
))
294 hgcm_call_add_pagelist_size(buf
, len
, extra
);
306 * hgcm_call_linear_addr_type_to_pagelist_flags - Translates linear address
307 * types to page list direction flags.
310 * Return: page list flags.
312 static u32
hgcm_call_linear_addr_type_to_pagelist_flags(
313 enum vmmdev_hgcm_function_parameter_type type
)
319 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
320 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL
:
321 return VMMDEV_HGCM_F_PARM_DIRECTION_BOTH
;
323 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
324 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_IN
:
325 return VMMDEV_HGCM_F_PARM_DIRECTION_TO_HOST
;
327 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
328 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_OUT
:
329 return VMMDEV_HGCM_F_PARM_DIRECTION_FROM_HOST
;
333 static void hgcm_call_init_linaddr(struct vmmdev_hgcm_call
*call
,
334 struct vmmdev_hgcm_function_parameter
*dst_parm
, void *buf
, u32 len
,
335 enum vmmdev_hgcm_function_parameter_type type
, u32
*off_extra
)
337 struct vmmdev_hgcm_pagelist
*dst_pg_lst
;
342 dst_parm
->type
= type
;
345 dst_parm
->u
.pointer
.size
= 0;
346 dst_parm
->u
.pointer
.u
.linear_addr
= 0;
350 dst_pg_lst
= (void *)call
+ *off_extra
;
351 page_count
= hgcm_call_buf_size_in_pages(buf
, len
);
352 is_vmalloc
= is_vmalloc_addr(buf
);
354 dst_parm
->type
= VMMDEV_HGCM_PARM_TYPE_PAGELIST
;
355 dst_parm
->u
.page_list
.size
= len
;
356 dst_parm
->u
.page_list
.offset
= *off_extra
;
357 dst_pg_lst
->flags
= hgcm_call_linear_addr_type_to_pagelist_flags(type
);
358 dst_pg_lst
->offset_first_page
= (unsigned long)buf
& ~PAGE_MASK
;
359 dst_pg_lst
->page_count
= page_count
;
361 for (i
= 0; i
< page_count
; i
++) {
363 page
= vmalloc_to_page(buf
);
365 page
= virt_to_page(buf
);
367 dst_pg_lst
->pages
[i
] = page_to_phys(page
);
371 *off_extra
+= offsetof(struct vmmdev_hgcm_pagelist
, pages
[page_count
]);
375 * hgcm_call_init_call - Initializes the call request that we're sending
377 * @call: The call to initialize.
378 * @client_id: The client ID of the caller.
379 * @function: The function number of the function to call.
380 * @src_parm: Pointer to source function call parameters.
381 * @parm_count: Number of function call parameters.
382 * @bounce_bufs: The bouncebuffer array.
384 static void hgcm_call_init_call(
385 struct vmmdev_hgcm_call
*call
, u32 client_id
, u32 function
,
386 const struct vmmdev_hgcm_function_parameter
*src_parm
,
387 u32 parm_count
, void **bounce_bufs
)
389 struct vmmdev_hgcm_function_parameter
*dst_parm
=
390 VMMDEV_HGCM_CALL_PARMS(call
);
391 u32 i
, off_extra
= (uintptr_t)(dst_parm
+ parm_count
) - (uintptr_t)call
;
394 call
->header
.flags
= 0;
395 call
->header
.result
= VINF_SUCCESS
;
396 call
->client_id
= client_id
;
397 call
->function
= function
;
398 call
->parm_count
= parm_count
;
400 for (i
= 0; i
< parm_count
; i
++, src_parm
++, dst_parm
++) {
401 switch (src_parm
->type
) {
402 case VMMDEV_HGCM_PARM_TYPE_32BIT
:
403 case VMMDEV_HGCM_PARM_TYPE_64BIT
:
404 *dst_parm
= *src_parm
;
407 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
408 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
409 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
410 hgcm_call_init_linaddr(call
, dst_parm
, bounce_bufs
[i
],
411 src_parm
->u
.pointer
.size
,
412 src_parm
->type
, &off_extra
);
415 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL
:
416 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_IN
:
417 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_OUT
:
418 buf
= (void *)src_parm
->u
.pointer
.u
.linear_addr
;
419 hgcm_call_init_linaddr(call
, dst_parm
, buf
,
420 src_parm
->u
.pointer
.size
,
421 src_parm
->type
, &off_extra
);
426 dst_parm
->type
= VMMDEV_HGCM_PARM_TYPE_INVALID
;
432 * hgcm_cancel_call - Tries to cancel a pending HGCM call.
433 * @gdev: The VBoxGuest device extension.
434 * @call: The call to cancel.
436 * Return: VBox status code
438 static int hgcm_cancel_call(struct vbg_dev
*gdev
, struct vmmdev_hgcm_call
*call
)
443 * We use a pre-allocated request for cancellations, which is
444 * protected by cancel_req_mutex. This means that all cancellations
445 * get serialized, this should be fine since they should be rare.
447 mutex_lock(&gdev
->cancel_req_mutex
);
448 gdev
->cancel_req
->phys_req_to_cancel
= virt_to_phys(call
);
449 rc
= vbg_req_perform(gdev
, gdev
->cancel_req
);
450 mutex_unlock(&gdev
->cancel_req_mutex
);
452 if (rc
== VERR_NOT_IMPLEMENTED
) {
453 call
->header
.flags
|= VMMDEV_HGCM_REQ_CANCELLED
;
454 call
->header
.header
.request_type
= VMMDEVREQ_HGCM_CANCEL
;
456 rc
= vbg_req_perform(gdev
, call
);
457 if (rc
== VERR_INVALID_PARAMETER
)
462 call
->header
.flags
|= VMMDEV_HGCM_REQ_CANCELLED
;
468 * vbg_hgcm_do_call - Performs the call and completion wait.
469 * @gdev: The VBoxGuest device extension.
470 * @call: The call to execute.
471 * @timeout_ms: Timeout in ms.
472 * @interruptible: whether this call is interruptible
473 * @leak_it: Where to return the leak it / free it, indicator.
476 * Return: %0 or negative errno value.
478 static int vbg_hgcm_do_call(struct vbg_dev
*gdev
, struct vmmdev_hgcm_call
*call
,
479 u32 timeout_ms
, bool interruptible
, bool *leak_it
)
481 int rc
, cancel_rc
, ret
;
486 rc
= vbg_req_perform(gdev
, call
);
489 * If the call failed, then pretend success. Upper layers will
490 * interpret the result code in the packet.
493 call
->header
.result
= rc
;
497 if (rc
!= VINF_HGCM_ASYNC_EXECUTE
)
500 /* Host decided to process the request asynchronously, wait for it */
501 if (timeout_ms
== U32_MAX
)
502 timeout
= MAX_SCHEDULE_TIMEOUT
;
504 timeout
= msecs_to_jiffies(timeout_ms
);
507 timeout
= wait_event_interruptible_timeout(gdev
->hgcm_wq
,
508 hgcm_req_done(gdev
, &call
->header
),
511 timeout
= wait_event_timeout(gdev
->hgcm_wq
,
512 hgcm_req_done(gdev
, &call
->header
),
516 /* timeout > 0 means hgcm_req_done has returned true, so success */
525 /* Cancel the request */
526 cancel_rc
= hgcm_cancel_call(gdev
, call
);
531 * Failed to cancel, this should mean that the cancel has lost the
532 * race with normal completion, wait while the host completes it.
534 if (cancel_rc
== VERR_NOT_FOUND
|| cancel_rc
== VERR_SEM_DESTROYED
)
535 timeout
= msecs_to_jiffies(500);
537 timeout
= msecs_to_jiffies(2000);
539 timeout
= wait_event_timeout(gdev
->hgcm_wq
,
540 hgcm_req_done(gdev
, &call
->header
),
543 if (WARN_ON(timeout
== 0)) {
544 /* We really should never get here */
545 vbg_err("%s: Call timedout and cancellation failed, leaking the request\n",
551 /* The call has completed normally after all */
556 * hgcm_call_copy_back_result - Copies the result of the call back to
557 * the caller info structure and user buffers.
558 * @call: HGCM call request.
559 * @dst_parm: Pointer to function call parameters destination.
560 * @parm_count: Number of function call parameters.
561 * @bounce_bufs: The bouncebuffer array.
563 * Return: %0 or negative errno value.
565 static int hgcm_call_copy_back_result(
566 const struct vmmdev_hgcm_call
*call
,
567 struct vmmdev_hgcm_function_parameter
*dst_parm
,
568 u32 parm_count
, void **bounce_bufs
)
570 const struct vmmdev_hgcm_function_parameter
*src_parm
=
571 VMMDEV_HGCM_CALL_PARMS(call
);
576 /* Copy back parameters. */
577 for (i
= 0; i
< parm_count
; i
++, src_parm
++, dst_parm
++) {
578 switch (dst_parm
->type
) {
579 case VMMDEV_HGCM_PARM_TYPE_32BIT
:
580 case VMMDEV_HGCM_PARM_TYPE_64BIT
:
581 *dst_parm
= *src_parm
;
584 case VMMDEV_HGCM_PARM_TYPE_PAGELIST
:
585 dst_parm
->u
.page_list
.size
= src_parm
->u
.page_list
.size
;
588 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
589 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL
:
590 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_IN
:
591 case VMMDEV_HGCM_PARM_TYPE_LINADDR_KERNEL_OUT
:
592 dst_parm
->u
.pointer
.size
= src_parm
->u
.pointer
.size
;
595 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
596 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
597 dst_parm
->u
.pointer
.size
= src_parm
->u
.pointer
.size
;
599 p
= (void __user
*)dst_parm
->u
.pointer
.u
.linear_addr
;
600 ret
= copy_to_user(p
, bounce_bufs
[i
],
601 min(src_parm
->u
.pointer
.size
,
602 dst_parm
->u
.pointer
.size
));
616 int vbg_hgcm_call(struct vbg_dev
*gdev
, u32 requestor
, u32 client_id
,
617 u32 function
, u32 timeout_ms
,
618 struct vmmdev_hgcm_function_parameter
*parms
, u32 parm_count
,
621 struct vmmdev_hgcm_call
*call
;
622 void **bounce_bufs
= NULL
;
627 size
= sizeof(struct vmmdev_hgcm_call
) +
628 parm_count
* sizeof(struct vmmdev_hgcm_function_parameter
);
630 * Validate and buffer the parameters for the call. This also increases
631 * call_size with the amount of extra space needed for page lists.
633 ret
= hgcm_call_preprocess(parms
, parm_count
, &bounce_bufs
, &size
);
635 /* Even on error bounce bufs may still have been allocated */
636 goto free_bounce_bufs
;
639 call
= vbg_req_alloc(size
, VMMDEVREQ_HGCM_CALL
, requestor
);
642 goto free_bounce_bufs
;
645 hgcm_call_init_call(call
, client_id
, function
, parms
, parm_count
,
648 ret
= vbg_hgcm_do_call(gdev
, call
, timeout_ms
,
649 requestor
& VMMDEV_REQUESTOR_USERMODE
, &leak_it
);
651 *vbox_status
= call
->header
.result
;
652 ret
= hgcm_call_copy_back_result(call
, parms
, parm_count
,
657 vbg_req_free(call
, size
);
661 for (i
= 0; i
< parm_count
; i
++)
662 kvfree(bounce_bufs
[i
]);
668 EXPORT_SYMBOL(vbg_hgcm_call
);
672 struct vbg_dev
*gdev
, u32 requestor
, u32 client_id
, u32 function
,
673 u32 timeout_ms
, struct vmmdev_hgcm_function_parameter32
*parm32
,
674 u32 parm_count
, int *vbox_status
)
676 struct vmmdev_hgcm_function_parameter
*parm64
= NULL
;
680 /* KISS allocate a temporary request and convert the parameters. */
681 size
= parm_count
* sizeof(struct vmmdev_hgcm_function_parameter
);
682 parm64
= kzalloc(size
, GFP_KERNEL
);
686 for (i
= 0; i
< parm_count
; i
++) {
687 switch (parm32
[i
].type
) {
688 case VMMDEV_HGCM_PARM_TYPE_32BIT
:
689 parm64
[i
].type
= VMMDEV_HGCM_PARM_TYPE_32BIT
;
690 parm64
[i
].u
.value32
= parm32
[i
].u
.value32
;
693 case VMMDEV_HGCM_PARM_TYPE_64BIT
:
694 parm64
[i
].type
= VMMDEV_HGCM_PARM_TYPE_64BIT
;
695 parm64
[i
].u
.value64
= parm32
[i
].u
.value64
;
698 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
699 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
700 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
701 parm64
[i
].type
= parm32
[i
].type
;
702 parm64
[i
].u
.pointer
.size
= parm32
[i
].u
.pointer
.size
;
703 parm64
[i
].u
.pointer
.u
.linear_addr
=
704 parm32
[i
].u
.pointer
.u
.linear_addr
;
714 ret
= vbg_hgcm_call(gdev
, requestor
, client_id
, function
, timeout_ms
,
715 parm64
, parm_count
, vbox_status
);
720 for (i
= 0; i
< parm_count
; i
++, parm32
++, parm64
++) {
721 switch (parm64
[i
].type
) {
722 case VMMDEV_HGCM_PARM_TYPE_32BIT
:
723 parm32
[i
].u
.value32
= parm64
[i
].u
.value32
;
726 case VMMDEV_HGCM_PARM_TYPE_64BIT
:
727 parm32
[i
].u
.value64
= parm64
[i
].u
.value64
;
730 case VMMDEV_HGCM_PARM_TYPE_LINADDR_OUT
:
731 case VMMDEV_HGCM_PARM_TYPE_LINADDR
:
732 case VMMDEV_HGCM_PARM_TYPE_LINADDR_IN
:
733 parm32
[i
].u
.pointer
.size
= parm64
[i
].u
.pointer
.size
;
748 static const int vbg_status_code_to_errno_table
[] = {
749 [-VERR_ACCESS_DENIED
] = -EPERM
,
750 [-VERR_FILE_NOT_FOUND
] = -ENOENT
,
751 [-VERR_PROCESS_NOT_FOUND
] = -ESRCH
,
752 [-VERR_INTERRUPTED
] = -EINTR
,
753 [-VERR_DEV_IO_ERROR
] = -EIO
,
754 [-VERR_TOO_MUCH_DATA
] = -E2BIG
,
755 [-VERR_BAD_EXE_FORMAT
] = -ENOEXEC
,
756 [-VERR_INVALID_HANDLE
] = -EBADF
,
757 [-VERR_TRY_AGAIN
] = -EAGAIN
,
758 [-VERR_NO_MEMORY
] = -ENOMEM
,
759 [-VERR_INVALID_POINTER
] = -EFAULT
,
760 [-VERR_RESOURCE_BUSY
] = -EBUSY
,
761 [-VERR_ALREADY_EXISTS
] = -EEXIST
,
762 [-VERR_NOT_SAME_DEVICE
] = -EXDEV
,
763 [-VERR_NOT_A_DIRECTORY
] = -ENOTDIR
,
764 [-VERR_PATH_NOT_FOUND
] = -ENOTDIR
,
765 [-VERR_INVALID_NAME
] = -ENOENT
,
766 [-VERR_IS_A_DIRECTORY
] = -EISDIR
,
767 [-VERR_INVALID_PARAMETER
] = -EINVAL
,
768 [-VERR_TOO_MANY_OPEN_FILES
] = -ENFILE
,
769 [-VERR_INVALID_FUNCTION
] = -ENOTTY
,
770 [-VERR_SHARING_VIOLATION
] = -ETXTBSY
,
771 [-VERR_FILE_TOO_BIG
] = -EFBIG
,
772 [-VERR_DISK_FULL
] = -ENOSPC
,
773 [-VERR_SEEK_ON_DEVICE
] = -ESPIPE
,
774 [-VERR_WRITE_PROTECT
] = -EROFS
,
775 [-VERR_BROKEN_PIPE
] = -EPIPE
,
776 [-VERR_DEADLOCK
] = -EDEADLK
,
777 [-VERR_FILENAME_TOO_LONG
] = -ENAMETOOLONG
,
778 [-VERR_FILE_LOCK_FAILED
] = -ENOLCK
,
779 [-VERR_NOT_IMPLEMENTED
] = -ENOSYS
,
780 [-VERR_NOT_SUPPORTED
] = -ENOSYS
,
781 [-VERR_DIR_NOT_EMPTY
] = -ENOTEMPTY
,
782 [-VERR_TOO_MANY_SYMLINKS
] = -ELOOP
,
783 [-VERR_NO_MORE_FILES
] = -ENODATA
,
784 [-VERR_NO_DATA
] = -ENODATA
,
785 [-VERR_NET_NO_NETWORK
] = -ENONET
,
786 [-VERR_NET_NOT_UNIQUE_NAME
] = -ENOTUNIQ
,
787 [-VERR_NO_TRANSLATION
] = -EILSEQ
,
788 [-VERR_NET_NOT_SOCKET
] = -ENOTSOCK
,
789 [-VERR_NET_DEST_ADDRESS_REQUIRED
] = -EDESTADDRREQ
,
790 [-VERR_NET_MSG_SIZE
] = -EMSGSIZE
,
791 [-VERR_NET_PROTOCOL_TYPE
] = -EPROTOTYPE
,
792 [-VERR_NET_PROTOCOL_NOT_AVAILABLE
] = -ENOPROTOOPT
,
793 [-VERR_NET_PROTOCOL_NOT_SUPPORTED
] = -EPROTONOSUPPORT
,
794 [-VERR_NET_SOCKET_TYPE_NOT_SUPPORTED
] = -ESOCKTNOSUPPORT
,
795 [-VERR_NET_OPERATION_NOT_SUPPORTED
] = -EOPNOTSUPP
,
796 [-VERR_NET_PROTOCOL_FAMILY_NOT_SUPPORTED
] = -EPFNOSUPPORT
,
797 [-VERR_NET_ADDRESS_FAMILY_NOT_SUPPORTED
] = -EAFNOSUPPORT
,
798 [-VERR_NET_ADDRESS_IN_USE
] = -EADDRINUSE
,
799 [-VERR_NET_ADDRESS_NOT_AVAILABLE
] = -EADDRNOTAVAIL
,
800 [-VERR_NET_DOWN
] = -ENETDOWN
,
801 [-VERR_NET_UNREACHABLE
] = -ENETUNREACH
,
802 [-VERR_NET_CONNECTION_RESET
] = -ENETRESET
,
803 [-VERR_NET_CONNECTION_ABORTED
] = -ECONNABORTED
,
804 [-VERR_NET_CONNECTION_RESET_BY_PEER
] = -ECONNRESET
,
805 [-VERR_NET_NO_BUFFER_SPACE
] = -ENOBUFS
,
806 [-VERR_NET_ALREADY_CONNECTED
] = -EISCONN
,
807 [-VERR_NET_NOT_CONNECTED
] = -ENOTCONN
,
808 [-VERR_NET_SHUTDOWN
] = -ESHUTDOWN
,
809 [-VERR_NET_TOO_MANY_REFERENCES
] = -ETOOMANYREFS
,
810 [-VERR_TIMEOUT
] = -ETIMEDOUT
,
811 [-VERR_NET_CONNECTION_REFUSED
] = -ECONNREFUSED
,
812 [-VERR_NET_HOST_DOWN
] = -EHOSTDOWN
,
813 [-VERR_NET_HOST_UNREACHABLE
] = -EHOSTUNREACH
,
814 [-VERR_NET_ALREADY_IN_PROGRESS
] = -EALREADY
,
815 [-VERR_NET_IN_PROGRESS
] = -EINPROGRESS
,
816 [-VERR_MEDIA_NOT_PRESENT
] = -ENOMEDIUM
,
817 [-VERR_MEDIA_NOT_RECOGNIZED
] = -EMEDIUMTYPE
,
820 int vbg_status_code_to_errno(int rc
)
826 if (rc
>= ARRAY_SIZE(vbg_status_code_to_errno_table
) ||
827 vbg_status_code_to_errno_table
[rc
] == 0) {
828 vbg_warn("%s: Unhandled err %d\n", __func__
, -rc
);
832 return vbg_status_code_to_errno_table
[rc
];
834 EXPORT_SYMBOL(vbg_status_code_to_errno
);