Intel MIC Host Driver Changes for Virtio Devices.
[deliverable/linux.git] / drivers / misc / mic / host / mic_virtio.c
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1/*
2 * Intel MIC Platform Software Stack (MPSS)
3 *
4 * Copyright(c) 2013 Intel Corporation.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License, version 2, as
8 * published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 * The full GNU General Public License is included in this distribution in
16 * the file called "COPYING".
17 *
18 * Intel MIC Host driver.
19 *
20 */
21#include <linux/pci.h>
22#include <linux/sched.h>
23#include <linux/uaccess.h>
24
25#include <linux/mic_common.h>
26#include "../common/mic_device.h"
27#include "mic_device.h"
28#include "mic_smpt.h"
29#include "mic_virtio.h"
30
31/*
32 * Initiates the copies across the PCIe bus from card memory to
33 * a user space buffer.
34 */
35static int mic_virtio_copy_to_user(struct mic_vdev *mvdev,
36 void __user *ubuf, size_t len, u64 addr)
37{
38 int err;
39 void __iomem *dbuf = mvdev->mdev->aper.va + addr;
40 /*
41 * We are copying from IO below an should ideally use something
42 * like copy_to_user_fromio(..) if it existed.
43 */
44 if (copy_to_user(ubuf, dbuf, len)) {
45 err = -EFAULT;
46 dev_err(mic_dev(mvdev), "%s %d err %d\n",
47 __func__, __LINE__, err);
48 goto err;
49 }
50 mvdev->in_bytes += len;
51 err = 0;
52err:
53 return err;
54}
55
56/*
57 * Initiates copies across the PCIe bus from a user space
58 * buffer to card memory.
59 */
60static int mic_virtio_copy_from_user(struct mic_vdev *mvdev,
61 void __user *ubuf, size_t len, u64 addr)
62{
63 int err;
64 void __iomem *dbuf = mvdev->mdev->aper.va + addr;
65 /*
66 * We are copying to IO below and should ideally use something
67 * like copy_from_user_toio(..) if it existed.
68 */
69 if (copy_from_user(dbuf, ubuf, len)) {
70 err = -EFAULT;
71 dev_err(mic_dev(mvdev), "%s %d err %d\n",
72 __func__, __LINE__, err);
73 goto err;
74 }
75 mvdev->out_bytes += len;
76 err = 0;
77err:
78 return err;
79}
80
81#define MIC_VRINGH_READ true
82
83/* The function to call to notify the card about added buffers */
84static void mic_notify(struct vringh *vrh)
85{
86 struct mic_vringh *mvrh = container_of(vrh, struct mic_vringh, vrh);
87 struct mic_vdev *mvdev = mvrh->mvdev;
88 s8 db = mvdev->dc->h2c_vdev_db;
89
90 if (db != -1)
91 mvdev->mdev->ops->send_intr(mvdev->mdev, db);
92}
93
94/* Determine the total number of bytes consumed in a VRINGH KIOV */
95static inline u32 mic_vringh_iov_consumed(struct vringh_kiov *iov)
96{
97 int i;
98 u32 total = iov->consumed;
99
100 for (i = 0; i < iov->i; i++)
101 total += iov->iov[i].iov_len;
102 return total;
103}
104
105/*
106 * Traverse the VRINGH KIOV and issue the APIs to trigger the copies.
107 * This API is heavily based on the vringh_iov_xfer(..) implementation
108 * in vringh.c. The reason we cannot reuse vringh_iov_pull_kern(..)
109 * and vringh_iov_push_kern(..) directly is because there is no
110 * way to override the VRINGH xfer(..) routines as of v3.10.
111 */
112static int mic_vringh_copy(struct mic_vdev *mvdev, struct vringh_kiov *iov,
113 void __user *ubuf, size_t len, bool read, size_t *out_len)
114{
115 int ret = 0;
116 size_t partlen, tot_len = 0;
117
118 while (len && iov->i < iov->used) {
119 partlen = min(iov->iov[iov->i].iov_len, len);
120 if (read)
121 ret = mic_virtio_copy_to_user(mvdev,
122 ubuf, partlen,
123 (u64)iov->iov[iov->i].iov_base);
124 else
125 ret = mic_virtio_copy_from_user(mvdev,
126 ubuf, partlen,
127 (u64)iov->iov[iov->i].iov_base);
128 if (ret) {
129 dev_err(mic_dev(mvdev), "%s %d err %d\n",
130 __func__, __LINE__, ret);
131 break;
132 }
133 len -= partlen;
134 ubuf += partlen;
135 tot_len += partlen;
136 iov->consumed += partlen;
137 iov->iov[iov->i].iov_len -= partlen;
138 iov->iov[iov->i].iov_base += partlen;
139 if (!iov->iov[iov->i].iov_len) {
140 /* Fix up old iov element then increment. */
141 iov->iov[iov->i].iov_len = iov->consumed;
142 iov->iov[iov->i].iov_base -= iov->consumed;
143
144 iov->consumed = 0;
145 iov->i++;
146 }
147 }
148 *out_len = tot_len;
149 return ret;
150}
151
152/*
153 * Use the standard VRINGH infrastructure in the kernel to fetch new
154 * descriptors, initiate the copies and update the used ring.
155 */
156static int _mic_virtio_copy(struct mic_vdev *mvdev,
157 struct mic_copy_desc *copy)
158{
159 int ret = 0, iovcnt = copy->iovcnt;
160 struct iovec iov;
161 struct iovec __user *u_iov = copy->iov;
162 void __user *ubuf = NULL;
163 struct mic_vringh *mvr = &mvdev->mvr[copy->vr_idx];
164 struct vringh_kiov *riov = &mvr->riov;
165 struct vringh_kiov *wiov = &mvr->wiov;
166 struct vringh *vrh = &mvr->vrh;
167 u16 *head = &mvr->head;
168 struct mic_vring *vr = &mvr->vring;
169 size_t len = 0, out_len;
170
171 copy->out_len = 0;
172 /* Fetch a new IOVEC if all previous elements have been processed */
173 if (riov->i == riov->used && wiov->i == wiov->used) {
174 ret = vringh_getdesc_kern(vrh, riov, wiov,
175 head, GFP_KERNEL);
176 /* Check if there are available descriptors */
177 if (ret <= 0)
178 return ret;
179 }
180 while (iovcnt) {
181 if (!len) {
182 /* Copy over a new iovec from user space. */
183 ret = copy_from_user(&iov, u_iov, sizeof(*u_iov));
184 if (ret) {
185 ret = -EINVAL;
186 dev_err(mic_dev(mvdev), "%s %d err %d\n",
187 __func__, __LINE__, ret);
188 break;
189 }
190 len = iov.iov_len;
191 ubuf = iov.iov_base;
192 }
193 /* Issue all the read descriptors first */
194 ret = mic_vringh_copy(mvdev, riov, ubuf, len,
195 MIC_VRINGH_READ, &out_len);
196 if (ret) {
197 dev_err(mic_dev(mvdev), "%s %d err %d\n",
198 __func__, __LINE__, ret);
199 break;
200 }
201 len -= out_len;
202 ubuf += out_len;
203 copy->out_len += out_len;
204 /* Issue the write descriptors next */
205 ret = mic_vringh_copy(mvdev, wiov, ubuf, len,
206 !MIC_VRINGH_READ, &out_len);
207 if (ret) {
208 dev_err(mic_dev(mvdev), "%s %d err %d\n",
209 __func__, __LINE__, ret);
210 break;
211 }
212 len -= out_len;
213 ubuf += out_len;
214 copy->out_len += out_len;
215 if (!len) {
216 /* One user space iovec is now completed */
217 iovcnt--;
218 u_iov++;
219 }
220 /* Exit loop if all elements in KIOVs have been processed. */
221 if (riov->i == riov->used && wiov->i == wiov->used)
222 break;
223 }
224 /*
225 * Update the used ring if a descriptor was available and some data was
226 * copied in/out and the user asked for a used ring update.
227 */
228 if (*head != USHRT_MAX && copy->out_len &&
229 copy->update_used) {
230 u32 total = 0;
231
232 /* Determine the total data consumed */
233 total += mic_vringh_iov_consumed(riov);
234 total += mic_vringh_iov_consumed(wiov);
235 vringh_complete_kern(vrh, *head, total);
236 *head = USHRT_MAX;
237 if (vringh_need_notify_kern(vrh) > 0)
238 vringh_notify(vrh);
239 vringh_kiov_cleanup(riov);
240 vringh_kiov_cleanup(wiov);
241 /* Update avail idx for user space */
242 vr->info->avail_idx = vrh->last_avail_idx;
243 }
244 return ret;
245}
246
247static inline int mic_verify_copy_args(struct mic_vdev *mvdev,
248 struct mic_copy_desc *copy)
249{
250 if (copy->vr_idx >= mvdev->dd->num_vq) {
251 dev_err(mic_dev(mvdev), "%s %d err %d\n",
252 __func__, __LINE__, -EINVAL);
253 return -EINVAL;
254 }
255 return 0;
256}
257
258/* Copy a specified number of virtio descriptors in a chain */
259int mic_virtio_copy_desc(struct mic_vdev *mvdev,
260 struct mic_copy_desc *copy)
261{
262 int err;
263 struct mic_vringh *mvr = &mvdev->mvr[copy->vr_idx];
264
265 err = mic_verify_copy_args(mvdev, copy);
266 if (err)
267 return err;
268
269 mutex_lock(&mvr->vr_mutex);
270 if (!mic_vdevup(mvdev)) {
271 err = -ENODEV;
272 dev_err(mic_dev(mvdev), "%s %d err %d\n",
273 __func__, __LINE__, err);
274 goto err;
275 }
276 err = _mic_virtio_copy(mvdev, copy);
277 if (err) {
278 dev_err(mic_dev(mvdev), "%s %d err %d\n",
279 __func__, __LINE__, err);
280 }
281err:
282 mutex_unlock(&mvr->vr_mutex);
283 return err;
284}
285
286static void mic_virtio_init_post(struct mic_vdev *mvdev)
287{
288 struct mic_vqconfig *vqconfig = mic_vq_config(mvdev->dd);
289 int i;
290
291 for (i = 0; i < mvdev->dd->num_vq; i++) {
292 if (!le64_to_cpu(vqconfig[i].used_address)) {
293 dev_warn(mic_dev(mvdev), "used_address zero??\n");
294 continue;
295 }
296 mvdev->mvr[i].vrh.vring.used =
297 mvdev->mdev->aper.va +
298 le64_to_cpu(vqconfig[i].used_address);
299 }
300
301 mvdev->dc->used_address_updated = 0;
302
303 dev_dbg(mic_dev(mvdev), "%s: device type %d LINKUP\n",
304 __func__, mvdev->virtio_id);
305}
306
307static inline void mic_virtio_device_reset(struct mic_vdev *mvdev)
308{
309 int i;
310
311 dev_dbg(mic_dev(mvdev), "%s: status %d device type %d RESET\n",
312 __func__, mvdev->dd->status, mvdev->virtio_id);
313
314 for (i = 0; i < mvdev->dd->num_vq; i++)
315 /*
316 * Avoid lockdep false positive. The + 1 is for the mic
317 * mutex which is held in the reset devices code path.
318 */
319 mutex_lock_nested(&mvdev->mvr[i].vr_mutex, i + 1);
320
321 /* 0 status means "reset" */
322 mvdev->dd->status = 0;
323 mvdev->dc->vdev_reset = 0;
324 mvdev->dc->host_ack = 1;
325
326 for (i = 0; i < mvdev->dd->num_vq; i++) {
327 struct vringh *vrh = &mvdev->mvr[i].vrh;
328 mvdev->mvr[i].vring.info->avail_idx = 0;
329 vrh->completed = 0;
330 vrh->last_avail_idx = 0;
331 vrh->last_used_idx = 0;
332 }
333
334 for (i = 0; i < mvdev->dd->num_vq; i++)
335 mutex_unlock(&mvdev->mvr[i].vr_mutex);
336}
337
338void mic_virtio_reset_devices(struct mic_device *mdev)
339{
340 struct list_head *pos, *tmp;
341 struct mic_vdev *mvdev;
342
343 dev_dbg(mdev->sdev->parent, "%s\n", __func__);
344
345 list_for_each_safe(pos, tmp, &mdev->vdev_list) {
346 mvdev = list_entry(pos, struct mic_vdev, list);
347 mic_virtio_device_reset(mvdev);
348 mvdev->poll_wake = 1;
349 wake_up(&mvdev->waitq);
350 }
351}
352
353void mic_bh_handler(struct work_struct *work)
354{
355 struct mic_vdev *mvdev = container_of(work, struct mic_vdev,
356 virtio_bh_work);
357
358 if (mvdev->dc->used_address_updated)
359 mic_virtio_init_post(mvdev);
360
361 if (mvdev->dc->vdev_reset)
362 mic_virtio_device_reset(mvdev);
363
364 mvdev->poll_wake = 1;
365 wake_up(&mvdev->waitq);
366}
367
368static irqreturn_t mic_virtio_intr_handler(int irq, void *data)
369{
370
371 struct mic_vdev *mvdev = data;
372 struct mic_device *mdev = mvdev->mdev;
373
374 mdev->ops->ack_interrupt(mdev);
375 schedule_work(&mvdev->virtio_bh_work);
376 return IRQ_HANDLED;
377}
378
379int mic_virtio_config_change(struct mic_vdev *mvdev,
380 void __user *argp)
381{
382 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wake);
383 int ret = 0, retry = 100, i;
384 struct mic_bootparam *bootparam = mvdev->mdev->dp;
385 s8 db = bootparam->h2c_config_db;
386
387 mutex_lock(&mvdev->mdev->mic_mutex);
388 for (i = 0; i < mvdev->dd->num_vq; i++)
389 mutex_lock_nested(&mvdev->mvr[i].vr_mutex, i + 1);
390
391 if (db == -1 || mvdev->dd->type == -1) {
392 ret = -EIO;
393 goto exit;
394 }
395
396 if (copy_from_user(mic_vq_configspace(mvdev->dd),
397 argp, mvdev->dd->config_len)) {
398 dev_err(mic_dev(mvdev), "%s %d err %d\n",
399 __func__, __LINE__, -EFAULT);
400 ret = -EFAULT;
401 goto exit;
402 }
403 mvdev->dc->config_change = MIC_VIRTIO_PARAM_CONFIG_CHANGED;
404 mvdev->mdev->ops->send_intr(mvdev->mdev, db);
405
406 for (i = retry; i--;) {
407 ret = wait_event_timeout(wake,
408 mvdev->dc->guest_ack, msecs_to_jiffies(100));
409 if (ret)
410 break;
411 }
412
413 dev_dbg(mic_dev(mvdev),
414 "%s %d retry: %d\n", __func__, __LINE__, retry);
415 mvdev->dc->config_change = 0;
416 mvdev->dc->guest_ack = 0;
417exit:
418 for (i = 0; i < mvdev->dd->num_vq; i++)
419 mutex_unlock(&mvdev->mvr[i].vr_mutex);
420 mutex_unlock(&mvdev->mdev->mic_mutex);
421 return ret;
422}
423
424static int mic_copy_dp_entry(struct mic_vdev *mvdev,
425 void __user *argp,
426 __u8 *type,
427 struct mic_device_desc **devpage)
428{
429 struct mic_device *mdev = mvdev->mdev;
430 struct mic_device_desc dd, *dd_config, *devp;
431 struct mic_vqconfig *vqconfig;
432 int ret = 0, i;
433 bool slot_found = false;
434
435 if (copy_from_user(&dd, argp, sizeof(dd))) {
436 dev_err(mic_dev(mvdev), "%s %d err %d\n",
437 __func__, __LINE__, -EFAULT);
438 return -EFAULT;
439 }
440
441 if (mic_aligned_desc_size(&dd) > MIC_MAX_DESC_BLK_SIZE
442 || dd.num_vq > MIC_MAX_VRINGS) {
443 dev_err(mic_dev(mvdev), "%s %d err %d\n",
444 __func__, __LINE__, -EINVAL);
445 return -EINVAL;
446 }
447
448 dd_config = kmalloc(mic_desc_size(&dd), GFP_KERNEL);
449 if (dd_config == NULL) {
450 dev_err(mic_dev(mvdev), "%s %d err %d\n",
451 __func__, __LINE__, -ENOMEM);
452 return -ENOMEM;
453 }
454 if (copy_from_user(dd_config, argp, mic_desc_size(&dd))) {
455 ret = -EFAULT;
456 dev_err(mic_dev(mvdev), "%s %d err %d\n",
457 __func__, __LINE__, ret);
458 goto exit;
459 }
460
461 vqconfig = mic_vq_config(dd_config);
462 for (i = 0; i < dd.num_vq; i++) {
463 if (le16_to_cpu(vqconfig[i].num) > MIC_MAX_VRING_ENTRIES) {
464 ret = -EINVAL;
465 dev_err(mic_dev(mvdev), "%s %d err %d\n",
466 __func__, __LINE__, ret);
467 goto exit;
468 }
469 }
470
471 /* Find the first free device page entry */
472 for (i = mic_aligned_size(struct mic_bootparam);
473 i < MIC_DP_SIZE - mic_total_desc_size(dd_config);
474 i += mic_total_desc_size(devp)) {
475 devp = mdev->dp + i;
476 if (devp->type == 0 || devp->type == -1) {
477 slot_found = true;
478 break;
479 }
480 }
481 if (!slot_found) {
482 ret = -EINVAL;
483 dev_err(mic_dev(mvdev), "%s %d err %d\n",
484 __func__, __LINE__, ret);
485 goto exit;
486 }
487 /*
488 * Save off the type before doing the memcpy. Type will be set in the
489 * end after completing all initialization for the new device.
490 */
491 *type = dd_config->type;
492 dd_config->type = 0;
493 memcpy(devp, dd_config, mic_desc_size(dd_config));
494
495 *devpage = devp;
496exit:
497 kfree(dd_config);
498 return ret;
499}
500
501static void mic_init_device_ctrl(struct mic_vdev *mvdev,
502 struct mic_device_desc *devpage)
503{
504 struct mic_device_ctrl *dc;
505
506 dc = mvdev->dc = (void *)devpage + mic_aligned_desc_size(devpage);
507
508 dc->config_change = 0;
509 dc->guest_ack = 0;
510 dc->vdev_reset = 0;
511 dc->host_ack = 0;
512 dc->used_address_updated = 0;
513 dc->c2h_vdev_db = -1;
514 dc->h2c_vdev_db = -1;
515}
516
517int mic_virtio_add_device(struct mic_vdev *mvdev,
518 void __user *argp)
519{
520 struct mic_device *mdev = mvdev->mdev;
521 struct mic_device_desc *dd;
522 struct mic_vqconfig *vqconfig;
523 int vr_size, i, j, ret;
524 u8 type;
525 s8 db;
526 char irqname[10];
527 struct mic_bootparam *bootparam = mdev->dp;
528 u16 num;
529
530 mutex_lock(&mdev->mic_mutex);
531
532 ret = mic_copy_dp_entry(mvdev, argp, &type, &dd);
533 if (ret) {
534 mutex_unlock(&mdev->mic_mutex);
535 return ret;
536 }
537
538 mic_init_device_ctrl(mvdev, dd);
539
540 mvdev->dd = dd;
541 mvdev->virtio_id = type;
542 vqconfig = mic_vq_config(dd);
543 INIT_WORK(&mvdev->virtio_bh_work, mic_bh_handler);
544
545 for (i = 0; i < dd->num_vq; i++) {
546 struct mic_vringh *mvr = &mvdev->mvr[i];
547 struct mic_vring *vr = &mvdev->mvr[i].vring;
548 num = le16_to_cpu(vqconfig[i].num);
549 mutex_init(&mvr->vr_mutex);
550 vr_size = PAGE_ALIGN(vring_size(num, MIC_VIRTIO_RING_ALIGN) +
551 sizeof(struct _mic_vring_info));
552 vr->va = (void *)
553 __get_free_pages(GFP_KERNEL | __GFP_ZERO,
554 get_order(vr_size));
555 if (!vr->va) {
556 ret = -ENOMEM;
557 dev_err(mic_dev(mvdev), "%s %d err %d\n",
558 __func__, __LINE__, ret);
559 goto err;
560 }
561 vr->len = vr_size;
562 vr->info = vr->va + vring_size(num, MIC_VIRTIO_RING_ALIGN);
563 vr->info->magic = MIC_MAGIC + mvdev->virtio_id + i;
564 vqconfig[i].address = mic_map_single(mdev,
565 vr->va, vr_size);
566 if (mic_map_error(vqconfig[i].address)) {
567 free_pages((unsigned long)vr->va,
568 get_order(vr_size));
569 ret = -ENOMEM;
570 dev_err(mic_dev(mvdev), "%s %d err %d\n",
571 __func__, __LINE__, ret);
572 goto err;
573 }
574 vqconfig[i].address = cpu_to_le64(vqconfig[i].address);
575
576 vring_init(&vr->vr, num,
577 vr->va, MIC_VIRTIO_RING_ALIGN);
578 ret = vringh_init_kern(&mvr->vrh,
579 *(u32 *)mic_vq_features(mvdev->dd), num, false,
580 vr->vr.desc, vr->vr.avail, vr->vr.used);
581 if (ret) {
582 dev_err(mic_dev(mvdev), "%s %d err %d\n",
583 __func__, __LINE__, ret);
584 goto err;
585 }
586 vringh_kiov_init(&mvr->riov, NULL, 0);
587 vringh_kiov_init(&mvr->wiov, NULL, 0);
588 mvr->head = USHRT_MAX;
589 mvr->mvdev = mvdev;
590 mvr->vrh.notify = mic_notify;
591 dev_dbg(mdev->sdev->parent,
592 "%s %d index %d va %p info %p vr_size 0x%x\n",
593 __func__, __LINE__, i, vr->va, vr->info, vr_size);
594 }
595
596 snprintf(irqname, sizeof(irqname),
597 "mic%dvirtio%d", mdev->id, mvdev->virtio_id);
598 mvdev->virtio_db = mic_next_db(mdev);
599 mvdev->virtio_cookie = mic_request_irq(mdev, mic_virtio_intr_handler,
600 irqname, mvdev, mvdev->virtio_db, MIC_INTR_DB);
601 if (IS_ERR(mvdev->virtio_cookie)) {
602 ret = PTR_ERR(mvdev->virtio_cookie);
603 dev_dbg(mdev->sdev->parent, "request irq failed\n");
604 goto err;
605 }
606
607 mvdev->dc->c2h_vdev_db = mvdev->virtio_db;
608
609 list_add_tail(&mvdev->list, &mdev->vdev_list);
610 /*
611 * Order the type update with previous stores. This write barrier
612 * is paired with the corresponding read barrier before the uncached
613 * system memory read of the type, on the card while scanning the
614 * device page.
615 */
616 smp_wmb();
617 dd->type = type;
618
619 dev_dbg(mdev->sdev->parent, "Added virtio device id %d\n", dd->type);
620
621 db = bootparam->h2c_config_db;
622 if (db != -1)
623 mdev->ops->send_intr(mdev, db);
624 mutex_unlock(&mdev->mic_mutex);
625 return 0;
626err:
627 vqconfig = mic_vq_config(dd);
628 for (j = 0; j < i; j++) {
629 struct mic_vringh *mvr = &mvdev->mvr[j];
630 mic_unmap_single(mdev, le64_to_cpu(vqconfig[j].address),
631 mvr->vring.len);
632 free_pages((unsigned long)mvr->vring.va,
633 get_order(mvr->vring.len));
634 }
635 mutex_unlock(&mdev->mic_mutex);
636 return ret;
637}
638
639void mic_virtio_del_device(struct mic_vdev *mvdev)
640{
641 struct list_head *pos, *tmp;
642 struct mic_vdev *tmp_mvdev;
643 struct mic_device *mdev = mvdev->mdev;
644 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wake);
645 int i, ret, retry = 100;
646 struct mic_vqconfig *vqconfig;
647 struct mic_bootparam *bootparam = mdev->dp;
648 s8 db;
649
650 mutex_lock(&mdev->mic_mutex);
651 db = bootparam->h2c_config_db;
652 if (db == -1)
653 goto skip_hot_remove;
654 dev_dbg(mdev->sdev->parent,
655 "Requesting hot remove id %d\n", mvdev->virtio_id);
656 mvdev->dc->config_change = MIC_VIRTIO_PARAM_DEV_REMOVE;
657 mdev->ops->send_intr(mdev, db);
658 for (i = retry; i--;) {
659 ret = wait_event_timeout(wake,
660 mvdev->dc->guest_ack, msecs_to_jiffies(100));
661 if (ret)
662 break;
663 }
664 dev_dbg(mdev->sdev->parent,
665 "Device id %d config_change %d guest_ack %d\n",
666 mvdev->virtio_id, mvdev->dc->config_change,
667 mvdev->dc->guest_ack);
668 mvdev->dc->config_change = 0;
669 mvdev->dc->guest_ack = 0;
670skip_hot_remove:
671 mic_free_irq(mdev, mvdev->virtio_cookie, mvdev);
672 flush_work(&mvdev->virtio_bh_work);
673 vqconfig = mic_vq_config(mvdev->dd);
674 for (i = 0; i < mvdev->dd->num_vq; i++) {
675 struct mic_vringh *mvr = &mvdev->mvr[i];
676 vringh_kiov_cleanup(&mvr->riov);
677 vringh_kiov_cleanup(&mvr->wiov);
678 mic_unmap_single(mdev, le64_to_cpu(vqconfig[i].address),
679 mvr->vring.len);
680 free_pages((unsigned long)mvr->vring.va,
681 get_order(mvr->vring.len));
682 }
683
684 list_for_each_safe(pos, tmp, &mdev->vdev_list) {
685 tmp_mvdev = list_entry(pos, struct mic_vdev, list);
686 if (tmp_mvdev == mvdev) {
687 list_del(pos);
688 dev_dbg(mdev->sdev->parent,
689 "Removing virtio device id %d\n",
690 mvdev->virtio_id);
691 break;
692 }
693 }
694 /*
695 * Order the type update with previous stores. This write barrier
696 * is paired with the corresponding read barrier before the uncached
697 * system memory read of the type, on the card while scanning the
698 * device page.
699 */
700 smp_wmb();
701 mvdev->dd->type = -1;
702 mutex_unlock(&mdev->mic_mutex);
703}
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