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Merge tag 'kvmarm-5.9' of git://git.kernel.org/pub/scm/linux/kernel/git/kvmarm/kvmarm...
[linux.git] / drivers / gpu / drm / xen / xen_drm_front.c
1 // SPDX-License-Identifier: GPL-2.0 OR MIT
2
3 /*
4  *  Xen para-virtual DRM device
5  *
6  * Copyright (C) 2016-2018 EPAM Systems Inc.
7  *
8  * Author: Oleksandr Andrushchenko <[email protected]>
9  */
10
11 #include <linux/delay.h>
12 #include <linux/dma-mapping.h>
13 #include <linux/module.h>
14 #include <linux/of_device.h>
15
16 #include <drm/drm_atomic_helper.h>
17 #include <drm/drm_drv.h>
18 #include <drm/drm_ioctl.h>
19 #include <drm/drm_probe_helper.h>
20 #include <drm/drm_file.h>
21 #include <drm/drm_gem.h>
22
23 #include <xen/platform_pci.h>
24 #include <xen/xen.h>
25 #include <xen/xenbus.h>
26
27 #include <xen/xen-front-pgdir-shbuf.h>
28 #include <xen/interface/io/displif.h>
29
30 #include "xen_drm_front.h"
31 #include "xen_drm_front_cfg.h"
32 #include "xen_drm_front_evtchnl.h"
33 #include "xen_drm_front_gem.h"
34 #include "xen_drm_front_kms.h"
35
36 struct xen_drm_front_dbuf {
37         struct list_head list;
38         u64 dbuf_cookie;
39         u64 fb_cookie;
40
41         struct xen_front_pgdir_shbuf shbuf;
42 };
43
44 static void dbuf_add_to_list(struct xen_drm_front_info *front_info,
45                              struct xen_drm_front_dbuf *dbuf, u64 dbuf_cookie)
46 {
47         dbuf->dbuf_cookie = dbuf_cookie;
48         list_add(&dbuf->list, &front_info->dbuf_list);
49 }
50
51 static struct xen_drm_front_dbuf *dbuf_get(struct list_head *dbuf_list,
52                                            u64 dbuf_cookie)
53 {
54         struct xen_drm_front_dbuf *buf, *q;
55
56         list_for_each_entry_safe(buf, q, dbuf_list, list)
57                 if (buf->dbuf_cookie == dbuf_cookie)
58                         return buf;
59
60         return NULL;
61 }
62
63 static void dbuf_free(struct list_head *dbuf_list, u64 dbuf_cookie)
64 {
65         struct xen_drm_front_dbuf *buf, *q;
66
67         list_for_each_entry_safe(buf, q, dbuf_list, list)
68                 if (buf->dbuf_cookie == dbuf_cookie) {
69                         list_del(&buf->list);
70                         xen_front_pgdir_shbuf_unmap(&buf->shbuf);
71                         xen_front_pgdir_shbuf_free(&buf->shbuf);
72                         kfree(buf);
73                         break;
74                 }
75 }
76
77 static void dbuf_free_all(struct list_head *dbuf_list)
78 {
79         struct xen_drm_front_dbuf *buf, *q;
80
81         list_for_each_entry_safe(buf, q, dbuf_list, list) {
82                 list_del(&buf->list);
83                 xen_front_pgdir_shbuf_unmap(&buf->shbuf);
84                 xen_front_pgdir_shbuf_free(&buf->shbuf);
85                 kfree(buf);
86         }
87 }
88
89 static struct xendispl_req *
90 be_prepare_req(struct xen_drm_front_evtchnl *evtchnl, u8 operation)
91 {
92         struct xendispl_req *req;
93
94         req = RING_GET_REQUEST(&evtchnl->u.req.ring,
95                                evtchnl->u.req.ring.req_prod_pvt);
96         req->operation = operation;
97         req->id = evtchnl->evt_next_id++;
98         evtchnl->evt_id = req->id;
99         return req;
100 }
101
102 static int be_stream_do_io(struct xen_drm_front_evtchnl *evtchnl,
103                            struct xendispl_req *req)
104 {
105         reinit_completion(&evtchnl->u.req.completion);
106         if (unlikely(evtchnl->state != EVTCHNL_STATE_CONNECTED))
107                 return -EIO;
108
109         xen_drm_front_evtchnl_flush(evtchnl);
110         return 0;
111 }
112
113 static int be_stream_wait_io(struct xen_drm_front_evtchnl *evtchnl)
114 {
115         if (wait_for_completion_timeout(&evtchnl->u.req.completion,
116                         msecs_to_jiffies(XEN_DRM_FRONT_WAIT_BACK_MS)) <= 0)
117                 return -ETIMEDOUT;
118
119         return evtchnl->u.req.resp_status;
120 }
121
122 int xen_drm_front_mode_set(struct xen_drm_front_drm_pipeline *pipeline,
123                            u32 x, u32 y, u32 width, u32 height,
124                            u32 bpp, u64 fb_cookie)
125 {
126         struct xen_drm_front_evtchnl *evtchnl;
127         struct xen_drm_front_info *front_info;
128         struct xendispl_req *req;
129         unsigned long flags;
130         int ret;
131
132         front_info = pipeline->drm_info->front_info;
133         evtchnl = &front_info->evt_pairs[pipeline->index].req;
134         if (unlikely(!evtchnl))
135                 return -EIO;
136
137         mutex_lock(&evtchnl->u.req.req_io_lock);
138
139         spin_lock_irqsave(&front_info->io_lock, flags);
140         req = be_prepare_req(evtchnl, XENDISPL_OP_SET_CONFIG);
141         req->op.set_config.x = x;
142         req->op.set_config.y = y;
143         req->op.set_config.width = width;
144         req->op.set_config.height = height;
145         req->op.set_config.bpp = bpp;
146         req->op.set_config.fb_cookie = fb_cookie;
147
148         ret = be_stream_do_io(evtchnl, req);
149         spin_unlock_irqrestore(&front_info->io_lock, flags);
150
151         if (ret == 0)
152                 ret = be_stream_wait_io(evtchnl);
153
154         mutex_unlock(&evtchnl->u.req.req_io_lock);
155         return ret;
156 }
157
158 int xen_drm_front_dbuf_create(struct xen_drm_front_info *front_info,
159                               u64 dbuf_cookie, u32 width, u32 height,
160                               u32 bpp, u64 size, struct page **pages)
161 {
162         struct xen_drm_front_evtchnl *evtchnl;
163         struct xen_drm_front_dbuf *dbuf;
164         struct xendispl_req *req;
165         struct xen_front_pgdir_shbuf_cfg buf_cfg;
166         unsigned long flags;
167         int ret;
168
169         evtchnl = &front_info->evt_pairs[GENERIC_OP_EVT_CHNL].req;
170         if (unlikely(!evtchnl))
171                 return -EIO;
172
173         dbuf = kzalloc(sizeof(*dbuf), GFP_KERNEL);
174         if (!dbuf)
175                 return -ENOMEM;
176
177         dbuf_add_to_list(front_info, dbuf, dbuf_cookie);
178
179         memset(&buf_cfg, 0, sizeof(buf_cfg));
180         buf_cfg.xb_dev = front_info->xb_dev;
181         buf_cfg.num_pages = DIV_ROUND_UP(size, PAGE_SIZE);
182         buf_cfg.pages = pages;
183         buf_cfg.pgdir = &dbuf->shbuf;
184         buf_cfg.be_alloc = front_info->cfg.be_alloc;
185
186         ret = xen_front_pgdir_shbuf_alloc(&buf_cfg);
187         if (ret < 0)
188                 goto fail_shbuf_alloc;
189
190         mutex_lock(&evtchnl->u.req.req_io_lock);
191
192         spin_lock_irqsave(&front_info->io_lock, flags);
193         req = be_prepare_req(evtchnl, XENDISPL_OP_DBUF_CREATE);
194         req->op.dbuf_create.gref_directory =
195                         xen_front_pgdir_shbuf_get_dir_start(&dbuf->shbuf);
196         req->op.dbuf_create.buffer_sz = size;
197         req->op.dbuf_create.dbuf_cookie = dbuf_cookie;
198         req->op.dbuf_create.width = width;
199         req->op.dbuf_create.height = height;
200         req->op.dbuf_create.bpp = bpp;
201         if (buf_cfg.be_alloc)
202                 req->op.dbuf_create.flags |= XENDISPL_DBUF_FLG_REQ_ALLOC;
203
204         ret = be_stream_do_io(evtchnl, req);
205         spin_unlock_irqrestore(&front_info->io_lock, flags);
206
207         if (ret < 0)
208                 goto fail;
209
210         ret = be_stream_wait_io(evtchnl);
211         if (ret < 0)
212                 goto fail;
213
214         ret = xen_front_pgdir_shbuf_map(&dbuf->shbuf);
215         if (ret < 0)
216                 goto fail;
217
218         mutex_unlock(&evtchnl->u.req.req_io_lock);
219         return 0;
220
221 fail:
222         mutex_unlock(&evtchnl->u.req.req_io_lock);
223 fail_shbuf_alloc:
224         dbuf_free(&front_info->dbuf_list, dbuf_cookie);
225         return ret;
226 }
227
228 static int xen_drm_front_dbuf_destroy(struct xen_drm_front_info *front_info,
229                                       u64 dbuf_cookie)
230 {
231         struct xen_drm_front_evtchnl *evtchnl;
232         struct xendispl_req *req;
233         unsigned long flags;
234         bool be_alloc;
235         int ret;
236
237         evtchnl = &front_info->evt_pairs[GENERIC_OP_EVT_CHNL].req;
238         if (unlikely(!evtchnl))
239                 return -EIO;
240
241         be_alloc = front_info->cfg.be_alloc;
242
243         /*
244          * For the backend allocated buffer release references now, so backend
245          * can free the buffer.
246          */
247         if (be_alloc)
248                 dbuf_free(&front_info->dbuf_list, dbuf_cookie);
249
250         mutex_lock(&evtchnl->u.req.req_io_lock);
251
252         spin_lock_irqsave(&front_info->io_lock, flags);
253         req = be_prepare_req(evtchnl, XENDISPL_OP_DBUF_DESTROY);
254         req->op.dbuf_destroy.dbuf_cookie = dbuf_cookie;
255
256         ret = be_stream_do_io(evtchnl, req);
257         spin_unlock_irqrestore(&front_info->io_lock, flags);
258
259         if (ret == 0)
260                 ret = be_stream_wait_io(evtchnl);
261
262         /*
263          * Do this regardless of communication status with the backend:
264          * if we cannot remove remote resources remove what we can locally.
265          */
266         if (!be_alloc)
267                 dbuf_free(&front_info->dbuf_list, dbuf_cookie);
268
269         mutex_unlock(&evtchnl->u.req.req_io_lock);
270         return ret;
271 }
272
273 int xen_drm_front_fb_attach(struct xen_drm_front_info *front_info,
274                             u64 dbuf_cookie, u64 fb_cookie, u32 width,
275                             u32 height, u32 pixel_format)
276 {
277         struct xen_drm_front_evtchnl *evtchnl;
278         struct xen_drm_front_dbuf *buf;
279         struct xendispl_req *req;
280         unsigned long flags;
281         int ret;
282
283         evtchnl = &front_info->evt_pairs[GENERIC_OP_EVT_CHNL].req;
284         if (unlikely(!evtchnl))
285                 return -EIO;
286
287         buf = dbuf_get(&front_info->dbuf_list, dbuf_cookie);
288         if (!buf)
289                 return -EINVAL;
290
291         buf->fb_cookie = fb_cookie;
292
293         mutex_lock(&evtchnl->u.req.req_io_lock);
294
295         spin_lock_irqsave(&front_info->io_lock, flags);
296         req = be_prepare_req(evtchnl, XENDISPL_OP_FB_ATTACH);
297         req->op.fb_attach.dbuf_cookie = dbuf_cookie;
298         req->op.fb_attach.fb_cookie = fb_cookie;
299         req->op.fb_attach.width = width;
300         req->op.fb_attach.height = height;
301         req->op.fb_attach.pixel_format = pixel_format;
302
303         ret = be_stream_do_io(evtchnl, req);
304         spin_unlock_irqrestore(&front_info->io_lock, flags);
305
306         if (ret == 0)
307                 ret = be_stream_wait_io(evtchnl);
308
309         mutex_unlock(&evtchnl->u.req.req_io_lock);
310         return ret;
311 }
312
313 int xen_drm_front_fb_detach(struct xen_drm_front_info *front_info,
314                             u64 fb_cookie)
315 {
316         struct xen_drm_front_evtchnl *evtchnl;
317         struct xendispl_req *req;
318         unsigned long flags;
319         int ret;
320
321         evtchnl = &front_info->evt_pairs[GENERIC_OP_EVT_CHNL].req;
322         if (unlikely(!evtchnl))
323                 return -EIO;
324
325         mutex_lock(&evtchnl->u.req.req_io_lock);
326
327         spin_lock_irqsave(&front_info->io_lock, flags);
328         req = be_prepare_req(evtchnl, XENDISPL_OP_FB_DETACH);
329         req->op.fb_detach.fb_cookie = fb_cookie;
330
331         ret = be_stream_do_io(evtchnl, req);
332         spin_unlock_irqrestore(&front_info->io_lock, flags);
333
334         if (ret == 0)
335                 ret = be_stream_wait_io(evtchnl);
336
337         mutex_unlock(&evtchnl->u.req.req_io_lock);
338         return ret;
339 }
340
341 int xen_drm_front_page_flip(struct xen_drm_front_info *front_info,
342                             int conn_idx, u64 fb_cookie)
343 {
344         struct xen_drm_front_evtchnl *evtchnl;
345         struct xendispl_req *req;
346         unsigned long flags;
347         int ret;
348
349         if (unlikely(conn_idx >= front_info->num_evt_pairs))
350                 return -EINVAL;
351
352         evtchnl = &front_info->evt_pairs[conn_idx].req;
353
354         mutex_lock(&evtchnl->u.req.req_io_lock);
355
356         spin_lock_irqsave(&front_info->io_lock, flags);
357         req = be_prepare_req(evtchnl, XENDISPL_OP_PG_FLIP);
358         req->op.pg_flip.fb_cookie = fb_cookie;
359
360         ret = be_stream_do_io(evtchnl, req);
361         spin_unlock_irqrestore(&front_info->io_lock, flags);
362
363         if (ret == 0)
364                 ret = be_stream_wait_io(evtchnl);
365
366         mutex_unlock(&evtchnl->u.req.req_io_lock);
367         return ret;
368 }
369
370 void xen_drm_front_on_frame_done(struct xen_drm_front_info *front_info,
371                                  int conn_idx, u64 fb_cookie)
372 {
373         struct xen_drm_front_drm_info *drm_info = front_info->drm_info;
374
375         if (unlikely(conn_idx >= front_info->cfg.num_connectors))
376                 return;
377
378         xen_drm_front_kms_on_frame_done(&drm_info->pipeline[conn_idx],
379                                         fb_cookie);
380 }
381
382 static int xen_drm_drv_dumb_create(struct drm_file *filp,
383                                    struct drm_device *dev,
384                                    struct drm_mode_create_dumb *args)
385 {
386         struct xen_drm_front_drm_info *drm_info = dev->dev_private;
387         struct drm_gem_object *obj;
388         int ret;
389
390         /*
391          * Dumb creation is a two stage process: first we create a fully
392          * constructed GEM object which is communicated to the backend, and
393          * only after that we can create GEM's handle. This is done so,
394          * because of the possible races: once you create a handle it becomes
395          * immediately visible to user-space, so the latter can try accessing
396          * object without pages etc.
397          * For details also see drm_gem_handle_create
398          */
399         args->pitch = DIV_ROUND_UP(args->width * args->bpp, 8);
400         args->size = args->pitch * args->height;
401
402         obj = xen_drm_front_gem_create(dev, args->size);
403         if (IS_ERR_OR_NULL(obj)) {
404                 ret = PTR_ERR_OR_ZERO(obj);
405                 goto fail;
406         }
407
408         ret = xen_drm_front_dbuf_create(drm_info->front_info,
409                                         xen_drm_front_dbuf_to_cookie(obj),
410                                         args->width, args->height, args->bpp,
411                                         args->size,
412                                         xen_drm_front_gem_get_pages(obj));
413         if (ret)
414                 goto fail_backend;
415
416         /* This is the tail of GEM object creation */
417         ret = drm_gem_handle_create(filp, obj, &args->handle);
418         if (ret)
419                 goto fail_handle;
420
421         /* Drop reference from allocate - handle holds it now */
422         drm_gem_object_put(obj);
423         return 0;
424
425 fail_handle:
426         xen_drm_front_dbuf_destroy(drm_info->front_info,
427                                    xen_drm_front_dbuf_to_cookie(obj));
428 fail_backend:
429         /* drop reference from allocate */
430         drm_gem_object_put(obj);
431 fail:
432         DRM_ERROR("Failed to create dumb buffer: %d\n", ret);
433         return ret;
434 }
435
436 static void xen_drm_drv_free_object_unlocked(struct drm_gem_object *obj)
437 {
438         struct xen_drm_front_drm_info *drm_info = obj->dev->dev_private;
439         int idx;
440
441         if (drm_dev_enter(obj->dev, &idx)) {
442                 xen_drm_front_dbuf_destroy(drm_info->front_info,
443                                            xen_drm_front_dbuf_to_cookie(obj));
444                 drm_dev_exit(idx);
445         } else {
446                 dbuf_free(&drm_info->front_info->dbuf_list,
447                           xen_drm_front_dbuf_to_cookie(obj));
448         }
449
450         xen_drm_front_gem_free_object_unlocked(obj);
451 }
452
453 static void xen_drm_drv_release(struct drm_device *dev)
454 {
455         struct xen_drm_front_drm_info *drm_info = dev->dev_private;
456         struct xen_drm_front_info *front_info = drm_info->front_info;
457
458         xen_drm_front_kms_fini(drm_info);
459
460         drm_atomic_helper_shutdown(dev);
461         drm_mode_config_cleanup(dev);
462
463         if (front_info->cfg.be_alloc)
464                 xenbus_switch_state(front_info->xb_dev,
465                                     XenbusStateInitialising);
466
467         kfree(drm_info);
468 }
469
470 static const struct file_operations xen_drm_dev_fops = {
471         .owner          = THIS_MODULE,
472         .open           = drm_open,
473         .release        = drm_release,
474         .unlocked_ioctl = drm_ioctl,
475 #ifdef CONFIG_COMPAT
476         .compat_ioctl   = drm_compat_ioctl,
477 #endif
478         .poll           = drm_poll,
479         .read           = drm_read,
480         .llseek         = no_llseek,
481         .mmap           = xen_drm_front_gem_mmap,
482 };
483
484 static const struct vm_operations_struct xen_drm_drv_vm_ops = {
485         .open           = drm_gem_vm_open,
486         .close          = drm_gem_vm_close,
487 };
488
489 static struct drm_driver xen_drm_driver = {
490         .driver_features           = DRIVER_GEM | DRIVER_MODESET | DRIVER_ATOMIC,
491         .release                   = xen_drm_drv_release,
492         .gem_vm_ops                = &xen_drm_drv_vm_ops,
493         .gem_free_object_unlocked  = xen_drm_drv_free_object_unlocked,
494         .prime_handle_to_fd        = drm_gem_prime_handle_to_fd,
495         .prime_fd_to_handle        = drm_gem_prime_fd_to_handle,
496         .gem_prime_import_sg_table = xen_drm_front_gem_import_sg_table,
497         .gem_prime_get_sg_table    = xen_drm_front_gem_get_sg_table,
498         .gem_prime_vmap            = xen_drm_front_gem_prime_vmap,
499         .gem_prime_vunmap          = xen_drm_front_gem_prime_vunmap,
500         .gem_prime_mmap            = xen_drm_front_gem_prime_mmap,
501         .dumb_create               = xen_drm_drv_dumb_create,
502         .fops                      = &xen_drm_dev_fops,
503         .name                      = "xendrm-du",
504         .desc                      = "Xen PV DRM Display Unit",
505         .date                      = "20180221",
506         .major                     = 1,
507         .minor                     = 0,
508
509 };
510
511 static int xen_drm_drv_init(struct xen_drm_front_info *front_info)
512 {
513         struct device *dev = &front_info->xb_dev->dev;
514         struct xen_drm_front_drm_info *drm_info;
515         struct drm_device *drm_dev;
516         int ret;
517
518         DRM_INFO("Creating %s\n", xen_drm_driver.desc);
519
520         drm_info = kzalloc(sizeof(*drm_info), GFP_KERNEL);
521         if (!drm_info) {
522                 ret = -ENOMEM;
523                 goto fail;
524         }
525
526         drm_info->front_info = front_info;
527         front_info->drm_info = drm_info;
528
529         drm_dev = drm_dev_alloc(&xen_drm_driver, dev);
530         if (IS_ERR(drm_dev)) {
531                 ret = PTR_ERR(drm_dev);
532                 goto fail;
533         }
534
535         drm_info->drm_dev = drm_dev;
536
537         drm_dev->dev_private = drm_info;
538
539         ret = xen_drm_front_kms_init(drm_info);
540         if (ret) {
541                 DRM_ERROR("Failed to initialize DRM/KMS, ret %d\n", ret);
542                 goto fail_modeset;
543         }
544
545         ret = drm_dev_register(drm_dev, 0);
546         if (ret)
547                 goto fail_register;
548
549         DRM_INFO("Initialized %s %d.%d.%d %s on minor %d\n",
550                  xen_drm_driver.name, xen_drm_driver.major,
551                  xen_drm_driver.minor, xen_drm_driver.patchlevel,
552                  xen_drm_driver.date, drm_dev->primary->index);
553
554         return 0;
555
556 fail_register:
557         drm_dev_unregister(drm_dev);
558 fail_modeset:
559         drm_kms_helper_poll_fini(drm_dev);
560         drm_mode_config_cleanup(drm_dev);
561         drm_dev_put(drm_dev);
562 fail:
563         kfree(drm_info);
564         return ret;
565 }
566
567 static void xen_drm_drv_fini(struct xen_drm_front_info *front_info)
568 {
569         struct xen_drm_front_drm_info *drm_info = front_info->drm_info;
570         struct drm_device *dev;
571
572         if (!drm_info)
573                 return;
574
575         dev = drm_info->drm_dev;
576         if (!dev)
577                 return;
578
579         /* Nothing to do if device is already unplugged */
580         if (drm_dev_is_unplugged(dev))
581                 return;
582
583         drm_kms_helper_poll_fini(dev);
584         drm_dev_unplug(dev);
585         drm_dev_put(dev);
586
587         front_info->drm_info = NULL;
588
589         xen_drm_front_evtchnl_free_all(front_info);
590         dbuf_free_all(&front_info->dbuf_list);
591
592         /*
593          * If we are not using backend allocated buffers, then tell the
594          * backend we are ready to (re)initialize. Otherwise, wait for
595          * drm_driver.release.
596          */
597         if (!front_info->cfg.be_alloc)
598                 xenbus_switch_state(front_info->xb_dev,
599                                     XenbusStateInitialising);
600 }
601
602 static int displback_initwait(struct xen_drm_front_info *front_info)
603 {
604         struct xen_drm_front_cfg *cfg = &front_info->cfg;
605         int ret;
606
607         cfg->front_info = front_info;
608         ret = xen_drm_front_cfg_card(front_info, cfg);
609         if (ret < 0)
610                 return ret;
611
612         DRM_INFO("Have %d connector(s)\n", cfg->num_connectors);
613         /* Create event channels for all connectors and publish */
614         ret = xen_drm_front_evtchnl_create_all(front_info);
615         if (ret < 0)
616                 return ret;
617
618         return xen_drm_front_evtchnl_publish_all(front_info);
619 }
620
621 static int displback_connect(struct xen_drm_front_info *front_info)
622 {
623         xen_drm_front_evtchnl_set_state(front_info, EVTCHNL_STATE_CONNECTED);
624         return xen_drm_drv_init(front_info);
625 }
626
627 static void displback_disconnect(struct xen_drm_front_info *front_info)
628 {
629         if (!front_info->drm_info)
630                 return;
631
632         /* Tell the backend to wait until we release the DRM driver. */
633         xenbus_switch_state(front_info->xb_dev, XenbusStateReconfiguring);
634
635         xen_drm_drv_fini(front_info);
636 }
637
638 static void displback_changed(struct xenbus_device *xb_dev,
639                               enum xenbus_state backend_state)
640 {
641         struct xen_drm_front_info *front_info = dev_get_drvdata(&xb_dev->dev);
642         int ret;
643
644         DRM_DEBUG("Backend state is %s, front is %s\n",
645                   xenbus_strstate(backend_state),
646                   xenbus_strstate(xb_dev->state));
647
648         switch (backend_state) {
649         case XenbusStateReconfiguring:
650                 /* fall through */
651         case XenbusStateReconfigured:
652                 /* fall through */
653         case XenbusStateInitialised:
654                 break;
655
656         case XenbusStateInitialising:
657                 if (xb_dev->state == XenbusStateReconfiguring)
658                         break;
659
660                 /* recovering after backend unexpected closure */
661                 displback_disconnect(front_info);
662                 break;
663
664         case XenbusStateInitWait:
665                 if (xb_dev->state == XenbusStateReconfiguring)
666                         break;
667
668                 /* recovering after backend unexpected closure */
669                 displback_disconnect(front_info);
670                 if (xb_dev->state != XenbusStateInitialising)
671                         break;
672
673                 ret = displback_initwait(front_info);
674                 if (ret < 0)
675                         xenbus_dev_fatal(xb_dev, ret, "initializing frontend");
676                 else
677                         xenbus_switch_state(xb_dev, XenbusStateInitialised);
678                 break;
679
680         case XenbusStateConnected:
681                 if (xb_dev->state != XenbusStateInitialised)
682                         break;
683
684                 ret = displback_connect(front_info);
685                 if (ret < 0) {
686                         displback_disconnect(front_info);
687                         xenbus_dev_fatal(xb_dev, ret, "connecting backend");
688                 } else {
689                         xenbus_switch_state(xb_dev, XenbusStateConnected);
690                 }
691                 break;
692
693         case XenbusStateClosing:
694                 /*
695                  * in this state backend starts freeing resources,
696                  * so let it go into closed state, so we can also
697                  * remove ours
698                  */
699                 break;
700
701         case XenbusStateUnknown:
702                 /* fall through */
703         case XenbusStateClosed:
704                 if (xb_dev->state == XenbusStateClosed)
705                         break;
706
707                 displback_disconnect(front_info);
708                 break;
709         }
710 }
711
712 static int xen_drv_probe(struct xenbus_device *xb_dev,
713                          const struct xenbus_device_id *id)
714 {
715         struct xen_drm_front_info *front_info;
716         struct device *dev = &xb_dev->dev;
717         int ret;
718
719         ret = dma_coerce_mask_and_coherent(dev, DMA_BIT_MASK(64));
720         if (ret < 0) {
721                 DRM_ERROR("Cannot setup DMA mask, ret %d", ret);
722                 return ret;
723         }
724
725         front_info = devm_kzalloc(&xb_dev->dev,
726                                   sizeof(*front_info), GFP_KERNEL);
727         if (!front_info)
728                 return -ENOMEM;
729
730         front_info->xb_dev = xb_dev;
731         spin_lock_init(&front_info->io_lock);
732         INIT_LIST_HEAD(&front_info->dbuf_list);
733         dev_set_drvdata(&xb_dev->dev, front_info);
734
735         return xenbus_switch_state(xb_dev, XenbusStateInitialising);
736 }
737
738 static int xen_drv_remove(struct xenbus_device *dev)
739 {
740         struct xen_drm_front_info *front_info = dev_get_drvdata(&dev->dev);
741         int to = 100;
742
743         xenbus_switch_state(dev, XenbusStateClosing);
744
745         /*
746          * On driver removal it is disconnected from XenBus,
747          * so no backend state change events come via .otherend_changed
748          * callback. This prevents us from exiting gracefully, e.g.
749          * signaling the backend to free event channels, waiting for its
750          * state to change to XenbusStateClosed and cleaning at our end.
751          * Normally when front driver removed backend will finally go into
752          * XenbusStateInitWait state.
753          *
754          * Workaround: read backend's state manually and wait with time-out.
755          */
756         while ((xenbus_read_unsigned(front_info->xb_dev->otherend, "state",
757                                      XenbusStateUnknown) != XenbusStateInitWait) &&
758                                      --to)
759                 msleep(10);
760
761         if (!to) {
762                 unsigned int state;
763
764                 state = xenbus_read_unsigned(front_info->xb_dev->otherend,
765                                              "state", XenbusStateUnknown);
766                 DRM_ERROR("Backend state is %s while removing driver\n",
767                           xenbus_strstate(state));
768         }
769
770         xen_drm_drv_fini(front_info);
771         xenbus_frontend_closed(dev);
772         return 0;
773 }
774
775 static const struct xenbus_device_id xen_driver_ids[] = {
776         { XENDISPL_DRIVER_NAME },
777         { "" }
778 };
779
780 static struct xenbus_driver xen_driver = {
781         .ids = xen_driver_ids,
782         .probe = xen_drv_probe,
783         .remove = xen_drv_remove,
784         .otherend_changed = displback_changed,
785 };
786
787 static int __init xen_drv_init(void)
788 {
789         /* At the moment we only support case with XEN_PAGE_SIZE == PAGE_SIZE */
790         if (XEN_PAGE_SIZE != PAGE_SIZE) {
791                 DRM_ERROR(XENDISPL_DRIVER_NAME ": different kernel and Xen page sizes are not supported: XEN_PAGE_SIZE (%lu) != PAGE_SIZE (%lu)\n",
792                           XEN_PAGE_SIZE, PAGE_SIZE);
793                 return -ENODEV;
794         }
795
796         if (!xen_domain())
797                 return -ENODEV;
798
799         if (!xen_has_pv_devices())
800                 return -ENODEV;
801
802         DRM_INFO("Registering XEN PV " XENDISPL_DRIVER_NAME "\n");
803         return xenbus_register_frontend(&xen_driver);
804 }
805
806 static void __exit xen_drv_fini(void)
807 {
808         DRM_INFO("Unregistering XEN PV " XENDISPL_DRIVER_NAME "\n");
809         xenbus_unregister_driver(&xen_driver);
810 }
811
812 module_init(xen_drv_init);
813 module_exit(xen_drv_fini);
814
815 MODULE_DESCRIPTION("Xen para-virtualized display device frontend");
816 MODULE_LICENSE("GPL");
817 MODULE_ALIAS("xen:" XENDISPL_DRIVER_NAME);
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