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1 /*
2  * Copyright 2014 Advanced Micro Devices, Inc.
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice shall be included in
12  * all copies or substantial portions of the Software.
13  *
14  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
17  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20  * OTHER DEALINGS IN THE SOFTWARE.
21  */
22 
23 #include <linux/mutex.h>
24 #include <linux/log2.h>
25 #include <linux/sched.h>
26 #include <linux/sched/mm.h>
27 #include <linux/slab.h>
28 #include <linux/amd-iommu.h>
29 #include <linux/notifier.h>
30 #include <linux/compat.h>
31 
32 struct mm_struct;
33 
34 #include "kfd_priv.h"
35 #include "kfd_dbgmgr.h"
36 
37 /*
38  * Initial size for the array of queues.
39  * The allocated size is doubled each time
40  * it is exceeded up to MAX_PROCESS_QUEUES.
41  */
42 #define INITIAL_QUEUE_ARRAY_SIZE 16
43 
44 /*
45  * List of struct kfd_process (field kfd_process).
46  * Unique/indexed by mm_struct*
47  */
48 #define KFD_PROCESS_TABLE_SIZE 5 /* bits: 32 entries */
49 static DEFINE_HASHTABLE(kfd_processes_table, KFD_PROCESS_TABLE_SIZE);
50 static DEFINE_MUTEX(kfd_processes_mutex);
51 
52 DEFINE_STATIC_SRCU(kfd_processes_srcu);
53 
54 static struct workqueue_struct *kfd_process_wq;
55 
56 struct kfd_process_release_work {
57 	struct work_struct kfd_work;
58 	struct kfd_process *p;
59 };
60 
61 static struct kfd_process *find_process(const struct task_struct *thread);
62 static struct kfd_process *create_process(const struct task_struct *thread);
63 
kfd_process_create_wq(void)64 void kfd_process_create_wq(void)
65 {
66 	if (!kfd_process_wq)
67 		kfd_process_wq = alloc_workqueue("kfd_process_wq", 0, 0);
68 }
69 
kfd_process_destroy_wq(void)70 void kfd_process_destroy_wq(void)
71 {
72 	if (kfd_process_wq) {
73 		destroy_workqueue(kfd_process_wq);
74 		kfd_process_wq = NULL;
75 	}
76 }
77 
kfd_create_process(const struct task_struct * thread)78 struct kfd_process *kfd_create_process(const struct task_struct *thread)
79 {
80 	struct kfd_process *process;
81 
82 	if (!thread->mm)
83 		return ERR_PTR(-EINVAL);
84 
85 	/* Only the pthreads threading model is supported. */
86 	if (thread->group_leader->mm != thread->mm)
87 		return ERR_PTR(-EINVAL);
88 
89 	/* Take mmap_sem because we call __mmu_notifier_register inside */
90 	down_write(&thread->mm->mmap_sem);
91 
92 	/*
93 	 * take kfd processes mutex before starting of process creation
94 	 * so there won't be a case where two threads of the same process
95 	 * create two kfd_process structures
96 	 */
97 	mutex_lock(&kfd_processes_mutex);
98 
99 	/* A prior open of /dev/kfd could have already created the process. */
100 	process = find_process(thread);
101 	if (process)
102 		pr_debug("Process already found\n");
103 
104 	if (!process)
105 		process = create_process(thread);
106 
107 	mutex_unlock(&kfd_processes_mutex);
108 
109 	up_write(&thread->mm->mmap_sem);
110 
111 	return process;
112 }
113 
kfd_get_process(const struct task_struct * thread)114 struct kfd_process *kfd_get_process(const struct task_struct *thread)
115 {
116 	struct kfd_process *process;
117 
118 	if (!thread->mm)
119 		return ERR_PTR(-EINVAL);
120 
121 	/* Only the pthreads threading model is supported. */
122 	if (thread->group_leader->mm != thread->mm)
123 		return ERR_PTR(-EINVAL);
124 
125 	process = find_process(thread);
126 	if (!process)
127 		return ERR_PTR(-EINVAL);
128 
129 	return process;
130 }
131 
find_process_by_mm(const struct mm_struct * mm)132 static struct kfd_process *find_process_by_mm(const struct mm_struct *mm)
133 {
134 	struct kfd_process *process;
135 
136 	hash_for_each_possible_rcu(kfd_processes_table, process,
137 					kfd_processes, (uintptr_t)mm)
138 		if (process->mm == mm)
139 			return process;
140 
141 	return NULL;
142 }
143 
find_process(const struct task_struct * thread)144 static struct kfd_process *find_process(const struct task_struct *thread)
145 {
146 	struct kfd_process *p;
147 	int idx;
148 
149 	idx = srcu_read_lock(&kfd_processes_srcu);
150 	p = find_process_by_mm(thread->mm);
151 	srcu_read_unlock(&kfd_processes_srcu, idx);
152 
153 	return p;
154 }
155 
kfd_process_wq_release(struct work_struct * work)156 static void kfd_process_wq_release(struct work_struct *work)
157 {
158 	struct kfd_process_release_work *my_work;
159 	struct kfd_process_device *pdd, *temp;
160 	struct kfd_process *p;
161 
162 	my_work = (struct kfd_process_release_work *) work;
163 
164 	p = my_work->p;
165 
166 	pr_debug("Releasing process (pasid %d) in workqueue\n",
167 			p->pasid);
168 
169 	mutex_lock(&p->mutex);
170 
171 	list_for_each_entry_safe(pdd, temp, &p->per_device_data,
172 							per_device_list) {
173 		pr_debug("Releasing pdd (topology id %d) for process (pasid %d) in workqueue\n",
174 				pdd->dev->id, p->pasid);
175 
176 		if (pdd->reset_wavefronts)
177 			dbgdev_wave_reset_wavefronts(pdd->dev, p);
178 
179 		amd_iommu_unbind_pasid(pdd->dev->pdev, p->pasid);
180 		list_del(&pdd->per_device_list);
181 
182 		kfree(pdd);
183 	}
184 
185 	kfd_event_free_process(p);
186 
187 	kfd_pasid_free(p->pasid);
188 
189 	mutex_unlock(&p->mutex);
190 
191 	mutex_destroy(&p->mutex);
192 
193 	kfree(p->queues);
194 
195 	kfree(p);
196 
197 	kfree(work);
198 }
199 
kfd_process_destroy_delayed(struct rcu_head * rcu)200 static void kfd_process_destroy_delayed(struct rcu_head *rcu)
201 {
202 	struct kfd_process_release_work *work;
203 	struct kfd_process *p;
204 
205 	p = container_of(rcu, struct kfd_process, rcu);
206 	WARN_ON(atomic_read(&p->mm->mm_count) <= 0);
207 
208 	mmdrop(p->mm);
209 
210 	work = kmalloc(sizeof(struct kfd_process_release_work), GFP_ATOMIC);
211 
212 	if (work) {
213 		INIT_WORK((struct work_struct *) work, kfd_process_wq_release);
214 		work->p = p;
215 		queue_work(kfd_process_wq, (struct work_struct *) work);
216 	}
217 }
218 
kfd_process_notifier_release(struct mmu_notifier * mn,struct mm_struct * mm)219 static void kfd_process_notifier_release(struct mmu_notifier *mn,
220 					struct mm_struct *mm)
221 {
222 	struct kfd_process *p;
223 	struct kfd_process_device *pdd = NULL;
224 
225 	/*
226 	 * The kfd_process structure can not be free because the
227 	 * mmu_notifier srcu is read locked
228 	 */
229 	p = container_of(mn, struct kfd_process, mmu_notifier);
230 	if (WARN_ON(p->mm != mm))
231 		return;
232 
233 	mutex_lock(&kfd_processes_mutex);
234 	hash_del_rcu(&p->kfd_processes);
235 	mutex_unlock(&kfd_processes_mutex);
236 	synchronize_srcu(&kfd_processes_srcu);
237 
238 	mutex_lock(&p->mutex);
239 
240 	/* In case our notifier is called before IOMMU notifier */
241 	pqm_uninit(&p->pqm);
242 
243 	/* Iterate over all process device data structure and check
244 	 * if we should delete debug managers and reset all wavefronts
245 	 */
246 	list_for_each_entry(pdd, &p->per_device_data, per_device_list) {
247 		if ((pdd->dev->dbgmgr) &&
248 				(pdd->dev->dbgmgr->pasid == p->pasid))
249 			kfd_dbgmgr_destroy(pdd->dev->dbgmgr);
250 
251 		if (pdd->reset_wavefronts) {
252 			pr_warn("Resetting all wave fronts\n");
253 			dbgdev_wave_reset_wavefronts(pdd->dev, p);
254 			pdd->reset_wavefronts = false;
255 		}
256 	}
257 
258 	mutex_unlock(&p->mutex);
259 
260 	/*
261 	 * Because we drop mm_count inside kfd_process_destroy_delayed
262 	 * and because the mmu_notifier_unregister function also drop
263 	 * mm_count we need to take an extra count here.
264 	 */
265 	mmgrab(p->mm);
266 	mmu_notifier_unregister_no_release(&p->mmu_notifier, p->mm);
267 	mmu_notifier_call_srcu(&p->rcu, &kfd_process_destroy_delayed);
268 }
269 
270 static const struct mmu_notifier_ops kfd_process_mmu_notifier_ops = {
271 	.release = kfd_process_notifier_release,
272 };
273 
create_process(const struct task_struct * thread)274 static struct kfd_process *create_process(const struct task_struct *thread)
275 {
276 	struct kfd_process *process;
277 	int err = -ENOMEM;
278 
279 	process = kzalloc(sizeof(*process), GFP_KERNEL);
280 
281 	if (!process)
282 		goto err_alloc_process;
283 
284 	process->queues = kmalloc_array(INITIAL_QUEUE_ARRAY_SIZE,
285 					sizeof(process->queues[0]), GFP_KERNEL);
286 	if (!process->queues)
287 		goto err_alloc_queues;
288 
289 	process->pasid = kfd_pasid_alloc();
290 	if (process->pasid == 0)
291 		goto err_alloc_pasid;
292 
293 	mutex_init(&process->mutex);
294 
295 	process->mm = thread->mm;
296 
297 	/* register notifier */
298 	process->mmu_notifier.ops = &kfd_process_mmu_notifier_ops;
299 	err = __mmu_notifier_register(&process->mmu_notifier, process->mm);
300 	if (err)
301 		goto err_mmu_notifier;
302 
303 	hash_add_rcu(kfd_processes_table, &process->kfd_processes,
304 			(uintptr_t)process->mm);
305 
306 	process->lead_thread = thread->group_leader;
307 
308 	process->queue_array_size = INITIAL_QUEUE_ARRAY_SIZE;
309 
310 	INIT_LIST_HEAD(&process->per_device_data);
311 
312 	kfd_event_init_process(process);
313 
314 	err = pqm_init(&process->pqm, process);
315 	if (err != 0)
316 		goto err_process_pqm_init;
317 
318 	/* init process apertures*/
319 	process->is_32bit_user_mode = in_compat_syscall();
320 	err = kfd_init_apertures(process);
321 	if (err != 0)
322 		goto err_init_apertures;
323 
324 	return process;
325 
326 err_init_apertures:
327 	pqm_uninit(&process->pqm);
328 err_process_pqm_init:
329 	hash_del_rcu(&process->kfd_processes);
330 	synchronize_rcu();
331 	mmu_notifier_unregister_no_release(&process->mmu_notifier, process->mm);
332 err_mmu_notifier:
333 	mutex_destroy(&process->mutex);
334 	kfd_pasid_free(process->pasid);
335 err_alloc_pasid:
336 	kfree(process->queues);
337 err_alloc_queues:
338 	kfree(process);
339 err_alloc_process:
340 	return ERR_PTR(err);
341 }
342 
kfd_get_process_device_data(struct kfd_dev * dev,struct kfd_process * p)343 struct kfd_process_device *kfd_get_process_device_data(struct kfd_dev *dev,
344 							struct kfd_process *p)
345 {
346 	struct kfd_process_device *pdd = NULL;
347 
348 	list_for_each_entry(pdd, &p->per_device_data, per_device_list)
349 		if (pdd->dev == dev)
350 			break;
351 
352 	return pdd;
353 }
354 
kfd_create_process_device_data(struct kfd_dev * dev,struct kfd_process * p)355 struct kfd_process_device *kfd_create_process_device_data(struct kfd_dev *dev,
356 							struct kfd_process *p)
357 {
358 	struct kfd_process_device *pdd = NULL;
359 
360 	pdd = kzalloc(sizeof(*pdd), GFP_KERNEL);
361 	if (pdd != NULL) {
362 		pdd->dev = dev;
363 		INIT_LIST_HEAD(&pdd->qpd.queues_list);
364 		INIT_LIST_HEAD(&pdd->qpd.priv_queue_list);
365 		pdd->qpd.dqm = dev->dqm;
366 		pdd->reset_wavefronts = false;
367 		list_add(&pdd->per_device_list, &p->per_device_data);
368 	}
369 
370 	return pdd;
371 }
372 
373 /*
374  * Direct the IOMMU to bind the process (specifically the pasid->mm)
375  * to the device.
376  * Unbinding occurs when the process dies or the device is removed.
377  *
378  * Assumes that the process lock is held.
379  */
kfd_bind_process_to_device(struct kfd_dev * dev,struct kfd_process * p)380 struct kfd_process_device *kfd_bind_process_to_device(struct kfd_dev *dev,
381 							struct kfd_process *p)
382 {
383 	struct kfd_process_device *pdd;
384 	int err;
385 
386 	pdd = kfd_get_process_device_data(dev, p);
387 	if (!pdd) {
388 		pr_err("Process device data doesn't exist\n");
389 		return ERR_PTR(-ENOMEM);
390 	}
391 
392 	if (pdd->bound)
393 		return pdd;
394 
395 	err = amd_iommu_bind_pasid(dev->pdev, p->pasid, p->lead_thread);
396 	if (err < 0)
397 		return ERR_PTR(err);
398 
399 	pdd->bound = true;
400 
401 	return pdd;
402 }
403 
kfd_unbind_process_from_device(struct kfd_dev * dev,unsigned int pasid)404 void kfd_unbind_process_from_device(struct kfd_dev *dev, unsigned int pasid)
405 {
406 	struct kfd_process *p;
407 	struct kfd_process_device *pdd;
408 
409 	/*
410 	 * Look for the process that matches the pasid. If there is no such
411 	 * process, we either released it in amdkfd's own notifier, or there
412 	 * is a bug. Unfortunately, there is no way to tell...
413 	 */
414 	p = kfd_lookup_process_by_pasid(pasid);
415 	if (!p)
416 		return;
417 
418 	pr_debug("Unbinding process %d from IOMMU\n", pasid);
419 
420 	if ((dev->dbgmgr) && (dev->dbgmgr->pasid == p->pasid))
421 		kfd_dbgmgr_destroy(dev->dbgmgr);
422 
423 	pqm_uninit(&p->pqm);
424 
425 	pdd = kfd_get_process_device_data(dev, p);
426 
427 	if (!pdd) {
428 		mutex_unlock(&p->mutex);
429 		return;
430 	}
431 
432 	if (pdd->reset_wavefronts) {
433 		dbgdev_wave_reset_wavefronts(pdd->dev, p);
434 		pdd->reset_wavefronts = false;
435 	}
436 
437 	/*
438 	 * Just mark pdd as unbound, because we still need it
439 	 * to call amd_iommu_unbind_pasid() in when the
440 	 * process exits.
441 	 * We don't call amd_iommu_unbind_pasid() here
442 	 * because the IOMMU called us.
443 	 */
444 	pdd->bound = false;
445 
446 	mutex_unlock(&p->mutex);
447 }
448 
kfd_get_first_process_device_data(struct kfd_process * p)449 struct kfd_process_device *kfd_get_first_process_device_data(
450 						struct kfd_process *p)
451 {
452 	return list_first_entry(&p->per_device_data,
453 				struct kfd_process_device,
454 				per_device_list);
455 }
456 
kfd_get_next_process_device_data(struct kfd_process * p,struct kfd_process_device * pdd)457 struct kfd_process_device *kfd_get_next_process_device_data(
458 						struct kfd_process *p,
459 						struct kfd_process_device *pdd)
460 {
461 	if (list_is_last(&pdd->per_device_list, &p->per_device_data))
462 		return NULL;
463 	return list_next_entry(pdd, per_device_list);
464 }
465 
kfd_has_process_device_data(struct kfd_process * p)466 bool kfd_has_process_device_data(struct kfd_process *p)
467 {
468 	return !(list_empty(&p->per_device_data));
469 }
470 
471 /* This returns with process->mutex locked. */
kfd_lookup_process_by_pasid(unsigned int pasid)472 struct kfd_process *kfd_lookup_process_by_pasid(unsigned int pasid)
473 {
474 	struct kfd_process *p;
475 	unsigned int temp;
476 
477 	int idx = srcu_read_lock(&kfd_processes_srcu);
478 
479 	hash_for_each_rcu(kfd_processes_table, temp, p, kfd_processes) {
480 		if (p->pasid == pasid) {
481 			mutex_lock(&p->mutex);
482 			break;
483 		}
484 	}
485 
486 	srcu_read_unlock(&kfd_processes_srcu, idx);
487 
488 	return p;
489 }
490