blob: 0569843756e52db6fc40bd670c4ec017919ba134 [file] [log] [blame]
Joerg Roedelb6c02712008-06-26 21:27:53 +02001/*
Joerg Roedel5d0d7152010-10-13 11:13:21 +02002 * Copyright (C) 2007-2010 Advanced Micro Devices, Inc.
Joerg Roedelb6c02712008-06-26 21:27:53 +02003 * Author: Joerg Roedel <joerg.roedel@amd.com>
4 * Leo Duran <leo.duran@amd.com>
5 *
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License version 2 as published
8 * by the Free Software Foundation.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18 */
19
Joerg Roedel72e1dcc2011-11-10 19:13:51 +010020#include <linux/ratelimit.h>
Joerg Roedelb6c02712008-06-26 21:27:53 +020021#include <linux/pci.h>
Joerg Roedelcb41ed82011-04-05 11:00:53 +020022#include <linux/pci-ats.h>
Akinobu Mitaa66022c2009-12-15 16:48:28 -080023#include <linux/bitmap.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090024#include <linux/slab.h>
Joerg Roedel7f265082008-12-12 13:50:21 +010025#include <linux/debugfs.h>
Joerg Roedelb6c02712008-06-26 21:27:53 +020026#include <linux/scatterlist.h>
FUJITA Tomonori51491362009-01-05 23:47:25 +090027#include <linux/dma-mapping.h>
Joerg Roedelb6c02712008-06-26 21:27:53 +020028#include <linux/iommu-helper.h>
Joerg Roedelc156e342008-12-02 18:13:27 +010029#include <linux/iommu.h>
Joerg Roedel815b33f2011-04-06 17:26:49 +020030#include <linux/delay.h>
Joerg Roedel403f81d2011-06-14 16:44:25 +020031#include <linux/amd-iommu.h>
Joerg Roedel72e1dcc2011-11-10 19:13:51 +010032#include <linux/notifier.h>
33#include <linux/export.h>
Joerg Roedel17f5b562011-07-06 17:14:44 +020034#include <asm/msidef.h>
Joerg Roedelb6c02712008-06-26 21:27:53 +020035#include <asm/proto.h>
FUJITA Tomonori46a7fa22008-07-11 10:23:42 +090036#include <asm/iommu.h>
Joerg Roedel1d9b16d2008-11-27 18:39:15 +010037#include <asm/gart.h>
Joerg Roedel27c21272011-05-30 15:56:24 +020038#include <asm/dma.h>
Joerg Roedel403f81d2011-06-14 16:44:25 +020039
40#include "amd_iommu_proto.h"
41#include "amd_iommu_types.h"
Joerg Roedelb6c02712008-06-26 21:27:53 +020042
43#define CMD_SET_TYPE(cmd, t) ((cmd)->data[1] |= ((t) << 28))
44
Joerg Roedel815b33f2011-04-06 17:26:49 +020045#define LOOP_TIMEOUT 100000
Joerg Roedel136f78a2008-07-11 17:14:27 +020046
Ohad Ben-Cohenaa3de9c2011-11-10 11:32:29 +020047/*
48 * This bitmap is used to advertise the page sizes our hardware support
49 * to the IOMMU core, which will then use this information to split
50 * physically contiguous memory regions it is mapping into page sizes
51 * that we support.
52 *
53 * Traditionally the IOMMU core just handed us the mappings directly,
54 * after making sure the size is an order of a 4KiB page and that the
55 * mapping has natural alignment.
56 *
57 * To retain this behavior, we currently advertise that we support
58 * all page sizes that are an order of 4KiB.
59 *
60 * If at some point we'd like to utilize the IOMMU core's new behavior,
61 * we could change this to advertise the real page sizes we support.
62 */
63#define AMD_IOMMU_PGSIZES (~0xFFFUL)
64
Joerg Roedelb6c02712008-06-26 21:27:53 +020065static DEFINE_RWLOCK(amd_iommu_devtable_lock);
66
Joerg Roedelbd60b732008-09-11 10:24:48 +020067/* A list of preallocated protection domains */
68static LIST_HEAD(iommu_pd_list);
69static DEFINE_SPINLOCK(iommu_pd_list_lock);
70
Joerg Roedel8fa5f802011-06-09 12:24:45 +020071/* List of all available dev_data structures */
72static LIST_HEAD(dev_data_list);
73static DEFINE_SPINLOCK(dev_data_list_lock);
74
Joerg Roedel0feae532009-08-26 15:26:30 +020075/*
76 * Domain for untranslated devices - only allocated
77 * if iommu=pt passed on kernel cmd line.
78 */
79static struct protection_domain *pt_domain;
80
Joerg Roedel26961ef2008-12-03 17:00:17 +010081static struct iommu_ops amd_iommu_ops;
Joerg Roedel26961ef2008-12-03 17:00:17 +010082
Joerg Roedel72e1dcc2011-11-10 19:13:51 +010083static ATOMIC_NOTIFIER_HEAD(ppr_notifier);
Joerg Roedel52815b72011-11-17 17:24:28 +010084int amd_iommu_max_glx_val = -1;
Joerg Roedel72e1dcc2011-11-10 19:13:51 +010085
Joerg Roedelb9e619e2012-06-21 14:52:40 +020086static struct dma_map_ops amd_iommu_dma_ops;
87
Joerg Roedel431b2a22008-07-11 17:14:22 +020088/*
89 * general struct to manage commands send to an IOMMU
90 */
Joerg Roedeld6449532008-07-11 17:14:28 +020091struct iommu_cmd {
Joerg Roedelb6c02712008-06-26 21:27:53 +020092 u32 data[4];
93};
94
Joerg Roedel04bfdd82009-09-02 16:00:23 +020095static void update_domain(struct protection_domain *domain);
Joerg Roedel5abcdba2011-12-01 15:49:45 +010096static int __init alloc_passthrough_domain(void);
Chris Wrightc1eee672009-05-21 00:56:58 -070097
Joerg Roedel15898bb2009-11-24 15:39:42 +010098/****************************************************************************
99 *
100 * Helper functions
101 *
102 ****************************************************************************/
103
Joerg Roedelf62dda62011-06-09 12:55:35 +0200104static struct iommu_dev_data *alloc_dev_data(u16 devid)
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200105{
106 struct iommu_dev_data *dev_data;
107 unsigned long flags;
108
109 dev_data = kzalloc(sizeof(*dev_data), GFP_KERNEL);
110 if (!dev_data)
111 return NULL;
112
Joerg Roedelf62dda62011-06-09 12:55:35 +0200113 dev_data->devid = devid;
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200114 atomic_set(&dev_data->bind, 0);
115
116 spin_lock_irqsave(&dev_data_list_lock, flags);
117 list_add_tail(&dev_data->dev_data_list, &dev_data_list);
118 spin_unlock_irqrestore(&dev_data_list_lock, flags);
119
120 return dev_data;
121}
122
123static void free_dev_data(struct iommu_dev_data *dev_data)
124{
125 unsigned long flags;
126
127 spin_lock_irqsave(&dev_data_list_lock, flags);
128 list_del(&dev_data->dev_data_list);
129 spin_unlock_irqrestore(&dev_data_list_lock, flags);
130
131 kfree(dev_data);
132}
133
Joerg Roedel3b03bb72011-06-09 18:53:25 +0200134static struct iommu_dev_data *search_dev_data(u16 devid)
135{
136 struct iommu_dev_data *dev_data;
137 unsigned long flags;
138
139 spin_lock_irqsave(&dev_data_list_lock, flags);
140 list_for_each_entry(dev_data, &dev_data_list, dev_data_list) {
141 if (dev_data->devid == devid)
142 goto out_unlock;
143 }
144
145 dev_data = NULL;
146
147out_unlock:
148 spin_unlock_irqrestore(&dev_data_list_lock, flags);
149
150 return dev_data;
151}
152
153static struct iommu_dev_data *find_dev_data(u16 devid)
154{
155 struct iommu_dev_data *dev_data;
156
157 dev_data = search_dev_data(devid);
158
159 if (dev_data == NULL)
160 dev_data = alloc_dev_data(devid);
161
162 return dev_data;
163}
164
Joerg Roedel15898bb2009-11-24 15:39:42 +0100165static inline u16 get_device_id(struct device *dev)
166{
167 struct pci_dev *pdev = to_pci_dev(dev);
168
169 return calc_devid(pdev->bus->number, pdev->devfn);
170}
171
Joerg Roedel657cbb62009-11-23 15:26:46 +0100172static struct iommu_dev_data *get_dev_data(struct device *dev)
173{
174 return dev->archdata.iommu;
175}
176
Joerg Roedel5abcdba2011-12-01 15:49:45 +0100177static bool pci_iommuv2_capable(struct pci_dev *pdev)
178{
179 static const int caps[] = {
180 PCI_EXT_CAP_ID_ATS,
Joerg Roedel46277b72011-12-07 14:34:02 +0100181 PCI_EXT_CAP_ID_PRI,
182 PCI_EXT_CAP_ID_PASID,
Joerg Roedel5abcdba2011-12-01 15:49:45 +0100183 };
184 int i, pos;
185
186 for (i = 0; i < 3; ++i) {
187 pos = pci_find_ext_capability(pdev, caps[i]);
188 if (pos == 0)
189 return false;
190 }
191
192 return true;
193}
194
Joerg Roedel6a113dd2011-12-01 12:04:58 +0100195static bool pdev_pri_erratum(struct pci_dev *pdev, u32 erratum)
196{
197 struct iommu_dev_data *dev_data;
198
199 dev_data = get_dev_data(&pdev->dev);
200
201 return dev_data->errata & (1 << erratum) ? true : false;
202}
203
Joerg Roedel71c70982009-11-24 16:43:06 +0100204/*
205 * In this function the list of preallocated protection domains is traversed to
206 * find the domain for a specific device
207 */
208static struct dma_ops_domain *find_protection_domain(u16 devid)
209{
210 struct dma_ops_domain *entry, *ret = NULL;
211 unsigned long flags;
212 u16 alias = amd_iommu_alias_table[devid];
213
214 if (list_empty(&iommu_pd_list))
215 return NULL;
216
217 spin_lock_irqsave(&iommu_pd_list_lock, flags);
218
219 list_for_each_entry(entry, &iommu_pd_list, list) {
220 if (entry->target_dev == devid ||
221 entry->target_dev == alias) {
222 ret = entry;
223 break;
224 }
225 }
226
227 spin_unlock_irqrestore(&iommu_pd_list_lock, flags);
228
229 return ret;
230}
231
Joerg Roedel98fc5a62009-11-24 17:19:23 +0100232/*
233 * This function checks if the driver got a valid device from the caller to
234 * avoid dereferencing invalid pointers.
235 */
236static bool check_device(struct device *dev)
237{
238 u16 devid;
239
240 if (!dev || !dev->dma_mask)
241 return false;
242
243 /* No device or no PCI device */
Julia Lawall339d3262010-02-06 09:42:39 +0100244 if (dev->bus != &pci_bus_type)
Joerg Roedel98fc5a62009-11-24 17:19:23 +0100245 return false;
246
247 devid = get_device_id(dev);
248
249 /* Out of our scope? */
250 if (devid > amd_iommu_last_bdf)
251 return false;
252
253 if (amd_iommu_rlookup_table[devid] == NULL)
254 return false;
255
256 return true;
257}
258
Joerg Roedel657cbb62009-11-23 15:26:46 +0100259static int iommu_init_device(struct device *dev)
260{
Joerg Roedel5abcdba2011-12-01 15:49:45 +0100261 struct pci_dev *pdev = to_pci_dev(dev);
Joerg Roedel657cbb62009-11-23 15:26:46 +0100262 struct iommu_dev_data *dev_data;
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200263 u16 alias;
Joerg Roedel657cbb62009-11-23 15:26:46 +0100264
265 if (dev->archdata.iommu)
266 return 0;
267
Joerg Roedel3b03bb72011-06-09 18:53:25 +0200268 dev_data = find_dev_data(get_device_id(dev));
Joerg Roedel657cbb62009-11-23 15:26:46 +0100269 if (!dev_data)
270 return -ENOMEM;
271
Joerg Roedelf62dda62011-06-09 12:55:35 +0200272 alias = amd_iommu_alias_table[dev_data->devid];
Joerg Roedel2b02b092011-06-09 17:48:39 +0200273 if (alias != dev_data->devid) {
Joerg Roedel71f77582011-06-09 19:03:15 +0200274 struct iommu_dev_data *alias_data;
Joerg Roedelb00d3bc2009-11-26 15:35:33 +0100275
Joerg Roedel71f77582011-06-09 19:03:15 +0200276 alias_data = find_dev_data(alias);
277 if (alias_data == NULL) {
278 pr_err("AMD-Vi: Warning: Unhandled device %s\n",
279 dev_name(dev));
Joerg Roedel2b02b092011-06-09 17:48:39 +0200280 free_dev_data(dev_data);
281 return -ENOTSUPP;
282 }
Joerg Roedel71f77582011-06-09 19:03:15 +0200283 dev_data->alias_data = alias_data;
Joerg Roedel26018872011-06-06 16:50:14 +0200284 }
Joerg Roedel657cbb62009-11-23 15:26:46 +0100285
Joerg Roedel5abcdba2011-12-01 15:49:45 +0100286 if (pci_iommuv2_capable(pdev)) {
287 struct amd_iommu *iommu;
288
289 iommu = amd_iommu_rlookup_table[dev_data->devid];
290 dev_data->iommu_v2 = iommu->is_iommu_v2;
291 }
292
Joerg Roedel657cbb62009-11-23 15:26:46 +0100293 dev->archdata.iommu = dev_data;
294
Joerg Roedel657cbb62009-11-23 15:26:46 +0100295 return 0;
296}
297
Joerg Roedel26018872011-06-06 16:50:14 +0200298static void iommu_ignore_device(struct device *dev)
299{
300 u16 devid, alias;
301
302 devid = get_device_id(dev);
303 alias = amd_iommu_alias_table[devid];
304
305 memset(&amd_iommu_dev_table[devid], 0, sizeof(struct dev_table_entry));
306 memset(&amd_iommu_dev_table[alias], 0, sizeof(struct dev_table_entry));
307
308 amd_iommu_rlookup_table[devid] = NULL;
309 amd_iommu_rlookup_table[alias] = NULL;
310}
311
Joerg Roedel657cbb62009-11-23 15:26:46 +0100312static void iommu_uninit_device(struct device *dev)
313{
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200314 /*
315 * Nothing to do here - we keep dev_data around for unplugged devices
316 * and reuse it when the device is re-plugged - not doing so would
317 * introduce a ton of races.
318 */
Joerg Roedel657cbb62009-11-23 15:26:46 +0100319}
Joerg Roedelb7cc9552009-12-10 11:03:39 +0100320
321void __init amd_iommu_uninit_devices(void)
322{
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200323 struct iommu_dev_data *dev_data, *n;
Joerg Roedelb7cc9552009-12-10 11:03:39 +0100324 struct pci_dev *pdev = NULL;
325
326 for_each_pci_dev(pdev) {
327
328 if (!check_device(&pdev->dev))
329 continue;
330
331 iommu_uninit_device(&pdev->dev);
332 }
Joerg Roedel8fa5f802011-06-09 12:24:45 +0200333
334 /* Free all of our dev_data structures */
335 list_for_each_entry_safe(dev_data, n, &dev_data_list, dev_data_list)
336 free_dev_data(dev_data);
Joerg Roedelb7cc9552009-12-10 11:03:39 +0100337}
338
339int __init amd_iommu_init_devices(void)
340{
341 struct pci_dev *pdev = NULL;
342 int ret = 0;
343
344 for_each_pci_dev(pdev) {
345
346 if (!check_device(&pdev->dev))
347 continue;
348
349 ret = iommu_init_device(&pdev->dev);
Joerg Roedel26018872011-06-06 16:50:14 +0200350 if (ret == -ENOTSUPP)
351 iommu_ignore_device(&pdev->dev);
352 else if (ret)
Joerg Roedelb7cc9552009-12-10 11:03:39 +0100353 goto out_free;
354 }
355
356 return 0;
357
358out_free:
359
360 amd_iommu_uninit_devices();
361
362 return ret;
363}
Joerg Roedel7f265082008-12-12 13:50:21 +0100364#ifdef CONFIG_AMD_IOMMU_STATS
365
366/*
367 * Initialization code for statistics collection
368 */
369
Joerg Roedelda49f6d2008-12-12 14:59:58 +0100370DECLARE_STATS_COUNTER(compl_wait);
Joerg Roedel0f2a86f2008-12-12 15:05:16 +0100371DECLARE_STATS_COUNTER(cnt_map_single);
Joerg Roedel146a6912008-12-12 15:07:12 +0100372DECLARE_STATS_COUNTER(cnt_unmap_single);
Joerg Roedeld03f0672008-12-12 15:09:48 +0100373DECLARE_STATS_COUNTER(cnt_map_sg);
Joerg Roedel55877a62008-12-12 15:12:14 +0100374DECLARE_STATS_COUNTER(cnt_unmap_sg);
Joerg Roedelc8f0fb32008-12-12 15:14:21 +0100375DECLARE_STATS_COUNTER(cnt_alloc_coherent);
Joerg Roedel5d31ee72008-12-12 15:16:38 +0100376DECLARE_STATS_COUNTER(cnt_free_coherent);
Joerg Roedelc1858972008-12-12 15:42:39 +0100377DECLARE_STATS_COUNTER(cross_page);
Joerg Roedelf57d98a2008-12-12 15:46:29 +0100378DECLARE_STATS_COUNTER(domain_flush_single);
Joerg Roedel18811f52008-12-12 15:48:28 +0100379DECLARE_STATS_COUNTER(domain_flush_all);
Joerg Roedel5774f7c2008-12-12 15:57:30 +0100380DECLARE_STATS_COUNTER(alloced_io_mem);
Joerg Roedel8ecaf8f2008-12-12 16:13:04 +0100381DECLARE_STATS_COUNTER(total_map_requests);
Joerg Roedel399be2f2011-12-01 16:53:47 +0100382DECLARE_STATS_COUNTER(complete_ppr);
383DECLARE_STATS_COUNTER(invalidate_iotlb);
384DECLARE_STATS_COUNTER(invalidate_iotlb_all);
385DECLARE_STATS_COUNTER(pri_requests);
386
Joerg Roedelda49f6d2008-12-12 14:59:58 +0100387
Joerg Roedel7f265082008-12-12 13:50:21 +0100388static struct dentry *stats_dir;
Joerg Roedel7f265082008-12-12 13:50:21 +0100389static struct dentry *de_fflush;
390
391static void amd_iommu_stats_add(struct __iommu_counter *cnt)
392{
393 if (stats_dir == NULL)
394 return;
395
396 cnt->dent = debugfs_create_u64(cnt->name, 0444, stats_dir,
397 &cnt->value);
398}
399
400static void amd_iommu_stats_init(void)
401{
402 stats_dir = debugfs_create_dir("amd-iommu", NULL);
403 if (stats_dir == NULL)
404 return;
405
Joerg Roedel7f265082008-12-12 13:50:21 +0100406 de_fflush = debugfs_create_bool("fullflush", 0444, stats_dir,
407 (u32 *)&amd_iommu_unmap_flush);
Joerg Roedelda49f6d2008-12-12 14:59:58 +0100408
409 amd_iommu_stats_add(&compl_wait);
Joerg Roedel0f2a86f2008-12-12 15:05:16 +0100410 amd_iommu_stats_add(&cnt_map_single);
Joerg Roedel146a6912008-12-12 15:07:12 +0100411 amd_iommu_stats_add(&cnt_unmap_single);
Joerg Roedeld03f0672008-12-12 15:09:48 +0100412 amd_iommu_stats_add(&cnt_map_sg);
Joerg Roedel55877a62008-12-12 15:12:14 +0100413 amd_iommu_stats_add(&cnt_unmap_sg);
Joerg Roedelc8f0fb32008-12-12 15:14:21 +0100414 amd_iommu_stats_add(&cnt_alloc_coherent);
Joerg Roedel5d31ee72008-12-12 15:16:38 +0100415 amd_iommu_stats_add(&cnt_free_coherent);
Joerg Roedelc1858972008-12-12 15:42:39 +0100416 amd_iommu_stats_add(&cross_page);
Joerg Roedelf57d98a2008-12-12 15:46:29 +0100417 amd_iommu_stats_add(&domain_flush_single);
Joerg Roedel18811f52008-12-12 15:48:28 +0100418 amd_iommu_stats_add(&domain_flush_all);
Joerg Roedel5774f7c2008-12-12 15:57:30 +0100419 amd_iommu_stats_add(&alloced_io_mem);
Joerg Roedel8ecaf8f2008-12-12 16:13:04 +0100420 amd_iommu_stats_add(&total_map_requests);
Joerg Roedel399be2f2011-12-01 16:53:47 +0100421 amd_iommu_stats_add(&complete_ppr);
422 amd_iommu_stats_add(&invalidate_iotlb);
423 amd_iommu_stats_add(&invalidate_iotlb_all);
424 amd_iommu_stats_add(&pri_requests);
Joerg Roedel7f265082008-12-12 13:50:21 +0100425}
426
427#endif
428
Joerg Roedel431b2a22008-07-11 17:14:22 +0200429/****************************************************************************
430 *
Joerg Roedela80dc3e2008-09-11 16:51:41 +0200431 * Interrupt handling functions
432 *
433 ****************************************************************************/
434
Joerg Roedele3e59872009-09-03 14:02:10 +0200435static void dump_dte_entry(u16 devid)
436{
437 int i;
438
Joerg Roedelee6c2862011-11-09 12:06:03 +0100439 for (i = 0; i < 4; ++i)
440 pr_err("AMD-Vi: DTE[%d]: %016llx\n", i,
Joerg Roedele3e59872009-09-03 14:02:10 +0200441 amd_iommu_dev_table[devid].data[i]);
442}
443
Joerg Roedel945b4ac2009-09-03 14:25:02 +0200444static void dump_command(unsigned long phys_addr)
445{
446 struct iommu_cmd *cmd = phys_to_virt(phys_addr);
447 int i;
448
449 for (i = 0; i < 4; ++i)
450 pr_err("AMD-Vi: CMD[%d]: %08x\n", i, cmd->data[i]);
451}
452
Joerg Roedela345b232009-09-03 15:01:43 +0200453static void iommu_print_event(struct amd_iommu *iommu, void *__evt)
Joerg Roedel90008ee2008-09-09 16:41:05 +0200454{
Joerg Roedelc2fcf3a2012-04-12 14:12:00 +0200455 int type, devid, domid, flags;
456 volatile u32 *event = __evt;
457 int count = 0;
458 u64 address;
459
460retry:
461 type = (event[1] >> EVENT_TYPE_SHIFT) & EVENT_TYPE_MASK;
462 devid = (event[0] >> EVENT_DEVID_SHIFT) & EVENT_DEVID_MASK;
463 domid = (event[1] >> EVENT_DOMID_SHIFT) & EVENT_DOMID_MASK;
464 flags = (event[1] >> EVENT_FLAGS_SHIFT) & EVENT_FLAGS_MASK;
465 address = (u64)(((u64)event[3]) << 32) | event[2];
466
467 if (type == 0) {
468 /* Did we hit the erratum? */
469 if (++count == LOOP_TIMEOUT) {
470 pr_err("AMD-Vi: No event written to event log\n");
471 return;
472 }
473 udelay(1);
474 goto retry;
475 }
Joerg Roedel90008ee2008-09-09 16:41:05 +0200476
Joerg Roedel4c6f40d2009-09-01 16:43:58 +0200477 printk(KERN_ERR "AMD-Vi: Event logged [");
Joerg Roedel90008ee2008-09-09 16:41:05 +0200478
479 switch (type) {
480 case EVENT_TYPE_ILL_DEV:
481 printk("ILLEGAL_DEV_TABLE_ENTRY device=%02x:%02x.%x "
482 "address=0x%016llx flags=0x%04x]\n",
483 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
484 address, flags);
Joerg Roedele3e59872009-09-03 14:02:10 +0200485 dump_dte_entry(devid);
Joerg Roedel90008ee2008-09-09 16:41:05 +0200486 break;
487 case EVENT_TYPE_IO_FAULT:
488 printk("IO_PAGE_FAULT device=%02x:%02x.%x "
489 "domain=0x%04x address=0x%016llx flags=0x%04x]\n",
490 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
491 domid, address, flags);
492 break;
493 case EVENT_TYPE_DEV_TAB_ERR:
494 printk("DEV_TAB_HARDWARE_ERROR device=%02x:%02x.%x "
495 "address=0x%016llx flags=0x%04x]\n",
496 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
497 address, flags);
498 break;
499 case EVENT_TYPE_PAGE_TAB_ERR:
500 printk("PAGE_TAB_HARDWARE_ERROR device=%02x:%02x.%x "
501 "domain=0x%04x address=0x%016llx flags=0x%04x]\n",
502 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
503 domid, address, flags);
504 break;
505 case EVENT_TYPE_ILL_CMD:
506 printk("ILLEGAL_COMMAND_ERROR address=0x%016llx]\n", address);
Joerg Roedel945b4ac2009-09-03 14:25:02 +0200507 dump_command(address);
Joerg Roedel90008ee2008-09-09 16:41:05 +0200508 break;
509 case EVENT_TYPE_CMD_HARD_ERR:
510 printk("COMMAND_HARDWARE_ERROR address=0x%016llx "
511 "flags=0x%04x]\n", address, flags);
512 break;
513 case EVENT_TYPE_IOTLB_INV_TO:
514 printk("IOTLB_INV_TIMEOUT device=%02x:%02x.%x "
515 "address=0x%016llx]\n",
516 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
517 address);
518 break;
519 case EVENT_TYPE_INV_DEV_REQ:
520 printk("INVALID_DEVICE_REQUEST device=%02x:%02x.%x "
521 "address=0x%016llx flags=0x%04x]\n",
522 PCI_BUS(devid), PCI_SLOT(devid), PCI_FUNC(devid),
523 address, flags);
524 break;
525 default:
526 printk(KERN_ERR "UNKNOWN type=0x%02x]\n", type);
527 }
Joerg Roedelc2fcf3a2012-04-12 14:12:00 +0200528
529 memset(__evt, 0, 4 * sizeof(u32));
Joerg Roedel90008ee2008-09-09 16:41:05 +0200530}
531
532static void iommu_poll_events(struct amd_iommu *iommu)
533{
534 u32 head, tail;
535 unsigned long flags;
536
537 spin_lock_irqsave(&iommu->lock, flags);
538
539 head = readl(iommu->mmio_base + MMIO_EVT_HEAD_OFFSET);
540 tail = readl(iommu->mmio_base + MMIO_EVT_TAIL_OFFSET);
541
542 while (head != tail) {
Joerg Roedela345b232009-09-03 15:01:43 +0200543 iommu_print_event(iommu, iommu->evt_buf + head);
Joerg Roedel90008ee2008-09-09 16:41:05 +0200544 head = (head + EVENT_ENTRY_SIZE) % iommu->evt_buf_size;
545 }
546
547 writel(head, iommu->mmio_base + MMIO_EVT_HEAD_OFFSET);
548
549 spin_unlock_irqrestore(&iommu->lock, flags);
550}
551
Joerg Roedel3e743872012-06-01 15:20:23 +0200552static void iommu_handle_ppr_entry(struct amd_iommu *iommu, u64 *raw)
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100553{
554 struct amd_iommu_fault fault;
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100555
Joerg Roedel399be2f2011-12-01 16:53:47 +0100556 INC_STATS_COUNTER(pri_requests);
557
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100558 if (PPR_REQ_TYPE(raw[0]) != PPR_REQ_FAULT) {
559 pr_err_ratelimited("AMD-Vi: Unknown PPR request received\n");
560 return;
561 }
562
563 fault.address = raw[1];
564 fault.pasid = PPR_PASID(raw[0]);
565 fault.device_id = PPR_DEVID(raw[0]);
566 fault.tag = PPR_TAG(raw[0]);
567 fault.flags = PPR_FLAGS(raw[0]);
568
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100569 atomic_notifier_call_chain(&ppr_notifier, 0, &fault);
570}
571
572static void iommu_poll_ppr_log(struct amd_iommu *iommu)
573{
574 unsigned long flags;
575 u32 head, tail;
576
577 if (iommu->ppr_log == NULL)
578 return;
579
Joerg Roedel3e743872012-06-01 15:20:23 +0200580 /* enable ppr interrupts again */
581 writel(MMIO_STATUS_PPR_INT_MASK, iommu->mmio_base + MMIO_STATUS_OFFSET);
582
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100583 spin_lock_irqsave(&iommu->lock, flags);
584
585 head = readl(iommu->mmio_base + MMIO_PPR_HEAD_OFFSET);
586 tail = readl(iommu->mmio_base + MMIO_PPR_TAIL_OFFSET);
587
588 while (head != tail) {
Joerg Roedel3e743872012-06-01 15:20:23 +0200589 volatile u64 *raw;
590 u64 entry[2];
591 int i;
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100592
Joerg Roedel3e743872012-06-01 15:20:23 +0200593 raw = (u64 *)(iommu->ppr_log + head);
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100594
Joerg Roedel3e743872012-06-01 15:20:23 +0200595 /*
596 * Hardware bug: Interrupt may arrive before the entry is
597 * written to memory. If this happens we need to wait for the
598 * entry to arrive.
599 */
600 for (i = 0; i < LOOP_TIMEOUT; ++i) {
601 if (PPR_REQ_TYPE(raw[0]) != 0)
602 break;
603 udelay(1);
604 }
605
606 /* Avoid memcpy function-call overhead */
607 entry[0] = raw[0];
608 entry[1] = raw[1];
609
610 /*
611 * To detect the hardware bug we need to clear the entry
612 * back to zero.
613 */
614 raw[0] = raw[1] = 0UL;
615
616 /* Update head pointer of hardware ring-buffer */
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100617 head = (head + PPR_ENTRY_SIZE) % PPR_LOG_SIZE;
618 writel(head, iommu->mmio_base + MMIO_PPR_HEAD_OFFSET);
Joerg Roedel3e743872012-06-01 15:20:23 +0200619
620 /*
621 * Release iommu->lock because ppr-handling might need to
622 * re-aquire it
623 */
624 spin_unlock_irqrestore(&iommu->lock, flags);
625
626 /* Handle PPR entry */
627 iommu_handle_ppr_entry(iommu, entry);
628
629 spin_lock_irqsave(&iommu->lock, flags);
630
631 /* Refresh ring-buffer information */
632 head = readl(iommu->mmio_base + MMIO_PPR_HEAD_OFFSET);
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100633 tail = readl(iommu->mmio_base + MMIO_PPR_TAIL_OFFSET);
634 }
635
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100636 spin_unlock_irqrestore(&iommu->lock, flags);
637}
638
Joerg Roedel72fe00f2011-05-10 10:50:42 +0200639irqreturn_t amd_iommu_int_thread(int irq, void *data)
Joerg Roedela80dc3e2008-09-11 16:51:41 +0200640{
Joerg Roedel90008ee2008-09-09 16:41:05 +0200641 struct amd_iommu *iommu;
642
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100643 for_each_iommu(iommu) {
Joerg Roedel90008ee2008-09-09 16:41:05 +0200644 iommu_poll_events(iommu);
Joerg Roedel72e1dcc2011-11-10 19:13:51 +0100645 iommu_poll_ppr_log(iommu);
646 }
Joerg Roedel90008ee2008-09-09 16:41:05 +0200647
648 return IRQ_HANDLED;
Joerg Roedela80dc3e2008-09-11 16:51:41 +0200649}
650
Joerg Roedel72fe00f2011-05-10 10:50:42 +0200651irqreturn_t amd_iommu_int_handler(int irq, void *data)
652{
653 return IRQ_WAKE_THREAD;
654}
655
Joerg Roedela80dc3e2008-09-11 16:51:41 +0200656/****************************************************************************
657 *
Joerg Roedel431b2a22008-07-11 17:14:22 +0200658 * IOMMU command queuing functions
659 *
660 ****************************************************************************/
661
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200662static int wait_on_sem(volatile u64 *sem)
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200663{
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200664 int i = 0;
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200665
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200666 while (*sem == 0 && i < LOOP_TIMEOUT) {
667 udelay(1);
668 i += 1;
669 }
670
671 if (i == LOOP_TIMEOUT) {
672 pr_alert("AMD-Vi: Completion-Wait loop timed out\n");
673 return -EIO;
674 }
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200675
676 return 0;
677}
678
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200679static void copy_cmd_to_buffer(struct amd_iommu *iommu,
680 struct iommu_cmd *cmd,
681 u32 tail)
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200682{
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200683 u8 *target;
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200684
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200685 target = iommu->cmd_buf + tail;
686 tail = (tail + sizeof(*cmd)) % iommu->cmd_buf_size;
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200687
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200688 /* Copy command to buffer */
689 memcpy(target, cmd, sizeof(*cmd));
690
691 /* Tell the IOMMU about it */
692 writel(tail, iommu->mmio_base + MMIO_CMD_TAIL_OFFSET);
693}
694
Joerg Roedel815b33f2011-04-06 17:26:49 +0200695static void build_completion_wait(struct iommu_cmd *cmd, u64 address)
Joerg Roedelded46732011-04-06 10:53:48 +0200696{
Joerg Roedel815b33f2011-04-06 17:26:49 +0200697 WARN_ON(address & 0x7ULL);
698
Joerg Roedelded46732011-04-06 10:53:48 +0200699 memset(cmd, 0, sizeof(*cmd));
Joerg Roedel815b33f2011-04-06 17:26:49 +0200700 cmd->data[0] = lower_32_bits(__pa(address)) | CMD_COMPL_WAIT_STORE_MASK;
701 cmd->data[1] = upper_32_bits(__pa(address));
702 cmd->data[2] = 1;
Joerg Roedelded46732011-04-06 10:53:48 +0200703 CMD_SET_TYPE(cmd, CMD_COMPL_WAIT);
704}
705
Joerg Roedel94fe79e2011-04-06 11:07:21 +0200706static void build_inv_dte(struct iommu_cmd *cmd, u16 devid)
707{
708 memset(cmd, 0, sizeof(*cmd));
709 cmd->data[0] = devid;
710 CMD_SET_TYPE(cmd, CMD_INV_DEV_ENTRY);
711}
712
Joerg Roedel11b64022011-04-06 11:49:28 +0200713static void build_inv_iommu_pages(struct iommu_cmd *cmd, u64 address,
714 size_t size, u16 domid, int pde)
715{
716 u64 pages;
717 int s;
718
719 pages = iommu_num_pages(address, size, PAGE_SIZE);
720 s = 0;
721
722 if (pages > 1) {
723 /*
724 * If we have to flush more than one page, flush all
725 * TLB entries for this domain
726 */
727 address = CMD_INV_IOMMU_ALL_PAGES_ADDRESS;
728 s = 1;
729 }
730
731 address &= PAGE_MASK;
732
733 memset(cmd, 0, sizeof(*cmd));
734 cmd->data[1] |= domid;
735 cmd->data[2] = lower_32_bits(address);
736 cmd->data[3] = upper_32_bits(address);
737 CMD_SET_TYPE(cmd, CMD_INV_IOMMU_PAGES);
738 if (s) /* size bit - we flush more than one 4kb page */
739 cmd->data[2] |= CMD_INV_IOMMU_PAGES_SIZE_MASK;
740 if (pde) /* PDE bit - we wan't flush everything not only the PTEs */
741 cmd->data[2] |= CMD_INV_IOMMU_PAGES_PDE_MASK;
742}
743
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200744static void build_inv_iotlb_pages(struct iommu_cmd *cmd, u16 devid, int qdep,
745 u64 address, size_t size)
746{
747 u64 pages;
748 int s;
749
750 pages = iommu_num_pages(address, size, PAGE_SIZE);
751 s = 0;
752
753 if (pages > 1) {
754 /*
755 * If we have to flush more than one page, flush all
756 * TLB entries for this domain
757 */
758 address = CMD_INV_IOMMU_ALL_PAGES_ADDRESS;
759 s = 1;
760 }
761
762 address &= PAGE_MASK;
763
764 memset(cmd, 0, sizeof(*cmd));
765 cmd->data[0] = devid;
766 cmd->data[0] |= (qdep & 0xff) << 24;
767 cmd->data[1] = devid;
768 cmd->data[2] = lower_32_bits(address);
769 cmd->data[3] = upper_32_bits(address);
770 CMD_SET_TYPE(cmd, CMD_INV_IOTLB_PAGES);
771 if (s)
772 cmd->data[2] |= CMD_INV_IOMMU_PAGES_SIZE_MASK;
773}
774
Joerg Roedel22e266c2011-11-21 15:59:08 +0100775static void build_inv_iommu_pasid(struct iommu_cmd *cmd, u16 domid, int pasid,
776 u64 address, bool size)
777{
778 memset(cmd, 0, sizeof(*cmd));
779
780 address &= ~(0xfffULL);
781
782 cmd->data[0] = pasid & PASID_MASK;
783 cmd->data[1] = domid;
784 cmd->data[2] = lower_32_bits(address);
785 cmd->data[3] = upper_32_bits(address);
786 cmd->data[2] |= CMD_INV_IOMMU_PAGES_PDE_MASK;
787 cmd->data[2] |= CMD_INV_IOMMU_PAGES_GN_MASK;
788 if (size)
789 cmd->data[2] |= CMD_INV_IOMMU_PAGES_SIZE_MASK;
790 CMD_SET_TYPE(cmd, CMD_INV_IOMMU_PAGES);
791}
792
793static void build_inv_iotlb_pasid(struct iommu_cmd *cmd, u16 devid, int pasid,
794 int qdep, u64 address, bool size)
795{
796 memset(cmd, 0, sizeof(*cmd));
797
798 address &= ~(0xfffULL);
799
800 cmd->data[0] = devid;
801 cmd->data[0] |= (pasid & 0xff) << 16;
802 cmd->data[0] |= (qdep & 0xff) << 24;
803 cmd->data[1] = devid;
804 cmd->data[1] |= ((pasid >> 8) & 0xfff) << 16;
805 cmd->data[2] = lower_32_bits(address);
806 cmd->data[2] |= CMD_INV_IOMMU_PAGES_GN_MASK;
807 cmd->data[3] = upper_32_bits(address);
808 if (size)
809 cmd->data[2] |= CMD_INV_IOMMU_PAGES_SIZE_MASK;
810 CMD_SET_TYPE(cmd, CMD_INV_IOTLB_PAGES);
811}
812
Joerg Roedelc99afa22011-11-21 18:19:25 +0100813static void build_complete_ppr(struct iommu_cmd *cmd, u16 devid, int pasid,
814 int status, int tag, bool gn)
815{
816 memset(cmd, 0, sizeof(*cmd));
817
818 cmd->data[0] = devid;
819 if (gn) {
820 cmd->data[1] = pasid & PASID_MASK;
821 cmd->data[2] = CMD_INV_IOMMU_PAGES_GN_MASK;
822 }
823 cmd->data[3] = tag & 0x1ff;
824 cmd->data[3] |= (status & PPR_STATUS_MASK) << PPR_STATUS_SHIFT;
825
826 CMD_SET_TYPE(cmd, CMD_COMPLETE_PPR);
827}
828
Joerg Roedel58fc7f12011-04-11 11:13:24 +0200829static void build_inv_all(struct iommu_cmd *cmd)
830{
831 memset(cmd, 0, sizeof(*cmd));
832 CMD_SET_TYPE(cmd, CMD_INV_ALL);
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200833}
834
Joerg Roedel431b2a22008-07-11 17:14:22 +0200835/*
Joerg Roedelb6c02712008-06-26 21:27:53 +0200836 * Writes the command to the IOMMUs command buffer and informs the
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200837 * hardware about the new command.
Joerg Roedel431b2a22008-07-11 17:14:22 +0200838 */
Joerg Roedelf1ca1512011-09-02 14:10:32 +0200839static int iommu_queue_command_sync(struct amd_iommu *iommu,
840 struct iommu_cmd *cmd,
841 bool sync)
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200842{
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200843 u32 left, tail, head, next_tail;
Joerg Roedel815b33f2011-04-06 17:26:49 +0200844 unsigned long flags;
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200845
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200846 WARN_ON(iommu->cmd_buf_size & CMD_BUFFER_UNINITIALIZED);
Joerg Roedelda49f6d2008-12-12 14:59:58 +0100847
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200848again:
Joerg Roedel815b33f2011-04-06 17:26:49 +0200849 spin_lock_irqsave(&iommu->lock, flags);
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200850
851 head = readl(iommu->mmio_base + MMIO_CMD_HEAD_OFFSET);
852 tail = readl(iommu->mmio_base + MMIO_CMD_TAIL_OFFSET);
853 next_tail = (tail + sizeof(*cmd)) % iommu->cmd_buf_size;
854 left = (head - next_tail) % iommu->cmd_buf_size;
855
856 if (left <= 2) {
857 struct iommu_cmd sync_cmd;
858 volatile u64 sem = 0;
859 int ret;
860
861 build_completion_wait(&sync_cmd, (u64)&sem);
862 copy_cmd_to_buffer(iommu, &sync_cmd, tail);
863
864 spin_unlock_irqrestore(&iommu->lock, flags);
865
866 if ((ret = wait_on_sem(&sem)) != 0)
867 return ret;
868
869 goto again;
Joerg Roedel136f78a2008-07-11 17:14:27 +0200870 }
871
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200872 copy_cmd_to_buffer(iommu, cmd, tail);
Joerg Roedel519c31b2008-08-14 19:55:15 +0200873
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200874 /* We need to sync now to make sure all commands are processed */
Joerg Roedelf1ca1512011-09-02 14:10:32 +0200875 iommu->need_sync = sync;
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200876
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200877 spin_unlock_irqrestore(&iommu->lock, flags);
878
Joerg Roedel815b33f2011-04-06 17:26:49 +0200879 return 0;
Joerg Roedel8d201962008-12-02 20:34:41 +0100880}
881
Joerg Roedelf1ca1512011-09-02 14:10:32 +0200882static int iommu_queue_command(struct amd_iommu *iommu, struct iommu_cmd *cmd)
883{
884 return iommu_queue_command_sync(iommu, cmd, true);
885}
886
Joerg Roedel8d201962008-12-02 20:34:41 +0100887/*
888 * This function queues a completion wait command into the command
889 * buffer of an IOMMU
890 */
Joerg Roedel8d201962008-12-02 20:34:41 +0100891static int iommu_completion_wait(struct amd_iommu *iommu)
892{
Joerg Roedel815b33f2011-04-06 17:26:49 +0200893 struct iommu_cmd cmd;
894 volatile u64 sem = 0;
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200895 int ret;
Joerg Roedel8d201962008-12-02 20:34:41 +0100896
897 if (!iommu->need_sync)
Joerg Roedel815b33f2011-04-06 17:26:49 +0200898 return 0;
Joerg Roedel8d201962008-12-02 20:34:41 +0100899
Joerg Roedel815b33f2011-04-06 17:26:49 +0200900 build_completion_wait(&cmd, (u64)&sem);
Joerg Roedel8d201962008-12-02 20:34:41 +0100901
Joerg Roedelf1ca1512011-09-02 14:10:32 +0200902 ret = iommu_queue_command_sync(iommu, &cmd, false);
Joerg Roedel8d201962008-12-02 20:34:41 +0100903 if (ret)
Joerg Roedel815b33f2011-04-06 17:26:49 +0200904 return ret;
Joerg Roedel8d201962008-12-02 20:34:41 +0100905
Joerg Roedelac0ea6e2011-04-06 18:38:20 +0200906 return wait_on_sem(&sem);
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200907}
908
Joerg Roedeld8c13082011-04-06 18:51:26 +0200909static int iommu_flush_dte(struct amd_iommu *iommu, u16 devid)
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200910{
911 struct iommu_cmd cmd;
912
Joerg Roedeld8c13082011-04-06 18:51:26 +0200913 build_inv_dte(&cmd, devid);
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200914
Joerg Roedeld8c13082011-04-06 18:51:26 +0200915 return iommu_queue_command(iommu, &cmd);
916}
917
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200918static void iommu_flush_dte_all(struct amd_iommu *iommu)
919{
920 u32 devid;
921
922 for (devid = 0; devid <= 0xffff; ++devid)
923 iommu_flush_dte(iommu, devid);
924
925 iommu_completion_wait(iommu);
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200926}
927
928/*
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200929 * This function uses heavy locking and may disable irqs for some time. But
930 * this is no issue because it is only called during resume.
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200931 */
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200932static void iommu_flush_tlb_all(struct amd_iommu *iommu)
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200933{
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200934 u32 dom_id;
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200935
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200936 for (dom_id = 0; dom_id <= 0xffff; ++dom_id) {
937 struct iommu_cmd cmd;
938 build_inv_iommu_pages(&cmd, 0, CMD_INV_IOMMU_ALL_PAGES_ADDRESS,
939 dom_id, 1);
940 iommu_queue_command(iommu, &cmd);
941 }
Joerg Roedel431b2a22008-07-11 17:14:22 +0200942
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200943 iommu_completion_wait(iommu);
Joerg Roedela19ae1e2008-06-26 21:27:55 +0200944}
945
Joerg Roedel58fc7f12011-04-11 11:13:24 +0200946static void iommu_flush_all(struct amd_iommu *iommu)
947{
948 struct iommu_cmd cmd;
949
950 build_inv_all(&cmd);
951
952 iommu_queue_command(iommu, &cmd);
953 iommu_completion_wait(iommu);
954}
955
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200956void iommu_flush_all_caches(struct amd_iommu *iommu)
957{
Joerg Roedel58fc7f12011-04-11 11:13:24 +0200958 if (iommu_feature(iommu, FEATURE_IA)) {
959 iommu_flush_all(iommu);
960 } else {
961 iommu_flush_dte_all(iommu);
962 iommu_flush_tlb_all(iommu);
963 }
Joerg Roedel7d0c5cc2011-04-07 08:16:10 +0200964}
965
Joerg Roedel431b2a22008-07-11 17:14:22 +0200966/*
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200967 * Command send function for flushing on-device TLB
968 */
Joerg Roedel6c542042011-06-09 17:07:31 +0200969static int device_flush_iotlb(struct iommu_dev_data *dev_data,
970 u64 address, size_t size)
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200971{
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200972 struct amd_iommu *iommu;
973 struct iommu_cmd cmd;
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200974 int qdep;
975
Joerg Roedelea61cdd2011-06-09 12:56:30 +0200976 qdep = dev_data->ats.qdep;
977 iommu = amd_iommu_rlookup_table[dev_data->devid];
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200978
Joerg Roedelea61cdd2011-06-09 12:56:30 +0200979 build_inv_iotlb_pages(&cmd, dev_data->devid, qdep, address, size);
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200980
981 return iommu_queue_command(iommu, &cmd);
982}
983
984/*
Joerg Roedel431b2a22008-07-11 17:14:22 +0200985 * Command send function for invalidating a device table entry
986 */
Joerg Roedel6c542042011-06-09 17:07:31 +0200987static int device_flush_dte(struct iommu_dev_data *dev_data)
Joerg Roedel3fa43652009-11-26 15:04:38 +0100988{
989 struct amd_iommu *iommu;
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200990 int ret;
Joerg Roedel3fa43652009-11-26 15:04:38 +0100991
Joerg Roedel6c542042011-06-09 17:07:31 +0200992 iommu = amd_iommu_rlookup_table[dev_data->devid];
Joerg Roedel3fa43652009-11-26 15:04:38 +0100993
Joerg Roedelf62dda62011-06-09 12:55:35 +0200994 ret = iommu_flush_dte(iommu, dev_data->devid);
Joerg Roedelcb41ed82011-04-05 11:00:53 +0200995 if (ret)
996 return ret;
997
Joerg Roedelea61cdd2011-06-09 12:56:30 +0200998 if (dev_data->ats.enabled)
Joerg Roedel6c542042011-06-09 17:07:31 +0200999 ret = device_flush_iotlb(dev_data, 0, ~0UL);
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001000
1001 return ret;
Joerg Roedel3fa43652009-11-26 15:04:38 +01001002}
1003
Joerg Roedel431b2a22008-07-11 17:14:22 +02001004/*
1005 * TLB invalidation function which is called from the mapping functions.
1006 * It invalidates a single PTE if the range to flush is within a single
1007 * page. Otherwise it flushes the whole TLB of the IOMMU.
1008 */
Joerg Roedel17b124b2011-04-06 18:01:35 +02001009static void __domain_flush_pages(struct protection_domain *domain,
1010 u64 address, size_t size, int pde)
Joerg Roedela19ae1e2008-06-26 21:27:55 +02001011{
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001012 struct iommu_dev_data *dev_data;
Joerg Roedel11b64022011-04-06 11:49:28 +02001013 struct iommu_cmd cmd;
1014 int ret = 0, i;
Joerg Roedela19ae1e2008-06-26 21:27:55 +02001015
Joerg Roedel11b64022011-04-06 11:49:28 +02001016 build_inv_iommu_pages(&cmd, address, size, domain->id, pde);
Joerg Roedel999ba412008-07-03 19:35:08 +02001017
Joerg Roedel6de8ad92009-11-23 18:30:32 +01001018 for (i = 0; i < amd_iommus_present; ++i) {
1019 if (!domain->dev_iommu[i])
1020 continue;
1021
1022 /*
1023 * Devices of this domain are behind this IOMMU
1024 * We need a TLB flush
1025 */
Joerg Roedel11b64022011-04-06 11:49:28 +02001026 ret |= iommu_queue_command(amd_iommus[i], &cmd);
Joerg Roedel6de8ad92009-11-23 18:30:32 +01001027 }
1028
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001029 list_for_each_entry(dev_data, &domain->dev_list, list) {
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001030
Joerg Roedelea61cdd2011-06-09 12:56:30 +02001031 if (!dev_data->ats.enabled)
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001032 continue;
1033
Joerg Roedel6c542042011-06-09 17:07:31 +02001034 ret |= device_flush_iotlb(dev_data, address, size);
Joerg Roedelcb41ed82011-04-05 11:00:53 +02001035 }
1036
Joerg Roedel11b64022011-04-06 11:49:28 +02001037 WARN_ON(ret);
Joerg Roedel6de8ad92009-11-23 18:30:32 +01001038}
1039
Joerg Roedel17b124b2011-04-06 18:01:35 +02001040static void domain_flush_pages(struct protection_domain *domain,
1041 u64 address, size_t size)
Joerg Roedel6de8ad92009-11-23 18:30:32 +01001042{
Joerg Roedel17b124b2011-04-06 18:01:35 +02001043 __domain_flush_pages(domain, address, size, 0);
Joerg Roedela19ae1e2008-06-26 21:27:55 +02001044}
Joerg Roedelb6c02712008-06-26 21:27:53 +02001045
Joerg Roedel1c655772008-09-04 18:40:05 +02001046/* Flush the whole IO/TLB for a given protection domain */
Joerg Roedel17b124b2011-04-06 18:01:35 +02001047static void domain_flush_tlb(struct protection_domain *domain)
Joerg Roedel1c655772008-09-04 18:40:05 +02001048{
Joerg Roedel17b124b2011-04-06 18:01:35 +02001049 __domain_flush_pages(domain, 0, CMD_INV_IOMMU_ALL_PAGES_ADDRESS, 0);
Joerg Roedel1c655772008-09-04 18:40:05 +02001050}
1051
Chris Wright42a49f92009-06-15 15:42:00 +02001052/* Flush the whole IO/TLB for a given protection domain - including PDE */
Joerg Roedel17b124b2011-04-06 18:01:35 +02001053static void domain_flush_tlb_pde(struct protection_domain *domain)
Chris Wright42a49f92009-06-15 15:42:00 +02001054{
Joerg Roedel17b124b2011-04-06 18:01:35 +02001055 __domain_flush_pages(domain, 0, CMD_INV_IOMMU_ALL_PAGES_ADDRESS, 1);
1056}
1057
1058static void domain_flush_complete(struct protection_domain *domain)
Joerg Roedelb6c02712008-06-26 21:27:53 +02001059{
1060 int i;
1061
1062 for (i = 0; i < amd_iommus_present; ++i) {
1063 if (!domain->dev_iommu[i])
1064 continue;
1065
1066 /*
1067 * Devices of this domain are behind this IOMMU
1068 * We need to wait for completion of all commands.
1069 */
1070 iommu_completion_wait(amd_iommus[i]);
1071 }
1072}
1073
Joerg Roedelb00d3bc2009-11-26 15:35:33 +01001074
Joerg Roedel43f49602008-12-02 21:01:12 +01001075/*
Joerg Roedelb00d3bc2009-11-26 15:35:33 +01001076 * This function flushes the DTEs for all devices in domain
Joerg Roedel43f49602008-12-02 21:01:12 +01001077 */
Joerg Roedel17b124b2011-04-06 18:01:35 +02001078static void domain_flush_devices(struct protection_domain *domain)
Joerg Roedelbfd1be12009-05-05 15:33:57 +02001079{
Joerg Roedelb00d3bc2009-11-26 15:35:33 +01001080 struct iommu_dev_data *dev_data;
Joerg Roedelb00d3bc2009-11-26 15:35:33 +01001081
1082 list_for_each_entry(dev_data, &domain->dev_list, list)
Joerg Roedel6c542042011-06-09 17:07:31 +02001083 device_flush_dte(dev_data);
Joerg Roedelb00d3bc2009-11-26 15:35:33 +01001084}
1085
Joerg Roedel431b2a22008-07-11 17:14:22 +02001086/****************************************************************************
1087 *
1088 * The functions below are used the create the page table mappings for
1089 * unity mapped regions.
1090 *
1091 ****************************************************************************/
1092
1093/*
Joerg Roedel308973d2009-11-24 17:43:32 +01001094 * This function is used to add another level to an IO page table. Adding
1095 * another level increases the size of the address space by 9 bits to a size up
1096 * to 64 bits.
1097 */
1098static bool increase_address_space(struct protection_domain *domain,
1099 gfp_t gfp)
1100{
1101 u64 *pte;
1102
1103 if (domain->mode == PAGE_MODE_6_LEVEL)
1104 /* address space already 64 bit large */
1105 return false;
1106
1107 pte = (void *)get_zeroed_page(gfp);
1108 if (!pte)
1109 return false;
1110
1111 *pte = PM_LEVEL_PDE(domain->mode,
1112 virt_to_phys(domain->pt_root));
1113 domain->pt_root = pte;
1114 domain->mode += 1;
1115 domain->updated = true;
1116
1117 return true;
1118}
1119
1120static u64 *alloc_pte(struct protection_domain *domain,
1121 unsigned long address,
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001122 unsigned long page_size,
Joerg Roedel308973d2009-11-24 17:43:32 +01001123 u64 **pte_page,
1124 gfp_t gfp)
1125{
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001126 int level, end_lvl;
Joerg Roedel308973d2009-11-24 17:43:32 +01001127 u64 *pte, *page;
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001128
1129 BUG_ON(!is_power_of_2(page_size));
Joerg Roedel308973d2009-11-24 17:43:32 +01001130
1131 while (address > PM_LEVEL_SIZE(domain->mode))
1132 increase_address_space(domain, gfp);
1133
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001134 level = domain->mode - 1;
1135 pte = &domain->pt_root[PM_LEVEL_INDEX(level, address)];
1136 address = PAGE_SIZE_ALIGN(address, page_size);
1137 end_lvl = PAGE_SIZE_LEVEL(page_size);
Joerg Roedel308973d2009-11-24 17:43:32 +01001138
1139 while (level > end_lvl) {
1140 if (!IOMMU_PTE_PRESENT(*pte)) {
1141 page = (u64 *)get_zeroed_page(gfp);
1142 if (!page)
1143 return NULL;
1144 *pte = PM_LEVEL_PDE(level, virt_to_phys(page));
1145 }
1146
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001147 /* No level skipping support yet */
1148 if (PM_PTE_LEVEL(*pte) != level)
1149 return NULL;
1150
Joerg Roedel308973d2009-11-24 17:43:32 +01001151 level -= 1;
1152
1153 pte = IOMMU_PTE_PAGE(*pte);
1154
1155 if (pte_page && level == end_lvl)
1156 *pte_page = pte;
1157
1158 pte = &pte[PM_LEVEL_INDEX(level, address)];
1159 }
1160
1161 return pte;
1162}
1163
1164/*
1165 * This function checks if there is a PTE for a given dma address. If
1166 * there is one, it returns the pointer to it.
1167 */
Joerg Roedel24cd7722010-01-19 17:27:39 +01001168static u64 *fetch_pte(struct protection_domain *domain, unsigned long address)
Joerg Roedel308973d2009-11-24 17:43:32 +01001169{
1170 int level;
1171 u64 *pte;
1172
Joerg Roedel24cd7722010-01-19 17:27:39 +01001173 if (address > PM_LEVEL_SIZE(domain->mode))
1174 return NULL;
Joerg Roedel308973d2009-11-24 17:43:32 +01001175
Joerg Roedel24cd7722010-01-19 17:27:39 +01001176 level = domain->mode - 1;
1177 pte = &domain->pt_root[PM_LEVEL_INDEX(level, address)];
1178
1179 while (level > 0) {
1180
1181 /* Not Present */
Joerg Roedel308973d2009-11-24 17:43:32 +01001182 if (!IOMMU_PTE_PRESENT(*pte))
1183 return NULL;
1184
Joerg Roedel24cd7722010-01-19 17:27:39 +01001185 /* Large PTE */
1186 if (PM_PTE_LEVEL(*pte) == 0x07) {
1187 unsigned long pte_mask, __pte;
1188
1189 /*
1190 * If we have a series of large PTEs, make
1191 * sure to return a pointer to the first one.
1192 */
1193 pte_mask = PTE_PAGE_SIZE(*pte);
1194 pte_mask = ~((PAGE_SIZE_PTE_COUNT(pte_mask) << 3) - 1);
1195 __pte = ((unsigned long)pte) & pte_mask;
1196
1197 return (u64 *)__pte;
1198 }
1199
1200 /* No level skipping support yet */
1201 if (PM_PTE_LEVEL(*pte) != level)
1202 return NULL;
1203
Joerg Roedel308973d2009-11-24 17:43:32 +01001204 level -= 1;
1205
Joerg Roedel24cd7722010-01-19 17:27:39 +01001206 /* Walk to the next level */
Joerg Roedel308973d2009-11-24 17:43:32 +01001207 pte = IOMMU_PTE_PAGE(*pte);
1208 pte = &pte[PM_LEVEL_INDEX(level, address)];
Joerg Roedel308973d2009-11-24 17:43:32 +01001209 }
1210
1211 return pte;
1212}
1213
1214/*
Joerg Roedel431b2a22008-07-11 17:14:22 +02001215 * Generic mapping functions. It maps a physical address into a DMA
1216 * address space. It allocates the page table pages if necessary.
1217 * In the future it can be extended to a generic mapping function
1218 * supporting all features of AMD IOMMU page tables like level skipping
1219 * and full 64 bit address spaces.
1220 */
Joerg Roedel38e817f2008-12-02 17:27:52 +01001221static int iommu_map_page(struct protection_domain *dom,
1222 unsigned long bus_addr,
1223 unsigned long phys_addr,
Joerg Roedelabdc5eb2009-09-03 11:33:51 +02001224 int prot,
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001225 unsigned long page_size)
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001226{
Joerg Roedel8bda3092009-05-12 12:02:46 +02001227 u64 __pte, *pte;
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001228 int i, count;
Joerg Roedelabdc5eb2009-09-03 11:33:51 +02001229
Joerg Roedelbad1cac2009-09-02 16:52:23 +02001230 if (!(prot & IOMMU_PROT_MASK))
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001231 return -EINVAL;
1232
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001233 bus_addr = PAGE_ALIGN(bus_addr);
1234 phys_addr = PAGE_ALIGN(phys_addr);
1235 count = PAGE_SIZE_PTE_COUNT(page_size);
1236 pte = alloc_pte(dom, bus_addr, page_size, NULL, GFP_KERNEL);
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001237
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001238 for (i = 0; i < count; ++i)
1239 if (IOMMU_PTE_PRESENT(pte[i]))
1240 return -EBUSY;
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001241
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001242 if (page_size > PAGE_SIZE) {
1243 __pte = PAGE_SIZE_PTE(phys_addr, page_size);
1244 __pte |= PM_LEVEL_ENC(7) | IOMMU_PTE_P | IOMMU_PTE_FC;
1245 } else
1246 __pte = phys_addr | IOMMU_PTE_P | IOMMU_PTE_FC;
1247
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001248 if (prot & IOMMU_PROT_IR)
1249 __pte |= IOMMU_PTE_IR;
1250 if (prot & IOMMU_PROT_IW)
1251 __pte |= IOMMU_PTE_IW;
1252
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001253 for (i = 0; i < count; ++i)
1254 pte[i] = __pte;
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001255
Joerg Roedel04bfdd82009-09-02 16:00:23 +02001256 update_domain(dom);
1257
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001258 return 0;
1259}
1260
Joerg Roedel24cd7722010-01-19 17:27:39 +01001261static unsigned long iommu_unmap_page(struct protection_domain *dom,
1262 unsigned long bus_addr,
1263 unsigned long page_size)
Joerg Roedeleb74ff62008-12-02 19:59:10 +01001264{
Joerg Roedel24cd7722010-01-19 17:27:39 +01001265 unsigned long long unmap_size, unmapped;
1266 u64 *pte;
Joerg Roedeleb74ff62008-12-02 19:59:10 +01001267
Joerg Roedel24cd7722010-01-19 17:27:39 +01001268 BUG_ON(!is_power_of_2(page_size));
1269
1270 unmapped = 0;
1271
1272 while (unmapped < page_size) {
1273
1274 pte = fetch_pte(dom, bus_addr);
1275
1276 if (!pte) {
1277 /*
1278 * No PTE for this address
1279 * move forward in 4kb steps
1280 */
1281 unmap_size = PAGE_SIZE;
1282 } else if (PM_PTE_LEVEL(*pte) == 0) {
1283 /* 4kb PTE found for this address */
1284 unmap_size = PAGE_SIZE;
1285 *pte = 0ULL;
1286 } else {
1287 int count, i;
1288
1289 /* Large PTE found which maps this address */
1290 unmap_size = PTE_PAGE_SIZE(*pte);
1291 count = PAGE_SIZE_PTE_COUNT(unmap_size);
1292 for (i = 0; i < count; i++)
1293 pte[i] = 0ULL;
1294 }
1295
1296 bus_addr = (bus_addr & ~(unmap_size - 1)) + unmap_size;
1297 unmapped += unmap_size;
1298 }
1299
1300 BUG_ON(!is_power_of_2(unmapped));
1301
1302 return unmapped;
Joerg Roedeleb74ff62008-12-02 19:59:10 +01001303}
Joerg Roedeleb74ff62008-12-02 19:59:10 +01001304
Joerg Roedel431b2a22008-07-11 17:14:22 +02001305/*
1306 * This function checks if a specific unity mapping entry is needed for
1307 * this specific IOMMU.
1308 */
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001309static int iommu_for_unity_map(struct amd_iommu *iommu,
1310 struct unity_map_entry *entry)
1311{
1312 u16 bdf, i;
1313
1314 for (i = entry->devid_start; i <= entry->devid_end; ++i) {
1315 bdf = amd_iommu_alias_table[i];
1316 if (amd_iommu_rlookup_table[bdf] == iommu)
1317 return 1;
1318 }
1319
1320 return 0;
1321}
1322
Joerg Roedel431b2a22008-07-11 17:14:22 +02001323/*
Joerg Roedel431b2a22008-07-11 17:14:22 +02001324 * This function actually applies the mapping to the page table of the
1325 * dma_ops domain.
1326 */
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001327static int dma_ops_unity_map(struct dma_ops_domain *dma_dom,
1328 struct unity_map_entry *e)
1329{
1330 u64 addr;
1331 int ret;
1332
1333 for (addr = e->address_start; addr < e->address_end;
1334 addr += PAGE_SIZE) {
Joerg Roedelabdc5eb2009-09-03 11:33:51 +02001335 ret = iommu_map_page(&dma_dom->domain, addr, addr, e->prot,
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001336 PAGE_SIZE);
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001337 if (ret)
1338 return ret;
1339 /*
1340 * if unity mapping is in aperture range mark the page
1341 * as allocated in the aperture
1342 */
1343 if (addr < dma_dom->aperture_size)
Joerg Roedelc3239562009-05-12 10:56:44 +02001344 __set_bit(addr >> PAGE_SHIFT,
Joerg Roedel384de722009-05-15 12:30:05 +02001345 dma_dom->aperture[0]->bitmap);
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001346 }
1347
1348 return 0;
1349}
1350
Joerg Roedel431b2a22008-07-11 17:14:22 +02001351/*
Joerg Roedel171e7b32009-11-24 17:47:56 +01001352 * Init the unity mappings for a specific IOMMU in the system
1353 *
1354 * Basically iterates over all unity mapping entries and applies them to
1355 * the default domain DMA of that IOMMU if necessary.
1356 */
1357static int iommu_init_unity_mappings(struct amd_iommu *iommu)
1358{
1359 struct unity_map_entry *entry;
1360 int ret;
1361
1362 list_for_each_entry(entry, &amd_iommu_unity_map, list) {
1363 if (!iommu_for_unity_map(iommu, entry))
1364 continue;
1365 ret = dma_ops_unity_map(iommu->default_dom, entry);
1366 if (ret)
1367 return ret;
1368 }
1369
1370 return 0;
1371}
1372
1373/*
Joerg Roedel431b2a22008-07-11 17:14:22 +02001374 * Inits the unity mappings required for a specific device
1375 */
Joerg Roedelbd0e5212008-06-26 21:27:56 +02001376static int init_unity_mappings_for_device(struct dma_ops_domain *dma_dom,
1377 u16 devid)
1378{
1379 struct unity_map_entry *e;
1380 int ret;
1381
1382 list_for_each_entry(e, &amd_iommu_unity_map, list) {
1383 if (!(devid >= e->devid_start && devid <= e->devid_end))
1384 continue;
1385 ret = dma_ops_unity_map(dma_dom, e);
1386 if (ret)
1387 return ret;
1388 }
1389
1390 return 0;
1391}
1392
Joerg Roedel431b2a22008-07-11 17:14:22 +02001393/****************************************************************************
1394 *
1395 * The next functions belong to the address allocator for the dma_ops
1396 * interface functions. They work like the allocators in the other IOMMU
1397 * drivers. Its basically a bitmap which marks the allocated pages in
1398 * the aperture. Maybe it could be enhanced in the future to a more
1399 * efficient allocator.
1400 *
1401 ****************************************************************************/
Joerg Roedeld3086442008-06-26 21:27:57 +02001402
Joerg Roedel431b2a22008-07-11 17:14:22 +02001403/*
Joerg Roedel384de722009-05-15 12:30:05 +02001404 * The address allocator core functions.
Joerg Roedel431b2a22008-07-11 17:14:22 +02001405 *
1406 * called with domain->lock held
1407 */
Joerg Roedel384de722009-05-15 12:30:05 +02001408
Joerg Roedel9cabe892009-05-18 16:38:55 +02001409/*
Joerg Roedel171e7b32009-11-24 17:47:56 +01001410 * Used to reserve address ranges in the aperture (e.g. for exclusion
1411 * ranges.
1412 */
1413static void dma_ops_reserve_addresses(struct dma_ops_domain *dom,
1414 unsigned long start_page,
1415 unsigned int pages)
1416{
1417 unsigned int i, last_page = dom->aperture_size >> PAGE_SHIFT;
1418
1419 if (start_page + pages > last_page)
1420 pages = last_page - start_page;
1421
1422 for (i = start_page; i < start_page + pages; ++i) {
1423 int index = i / APERTURE_RANGE_PAGES;
1424 int page = i % APERTURE_RANGE_PAGES;
1425 __set_bit(page, dom->aperture[index]->bitmap);
1426 }
1427}
1428
1429/*
Joerg Roedel9cabe892009-05-18 16:38:55 +02001430 * This function is used to add a new aperture range to an existing
1431 * aperture in case of dma_ops domain allocation or address allocation
1432 * failure.
1433 */
Joerg Roedel576175c2009-11-23 19:08:46 +01001434static int alloc_new_range(struct dma_ops_domain *dma_dom,
Joerg Roedel9cabe892009-05-18 16:38:55 +02001435 bool populate, gfp_t gfp)
1436{
1437 int index = dma_dom->aperture_size >> APERTURE_RANGE_SHIFT;
Joerg Roedel576175c2009-11-23 19:08:46 +01001438 struct amd_iommu *iommu;
Joerg Roedel17f5b562011-07-06 17:14:44 +02001439 unsigned long i, old_size;
Joerg Roedel9cabe892009-05-18 16:38:55 +02001440
Joerg Roedelf5e97052009-05-22 12:31:53 +02001441#ifdef CONFIG_IOMMU_STRESS
1442 populate = false;
1443#endif
1444
Joerg Roedel9cabe892009-05-18 16:38:55 +02001445 if (index >= APERTURE_MAX_RANGES)
1446 return -ENOMEM;
1447
1448 dma_dom->aperture[index] = kzalloc(sizeof(struct aperture_range), gfp);
1449 if (!dma_dom->aperture[index])
1450 return -ENOMEM;
1451
1452 dma_dom->aperture[index]->bitmap = (void *)get_zeroed_page(gfp);
1453 if (!dma_dom->aperture[index]->bitmap)
1454 goto out_free;
1455
1456 dma_dom->aperture[index]->offset = dma_dom->aperture_size;
1457
1458 if (populate) {
1459 unsigned long address = dma_dom->aperture_size;
1460 int i, num_ptes = APERTURE_RANGE_PAGES / 512;
1461 u64 *pte, *pte_page;
1462
1463 for (i = 0; i < num_ptes; ++i) {
Joerg Roedelcbb9d722010-01-15 14:41:15 +01001464 pte = alloc_pte(&dma_dom->domain, address, PAGE_SIZE,
Joerg Roedel9cabe892009-05-18 16:38:55 +02001465 &pte_page, gfp);
1466 if (!pte)
1467 goto out_free;
1468
1469 dma_dom->aperture[index]->pte_pages[i] = pte_page;
1470
1471 address += APERTURE_RANGE_SIZE / 64;
1472 }
1473 }
1474
Joerg Roedel17f5b562011-07-06 17:14:44 +02001475 old_size = dma_dom->aperture_size;
Joerg Roedel9cabe892009-05-18 16:38:55 +02001476 dma_dom->aperture_size += APERTURE_RANGE_SIZE;
1477
Joerg Roedel17f5b562011-07-06 17:14:44 +02001478 /* Reserve address range used for MSI messages */
1479 if (old_size < MSI_ADDR_BASE_LO &&
1480 dma_dom->aperture_size > MSI_ADDR_BASE_LO) {
1481 unsigned long spage;
1482 int pages;
1483
1484 pages = iommu_num_pages(MSI_ADDR_BASE_LO, 0x10000, PAGE_SIZE);
1485 spage = MSI_ADDR_BASE_LO >> PAGE_SHIFT;
1486
1487 dma_ops_reserve_addresses(dma_dom, spage, pages);
1488 }
1489
Uwe Kleine-Königb5950762010-11-01 15:38:34 -04001490 /* Initialize the exclusion range if necessary */
Joerg Roedel576175c2009-11-23 19:08:46 +01001491 for_each_iommu(iommu) {
1492 if (iommu->exclusion_start &&
1493 iommu->exclusion_start >= dma_dom->aperture[index]->offset
1494 && iommu->exclusion_start < dma_dom->aperture_size) {
1495 unsigned long startpage;
1496 int pages = iommu_num_pages(iommu->exclusion_start,
1497 iommu->exclusion_length,
1498 PAGE_SIZE);
1499 startpage = iommu->exclusion_start >> PAGE_SHIFT;
1500 dma_ops_reserve_addresses(dma_dom, startpage, pages);
1501 }
Joerg Roedel00cd1222009-05-19 09:52:40 +02001502 }
1503
1504 /*
1505 * Check for areas already mapped as present in the new aperture
1506 * range and mark those pages as reserved in the allocator. Such
1507 * mappings may already exist as a result of requested unity
1508 * mappings for devices.
1509 */
1510 for (i = dma_dom->aperture[index]->offset;
1511 i < dma_dom->aperture_size;
1512 i += PAGE_SIZE) {
Joerg Roedel24cd7722010-01-19 17:27:39 +01001513 u64 *pte = fetch_pte(&dma_dom->domain, i);
Joerg Roedel00cd1222009-05-19 09:52:40 +02001514 if (!pte || !IOMMU_PTE_PRESENT(*pte))
1515 continue;
1516
Joerg Roedelfcd08612011-10-11 17:41:32 +02001517 dma_ops_reserve_addresses(dma_dom, i >> PAGE_SHIFT, 1);
Joerg Roedel00cd1222009-05-19 09:52:40 +02001518 }
1519
Joerg Roedel04bfdd82009-09-02 16:00:23 +02001520 update_domain(&dma_dom->domain);
1521
Joerg Roedel9cabe892009-05-18 16:38:55 +02001522 return 0;
1523
1524out_free:
Joerg Roedel04bfdd82009-09-02 16:00:23 +02001525 update_domain(&dma_dom->domain);
1526
Joerg Roedel9cabe892009-05-18 16:38:55 +02001527 free_page((unsigned long)dma_dom->aperture[index]->bitmap);
1528
1529 kfree(dma_dom->aperture[index]);
1530 dma_dom->aperture[index] = NULL;
1531
1532 return -ENOMEM;
1533}
1534
Joerg Roedel384de722009-05-15 12:30:05 +02001535static unsigned long dma_ops_area_alloc(struct device *dev,
1536 struct dma_ops_domain *dom,
1537 unsigned int pages,
1538 unsigned long align_mask,
1539 u64 dma_mask,
1540 unsigned long start)
1541{
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001542 unsigned long next_bit = dom->next_address % APERTURE_RANGE_SIZE;
Joerg Roedel384de722009-05-15 12:30:05 +02001543 int max_index = dom->aperture_size >> APERTURE_RANGE_SHIFT;
1544 int i = start >> APERTURE_RANGE_SHIFT;
1545 unsigned long boundary_size;
1546 unsigned long address = -1;
1547 unsigned long limit;
1548
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001549 next_bit >>= PAGE_SHIFT;
1550
Joerg Roedel384de722009-05-15 12:30:05 +02001551 boundary_size = ALIGN(dma_get_seg_boundary(dev) + 1,
1552 PAGE_SIZE) >> PAGE_SHIFT;
1553
1554 for (;i < max_index; ++i) {
1555 unsigned long offset = dom->aperture[i]->offset >> PAGE_SHIFT;
1556
1557 if (dom->aperture[i]->offset >= dma_mask)
1558 break;
1559
1560 limit = iommu_device_max_index(APERTURE_RANGE_PAGES, offset,
1561 dma_mask >> PAGE_SHIFT);
1562
1563 address = iommu_area_alloc(dom->aperture[i]->bitmap,
1564 limit, next_bit, pages, 0,
1565 boundary_size, align_mask);
1566 if (address != -1) {
1567 address = dom->aperture[i]->offset +
1568 (address << PAGE_SHIFT);
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001569 dom->next_address = address + (pages << PAGE_SHIFT);
Joerg Roedel384de722009-05-15 12:30:05 +02001570 break;
1571 }
1572
1573 next_bit = 0;
1574 }
1575
1576 return address;
1577}
1578
Joerg Roedeld3086442008-06-26 21:27:57 +02001579static unsigned long dma_ops_alloc_addresses(struct device *dev,
1580 struct dma_ops_domain *dom,
Joerg Roedel6d4f3432008-09-04 19:18:02 +02001581 unsigned int pages,
Joerg Roedel832a90c2008-09-18 15:54:23 +02001582 unsigned long align_mask,
1583 u64 dma_mask)
Joerg Roedeld3086442008-06-26 21:27:57 +02001584{
Joerg Roedeld3086442008-06-26 21:27:57 +02001585 unsigned long address;
Joerg Roedeld3086442008-06-26 21:27:57 +02001586
Joerg Roedelfe16f082009-05-22 12:27:53 +02001587#ifdef CONFIG_IOMMU_STRESS
1588 dom->next_address = 0;
1589 dom->need_flush = true;
1590#endif
Joerg Roedeld3086442008-06-26 21:27:57 +02001591
Joerg Roedel384de722009-05-15 12:30:05 +02001592 address = dma_ops_area_alloc(dev, dom, pages, align_mask,
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001593 dma_mask, dom->next_address);
Joerg Roedeld3086442008-06-26 21:27:57 +02001594
Joerg Roedel1c655772008-09-04 18:40:05 +02001595 if (address == -1) {
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001596 dom->next_address = 0;
Joerg Roedel384de722009-05-15 12:30:05 +02001597 address = dma_ops_area_alloc(dev, dom, pages, align_mask,
1598 dma_mask, 0);
Joerg Roedel1c655772008-09-04 18:40:05 +02001599 dom->need_flush = true;
1600 }
Joerg Roedeld3086442008-06-26 21:27:57 +02001601
Joerg Roedel384de722009-05-15 12:30:05 +02001602 if (unlikely(address == -1))
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09001603 address = DMA_ERROR_CODE;
Joerg Roedeld3086442008-06-26 21:27:57 +02001604
1605 WARN_ON((address + (PAGE_SIZE*pages)) > dom->aperture_size);
1606
1607 return address;
1608}
1609
Joerg Roedel431b2a22008-07-11 17:14:22 +02001610/*
1611 * The address free function.
1612 *
1613 * called with domain->lock held
1614 */
Joerg Roedeld3086442008-06-26 21:27:57 +02001615static void dma_ops_free_addresses(struct dma_ops_domain *dom,
1616 unsigned long address,
1617 unsigned int pages)
1618{
Joerg Roedel384de722009-05-15 12:30:05 +02001619 unsigned i = address >> APERTURE_RANGE_SHIFT;
1620 struct aperture_range *range = dom->aperture[i];
Joerg Roedel80be3082008-11-06 14:59:05 +01001621
Joerg Roedel384de722009-05-15 12:30:05 +02001622 BUG_ON(i >= APERTURE_MAX_RANGES || range == NULL);
1623
Joerg Roedel47bccd62009-05-22 12:40:54 +02001624#ifdef CONFIG_IOMMU_STRESS
1625 if (i < 4)
1626 return;
1627#endif
1628
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001629 if (address >= dom->next_address)
Joerg Roedel80be3082008-11-06 14:59:05 +01001630 dom->need_flush = true;
Joerg Roedel384de722009-05-15 12:30:05 +02001631
1632 address = (address % APERTURE_RANGE_SIZE) >> PAGE_SHIFT;
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001633
Akinobu Mitaa66022c2009-12-15 16:48:28 -08001634 bitmap_clear(range->bitmap, address, pages);
Joerg Roedel384de722009-05-15 12:30:05 +02001635
Joerg Roedeld3086442008-06-26 21:27:57 +02001636}
1637
Joerg Roedel431b2a22008-07-11 17:14:22 +02001638/****************************************************************************
1639 *
1640 * The next functions belong to the domain allocation. A domain is
1641 * allocated for every IOMMU as the default domain. If device isolation
1642 * is enabled, every device get its own domain. The most important thing
1643 * about domains is the page table mapping the DMA address space they
1644 * contain.
1645 *
1646 ****************************************************************************/
1647
Joerg Roedelaeb26f52009-11-20 16:44:01 +01001648/*
1649 * This function adds a protection domain to the global protection domain list
1650 */
1651static void add_domain_to_list(struct protection_domain *domain)
1652{
1653 unsigned long flags;
1654
1655 spin_lock_irqsave(&amd_iommu_pd_lock, flags);
1656 list_add(&domain->list, &amd_iommu_pd_list);
1657 spin_unlock_irqrestore(&amd_iommu_pd_lock, flags);
1658}
1659
1660/*
1661 * This function removes a protection domain to the global
1662 * protection domain list
1663 */
1664static void del_domain_from_list(struct protection_domain *domain)
1665{
1666 unsigned long flags;
1667
1668 spin_lock_irqsave(&amd_iommu_pd_lock, flags);
1669 list_del(&domain->list);
1670 spin_unlock_irqrestore(&amd_iommu_pd_lock, flags);
1671}
1672
Joerg Roedelec487d12008-06-26 21:27:58 +02001673static u16 domain_id_alloc(void)
1674{
1675 unsigned long flags;
1676 int id;
1677
1678 write_lock_irqsave(&amd_iommu_devtable_lock, flags);
1679 id = find_first_zero_bit(amd_iommu_pd_alloc_bitmap, MAX_DOMAIN_ID);
1680 BUG_ON(id == 0);
1681 if (id > 0 && id < MAX_DOMAIN_ID)
1682 __set_bit(id, amd_iommu_pd_alloc_bitmap);
1683 else
1684 id = 0;
1685 write_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
1686
1687 return id;
1688}
1689
Joerg Roedela2acfb72008-12-02 18:28:53 +01001690static void domain_id_free(int id)
1691{
1692 unsigned long flags;
1693
1694 write_lock_irqsave(&amd_iommu_devtable_lock, flags);
1695 if (id > 0 && id < MAX_DOMAIN_ID)
1696 __clear_bit(id, amd_iommu_pd_alloc_bitmap);
1697 write_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
1698}
Joerg Roedela2acfb72008-12-02 18:28:53 +01001699
Joerg Roedel86db2e52008-12-02 18:20:21 +01001700static void free_pagetable(struct protection_domain *domain)
Joerg Roedelec487d12008-06-26 21:27:58 +02001701{
1702 int i, j;
1703 u64 *p1, *p2, *p3;
1704
Joerg Roedel86db2e52008-12-02 18:20:21 +01001705 p1 = domain->pt_root;
Joerg Roedelec487d12008-06-26 21:27:58 +02001706
1707 if (!p1)
1708 return;
1709
1710 for (i = 0; i < 512; ++i) {
1711 if (!IOMMU_PTE_PRESENT(p1[i]))
1712 continue;
1713
1714 p2 = IOMMU_PTE_PAGE(p1[i]);
Joerg Roedel3cc3d842008-12-04 16:44:31 +01001715 for (j = 0; j < 512; ++j) {
Joerg Roedelec487d12008-06-26 21:27:58 +02001716 if (!IOMMU_PTE_PRESENT(p2[j]))
1717 continue;
1718 p3 = IOMMU_PTE_PAGE(p2[j]);
1719 free_page((unsigned long)p3);
1720 }
1721
1722 free_page((unsigned long)p2);
1723 }
1724
1725 free_page((unsigned long)p1);
Joerg Roedel86db2e52008-12-02 18:20:21 +01001726
1727 domain->pt_root = NULL;
Joerg Roedelec487d12008-06-26 21:27:58 +02001728}
1729
Joerg Roedelb16137b2011-11-21 16:50:23 +01001730static void free_gcr3_tbl_level1(u64 *tbl)
1731{
1732 u64 *ptr;
1733 int i;
1734
1735 for (i = 0; i < 512; ++i) {
1736 if (!(tbl[i] & GCR3_VALID))
1737 continue;
1738
1739 ptr = __va(tbl[i] & PAGE_MASK);
1740
1741 free_page((unsigned long)ptr);
1742 }
1743}
1744
1745static void free_gcr3_tbl_level2(u64 *tbl)
1746{
1747 u64 *ptr;
1748 int i;
1749
1750 for (i = 0; i < 512; ++i) {
1751 if (!(tbl[i] & GCR3_VALID))
1752 continue;
1753
1754 ptr = __va(tbl[i] & PAGE_MASK);
1755
1756 free_gcr3_tbl_level1(ptr);
1757 }
1758}
1759
Joerg Roedel52815b72011-11-17 17:24:28 +01001760static void free_gcr3_table(struct protection_domain *domain)
1761{
Joerg Roedelb16137b2011-11-21 16:50:23 +01001762 if (domain->glx == 2)
1763 free_gcr3_tbl_level2(domain->gcr3_tbl);
1764 else if (domain->glx == 1)
1765 free_gcr3_tbl_level1(domain->gcr3_tbl);
1766 else if (domain->glx != 0)
1767 BUG();
1768
Joerg Roedel52815b72011-11-17 17:24:28 +01001769 free_page((unsigned long)domain->gcr3_tbl);
1770}
1771
Joerg Roedel431b2a22008-07-11 17:14:22 +02001772/*
1773 * Free a domain, only used if something went wrong in the
1774 * allocation path and we need to free an already allocated page table
1775 */
Joerg Roedelec487d12008-06-26 21:27:58 +02001776static void dma_ops_domain_free(struct dma_ops_domain *dom)
1777{
Joerg Roedel384de722009-05-15 12:30:05 +02001778 int i;
1779
Joerg Roedelec487d12008-06-26 21:27:58 +02001780 if (!dom)
1781 return;
1782
Joerg Roedelaeb26f52009-11-20 16:44:01 +01001783 del_domain_from_list(&dom->domain);
1784
Joerg Roedel86db2e52008-12-02 18:20:21 +01001785 free_pagetable(&dom->domain);
Joerg Roedelec487d12008-06-26 21:27:58 +02001786
Joerg Roedel384de722009-05-15 12:30:05 +02001787 for (i = 0; i < APERTURE_MAX_RANGES; ++i) {
1788 if (!dom->aperture[i])
1789 continue;
1790 free_page((unsigned long)dom->aperture[i]->bitmap);
1791 kfree(dom->aperture[i]);
1792 }
Joerg Roedelec487d12008-06-26 21:27:58 +02001793
1794 kfree(dom);
1795}
1796
Joerg Roedel431b2a22008-07-11 17:14:22 +02001797/*
1798 * Allocates a new protection domain usable for the dma_ops functions.
Uwe Kleine-Königb5950762010-11-01 15:38:34 -04001799 * It also initializes the page table and the address allocator data
Joerg Roedel431b2a22008-07-11 17:14:22 +02001800 * structures required for the dma_ops interface
1801 */
Joerg Roedel87a64d52009-11-24 17:26:43 +01001802static struct dma_ops_domain *dma_ops_domain_alloc(void)
Joerg Roedelec487d12008-06-26 21:27:58 +02001803{
1804 struct dma_ops_domain *dma_dom;
Joerg Roedelec487d12008-06-26 21:27:58 +02001805
1806 dma_dom = kzalloc(sizeof(struct dma_ops_domain), GFP_KERNEL);
1807 if (!dma_dom)
1808 return NULL;
1809
1810 spin_lock_init(&dma_dom->domain.lock);
1811
1812 dma_dom->domain.id = domain_id_alloc();
1813 if (dma_dom->domain.id == 0)
1814 goto free_dma_dom;
Joerg Roedel7c392cb2009-11-26 11:13:32 +01001815 INIT_LIST_HEAD(&dma_dom->domain.dev_list);
Joerg Roedel8f7a0172009-09-02 16:55:24 +02001816 dma_dom->domain.mode = PAGE_MODE_2_LEVEL;
Joerg Roedelec487d12008-06-26 21:27:58 +02001817 dma_dom->domain.pt_root = (void *)get_zeroed_page(GFP_KERNEL);
Joerg Roedel9fdb19d2008-12-02 17:46:25 +01001818 dma_dom->domain.flags = PD_DMA_OPS_MASK;
Joerg Roedelec487d12008-06-26 21:27:58 +02001819 dma_dom->domain.priv = dma_dom;
1820 if (!dma_dom->domain.pt_root)
1821 goto free_dma_dom;
Joerg Roedelec487d12008-06-26 21:27:58 +02001822
Joerg Roedel1c655772008-09-04 18:40:05 +02001823 dma_dom->need_flush = false;
Joerg Roedelbd60b732008-09-11 10:24:48 +02001824 dma_dom->target_dev = 0xffff;
Joerg Roedel1c655772008-09-04 18:40:05 +02001825
Joerg Roedelaeb26f52009-11-20 16:44:01 +01001826 add_domain_to_list(&dma_dom->domain);
1827
Joerg Roedel576175c2009-11-23 19:08:46 +01001828 if (alloc_new_range(dma_dom, true, GFP_KERNEL))
Joerg Roedelec487d12008-06-26 21:27:58 +02001829 goto free_dma_dom;
Joerg Roedelec487d12008-06-26 21:27:58 +02001830
Joerg Roedel431b2a22008-07-11 17:14:22 +02001831 /*
Joerg Roedelec487d12008-06-26 21:27:58 +02001832 * mark the first page as allocated so we never return 0 as
1833 * a valid dma-address. So we can use 0 as error value
Joerg Roedel431b2a22008-07-11 17:14:22 +02001834 */
Joerg Roedel384de722009-05-15 12:30:05 +02001835 dma_dom->aperture[0]->bitmap[0] = 1;
Joerg Roedel803b8cb2009-05-18 15:32:48 +02001836 dma_dom->next_address = 0;
Joerg Roedelec487d12008-06-26 21:27:58 +02001837
Joerg Roedelec487d12008-06-26 21:27:58 +02001838
1839 return dma_dom;
1840
1841free_dma_dom:
1842 dma_ops_domain_free(dma_dom);
1843
1844 return NULL;
1845}
1846
Joerg Roedel431b2a22008-07-11 17:14:22 +02001847/*
Joerg Roedel5b28df62008-12-02 17:49:42 +01001848 * little helper function to check whether a given protection domain is a
1849 * dma_ops domain
1850 */
1851static bool dma_ops_domain(struct protection_domain *domain)
1852{
1853 return domain->flags & PD_DMA_OPS_MASK;
1854}
1855
Joerg Roedelfd7b5532011-04-05 15:31:08 +02001856static void set_dte_entry(u16 devid, struct protection_domain *domain, bool ats)
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02001857{
Joerg Roedel132bd682011-11-17 14:18:46 +01001858 u64 pte_root = 0;
Joerg Roedelee6c2862011-11-09 12:06:03 +01001859 u64 flags = 0;
Joerg Roedel863c74e2008-12-02 17:56:36 +01001860
Joerg Roedel132bd682011-11-17 14:18:46 +01001861 if (domain->mode != PAGE_MODE_NONE)
1862 pte_root = virt_to_phys(domain->pt_root);
1863
Joerg Roedel38ddf412008-09-11 10:38:32 +02001864 pte_root |= (domain->mode & DEV_ENTRY_MODE_MASK)
1865 << DEV_ENTRY_MODE_SHIFT;
1866 pte_root |= IOMMU_PTE_IR | IOMMU_PTE_IW | IOMMU_PTE_P | IOMMU_PTE_TV;
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02001867
Joerg Roedelee6c2862011-11-09 12:06:03 +01001868 flags = amd_iommu_dev_table[devid].data[1];
1869
Joerg Roedelfd7b5532011-04-05 15:31:08 +02001870 if (ats)
1871 flags |= DTE_FLAG_IOTLB;
1872
Joerg Roedel52815b72011-11-17 17:24:28 +01001873 if (domain->flags & PD_IOMMUV2_MASK) {
1874 u64 gcr3 = __pa(domain->gcr3_tbl);
1875 u64 glx = domain->glx;
1876 u64 tmp;
1877
1878 pte_root |= DTE_FLAG_GV;
1879 pte_root |= (glx & DTE_GLX_MASK) << DTE_GLX_SHIFT;
1880
1881 /* First mask out possible old values for GCR3 table */
1882 tmp = DTE_GCR3_VAL_B(~0ULL) << DTE_GCR3_SHIFT_B;
1883 flags &= ~tmp;
1884
1885 tmp = DTE_GCR3_VAL_C(~0ULL) << DTE_GCR3_SHIFT_C;
1886 flags &= ~tmp;
1887
1888 /* Encode GCR3 table into DTE */
1889 tmp = DTE_GCR3_VAL_A(gcr3) << DTE_GCR3_SHIFT_A;
1890 pte_root |= tmp;
1891
1892 tmp = DTE_GCR3_VAL_B(gcr3) << DTE_GCR3_SHIFT_B;
1893 flags |= tmp;
1894
1895 tmp = DTE_GCR3_VAL_C(gcr3) << DTE_GCR3_SHIFT_C;
1896 flags |= tmp;
1897 }
1898
Joerg Roedelee6c2862011-11-09 12:06:03 +01001899 flags &= ~(0xffffUL);
1900 flags |= domain->id;
1901
1902 amd_iommu_dev_table[devid].data[1] = flags;
1903 amd_iommu_dev_table[devid].data[0] = pte_root;
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02001904}
1905
Joerg Roedel15898bb2009-11-24 15:39:42 +01001906static void clear_dte_entry(u16 devid)
Joerg Roedel355bf552008-12-08 12:02:41 +01001907{
Joerg Roedel355bf552008-12-08 12:02:41 +01001908 /* remove entry from the device table seen by the hardware */
1909 amd_iommu_dev_table[devid].data[0] = IOMMU_PTE_P | IOMMU_PTE_TV;
1910 amd_iommu_dev_table[devid].data[1] = 0;
Joerg Roedel355bf552008-12-08 12:02:41 +01001911
Joerg Roedelc5cca142009-10-09 18:31:20 +02001912 amd_iommu_apply_erratum_63(devid);
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001913}
1914
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001915static void do_attach(struct iommu_dev_data *dev_data,
1916 struct protection_domain *domain)
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001917{
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001918 struct amd_iommu *iommu;
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001919 bool ats;
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001920
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001921 iommu = amd_iommu_rlookup_table[dev_data->devid];
1922 ats = dev_data->ats.enabled;
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001923
1924 /* Update data structures */
1925 dev_data->domain = domain;
1926 list_add(&dev_data->list, &domain->dev_list);
Joerg Roedelf62dda62011-06-09 12:55:35 +02001927 set_dte_entry(dev_data->devid, domain, ats);
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001928
1929 /* Do reference counting */
1930 domain->dev_iommu[iommu->index] += 1;
1931 domain->dev_cnt += 1;
1932
1933 /* Flush the DTE entry */
Joerg Roedel6c542042011-06-09 17:07:31 +02001934 device_flush_dte(dev_data);
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001935}
1936
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001937static void do_detach(struct iommu_dev_data *dev_data)
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001938{
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001939 struct amd_iommu *iommu;
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001940
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001941 iommu = amd_iommu_rlookup_table[dev_data->devid];
Joerg Roedelc5cca142009-10-09 18:31:20 +02001942
Joerg Roedelc4596112009-11-20 14:57:32 +01001943 /* decrease reference counters */
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001944 dev_data->domain->dev_iommu[iommu->index] -= 1;
1945 dev_data->domain->dev_cnt -= 1;
Joerg Roedel355bf552008-12-08 12:02:41 +01001946
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001947 /* Update data structures */
1948 dev_data->domain = NULL;
1949 list_del(&dev_data->list);
Joerg Roedelf62dda62011-06-09 12:55:35 +02001950 clear_dte_entry(dev_data->devid);
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001951
1952 /* Flush the DTE entry */
Joerg Roedel6c542042011-06-09 17:07:31 +02001953 device_flush_dte(dev_data);
Joerg Roedel15898bb2009-11-24 15:39:42 +01001954}
1955
1956/*
1957 * If a device is not yet associated with a domain, this function does
1958 * assigns it visible for the hardware
1959 */
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001960static int __attach_device(struct iommu_dev_data *dev_data,
Joerg Roedel15898bb2009-11-24 15:39:42 +01001961 struct protection_domain *domain)
1962{
Julia Lawall84fe6c12010-05-27 12:31:51 +02001963 int ret;
Joerg Roedel657cbb62009-11-23 15:26:46 +01001964
Joerg Roedel15898bb2009-11-24 15:39:42 +01001965 /* lock domain */
1966 spin_lock(&domain->lock);
1967
Joerg Roedel71f77582011-06-09 19:03:15 +02001968 if (dev_data->alias_data != NULL) {
1969 struct iommu_dev_data *alias_data = dev_data->alias_data;
Joerg Roedel15898bb2009-11-24 15:39:42 +01001970
Joerg Roedel2b02b092011-06-09 17:48:39 +02001971 /* Some sanity checks */
1972 ret = -EBUSY;
1973 if (alias_data->domain != NULL &&
1974 alias_data->domain != domain)
1975 goto out_unlock;
Joerg Roedel15898bb2009-11-24 15:39:42 +01001976
Joerg Roedel2b02b092011-06-09 17:48:39 +02001977 if (dev_data->domain != NULL &&
1978 dev_data->domain != domain)
1979 goto out_unlock;
1980
1981 /* Do real assignment */
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001982 if (alias_data->domain == NULL)
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001983 do_attach(alias_data, domain);
Joerg Roedel24100052009-11-25 15:59:57 +01001984
1985 atomic_inc(&alias_data->bind);
Joerg Roedel657cbb62009-11-23 15:26:46 +01001986 }
Joerg Roedel15898bb2009-11-24 15:39:42 +01001987
Joerg Roedel7f760dd2009-11-26 14:49:59 +01001988 if (dev_data->domain == NULL)
Joerg Roedelec9e79e2011-06-09 17:25:50 +02001989 do_attach(dev_data, domain);
Joerg Roedel15898bb2009-11-24 15:39:42 +01001990
Joerg Roedel24100052009-11-25 15:59:57 +01001991 atomic_inc(&dev_data->bind);
1992
Julia Lawall84fe6c12010-05-27 12:31:51 +02001993 ret = 0;
1994
1995out_unlock:
1996
Joerg Roedel355bf552008-12-08 12:02:41 +01001997 /* ready */
1998 spin_unlock(&domain->lock);
Joerg Roedel21129f72009-09-01 11:59:42 +02001999
Julia Lawall84fe6c12010-05-27 12:31:51 +02002000 return ret;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002001}
2002
Joerg Roedel52815b72011-11-17 17:24:28 +01002003
2004static void pdev_iommuv2_disable(struct pci_dev *pdev)
2005{
2006 pci_disable_ats(pdev);
2007 pci_disable_pri(pdev);
2008 pci_disable_pasid(pdev);
2009}
2010
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002011/* FIXME: Change generic reset-function to do the same */
2012static int pri_reset_while_enabled(struct pci_dev *pdev)
2013{
2014 u16 control;
2015 int pos;
2016
Joerg Roedel46277b72011-12-07 14:34:02 +01002017 pos = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_PRI);
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002018 if (!pos)
2019 return -EINVAL;
2020
Joerg Roedel46277b72011-12-07 14:34:02 +01002021 pci_read_config_word(pdev, pos + PCI_PRI_CTRL, &control);
2022 control |= PCI_PRI_CTRL_RESET;
2023 pci_write_config_word(pdev, pos + PCI_PRI_CTRL, control);
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002024
2025 return 0;
2026}
2027
Joerg Roedel52815b72011-11-17 17:24:28 +01002028static int pdev_iommuv2_enable(struct pci_dev *pdev)
2029{
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002030 bool reset_enable;
2031 int reqs, ret;
2032
2033 /* FIXME: Hardcode number of outstanding requests for now */
2034 reqs = 32;
2035 if (pdev_pri_erratum(pdev, AMD_PRI_DEV_ERRATUM_LIMIT_REQ_ONE))
2036 reqs = 1;
2037 reset_enable = pdev_pri_erratum(pdev, AMD_PRI_DEV_ERRATUM_ENABLE_RESET);
Joerg Roedel52815b72011-11-17 17:24:28 +01002038
2039 /* Only allow access to user-accessible pages */
2040 ret = pci_enable_pasid(pdev, 0);
2041 if (ret)
2042 goto out_err;
2043
2044 /* First reset the PRI state of the device */
2045 ret = pci_reset_pri(pdev);
2046 if (ret)
2047 goto out_err;
2048
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002049 /* Enable PRI */
2050 ret = pci_enable_pri(pdev, reqs);
Joerg Roedel52815b72011-11-17 17:24:28 +01002051 if (ret)
2052 goto out_err;
2053
Joerg Roedel6a113dd2011-12-01 12:04:58 +01002054 if (reset_enable) {
2055 ret = pri_reset_while_enabled(pdev);
2056 if (ret)
2057 goto out_err;
2058 }
2059
Joerg Roedel52815b72011-11-17 17:24:28 +01002060 ret = pci_enable_ats(pdev, PAGE_SHIFT);
2061 if (ret)
2062 goto out_err;
2063
2064 return 0;
2065
2066out_err:
2067 pci_disable_pri(pdev);
2068 pci_disable_pasid(pdev);
2069
2070 return ret;
2071}
2072
Joerg Roedelc99afa22011-11-21 18:19:25 +01002073/* FIXME: Move this to PCI code */
Joerg Roedelf9a07f32012-04-12 12:49:26 +02002074#define PCI_PRI_TLP_OFF (1 << 15)
Joerg Roedelc99afa22011-11-21 18:19:25 +01002075
2076bool pci_pri_tlp_required(struct pci_dev *pdev)
2077{
Joerg Roedelf9a07f32012-04-12 12:49:26 +02002078 u16 status;
Joerg Roedelc99afa22011-11-21 18:19:25 +01002079 int pos;
2080
Joerg Roedel46277b72011-12-07 14:34:02 +01002081 pos = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_PRI);
Joerg Roedelc99afa22011-11-21 18:19:25 +01002082 if (!pos)
2083 return false;
2084
Joerg Roedelf9a07f32012-04-12 12:49:26 +02002085 pci_read_config_word(pdev, pos + PCI_PRI_STATUS, &status);
Joerg Roedelc99afa22011-11-21 18:19:25 +01002086
Joerg Roedelf9a07f32012-04-12 12:49:26 +02002087 return (status & PCI_PRI_TLP_OFF) ? true : false;
Joerg Roedelc99afa22011-11-21 18:19:25 +01002088}
2089
Joerg Roedel15898bb2009-11-24 15:39:42 +01002090/*
2091 * If a device is not yet associated with a domain, this function does
2092 * assigns it visible for the hardware
2093 */
2094static int attach_device(struct device *dev,
2095 struct protection_domain *domain)
2096{
Joerg Roedelfd7b5532011-04-05 15:31:08 +02002097 struct pci_dev *pdev = to_pci_dev(dev);
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002098 struct iommu_dev_data *dev_data;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002099 unsigned long flags;
2100 int ret;
2101
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002102 dev_data = get_dev_data(dev);
2103
Joerg Roedel52815b72011-11-17 17:24:28 +01002104 if (domain->flags & PD_IOMMUV2_MASK) {
2105 if (!dev_data->iommu_v2 || !dev_data->passthrough)
2106 return -EINVAL;
2107
2108 if (pdev_iommuv2_enable(pdev) != 0)
2109 return -EINVAL;
2110
2111 dev_data->ats.enabled = true;
2112 dev_data->ats.qdep = pci_ats_queue_depth(pdev);
Joerg Roedelc99afa22011-11-21 18:19:25 +01002113 dev_data->pri_tlp = pci_pri_tlp_required(pdev);
Joerg Roedel52815b72011-11-17 17:24:28 +01002114 } else if (amd_iommu_iotlb_sup &&
2115 pci_enable_ats(pdev, PAGE_SHIFT) == 0) {
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002116 dev_data->ats.enabled = true;
2117 dev_data->ats.qdep = pci_ats_queue_depth(pdev);
2118 }
Joerg Roedelfd7b5532011-04-05 15:31:08 +02002119
Joerg Roedel15898bb2009-11-24 15:39:42 +01002120 write_lock_irqsave(&amd_iommu_devtable_lock, flags);
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002121 ret = __attach_device(dev_data, domain);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002122 write_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
2123
2124 /*
2125 * We might boot into a crash-kernel here. The crashed kernel
2126 * left the caches in the IOMMU dirty. So we have to flush
2127 * here to evict all dirty stuff.
2128 */
Joerg Roedel17b124b2011-04-06 18:01:35 +02002129 domain_flush_tlb_pde(domain);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002130
2131 return ret;
2132}
2133
2134/*
2135 * Removes a device from a protection domain (unlocked)
2136 */
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002137static void __detach_device(struct iommu_dev_data *dev_data)
Joerg Roedel15898bb2009-11-24 15:39:42 +01002138{
Joerg Roedel2ca76272010-01-22 16:45:31 +01002139 struct protection_domain *domain;
Joerg Roedel7c392cb2009-11-26 11:13:32 +01002140 unsigned long flags;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002141
Joerg Roedel7f760dd2009-11-26 14:49:59 +01002142 BUG_ON(!dev_data->domain);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002143
Joerg Roedel2ca76272010-01-22 16:45:31 +01002144 domain = dev_data->domain;
2145
2146 spin_lock_irqsave(&domain->lock, flags);
Joerg Roedel24100052009-11-25 15:59:57 +01002147
Joerg Roedel71f77582011-06-09 19:03:15 +02002148 if (dev_data->alias_data != NULL) {
2149 struct iommu_dev_data *alias_data = dev_data->alias_data;
2150
Joerg Roedel7f760dd2009-11-26 14:49:59 +01002151 if (atomic_dec_and_test(&alias_data->bind))
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002152 do_detach(alias_data);
Joerg Roedel24100052009-11-25 15:59:57 +01002153 }
2154
Joerg Roedel7f760dd2009-11-26 14:49:59 +01002155 if (atomic_dec_and_test(&dev_data->bind))
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002156 do_detach(dev_data);
Joerg Roedel7f760dd2009-11-26 14:49:59 +01002157
Joerg Roedel2ca76272010-01-22 16:45:31 +01002158 spin_unlock_irqrestore(&domain->lock, flags);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002159
Joerg Roedel21129f72009-09-01 11:59:42 +02002160 /*
2161 * If we run in passthrough mode the device must be assigned to the
Joerg Roedeld3ad9372010-01-22 17:55:27 +01002162 * passthrough domain if it is detached from any other domain.
2163 * Make sure we can deassign from the pt_domain itself.
Joerg Roedel21129f72009-09-01 11:59:42 +02002164 */
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002165 if (dev_data->passthrough &&
Joerg Roedeld3ad9372010-01-22 17:55:27 +01002166 (dev_data->domain == NULL && domain != pt_domain))
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002167 __attach_device(dev_data, pt_domain);
Joerg Roedel355bf552008-12-08 12:02:41 +01002168}
2169
2170/*
2171 * Removes a device from a protection domain (with devtable_lock held)
2172 */
Joerg Roedel15898bb2009-11-24 15:39:42 +01002173static void detach_device(struct device *dev)
Joerg Roedel355bf552008-12-08 12:02:41 +01002174{
Joerg Roedel52815b72011-11-17 17:24:28 +01002175 struct protection_domain *domain;
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002176 struct iommu_dev_data *dev_data;
Joerg Roedel355bf552008-12-08 12:02:41 +01002177 unsigned long flags;
2178
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002179 dev_data = get_dev_data(dev);
Joerg Roedel52815b72011-11-17 17:24:28 +01002180 domain = dev_data->domain;
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002181
Joerg Roedel355bf552008-12-08 12:02:41 +01002182 /* lock device table */
2183 write_lock_irqsave(&amd_iommu_devtable_lock, flags);
Joerg Roedelec9e79e2011-06-09 17:25:50 +02002184 __detach_device(dev_data);
Joerg Roedel355bf552008-12-08 12:02:41 +01002185 write_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
Joerg Roedelfd7b5532011-04-05 15:31:08 +02002186
Joerg Roedel52815b72011-11-17 17:24:28 +01002187 if (domain->flags & PD_IOMMUV2_MASK)
2188 pdev_iommuv2_disable(to_pci_dev(dev));
2189 else if (dev_data->ats.enabled)
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002190 pci_disable_ats(to_pci_dev(dev));
Joerg Roedel52815b72011-11-17 17:24:28 +01002191
2192 dev_data->ats.enabled = false;
Joerg Roedel355bf552008-12-08 12:02:41 +01002193}
Joerg Roedele275a2a2008-12-10 18:27:25 +01002194
Joerg Roedel15898bb2009-11-24 15:39:42 +01002195/*
2196 * Find out the protection domain structure for a given PCI device. This
2197 * will give us the pointer to the page table root for example.
2198 */
2199static struct protection_domain *domain_for_device(struct device *dev)
2200{
Joerg Roedel71f77582011-06-09 19:03:15 +02002201 struct iommu_dev_data *dev_data;
Joerg Roedel2b02b092011-06-09 17:48:39 +02002202 struct protection_domain *dom = NULL;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002203 unsigned long flags;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002204
Joerg Roedel657cbb62009-11-23 15:26:46 +01002205 dev_data = get_dev_data(dev);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002206
Joerg Roedel2b02b092011-06-09 17:48:39 +02002207 if (dev_data->domain)
2208 return dev_data->domain;
2209
Joerg Roedel71f77582011-06-09 19:03:15 +02002210 if (dev_data->alias_data != NULL) {
2211 struct iommu_dev_data *alias_data = dev_data->alias_data;
Joerg Roedel2b02b092011-06-09 17:48:39 +02002212
2213 read_lock_irqsave(&amd_iommu_devtable_lock, flags);
2214 if (alias_data->domain != NULL) {
2215 __attach_device(dev_data, alias_data->domain);
2216 dom = alias_data->domain;
2217 }
2218 read_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002219 }
2220
Joerg Roedel15898bb2009-11-24 15:39:42 +01002221 return dom;
2222}
2223
Joerg Roedele275a2a2008-12-10 18:27:25 +01002224static int device_change_notifier(struct notifier_block *nb,
2225 unsigned long action, void *data)
2226{
Joerg Roedele275a2a2008-12-10 18:27:25 +01002227 struct dma_ops_domain *dma_domain;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002228 struct protection_domain *domain;
2229 struct iommu_dev_data *dev_data;
2230 struct device *dev = data;
Joerg Roedele275a2a2008-12-10 18:27:25 +01002231 struct amd_iommu *iommu;
Joerg Roedel1ac4cbb2008-12-10 19:33:26 +01002232 unsigned long flags;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002233 u16 devid;
Joerg Roedele275a2a2008-12-10 18:27:25 +01002234
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002235 if (!check_device(dev))
2236 return 0;
Joerg Roedele275a2a2008-12-10 18:27:25 +01002237
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002238 devid = get_device_id(dev);
2239 iommu = amd_iommu_rlookup_table[devid];
2240 dev_data = get_dev_data(dev);
Joerg Roedele275a2a2008-12-10 18:27:25 +01002241
2242 switch (action) {
Chris Wrightc1eee672009-05-21 00:56:58 -07002243 case BUS_NOTIFY_UNBOUND_DRIVER:
Joerg Roedel657cbb62009-11-23 15:26:46 +01002244
2245 domain = domain_for_device(dev);
2246
Joerg Roedele275a2a2008-12-10 18:27:25 +01002247 if (!domain)
2248 goto out;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002249 if (dev_data->passthrough)
Joerg Roedela1ca3312009-09-01 12:22:22 +02002250 break;
Joerg Roedel15898bb2009-11-24 15:39:42 +01002251 detach_device(dev);
Joerg Roedele275a2a2008-12-10 18:27:25 +01002252 break;
Joerg Roedel1ac4cbb2008-12-10 19:33:26 +01002253 case BUS_NOTIFY_ADD_DEVICE:
Joerg Roedel657cbb62009-11-23 15:26:46 +01002254
2255 iommu_init_device(dev);
2256
Joerg Roedel06e619c2012-07-19 13:42:54 +02002257 /*
2258 * dev_data is still NULL and
2259 * got initialized in iommu_init_device
2260 */
2261 dev_data = get_dev_data(dev);
2262
2263 if (iommu_pass_through || dev_data->iommu_v2) {
2264 dev_data->passthrough = true;
2265 attach_device(dev, pt_domain);
2266 break;
2267 }
2268
Joerg Roedel657cbb62009-11-23 15:26:46 +01002269 domain = domain_for_device(dev);
2270
Joerg Roedel1ac4cbb2008-12-10 19:33:26 +01002271 /* allocate a protection domain if a device is added */
2272 dma_domain = find_protection_domain(devid);
Joerg Roedel2c0260b2013-03-26 22:48:23 +01002273 if (!dma_domain) {
2274 dma_domain = dma_ops_domain_alloc();
2275 if (!dma_domain)
2276 goto out;
2277 dma_domain->target_dev = devid;
Joerg Roedel1ac4cbb2008-12-10 19:33:26 +01002278
Joerg Roedel2c0260b2013-03-26 22:48:23 +01002279 spin_lock_irqsave(&iommu_pd_list_lock, flags);
2280 list_add_tail(&dma_domain->list, &iommu_pd_list);
2281 spin_unlock_irqrestore(&iommu_pd_list_lock, flags);
2282 }
Joerg Roedelb9e619e2012-06-21 14:52:40 +02002283
Joerg Roedel06e619c2012-07-19 13:42:54 +02002284 dev->archdata.dma_ops = &amd_iommu_dma_ops;
Joerg Roedelb9e619e2012-06-21 14:52:40 +02002285
Joerg Roedel1ac4cbb2008-12-10 19:33:26 +01002286 break;
Joerg Roedel657cbb62009-11-23 15:26:46 +01002287 case BUS_NOTIFY_DEL_DEVICE:
2288
2289 iommu_uninit_device(dev);
2290
Joerg Roedele275a2a2008-12-10 18:27:25 +01002291 default:
2292 goto out;
2293 }
2294
Joerg Roedele275a2a2008-12-10 18:27:25 +01002295 iommu_completion_wait(iommu);
2296
2297out:
2298 return 0;
2299}
2300
Jaswinder Singh Rajputb25ae672009-07-01 19:53:14 +05302301static struct notifier_block device_nb = {
Joerg Roedele275a2a2008-12-10 18:27:25 +01002302 .notifier_call = device_change_notifier,
2303};
Joerg Roedel355bf552008-12-08 12:02:41 +01002304
Joerg Roedel8638c492009-12-10 11:12:25 +01002305void amd_iommu_init_notifier(void)
2306{
2307 bus_register_notifier(&pci_bus_type, &device_nb);
2308}
2309
Joerg Roedel431b2a22008-07-11 17:14:22 +02002310/*****************************************************************************
2311 *
2312 * The next functions belong to the dma_ops mapping/unmapping code.
2313 *
2314 *****************************************************************************/
2315
2316/*
2317 * In the dma_ops path we only have the struct device. This function
2318 * finds the corresponding IOMMU, the protection domain and the
2319 * requestor id for a given device.
2320 * If the device is not yet associated with a domain this is also done
2321 * in this function.
2322 */
Joerg Roedel94f6d192009-11-24 16:40:02 +01002323static struct protection_domain *get_domain(struct device *dev)
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02002324{
Joerg Roedel94f6d192009-11-24 16:40:02 +01002325 struct protection_domain *domain;
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02002326 struct dma_ops_domain *dma_dom;
Joerg Roedel94f6d192009-11-24 16:40:02 +01002327 u16 devid = get_device_id(dev);
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02002328
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002329 if (!check_device(dev))
Joerg Roedel94f6d192009-11-24 16:40:02 +01002330 return ERR_PTR(-EINVAL);
Joerg Roedeldbcc1122008-09-04 15:04:26 +02002331
Joerg Roedel94f6d192009-11-24 16:40:02 +01002332 domain = domain_for_device(dev);
2333 if (domain != NULL && !dma_ops_domain(domain))
2334 return ERR_PTR(-EBUSY);
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002335
Joerg Roedel94f6d192009-11-24 16:40:02 +01002336 if (domain != NULL)
2337 return domain;
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02002338
Joerg Roedel15898bb2009-11-24 15:39:42 +01002339 /* Device not bount yet - bind it */
Joerg Roedel94f6d192009-11-24 16:40:02 +01002340 dma_dom = find_protection_domain(devid);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002341 if (!dma_dom)
Joerg Roedel94f6d192009-11-24 16:40:02 +01002342 dma_dom = amd_iommu_rlookup_table[devid]->default_dom;
2343 attach_device(dev, &dma_dom->domain);
Joerg Roedel15898bb2009-11-24 15:39:42 +01002344 DUMP_printk("Using protection domain %d for device %s\n",
Joerg Roedel94f6d192009-11-24 16:40:02 +01002345 dma_dom->domain.id, dev_name(dev));
Joerg Roedelf91ba192008-11-25 12:56:12 +01002346
Joerg Roedel94f6d192009-11-24 16:40:02 +01002347 return &dma_dom->domain;
Joerg Roedelb20ac0d2008-06-26 21:27:59 +02002348}
2349
Joerg Roedel04bfdd82009-09-02 16:00:23 +02002350static void update_device_table(struct protection_domain *domain)
2351{
Joerg Roedel492667d2009-11-27 13:25:47 +01002352 struct iommu_dev_data *dev_data;
Joerg Roedel04bfdd82009-09-02 16:00:23 +02002353
Joerg Roedelea61cdd2011-06-09 12:56:30 +02002354 list_for_each_entry(dev_data, &domain->dev_list, list)
2355 set_dte_entry(dev_data->devid, domain, dev_data->ats.enabled);
Joerg Roedel04bfdd82009-09-02 16:00:23 +02002356}
2357
2358static void update_domain(struct protection_domain *domain)
2359{
2360 if (!domain->updated)
2361 return;
2362
2363 update_device_table(domain);
Joerg Roedel17b124b2011-04-06 18:01:35 +02002364
2365 domain_flush_devices(domain);
2366 domain_flush_tlb_pde(domain);
Joerg Roedel04bfdd82009-09-02 16:00:23 +02002367
2368 domain->updated = false;
2369}
2370
Joerg Roedel431b2a22008-07-11 17:14:22 +02002371/*
Joerg Roedel8bda3092009-05-12 12:02:46 +02002372 * This function fetches the PTE for a given address in the aperture
2373 */
2374static u64* dma_ops_get_pte(struct dma_ops_domain *dom,
2375 unsigned long address)
2376{
Joerg Roedel384de722009-05-15 12:30:05 +02002377 struct aperture_range *aperture;
Joerg Roedel8bda3092009-05-12 12:02:46 +02002378 u64 *pte, *pte_page;
2379
Joerg Roedel384de722009-05-15 12:30:05 +02002380 aperture = dom->aperture[APERTURE_RANGE_INDEX(address)];
2381 if (!aperture)
2382 return NULL;
2383
2384 pte = aperture->pte_pages[APERTURE_PAGE_INDEX(address)];
Joerg Roedel8bda3092009-05-12 12:02:46 +02002385 if (!pte) {
Joerg Roedelcbb9d722010-01-15 14:41:15 +01002386 pte = alloc_pte(&dom->domain, address, PAGE_SIZE, &pte_page,
Joerg Roedelabdc5eb2009-09-03 11:33:51 +02002387 GFP_ATOMIC);
Joerg Roedel384de722009-05-15 12:30:05 +02002388 aperture->pte_pages[APERTURE_PAGE_INDEX(address)] = pte_page;
2389 } else
Joerg Roedel8c8c1432009-09-02 17:30:00 +02002390 pte += PM_LEVEL_INDEX(0, address);
Joerg Roedel8bda3092009-05-12 12:02:46 +02002391
Joerg Roedel04bfdd82009-09-02 16:00:23 +02002392 update_domain(&dom->domain);
Joerg Roedel8bda3092009-05-12 12:02:46 +02002393
2394 return pte;
2395}
2396
2397/*
Joerg Roedel431b2a22008-07-11 17:14:22 +02002398 * This is the generic map function. It maps one 4kb page at paddr to
2399 * the given address in the DMA address space for the domain.
2400 */
Joerg Roedel680525e2009-11-23 18:44:42 +01002401static dma_addr_t dma_ops_domain_map(struct dma_ops_domain *dom,
Joerg Roedelcb76c322008-06-26 21:28:00 +02002402 unsigned long address,
2403 phys_addr_t paddr,
2404 int direction)
2405{
2406 u64 *pte, __pte;
2407
2408 WARN_ON(address > dom->aperture_size);
2409
2410 paddr &= PAGE_MASK;
2411
Joerg Roedel8bda3092009-05-12 12:02:46 +02002412 pte = dma_ops_get_pte(dom, address);
Joerg Roedel53812c12009-05-12 12:17:38 +02002413 if (!pte)
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002414 return DMA_ERROR_CODE;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002415
2416 __pte = paddr | IOMMU_PTE_P | IOMMU_PTE_FC;
2417
2418 if (direction == DMA_TO_DEVICE)
2419 __pte |= IOMMU_PTE_IR;
2420 else if (direction == DMA_FROM_DEVICE)
2421 __pte |= IOMMU_PTE_IW;
2422 else if (direction == DMA_BIDIRECTIONAL)
2423 __pte |= IOMMU_PTE_IR | IOMMU_PTE_IW;
2424
2425 WARN_ON(*pte);
2426
2427 *pte = __pte;
2428
2429 return (dma_addr_t)address;
2430}
2431
Joerg Roedel431b2a22008-07-11 17:14:22 +02002432/*
2433 * The generic unmapping function for on page in the DMA address space.
2434 */
Joerg Roedel680525e2009-11-23 18:44:42 +01002435static void dma_ops_domain_unmap(struct dma_ops_domain *dom,
Joerg Roedelcb76c322008-06-26 21:28:00 +02002436 unsigned long address)
2437{
Joerg Roedel384de722009-05-15 12:30:05 +02002438 struct aperture_range *aperture;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002439 u64 *pte;
2440
2441 if (address >= dom->aperture_size)
2442 return;
2443
Joerg Roedel384de722009-05-15 12:30:05 +02002444 aperture = dom->aperture[APERTURE_RANGE_INDEX(address)];
2445 if (!aperture)
2446 return;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002447
Joerg Roedel384de722009-05-15 12:30:05 +02002448 pte = aperture->pte_pages[APERTURE_PAGE_INDEX(address)];
2449 if (!pte)
2450 return;
2451
Joerg Roedel8c8c1432009-09-02 17:30:00 +02002452 pte += PM_LEVEL_INDEX(0, address);
Joerg Roedelcb76c322008-06-26 21:28:00 +02002453
2454 WARN_ON(!*pte);
2455
2456 *pte = 0ULL;
2457}
2458
Joerg Roedel431b2a22008-07-11 17:14:22 +02002459/*
2460 * This function contains common code for mapping of a physically
Joerg Roedel24f81162008-12-08 14:25:39 +01002461 * contiguous memory region into DMA address space. It is used by all
2462 * mapping functions provided with this IOMMU driver.
Joerg Roedel431b2a22008-07-11 17:14:22 +02002463 * Must be called with the domain lock held.
2464 */
Joerg Roedelcb76c322008-06-26 21:28:00 +02002465static dma_addr_t __map_single(struct device *dev,
Joerg Roedelcb76c322008-06-26 21:28:00 +02002466 struct dma_ops_domain *dma_dom,
2467 phys_addr_t paddr,
2468 size_t size,
Joerg Roedel6d4f3432008-09-04 19:18:02 +02002469 int dir,
Joerg Roedel832a90c2008-09-18 15:54:23 +02002470 bool align,
2471 u64 dma_mask)
Joerg Roedelcb76c322008-06-26 21:28:00 +02002472{
2473 dma_addr_t offset = paddr & ~PAGE_MASK;
Joerg Roedel53812c12009-05-12 12:17:38 +02002474 dma_addr_t address, start, ret;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002475 unsigned int pages;
Joerg Roedel6d4f3432008-09-04 19:18:02 +02002476 unsigned long align_mask = 0;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002477 int i;
2478
Joerg Roedele3c449f2008-10-15 22:02:11 -07002479 pages = iommu_num_pages(paddr, size, PAGE_SIZE);
Joerg Roedelcb76c322008-06-26 21:28:00 +02002480 paddr &= PAGE_MASK;
2481
Joerg Roedel8ecaf8f2008-12-12 16:13:04 +01002482 INC_STATS_COUNTER(total_map_requests);
2483
Joerg Roedelc1858972008-12-12 15:42:39 +01002484 if (pages > 1)
2485 INC_STATS_COUNTER(cross_page);
2486
Joerg Roedel6d4f3432008-09-04 19:18:02 +02002487 if (align)
2488 align_mask = (1UL << get_order(size)) - 1;
2489
Joerg Roedel11b83882009-05-19 10:23:15 +02002490retry:
Joerg Roedel832a90c2008-09-18 15:54:23 +02002491 address = dma_ops_alloc_addresses(dev, dma_dom, pages, align_mask,
2492 dma_mask);
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002493 if (unlikely(address == DMA_ERROR_CODE)) {
Joerg Roedel11b83882009-05-19 10:23:15 +02002494 /*
2495 * setting next_address here will let the address
2496 * allocator only scan the new allocated range in the
2497 * first run. This is a small optimization.
2498 */
2499 dma_dom->next_address = dma_dom->aperture_size;
2500
Joerg Roedel576175c2009-11-23 19:08:46 +01002501 if (alloc_new_range(dma_dom, false, GFP_ATOMIC))
Joerg Roedel11b83882009-05-19 10:23:15 +02002502 goto out;
2503
2504 /*
André Goddard Rosaaf901ca2009-11-14 13:09:05 -02002505 * aperture was successfully enlarged by 128 MB, try
Joerg Roedel11b83882009-05-19 10:23:15 +02002506 * allocation again
2507 */
2508 goto retry;
2509 }
Joerg Roedelcb76c322008-06-26 21:28:00 +02002510
2511 start = address;
2512 for (i = 0; i < pages; ++i) {
Joerg Roedel680525e2009-11-23 18:44:42 +01002513 ret = dma_ops_domain_map(dma_dom, start, paddr, dir);
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002514 if (ret == DMA_ERROR_CODE)
Joerg Roedel53812c12009-05-12 12:17:38 +02002515 goto out_unmap;
2516
Joerg Roedelcb76c322008-06-26 21:28:00 +02002517 paddr += PAGE_SIZE;
2518 start += PAGE_SIZE;
2519 }
2520 address += offset;
2521
Joerg Roedel5774f7c2008-12-12 15:57:30 +01002522 ADD_STATS_COUNTER(alloced_io_mem, size);
2523
FUJITA Tomonoriafa9fdc2008-09-20 01:23:30 +09002524 if (unlikely(dma_dom->need_flush && !amd_iommu_unmap_flush)) {
Joerg Roedel17b124b2011-04-06 18:01:35 +02002525 domain_flush_tlb(&dma_dom->domain);
Joerg Roedel1c655772008-09-04 18:40:05 +02002526 dma_dom->need_flush = false;
Joerg Roedel318afd42009-11-23 18:32:38 +01002527 } else if (unlikely(amd_iommu_np_cache))
Joerg Roedel17b124b2011-04-06 18:01:35 +02002528 domain_flush_pages(&dma_dom->domain, address, size);
Joerg Roedel270cab242008-09-04 15:49:46 +02002529
Joerg Roedelcb76c322008-06-26 21:28:00 +02002530out:
2531 return address;
Joerg Roedel53812c12009-05-12 12:17:38 +02002532
2533out_unmap:
2534
2535 for (--i; i >= 0; --i) {
2536 start -= PAGE_SIZE;
Joerg Roedel680525e2009-11-23 18:44:42 +01002537 dma_ops_domain_unmap(dma_dom, start);
Joerg Roedel53812c12009-05-12 12:17:38 +02002538 }
2539
2540 dma_ops_free_addresses(dma_dom, address, pages);
2541
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002542 return DMA_ERROR_CODE;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002543}
2544
Joerg Roedel431b2a22008-07-11 17:14:22 +02002545/*
2546 * Does the reverse of the __map_single function. Must be called with
2547 * the domain lock held too
2548 */
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002549static void __unmap_single(struct dma_ops_domain *dma_dom,
Joerg Roedelcb76c322008-06-26 21:28:00 +02002550 dma_addr_t dma_addr,
2551 size_t size,
2552 int dir)
2553{
Joerg Roedel04e04632010-09-23 16:12:48 +02002554 dma_addr_t flush_addr;
Joerg Roedelcb76c322008-06-26 21:28:00 +02002555 dma_addr_t i, start;
2556 unsigned int pages;
2557
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002558 if ((dma_addr == DMA_ERROR_CODE) ||
Joerg Roedelb8d99052008-12-08 14:40:26 +01002559 (dma_addr + size > dma_dom->aperture_size))
Joerg Roedelcb76c322008-06-26 21:28:00 +02002560 return;
2561
Joerg Roedel04e04632010-09-23 16:12:48 +02002562 flush_addr = dma_addr;
Joerg Roedele3c449f2008-10-15 22:02:11 -07002563 pages = iommu_num_pages(dma_addr, size, PAGE_SIZE);
Joerg Roedelcb76c322008-06-26 21:28:00 +02002564 dma_addr &= PAGE_MASK;
2565 start = dma_addr;
2566
2567 for (i = 0; i < pages; ++i) {
Joerg Roedel680525e2009-11-23 18:44:42 +01002568 dma_ops_domain_unmap(dma_dom, start);
Joerg Roedelcb76c322008-06-26 21:28:00 +02002569 start += PAGE_SIZE;
2570 }
2571
Joerg Roedel5774f7c2008-12-12 15:57:30 +01002572 SUB_STATS_COUNTER(alloced_io_mem, size);
2573
Joerg Roedelcb76c322008-06-26 21:28:00 +02002574 dma_ops_free_addresses(dma_dom, dma_addr, pages);
Joerg Roedel270cab242008-09-04 15:49:46 +02002575
Joerg Roedel80be3082008-11-06 14:59:05 +01002576 if (amd_iommu_unmap_flush || dma_dom->need_flush) {
Joerg Roedel17b124b2011-04-06 18:01:35 +02002577 domain_flush_pages(&dma_dom->domain, flush_addr, size);
Joerg Roedel80be3082008-11-06 14:59:05 +01002578 dma_dom->need_flush = false;
2579 }
Joerg Roedelcb76c322008-06-26 21:28:00 +02002580}
2581
Joerg Roedel431b2a22008-07-11 17:14:22 +02002582/*
2583 * The exported map_single function for dma_ops.
2584 */
FUJITA Tomonori51491362009-01-05 23:47:25 +09002585static dma_addr_t map_page(struct device *dev, struct page *page,
2586 unsigned long offset, size_t size,
2587 enum dma_data_direction dir,
2588 struct dma_attrs *attrs)
Joerg Roedel4da70b92008-06-26 21:28:01 +02002589{
2590 unsigned long flags;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002591 struct protection_domain *domain;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002592 dma_addr_t addr;
Joerg Roedel832a90c2008-09-18 15:54:23 +02002593 u64 dma_mask;
FUJITA Tomonori51491362009-01-05 23:47:25 +09002594 phys_addr_t paddr = page_to_phys(page) + offset;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002595
Joerg Roedel0f2a86f2008-12-12 15:05:16 +01002596 INC_STATS_COUNTER(cnt_map_single);
2597
Joerg Roedel94f6d192009-11-24 16:40:02 +01002598 domain = get_domain(dev);
2599 if (PTR_ERR(domain) == -EINVAL)
Joerg Roedel4da70b92008-06-26 21:28:01 +02002600 return (dma_addr_t)paddr;
Joerg Roedel94f6d192009-11-24 16:40:02 +01002601 else if (IS_ERR(domain))
2602 return DMA_ERROR_CODE;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002603
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002604 dma_mask = *dev->dma_mask;
2605
Joerg Roedel4da70b92008-06-26 21:28:01 +02002606 spin_lock_irqsave(&domain->lock, flags);
Joerg Roedel94f6d192009-11-24 16:40:02 +01002607
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002608 addr = __map_single(dev, domain->priv, paddr, size, dir, false,
Joerg Roedel832a90c2008-09-18 15:54:23 +02002609 dma_mask);
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002610 if (addr == DMA_ERROR_CODE)
Joerg Roedel4da70b92008-06-26 21:28:01 +02002611 goto out;
2612
Joerg Roedel17b124b2011-04-06 18:01:35 +02002613 domain_flush_complete(domain);
Joerg Roedel4da70b92008-06-26 21:28:01 +02002614
2615out:
2616 spin_unlock_irqrestore(&domain->lock, flags);
2617
2618 return addr;
2619}
2620
Joerg Roedel431b2a22008-07-11 17:14:22 +02002621/*
2622 * The exported unmap_single function for dma_ops.
2623 */
FUJITA Tomonori51491362009-01-05 23:47:25 +09002624static void unmap_page(struct device *dev, dma_addr_t dma_addr, size_t size,
2625 enum dma_data_direction dir, struct dma_attrs *attrs)
Joerg Roedel4da70b92008-06-26 21:28:01 +02002626{
2627 unsigned long flags;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002628 struct protection_domain *domain;
Joerg Roedel4da70b92008-06-26 21:28:01 +02002629
Joerg Roedel146a6912008-12-12 15:07:12 +01002630 INC_STATS_COUNTER(cnt_unmap_single);
2631
Joerg Roedel94f6d192009-11-24 16:40:02 +01002632 domain = get_domain(dev);
2633 if (IS_ERR(domain))
Joerg Roedel5b28df62008-12-02 17:49:42 +01002634 return;
2635
Joerg Roedel4da70b92008-06-26 21:28:01 +02002636 spin_lock_irqsave(&domain->lock, flags);
2637
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002638 __unmap_single(domain->priv, dma_addr, size, dir);
Joerg Roedel4da70b92008-06-26 21:28:01 +02002639
Joerg Roedel17b124b2011-04-06 18:01:35 +02002640 domain_flush_complete(domain);
Joerg Roedel4da70b92008-06-26 21:28:01 +02002641
2642 spin_unlock_irqrestore(&domain->lock, flags);
2643}
2644
Joerg Roedel431b2a22008-07-11 17:14:22 +02002645/*
2646 * This is a special map_sg function which is used if we should map a
2647 * device which is not handled by an AMD IOMMU in the system.
2648 */
Joerg Roedel65b050a2008-06-26 21:28:02 +02002649static int map_sg_no_iommu(struct device *dev, struct scatterlist *sglist,
2650 int nelems, int dir)
2651{
2652 struct scatterlist *s;
2653 int i;
2654
2655 for_each_sg(sglist, s, nelems, i) {
2656 s->dma_address = (dma_addr_t)sg_phys(s);
2657 s->dma_length = s->length;
2658 }
2659
2660 return nelems;
2661}
2662
Joerg Roedel431b2a22008-07-11 17:14:22 +02002663/*
2664 * The exported map_sg function for dma_ops (handles scatter-gather
2665 * lists).
2666 */
Joerg Roedel65b050a2008-06-26 21:28:02 +02002667static int map_sg(struct device *dev, struct scatterlist *sglist,
FUJITA Tomonori160c1d82009-01-05 23:59:02 +09002668 int nelems, enum dma_data_direction dir,
2669 struct dma_attrs *attrs)
Joerg Roedel65b050a2008-06-26 21:28:02 +02002670{
2671 unsigned long flags;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002672 struct protection_domain *domain;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002673 int i;
2674 struct scatterlist *s;
2675 phys_addr_t paddr;
2676 int mapped_elems = 0;
Joerg Roedel832a90c2008-09-18 15:54:23 +02002677 u64 dma_mask;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002678
Joerg Roedeld03f0672008-12-12 15:09:48 +01002679 INC_STATS_COUNTER(cnt_map_sg);
2680
Joerg Roedel94f6d192009-11-24 16:40:02 +01002681 domain = get_domain(dev);
2682 if (PTR_ERR(domain) == -EINVAL)
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002683 return map_sg_no_iommu(dev, sglist, nelems, dir);
Joerg Roedel94f6d192009-11-24 16:40:02 +01002684 else if (IS_ERR(domain))
2685 return 0;
Joerg Roedeldbcc1122008-09-04 15:04:26 +02002686
Joerg Roedel832a90c2008-09-18 15:54:23 +02002687 dma_mask = *dev->dma_mask;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002688
Joerg Roedel65b050a2008-06-26 21:28:02 +02002689 spin_lock_irqsave(&domain->lock, flags);
2690
2691 for_each_sg(sglist, s, nelems, i) {
2692 paddr = sg_phys(s);
2693
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002694 s->dma_address = __map_single(dev, domain->priv,
Joerg Roedel832a90c2008-09-18 15:54:23 +02002695 paddr, s->length, dir, false,
2696 dma_mask);
Joerg Roedel65b050a2008-06-26 21:28:02 +02002697
2698 if (s->dma_address) {
2699 s->dma_length = s->length;
2700 mapped_elems++;
2701 } else
2702 goto unmap;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002703 }
2704
Joerg Roedel17b124b2011-04-06 18:01:35 +02002705 domain_flush_complete(domain);
Joerg Roedel65b050a2008-06-26 21:28:02 +02002706
2707out:
2708 spin_unlock_irqrestore(&domain->lock, flags);
2709
2710 return mapped_elems;
2711unmap:
2712 for_each_sg(sglist, s, mapped_elems, i) {
2713 if (s->dma_address)
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002714 __unmap_single(domain->priv, s->dma_address,
Joerg Roedel65b050a2008-06-26 21:28:02 +02002715 s->dma_length, dir);
2716 s->dma_address = s->dma_length = 0;
2717 }
2718
2719 mapped_elems = 0;
2720
2721 goto out;
2722}
2723
Joerg Roedel431b2a22008-07-11 17:14:22 +02002724/*
2725 * The exported map_sg function for dma_ops (handles scatter-gather
2726 * lists).
2727 */
Joerg Roedel65b050a2008-06-26 21:28:02 +02002728static void unmap_sg(struct device *dev, struct scatterlist *sglist,
FUJITA Tomonori160c1d82009-01-05 23:59:02 +09002729 int nelems, enum dma_data_direction dir,
2730 struct dma_attrs *attrs)
Joerg Roedel65b050a2008-06-26 21:28:02 +02002731{
2732 unsigned long flags;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002733 struct protection_domain *domain;
2734 struct scatterlist *s;
Joerg Roedel65b050a2008-06-26 21:28:02 +02002735 int i;
2736
Joerg Roedel55877a62008-12-12 15:12:14 +01002737 INC_STATS_COUNTER(cnt_unmap_sg);
2738
Joerg Roedel94f6d192009-11-24 16:40:02 +01002739 domain = get_domain(dev);
2740 if (IS_ERR(domain))
Joerg Roedel5b28df62008-12-02 17:49:42 +01002741 return;
2742
Joerg Roedel65b050a2008-06-26 21:28:02 +02002743 spin_lock_irqsave(&domain->lock, flags);
2744
2745 for_each_sg(sglist, s, nelems, i) {
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002746 __unmap_single(domain->priv, s->dma_address,
Joerg Roedel65b050a2008-06-26 21:28:02 +02002747 s->dma_length, dir);
Joerg Roedel65b050a2008-06-26 21:28:02 +02002748 s->dma_address = s->dma_length = 0;
2749 }
2750
Joerg Roedel17b124b2011-04-06 18:01:35 +02002751 domain_flush_complete(domain);
Joerg Roedel65b050a2008-06-26 21:28:02 +02002752
2753 spin_unlock_irqrestore(&domain->lock, flags);
2754}
2755
Joerg Roedel431b2a22008-07-11 17:14:22 +02002756/*
2757 * The exported alloc_coherent function for dma_ops.
2758 */
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002759static void *alloc_coherent(struct device *dev, size_t size,
Andrzej Pietrasiewiczbaa676f2012-03-27 14:28:18 +02002760 dma_addr_t *dma_addr, gfp_t flag,
2761 struct dma_attrs *attrs)
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002762{
2763 unsigned long flags;
2764 void *virt_addr;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002765 struct protection_domain *domain;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002766 phys_addr_t paddr;
Joerg Roedel832a90c2008-09-18 15:54:23 +02002767 u64 dma_mask = dev->coherent_dma_mask;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002768
Joerg Roedelc8f0fb32008-12-12 15:14:21 +01002769 INC_STATS_COUNTER(cnt_alloc_coherent);
2770
Joerg Roedel94f6d192009-11-24 16:40:02 +01002771 domain = get_domain(dev);
2772 if (PTR_ERR(domain) == -EINVAL) {
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002773 virt_addr = (void *)__get_free_pages(flag, get_order(size));
2774 *dma_addr = __pa(virt_addr);
2775 return virt_addr;
Joerg Roedel94f6d192009-11-24 16:40:02 +01002776 } else if (IS_ERR(domain))
2777 return NULL;
Joerg Roedeldbcc1122008-09-04 15:04:26 +02002778
Joerg Roedelf99c0f12009-11-23 16:52:56 +01002779 dma_mask = dev->coherent_dma_mask;
2780 flag &= ~(__GFP_DMA | __GFP_HIGHMEM | __GFP_DMA32);
2781 flag |= __GFP_ZERO;
FUJITA Tomonori13d9fea2008-09-10 20:19:40 +09002782
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002783 virt_addr = (void *)__get_free_pages(flag, get_order(size));
2784 if (!virt_addr)
Jaswinder Singh Rajputb25ae672009-07-01 19:53:14 +05302785 return NULL;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002786
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002787 paddr = virt_to_phys(virt_addr);
2788
Joerg Roedel832a90c2008-09-18 15:54:23 +02002789 if (!dma_mask)
2790 dma_mask = *dev->dma_mask;
2791
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002792 spin_lock_irqsave(&domain->lock, flags);
2793
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002794 *dma_addr = __map_single(dev, domain->priv, paddr,
Joerg Roedel832a90c2008-09-18 15:54:23 +02002795 size, DMA_BIDIRECTIONAL, true, dma_mask);
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002796
FUJITA Tomonori8fd524b2009-11-15 21:19:53 +09002797 if (*dma_addr == DMA_ERROR_CODE) {
Jiri Slaby367d04c2009-05-28 09:54:48 +02002798 spin_unlock_irqrestore(&domain->lock, flags);
Joerg Roedel5b28df62008-12-02 17:49:42 +01002799 goto out_free;
Jiri Slaby367d04c2009-05-28 09:54:48 +02002800 }
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002801
Joerg Roedel17b124b2011-04-06 18:01:35 +02002802 domain_flush_complete(domain);
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002803
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002804 spin_unlock_irqrestore(&domain->lock, flags);
2805
2806 return virt_addr;
Joerg Roedel5b28df62008-12-02 17:49:42 +01002807
2808out_free:
2809
2810 free_pages((unsigned long)virt_addr, get_order(size));
2811
2812 return NULL;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002813}
2814
Joerg Roedel431b2a22008-07-11 17:14:22 +02002815/*
2816 * The exported free_coherent function for dma_ops.
Joerg Roedel431b2a22008-07-11 17:14:22 +02002817 */
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002818static void free_coherent(struct device *dev, size_t size,
Andrzej Pietrasiewiczbaa676f2012-03-27 14:28:18 +02002819 void *virt_addr, dma_addr_t dma_addr,
2820 struct dma_attrs *attrs)
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002821{
2822 unsigned long flags;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002823 struct protection_domain *domain;
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002824
Joerg Roedel5d31ee72008-12-12 15:16:38 +01002825 INC_STATS_COUNTER(cnt_free_coherent);
2826
Joerg Roedel94f6d192009-11-24 16:40:02 +01002827 domain = get_domain(dev);
2828 if (IS_ERR(domain))
Joerg Roedel5b28df62008-12-02 17:49:42 +01002829 goto free_mem;
2830
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002831 spin_lock_irqsave(&domain->lock, flags);
2832
Joerg Roedelcd8c82e2009-11-23 19:33:56 +01002833 __unmap_single(domain->priv, dma_addr, size, DMA_BIDIRECTIONAL);
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002834
Joerg Roedel17b124b2011-04-06 18:01:35 +02002835 domain_flush_complete(domain);
Joerg Roedel5d8b53c2008-06-26 21:28:03 +02002836
2837 spin_unlock_irqrestore(&domain->lock, flags);
2838
2839free_mem:
2840 free_pages((unsigned long)virt_addr, get_order(size));
2841}
2842
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002843/*
Joerg Roedelb39ba6a2008-09-09 18:40:46 +02002844 * This function is called by the DMA layer to find out if we can handle a
2845 * particular device. It is part of the dma_ops.
2846 */
2847static int amd_iommu_dma_supported(struct device *dev, u64 mask)
2848{
Joerg Roedel420aef82009-11-23 16:14:57 +01002849 return check_device(dev);
Joerg Roedelb39ba6a2008-09-09 18:40:46 +02002850}
2851
2852/*
Joerg Roedel431b2a22008-07-11 17:14:22 +02002853 * The function for pre-allocating protection domains.
2854 *
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002855 * If the driver core informs the DMA layer if a driver grabs a device
2856 * we don't need to preallocate the protection domains anymore.
2857 * For now we have to.
2858 */
Steffen Persvold943bc7e2012-03-15 12:16:28 +01002859static void __init prealloc_protection_domains(void)
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002860{
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002861 struct iommu_dev_data *dev_data;
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002862 struct dma_ops_domain *dma_dom;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002863 struct pci_dev *dev = NULL;
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002864 u16 devid;
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002865
Chris Wrightd18c69d2010-04-02 18:27:55 -07002866 for_each_pci_dev(dev) {
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002867
2868 /* Do we handle this device? */
2869 if (!check_device(&dev->dev))
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002870 continue;
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002871
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002872 dev_data = get_dev_data(&dev->dev);
2873 if (!amd_iommu_force_isolation && dev_data->iommu_v2) {
2874 /* Make sure passthrough domain is allocated */
2875 alloc_passthrough_domain();
2876 dev_data->passthrough = true;
2877 attach_device(&dev->dev, pt_domain);
2878 pr_info("AMD-Vi: Using passthough domain for device %s\n",
2879 dev_name(&dev->dev));
2880 }
2881
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002882 /* Is there already any domain for it? */
Joerg Roedel15898bb2009-11-24 15:39:42 +01002883 if (domain_for_device(&dev->dev))
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002884 continue;
Joerg Roedel98fc5a62009-11-24 17:19:23 +01002885
2886 devid = get_device_id(&dev->dev);
2887
Joerg Roedel87a64d52009-11-24 17:26:43 +01002888 dma_dom = dma_ops_domain_alloc();
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002889 if (!dma_dom)
2890 continue;
2891 init_unity_mappings_for_device(dma_dom, devid);
Joerg Roedelbd60b732008-09-11 10:24:48 +02002892 dma_dom->target_dev = devid;
2893
Joerg Roedel15898bb2009-11-24 15:39:42 +01002894 attach_device(&dev->dev, &dma_dom->domain);
Joerg Roedelbe831292009-11-23 12:50:00 +01002895
Joerg Roedelbd60b732008-09-11 10:24:48 +02002896 list_add_tail(&dma_dom->list, &iommu_pd_list);
Joerg Roedelc432f3d2008-06-26 21:28:04 +02002897 }
2898}
2899
FUJITA Tomonori160c1d82009-01-05 23:59:02 +09002900static struct dma_map_ops amd_iommu_dma_ops = {
Andrzej Pietrasiewiczbaa676f2012-03-27 14:28:18 +02002901 .alloc = alloc_coherent,
2902 .free = free_coherent,
FUJITA Tomonori51491362009-01-05 23:47:25 +09002903 .map_page = map_page,
2904 .unmap_page = unmap_page,
Joerg Roedel6631ee92008-06-26 21:28:05 +02002905 .map_sg = map_sg,
2906 .unmap_sg = unmap_sg,
Joerg Roedelb39ba6a2008-09-09 18:40:46 +02002907 .dma_supported = amd_iommu_dma_supported,
Joerg Roedel6631ee92008-06-26 21:28:05 +02002908};
2909
Joerg Roedel27c21272011-05-30 15:56:24 +02002910static unsigned device_dma_ops_init(void)
2911{
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002912 struct iommu_dev_data *dev_data;
Joerg Roedel27c21272011-05-30 15:56:24 +02002913 struct pci_dev *pdev = NULL;
2914 unsigned unhandled = 0;
2915
2916 for_each_pci_dev(pdev) {
2917 if (!check_device(&pdev->dev)) {
Joerg Roedelaf1be042012-01-18 14:03:11 +01002918
2919 iommu_ignore_device(&pdev->dev);
2920
Joerg Roedel27c21272011-05-30 15:56:24 +02002921 unhandled += 1;
2922 continue;
2923 }
2924
Joerg Roedel5abcdba2011-12-01 15:49:45 +01002925 dev_data = get_dev_data(&pdev->dev);
2926
2927 if (!dev_data->passthrough)
2928 pdev->dev.archdata.dma_ops = &amd_iommu_dma_ops;
2929 else
2930 pdev->dev.archdata.dma_ops = &nommu_dma_ops;
Joerg Roedel27c21272011-05-30 15:56:24 +02002931 }
2932
2933 return unhandled;
2934}
2935
Joerg Roedel431b2a22008-07-11 17:14:22 +02002936/*
2937 * The function which clues the AMD IOMMU driver into dma_ops.
2938 */
Joerg Roedelf5325092010-01-22 17:44:35 +01002939
2940void __init amd_iommu_init_api(void)
2941{
Joerg Roedel2cc21c42011-09-06 17:56:07 +02002942 bus_set_iommu(&pci_bus_type, &amd_iommu_ops);
Joerg Roedelf5325092010-01-22 17:44:35 +01002943}
2944
Joerg Roedel6631ee92008-06-26 21:28:05 +02002945int __init amd_iommu_init_dma_ops(void)
2946{
2947 struct amd_iommu *iommu;
Joerg Roedel27c21272011-05-30 15:56:24 +02002948 int ret, unhandled;
Joerg Roedel6631ee92008-06-26 21:28:05 +02002949
Joerg Roedel431b2a22008-07-11 17:14:22 +02002950 /*
2951 * first allocate a default protection domain for every IOMMU we
2952 * found in the system. Devices not assigned to any other
2953 * protection domain will be assigned to the default one.
2954 */
Joerg Roedel3bd22172009-05-04 15:06:20 +02002955 for_each_iommu(iommu) {
Joerg Roedel87a64d52009-11-24 17:26:43 +01002956 iommu->default_dom = dma_ops_domain_alloc();
Joerg Roedel6631ee92008-06-26 21:28:05 +02002957 if (iommu->default_dom == NULL)
2958 return -ENOMEM;
Joerg Roedele2dc14a2008-12-10 18:48:59 +01002959 iommu->default_dom->domain.flags |= PD_DEFAULT_MASK;
Joerg Roedel6631ee92008-06-26 21:28:05 +02002960 ret = iommu_init_unity_mappings(iommu);
2961 if (ret)
2962 goto free_domains;
2963 }
2964
Joerg Roedel431b2a22008-07-11 17:14:22 +02002965 /*
Joerg Roedel8793abe2009-11-27 11:40:33 +01002966 * Pre-allocate the protection domains for each device.
Joerg Roedel431b2a22008-07-11 17:14:22 +02002967 */
Joerg Roedel8793abe2009-11-27 11:40:33 +01002968 prealloc_protection_domains();
Joerg Roedel6631ee92008-06-26 21:28:05 +02002969
2970 iommu_detected = 1;
FUJITA Tomonori75f1cdf2009-11-10 19:46:20 +09002971 swiotlb = 0;
Joerg Roedel6631ee92008-06-26 21:28:05 +02002972
Joerg Roedel431b2a22008-07-11 17:14:22 +02002973 /* Make the driver finally visible to the drivers */
Joerg Roedel27c21272011-05-30 15:56:24 +02002974 unhandled = device_dma_ops_init();
2975 if (unhandled && max_pfn > MAX_DMA32_PFN) {
2976 /* There are unhandled devices - initialize swiotlb for them */
2977 swiotlb = 1;
2978 }
Joerg Roedel6631ee92008-06-26 21:28:05 +02002979
Joerg Roedel7f265082008-12-12 13:50:21 +01002980 amd_iommu_stats_init();
2981
Joerg Roedel6631ee92008-06-26 21:28:05 +02002982 return 0;
2983
2984free_domains:
2985
Joerg Roedel3bd22172009-05-04 15:06:20 +02002986 for_each_iommu(iommu) {
Joerg Roedel6631ee92008-06-26 21:28:05 +02002987 if (iommu->default_dom)
2988 dma_ops_domain_free(iommu->default_dom);
2989 }
2990
2991 return ret;
2992}
Joerg Roedel6d98cd82008-12-08 12:05:55 +01002993
2994/*****************************************************************************
2995 *
2996 * The following functions belong to the exported interface of AMD IOMMU
2997 *
2998 * This interface allows access to lower level functions of the IOMMU
2999 * like protection domain handling and assignement of devices to domains
3000 * which is not possible with the dma_ops interface.
3001 *
3002 *****************************************************************************/
3003
Joerg Roedel6d98cd82008-12-08 12:05:55 +01003004static void cleanup_domain(struct protection_domain *domain)
3005{
Joerg Roedel492667d2009-11-27 13:25:47 +01003006 struct iommu_dev_data *dev_data, *next;
Joerg Roedel6d98cd82008-12-08 12:05:55 +01003007 unsigned long flags;
Joerg Roedel6d98cd82008-12-08 12:05:55 +01003008
3009 write_lock_irqsave(&amd_iommu_devtable_lock, flags);
3010
Joerg Roedel492667d2009-11-27 13:25:47 +01003011 list_for_each_entry_safe(dev_data, next, &domain->dev_list, list) {
Joerg Roedelec9e79e2011-06-09 17:25:50 +02003012 __detach_device(dev_data);
Joerg Roedel492667d2009-11-27 13:25:47 +01003013 atomic_set(&dev_data->bind, 0);
3014 }
Joerg Roedel6d98cd82008-12-08 12:05:55 +01003015
3016 write_unlock_irqrestore(&amd_iommu_devtable_lock, flags);
3017}
3018
Joerg Roedel26508152009-08-26 16:52:40 +02003019static void protection_domain_free(struct protection_domain *domain)
3020{
3021 if (!domain)
3022 return;
3023
Joerg Roedelaeb26f52009-11-20 16:44:01 +01003024 del_domain_from_list(domain);
3025
Joerg Roedel26508152009-08-26 16:52:40 +02003026 if (domain->id)
3027 domain_id_free(domain->id);
3028
3029 kfree(domain);
3030}
3031
3032static struct protection_domain *protection_domain_alloc(void)
Joerg Roedelc156e342008-12-02 18:13:27 +01003033{
3034 struct protection_domain *domain;
3035
3036 domain = kzalloc(sizeof(*domain), GFP_KERNEL);
3037 if (!domain)
Joerg Roedel26508152009-08-26 16:52:40 +02003038 return NULL;
Joerg Roedelc156e342008-12-02 18:13:27 +01003039
3040 spin_lock_init(&domain->lock);
Joerg Roedel5d214fe2010-02-08 14:44:49 +01003041 mutex_init(&domain->api_lock);
Joerg Roedelc156e342008-12-02 18:13:27 +01003042 domain->id = domain_id_alloc();
3043 if (!domain->id)
Joerg Roedel26508152009-08-26 16:52:40 +02003044 goto out_err;
Joerg Roedel7c392cb2009-11-26 11:13:32 +01003045 INIT_LIST_HEAD(&domain->dev_list);
Joerg Roedel26508152009-08-26 16:52:40 +02003046
Joerg Roedelaeb26f52009-11-20 16:44:01 +01003047 add_domain_to_list(domain);
3048
Joerg Roedel26508152009-08-26 16:52:40 +02003049 return domain;
3050
3051out_err:
3052 kfree(domain);
3053
3054 return NULL;
3055}
3056
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003057static int __init alloc_passthrough_domain(void)
3058{
3059 if (pt_domain != NULL)
3060 return 0;
3061
3062 /* allocate passthrough domain */
3063 pt_domain = protection_domain_alloc();
3064 if (!pt_domain)
3065 return -ENOMEM;
3066
3067 pt_domain->mode = PAGE_MODE_NONE;
3068
3069 return 0;
3070}
Joerg Roedel26508152009-08-26 16:52:40 +02003071static int amd_iommu_domain_init(struct iommu_domain *dom)
3072{
3073 struct protection_domain *domain;
3074
3075 domain = protection_domain_alloc();
3076 if (!domain)
Joerg Roedelc156e342008-12-02 18:13:27 +01003077 goto out_free;
Joerg Roedel26508152009-08-26 16:52:40 +02003078
3079 domain->mode = PAGE_MODE_3_LEVEL;
Joerg Roedelc156e342008-12-02 18:13:27 +01003080 domain->pt_root = (void *)get_zeroed_page(GFP_KERNEL);
3081 if (!domain->pt_root)
3082 goto out_free;
3083
Joerg Roedelf3572db2011-11-23 12:36:25 +01003084 domain->iommu_domain = dom;
3085
Joerg Roedelc156e342008-12-02 18:13:27 +01003086 dom->priv = domain;
3087
3088 return 0;
3089
3090out_free:
Joerg Roedel26508152009-08-26 16:52:40 +02003091 protection_domain_free(domain);
Joerg Roedelc156e342008-12-02 18:13:27 +01003092
3093 return -ENOMEM;
3094}
3095
Joerg Roedel98383fc2008-12-02 18:34:12 +01003096static void amd_iommu_domain_destroy(struct iommu_domain *dom)
3097{
3098 struct protection_domain *domain = dom->priv;
3099
3100 if (!domain)
3101 return;
3102
3103 if (domain->dev_cnt > 0)
3104 cleanup_domain(domain);
3105
3106 BUG_ON(domain->dev_cnt != 0);
3107
Joerg Roedel132bd682011-11-17 14:18:46 +01003108 if (domain->mode != PAGE_MODE_NONE)
3109 free_pagetable(domain);
Joerg Roedel98383fc2008-12-02 18:34:12 +01003110
Joerg Roedel52815b72011-11-17 17:24:28 +01003111 if (domain->flags & PD_IOMMUV2_MASK)
3112 free_gcr3_table(domain);
3113
Joerg Roedel8b408fe2010-03-08 14:20:07 +01003114 protection_domain_free(domain);
Joerg Roedel98383fc2008-12-02 18:34:12 +01003115
3116 dom->priv = NULL;
3117}
3118
Joerg Roedel684f2882008-12-08 12:07:44 +01003119static void amd_iommu_detach_device(struct iommu_domain *dom,
3120 struct device *dev)
3121{
Joerg Roedel657cbb62009-11-23 15:26:46 +01003122 struct iommu_dev_data *dev_data = dev->archdata.iommu;
Joerg Roedel684f2882008-12-08 12:07:44 +01003123 struct amd_iommu *iommu;
Joerg Roedel684f2882008-12-08 12:07:44 +01003124 u16 devid;
3125
Joerg Roedel98fc5a62009-11-24 17:19:23 +01003126 if (!check_device(dev))
Joerg Roedel684f2882008-12-08 12:07:44 +01003127 return;
3128
Joerg Roedel98fc5a62009-11-24 17:19:23 +01003129 devid = get_device_id(dev);
Joerg Roedel684f2882008-12-08 12:07:44 +01003130
Joerg Roedel657cbb62009-11-23 15:26:46 +01003131 if (dev_data->domain != NULL)
Joerg Roedel15898bb2009-11-24 15:39:42 +01003132 detach_device(dev);
Joerg Roedel684f2882008-12-08 12:07:44 +01003133
3134 iommu = amd_iommu_rlookup_table[devid];
3135 if (!iommu)
3136 return;
3137
Joerg Roedel684f2882008-12-08 12:07:44 +01003138 iommu_completion_wait(iommu);
3139}
3140
Joerg Roedel01106062008-12-02 19:34:11 +01003141static int amd_iommu_attach_device(struct iommu_domain *dom,
3142 struct device *dev)
3143{
3144 struct protection_domain *domain = dom->priv;
Joerg Roedel657cbb62009-11-23 15:26:46 +01003145 struct iommu_dev_data *dev_data;
Joerg Roedel01106062008-12-02 19:34:11 +01003146 struct amd_iommu *iommu;
Joerg Roedel15898bb2009-11-24 15:39:42 +01003147 int ret;
Joerg Roedel01106062008-12-02 19:34:11 +01003148
Joerg Roedel98fc5a62009-11-24 17:19:23 +01003149 if (!check_device(dev))
Joerg Roedel01106062008-12-02 19:34:11 +01003150 return -EINVAL;
3151
Joerg Roedel657cbb62009-11-23 15:26:46 +01003152 dev_data = dev->archdata.iommu;
3153
Joerg Roedelf62dda62011-06-09 12:55:35 +02003154 iommu = amd_iommu_rlookup_table[dev_data->devid];
Joerg Roedel01106062008-12-02 19:34:11 +01003155 if (!iommu)
3156 return -EINVAL;
3157
Joerg Roedel657cbb62009-11-23 15:26:46 +01003158 if (dev_data->domain)
Joerg Roedel15898bb2009-11-24 15:39:42 +01003159 detach_device(dev);
Joerg Roedel01106062008-12-02 19:34:11 +01003160
Joerg Roedel15898bb2009-11-24 15:39:42 +01003161 ret = attach_device(dev, domain);
Joerg Roedel01106062008-12-02 19:34:11 +01003162
3163 iommu_completion_wait(iommu);
3164
Joerg Roedel15898bb2009-11-24 15:39:42 +01003165 return ret;
Joerg Roedel01106062008-12-02 19:34:11 +01003166}
3167
Joerg Roedel468e2362010-01-21 16:37:36 +01003168static int amd_iommu_map(struct iommu_domain *dom, unsigned long iova,
Ohad Ben-Cohen50090652011-11-10 11:32:25 +02003169 phys_addr_t paddr, size_t page_size, int iommu_prot)
Joerg Roedelc6229ca2008-12-02 19:48:43 +01003170{
3171 struct protection_domain *domain = dom->priv;
Joerg Roedelc6229ca2008-12-02 19:48:43 +01003172 int prot = 0;
3173 int ret;
3174
Joerg Roedel132bd682011-11-17 14:18:46 +01003175 if (domain->mode == PAGE_MODE_NONE)
3176 return -EINVAL;
3177
Joerg Roedelc6229ca2008-12-02 19:48:43 +01003178 if (iommu_prot & IOMMU_READ)
3179 prot |= IOMMU_PROT_IR;
3180 if (iommu_prot & IOMMU_WRITE)
3181 prot |= IOMMU_PROT_IW;
3182
Joerg Roedel5d214fe2010-02-08 14:44:49 +01003183 mutex_lock(&domain->api_lock);
Joerg Roedel795e74f2010-05-11 17:40:57 +02003184 ret = iommu_map_page(domain, iova, paddr, prot, page_size);
Joerg Roedel5d214fe2010-02-08 14:44:49 +01003185 mutex_unlock(&domain->api_lock);
3186
Joerg Roedel795e74f2010-05-11 17:40:57 +02003187 return ret;
Joerg Roedelc6229ca2008-12-02 19:48:43 +01003188}
3189
Ohad Ben-Cohen50090652011-11-10 11:32:25 +02003190static size_t amd_iommu_unmap(struct iommu_domain *dom, unsigned long iova,
3191 size_t page_size)
Joerg Roedeleb74ff62008-12-02 19:59:10 +01003192{
Joerg Roedeleb74ff62008-12-02 19:59:10 +01003193 struct protection_domain *domain = dom->priv;
Ohad Ben-Cohen50090652011-11-10 11:32:25 +02003194 size_t unmap_size;
Joerg Roedeleb74ff62008-12-02 19:59:10 +01003195
Joerg Roedel132bd682011-11-17 14:18:46 +01003196 if (domain->mode == PAGE_MODE_NONE)
3197 return -EINVAL;
3198
Joerg Roedel5d214fe2010-02-08 14:44:49 +01003199 mutex_lock(&domain->api_lock);
Joerg Roedel468e2362010-01-21 16:37:36 +01003200 unmap_size = iommu_unmap_page(domain, iova, page_size);
Joerg Roedel795e74f2010-05-11 17:40:57 +02003201 mutex_unlock(&domain->api_lock);
Joerg Roedeleb74ff62008-12-02 19:59:10 +01003202
Joerg Roedel17b124b2011-04-06 18:01:35 +02003203 domain_flush_tlb_pde(domain);
Joerg Roedel5d214fe2010-02-08 14:44:49 +01003204
Ohad Ben-Cohen50090652011-11-10 11:32:25 +02003205 return unmap_size;
Joerg Roedeleb74ff62008-12-02 19:59:10 +01003206}
3207
Joerg Roedel645c4c82008-12-02 20:05:50 +01003208static phys_addr_t amd_iommu_iova_to_phys(struct iommu_domain *dom,
3209 unsigned long iova)
3210{
3211 struct protection_domain *domain = dom->priv;
Joerg Roedelf03152b2010-01-21 16:15:24 +01003212 unsigned long offset_mask;
Joerg Roedel645c4c82008-12-02 20:05:50 +01003213 phys_addr_t paddr;
Joerg Roedelf03152b2010-01-21 16:15:24 +01003214 u64 *pte, __pte;
Joerg Roedel645c4c82008-12-02 20:05:50 +01003215
Joerg Roedel132bd682011-11-17 14:18:46 +01003216 if (domain->mode == PAGE_MODE_NONE)
3217 return iova;
3218
Joerg Roedel24cd7722010-01-19 17:27:39 +01003219 pte = fetch_pte(domain, iova);
Joerg Roedel645c4c82008-12-02 20:05:50 +01003220
Joerg Roedela6d41a42009-09-02 17:08:55 +02003221 if (!pte || !IOMMU_PTE_PRESENT(*pte))
Joerg Roedel645c4c82008-12-02 20:05:50 +01003222 return 0;
3223
Joerg Roedelf03152b2010-01-21 16:15:24 +01003224 if (PM_PTE_LEVEL(*pte) == 0)
3225 offset_mask = PAGE_SIZE - 1;
3226 else
3227 offset_mask = PTE_PAGE_SIZE(*pte) - 1;
3228
3229 __pte = *pte & PM_ADDR_MASK;
3230 paddr = (__pte & ~offset_mask) | (iova & offset_mask);
Joerg Roedel645c4c82008-12-02 20:05:50 +01003231
3232 return paddr;
3233}
3234
Sheng Yangdbb9fd82009-03-18 15:33:06 +08003235static int amd_iommu_domain_has_cap(struct iommu_domain *domain,
3236 unsigned long cap)
3237{
Joerg Roedel80a506b2010-07-27 17:14:24 +02003238 switch (cap) {
3239 case IOMMU_CAP_CACHE_COHERENCY:
3240 return 1;
3241 }
3242
Sheng Yangdbb9fd82009-03-18 15:33:06 +08003243 return 0;
3244}
3245
Alex Williamson8fbdce62011-10-21 15:56:18 -04003246static int amd_iommu_device_group(struct device *dev, unsigned int *groupid)
3247{
3248 struct iommu_dev_data *dev_data = dev->archdata.iommu;
Alex Williamsonbcb71ab2011-10-21 15:56:24 -04003249 struct pci_dev *pdev = to_pci_dev(dev);
3250 u16 devid;
Alex Williamson8fbdce62011-10-21 15:56:18 -04003251
3252 if (!dev_data)
3253 return -ENODEV;
3254
Alex Williamsonbcb71ab2011-10-21 15:56:24 -04003255 if (pdev->is_virtfn || !iommu_group_mf)
3256 devid = dev_data->devid;
3257 else
3258 devid = calc_devid(pdev->bus->number,
3259 PCI_DEVFN(PCI_SLOT(pdev->devfn), 0));
3260
3261 *groupid = amd_iommu_alias_table[devid];
Alex Williamson8fbdce62011-10-21 15:56:18 -04003262
3263 return 0;
3264}
3265
Joerg Roedel26961ef2008-12-03 17:00:17 +01003266static struct iommu_ops amd_iommu_ops = {
3267 .domain_init = amd_iommu_domain_init,
3268 .domain_destroy = amd_iommu_domain_destroy,
3269 .attach_dev = amd_iommu_attach_device,
3270 .detach_dev = amd_iommu_detach_device,
Joerg Roedel468e2362010-01-21 16:37:36 +01003271 .map = amd_iommu_map,
3272 .unmap = amd_iommu_unmap,
Joerg Roedel26961ef2008-12-03 17:00:17 +01003273 .iova_to_phys = amd_iommu_iova_to_phys,
Sheng Yangdbb9fd82009-03-18 15:33:06 +08003274 .domain_has_cap = amd_iommu_domain_has_cap,
Alex Williamson8fbdce62011-10-21 15:56:18 -04003275 .device_group = amd_iommu_device_group,
Ohad Ben-Cohenaa3de9c2011-11-10 11:32:29 +02003276 .pgsize_bitmap = AMD_IOMMU_PGSIZES,
Joerg Roedel26961ef2008-12-03 17:00:17 +01003277};
3278
Joerg Roedel0feae532009-08-26 15:26:30 +02003279/*****************************************************************************
3280 *
3281 * The next functions do a basic initialization of IOMMU for pass through
3282 * mode
3283 *
3284 * In passthrough mode the IOMMU is initialized and enabled but not used for
3285 * DMA-API translation.
3286 *
3287 *****************************************************************************/
3288
3289int __init amd_iommu_init_passthrough(void)
3290{
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003291 struct iommu_dev_data *dev_data;
Joerg Roedel0feae532009-08-26 15:26:30 +02003292 struct pci_dev *dev = NULL;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003293 struct amd_iommu *iommu;
Joerg Roedel15898bb2009-11-24 15:39:42 +01003294 u16 devid;
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003295 int ret;
Joerg Roedel0feae532009-08-26 15:26:30 +02003296
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003297 ret = alloc_passthrough_domain();
3298 if (ret)
3299 return ret;
Joerg Roedel0feae532009-08-26 15:26:30 +02003300
Kulikov Vasiliy6c54aab2010-07-03 12:03:51 -04003301 for_each_pci_dev(dev) {
Joerg Roedel98fc5a62009-11-24 17:19:23 +01003302 if (!check_device(&dev->dev))
Joerg Roedel0feae532009-08-26 15:26:30 +02003303 continue;
3304
Joerg Roedel5abcdba2011-12-01 15:49:45 +01003305 dev_data = get_dev_data(&dev->dev);
3306 dev_data->passthrough = true;
3307
Joerg Roedel98fc5a62009-11-24 17:19:23 +01003308 devid = get_device_id(&dev->dev);
3309
Joerg Roedel15898bb2009-11-24 15:39:42 +01003310 iommu = amd_iommu_rlookup_table[devid];
Joerg Roedel0feae532009-08-26 15:26:30 +02003311 if (!iommu)
3312 continue;
3313
Joerg Roedel15898bb2009-11-24 15:39:42 +01003314 attach_device(&dev->dev, pt_domain);
Joerg Roedel0feae532009-08-26 15:26:30 +02003315 }
3316
Joerg Roedel2655d7a2011-12-22 12:35:38 +01003317 amd_iommu_stats_init();
3318
Joerg Roedel0feae532009-08-26 15:26:30 +02003319 pr_info("AMD-Vi: Initialized for Passthrough Mode\n");
3320
3321 return 0;
3322}
Joerg Roedel72e1dcc2011-11-10 19:13:51 +01003323
3324/* IOMMUv2 specific functions */
3325int amd_iommu_register_ppr_notifier(struct notifier_block *nb)
3326{
3327 return atomic_notifier_chain_register(&ppr_notifier, nb);
3328}
3329EXPORT_SYMBOL(amd_iommu_register_ppr_notifier);
3330
3331int amd_iommu_unregister_ppr_notifier(struct notifier_block *nb)
3332{
3333 return atomic_notifier_chain_unregister(&ppr_notifier, nb);
3334}
3335EXPORT_SYMBOL(amd_iommu_unregister_ppr_notifier);
Joerg Roedel132bd682011-11-17 14:18:46 +01003336
3337void amd_iommu_domain_direct_map(struct iommu_domain *dom)
3338{
3339 struct protection_domain *domain = dom->priv;
3340 unsigned long flags;
3341
3342 spin_lock_irqsave(&domain->lock, flags);
3343
3344 /* Update data structure */
3345 domain->mode = PAGE_MODE_NONE;
3346 domain->updated = true;
3347
3348 /* Make changes visible to IOMMUs */
3349 update_domain(domain);
3350
3351 /* Page-table is not visible to IOMMU anymore, so free it */
3352 free_pagetable(domain);
3353
3354 spin_unlock_irqrestore(&domain->lock, flags);
3355}
3356EXPORT_SYMBOL(amd_iommu_domain_direct_map);
Joerg Roedel52815b72011-11-17 17:24:28 +01003357
3358int amd_iommu_domain_enable_v2(struct iommu_domain *dom, int pasids)
3359{
3360 struct protection_domain *domain = dom->priv;
3361 unsigned long flags;
3362 int levels, ret;
3363
3364 if (pasids <= 0 || pasids > (PASID_MASK + 1))
3365 return -EINVAL;
3366
3367 /* Number of GCR3 table levels required */
3368 for (levels = 0; (pasids - 1) & ~0x1ff; pasids >>= 9)
3369 levels += 1;
3370
3371 if (levels > amd_iommu_max_glx_val)
3372 return -EINVAL;
3373
3374 spin_lock_irqsave(&domain->lock, flags);
3375
3376 /*
3377 * Save us all sanity checks whether devices already in the
3378 * domain support IOMMUv2. Just force that the domain has no
3379 * devices attached when it is switched into IOMMUv2 mode.
3380 */
3381 ret = -EBUSY;
3382 if (domain->dev_cnt > 0 || domain->flags & PD_IOMMUV2_MASK)
3383 goto out;
3384
3385 ret = -ENOMEM;
3386 domain->gcr3_tbl = (void *)get_zeroed_page(GFP_ATOMIC);
3387 if (domain->gcr3_tbl == NULL)
3388 goto out;
3389
3390 domain->glx = levels;
3391 domain->flags |= PD_IOMMUV2_MASK;
3392 domain->updated = true;
3393
3394 update_domain(domain);
3395
3396 ret = 0;
3397
3398out:
3399 spin_unlock_irqrestore(&domain->lock, flags);
3400
3401 return ret;
3402}
3403EXPORT_SYMBOL(amd_iommu_domain_enable_v2);
Joerg Roedel22e266c2011-11-21 15:59:08 +01003404
3405static int __flush_pasid(struct protection_domain *domain, int pasid,
3406 u64 address, bool size)
3407{
3408 struct iommu_dev_data *dev_data;
3409 struct iommu_cmd cmd;
3410 int i, ret;
3411
3412 if (!(domain->flags & PD_IOMMUV2_MASK))
3413 return -EINVAL;
3414
3415 build_inv_iommu_pasid(&cmd, domain->id, pasid, address, size);
3416
3417 /*
3418 * IOMMU TLB needs to be flushed before Device TLB to
3419 * prevent device TLB refill from IOMMU TLB
3420 */
3421 for (i = 0; i < amd_iommus_present; ++i) {
3422 if (domain->dev_iommu[i] == 0)
3423 continue;
3424
3425 ret = iommu_queue_command(amd_iommus[i], &cmd);
3426 if (ret != 0)
3427 goto out;
3428 }
3429
3430 /* Wait until IOMMU TLB flushes are complete */
3431 domain_flush_complete(domain);
3432
3433 /* Now flush device TLBs */
3434 list_for_each_entry(dev_data, &domain->dev_list, list) {
3435 struct amd_iommu *iommu;
3436 int qdep;
3437
3438 BUG_ON(!dev_data->ats.enabled);
3439
3440 qdep = dev_data->ats.qdep;
3441 iommu = amd_iommu_rlookup_table[dev_data->devid];
3442
3443 build_inv_iotlb_pasid(&cmd, dev_data->devid, pasid,
3444 qdep, address, size);
3445
3446 ret = iommu_queue_command(iommu, &cmd);
3447 if (ret != 0)
3448 goto out;
3449 }
3450
3451 /* Wait until all device TLBs are flushed */
3452 domain_flush_complete(domain);
3453
3454 ret = 0;
3455
3456out:
3457
3458 return ret;
3459}
3460
3461static int __amd_iommu_flush_page(struct protection_domain *domain, int pasid,
3462 u64 address)
3463{
Joerg Roedel399be2f2011-12-01 16:53:47 +01003464 INC_STATS_COUNTER(invalidate_iotlb);
3465
Joerg Roedel22e266c2011-11-21 15:59:08 +01003466 return __flush_pasid(domain, pasid, address, false);
3467}
3468
3469int amd_iommu_flush_page(struct iommu_domain *dom, int pasid,
3470 u64 address)
3471{
3472 struct protection_domain *domain = dom->priv;
3473 unsigned long flags;
3474 int ret;
3475
3476 spin_lock_irqsave(&domain->lock, flags);
3477 ret = __amd_iommu_flush_page(domain, pasid, address);
3478 spin_unlock_irqrestore(&domain->lock, flags);
3479
3480 return ret;
3481}
3482EXPORT_SYMBOL(amd_iommu_flush_page);
3483
3484static int __amd_iommu_flush_tlb(struct protection_domain *domain, int pasid)
3485{
Joerg Roedel399be2f2011-12-01 16:53:47 +01003486 INC_STATS_COUNTER(invalidate_iotlb_all);
3487
Joerg Roedel22e266c2011-11-21 15:59:08 +01003488 return __flush_pasid(domain, pasid, CMD_INV_IOMMU_ALL_PAGES_ADDRESS,
3489 true);
3490}
3491
3492int amd_iommu_flush_tlb(struct iommu_domain *dom, int pasid)
3493{
3494 struct protection_domain *domain = dom->priv;
3495 unsigned long flags;
3496 int ret;
3497
3498 spin_lock_irqsave(&domain->lock, flags);
3499 ret = __amd_iommu_flush_tlb(domain, pasid);
3500 spin_unlock_irqrestore(&domain->lock, flags);
3501
3502 return ret;
3503}
3504EXPORT_SYMBOL(amd_iommu_flush_tlb);
3505
Joerg Roedelb16137b2011-11-21 16:50:23 +01003506static u64 *__get_gcr3_pte(u64 *root, int level, int pasid, bool alloc)
3507{
3508 int index;
3509 u64 *pte;
3510
3511 while (true) {
3512
3513 index = (pasid >> (9 * level)) & 0x1ff;
3514 pte = &root[index];
3515
3516 if (level == 0)
3517 break;
3518
3519 if (!(*pte & GCR3_VALID)) {
3520 if (!alloc)
3521 return NULL;
3522
3523 root = (void *)get_zeroed_page(GFP_ATOMIC);
3524 if (root == NULL)
3525 return NULL;
3526
3527 *pte = __pa(root) | GCR3_VALID;
3528 }
3529
3530 root = __va(*pte & PAGE_MASK);
3531
3532 level -= 1;
3533 }
3534
3535 return pte;
3536}
3537
3538static int __set_gcr3(struct protection_domain *domain, int pasid,
3539 unsigned long cr3)
3540{
3541 u64 *pte;
3542
3543 if (domain->mode != PAGE_MODE_NONE)
3544 return -EINVAL;
3545
3546 pte = __get_gcr3_pte(domain->gcr3_tbl, domain->glx, pasid, true);
3547 if (pte == NULL)
3548 return -ENOMEM;
3549
3550 *pte = (cr3 & PAGE_MASK) | GCR3_VALID;
3551
3552 return __amd_iommu_flush_tlb(domain, pasid);
3553}
3554
3555static int __clear_gcr3(struct protection_domain *domain, int pasid)
3556{
3557 u64 *pte;
3558
3559 if (domain->mode != PAGE_MODE_NONE)
3560 return -EINVAL;
3561
3562 pte = __get_gcr3_pte(domain->gcr3_tbl, domain->glx, pasid, false);
3563 if (pte == NULL)
3564 return 0;
3565
3566 *pte = 0;
3567
3568 return __amd_iommu_flush_tlb(domain, pasid);
3569}
3570
3571int amd_iommu_domain_set_gcr3(struct iommu_domain *dom, int pasid,
3572 unsigned long cr3)
3573{
3574 struct protection_domain *domain = dom->priv;
3575 unsigned long flags;
3576 int ret;
3577
3578 spin_lock_irqsave(&domain->lock, flags);
3579 ret = __set_gcr3(domain, pasid, cr3);
3580 spin_unlock_irqrestore(&domain->lock, flags);
3581
3582 return ret;
3583}
3584EXPORT_SYMBOL(amd_iommu_domain_set_gcr3);
3585
3586int amd_iommu_domain_clear_gcr3(struct iommu_domain *dom, int pasid)
3587{
3588 struct protection_domain *domain = dom->priv;
3589 unsigned long flags;
3590 int ret;
3591
3592 spin_lock_irqsave(&domain->lock, flags);
3593 ret = __clear_gcr3(domain, pasid);
3594 spin_unlock_irqrestore(&domain->lock, flags);
3595
3596 return ret;
3597}
3598EXPORT_SYMBOL(amd_iommu_domain_clear_gcr3);
Joerg Roedelc99afa22011-11-21 18:19:25 +01003599
3600int amd_iommu_complete_ppr(struct pci_dev *pdev, int pasid,
3601 int status, int tag)
3602{
3603 struct iommu_dev_data *dev_data;
3604 struct amd_iommu *iommu;
3605 struct iommu_cmd cmd;
3606
Joerg Roedel399be2f2011-12-01 16:53:47 +01003607 INC_STATS_COUNTER(complete_ppr);
3608
Joerg Roedelc99afa22011-11-21 18:19:25 +01003609 dev_data = get_dev_data(&pdev->dev);
3610 iommu = amd_iommu_rlookup_table[dev_data->devid];
3611
3612 build_complete_ppr(&cmd, dev_data->devid, pasid, status,
3613 tag, dev_data->pri_tlp);
3614
3615 return iommu_queue_command(iommu, &cmd);
3616}
3617EXPORT_SYMBOL(amd_iommu_complete_ppr);
Joerg Roedelf3572db2011-11-23 12:36:25 +01003618
3619struct iommu_domain *amd_iommu_get_v2_domain(struct pci_dev *pdev)
3620{
3621 struct protection_domain *domain;
3622
3623 domain = get_domain(&pdev->dev);
3624 if (IS_ERR(domain))
3625 return NULL;
3626
3627 /* Only return IOMMUv2 domains */
3628 if (!(domain->flags & PD_IOMMUV2_MASK))
3629 return NULL;
3630
3631 return domain->iommu_domain;
3632}
3633EXPORT_SYMBOL(amd_iommu_get_v2_domain);
Joerg Roedel6a113dd2011-12-01 12:04:58 +01003634
3635void amd_iommu_enable_device_erratum(struct pci_dev *pdev, u32 erratum)
3636{
3637 struct iommu_dev_data *dev_data;
3638
3639 if (!amd_iommu_v2_supported())
3640 return;
3641
3642 dev_data = get_dev_data(&pdev->dev);
3643 dev_data->errata |= (1 << erratum);
3644}
3645EXPORT_SYMBOL(amd_iommu_enable_device_erratum);
Joerg Roedel52efdb82011-12-07 12:01:36 +01003646
3647int amd_iommu_device_info(struct pci_dev *pdev,
3648 struct amd_iommu_device_info *info)
3649{
3650 int max_pasids;
3651 int pos;
3652
3653 if (pdev == NULL || info == NULL)
3654 return -EINVAL;
3655
3656 if (!amd_iommu_v2_supported())
3657 return -EINVAL;
3658
3659 memset(info, 0, sizeof(*info));
3660
3661 pos = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_ATS);
3662 if (pos)
3663 info->flags |= AMD_IOMMU_DEVICE_FLAG_ATS_SUP;
3664
3665 pos = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_PRI);
3666 if (pos)
3667 info->flags |= AMD_IOMMU_DEVICE_FLAG_PRI_SUP;
3668
3669 pos = pci_find_ext_capability(pdev, PCI_EXT_CAP_ID_PASID);
3670 if (pos) {
3671 int features;
3672
3673 max_pasids = 1 << (9 * (amd_iommu_max_glx_val + 1));
3674 max_pasids = min(max_pasids, (1 << 20));
3675
3676 info->flags |= AMD_IOMMU_DEVICE_FLAG_PASID_SUP;
3677 info->max_pasids = min(pci_max_pasids(pdev), max_pasids);
3678
3679 features = pci_pasid_features(pdev);
3680 if (features & PCI_PASID_CAP_EXEC)
3681 info->flags |= AMD_IOMMU_DEVICE_FLAG_EXEC_SUP;
3682 if (features & PCI_PASID_CAP_PRIV)
3683 info->flags |= AMD_IOMMU_DEVICE_FLAG_PRIV_SUP;
3684 }
3685
3686 return 0;
3687}
3688EXPORT_SYMBOL(amd_iommu_device_info);