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20#include <linux/cache.h>
21#include <linux/dma-mapping.h>
22#include <linux/mm.h>
23#include <linux/module.h>
24#include <linux/spinlock.h>
25#include <linux/string.h>
26#include <linux/swiotlb.h>
27#include <linux/pfn.h>
28#include <linux/types.h>
29#include <linux/ctype.h>
30#include <linux/highmem.h>
31
32#include <asm/io.h>
33#include <asm/dma.h>
34#include <asm/scatterlist.h>
35
36#include <linux/init.h>
37#include <linux/bootmem.h>
38#include <linux/iommu-helper.h>
39
40#define OFFSET(val,align) ((unsigned long) \
41 ( (val) & ( (align) - 1)))
42
43#define SLABS_PER_PAGE (1 << (PAGE_SHIFT - IO_TLB_SHIFT))
44
45
46
47
48
49
50#define IO_TLB_MIN_SLABS ((1<<20) >> IO_TLB_SHIFT)
51
52
53
54
55enum dma_sync_target {
56 SYNC_FOR_CPU = 0,
57 SYNC_FOR_DEVICE = 1,
58};
59
60int swiotlb_force;
61
62
63
64
65
66
67static char *io_tlb_start, *io_tlb_end;
68
69
70
71
72
73static unsigned long io_tlb_nslabs;
74
75
76
77
78static unsigned long io_tlb_overflow = 32*1024;
79
80void *io_tlb_overflow_buffer;
81
82
83
84
85
86static unsigned int *io_tlb_list;
87static unsigned int io_tlb_index;
88
89
90
91
92
93static phys_addr_t *io_tlb_orig_addr;
94
95
96
97
98static DEFINE_SPINLOCK(io_tlb_lock);
99
100static int __init
101setup_io_tlb_npages(char *str)
102{
103 if (isdigit(*str)) {
104 io_tlb_nslabs = simple_strtoul(str, &str, 0);
105
106 io_tlb_nslabs = ALIGN(io_tlb_nslabs, IO_TLB_SEGSIZE);
107 }
108 if (*str == ',')
109 ++str;
110 if (!strcmp(str, "force"))
111 swiotlb_force = 1;
112 return 1;
113}
114__setup("swiotlb=", setup_io_tlb_npages);
115
116
117void * __weak __init swiotlb_alloc_boot(size_t size, unsigned long nslabs)
118{
119 return alloc_bootmem_low_pages(size);
120}
121
122void * __weak swiotlb_alloc(unsigned order, unsigned long nslabs)
123{
124 return (void *)__get_free_pages(GFP_DMA | __GFP_NOWARN, order);
125}
126
127dma_addr_t __weak swiotlb_phys_to_bus(struct device *hwdev, phys_addr_t paddr)
128{
129 return paddr;
130}
131
132phys_addr_t __weak swiotlb_bus_to_phys(dma_addr_t baddr)
133{
134 return baddr;
135}
136
137static dma_addr_t swiotlb_virt_to_bus(struct device *hwdev,
138 volatile void *address)
139{
140 return swiotlb_phys_to_bus(hwdev, virt_to_phys(address));
141}
142
143static void *swiotlb_bus_to_virt(dma_addr_t address)
144{
145 return phys_to_virt(swiotlb_bus_to_phys(address));
146}
147
148int __weak swiotlb_arch_range_needs_mapping(void *ptr, size_t size)
149{
150 return 0;
151}
152
153static void swiotlb_print_info(unsigned long bytes)
154{
155 phys_addr_t pstart, pend;
156
157 pstart = virt_to_phys(io_tlb_start);
158 pend = virt_to_phys(io_tlb_end);
159
160 printk(KERN_INFO "Placing %luMB software IO TLB between %p - %p\n",
161 bytes >> 20, io_tlb_start, io_tlb_end);
162 printk(KERN_INFO "software IO TLB at phys %#llx - %#llx\n",
163 (unsigned long long)pstart,
164 (unsigned long long)pend);
165}
166
167
168
169
170
171void __init
172swiotlb_init_with_default_size(size_t default_size)
173{
174 unsigned long i, bytes;
175
176 if (!io_tlb_nslabs) {
177 io_tlb_nslabs = (default_size >> IO_TLB_SHIFT);
178 io_tlb_nslabs = ALIGN(io_tlb_nslabs, IO_TLB_SEGSIZE);
179 }
180
181 bytes = io_tlb_nslabs << IO_TLB_SHIFT;
182
183
184
185
186 io_tlb_start = swiotlb_alloc_boot(bytes, io_tlb_nslabs);
187 if (!io_tlb_start)
188 panic("Cannot allocate SWIOTLB buffer");
189 io_tlb_end = io_tlb_start + bytes;
190
191
192
193
194
195
196 io_tlb_list = alloc_bootmem(io_tlb_nslabs * sizeof(int));
197 for (i = 0; i < io_tlb_nslabs; i++)
198 io_tlb_list[i] = IO_TLB_SEGSIZE - OFFSET(i, IO_TLB_SEGSIZE);
199 io_tlb_index = 0;
200 io_tlb_orig_addr = alloc_bootmem(io_tlb_nslabs * sizeof(phys_addr_t));
201
202
203
204
205 io_tlb_overflow_buffer = alloc_bootmem_low(io_tlb_overflow);
206 if (!io_tlb_overflow_buffer)
207 panic("Cannot allocate SWIOTLB overflow buffer!\n");
208
209 swiotlb_print_info(bytes);
210}
211
212void __init
213swiotlb_init(void)
214{
215 swiotlb_init_with_default_size(64 * (1<<20));
216}
217
218
219
220
221
222
223int
224swiotlb_late_init_with_default_size(size_t default_size)
225{
226 unsigned long i, bytes, req_nslabs = io_tlb_nslabs;
227 unsigned int order;
228
229 if (!io_tlb_nslabs) {
230 io_tlb_nslabs = (default_size >> IO_TLB_SHIFT);
231 io_tlb_nslabs = ALIGN(io_tlb_nslabs, IO_TLB_SEGSIZE);
232 }
233
234
235
236
237 order = get_order(io_tlb_nslabs << IO_TLB_SHIFT);
238 io_tlb_nslabs = SLABS_PER_PAGE << order;
239 bytes = io_tlb_nslabs << IO_TLB_SHIFT;
240
241 while ((SLABS_PER_PAGE << order) > IO_TLB_MIN_SLABS) {
242 io_tlb_start = swiotlb_alloc(order, io_tlb_nslabs);
243 if (io_tlb_start)
244 break;
245 order--;
246 }
247
248 if (!io_tlb_start)
249 goto cleanup1;
250
251 if (order != get_order(bytes)) {
252 printk(KERN_WARNING "Warning: only able to allocate %ld MB "
253 "for software IO TLB\n", (PAGE_SIZE << order) >> 20);
254 io_tlb_nslabs = SLABS_PER_PAGE << order;
255 bytes = io_tlb_nslabs << IO_TLB_SHIFT;
256 }
257 io_tlb_end = io_tlb_start + bytes;
258 memset(io_tlb_start, 0, bytes);
259
260
261
262
263
264
265 io_tlb_list = (unsigned int *)__get_free_pages(GFP_KERNEL,
266 get_order(io_tlb_nslabs * sizeof(int)));
267 if (!io_tlb_list)
268 goto cleanup2;
269
270 for (i = 0; i < io_tlb_nslabs; i++)
271 io_tlb_list[i] = IO_TLB_SEGSIZE - OFFSET(i, IO_TLB_SEGSIZE);
272 io_tlb_index = 0;
273
274 io_tlb_orig_addr = (phys_addr_t *)
275 __get_free_pages(GFP_KERNEL,
276 get_order(io_tlb_nslabs *
277 sizeof(phys_addr_t)));
278 if (!io_tlb_orig_addr)
279 goto cleanup3;
280
281 memset(io_tlb_orig_addr, 0, io_tlb_nslabs * sizeof(phys_addr_t));
282
283
284
285
286 io_tlb_overflow_buffer = (void *)__get_free_pages(GFP_DMA,
287 get_order(io_tlb_overflow));
288 if (!io_tlb_overflow_buffer)
289 goto cleanup4;
290
291 swiotlb_print_info(bytes);
292
293 return 0;
294
295cleanup4:
296 free_pages((unsigned long)io_tlb_orig_addr,
297 get_order(io_tlb_nslabs * sizeof(phys_addr_t)));
298 io_tlb_orig_addr = NULL;
299cleanup3:
300 free_pages((unsigned long)io_tlb_list, get_order(io_tlb_nslabs *
301 sizeof(int)));
302 io_tlb_list = NULL;
303cleanup2:
304 io_tlb_end = NULL;
305 free_pages((unsigned long)io_tlb_start, order);
306 io_tlb_start = NULL;
307cleanup1:
308 io_tlb_nslabs = req_nslabs;
309 return -ENOMEM;
310}
311
312static int
313address_needs_mapping(struct device *hwdev, dma_addr_t addr, size_t size)
314{
315 return !is_buffer_dma_capable(dma_get_mask(hwdev), addr, size);
316}
317
318static inline int range_needs_mapping(void *ptr, size_t size)
319{
320 return swiotlb_force || swiotlb_arch_range_needs_mapping(ptr, size);
321}
322
323static int is_swiotlb_buffer(char *addr)
324{
325 return addr >= io_tlb_start && addr < io_tlb_end;
326}
327
328
329
330
331static void swiotlb_bounce(phys_addr_t phys, char *dma_addr, size_t size,
332 enum dma_data_direction dir)
333{
334 unsigned long pfn = PFN_DOWN(phys);
335
336 if (PageHighMem(pfn_to_page(pfn))) {
337
338 unsigned int offset = phys & ~PAGE_MASK;
339 char *buffer;
340 unsigned int sz = 0;
341 unsigned long flags;
342
343 while (size) {
344 sz = min(PAGE_SIZE - offset, size);
345
346 local_irq_save(flags);
347 buffer = kmap_atomic(pfn_to_page(pfn),
348 KM_BOUNCE_READ);
349 if (dir == DMA_TO_DEVICE)
350 memcpy(dma_addr, buffer + offset, sz);
351 else
352 memcpy(buffer + offset, dma_addr, sz);
353 kunmap_atomic(buffer, KM_BOUNCE_READ);
354 local_irq_restore(flags);
355
356 size -= sz;
357 pfn++;
358 dma_addr += sz;
359 offset = 0;
360 }
361 } else {
362 if (dir == DMA_TO_DEVICE)
363 memcpy(dma_addr, phys_to_virt(phys), size);
364 else
365 memcpy(phys_to_virt(phys), dma_addr, size);
366 }
367}
368
369
370
371
372static void *
373map_single(struct device *hwdev, phys_addr_t phys, size_t size, int dir)
374{
375 unsigned long flags;
376 char *dma_addr;
377 unsigned int nslots, stride, index, wrap;
378 int i;
379 unsigned long start_dma_addr;
380 unsigned long mask;
381 unsigned long offset_slots;
382 unsigned long max_slots;
383
384 mask = dma_get_seg_boundary(hwdev);
385 start_dma_addr = swiotlb_virt_to_bus(hwdev, io_tlb_start) & mask;
386
387 offset_slots = ALIGN(start_dma_addr, 1 << IO_TLB_SHIFT) >> IO_TLB_SHIFT;
388
389
390
391
392 max_slots = mask + 1
393 ? ALIGN(mask + 1, 1 << IO_TLB_SHIFT) >> IO_TLB_SHIFT
394 : 1UL << (BITS_PER_LONG - IO_TLB_SHIFT);
395
396
397
398
399
400 nslots = ALIGN(size, 1 << IO_TLB_SHIFT) >> IO_TLB_SHIFT;
401 if (size > PAGE_SIZE)
402 stride = (1 << (PAGE_SHIFT - IO_TLB_SHIFT));
403 else
404 stride = 1;
405
406 BUG_ON(!nslots);
407
408
409
410
411
412 spin_lock_irqsave(&io_tlb_lock, flags);
413 index = ALIGN(io_tlb_index, stride);
414 if (index >= io_tlb_nslabs)
415 index = 0;
416 wrap = index;
417
418 do {
419 while (iommu_is_span_boundary(index, nslots, offset_slots,
420 max_slots)) {
421 index += stride;
422 if (index >= io_tlb_nslabs)
423 index = 0;
424 if (index == wrap)
425 goto not_found;
426 }
427
428
429
430
431
432
433 if (io_tlb_list[index] >= nslots) {
434 int count = 0;
435
436 for (i = index; i < (int) (index + nslots); i++)
437 io_tlb_list[i] = 0;
438 for (i = index - 1; (OFFSET(i, IO_TLB_SEGSIZE) != IO_TLB_SEGSIZE - 1) && io_tlb_list[i]; i--)
439 io_tlb_list[i] = ++count;
440 dma_addr = io_tlb_start + (index << IO_TLB_SHIFT);
441
442
443
444
445
446 io_tlb_index = ((index + nslots) < io_tlb_nslabs
447 ? (index + nslots) : 0);
448
449 goto found;
450 }
451 index += stride;
452 if (index >= io_tlb_nslabs)
453 index = 0;
454 } while (index != wrap);
455
456not_found:
457 spin_unlock_irqrestore(&io_tlb_lock, flags);
458 return NULL;
459found:
460 spin_unlock_irqrestore(&io_tlb_lock, flags);
461
462
463
464
465
466
467 for (i = 0; i < nslots; i++)
468 io_tlb_orig_addr[index+i] = phys + (i << IO_TLB_SHIFT);
469 if (dir == DMA_TO_DEVICE || dir == DMA_BIDIRECTIONAL)
470 swiotlb_bounce(phys, dma_addr, size, DMA_TO_DEVICE);
471
472 return dma_addr;
473}
474
475
476
477
478static void
479unmap_single(struct device *hwdev, char *dma_addr, size_t size, int dir)
480{
481 unsigned long flags;
482 int i, count, nslots = ALIGN(size, 1 << IO_TLB_SHIFT) >> IO_TLB_SHIFT;
483 int index = (dma_addr - io_tlb_start) >> IO_TLB_SHIFT;
484 phys_addr_t phys = io_tlb_orig_addr[index];
485
486
487
488
489 if (phys && ((dir == DMA_FROM_DEVICE) || (dir == DMA_BIDIRECTIONAL)))
490 swiotlb_bounce(phys, dma_addr, size, DMA_FROM_DEVICE);
491
492
493
494
495
496
497
498 spin_lock_irqsave(&io_tlb_lock, flags);
499 {
500 count = ((index + nslots) < ALIGN(index + 1, IO_TLB_SEGSIZE) ?
501 io_tlb_list[index + nslots] : 0);
502
503
504
505
506 for (i = index + nslots - 1; i >= index; i--)
507 io_tlb_list[i] = ++count;
508
509
510
511
512 for (i = index - 1; (OFFSET(i, IO_TLB_SEGSIZE) != IO_TLB_SEGSIZE -1) && io_tlb_list[i]; i--)
513 io_tlb_list[i] = ++count;
514 }
515 spin_unlock_irqrestore(&io_tlb_lock, flags);
516}
517
518static void
519sync_single(struct device *hwdev, char *dma_addr, size_t size,
520 int dir, int target)
521{
522 int index = (dma_addr - io_tlb_start) >> IO_TLB_SHIFT;
523 phys_addr_t phys = io_tlb_orig_addr[index];
524
525 phys += ((unsigned long)dma_addr & ((1 << IO_TLB_SHIFT) - 1));
526
527 switch (target) {
528 case SYNC_FOR_CPU:
529 if (likely(dir == DMA_FROM_DEVICE || dir == DMA_BIDIRECTIONAL))
530 swiotlb_bounce(phys, dma_addr, size, DMA_FROM_DEVICE);
531 else
532 BUG_ON(dir != DMA_TO_DEVICE);
533 break;
534 case SYNC_FOR_DEVICE:
535 if (likely(dir == DMA_TO_DEVICE || dir == DMA_BIDIRECTIONAL))
536 swiotlb_bounce(phys, dma_addr, size, DMA_TO_DEVICE);
537 else
538 BUG_ON(dir != DMA_FROM_DEVICE);
539 break;
540 default:
541 BUG();
542 }
543}
544
545void *
546swiotlb_alloc_coherent(struct device *hwdev, size_t size,
547 dma_addr_t *dma_handle, gfp_t flags)
548{
549 dma_addr_t dev_addr;
550 void *ret;
551 int order = get_order(size);
552 u64 dma_mask = DMA_32BIT_MASK;
553
554 if (hwdev && hwdev->coherent_dma_mask)
555 dma_mask = hwdev->coherent_dma_mask;
556
557 ret = (void *)__get_free_pages(flags, order);
558 if (ret &&
559 !is_buffer_dma_capable(dma_mask, swiotlb_virt_to_bus(hwdev, ret),
560 size)) {
561
562
563
564
565 free_pages((unsigned long) ret, order);
566 ret = NULL;
567 }
568 if (!ret) {
569
570
571
572
573
574
575 ret = map_single(hwdev, 0, size, DMA_FROM_DEVICE);
576 if (!ret)
577 return NULL;
578 }
579
580 memset(ret, 0, size);
581 dev_addr = swiotlb_virt_to_bus(hwdev, ret);
582
583
584 if (!is_buffer_dma_capable(dma_mask, dev_addr, size)) {
585 printk("hwdev DMA mask = 0x%016Lx, dev_addr = 0x%016Lx\n",
586 (unsigned long long)dma_mask,
587 (unsigned long long)dev_addr);
588
589
590 unmap_single(hwdev, ret, size, DMA_TO_DEVICE);
591 return NULL;
592 }
593 *dma_handle = dev_addr;
594 return ret;
595}
596EXPORT_SYMBOL(swiotlb_alloc_coherent);
597
598void
599swiotlb_free_coherent(struct device *hwdev, size_t size, void *vaddr,
600 dma_addr_t dma_handle)
601{
602 WARN_ON(irqs_disabled());
603 if (!is_swiotlb_buffer(vaddr))
604 free_pages((unsigned long) vaddr, get_order(size));
605 else
606
607 unmap_single(hwdev, vaddr, size, DMA_TO_DEVICE);
608}
609EXPORT_SYMBOL(swiotlb_free_coherent);
610
611static void
612swiotlb_full(struct device *dev, size_t size, int dir, int do_panic)
613{
614
615
616
617
618
619
620
621 printk(KERN_ERR "DMA: Out of SW-IOMMU space for %zu bytes at "
622 "device %s\n", size, dev ? dev_name(dev) : "?");
623
624 if (size > io_tlb_overflow && do_panic) {
625 if (dir == DMA_FROM_DEVICE || dir == DMA_BIDIRECTIONAL)
626 panic("DMA: Memory would be corrupted\n");
627 if (dir == DMA_TO_DEVICE || dir == DMA_BIDIRECTIONAL)
628 panic("DMA: Random memory would be DMAed\n");
629 }
630}
631
632
633
634
635
636
637
638
639dma_addr_t
640swiotlb_map_single_attrs(struct device *hwdev, void *ptr, size_t size,
641 int dir, struct dma_attrs *attrs)
642{
643 dma_addr_t dev_addr = swiotlb_virt_to_bus(hwdev, ptr);
644 void *map;
645
646 BUG_ON(dir == DMA_NONE);
647
648
649
650
651
652 if (!address_needs_mapping(hwdev, dev_addr, size) &&
653 !range_needs_mapping(ptr, size))
654 return dev_addr;
655
656
657
658
659 map = map_single(hwdev, virt_to_phys(ptr), size, dir);
660 if (!map) {
661 swiotlb_full(hwdev, size, dir, 1);
662 map = io_tlb_overflow_buffer;
663 }
664
665 dev_addr = swiotlb_virt_to_bus(hwdev, map);
666
667
668
669
670 if (address_needs_mapping(hwdev, dev_addr, size))
671 panic("map_single: bounce buffer is not DMA'ble");
672
673 return dev_addr;
674}
675EXPORT_SYMBOL(swiotlb_map_single_attrs);
676
677dma_addr_t
678swiotlb_map_single(struct device *hwdev, void *ptr, size_t size, int dir)
679{
680 return swiotlb_map_single_attrs(hwdev, ptr, size, dir, NULL);
681}
682EXPORT_SYMBOL(swiotlb_map_single);
683
684
685
686
687
688
689
690
691
692void
693swiotlb_unmap_single_attrs(struct device *hwdev, dma_addr_t dev_addr,
694 size_t size, int dir, struct dma_attrs *attrs)
695{
696 char *dma_addr = swiotlb_bus_to_virt(dev_addr);
697
698 BUG_ON(dir == DMA_NONE);
699 if (is_swiotlb_buffer(dma_addr))
700 unmap_single(hwdev, dma_addr, size, dir);
701 else if (dir == DMA_FROM_DEVICE)
702 dma_mark_clean(dma_addr, size);
703}
704EXPORT_SYMBOL(swiotlb_unmap_single_attrs);
705
706void
707swiotlb_unmap_single(struct device *hwdev, dma_addr_t dev_addr, size_t size,
708 int dir)
709{
710 return swiotlb_unmap_single_attrs(hwdev, dev_addr, size, dir, NULL);
711}
712EXPORT_SYMBOL(swiotlb_unmap_single);
713
714
715
716
717
718
719
720
721
722
723
724static void
725swiotlb_sync_single(struct device *hwdev, dma_addr_t dev_addr,
726 size_t size, int dir, int target)
727{
728 char *dma_addr = swiotlb_bus_to_virt(dev_addr);
729
730 BUG_ON(dir == DMA_NONE);
731 if (is_swiotlb_buffer(dma_addr))
732 sync_single(hwdev, dma_addr, size, dir, target);
733 else if (dir == DMA_FROM_DEVICE)
734 dma_mark_clean(dma_addr, size);
735}
736
737void
738swiotlb_sync_single_for_cpu(struct device *hwdev, dma_addr_t dev_addr,
739 size_t size, int dir)
740{
741 swiotlb_sync_single(hwdev, dev_addr, size, dir, SYNC_FOR_CPU);
742}
743EXPORT_SYMBOL(swiotlb_sync_single_for_cpu);
744
745void
746swiotlb_sync_single_for_device(struct device *hwdev, dma_addr_t dev_addr,
747 size_t size, int dir)
748{
749 swiotlb_sync_single(hwdev, dev_addr, size, dir, SYNC_FOR_DEVICE);
750}
751EXPORT_SYMBOL(swiotlb_sync_single_for_device);
752
753
754
755
756static void
757swiotlb_sync_single_range(struct device *hwdev, dma_addr_t dev_addr,
758 unsigned long offset, size_t size,
759 int dir, int target)
760{
761 char *dma_addr = swiotlb_bus_to_virt(dev_addr) + offset;
762
763 BUG_ON(dir == DMA_NONE);
764 if (is_swiotlb_buffer(dma_addr))
765 sync_single(hwdev, dma_addr, size, dir, target);
766 else if (dir == DMA_FROM_DEVICE)
767 dma_mark_clean(dma_addr, size);
768}
769
770void
771swiotlb_sync_single_range_for_cpu(struct device *hwdev, dma_addr_t dev_addr,
772 unsigned long offset, size_t size, int dir)
773{
774 swiotlb_sync_single_range(hwdev, dev_addr, offset, size, dir,
775 SYNC_FOR_CPU);
776}
777EXPORT_SYMBOL_GPL(swiotlb_sync_single_range_for_cpu);
778
779void
780swiotlb_sync_single_range_for_device(struct device *hwdev, dma_addr_t dev_addr,
781 unsigned long offset, size_t size, int dir)
782{
783 swiotlb_sync_single_range(hwdev, dev_addr, offset, size, dir,
784 SYNC_FOR_DEVICE);
785}
786EXPORT_SYMBOL_GPL(swiotlb_sync_single_range_for_device);
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804int
805swiotlb_map_sg_attrs(struct device *hwdev, struct scatterlist *sgl, int nelems,
806 int dir, struct dma_attrs *attrs)
807{
808 struct scatterlist *sg;
809 int i;
810
811 BUG_ON(dir == DMA_NONE);
812
813 for_each_sg(sgl, sg, nelems, i) {
814 void *addr = sg_virt(sg);
815 dma_addr_t dev_addr = swiotlb_virt_to_bus(hwdev, addr);
816
817 if (range_needs_mapping(addr, sg->length) ||
818 address_needs_mapping(hwdev, dev_addr, sg->length)) {
819 void *map = map_single(hwdev, sg_phys(sg),
820 sg->length, dir);
821 if (!map) {
822
823
824 swiotlb_full(hwdev, sg->length, dir, 0);
825 swiotlb_unmap_sg_attrs(hwdev, sgl, i, dir,
826 attrs);
827 sgl[0].dma_length = 0;
828 return 0;
829 }
830 sg->dma_address = swiotlb_virt_to_bus(hwdev, map);
831 } else
832 sg->dma_address = dev_addr;
833 sg->dma_length = sg->length;
834 }
835 return nelems;
836}
837EXPORT_SYMBOL(swiotlb_map_sg_attrs);
838
839int
840swiotlb_map_sg(struct device *hwdev, struct scatterlist *sgl, int nelems,
841 int dir)
842{
843 return swiotlb_map_sg_attrs(hwdev, sgl, nelems, dir, NULL);
844}
845EXPORT_SYMBOL(swiotlb_map_sg);
846
847
848
849
850
851void
852swiotlb_unmap_sg_attrs(struct device *hwdev, struct scatterlist *sgl,
853 int nelems, int dir, struct dma_attrs *attrs)
854{
855 struct scatterlist *sg;
856 int i;
857
858 BUG_ON(dir == DMA_NONE);
859
860 for_each_sg(sgl, sg, nelems, i) {
861 if (sg->dma_address != swiotlb_virt_to_bus(hwdev, sg_virt(sg)))
862 unmap_single(hwdev, swiotlb_bus_to_virt(sg->dma_address),
863 sg->dma_length, dir);
864 else if (dir == DMA_FROM_DEVICE)
865 dma_mark_clean(sg_virt(sg), sg->dma_length);
866 }
867}
868EXPORT_SYMBOL(swiotlb_unmap_sg_attrs);
869
870void
871swiotlb_unmap_sg(struct device *hwdev, struct scatterlist *sgl, int nelems,
872 int dir)
873{
874 return swiotlb_unmap_sg_attrs(hwdev, sgl, nelems, dir, NULL);
875}
876EXPORT_SYMBOL(swiotlb_unmap_sg);
877
878
879
880
881
882
883
884
885static void
886swiotlb_sync_sg(struct device *hwdev, struct scatterlist *sgl,
887 int nelems, int dir, int target)
888{
889 struct scatterlist *sg;
890 int i;
891
892 BUG_ON(dir == DMA_NONE);
893
894 for_each_sg(sgl, sg, nelems, i) {
895 if (sg->dma_address != swiotlb_virt_to_bus(hwdev, sg_virt(sg)))
896 sync_single(hwdev, swiotlb_bus_to_virt(sg->dma_address),
897 sg->dma_length, dir, target);
898 else if (dir == DMA_FROM_DEVICE)
899 dma_mark_clean(sg_virt(sg), sg->dma_length);
900 }
901}
902
903void
904swiotlb_sync_sg_for_cpu(struct device *hwdev, struct scatterlist *sg,
905 int nelems, int dir)
906{
907 swiotlb_sync_sg(hwdev, sg, nelems, dir, SYNC_FOR_CPU);
908}
909EXPORT_SYMBOL(swiotlb_sync_sg_for_cpu);
910
911void
912swiotlb_sync_sg_for_device(struct device *hwdev, struct scatterlist *sg,
913 int nelems, int dir)
914{
915 swiotlb_sync_sg(hwdev, sg, nelems, dir, SYNC_FOR_DEVICE);
916}
917EXPORT_SYMBOL(swiotlb_sync_sg_for_device);
918
919int
920swiotlb_dma_mapping_error(struct device *hwdev, dma_addr_t dma_addr)
921{
922 return (dma_addr == swiotlb_virt_to_bus(hwdev, io_tlb_overflow_buffer));
923}
924EXPORT_SYMBOL(swiotlb_dma_mapping_error);
925
926
927
928
929
930
931
932int
933swiotlb_dma_supported(struct device *hwdev, u64 mask)
934{
935 return swiotlb_virt_to_bus(hwdev, io_tlb_end - 1) <= mask;
936}
937EXPORT_SYMBOL(swiotlb_dma_supported);
938