1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/cred.h>
3 #include <linux/device.h>
4 #include <linux/dma-buf.h>
5 #include <linux/dma-resv.h>
6 #include <linux/highmem.h>
7 #include <linux/init.h>
8 #include <linux/kernel.h>
9 #include <linux/memfd.h>
10 #include <linux/miscdevice.h>
11 #include <linux/module.h>
12 #include <linux/shmem_fs.h>
13 #include <linux/hugetlb.h>
14 #include <linux/slab.h>
15 #include <linux/udmabuf.h>
16 #include <linux/vmalloc.h>
17 #include <linux/iosys-map.h>
18
19 static int list_limit = 1024;
20 module_param(list_limit, int, 0644);
21 MODULE_PARM_DESC(list_limit, "udmabuf_create_list->count limit. Default is 1024.");
22
23 static int size_limit_mb = INT_MAX;
24 module_param(size_limit_mb, int, 0644);
25 MODULE_PARM_DESC(size_limit_mb, "Max size of a dmabuf, in megabytes. Default is INT_MAX.");
26
27 struct udmabuf {
28 pgoff_t pagecount;
29 struct page **pages;
30
31 /**
32 * Unlike pages, pinned_folios is only used for unpin.
33 * So, nr_pinned is not the same to pagecount, the pinned_folios
34 * only set each folio which already pinned when udmabuf_create.
35 * Note that, since a folio may be pinned multiple times, each folio
36 * can be added to pinned_folios multiple times, depending on how many
37 * times the folio has been pinned when create.
38 */
39 pgoff_t nr_pinned;
40 struct folio **pinned_folios;
41
42 struct sg_table *sg;
43 enum dma_data_direction sg_dir;
44 struct miscdevice *device;
45 };
46
udmabuf_vm_fault(struct vm_fault * vmf)47 static vm_fault_t udmabuf_vm_fault(struct vm_fault *vmf)
48 {
49 struct vm_area_struct *vma = vmf->vma;
50 struct udmabuf *ubuf = vma->vm_private_data;
51 pgoff_t pgoff = vmf->pgoff;
52 unsigned long addr, pfn;
53 vm_fault_t ret;
54
55 if (pgoff >= ubuf->pagecount)
56 return VM_FAULT_SIGBUS;
57
58 pfn = page_to_pfn(ubuf->pages[pgoff]);
59
60 ret = vmf_insert_pfn(vma, vmf->address, pfn);
61 if (ret & VM_FAULT_ERROR)
62 return ret;
63
64 /* pre fault */
65 pgoff = vma->vm_pgoff;
66 addr = vma->vm_start;
67
68 for (; addr < vma->vm_end; pgoff++, addr += PAGE_SIZE) {
69 if (addr == vmf->address)
70 continue;
71
72 if (WARN_ON(pgoff >= ubuf->pagecount))
73 break;
74
75 pfn = page_to_pfn(ubuf->pages[pgoff]);
76
77 /**
78 * If the below vmf_insert_pfn() fails, we do not return an
79 * error here during this pre-fault step. However, an error
80 * will be returned if the failure occurs when the addr is
81 * truly accessed.
82 */
83 if (vmf_insert_pfn(vma, addr, pfn) & VM_FAULT_ERROR)
84 break;
85 }
86
87 return ret;
88 }
89
90 static const struct vm_operations_struct udmabuf_vm_ops = {
91 .fault = udmabuf_vm_fault,
92 };
93
mmap_udmabuf(struct dma_buf * buf,struct vm_area_struct * vma)94 static int mmap_udmabuf(struct dma_buf *buf, struct vm_area_struct *vma)
95 {
96 struct udmabuf *ubuf = buf->priv;
97
98 if ((vma->vm_flags & (VM_SHARED | VM_MAYSHARE)) == 0)
99 return -EINVAL;
100
101 vma->vm_ops = &udmabuf_vm_ops;
102 vma->vm_private_data = ubuf;
103 vm_flags_set(vma, VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP);
104 return 0;
105 }
106
vmap_udmabuf(struct dma_buf * buf,struct iosys_map * map)107 static int vmap_udmabuf(struct dma_buf *buf, struct iosys_map *map)
108 {
109 struct udmabuf *ubuf = buf->priv;
110 void *vaddr;
111
112 dma_resv_assert_held(buf->resv);
113
114 vaddr = vm_map_ram(ubuf->pages, ubuf->pagecount, -1);
115 if (!vaddr)
116 return -EINVAL;
117
118 iosys_map_set_vaddr(map, vaddr);
119 return 0;
120 }
121
vunmap_udmabuf(struct dma_buf * buf,struct iosys_map * map)122 static void vunmap_udmabuf(struct dma_buf *buf, struct iosys_map *map)
123 {
124 struct udmabuf *ubuf = buf->priv;
125
126 dma_resv_assert_held(buf->resv);
127
128 vm_unmap_ram(map->vaddr, ubuf->pagecount);
129 }
130
get_sg_table(struct device * dev,struct dma_buf * buf,enum dma_data_direction direction)131 static struct sg_table *get_sg_table(struct device *dev, struct dma_buf *buf,
132 enum dma_data_direction direction)
133 {
134 struct udmabuf *ubuf = buf->priv;
135 struct sg_table *sg;
136 int ret;
137
138 sg = kzalloc_obj(*sg);
139 if (!sg)
140 return ERR_PTR(-ENOMEM);
141
142 ret = sg_alloc_table_from_pages(sg, ubuf->pages, ubuf->pagecount, 0,
143 ubuf->pagecount << PAGE_SHIFT,
144 GFP_KERNEL);
145 if (ret < 0)
146 goto err_alloc;
147
148 ret = dma_map_sgtable(dev, sg, direction, DMA_ATTR_SKIP_CPU_SYNC);
149 if (ret < 0)
150 goto err_map;
151 return sg;
152
153 err_map:
154 sg_free_table(sg);
155 err_alloc:
156 kfree(sg);
157 return ERR_PTR(ret);
158 }
159
put_sg_table(struct device * dev,struct sg_table * sg,enum dma_data_direction direction)160 static void put_sg_table(struct device *dev, struct sg_table *sg,
161 enum dma_data_direction direction)
162 {
163 dma_unmap_sgtable(dev, sg, direction, DMA_ATTR_SKIP_CPU_SYNC);
164 sg_free_table(sg);
165 kfree(sg);
166 }
167
map_udmabuf(struct dma_buf_attachment * at,enum dma_data_direction direction)168 static struct sg_table *map_udmabuf(struct dma_buf_attachment *at,
169 enum dma_data_direction direction)
170 {
171 return get_sg_table(at->dev, at->dmabuf, direction);
172 }
173
unmap_udmabuf(struct dma_buf_attachment * at,struct sg_table * sg,enum dma_data_direction direction)174 static void unmap_udmabuf(struct dma_buf_attachment *at,
175 struct sg_table *sg,
176 enum dma_data_direction direction)
177 {
178 return put_sg_table(at->dev, sg, direction);
179 }
180
unpin_all_folios(struct udmabuf * ubuf)181 static void unpin_all_folios(struct udmabuf *ubuf)
182 {
183 pgoff_t i;
184
185 for (i = 0; i < ubuf->nr_pinned; ++i)
186 unpin_folio(ubuf->pinned_folios[i]);
187
188 kvfree(ubuf->pinned_folios);
189 }
190
init_udmabuf(struct udmabuf * ubuf,pgoff_t pgcnt)191 static __always_inline int init_udmabuf(struct udmabuf *ubuf, pgoff_t pgcnt)
192 {
193 ubuf->pages = kvmalloc_objs(*ubuf->pages, pgcnt);
194 if (!ubuf->pages)
195 return -ENOMEM;
196
197 ubuf->pinned_folios = kvmalloc_objs(*ubuf->pinned_folios, pgcnt);
198 if (!ubuf->pinned_folios)
199 return -ENOMEM;
200
201 return 0;
202 }
203
deinit_udmabuf(struct udmabuf * ubuf)204 static __always_inline void deinit_udmabuf(struct udmabuf *ubuf)
205 {
206 unpin_all_folios(ubuf);
207 kvfree(ubuf->pages);
208 }
209
release_udmabuf(struct dma_buf * buf)210 static void release_udmabuf(struct dma_buf *buf)
211 {
212 struct udmabuf *ubuf = buf->priv;
213 struct device *dev = ubuf->device->this_device;
214
215 if (ubuf->sg)
216 put_sg_table(dev, ubuf->sg, ubuf->sg_dir);
217
218 deinit_udmabuf(ubuf);
219 kfree(ubuf);
220 }
221
begin_cpu_udmabuf(struct dma_buf * buf,enum dma_data_direction direction)222 static int begin_cpu_udmabuf(struct dma_buf *buf,
223 enum dma_data_direction direction)
224 {
225 struct udmabuf *ubuf = buf->priv;
226 struct device *dev = ubuf->device->this_device;
227
228 if (!ubuf->sg) {
229 ubuf->sg = get_sg_table(dev, buf, direction);
230 if (IS_ERR(ubuf->sg)) {
231 int ret;
232
233 ret = PTR_ERR(ubuf->sg);
234 ubuf->sg = NULL;
235 return ret;
236 } else {
237 ubuf->sg_dir = direction;
238 }
239 }
240
241 dma_sync_sgtable_for_cpu(dev, ubuf->sg, direction);
242 return 0;
243 }
244
end_cpu_udmabuf(struct dma_buf * buf,enum dma_data_direction direction)245 static int end_cpu_udmabuf(struct dma_buf *buf,
246 enum dma_data_direction direction)
247 {
248 struct udmabuf *ubuf = buf->priv;
249 struct device *dev = ubuf->device->this_device;
250
251 if (!ubuf->sg)
252 return -EINVAL;
253
254 dma_sync_sgtable_for_device(dev, ubuf->sg, direction);
255 return 0;
256 }
257
258 static const struct dma_buf_ops udmabuf_ops = {
259 .map_dma_buf = map_udmabuf,
260 .unmap_dma_buf = unmap_udmabuf,
261 .release = release_udmabuf,
262 .mmap = mmap_udmabuf,
263 .vmap = vmap_udmabuf,
264 .vunmap = vunmap_udmabuf,
265 .begin_cpu_access = begin_cpu_udmabuf,
266 .end_cpu_access = end_cpu_udmabuf,
267 };
268
269 #define SEALS_WANTED (F_SEAL_SHRINK)
270 #define SEALS_DENIED (F_SEAL_WRITE|F_SEAL_FUTURE_WRITE)
271
check_memfd_seals(struct file * memfd)272 static int check_memfd_seals(struct file *memfd)
273 {
274 int seals;
275
276 if (!shmem_file(memfd) && !is_file_hugepages(memfd))
277 return -EBADFD;
278
279 seals = memfd_fcntl(memfd, F_GET_SEALS, 0);
280 if (seals == -EINVAL)
281 return -EBADFD;
282
283 if ((seals & SEALS_WANTED) != SEALS_WANTED ||
284 (seals & SEALS_DENIED) != 0)
285 return -EINVAL;
286
287 return 0;
288 }
289
export_udmabuf(struct udmabuf * ubuf,struct miscdevice * device)290 static struct dma_buf *export_udmabuf(struct udmabuf *ubuf,
291 struct miscdevice *device)
292 {
293 DEFINE_DMA_BUF_EXPORT_INFO(exp_info);
294
295 ubuf->device = device;
296 exp_info.ops = &udmabuf_ops;
297 exp_info.size = ubuf->pagecount << PAGE_SHIFT;
298 exp_info.priv = ubuf;
299 exp_info.flags = O_RDWR;
300
301 return dma_buf_export(&exp_info);
302 }
303
udmabuf_pin_folios(struct udmabuf * ubuf,struct file * memfd,loff_t start,loff_t size,struct folio ** folios)304 static long udmabuf_pin_folios(struct udmabuf *ubuf, struct file *memfd,
305 loff_t start, loff_t size, struct folio **folios)
306 {
307 pgoff_t nr_pinned = ubuf->nr_pinned;
308 pgoff_t upgcnt = ubuf->pagecount;
309 u32 cur_folio, cur_pgcnt;
310 pgoff_t pgoff, pgcnt;
311 long nr_folios;
312 loff_t end;
313
314 pgcnt = size >> PAGE_SHIFT;
315 end = start + (pgcnt << PAGE_SHIFT) - 1;
316 nr_folios = memfd_pin_folios(memfd, start, end, folios, pgcnt, &pgoff);
317 if (nr_folios <= 0)
318 return nr_folios ? nr_folios : -EINVAL;
319
320 cur_pgcnt = 0;
321 for (cur_folio = 0; cur_folio < nr_folios; ++cur_folio) {
322 pgoff_t subpgoff = pgoff;
323 size_t fsize = folio_size(folios[cur_folio]);
324
325 ubuf->pinned_folios[nr_pinned++] = folios[cur_folio];
326
327 for (; subpgoff < fsize; subpgoff += PAGE_SIZE) {
328 ubuf->pages[upgcnt] = folio_page(folios[cur_folio],
329 subpgoff >> PAGE_SHIFT);
330 ++upgcnt;
331
332 if (++cur_pgcnt >= pgcnt)
333 goto end;
334 }
335
336 /**
337 * In a given range, only the first subpage of the first folio
338 * has an offset, that is returned by memfd_pin_folios().
339 * The first subpages of other folios (in the range) have an
340 * offset of 0.
341 */
342 pgoff = 0;
343 }
344 end:
345 ubuf->pagecount = upgcnt;
346 ubuf->nr_pinned = nr_pinned;
347 return 0;
348 }
349
udmabuf_create(struct miscdevice * device,struct udmabuf_create_list * head,struct udmabuf_create_item * list)350 static long udmabuf_create(struct miscdevice *device,
351 struct udmabuf_create_list *head,
352 struct udmabuf_create_item *list)
353 {
354 unsigned long max_nr_folios = 0;
355 struct folio **folios = NULL;
356 pgoff_t pgcnt = 0, pglimit;
357 struct udmabuf *ubuf;
358 struct dma_buf *dmabuf;
359 long ret = -EINVAL;
360 u32 i, flags;
361
362 ubuf = kzalloc_obj(*ubuf);
363 if (!ubuf)
364 return -ENOMEM;
365
366 pglimit = ((u64)size_limit_mb * 1024 * 1024) >> PAGE_SHIFT;
367 for (i = 0; i < head->count; i++) {
368 pgoff_t subpgcnt;
369
370 if (!PAGE_ALIGNED(list[i].offset))
371 goto err_noinit;
372 if (!PAGE_ALIGNED(list[i].size))
373 goto err_noinit;
374
375 subpgcnt = list[i].size >> PAGE_SHIFT;
376 pgcnt += subpgcnt;
377 if (pgcnt > pglimit)
378 goto err_noinit;
379
380 max_nr_folios = max_t(unsigned long, subpgcnt, max_nr_folios);
381 }
382
383 if (!pgcnt)
384 goto err_noinit;
385
386 ret = init_udmabuf(ubuf, pgcnt);
387 if (ret)
388 goto err;
389
390 folios = kvmalloc_objs(*folios, max_nr_folios);
391 if (!folios) {
392 ret = -ENOMEM;
393 goto err;
394 }
395
396 for (i = 0; i < head->count; i++) {
397 struct file *memfd = fget(list[i].memfd);
398
399 if (!memfd) {
400 ret = -EBADFD;
401 goto err;
402 }
403
404 /*
405 * Take the inode lock to protect against concurrent
406 * memfd_add_seals(), which takes this lock in write mode.
407 */
408 inode_lock_shared(file_inode(memfd));
409 ret = check_memfd_seals(memfd);
410 if (ret)
411 goto out_unlock;
412
413 ret = udmabuf_pin_folios(ubuf, memfd, list[i].offset,
414 list[i].size, folios);
415 out_unlock:
416 inode_unlock_shared(file_inode(memfd));
417 fput(memfd);
418 if (ret)
419 goto err;
420 }
421
422 flags = head->flags & UDMABUF_FLAGS_CLOEXEC ? O_CLOEXEC : 0;
423 dmabuf = export_udmabuf(ubuf, device);
424 if (IS_ERR(dmabuf)) {
425 ret = PTR_ERR(dmabuf);
426 goto err;
427 }
428 /*
429 * Ownership of ubuf is held by the dmabuf from here.
430 * If the following dma_buf_fd() fails, dma_buf_put() cleans up both the
431 * dmabuf and the ubuf (through udmabuf_ops.release).
432 */
433
434 ret = dma_buf_fd(dmabuf, flags);
435 if (ret < 0)
436 dma_buf_put(dmabuf);
437
438 kvfree(folios);
439 return ret;
440
441 err:
442 deinit_udmabuf(ubuf);
443 err_noinit:
444 kfree(ubuf);
445 kvfree(folios);
446 return ret;
447 }
448
udmabuf_ioctl_create(struct file * filp,unsigned long arg)449 static long udmabuf_ioctl_create(struct file *filp, unsigned long arg)
450 {
451 struct udmabuf_create create;
452 struct udmabuf_create_list head;
453 struct udmabuf_create_item list;
454
455 if (copy_from_user(&create, (void __user *)arg,
456 sizeof(create)))
457 return -EFAULT;
458
459 head.flags = create.flags;
460 head.count = 1;
461 list.memfd = create.memfd;
462 list.offset = create.offset;
463 list.size = create.size;
464
465 return udmabuf_create(filp->private_data, &head, &list);
466 }
467
udmabuf_ioctl_create_list(struct file * filp,unsigned long arg)468 static long udmabuf_ioctl_create_list(struct file *filp, unsigned long arg)
469 {
470 struct udmabuf_create_list head;
471 struct udmabuf_create_item *list;
472 int ret = -EINVAL;
473 u32 lsize;
474
475 if (copy_from_user(&head, (void __user *)arg, sizeof(head)))
476 return -EFAULT;
477 if (head.count > list_limit)
478 return -EINVAL;
479 lsize = sizeof(struct udmabuf_create_item) * head.count;
480 list = memdup_user((void __user *)(arg + sizeof(head)), lsize);
481 if (IS_ERR(list))
482 return PTR_ERR(list);
483
484 ret = udmabuf_create(filp->private_data, &head, list);
485 kfree(list);
486 return ret;
487 }
488
udmabuf_ioctl(struct file * filp,unsigned int ioctl,unsigned long arg)489 static long udmabuf_ioctl(struct file *filp, unsigned int ioctl,
490 unsigned long arg)
491 {
492 long ret;
493
494 switch (ioctl) {
495 case UDMABUF_CREATE:
496 ret = udmabuf_ioctl_create(filp, arg);
497 break;
498 case UDMABUF_CREATE_LIST:
499 ret = udmabuf_ioctl_create_list(filp, arg);
500 break;
501 default:
502 ret = -ENOTTY;
503 break;
504 }
505 return ret;
506 }
507
508 static const struct file_operations udmabuf_fops = {
509 .owner = THIS_MODULE,
510 .unlocked_ioctl = udmabuf_ioctl,
511 #ifdef CONFIG_COMPAT
512 .compat_ioctl = udmabuf_ioctl,
513 #endif
514 };
515
516 static struct miscdevice udmabuf_misc = {
517 .minor = MISC_DYNAMIC_MINOR,
518 .name = "udmabuf",
519 .fops = &udmabuf_fops,
520 };
521
udmabuf_dev_init(void)522 static int __init udmabuf_dev_init(void)
523 {
524 int ret;
525
526 ret = misc_register(&udmabuf_misc);
527 if (ret < 0) {
528 pr_err("Could not initialize udmabuf device\n");
529 return ret;
530 }
531
532 ret = dma_coerce_mask_and_coherent(udmabuf_misc.this_device,
533 DMA_BIT_MASK(64));
534 if (ret < 0) {
535 pr_err("Could not setup DMA mask for udmabuf device\n");
536 misc_deregister(&udmabuf_misc);
537 return ret;
538 }
539
540 return 0;
541 }
542
udmabuf_dev_exit(void)543 static void __exit udmabuf_dev_exit(void)
544 {
545 misc_deregister(&udmabuf_misc);
546 }
547
548 module_init(udmabuf_dev_init)
549 module_exit(udmabuf_dev_exit)
550
551 MODULE_AUTHOR("Gerd Hoffmann <kraxel@redhat.com>");
552