1 /*
2 * Copyright (c) 2017, Mellanox Technologies inc. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the
8 * OpenIB.org BSD license below:
9 *
10 * Redistribution and use in source and binary forms, with or
11 * without modification, are permitted provided that the following
12 * conditions are met:
13 *
14 * - Redistributions of source code must retain the above
15 * copyright notice, this list of conditions and the following
16 * disclaimer.
17 *
18 * - Redistributions in binary form must reproduce the above
19 * copyright notice, this list of conditions and the following
20 * disclaimer in the documentation and/or other materials
21 * provided with the distribution.
22 *
23 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30 * SOFTWARE.
31 */
32
33 #include <rdma/rdma_user_ioctl.h>
34 #include <rdma/uverbs_ioctl.h>
35 #include "rdma_core.h"
36 #include "uverbs.h"
37
38 /*
39 * Each method has an absolute minimum amount of memory it needs to allocate,
40 * precompute that amount and determine if the onstack memory can be used or
41 * if allocation is need.
42 */
uapi_compute_bundle_size(struct uverbs_api_ioctl_method * method_elm,unsigned int num_attrs)43 void uapi_compute_bundle_size(struct uverbs_api_ioctl_method *method_elm,
44 unsigned int num_attrs)
45 {
46 struct bundle_priv *pbundle;
47 struct uverbs_attr_bundle *bundle;
48 size_t bundle_size =
49 offsetof(struct bundle_priv, internal_buffer) +
50 sizeof(*bundle->attrs) * method_elm->key_bitmap_len +
51 sizeof(*pbundle->uattrs) * num_attrs;
52
53 method_elm->use_stack = bundle_size <= sizeof(*pbundle);
54 method_elm->bundle_size =
55 ALIGN(bundle_size + 256, sizeof(*pbundle->internal_buffer));
56
57 /* Do not want order-2 allocations for this. */
58 WARN_ON_ONCE(method_elm->bundle_size > PAGE_SIZE);
59 }
60
61 /**
62 * _uverbs_alloc() - Quickly allocate memory for use with a bundle
63 * @bundle: The bundle
64 * @size: Number of bytes to allocate
65 * @flags: Allocator flags
66 *
67 * The bundle allocator is intended for allocations that are connected with
68 * processing the system call related to the bundle. The allocated memory is
69 * always freed once the system call completes, and cannot be freed any other
70 * way.
71 *
72 * This tries to use a small pool of pre-allocated memory for performance.
73 */
_uverbs_alloc(struct uverbs_attr_bundle * bundle,size_t size,gfp_t flags)74 __malloc void *_uverbs_alloc(struct uverbs_attr_bundle *bundle, size_t size,
75 gfp_t flags)
76 {
77 struct bundle_priv *pbundle =
78 container_of(&bundle->hdr, struct bundle_priv, bundle);
79 size_t new_used;
80 void *res;
81
82 if (check_add_overflow(size, pbundle->internal_used, &new_used))
83 return ERR_PTR(-EOVERFLOW);
84
85 if (new_used > pbundle->internal_avail) {
86 struct bundle_alloc_head *buf;
87
88 buf = kvmalloc_flex(*buf, data, size, flags);
89 if (!buf)
90 return ERR_PTR(-ENOMEM);
91 buf->next = pbundle->allocated_mem;
92 pbundle->allocated_mem = buf;
93 return buf->data;
94 }
95
96 res = (void *)pbundle->internal_buffer + pbundle->internal_used;
97 pbundle->internal_used =
98 ALIGN(new_used, sizeof(*pbundle->internal_buffer));
99 if (want_init_on_alloc(flags))
100 memset(res, 0, size);
101 return res;
102 }
103 EXPORT_SYMBOL(_uverbs_alloc);
104
uverbs_is_attr_cleared(const struct ib_uverbs_attr * uattr,u16 len)105 static bool uverbs_is_attr_cleared(const struct ib_uverbs_attr *uattr,
106 u16 len)
107 {
108 if (uattr->len > sizeof_field(struct ib_uverbs_attr, data))
109 return ib_is_buffer_cleared(u64_to_user_ptr(uattr->data) + len,
110 uattr->len - len);
111
112 return !memchr_inv((const void *)&uattr->data + len,
113 0, uattr->len - len);
114 }
115
uverbs_set_output(const struct uverbs_attr_bundle * bundle,const struct uverbs_attr * attr)116 static int uverbs_set_output(const struct uverbs_attr_bundle *bundle,
117 const struct uverbs_attr *attr)
118 {
119 struct bundle_priv *pbundle =
120 container_of(&bundle->hdr, struct bundle_priv, bundle);
121 u16 flags;
122
123 flags = pbundle->uattrs[attr->ptr_attr.uattr_idx].flags |
124 UVERBS_ATTR_F_VALID_OUTPUT;
125 if (put_user(flags,
126 &pbundle->user_attrs[attr->ptr_attr.uattr_idx].flags))
127 return -EFAULT;
128 return 0;
129 }
130
uverbs_process_idrs_array(struct bundle_priv * pbundle,const struct uverbs_api_attr * attr_uapi,struct uverbs_objs_arr_attr * attr,struct ib_uverbs_attr * uattr,u32 attr_bkey)131 static int uverbs_process_idrs_array(struct bundle_priv *pbundle,
132 const struct uverbs_api_attr *attr_uapi,
133 struct uverbs_objs_arr_attr *attr,
134 struct ib_uverbs_attr *uattr,
135 u32 attr_bkey)
136 {
137 struct uverbs_attr_bundle *bundle =
138 container_of(&pbundle->bundle, struct uverbs_attr_bundle, hdr);
139 const struct uverbs_attr_spec *spec = &attr_uapi->spec;
140 size_t array_len;
141 u32 *idr_vals;
142 int ret = 0;
143 size_t i;
144
145 if (uattr->attr_data.reserved)
146 return -EINVAL;
147
148 if (uattr->len % sizeof(u32))
149 return -EINVAL;
150
151 array_len = uattr->len / sizeof(u32);
152 if (array_len < spec->u2.objs_arr.min_len ||
153 array_len > spec->u2.objs_arr.max_len)
154 return -EINVAL;
155
156 attr->uobjects =
157 uverbs_alloc(bundle,
158 array_size(array_len, sizeof(*attr->uobjects)));
159 if (IS_ERR(attr->uobjects))
160 return PTR_ERR(attr->uobjects);
161
162 /*
163 * Since idr is 4B and *uobjects is >= 4B, we can use attr->uobjects
164 * to store idrs array and avoid additional memory allocation. The
165 * idrs array is offset to the end of the uobjects array so we will be
166 * able to read idr and replace with a pointer.
167 */
168 idr_vals = (u32 *)(attr->uobjects + array_len) - array_len;
169
170 if (uattr->len > sizeof(uattr->data)) {
171 ret = copy_from_user(idr_vals, u64_to_user_ptr(uattr->data),
172 uattr->len);
173 if (ret)
174 return -EFAULT;
175 } else {
176 memcpy(idr_vals, &uattr->data, uattr->len);
177 }
178
179 for (i = 0; i != array_len; i++) {
180 attr->uobjects[i] = uverbs_get_uobject_from_file(
181 spec->u2.objs_arr.obj_type, spec->u2.objs_arr.access,
182 idr_vals[i], bundle);
183 if (IS_ERR(attr->uobjects[i])) {
184 ret = PTR_ERR(attr->uobjects[i]);
185 break;
186 }
187 }
188
189 attr->len = i;
190 __set_bit(attr_bkey, pbundle->spec_finalize);
191 return ret;
192 }
193
uverbs_free_idrs_array(const struct uverbs_api_attr * attr_uapi,struct uverbs_objs_arr_attr * attr,bool commit,struct uverbs_attr_bundle * attrs)194 static void uverbs_free_idrs_array(const struct uverbs_api_attr *attr_uapi,
195 struct uverbs_objs_arr_attr *attr,
196 bool commit,
197 struct uverbs_attr_bundle *attrs)
198 {
199 const struct uverbs_attr_spec *spec = &attr_uapi->spec;
200 size_t i;
201
202 for (i = 0; i != attr->len; i++)
203 uverbs_finalize_object(attr->uobjects[i],
204 spec->u2.objs_arr.access, false, commit,
205 attrs);
206 }
207
uverbs_process_attr(struct bundle_priv * pbundle,const struct uverbs_api_attr * attr_uapi,struct ib_uverbs_attr * uattr,u32 attr_bkey)208 static int uverbs_process_attr(struct bundle_priv *pbundle,
209 const struct uverbs_api_attr *attr_uapi,
210 struct ib_uverbs_attr *uattr, u32 attr_bkey)
211 {
212 const struct uverbs_attr_spec *spec = &attr_uapi->spec;
213 struct uverbs_attr_bundle *bundle =
214 container_of(&pbundle->bundle, struct uverbs_attr_bundle, hdr);
215 struct uverbs_attr *e = &bundle->attrs[attr_bkey];
216 const struct uverbs_attr_spec *val_spec = spec;
217 struct uverbs_obj_attr *o_attr;
218
219 switch (spec->type) {
220 case UVERBS_ATTR_TYPE_ENUM_IN:
221 if (uattr->attr_data.enum_data.elem_id >= spec->u.enum_def.num_elems)
222 return -EOPNOTSUPP;
223
224 if (uattr->attr_data.enum_data.reserved)
225 return -EINVAL;
226
227 val_spec = &spec->u2.enum_def.ids[uattr->attr_data.enum_data.elem_id];
228
229 /* Currently we only support PTR_IN based enums */
230 if (val_spec->type != UVERBS_ATTR_TYPE_PTR_IN)
231 return -EOPNOTSUPP;
232
233 e->ptr_attr.enum_id = uattr->attr_data.enum_data.elem_id;
234 fallthrough;
235 case UVERBS_ATTR_TYPE_PTR_IN:
236 /* Ensure that any data provided by userspace beyond the known
237 * struct is zero. Userspace that knows how to use some future
238 * longer struct will fail here if used with an old kernel and
239 * non-zero content, making ABI compat/discovery simpler.
240 */
241 if (uattr->len > val_spec->u.ptr.len &&
242 val_spec->zero_trailing &&
243 !uverbs_is_attr_cleared(uattr, val_spec->u.ptr.len))
244 return -EOPNOTSUPP;
245
246 fallthrough;
247 case UVERBS_ATTR_TYPE_PTR_OUT:
248 if (uattr->len < val_spec->u.ptr.min_len ||
249 (!val_spec->zero_trailing &&
250 uattr->len > val_spec->u.ptr.len))
251 return -EINVAL;
252
253 if (spec->type != UVERBS_ATTR_TYPE_ENUM_IN &&
254 uattr->attr_data.reserved)
255 return -EINVAL;
256
257 e->ptr_attr.uattr_idx = uattr - pbundle->uattrs;
258 e->ptr_attr.len = uattr->len;
259
260 if (val_spec->alloc_and_copy && !uverbs_attr_ptr_is_inline(e)) {
261 void *p;
262
263 p = uverbs_alloc(bundle, uattr->len);
264 if (IS_ERR(p))
265 return PTR_ERR(p);
266
267 e->ptr_attr.ptr = p;
268
269 if (copy_from_user(p, u64_to_user_ptr(uattr->data),
270 uattr->len))
271 return -EFAULT;
272 } else {
273 e->ptr_attr.data = uattr->data;
274 }
275 break;
276
277 case UVERBS_ATTR_TYPE_IDR:
278 case UVERBS_ATTR_TYPE_FD:
279 if (uattr->attr_data.reserved)
280 return -EINVAL;
281
282 if (uattr->len != 0)
283 return -EINVAL;
284
285 o_attr = &e->obj_attr;
286 o_attr->attr_elm = attr_uapi;
287
288 /*
289 * The type of uattr->data is u64 for UVERBS_ATTR_TYPE_IDR and
290 * s64 for UVERBS_ATTR_TYPE_FD. We can cast the u64 to s64
291 * here without caring about truncation as we know that the
292 * IDR implementation today rejects negative IDs
293 */
294 o_attr->uobject = uverbs_get_uobject_from_file(
295 spec->u.obj.obj_type, spec->u.obj.access,
296 uattr->data_s64, bundle);
297 if (IS_ERR(o_attr->uobject))
298 return PTR_ERR(o_attr->uobject);
299 __set_bit(attr_bkey, pbundle->uobj_finalize);
300
301 if (spec->u.obj.access == UVERBS_ACCESS_NEW) {
302 unsigned int uattr_idx = uattr - pbundle->uattrs;
303 s64 id = o_attr->uobject->id;
304
305 /* Copy the allocated id to the user-space */
306 if (put_user(id, &pbundle->user_attrs[uattr_idx].data))
307 return -EFAULT;
308 }
309
310 break;
311
312 case UVERBS_ATTR_TYPE_RAW_FD:
313 if (uattr->attr_data.reserved || uattr->len != 0 ||
314 uattr->data_s64 < INT_MIN || uattr->data_s64 > INT_MAX)
315 return -EINVAL;
316 /* _uverbs_get_const_signed() is the accessor */
317 e->ptr_attr.data = uattr->data_s64;
318 break;
319
320 case UVERBS_ATTR_TYPE_IDRS_ARRAY:
321 return uverbs_process_idrs_array(pbundle, attr_uapi,
322 &e->objs_arr_attr, uattr,
323 attr_bkey);
324 default:
325 return -EOPNOTSUPP;
326 }
327
328 return 0;
329 }
330
331 /*
332 * We search the radix tree with the method prefix and now we want to fast
333 * search the suffix bits to get a particular attribute pointer. It is not
334 * totally clear to me if this breaks the radix tree encasulation or not, but
335 * it uses the iter data to determine if the method iter points at the same
336 * chunk that will store the attribute, if so it just derefs it directly. By
337 * construction in most kernel configs the method and attrs will all fit in a
338 * single radix chunk, so in most cases this will have no search. Other cases
339 * this falls back to a full search.
340 */
uapi_get_attr_for_method(struct bundle_priv * pbundle,u32 attr_key)341 static void __rcu **uapi_get_attr_for_method(struct bundle_priv *pbundle,
342 u32 attr_key)
343 {
344 void __rcu **slot;
345
346 if (likely(attr_key < pbundle->radix_slots_len)) {
347 void *entry;
348
349 slot = pbundle->radix_slots + attr_key;
350 entry = rcu_dereference_raw(*slot);
351 if (likely(!radix_tree_is_internal_node(entry) && entry))
352 return slot;
353 }
354
355 return radix_tree_lookup_slot(pbundle->radix,
356 pbundle->method_key | attr_key);
357 }
358
uverbs_set_attr(struct bundle_priv * pbundle,struct ib_uverbs_attr * uattr)359 static int uverbs_set_attr(struct bundle_priv *pbundle,
360 struct ib_uverbs_attr *uattr)
361 {
362 u32 attr_key = uapi_key_attr(uattr->attr_id);
363 u32 attr_bkey = uapi_bkey_attr(attr_key);
364 const struct uverbs_api_attr *attr;
365 void __rcu **slot;
366 int ret;
367
368 slot = uapi_get_attr_for_method(pbundle, attr_key);
369 if (!slot) {
370 /*
371 * Kernel does not support the attribute but user-space says it
372 * is mandatory
373 */
374 if (uattr->flags & UVERBS_ATTR_F_MANDATORY)
375 return -EPROTONOSUPPORT;
376 return 0;
377 }
378 attr = rcu_dereference_protected(*slot, true);
379
380 /* Reject duplicate attributes from user-space */
381 if (test_bit(attr_bkey, pbundle->bundle.attr_present))
382 return -EINVAL;
383
384 ret = uverbs_process_attr(pbundle, attr, uattr, attr_bkey);
385 if (ret)
386 return ret;
387
388 __set_bit(attr_bkey, pbundle->bundle.attr_present);
389
390 return 0;
391 }
392
ib_uverbs_run_method(struct bundle_priv * pbundle,unsigned int num_attrs)393 static int ib_uverbs_run_method(struct bundle_priv *pbundle,
394 unsigned int num_attrs)
395 {
396 int (*handler)(struct uverbs_attr_bundle *attrs);
397 struct uverbs_attr_bundle *bundle =
398 container_of(&pbundle->bundle, struct uverbs_attr_bundle, hdr);
399 size_t uattrs_size = array_size(sizeof(*pbundle->uattrs), num_attrs);
400 unsigned int destroy_bkey = bundle->method_elm->destroy_bkey;
401 unsigned int i;
402 int ret;
403
404 /* See uverbs_disassociate_api() */
405 handler = srcu_dereference(
406 bundle->method_elm->handler,
407 &pbundle->bundle.ufile->device->disassociate_srcu);
408 if (!handler)
409 return -EIO;
410
411 pbundle->uattrs = uverbs_alloc(bundle, uattrs_size);
412 if (IS_ERR(pbundle->uattrs))
413 return PTR_ERR(pbundle->uattrs);
414 if (copy_from_user(pbundle->uattrs, pbundle->user_attrs, uattrs_size))
415 return -EFAULT;
416
417 for (i = 0; i != num_attrs; i++) {
418 ret = uverbs_set_attr(pbundle, &pbundle->uattrs[i]);
419 if (unlikely(ret))
420 return ret;
421 }
422
423 /* User space did not provide all the mandatory attributes */
424 if (unlikely(!bitmap_subset(bundle->method_elm->attr_mandatory,
425 pbundle->bundle.attr_present,
426 bundle->method_elm->key_bitmap_len)))
427 return -EINVAL;
428
429 if (bundle->method_elm->has_udata)
430 uverbs_fill_udata(bundle, &pbundle->bundle.driver_udata,
431 UVERBS_ATTR_UHW_IN, UVERBS_ATTR_UHW_OUT);
432 else
433 pbundle->bundle.driver_udata = (struct ib_udata){};
434
435 if (destroy_bkey != UVERBS_API_ATTR_BKEY_LEN) {
436 struct uverbs_obj_attr *destroy_attr = &bundle->attrs[destroy_bkey].obj_attr;
437
438 ret = uobj_destroy(destroy_attr->uobject, bundle);
439 if (ret)
440 return ret;
441 __clear_bit(destroy_bkey, pbundle->uobj_finalize);
442
443 ret = handler(bundle);
444 uobj_put_destroy(destroy_attr->uobject);
445 } else {
446 ret = handler(bundle);
447 }
448
449 /*
450 * Until the drivers are revised to use the bundle directly we have to
451 * assume that the driver wrote to its UHW_OUT and flag userspace
452 * appropriately.
453 */
454 if (!ret && bundle->method_elm->has_udata) {
455 const struct uverbs_attr *attr =
456 uverbs_attr_get(bundle, UVERBS_ATTR_UHW_OUT);
457
458 if (!IS_ERR(attr))
459 ret = uverbs_set_output(bundle, attr);
460 }
461
462 /*
463 * EPROTONOSUPPORT is ONLY to be returned if the ioctl framework can
464 * not invoke the method because the request is not supported. No
465 * other cases should return this code.
466 */
467 if (WARN_ON_ONCE(ret == -EPROTONOSUPPORT))
468 return -EINVAL;
469
470 return ret;
471 }
472
bundle_destroy(struct bundle_priv * pbundle,bool commit)473 static void bundle_destroy(struct bundle_priv *pbundle, bool commit)
474 {
475 unsigned int key_bitmap_len = pbundle->bundle.method_elm->key_bitmap_len;
476 struct uverbs_attr_bundle *bundle =
477 container_of(&pbundle->bundle, struct uverbs_attr_bundle, hdr);
478 struct bundle_alloc_head *memblock;
479 unsigned int i;
480
481 /* fast path for simple uobjects */
482 i = -1;
483 while ((i = find_next_bit(pbundle->uobj_finalize, key_bitmap_len,
484 i + 1)) < key_bitmap_len) {
485 struct uverbs_attr *attr = &bundle->attrs[i];
486
487 uverbs_finalize_object(
488 attr->obj_attr.uobject,
489 attr->obj_attr.attr_elm->spec.u.obj.access,
490 test_bit(i, pbundle->uobj_hw_obj_valid),
491 commit, bundle);
492 }
493
494 i = -1;
495 while ((i = find_next_bit(pbundle->spec_finalize, key_bitmap_len,
496 i + 1)) < key_bitmap_len) {
497 struct uverbs_attr *attr = &bundle->attrs[i];
498 const struct uverbs_api_attr *attr_uapi;
499 void __rcu **slot;
500
501 slot = uapi_get_attr_for_method(
502 pbundle,
503 pbundle->method_key | uapi_bkey_to_key_attr(i));
504 if (WARN_ON(!slot))
505 continue;
506
507 attr_uapi = rcu_dereference_protected(*slot, true);
508
509 if (attr_uapi->spec.type == UVERBS_ATTR_TYPE_IDRS_ARRAY) {
510 uverbs_free_idrs_array(attr_uapi, &attr->objs_arr_attr,
511 commit, bundle);
512 }
513 }
514
515 for (memblock = pbundle->allocated_mem; memblock;) {
516 struct bundle_alloc_head *tmp = memblock;
517
518 memblock = memblock->next;
519 kvfree(tmp);
520 }
521 }
522
ib_uverbs_cmd_verbs(struct ib_uverbs_file * ufile,struct ib_uverbs_ioctl_hdr * hdr,struct ib_uverbs_attr __user * user_attrs)523 static int ib_uverbs_cmd_verbs(struct ib_uverbs_file *ufile,
524 struct ib_uverbs_ioctl_hdr *hdr,
525 struct ib_uverbs_attr __user *user_attrs)
526 {
527 const struct uverbs_api_ioctl_method *method_elm;
528 struct uverbs_api *uapi = ufile->device->uapi;
529 struct radix_tree_iter attrs_iter;
530 struct bundle_priv *pbundle;
531 struct bundle_priv onstack;
532 void __rcu **slot;
533 int ret;
534
535 if (unlikely(hdr->driver_id != uapi->driver_id))
536 return -EINVAL;
537
538 slot = radix_tree_iter_lookup(
539 &uapi->radix, &attrs_iter,
540 uapi_key_obj(hdr->object_id) |
541 uapi_key_ioctl_method(hdr->method_id));
542 if (unlikely(!slot))
543 return -EPROTONOSUPPORT;
544 method_elm = rcu_dereference_protected(*slot, true);
545
546 if (!method_elm->use_stack) {
547 pbundle = kmalloc(method_elm->bundle_size, GFP_KERNEL);
548 if (!pbundle)
549 return -ENOMEM;
550 pbundle->internal_avail =
551 method_elm->bundle_size -
552 offsetof(struct bundle_priv, internal_buffer);
553 pbundle->alloc_head.next = NULL;
554 pbundle->allocated_mem = container_of(&pbundle->alloc_head,
555 struct bundle_alloc_head, hdr);
556 } else {
557 pbundle = &onstack;
558 pbundle->internal_avail = sizeof(pbundle->internal_buffer);
559 pbundle->allocated_mem = NULL;
560 }
561
562 /* Space for the pbundle->bundle.attrs flex array */
563 pbundle->bundle.method_elm = method_elm;
564 pbundle->method_key = attrs_iter.index;
565 pbundle->bundle.ufile = ufile;
566 pbundle->bundle.context = NULL; /* only valid if bundle has uobject */
567 pbundle->radix = &uapi->radix;
568 pbundle->radix_slots = slot;
569 pbundle->radix_slots_len = radix_tree_chunk_size(&attrs_iter);
570 pbundle->user_attrs = user_attrs;
571
572 pbundle->internal_used = ALIGN(
573 pbundle->bundle.method_elm->key_bitmap_len *
574 sizeof(*container_of(&pbundle->bundle,
575 struct uverbs_attr_bundle, hdr)
576 ->attrs),
577 sizeof(*pbundle->internal_buffer));
578 memset(pbundle->bundle.attr_present, 0,
579 sizeof(pbundle->bundle.attr_present));
580 memset(pbundle->uobj_finalize, 0, sizeof(pbundle->uobj_finalize));
581 memset(pbundle->spec_finalize, 0, sizeof(pbundle->spec_finalize));
582 memset(pbundle->uobj_hw_obj_valid, 0,
583 sizeof(pbundle->uobj_hw_obj_valid));
584
585 ret = ib_uverbs_run_method(pbundle, hdr->num_attrs);
586 bundle_destroy(pbundle, ret == 0);
587 return ret;
588 }
589
ib_uverbs_ioctl(struct file * filp,unsigned int cmd,unsigned long arg)590 long ib_uverbs_ioctl(struct file *filp, unsigned int cmd, unsigned long arg)
591 {
592 struct ib_uverbs_file *file = filp->private_data;
593 struct ib_uverbs_ioctl_hdr __user *user_hdr =
594 (struct ib_uverbs_ioctl_hdr __user *)arg;
595 struct ib_uverbs_ioctl_hdr hdr;
596 int srcu_key;
597 int err;
598
599 if (unlikely(cmd != RDMA_VERBS_IOCTL))
600 return -ENOIOCTLCMD;
601
602 err = copy_from_user(&hdr, user_hdr, sizeof(hdr));
603 if (err)
604 return -EFAULT;
605
606 if (hdr.length > PAGE_SIZE ||
607 hdr.length != struct_size(&hdr, attrs, hdr.num_attrs))
608 return -EINVAL;
609
610 if (hdr.reserved1 || hdr.reserved2)
611 return -EPROTONOSUPPORT;
612
613 srcu_key = srcu_read_lock(&file->device->disassociate_srcu);
614 err = ib_uverbs_cmd_verbs(file, &hdr, user_hdr->attrs);
615 srcu_read_unlock(&file->device->disassociate_srcu, srcu_key);
616 return err;
617 }
618
uverbs_get_flags64(u64 * to,const struct uverbs_attr_bundle * attrs_bundle,size_t idx,u64 allowed_bits)619 int uverbs_get_flags64(u64 *to, const struct uverbs_attr_bundle *attrs_bundle,
620 size_t idx, u64 allowed_bits)
621 {
622 const struct uverbs_attr *attr;
623 u64 flags;
624
625 attr = uverbs_attr_get(attrs_bundle, idx);
626 /* Missing attribute means 0 flags */
627 if (IS_ERR(attr)) {
628 *to = 0;
629 return 0;
630 }
631
632 /*
633 * New userspace code should use 8 bytes to pass flags, but we
634 * transparently support old userspaces that were using 4 bytes as
635 * well.
636 */
637 if (attr->ptr_attr.len == 8)
638 flags = attr->ptr_attr.data;
639 else if (attr->ptr_attr.len == 4)
640 flags = *(u32 *)&attr->ptr_attr.data;
641 else
642 return -EINVAL;
643
644 if (flags & ~allowed_bits)
645 return -EINVAL;
646
647 *to = flags;
648 return 0;
649 }
650 EXPORT_SYMBOL(uverbs_get_flags64);
651
uverbs_get_flags32(u32 * to,const struct uverbs_attr_bundle * attrs_bundle,size_t idx,u64 allowed_bits)652 int uverbs_get_flags32(u32 *to, const struct uverbs_attr_bundle *attrs_bundle,
653 size_t idx, u64 allowed_bits)
654 {
655 u64 flags;
656 int ret;
657
658 ret = uverbs_get_flags64(&flags, attrs_bundle, idx, allowed_bits);
659 if (ret)
660 return ret;
661
662 if (flags > U32_MAX)
663 return -EINVAL;
664 *to = flags;
665
666 return 0;
667 }
668 EXPORT_SYMBOL(uverbs_get_flags32);
669
670 /*
671 * Fill a ib_udata struct (core or uhw) using the given attribute IDs.
672 * This is primarily used to convert the UVERBS_ATTR_UHW() into the
673 * ib_udata format used by the drivers.
674 */
uverbs_fill_udata(struct uverbs_attr_bundle * bundle,struct ib_udata * udata,unsigned int attr_in,unsigned int attr_out)675 void uverbs_fill_udata(struct uverbs_attr_bundle *bundle,
676 struct ib_udata *udata, unsigned int attr_in,
677 unsigned int attr_out)
678 {
679 struct bundle_priv *pbundle =
680 container_of(&bundle->hdr, struct bundle_priv, bundle);
681 struct uverbs_attr_bundle *bundle_aux =
682 container_of(&pbundle->bundle, struct uverbs_attr_bundle, hdr);
683 const struct uverbs_attr *in =
684 uverbs_attr_get(bundle_aux, attr_in);
685 const struct uverbs_attr *out =
686 uverbs_attr_get(bundle_aux, attr_out);
687
688 if (!IS_ERR(in)) {
689 udata->inlen = in->ptr_attr.len;
690 if (uverbs_attr_ptr_is_inline(in))
691 udata->inbuf =
692 &pbundle->user_attrs[in->ptr_attr.uattr_idx]
693 .data;
694 else
695 udata->inbuf = u64_to_user_ptr(in->ptr_attr.data);
696 } else {
697 udata->inbuf = NULL;
698 udata->inlen = 0;
699 }
700
701 if (!IS_ERR(out)) {
702 udata->outbuf = u64_to_user_ptr(out->ptr_attr.data);
703 udata->outlen = out->ptr_attr.len;
704 } else {
705 udata->outbuf = NULL;
706 udata->outlen = 0;
707 }
708 }
709
uverbs_copy_to(const struct uverbs_attr_bundle * bundle,size_t idx,const void * from,size_t size)710 int uverbs_copy_to(const struct uverbs_attr_bundle *bundle, size_t idx,
711 const void *from, size_t size)
712 {
713 const struct uverbs_attr *attr = uverbs_attr_get(bundle, idx);
714 size_t min_size;
715
716 if (IS_ERR(attr))
717 return PTR_ERR(attr);
718
719 min_size = min_t(size_t, attr->ptr_attr.len, size);
720 if (copy_to_user(u64_to_user_ptr(attr->ptr_attr.data), from, min_size))
721 return -EFAULT;
722
723 return uverbs_set_output(bundle, attr);
724 }
725 EXPORT_SYMBOL(uverbs_copy_to);
726
727
728 /*
729 * This is only used if the caller has directly used copy_to_use to write the
730 * data. It signals to user space that the buffer is filled in.
731 */
uverbs_output_written(const struct uverbs_attr_bundle * bundle,size_t idx)732 int uverbs_output_written(const struct uverbs_attr_bundle *bundle, size_t idx)
733 {
734 const struct uverbs_attr *attr = uverbs_attr_get(bundle, idx);
735
736 if (IS_ERR(attr))
737 return PTR_ERR(attr);
738
739 return uverbs_set_output(bundle, attr);
740 }
741
_uverbs_get_const_signed(s64 * to,const struct uverbs_attr_bundle * attrs_bundle,size_t idx,s64 lower_bound,u64 upper_bound,s64 * def_val)742 int _uverbs_get_const_signed(s64 *to,
743 const struct uverbs_attr_bundle *attrs_bundle,
744 size_t idx, s64 lower_bound, u64 upper_bound,
745 s64 *def_val)
746 {
747 const struct uverbs_attr *attr;
748
749 attr = uverbs_attr_get(attrs_bundle, idx);
750 if (IS_ERR(attr)) {
751 if ((PTR_ERR(attr) != -ENOENT) || !def_val)
752 return PTR_ERR(attr);
753
754 *to = *def_val;
755 } else {
756 *to = attr->ptr_attr.data;
757 }
758
759 if (*to < lower_bound || (*to > 0 && (u64)*to > upper_bound))
760 return -EINVAL;
761
762 return 0;
763 }
764 EXPORT_SYMBOL(_uverbs_get_const_signed);
765
_uverbs_get_const_unsigned(u64 * to,const struct uverbs_attr_bundle * attrs_bundle,size_t idx,u64 upper_bound,u64 * def_val)766 int _uverbs_get_const_unsigned(u64 *to,
767 const struct uverbs_attr_bundle *attrs_bundle,
768 size_t idx, u64 upper_bound, u64 *def_val)
769 {
770 const struct uverbs_attr *attr;
771
772 attr = uverbs_attr_get(attrs_bundle, idx);
773 if (IS_ERR(attr)) {
774 if ((PTR_ERR(attr) != -ENOENT) || !def_val)
775 return PTR_ERR(attr);
776
777 *to = *def_val;
778 } else {
779 *to = attr->ptr_attr.data;
780 }
781
782 if (*to > upper_bound)
783 return -EINVAL;
784
785 return 0;
786 }
787 EXPORT_SYMBOL(_uverbs_get_const_unsigned);
788
uverbs_copy_to_struct_or_zero(const struct uverbs_attr_bundle * bundle,size_t idx,const void * from,size_t size)789 int uverbs_copy_to_struct_or_zero(const struct uverbs_attr_bundle *bundle,
790 size_t idx, const void *from, size_t size)
791 {
792 const struct uverbs_attr *attr = uverbs_attr_get(bundle, idx);
793
794 if (IS_ERR(attr))
795 return PTR_ERR(attr);
796
797 if (size < attr->ptr_attr.len) {
798 if (clear_user(u64_to_user_ptr(attr->ptr_attr.data) + size,
799 attr->ptr_attr.len - size))
800 return -EFAULT;
801 }
802 return uverbs_copy_to(bundle, idx, from, size);
803 }
804 EXPORT_SYMBOL(uverbs_copy_to_struct_or_zero);
805
806 /* Once called an abort will call through to the type's destroy_hw() */
uverbs_finalize_uobj_create(const struct uverbs_attr_bundle * bundle,u16 idx)807 void uverbs_finalize_uobj_create(const struct uverbs_attr_bundle *bundle,
808 u16 idx)
809 {
810 struct bundle_priv *pbundle =
811 container_of(&bundle->hdr, struct bundle_priv, bundle);
812
813 __set_bit(uapi_bkey_attr(uapi_key_attr(idx)),
814 pbundle->uobj_hw_obj_valid);
815 }
816 EXPORT_SYMBOL(uverbs_finalize_uobj_create);
817