1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Virtio Transport driver for Arm System Control and Management Interface
4  * (SCMI).
5  *
6  * Copyright (C) 2020-2022 OpenSynergy.
7  * Copyright (C) 2021-2022 ARM Ltd.
8  */
9 
10 /**
11  * DOC: Theory of Operation
12  *
13  * The scmi-virtio transport implements a driver for the virtio SCMI device.
14  *
15  * There is one Tx channel (virtio cmdq, A2P channel) and at most one Rx
16  * channel (virtio eventq, P2A channel). Each channel is implemented through a
17  * virtqueue. Access to each virtqueue is protected by spinlocks.
18  */
19 
20 #include <linux/completion.h>
21 #include <linux/errno.h>
22 #include <linux/refcount.h>
23 #include <linux/slab.h>
24 #include <linux/virtio.h>
25 #include <linux/virtio_config.h>
26 
27 #include <uapi/linux/virtio_ids.h>
28 #include <uapi/linux/virtio_scmi.h>
29 
30 #include "common.h"
31 
32 #define VIRTIO_MAX_RX_TIMEOUT_MS	60000
33 #define VIRTIO_SCMI_MAX_MSG_SIZE 128 /* Value may be increased. */
34 #define VIRTIO_SCMI_MAX_PDU_SIZE \
35 	(VIRTIO_SCMI_MAX_MSG_SIZE + SCMI_MSG_MAX_PROT_OVERHEAD)
36 #define DESCRIPTORS_PER_TX_MSG 2
37 
38 /**
39  * struct scmi_vio_channel - Transport channel information
40  *
41  * @vqueue: Associated virtqueue
42  * @cinfo: SCMI Tx or Rx channel
43  * @free_lock: Protects access to the @free_list.
44  * @free_list: List of unused scmi_vio_msg, maintained for Tx channels only
45  * @deferred_tx_work: Worker for TX deferred replies processing
46  * @deferred_tx_wq: Workqueue for TX deferred replies
47  * @pending_lock: Protects access to the @pending_cmds_list.
48  * @pending_cmds_list: List of pre-fetched commands queueud for later processing
49  * @is_rx: Whether channel is an Rx channel
50  * @max_msg: Maximum number of pending messages for this channel.
51  * @lock: Protects access to all members except users, free_list and
52  *	  pending_cmds_list.
53  * @shutdown_done: A reference to a completion used when freeing this channel.
54  * @users: A reference count to currently active users of this channel.
55  */
56 struct scmi_vio_channel {
57 	struct virtqueue *vqueue;
58 	struct scmi_chan_info *cinfo;
59 	/* lock to protect access to the free list. */
60 	spinlock_t free_lock;
61 	struct list_head free_list;
62 	/* lock to protect access to the pending list. */
63 	spinlock_t pending_lock;
64 	struct list_head pending_cmds_list;
65 	struct work_struct deferred_tx_work;
66 	struct workqueue_struct *deferred_tx_wq;
67 	bool is_rx;
68 	unsigned int max_msg;
69 	/*
70 	 * Lock to protect access to all members except users, free_list and
71 	 * pending_cmds_list
72 	 */
73 	spinlock_t lock;
74 	struct completion *shutdown_done;
75 	refcount_t users;
76 };
77 
78 enum poll_states {
79 	VIO_MSG_NOT_POLLED,
80 	VIO_MSG_POLL_TIMEOUT,
81 	VIO_MSG_POLLING,
82 	VIO_MSG_POLL_DONE,
83 };
84 
85 /**
86  * struct scmi_vio_msg - Transport PDU information
87  *
88  * @request: SDU used for commands
89  * @input: SDU used for (delayed) responses and notifications
90  * @list: List which scmi_vio_msg may be part of
91  * @rx_len: Input SDU size in bytes, once input has been received
92  * @poll_idx: Last used index registered for polling purposes if this message
93  *	      transaction reply was configured for polling.
94  * @poll_status: Polling state for this message.
95  * @poll_lock: A lock to protect @poll_status
96  * @users: A reference count to track this message users and avoid premature
97  *	   freeing (and reuse) when polling and IRQ execution paths interleave.
98  */
99 struct scmi_vio_msg {
100 	struct scmi_msg_payld *request;
101 	struct scmi_msg_payld *input;
102 	struct list_head list;
103 	unsigned int rx_len;
104 	unsigned int poll_idx;
105 	enum poll_states poll_status;
106 	/* Lock to protect access to poll_status */
107 	spinlock_t poll_lock;
108 	refcount_t users;
109 };
110 
111 /* Only one SCMI VirtIO device can possibly exist */
112 static struct virtio_device *scmi_vdev;
113 
114 static void scmi_vio_channel_ready(struct scmi_vio_channel *vioch,
115 				   struct scmi_chan_info *cinfo)
116 {
117 	unsigned long flags;
118 
119 	spin_lock_irqsave(&vioch->lock, flags);
120 	cinfo->transport_info = vioch;
121 	/* Indirectly setting channel not available any more */
122 	vioch->cinfo = cinfo;
123 	spin_unlock_irqrestore(&vioch->lock, flags);
124 
125 	refcount_set(&vioch->users, 1);
126 }
127 
128 static inline bool scmi_vio_channel_acquire(struct scmi_vio_channel *vioch)
129 {
130 	return refcount_inc_not_zero(&vioch->users);
131 }
132 
133 static inline void scmi_vio_channel_release(struct scmi_vio_channel *vioch)
134 {
135 	if (refcount_dec_and_test(&vioch->users)) {
136 		unsigned long flags;
137 
138 		spin_lock_irqsave(&vioch->lock, flags);
139 		if (vioch->shutdown_done) {
140 			vioch->cinfo = NULL;
141 			complete(vioch->shutdown_done);
142 		}
143 		spin_unlock_irqrestore(&vioch->lock, flags);
144 	}
145 }
146 
147 static void scmi_vio_channel_cleanup_sync(struct scmi_vio_channel *vioch)
148 {
149 	unsigned long flags;
150 	DECLARE_COMPLETION_ONSTACK(vioch_shutdown_done);
151 
152 	/*
153 	 * Prepare to wait for the last release if not already released
154 	 * or in progress.
155 	 */
156 	spin_lock_irqsave(&vioch->lock, flags);
157 	if (!vioch->cinfo || vioch->shutdown_done) {
158 		spin_unlock_irqrestore(&vioch->lock, flags);
159 		return;
160 	}
161 
162 	vioch->shutdown_done = &vioch_shutdown_done;
163 	virtio_break_device(vioch->vqueue->vdev);
164 	if (!vioch->is_rx && vioch->deferred_tx_wq)
165 		/* Cannot be kicked anymore after this...*/
166 		vioch->deferred_tx_wq = NULL;
167 	spin_unlock_irqrestore(&vioch->lock, flags);
168 
169 	scmi_vio_channel_release(vioch);
170 
171 	/* Let any possibly concurrent RX path release the channel */
172 	wait_for_completion(vioch->shutdown_done);
173 }
174 
175 /* Assumes to be called with vio channel acquired already */
176 static struct scmi_vio_msg *
177 scmi_virtio_get_free_msg(struct scmi_vio_channel *vioch)
178 {
179 	unsigned long flags;
180 	struct scmi_vio_msg *msg;
181 
182 	spin_lock_irqsave(&vioch->free_lock, flags);
183 	if (list_empty(&vioch->free_list)) {
184 		spin_unlock_irqrestore(&vioch->free_lock, flags);
185 		return NULL;
186 	}
187 
188 	msg = list_first_entry(&vioch->free_list, typeof(*msg), list);
189 	list_del_init(&msg->list);
190 	spin_unlock_irqrestore(&vioch->free_lock, flags);
191 
192 	/* Still no users, no need to acquire poll_lock */
193 	msg->poll_status = VIO_MSG_NOT_POLLED;
194 	refcount_set(&msg->users, 1);
195 
196 	return msg;
197 }
198 
199 static inline bool scmi_vio_msg_acquire(struct scmi_vio_msg *msg)
200 {
201 	return refcount_inc_not_zero(&msg->users);
202 }
203 
204 /* Assumes to be called with vio channel acquired already */
205 static inline bool scmi_vio_msg_release(struct scmi_vio_channel *vioch,
206 					struct scmi_vio_msg *msg)
207 {
208 	bool ret;
209 
210 	ret = refcount_dec_and_test(&msg->users);
211 	if (ret) {
212 		unsigned long flags;
213 
214 		spin_lock_irqsave(&vioch->free_lock, flags);
215 		list_add_tail(&msg->list, &vioch->free_list);
216 		spin_unlock_irqrestore(&vioch->free_lock, flags);
217 	}
218 
219 	return ret;
220 }
221 
222 static bool scmi_vio_have_vq_rx(struct virtio_device *vdev)
223 {
224 	return virtio_has_feature(vdev, VIRTIO_SCMI_F_P2A_CHANNELS);
225 }
226 
227 static int scmi_vio_feed_vq_rx(struct scmi_vio_channel *vioch,
228 			       struct scmi_vio_msg *msg)
229 {
230 	struct scatterlist sg_in;
231 	int rc;
232 	unsigned long flags;
233 	struct device *dev = &vioch->vqueue->vdev->dev;
234 
235 	sg_init_one(&sg_in, msg->input, VIRTIO_SCMI_MAX_PDU_SIZE);
236 
237 	spin_lock_irqsave(&vioch->lock, flags);
238 
239 	rc = virtqueue_add_inbuf(vioch->vqueue, &sg_in, 1, msg, GFP_ATOMIC);
240 	if (rc)
241 		dev_err(dev, "failed to add to RX virtqueue (%d)\n", rc);
242 	else
243 		virtqueue_kick(vioch->vqueue);
244 
245 	spin_unlock_irqrestore(&vioch->lock, flags);
246 
247 	return rc;
248 }
249 
250 /*
251  * Assume to be called with channel already acquired or not ready at all;
252  * vioch->lock MUST NOT have been already acquired.
253  */
254 static void scmi_finalize_message(struct scmi_vio_channel *vioch,
255 				  struct scmi_vio_msg *msg)
256 {
257 	if (vioch->is_rx)
258 		scmi_vio_feed_vq_rx(vioch, msg);
259 	else
260 		scmi_vio_msg_release(vioch, msg);
261 }
262 
263 static void scmi_vio_complete_cb(struct virtqueue *vqueue)
264 {
265 	unsigned long flags;
266 	unsigned int length;
267 	struct scmi_vio_channel *vioch;
268 	struct scmi_vio_msg *msg;
269 	bool cb_enabled = true;
270 
271 	if (WARN_ON_ONCE(!vqueue->vdev->priv))
272 		return;
273 	vioch = &((struct scmi_vio_channel *)vqueue->vdev->priv)[vqueue->index];
274 
275 	for (;;) {
276 		if (!scmi_vio_channel_acquire(vioch))
277 			return;
278 
279 		spin_lock_irqsave(&vioch->lock, flags);
280 		if (cb_enabled) {
281 			virtqueue_disable_cb(vqueue);
282 			cb_enabled = false;
283 		}
284 
285 		msg = virtqueue_get_buf(vqueue, &length);
286 		if (!msg) {
287 			if (virtqueue_enable_cb(vqueue)) {
288 				spin_unlock_irqrestore(&vioch->lock, flags);
289 				scmi_vio_channel_release(vioch);
290 				return;
291 			}
292 			cb_enabled = true;
293 		}
294 		spin_unlock_irqrestore(&vioch->lock, flags);
295 
296 		if (msg) {
297 			msg->rx_len = length;
298 			scmi_rx_callback(vioch->cinfo,
299 					 msg_read_header(msg->input), msg);
300 
301 			scmi_finalize_message(vioch, msg);
302 		}
303 
304 		/*
305 		 * Release vio channel between loop iterations to allow
306 		 * virtio_chan_free() to eventually fully release it when
307 		 * shutting down; in such a case, any outstanding message will
308 		 * be ignored since this loop will bail out at the next
309 		 * iteration.
310 		 */
311 		scmi_vio_channel_release(vioch);
312 	}
313 }
314 
315 static void scmi_vio_deferred_tx_worker(struct work_struct *work)
316 {
317 	unsigned long flags;
318 	struct scmi_vio_channel *vioch;
319 	struct scmi_vio_msg *msg, *tmp;
320 
321 	vioch = container_of(work, struct scmi_vio_channel, deferred_tx_work);
322 
323 	if (!scmi_vio_channel_acquire(vioch))
324 		return;
325 
326 	/*
327 	 * Process pre-fetched messages: these could be non-polled messages or
328 	 * late timed-out replies to polled messages dequeued by chance while
329 	 * polling for some other messages: this worker is in charge to process
330 	 * the valid non-expired messages and anyway finally free all of them.
331 	 */
332 	spin_lock_irqsave(&vioch->pending_lock, flags);
333 
334 	/* Scan the list of possibly pre-fetched messages during polling. */
335 	list_for_each_entry_safe(msg, tmp, &vioch->pending_cmds_list, list) {
336 		list_del(&msg->list);
337 
338 		/*
339 		 * Channel is acquired here (cannot vanish) and this message
340 		 * is no more processed elsewhere so no poll_lock needed.
341 		 */
342 		if (msg->poll_status == VIO_MSG_NOT_POLLED)
343 			scmi_rx_callback(vioch->cinfo,
344 					 msg_read_header(msg->input), msg);
345 
346 		/* Free the processed message once done */
347 		scmi_vio_msg_release(vioch, msg);
348 	}
349 
350 	spin_unlock_irqrestore(&vioch->pending_lock, flags);
351 
352 	/* Process possibly still pending messages */
353 	scmi_vio_complete_cb(vioch->vqueue);
354 
355 	scmi_vio_channel_release(vioch);
356 }
357 
358 static const char *const scmi_vio_vqueue_names[] = { "tx", "rx" };
359 
360 static vq_callback_t *scmi_vio_complete_callbacks[] = {
361 	scmi_vio_complete_cb,
362 	scmi_vio_complete_cb
363 };
364 
365 static unsigned int virtio_get_max_msg(struct scmi_chan_info *base_cinfo)
366 {
367 	struct scmi_vio_channel *vioch = base_cinfo->transport_info;
368 
369 	return vioch->max_msg;
370 }
371 
372 static int virtio_link_supplier(struct device *dev)
373 {
374 	if (!scmi_vdev) {
375 		dev_notice(dev,
376 			   "Deferring probe after not finding a bound scmi-virtio device\n");
377 		return -EPROBE_DEFER;
378 	}
379 
380 	if (!device_link_add(dev, &scmi_vdev->dev,
381 			     DL_FLAG_AUTOREMOVE_CONSUMER)) {
382 		dev_err(dev, "Adding link to supplier virtio device failed\n");
383 		return -ECANCELED;
384 	}
385 
386 	return 0;
387 }
388 
389 static bool virtio_chan_available(struct device *dev, int idx)
390 {
391 	struct scmi_vio_channel *channels, *vioch = NULL;
392 
393 	if (WARN_ON_ONCE(!scmi_vdev))
394 		return false;
395 
396 	channels = (struct scmi_vio_channel *)scmi_vdev->priv;
397 
398 	switch (idx) {
399 	case VIRTIO_SCMI_VQ_TX:
400 		vioch = &channels[VIRTIO_SCMI_VQ_TX];
401 		break;
402 	case VIRTIO_SCMI_VQ_RX:
403 		if (scmi_vio_have_vq_rx(scmi_vdev))
404 			vioch = &channels[VIRTIO_SCMI_VQ_RX];
405 		break;
406 	default:
407 		return false;
408 	}
409 
410 	return vioch && !vioch->cinfo;
411 }
412 
413 static void scmi_destroy_tx_workqueue(void *deferred_tx_wq)
414 {
415 	destroy_workqueue(deferred_tx_wq);
416 }
417 
418 static int virtio_chan_setup(struct scmi_chan_info *cinfo, struct device *dev,
419 			     bool tx)
420 {
421 	struct scmi_vio_channel *vioch;
422 	int index = tx ? VIRTIO_SCMI_VQ_TX : VIRTIO_SCMI_VQ_RX;
423 	int i;
424 
425 	if (!scmi_vdev)
426 		return -EPROBE_DEFER;
427 
428 	vioch = &((struct scmi_vio_channel *)scmi_vdev->priv)[index];
429 
430 	/* Setup a deferred worker for polling. */
431 	if (tx && !vioch->deferred_tx_wq) {
432 		int ret;
433 
434 		vioch->deferred_tx_wq =
435 			alloc_workqueue(dev_name(&scmi_vdev->dev),
436 					WQ_UNBOUND | WQ_FREEZABLE | WQ_SYSFS,
437 					0);
438 		if (!vioch->deferred_tx_wq)
439 			return -ENOMEM;
440 
441 		ret = devm_add_action_or_reset(dev, scmi_destroy_tx_workqueue,
442 					       vioch->deferred_tx_wq);
443 		if (ret)
444 			return ret;
445 
446 		INIT_WORK(&vioch->deferred_tx_work,
447 			  scmi_vio_deferred_tx_worker);
448 	}
449 
450 	for (i = 0; i < vioch->max_msg; i++) {
451 		struct scmi_vio_msg *msg;
452 
453 		msg = devm_kzalloc(dev, sizeof(*msg), GFP_KERNEL);
454 		if (!msg)
455 			return -ENOMEM;
456 
457 		if (tx) {
458 			msg->request = devm_kzalloc(dev,
459 						    VIRTIO_SCMI_MAX_PDU_SIZE,
460 						    GFP_KERNEL);
461 			if (!msg->request)
462 				return -ENOMEM;
463 			spin_lock_init(&msg->poll_lock);
464 			refcount_set(&msg->users, 1);
465 		}
466 
467 		msg->input = devm_kzalloc(dev, VIRTIO_SCMI_MAX_PDU_SIZE,
468 					  GFP_KERNEL);
469 		if (!msg->input)
470 			return -ENOMEM;
471 
472 		scmi_finalize_message(vioch, msg);
473 	}
474 
475 	scmi_vio_channel_ready(vioch, cinfo);
476 
477 	return 0;
478 }
479 
480 static int virtio_chan_free(int id, void *p, void *data)
481 {
482 	struct scmi_chan_info *cinfo = p;
483 	struct scmi_vio_channel *vioch = cinfo->transport_info;
484 
485 	scmi_vio_channel_cleanup_sync(vioch);
486 
487 	scmi_free_channel(cinfo, data, id);
488 
489 	return 0;
490 }
491 
492 static int virtio_send_message(struct scmi_chan_info *cinfo,
493 			       struct scmi_xfer *xfer)
494 {
495 	struct scmi_vio_channel *vioch = cinfo->transport_info;
496 	struct scatterlist sg_out;
497 	struct scatterlist sg_in;
498 	struct scatterlist *sgs[DESCRIPTORS_PER_TX_MSG] = { &sg_out, &sg_in };
499 	unsigned long flags;
500 	int rc;
501 	struct scmi_vio_msg *msg;
502 
503 	if (!scmi_vio_channel_acquire(vioch))
504 		return -EINVAL;
505 
506 	msg = scmi_virtio_get_free_msg(vioch);
507 	if (!msg) {
508 		scmi_vio_channel_release(vioch);
509 		return -EBUSY;
510 	}
511 
512 	msg_tx_prepare(msg->request, xfer);
513 
514 	sg_init_one(&sg_out, msg->request, msg_command_size(xfer));
515 	sg_init_one(&sg_in, msg->input, msg_response_size(xfer));
516 
517 	spin_lock_irqsave(&vioch->lock, flags);
518 
519 	/*
520 	 * If polling was requested for this transaction:
521 	 *  - retrieve last used index (will be used as polling reference)
522 	 *  - bind the polled message to the xfer via .priv
523 	 *  - grab an additional msg refcount for the poll-path
524 	 */
525 	if (xfer->hdr.poll_completion) {
526 		msg->poll_idx = virtqueue_enable_cb_prepare(vioch->vqueue);
527 		/* Still no users, no need to acquire poll_lock */
528 		msg->poll_status = VIO_MSG_POLLING;
529 		scmi_vio_msg_acquire(msg);
530 		/* Ensure initialized msg is visibly bound to xfer */
531 		smp_store_mb(xfer->priv, msg);
532 	}
533 
534 	rc = virtqueue_add_sgs(vioch->vqueue, sgs, 1, 1, msg, GFP_ATOMIC);
535 	if (rc)
536 		dev_err(vioch->cinfo->dev,
537 			"failed to add to TX virtqueue (%d)\n", rc);
538 	else
539 		virtqueue_kick(vioch->vqueue);
540 
541 	spin_unlock_irqrestore(&vioch->lock, flags);
542 
543 	if (rc) {
544 		/* Ensure order between xfer->priv clear and vq feeding */
545 		smp_store_mb(xfer->priv, NULL);
546 		if (xfer->hdr.poll_completion)
547 			scmi_vio_msg_release(vioch, msg);
548 		scmi_vio_msg_release(vioch, msg);
549 	}
550 
551 	scmi_vio_channel_release(vioch);
552 
553 	return rc;
554 }
555 
556 static void virtio_fetch_response(struct scmi_chan_info *cinfo,
557 				  struct scmi_xfer *xfer)
558 {
559 	struct scmi_vio_msg *msg = xfer->priv;
560 
561 	if (msg)
562 		msg_fetch_response(msg->input, msg->rx_len, xfer);
563 }
564 
565 static void virtio_fetch_notification(struct scmi_chan_info *cinfo,
566 				      size_t max_len, struct scmi_xfer *xfer)
567 {
568 	struct scmi_vio_msg *msg = xfer->priv;
569 
570 	if (msg)
571 		msg_fetch_notification(msg->input, msg->rx_len, max_len, xfer);
572 }
573 
574 /**
575  * virtio_mark_txdone  - Mark transmission done
576  *
577  * Free only completed polling transfer messages.
578  *
579  * Note that in the SCMI VirtIO transport we never explicitly release still
580  * outstanding but timed-out messages by forcibly re-adding them to the
581  * free-list inside the TX code path; we instead let IRQ/RX callbacks, or the
582  * TX deferred worker, eventually clean up such messages once, finally, a late
583  * reply is received and discarded (if ever).
584  *
585  * This approach was deemed preferable since those pending timed-out buffers are
586  * still effectively owned by the SCMI platform VirtIO device even after timeout
587  * expiration: forcibly freeing and reusing them before they had been returned
588  * explicitly by the SCMI platform could lead to subtle bugs due to message
589  * corruption.
590  * An SCMI platform VirtIO device which never returns message buffers is
591  * anyway broken and it will quickly lead to exhaustion of available messages.
592  *
593  * For this same reason, here, we take care to free only the polled messages
594  * that had been somehow replied (only if not by chance already processed on the
595  * IRQ path - the initial scmi_vio_msg_release() takes care of this) and also
596  * any timed-out polled message if that indeed appears to have been at least
597  * dequeued from the virtqueues (VIO_MSG_POLL_DONE): this is needed since such
598  * messages won't be freed elsewhere. Any other polled message is marked as
599  * VIO_MSG_POLL_TIMEOUT.
600  *
601  * Possible late replies to timed-out polled messages will be eventually freed
602  * by RX callbacks if delivered on the IRQ path or by the deferred TX worker if
603  * dequeued on some other polling path.
604  *
605  * @cinfo: SCMI channel info
606  * @ret: Transmission return code
607  * @xfer: Transfer descriptor
608  */
609 static void virtio_mark_txdone(struct scmi_chan_info *cinfo, int ret,
610 			       struct scmi_xfer *xfer)
611 {
612 	unsigned long flags;
613 	struct scmi_vio_channel *vioch = cinfo->transport_info;
614 	struct scmi_vio_msg *msg = xfer->priv;
615 
616 	if (!msg || !scmi_vio_channel_acquire(vioch))
617 		return;
618 
619 	/* Ensure msg is unbound from xfer anyway at this point */
620 	smp_store_mb(xfer->priv, NULL);
621 
622 	/* Must be a polled xfer and not already freed on the IRQ path */
623 	if (!xfer->hdr.poll_completion || scmi_vio_msg_release(vioch, msg)) {
624 		scmi_vio_channel_release(vioch);
625 		return;
626 	}
627 
628 	spin_lock_irqsave(&msg->poll_lock, flags);
629 	/* Do not free timedout polled messages only if still inflight */
630 	if (ret != -ETIMEDOUT || msg->poll_status == VIO_MSG_POLL_DONE)
631 		scmi_vio_msg_release(vioch, msg);
632 	else if (msg->poll_status == VIO_MSG_POLLING)
633 		msg->poll_status = VIO_MSG_POLL_TIMEOUT;
634 	spin_unlock_irqrestore(&msg->poll_lock, flags);
635 
636 	scmi_vio_channel_release(vioch);
637 }
638 
639 /**
640  * virtio_poll_done  - Provide polling support for VirtIO transport
641  *
642  * @cinfo: SCMI channel info
643  * @xfer: Reference to the transfer being poll for.
644  *
645  * VirtIO core provides a polling mechanism based only on last used indexes:
646  * this means that it is possible to poll the virtqueues waiting for something
647  * new to arrive from the host side, but the only way to check if the freshly
648  * arrived buffer was indeed what we were waiting for is to compare the newly
649  * arrived message descriptor with the one we are polling on.
650  *
651  * As a consequence it can happen to dequeue something different from the buffer
652  * we were poll-waiting for: if that is the case such early fetched buffers are
653  * then added to a the @pending_cmds_list list for later processing by a
654  * dedicated deferred worker.
655  *
656  * So, basically, once something new is spotted we proceed to de-queue all the
657  * freshly received used buffers until we found the one we were polling on, or,
658  * we have 'seemingly' emptied the virtqueue; if some buffers are still pending
659  * in the vqueue at the end of the polling loop (possible due to inherent races
660  * in virtqueues handling mechanisms), we similarly kick the deferred worker
661  * and let it process those, to avoid indefinitely looping in the .poll_done
662  * busy-waiting helper.
663  *
664  * Finally, we delegate to the deferred worker also the final free of any timed
665  * out reply to a polled message that we should dequeue.
666  *
667  * Note that, since we do NOT have per-message suppress notification mechanism,
668  * the message we are polling for could be alternatively delivered via usual
669  * IRQs callbacks on another core which happened to have IRQs enabled while we
670  * are actively polling for it here: in such a case it will be handled as such
671  * by scmi_rx_callback() and the polling loop in the SCMI Core TX path will be
672  * transparently terminated anyway.
673  *
674  * Return: True once polling has successfully completed.
675  */
676 static bool virtio_poll_done(struct scmi_chan_info *cinfo,
677 			     struct scmi_xfer *xfer)
678 {
679 	bool pending, found = false;
680 	unsigned int length, any_prefetched = 0;
681 	unsigned long flags;
682 	struct scmi_vio_msg *next_msg, *msg = xfer->priv;
683 	struct scmi_vio_channel *vioch = cinfo->transport_info;
684 
685 	if (!msg)
686 		return true;
687 
688 	/*
689 	 * Processed already by other polling loop on another CPU ?
690 	 *
691 	 * Note that this message is acquired on the poll path so cannot vanish
692 	 * while inside this loop iteration even if concurrently processed on
693 	 * the IRQ path.
694 	 *
695 	 * Avoid to acquire poll_lock since polled_status can be changed
696 	 * in a relevant manner only later in this same thread of execution:
697 	 * any other possible changes made concurrently by other polling loops
698 	 * or by a reply delivered on the IRQ path have no meaningful impact on
699 	 * this loop iteration: in other words it is harmless to allow this
700 	 * possible race but let has avoid spinlocking with irqs off in this
701 	 * initial part of the polling loop.
702 	 */
703 	if (msg->poll_status == VIO_MSG_POLL_DONE)
704 		return true;
705 
706 	if (!scmi_vio_channel_acquire(vioch))
707 		return true;
708 
709 	/* Has cmdq index moved at all ? */
710 	pending = virtqueue_poll(vioch->vqueue, msg->poll_idx);
711 	if (!pending) {
712 		scmi_vio_channel_release(vioch);
713 		return false;
714 	}
715 
716 	spin_lock_irqsave(&vioch->lock, flags);
717 	virtqueue_disable_cb(vioch->vqueue);
718 
719 	/*
720 	 * Process all new messages till the polled-for message is found OR
721 	 * the vqueue is empty.
722 	 */
723 	while ((next_msg = virtqueue_get_buf(vioch->vqueue, &length))) {
724 		bool next_msg_done = false;
725 
726 		/*
727 		 * Mark any dequeued buffer message as VIO_MSG_POLL_DONE so
728 		 * that can be properly freed even on timeout in mark_txdone.
729 		 */
730 		spin_lock(&next_msg->poll_lock);
731 		if (next_msg->poll_status == VIO_MSG_POLLING) {
732 			next_msg->poll_status = VIO_MSG_POLL_DONE;
733 			next_msg_done = true;
734 		}
735 		spin_unlock(&next_msg->poll_lock);
736 
737 		next_msg->rx_len = length;
738 		/* Is the message we were polling for ? */
739 		if (next_msg == msg) {
740 			found = true;
741 			break;
742 		} else if (next_msg_done) {
743 			/* Skip the rest if this was another polled msg */
744 			continue;
745 		}
746 
747 		/*
748 		 * Enqueue for later processing any non-polled message and any
749 		 * timed-out polled one that we happen to have dequeued.
750 		 */
751 		spin_lock(&next_msg->poll_lock);
752 		if (next_msg->poll_status == VIO_MSG_NOT_POLLED ||
753 		    next_msg->poll_status == VIO_MSG_POLL_TIMEOUT) {
754 			spin_unlock(&next_msg->poll_lock);
755 
756 			any_prefetched++;
757 			spin_lock(&vioch->pending_lock);
758 			list_add_tail(&next_msg->list,
759 				      &vioch->pending_cmds_list);
760 			spin_unlock(&vioch->pending_lock);
761 		} else {
762 			spin_unlock(&next_msg->poll_lock);
763 		}
764 	}
765 
766 	/*
767 	 * When the polling loop has successfully terminated if something
768 	 * else was queued in the meantime, it will be served by a deferred
769 	 * worker OR by the normal IRQ/callback OR by other poll loops.
770 	 *
771 	 * If we are still looking for the polled reply, the polling index has
772 	 * to be updated to the current vqueue last used index.
773 	 */
774 	if (found) {
775 		pending = !virtqueue_enable_cb(vioch->vqueue);
776 	} else {
777 		msg->poll_idx = virtqueue_enable_cb_prepare(vioch->vqueue);
778 		pending = virtqueue_poll(vioch->vqueue, msg->poll_idx);
779 	}
780 
781 	if (vioch->deferred_tx_wq && (any_prefetched || pending))
782 		queue_work(vioch->deferred_tx_wq, &vioch->deferred_tx_work);
783 
784 	spin_unlock_irqrestore(&vioch->lock, flags);
785 
786 	scmi_vio_channel_release(vioch);
787 
788 	return found;
789 }
790 
791 static const struct scmi_transport_ops scmi_virtio_ops = {
792 	.link_supplier = virtio_link_supplier,
793 	.chan_available = virtio_chan_available,
794 	.chan_setup = virtio_chan_setup,
795 	.chan_free = virtio_chan_free,
796 	.get_max_msg = virtio_get_max_msg,
797 	.send_message = virtio_send_message,
798 	.fetch_response = virtio_fetch_response,
799 	.fetch_notification = virtio_fetch_notification,
800 	.mark_txdone = virtio_mark_txdone,
801 	.poll_done = virtio_poll_done,
802 };
803 
804 static int scmi_vio_probe(struct virtio_device *vdev)
805 {
806 	struct device *dev = &vdev->dev;
807 	struct scmi_vio_channel *channels;
808 	bool have_vq_rx;
809 	int vq_cnt;
810 	int i;
811 	int ret;
812 	struct virtqueue *vqs[VIRTIO_SCMI_VQ_MAX_CNT];
813 
814 	/* Only one SCMI VirtiO device allowed */
815 	if (scmi_vdev) {
816 		dev_err(dev,
817 			"One SCMI Virtio device was already initialized: only one allowed.\n");
818 		return -EBUSY;
819 	}
820 
821 	have_vq_rx = scmi_vio_have_vq_rx(vdev);
822 	vq_cnt = have_vq_rx ? VIRTIO_SCMI_VQ_MAX_CNT : 1;
823 
824 	channels = devm_kcalloc(dev, vq_cnt, sizeof(*channels), GFP_KERNEL);
825 	if (!channels)
826 		return -ENOMEM;
827 
828 	if (have_vq_rx)
829 		channels[VIRTIO_SCMI_VQ_RX].is_rx = true;
830 
831 	ret = virtio_find_vqs(vdev, vq_cnt, vqs, scmi_vio_complete_callbacks,
832 			      scmi_vio_vqueue_names, NULL);
833 	if (ret) {
834 		dev_err(dev, "Failed to get %d virtqueue(s)\n", vq_cnt);
835 		return ret;
836 	}
837 
838 	for (i = 0; i < vq_cnt; i++) {
839 		unsigned int sz;
840 
841 		spin_lock_init(&channels[i].lock);
842 		spin_lock_init(&channels[i].free_lock);
843 		INIT_LIST_HEAD(&channels[i].free_list);
844 		spin_lock_init(&channels[i].pending_lock);
845 		INIT_LIST_HEAD(&channels[i].pending_cmds_list);
846 		channels[i].vqueue = vqs[i];
847 
848 		sz = virtqueue_get_vring_size(channels[i].vqueue);
849 		/* Tx messages need multiple descriptors. */
850 		if (!channels[i].is_rx)
851 			sz /= DESCRIPTORS_PER_TX_MSG;
852 
853 		if (sz > MSG_TOKEN_MAX) {
854 			dev_info(dev,
855 				 "%s virtqueue could hold %d messages. Only %ld allowed to be pending.\n",
856 				 channels[i].is_rx ? "rx" : "tx",
857 				 sz, MSG_TOKEN_MAX);
858 			sz = MSG_TOKEN_MAX;
859 		}
860 		channels[i].max_msg = sz;
861 	}
862 
863 	vdev->priv = channels;
864 	/* Ensure initialized scmi_vdev is visible */
865 	smp_store_mb(scmi_vdev, vdev);
866 
867 	return 0;
868 }
869 
870 static void scmi_vio_remove(struct virtio_device *vdev)
871 {
872 	/*
873 	 * Once we get here, virtio_chan_free() will have already been called by
874 	 * the SCMI core for any existing channel and, as a consequence, all the
875 	 * virtio channels will have been already marked NOT ready, causing any
876 	 * outstanding message on any vqueue to be ignored by complete_cb: now
877 	 * we can just stop processing buffers and destroy the vqueues.
878 	 */
879 	virtio_reset_device(vdev);
880 	vdev->config->del_vqs(vdev);
881 	/* Ensure scmi_vdev is visible as NULL */
882 	smp_store_mb(scmi_vdev, NULL);
883 }
884 
885 static int scmi_vio_validate(struct virtio_device *vdev)
886 {
887 #ifdef CONFIG_ARM_SCMI_TRANSPORT_VIRTIO_VERSION1_COMPLIANCE
888 	if (!virtio_has_feature(vdev, VIRTIO_F_VERSION_1)) {
889 		dev_err(&vdev->dev,
890 			"device does not comply with spec version 1.x\n");
891 		return -EINVAL;
892 	}
893 #endif
894 	return 0;
895 }
896 
897 static unsigned int features[] = {
898 	VIRTIO_SCMI_F_P2A_CHANNELS,
899 };
900 
901 static const struct virtio_device_id id_table[] = {
902 	{ VIRTIO_ID_SCMI, VIRTIO_DEV_ANY_ID },
903 	{ 0 }
904 };
905 
906 static struct virtio_driver virtio_scmi_driver = {
907 	.driver.name = "scmi-virtio",
908 	.driver.owner = THIS_MODULE,
909 	.feature_table = features,
910 	.feature_table_size = ARRAY_SIZE(features),
911 	.id_table = id_table,
912 	.probe = scmi_vio_probe,
913 	.remove = scmi_vio_remove,
914 	.validate = scmi_vio_validate,
915 };
916 
917 static int __init virtio_scmi_init(void)
918 {
919 	return register_virtio_driver(&virtio_scmi_driver);
920 }
921 
922 static void virtio_scmi_exit(void)
923 {
924 	unregister_virtio_driver(&virtio_scmi_driver);
925 }
926 
927 const struct scmi_desc scmi_virtio_desc = {
928 	.transport_init = virtio_scmi_init,
929 	.transport_exit = virtio_scmi_exit,
930 	.ops = &scmi_virtio_ops,
931 	/* for non-realtime virtio devices */
932 	.max_rx_timeout_ms = VIRTIO_MAX_RX_TIMEOUT_MS,
933 	.max_msg = 0, /* overridden by virtio_get_max_msg() */
934 	.max_msg_size = VIRTIO_SCMI_MAX_MSG_SIZE,
935 	.atomic_enabled = IS_ENABLED(CONFIG_ARM_SCMI_TRANSPORT_VIRTIO_ATOMIC_ENABLE),
936 };
937