1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3 * Dynamic DMA mapping support for AMD Hammer.
4 *
5 * Use the integrated AGP GART in the Hammer northbridge as an IOMMU for PCI.
6 * This allows to use PCI devices that only support 32bit addresses on systems
7 * with more than 4GB.
8 *
9 * See Documentation/core-api/dma-api-howto.rst for the interface specification.
10 *
11 * Copyright 2002 Andi Kleen, SuSE Labs.
12 */
13
14 #include <linux/types.h>
15 #include <linux/ctype.h>
16 #include <linux/agp_backend.h>
17 #include <linux/init.h>
18 #include <linux/mm.h>
19 #include <linux/sched.h>
20 #include <linux/sched/debug.h>
21 #include <linux/string.h>
22 #include <linux/spinlock.h>
23 #include <linux/pci.h>
24 #include <linux/topology.h>
25 #include <linux/interrupt.h>
26 #include <linux/bitmap.h>
27 #include <linux/kdebug.h>
28 #include <linux/scatterlist.h>
29 #include <linux/iommu-helper.h>
30 #include <linux/syscore_ops.h>
31 #include <linux/io.h>
32 #include <linux/gfp.h>
33 #include <linux/atomic.h>
34 #include <linux/dma-direct.h>
35 #include <linux/dma-map-ops.h>
36 #include <asm/mtrr.h>
37 #include <asm/proto.h>
38 #include <asm/iommu.h>
39 #include <asm/gart.h>
40 #include <asm/set_memory.h>
41 #include <asm/dma.h>
42 #include <asm/amd/nb.h>
43 #include <asm/x86_init.h>
44
45 static unsigned long iommu_bus_base; /* GART remapping area (physical) */
46 static unsigned long iommu_size; /* size of remapping area bytes */
47 static unsigned long iommu_pages; /* .. and in pages */
48
49 static u32 *iommu_gatt_base; /* Remapping table */
50
51 /*
52 * If this is disabled the IOMMU will use an optimized flushing strategy
53 * of only flushing when an mapping is reused. With it true the GART is
54 * flushed for every mapping. Problem is that doing the lazy flush seems
55 * to trigger bugs with some popular PCI cards, in particular 3ware (but
56 * has been also seen with Qlogic at least).
57 */
58 static int iommu_fullflush = 1;
59
60 /* Allocation bitmap for the remapping area: */
61 static DEFINE_SPINLOCK(iommu_bitmap_lock);
62 /* Guarded by iommu_bitmap_lock: */
63 static unsigned long *iommu_gart_bitmap;
64
65 static u32 gart_unmapped_entry;
66
67 #define GPTE_VALID 1
68 #define GPTE_COHERENT 2
69 #define GPTE_ENCODE(x) \
70 (((x) & 0xfffff000) | (((x) >> 32) << 4) | GPTE_VALID | GPTE_COHERENT)
71 #define GPTE_DECODE(x) (((x) & 0xfffff000) | (((u64)(x) & 0xff0) << 28))
72
73 #ifdef CONFIG_AGP
74 #define AGPEXTERN extern
75 #else
76 #define AGPEXTERN
77 #endif
78
79 /* GART can only remap to physical addresses < 1TB */
80 #define GART_MAX_PHYS_ADDR (1ULL << 40)
81
82 /* backdoor interface to AGP driver */
83 AGPEXTERN int agp_memory_reserved;
84 AGPEXTERN __u32 *agp_gatt_table;
85
86 static unsigned long next_bit; /* protected by iommu_bitmap_lock */
87 static bool need_flush; /* global flush state. set for each gart wrap */
88
alloc_iommu(struct device * dev,int size,unsigned long align_mask)89 static unsigned long alloc_iommu(struct device *dev, int size,
90 unsigned long align_mask)
91 {
92 unsigned long offset, flags;
93 unsigned long boundary_size;
94 unsigned long base_index;
95
96 base_index = ALIGN(iommu_bus_base & dma_get_seg_boundary(dev),
97 PAGE_SIZE) >> PAGE_SHIFT;
98 boundary_size = dma_get_seg_boundary_nr_pages(dev, PAGE_SHIFT);
99
100 spin_lock_irqsave(&iommu_bitmap_lock, flags);
101 offset = iommu_area_alloc(iommu_gart_bitmap, iommu_pages, next_bit,
102 size, base_index, boundary_size, align_mask);
103 if (offset == -1) {
104 need_flush = true;
105 offset = iommu_area_alloc(iommu_gart_bitmap, iommu_pages, 0,
106 size, base_index, boundary_size,
107 align_mask);
108 }
109 if (offset != -1) {
110 next_bit = offset+size;
111 if (next_bit >= iommu_pages) {
112 next_bit = 0;
113 need_flush = true;
114 }
115 }
116 if (iommu_fullflush)
117 need_flush = true;
118 spin_unlock_irqrestore(&iommu_bitmap_lock, flags);
119
120 return offset;
121 }
122
free_iommu(unsigned long offset,int size)123 static void free_iommu(unsigned long offset, int size)
124 {
125 unsigned long flags;
126
127 spin_lock_irqsave(&iommu_bitmap_lock, flags);
128 bitmap_clear(iommu_gart_bitmap, offset, size);
129 if (offset >= next_bit)
130 next_bit = offset + size;
131 spin_unlock_irqrestore(&iommu_bitmap_lock, flags);
132 }
133
134 /*
135 * Use global flush state to avoid races with multiple flushers.
136 */
flush_gart(void)137 static void flush_gart(void)
138 {
139 unsigned long flags;
140
141 spin_lock_irqsave(&iommu_bitmap_lock, flags);
142 if (need_flush) {
143 amd_flush_garts();
144 need_flush = false;
145 }
146 spin_unlock_irqrestore(&iommu_bitmap_lock, flags);
147 }
148
149 #ifdef CONFIG_IOMMU_LEAK
150 /* Debugging aid for drivers that don't free their IOMMU tables */
dump_leak(void)151 static void dump_leak(void)
152 {
153 static int dump;
154
155 if (dump)
156 return;
157 dump = 1;
158
159 show_stack(NULL, NULL, KERN_ERR);
160 debug_dma_dump_mappings(NULL);
161 }
162 #endif
163
iommu_full(struct device * dev,size_t size,int dir)164 static void iommu_full(struct device *dev, size_t size, int dir)
165 {
166 /*
167 * Ran out of IOMMU space for this operation. This is very bad.
168 * Unfortunately the drivers cannot handle this operation properly.
169 * Return some non mapped prereserved space in the aperture and
170 * let the Northbridge deal with it. This will result in garbage
171 * in the IO operation. When the size exceeds the prereserved space
172 * memory corruption will occur or random memory will be DMAed
173 * out. Hopefully no network devices use single mappings that big.
174 */
175
176 dev_err(dev, "PCI-DMA: Out of IOMMU space for %lu bytes\n", size);
177 #ifdef CONFIG_IOMMU_LEAK
178 dump_leak();
179 #endif
180 }
181
182 static inline int
need_iommu(struct device * dev,unsigned long addr,size_t size,unsigned long attrs)183 need_iommu(struct device *dev, unsigned long addr, size_t size, unsigned long attrs)
184 {
185 return force_iommu || !dma_capable(dev, addr, size, true, attrs);
186 }
187
188 static inline int
nonforced_iommu(struct device * dev,unsigned long addr,size_t size,unsigned long attrs)189 nonforced_iommu(struct device *dev, unsigned long addr, size_t size,
190 unsigned long attrs)
191 {
192 return !dma_capable(dev, addr, size, true, attrs);
193 }
194
195 /* Map a single continuous physical area into the IOMMU.
196 * Caller needs to check if the iommu is needed and flush.
197 */
dma_map_area(struct device * dev,dma_addr_t phys_mem,size_t size,int dir,unsigned long align_mask,unsigned long attrs)198 static dma_addr_t dma_map_area(struct device *dev, dma_addr_t phys_mem,
199 size_t size, int dir, unsigned long align_mask, unsigned long attrs)
200 {
201 unsigned long npages = iommu_num_pages(phys_mem, size, PAGE_SIZE);
202 unsigned long iommu_page;
203 int i;
204
205 if (unlikely(phys_mem + size > GART_MAX_PHYS_ADDR))
206 return DMA_MAPPING_ERROR;
207
208 iommu_page = alloc_iommu(dev, npages, align_mask);
209 if (iommu_page == -1) {
210 if (!nonforced_iommu(dev, phys_mem, size, attrs))
211 return phys_mem;
212 if (panic_on_overflow)
213 panic("dma_map_area overflow %lu bytes\n", size);
214 iommu_full(dev, size, dir);
215 return DMA_MAPPING_ERROR;
216 }
217
218 for (i = 0; i < npages; i++) {
219 iommu_gatt_base[iommu_page + i] = GPTE_ENCODE(phys_mem);
220 phys_mem += PAGE_SIZE;
221 }
222 return iommu_bus_base + iommu_page*PAGE_SIZE + (phys_mem & ~PAGE_MASK);
223 }
224
225 /* Map a single area into the IOMMU */
gart_map_phys(struct device * dev,phys_addr_t paddr,size_t size,enum dma_data_direction dir,unsigned long attrs)226 static dma_addr_t gart_map_phys(struct device *dev, phys_addr_t paddr,
227 size_t size, enum dma_data_direction dir,
228 unsigned long attrs)
229 {
230 unsigned long bus;
231
232 if (unlikely(attrs & DMA_ATTR_MMIO))
233 return DMA_MAPPING_ERROR;
234
235 if (!need_iommu(dev, paddr, size, attrs))
236 return paddr;
237
238 bus = dma_map_area(dev, paddr, size, dir, 0, attrs);
239 flush_gart();
240
241 return bus;
242 }
243
244 /*
245 * Free a DMA mapping.
246 */
gart_unmap_phys(struct device * dev,dma_addr_t dma_addr,size_t size,enum dma_data_direction dir,unsigned long attrs)247 static void gart_unmap_phys(struct device *dev, dma_addr_t dma_addr,
248 size_t size, enum dma_data_direction dir,
249 unsigned long attrs)
250 {
251 unsigned long iommu_page;
252 int npages;
253 int i;
254
255 if (WARN_ON_ONCE(dma_addr == DMA_MAPPING_ERROR))
256 return;
257
258 /*
259 * This driver will not always use a GART mapping, but might have
260 * created a direct mapping instead. If that is the case there is
261 * nothing to unmap here.
262 */
263 if (dma_addr < iommu_bus_base ||
264 dma_addr >= iommu_bus_base + iommu_size)
265 return;
266
267 iommu_page = (dma_addr - iommu_bus_base)>>PAGE_SHIFT;
268 npages = iommu_num_pages(dma_addr, size, PAGE_SIZE);
269 for (i = 0; i < npages; i++) {
270 iommu_gatt_base[iommu_page + i] = gart_unmapped_entry;
271 }
272 free_iommu(iommu_page, npages);
273 }
274
275 /*
276 * Wrapper for pci_unmap_single working with scatterlists.
277 */
gart_unmap_sg(struct device * dev,struct scatterlist * sg,int nents,enum dma_data_direction dir,unsigned long attrs)278 static void gart_unmap_sg(struct device *dev, struct scatterlist *sg, int nents,
279 enum dma_data_direction dir, unsigned long attrs)
280 {
281 struct scatterlist *s;
282 int i;
283
284 for_each_sg(sg, s, nents, i) {
285 if (!s->dma_length || !s->length)
286 break;
287 gart_unmap_phys(dev, s->dma_address, s->dma_length, dir, 0);
288 }
289 }
290
291 /* Fallback for dma_map_sg in case of overflow */
dma_map_sg_nonforce(struct device * dev,struct scatterlist * sg,int nents,int dir,unsigned long attrs)292 static int dma_map_sg_nonforce(struct device *dev, struct scatterlist *sg,
293 int nents, int dir, unsigned long attrs)
294 {
295 struct scatterlist *s;
296 int i;
297
298 #ifdef CONFIG_IOMMU_DEBUG
299 pr_debug("dma_map_sg overflow\n");
300 #endif
301
302 for_each_sg(sg, s, nents, i) {
303 unsigned long addr = sg_phys(s);
304
305 if (nonforced_iommu(dev, addr, s->length, attrs)) {
306 addr = dma_map_area(dev, addr, s->length, dir, 0, attrs);
307 if (addr == DMA_MAPPING_ERROR) {
308 if (i > 0)
309 gart_unmap_sg(dev, sg, i, dir, 0);
310 nents = 0;
311 sg[0].dma_length = 0;
312 break;
313 }
314 }
315 s->dma_address = addr;
316 s->dma_length = s->length;
317 }
318 flush_gart();
319
320 return nents;
321 }
322
323 /* Map multiple scatterlist entries continuous into the first. */
__dma_map_cont(struct device * dev,struct scatterlist * start,int nelems,struct scatterlist * sout,unsigned long pages)324 static int __dma_map_cont(struct device *dev, struct scatterlist *start,
325 int nelems, struct scatterlist *sout,
326 unsigned long pages)
327 {
328 unsigned long iommu_start = alloc_iommu(dev, pages, 0);
329 unsigned long iommu_page = iommu_start;
330 struct scatterlist *s;
331 int i;
332
333 if (iommu_start == -1)
334 return -ENOMEM;
335
336 for_each_sg(start, s, nelems, i) {
337 unsigned long pages, addr;
338 unsigned long phys_addr = s->dma_address;
339
340 BUG_ON(s != start && s->offset);
341 if (s == start) {
342 sout->dma_address = iommu_bus_base;
343 sout->dma_address += iommu_page*PAGE_SIZE + s->offset;
344 sout->dma_length = s->length;
345 } else {
346 sout->dma_length += s->length;
347 }
348
349 addr = phys_addr;
350 pages = iommu_num_pages(s->offset, s->length, PAGE_SIZE);
351 while (pages--) {
352 iommu_gatt_base[iommu_page] = GPTE_ENCODE(addr);
353 addr += PAGE_SIZE;
354 iommu_page++;
355 }
356 }
357 BUG_ON(iommu_page - iommu_start != pages);
358
359 return 0;
360 }
361
362 static inline int
dma_map_cont(struct device * dev,struct scatterlist * start,int nelems,struct scatterlist * sout,unsigned long pages,int need)363 dma_map_cont(struct device *dev, struct scatterlist *start, int nelems,
364 struct scatterlist *sout, unsigned long pages, int need)
365 {
366 if (!need) {
367 BUG_ON(nelems != 1);
368 sout->dma_address = start->dma_address;
369 sout->dma_length = start->length;
370 return 0;
371 }
372 return __dma_map_cont(dev, start, nelems, sout, pages);
373 }
374
375 /*
376 * DMA map all entries in a scatterlist.
377 * Merge chunks that have page aligned sizes into a continuous mapping.
378 */
gart_map_sg(struct device * dev,struct scatterlist * sg,int nents,enum dma_data_direction dir,unsigned long attrs)379 static int gart_map_sg(struct device *dev, struct scatterlist *sg, int nents,
380 enum dma_data_direction dir, unsigned long attrs)
381 {
382 struct scatterlist *s, *ps, *start_sg, *sgmap;
383 int need = 0, nextneed, i, out, start, ret;
384 unsigned long pages = 0;
385 unsigned int seg_size;
386 unsigned int max_seg_size;
387
388 if (nents == 0)
389 return -EINVAL;
390
391 out = 0;
392 start = 0;
393 start_sg = sg;
394 sgmap = sg;
395 seg_size = 0;
396 max_seg_size = dma_get_max_seg_size(dev);
397 ps = NULL; /* shut up gcc */
398
399 for_each_sg(sg, s, nents, i) {
400 dma_addr_t addr = sg_phys(s);
401
402 s->dma_address = addr;
403 BUG_ON(s->length == 0);
404
405 nextneed = need_iommu(dev, addr, s->length, attrs);
406
407 /* Handle the previous not yet processed entries */
408 if (i > start) {
409 /*
410 * Can only merge when the last chunk ends on a
411 * page boundary and the new one doesn't have an
412 * offset.
413 */
414 if (!iommu_merge || !nextneed || !need || s->offset ||
415 (s->length + seg_size > max_seg_size) ||
416 (ps->offset + ps->length) % PAGE_SIZE) {
417 ret = dma_map_cont(dev, start_sg, i - start,
418 sgmap, pages, need);
419 if (ret < 0)
420 goto error;
421 out++;
422
423 seg_size = 0;
424 sgmap = sg_next(sgmap);
425 pages = 0;
426 start = i;
427 start_sg = s;
428 }
429 }
430
431 seg_size += s->length;
432 need = nextneed;
433 pages += iommu_num_pages(s->offset, s->length, PAGE_SIZE);
434 ps = s;
435 }
436 ret = dma_map_cont(dev, start_sg, i - start, sgmap, pages, need);
437 if (ret < 0)
438 goto error;
439 out++;
440 flush_gart();
441 if (out < nents) {
442 sgmap = sg_next(sgmap);
443 sgmap->dma_length = 0;
444 }
445 return out;
446
447 error:
448 flush_gart();
449 gart_unmap_sg(dev, sg, out, dir, 0);
450
451 /* When it was forced or merged try again in a dumb way */
452 if (force_iommu || iommu_merge) {
453 out = dma_map_sg_nonforce(dev, sg, nents, dir, attrs);
454 if (out > 0)
455 return out;
456 }
457 if (panic_on_overflow)
458 panic("dma_map_sg: overflow on %lu pages\n", pages);
459
460 iommu_full(dev, pages << PAGE_SHIFT, dir);
461 return ret;
462 }
463
464 /* allocate and map a coherent mapping */
465 static void *
gart_alloc_coherent(struct device * dev,size_t size,dma_addr_t * dma_addr,gfp_t flag,unsigned long attrs)466 gart_alloc_coherent(struct device *dev, size_t size, dma_addr_t *dma_addr,
467 gfp_t flag, unsigned long attrs)
468 {
469 void *vaddr;
470
471 vaddr = dma_direct_alloc(dev, size, dma_addr, flag, attrs);
472 if (!vaddr ||
473 !force_iommu || dev->coherent_dma_mask <= DMA_BIT_MASK(24))
474 return vaddr;
475
476 *dma_addr = dma_map_area(dev, virt_to_phys(vaddr), size,
477 DMA_BIDIRECTIONAL,
478 (1UL << get_order(size)) - 1, attrs);
479 flush_gart();
480 if (unlikely(*dma_addr == DMA_MAPPING_ERROR))
481 goto out_free;
482 return vaddr;
483 out_free:
484 dma_direct_free(dev, size, vaddr, *dma_addr, attrs);
485 return NULL;
486 }
487
488 /* free a coherent mapping */
489 static void
gart_free_coherent(struct device * dev,size_t size,void * vaddr,dma_addr_t dma_addr,unsigned long attrs)490 gart_free_coherent(struct device *dev, size_t size, void *vaddr,
491 dma_addr_t dma_addr, unsigned long attrs)
492 {
493 gart_unmap_phys(dev, dma_addr, size, DMA_BIDIRECTIONAL, 0);
494 dma_direct_free(dev, size, vaddr, dma_addr, attrs);
495 }
496
497 static int no_agp;
498
check_iommu_size(unsigned long aper,u64 aper_size)499 static __init unsigned long check_iommu_size(unsigned long aper, u64 aper_size)
500 {
501 unsigned long a;
502
503 if (!iommu_size) {
504 iommu_size = aper_size;
505 if (!no_agp)
506 iommu_size /= 2;
507 }
508
509 a = aper + iommu_size;
510 iommu_size -= round_up(a, PMD_SIZE) - a;
511
512 if (iommu_size < 64*1024*1024) {
513 pr_warn("PCI-DMA: Warning: Small IOMMU %luMB."
514 " Consider increasing the AGP aperture in BIOS\n",
515 iommu_size >> 20);
516 }
517
518 return iommu_size;
519 }
520
read_aperture(struct pci_dev * dev,u32 * size)521 static __init unsigned read_aperture(struct pci_dev *dev, u32 *size)
522 {
523 unsigned aper_size = 0, aper_base_32, aper_order;
524 u64 aper_base;
525
526 pci_read_config_dword(dev, AMD64_GARTAPERTUREBASE, &aper_base_32);
527 pci_read_config_dword(dev, AMD64_GARTAPERTURECTL, &aper_order);
528 aper_order = (aper_order >> 1) & 7;
529
530 aper_base = aper_base_32 & 0x7fff;
531 aper_base <<= 25;
532
533 aper_size = (32 * 1024 * 1024) << aper_order;
534 if (aper_base + aper_size > 0x100000000UL || !aper_size)
535 aper_base = 0;
536
537 *size = aper_size;
538 return aper_base;
539 }
540
enable_gart_translations(void)541 static void enable_gart_translations(void)
542 {
543 int i;
544
545 if (!amd_nb_has_feature(AMD_NB_GART))
546 return;
547
548 for (i = 0; i < amd_nb_num(); i++) {
549 struct pci_dev *dev = node_to_amd_nb(i)->misc;
550
551 enable_gart_translation(dev, __pa(agp_gatt_table));
552 }
553
554 /* Flush the GART-TLB to remove stale entries */
555 amd_flush_garts();
556 }
557
558 /*
559 * If fix_up_north_bridges is set, the north bridges have to be fixed up on
560 * resume in the same way as they are handled in gart_iommu_hole_init().
561 */
562 static bool fix_up_north_bridges;
563 static u32 aperture_order;
564 static u32 aperture_alloc;
565
set_up_gart_resume(u32 aper_order,u32 aper_alloc)566 void set_up_gart_resume(u32 aper_order, u32 aper_alloc)
567 {
568 fix_up_north_bridges = true;
569 aperture_order = aper_order;
570 aperture_alloc = aper_alloc;
571 }
572
gart_fixup_northbridges(void)573 static void gart_fixup_northbridges(void)
574 {
575 int i;
576
577 if (!fix_up_north_bridges)
578 return;
579
580 if (!amd_nb_has_feature(AMD_NB_GART))
581 return;
582
583 pr_info("PCI-DMA: Restoring GART aperture settings\n");
584
585 for (i = 0; i < amd_nb_num(); i++) {
586 struct pci_dev *dev = node_to_amd_nb(i)->misc;
587
588 /*
589 * Don't enable translations just yet. That is the next
590 * step. Restore the pre-suspend aperture settings.
591 */
592 gart_set_size_and_enable(dev, aperture_order);
593 pci_write_config_dword(dev, AMD64_GARTAPERTUREBASE, aperture_alloc >> 25);
594 }
595 }
596
gart_resume(void * data)597 static void gart_resume(void *data)
598 {
599 pr_info("PCI-DMA: Resuming GART IOMMU\n");
600
601 gart_fixup_northbridges();
602
603 enable_gart_translations();
604 }
605
606 static const struct syscore_ops gart_syscore_ops = {
607 .resume = gart_resume,
608
609 };
610
611 static struct syscore gart_syscore = {
612 .ops = &gart_syscore_ops,
613 };
614
615 /*
616 * Private Northbridge GATT initialization in case we cannot use the
617 * AGP driver for some reason.
618 */
init_amd_gatt(struct agp_kern_info * info)619 static __init int init_amd_gatt(struct agp_kern_info *info)
620 {
621 unsigned aper_size, gatt_size, new_aper_size;
622 unsigned aper_base, new_aper_base;
623 struct pci_dev *dev;
624 void *gatt;
625 int i;
626
627 pr_info("PCI-DMA: Disabling AGP.\n");
628
629 aper_size = aper_base = info->aper_size = 0;
630 dev = NULL;
631 for (i = 0; i < amd_nb_num(); i++) {
632 dev = node_to_amd_nb(i)->misc;
633 new_aper_base = read_aperture(dev, &new_aper_size);
634 if (!new_aper_base)
635 goto nommu;
636
637 if (!aper_base) {
638 aper_size = new_aper_size;
639 aper_base = new_aper_base;
640 }
641 if (aper_size != new_aper_size || aper_base != new_aper_base)
642 goto nommu;
643 }
644 if (!aper_base)
645 goto nommu;
646
647 info->aper_base = aper_base;
648 info->aper_size = aper_size >> 20;
649
650 gatt_size = (aper_size >> PAGE_SHIFT) * sizeof(u32);
651 gatt = (void *)__get_free_pages(GFP_KERNEL | __GFP_ZERO,
652 get_order(gatt_size));
653 if (!gatt)
654 panic("Cannot allocate GATT table");
655 if (set_memory_uc((unsigned long)gatt, gatt_size >> PAGE_SHIFT))
656 panic("Could not set GART PTEs to uncacheable pages");
657
658 agp_gatt_table = gatt;
659
660 register_syscore(&gart_syscore);
661
662 flush_gart();
663
664 pr_info("PCI-DMA: aperture base @ %x size %u KB\n",
665 aper_base, aper_size>>10);
666
667 return 0;
668
669 nommu:
670 /* Should not happen anymore */
671 pr_warn("PCI-DMA: More than 4GB of RAM and no IOMMU - falling back to iommu=soft.\n");
672 return -1;
673 }
674
675 static const struct dma_map_ops gart_dma_ops = {
676 .map_sg = gart_map_sg,
677 .unmap_sg = gart_unmap_sg,
678 .map_phys = gart_map_phys,
679 .unmap_phys = gart_unmap_phys,
680 .alloc = gart_alloc_coherent,
681 .free = gart_free_coherent,
682 .mmap = dma_common_mmap,
683 .get_sgtable = dma_common_get_sgtable,
684 .dma_supported = dma_direct_supported,
685 .get_required_mask = dma_direct_get_required_mask,
686 .alloc_pages_op = dma_direct_alloc_pages,
687 .free_pages = dma_direct_free_pages,
688 };
689
gart_iommu_shutdown(void)690 static void gart_iommu_shutdown(void)
691 {
692 struct pci_dev *dev;
693 int i;
694
695 /* don't shutdown it if there is AGP installed */
696 if (!no_agp)
697 return;
698
699 if (!amd_nb_has_feature(AMD_NB_GART))
700 return;
701
702 for (i = 0; i < amd_nb_num(); i++) {
703 u32 ctl;
704
705 dev = node_to_amd_nb(i)->misc;
706 pci_read_config_dword(dev, AMD64_GARTAPERTURECTL, &ctl);
707
708 ctl &= ~GARTEN;
709
710 pci_write_config_dword(dev, AMD64_GARTAPERTURECTL, ctl);
711 }
712 }
713
gart_iommu_init(void)714 int __init gart_iommu_init(void)
715 {
716 struct agp_kern_info info;
717 unsigned long iommu_start;
718 unsigned long aper_base, aper_size;
719 unsigned long start_pfn, end_pfn;
720 unsigned long scratch;
721
722 if (!amd_nb_has_feature(AMD_NB_GART))
723 return 0;
724
725 #ifndef CONFIG_AGP_AMD64
726 no_agp = 1;
727 #else
728 /* Makefile puts PCI initialization via subsys_initcall first. */
729 /* Add other AMD AGP bridge drivers here */
730 no_agp = no_agp ||
731 (agp_amd64_init() < 0) ||
732 (agp_copy_info(agp_bridge, &info) < 0);
733 #endif
734
735 if (no_iommu ||
736 (!force_iommu && max_pfn <= MAX_DMA32_PFN) ||
737 !gart_iommu_aperture ||
738 (no_agp && init_amd_gatt(&info) < 0)) {
739 if (max_pfn > MAX_DMA32_PFN) {
740 pr_warn("More than 4GB of memory but GART IOMMU not available.\n");
741 pr_warn("falling back to iommu=soft.\n");
742 }
743 return 0;
744 }
745
746 /* need to map that range */
747 aper_size = info.aper_size << 20;
748 aper_base = info.aper_base;
749 end_pfn = (aper_base>>PAGE_SHIFT) + (aper_size>>PAGE_SHIFT);
750
751 start_pfn = PFN_DOWN(aper_base);
752 if (!pfn_range_is_mapped(start_pfn, end_pfn))
753 init_memory_mapping(start_pfn<<PAGE_SHIFT, end_pfn<<PAGE_SHIFT,
754 PAGE_KERNEL);
755
756 pr_info("PCI-DMA: using GART IOMMU.\n");
757 iommu_size = check_iommu_size(info.aper_base, aper_size);
758 iommu_pages = iommu_size >> PAGE_SHIFT;
759
760 iommu_gart_bitmap = (void *) __get_free_pages(GFP_KERNEL | __GFP_ZERO,
761 get_order(iommu_pages/8));
762 if (!iommu_gart_bitmap)
763 panic("Cannot allocate iommu bitmap\n");
764
765 pr_info("PCI-DMA: Reserving %luMB of IOMMU area in the AGP aperture\n",
766 iommu_size >> 20);
767
768 agp_memory_reserved = iommu_size;
769 iommu_start = aper_size - iommu_size;
770 iommu_bus_base = info.aper_base + iommu_start;
771 iommu_gatt_base = agp_gatt_table + (iommu_start>>PAGE_SHIFT);
772
773 /*
774 * Unmap the IOMMU part of the GART. The alias of the page is
775 * always mapped with cache enabled and there is no full cache
776 * coherency across the GART remapping. The unmapping avoids
777 * automatic prefetches from the CPU allocating cache lines in
778 * there. All CPU accesses are done via the direct mapping to
779 * the backing memory. The GART address is only used by PCI
780 * devices.
781 */
782 set_memory_np((unsigned long)__va(iommu_bus_base),
783 iommu_size >> PAGE_SHIFT);
784 /*
785 * Tricky. The GART table remaps the physical memory range,
786 * so the CPU won't notice potential aliases and if the memory
787 * is remapped to UC later on, we might surprise the PCI devices
788 * with a stray writeout of a cacheline. So play it sure and
789 * do an explicit, full-scale wbinvd() _after_ having marked all
790 * the pages as Not-Present:
791 */
792 wbinvd();
793
794 /*
795 * Now all caches are flushed and we can safely enable
796 * GART hardware. Doing it early leaves the possibility
797 * of stale cache entries that can lead to GART PTE
798 * errors.
799 */
800 enable_gart_translations();
801
802 /*
803 * Try to workaround a bug (thanks to BenH):
804 * Set unmapped entries to a scratch page instead of 0.
805 * Any prefetches that hit unmapped entries won't get an bus abort
806 * then. (P2P bridge may be prefetching on DMA reads).
807 */
808 scratch = get_zeroed_page(GFP_KERNEL);
809 if (!scratch)
810 panic("Cannot allocate iommu scratch page");
811 gart_unmapped_entry = GPTE_ENCODE(__pa(scratch));
812
813 flush_gart();
814 dma_ops = &gart_dma_ops;
815 x86_platform.iommu_shutdown = gart_iommu_shutdown;
816 x86_swiotlb_enable = false;
817
818 return 0;
819 }
820
gart_parse_options(char * p)821 void __init gart_parse_options(char *p)
822 {
823 int arg;
824
825 if (isdigit(*p) && get_option(&p, &arg))
826 iommu_size = arg;
827 if (!strncmp(p, "fullflush", 9))
828 iommu_fullflush = 1;
829 if (!strncmp(p, "nofullflush", 11))
830 iommu_fullflush = 0;
831 if (!strncmp(p, "noagp", 5))
832 no_agp = 1;
833 if (!strncmp(p, "noaperture", 10))
834 fix_aperture = 0;
835 /* duplicated from pci-dma.c */
836 if (!strncmp(p, "force", 5))
837 gart_iommu_aperture_allowed = 1;
838 if (!strncmp(p, "allowed", 7))
839 gart_iommu_aperture_allowed = 1;
840 if (!strncmp(p, "memaper", 7)) {
841 fallback_aper_force = 1;
842 p += 7;
843 if (*p == '=') {
844 ++p;
845 if (get_option(&p, &arg))
846 fallback_aper_order = arg;
847 }
848 }
849 }
850