1// SPDX-License-Identifier: GPL-2.0-only
2/*
3 * Intel IFC VF NIC driver for virtio dataplane offloading
4 *
5 * Copyright (C) 2020 Intel Corporation.
6 *
7 * Author: Zhu Lingshan <lingshan.zhu@intel.com>
8 *
9 */
10
11#include <linux/interrupt.h>
12#include <linux/module.h>
13#include <linux/pci.h>
14#include <linux/sysfs.h>
15#include "ifcvf_base.h"
16
17#define DRIVER_AUTHOR   "Intel Corporation"
18#define IFCVF_DRIVER_NAME       "ifcvf"
19
20static irqreturn_t ifcvf_config_changed(int irq, void *arg)
21{
22	struct ifcvf_hw *vf = arg;
23
24	if (vf->config_cb.callback)
25		return vf->config_cb.callback(vf->config_cb.private);
26
27	return IRQ_HANDLED;
28}
29
30static irqreturn_t ifcvf_vq_intr_handler(int irq, void *arg)
31{
32	struct vring_info *vring = arg;
33
34	if (vring->cb.callback)
35		return vring->cb.callback(vring->cb.private);
36
37	return IRQ_HANDLED;
38}
39
40static irqreturn_t ifcvf_vqs_reused_intr_handler(int irq, void *arg)
41{
42	struct ifcvf_hw *vf = arg;
43	struct vring_info *vring;
44	int i;
45
46	for (i = 0; i < vf->nr_vring; i++) {
47		vring = &vf->vring[i];
48		if (vring->cb.callback)
49			vring->cb.callback(vring->cb.private);
50	}
51
52	return IRQ_HANDLED;
53}
54
55static irqreturn_t ifcvf_dev_intr_handler(int irq, void *arg)
56{
57	struct ifcvf_hw *vf = arg;
58	u8 isr;
59
60	isr = vp_ioread8(vf->isr);
61	if (isr & VIRTIO_PCI_ISR_CONFIG)
62		ifcvf_config_changed(irq, arg);
63
64	return ifcvf_vqs_reused_intr_handler(irq, arg);
65}
66
67static void ifcvf_free_irq_vectors(void *data)
68{
69	pci_free_irq_vectors(data);
70}
71
72static void ifcvf_free_per_vq_irq(struct ifcvf_hw *vf)
73{
74	struct pci_dev *pdev = vf->pdev;
75	int i;
76
77	for (i = 0; i < vf->nr_vring; i++) {
78		if (vf->vring[i].irq != -EINVAL) {
79			devm_free_irq(&pdev->dev, vf->vring[i].irq, &vf->vring[i]);
80			vf->vring[i].irq = -EINVAL;
81		}
82	}
83}
84
85static void ifcvf_free_vqs_reused_irq(struct ifcvf_hw *vf)
86{
87	struct pci_dev *pdev = vf->pdev;
88
89	if (vf->vqs_reused_irq != -EINVAL) {
90		devm_free_irq(&pdev->dev, vf->vqs_reused_irq, vf);
91		vf->vqs_reused_irq = -EINVAL;
92	}
93
94}
95
96static void ifcvf_free_vq_irq(struct ifcvf_hw *vf)
97{
98	if (vf->msix_vector_status == MSIX_VECTOR_PER_VQ_AND_CONFIG)
99		ifcvf_free_per_vq_irq(vf);
100	else
101		ifcvf_free_vqs_reused_irq(vf);
102}
103
104static void ifcvf_free_config_irq(struct ifcvf_hw *vf)
105{
106	struct pci_dev *pdev = vf->pdev;
107
108	if (vf->config_irq == -EINVAL)
109		return;
110
111	/* If the irq is shared by all vqs and the config interrupt,
112	 * it is already freed in ifcvf_free_vq_irq, so here only
113	 * need to free config irq when msix_vector_status != MSIX_VECTOR_DEV_SHARED
114	 */
115	if (vf->msix_vector_status != MSIX_VECTOR_DEV_SHARED) {
116		devm_free_irq(&pdev->dev, vf->config_irq, vf);
117		vf->config_irq = -EINVAL;
118	}
119}
120
121static void ifcvf_free_irq(struct ifcvf_hw *vf)
122{
123	struct pci_dev *pdev = vf->pdev;
124
125	ifcvf_free_vq_irq(vf);
126	ifcvf_free_config_irq(vf);
127	ifcvf_free_irq_vectors(pdev);
128	vf->num_msix_vectors = 0;
129}
130
131/* ifcvf MSIX vectors allocator, this helper tries to allocate
132 * vectors for all virtqueues and the config interrupt.
133 * It returns the number of allocated vectors, negative
134 * return value when fails.
135 */
136static int ifcvf_alloc_vectors(struct ifcvf_hw *vf)
137{
138	struct pci_dev *pdev = vf->pdev;
139	int max_intr, ret;
140
141	/* all queues and config interrupt  */
142	max_intr = vf->nr_vring + 1;
143	ret = pci_alloc_irq_vectors(pdev, 1, max_intr, PCI_IRQ_MSIX | PCI_IRQ_AFFINITY);
144
145	if (ret < 0) {
146		IFCVF_ERR(pdev, "Failed to alloc IRQ vectors\n");
147		return ret;
148	}
149
150	if (ret < max_intr)
151		IFCVF_INFO(pdev,
152			   "Requested %u vectors, however only %u allocated, lower performance\n",
153			   max_intr, ret);
154
155	return ret;
156}
157
158static int ifcvf_request_per_vq_irq(struct ifcvf_hw *vf)
159{
160	struct pci_dev *pdev = vf->pdev;
161	int i, vector, ret, irq;
162
163	vf->vqs_reused_irq = -EINVAL;
164	for (i = 0; i < vf->nr_vring; i++) {
165		snprintf(vf->vring[i].msix_name, 256, "ifcvf[%s]-%d\n", pci_name(pdev), i);
166		vector = i;
167		irq = pci_irq_vector(pdev, vector);
168		ret = devm_request_irq(&pdev->dev, irq,
169				       ifcvf_vq_intr_handler, 0,
170				       vf->vring[i].msix_name,
171				       &vf->vring[i]);
172		if (ret) {
173			IFCVF_ERR(pdev, "Failed to request irq for vq %d\n", i);
174			goto err;
175		}
176
177		vf->vring[i].irq = irq;
178		ret = ifcvf_set_vq_vector(vf, i, vector);
179		if (ret == VIRTIO_MSI_NO_VECTOR) {
180			IFCVF_ERR(pdev, "No msix vector for vq %u\n", i);
181			goto err;
182		}
183	}
184
185	return 0;
186err:
187	ifcvf_free_irq(vf);
188
189	return -EFAULT;
190}
191
192static int ifcvf_request_vqs_reused_irq(struct ifcvf_hw *vf)
193{
194	struct pci_dev *pdev = vf->pdev;
195	int i, vector, ret, irq;
196
197	vector = 0;
198	snprintf(vf->vring[0].msix_name, 256, "ifcvf[%s]-vqs-reused-irq\n", pci_name(pdev));
199	irq = pci_irq_vector(pdev, vector);
200	ret = devm_request_irq(&pdev->dev, irq,
201			       ifcvf_vqs_reused_intr_handler, 0,
202			       vf->vring[0].msix_name, vf);
203	if (ret) {
204		IFCVF_ERR(pdev, "Failed to request reused irq for the device\n");
205		goto err;
206	}
207
208	vf->vqs_reused_irq = irq;
209	for (i = 0; i < vf->nr_vring; i++) {
210		vf->vring[i].irq = -EINVAL;
211		ret = ifcvf_set_vq_vector(vf, i, vector);
212		if (ret == VIRTIO_MSI_NO_VECTOR) {
213			IFCVF_ERR(pdev, "No msix vector for vq %u\n", i);
214			goto err;
215		}
216	}
217
218	return 0;
219err:
220	ifcvf_free_irq(vf);
221
222	return -EFAULT;
223}
224
225static int ifcvf_request_dev_irq(struct ifcvf_hw *vf)
226{
227	struct pci_dev *pdev = vf->pdev;
228	int i, vector, ret, irq;
229
230	vector = 0;
231	snprintf(vf->vring[0].msix_name, 256, "ifcvf[%s]-dev-irq\n", pci_name(pdev));
232	irq = pci_irq_vector(pdev, vector);
233	ret = devm_request_irq(&pdev->dev, irq,
234			       ifcvf_dev_intr_handler, 0,
235			       vf->vring[0].msix_name, vf);
236	if (ret) {
237		IFCVF_ERR(pdev, "Failed to request irq for the device\n");
238		goto err;
239	}
240
241	vf->vqs_reused_irq = irq;
242	for (i = 0; i < vf->nr_vring; i++) {
243		vf->vring[i].irq = -EINVAL;
244		ret = ifcvf_set_vq_vector(vf, i, vector);
245		if (ret == VIRTIO_MSI_NO_VECTOR) {
246			IFCVF_ERR(pdev, "No msix vector for vq %u\n", i);
247			goto err;
248		}
249	}
250
251	vf->config_irq = irq;
252	ret = ifcvf_set_config_vector(vf, vector);
253	if (ret == VIRTIO_MSI_NO_VECTOR) {
254		IFCVF_ERR(pdev, "No msix vector for device config\n");
255		goto err;
256	}
257
258	return 0;
259err:
260	ifcvf_free_irq(vf);
261
262	return -EFAULT;
263
264}
265
266static int ifcvf_request_vq_irq(struct ifcvf_hw *vf)
267{
268	int ret;
269
270	if (vf->msix_vector_status == MSIX_VECTOR_PER_VQ_AND_CONFIG)
271		ret = ifcvf_request_per_vq_irq(vf);
272	else
273		ret = ifcvf_request_vqs_reused_irq(vf);
274
275	return ret;
276}
277
278static int ifcvf_request_config_irq(struct ifcvf_hw *vf)
279{
280	struct pci_dev *pdev = vf->pdev;
281	int config_vector, ret;
282
283	if (vf->msix_vector_status == MSIX_VECTOR_PER_VQ_AND_CONFIG)
284		config_vector = vf->nr_vring;
285	else if (vf->msix_vector_status ==  MSIX_VECTOR_SHARED_VQ_AND_CONFIG)
286		/* vector 0 for vqs and 1 for config interrupt */
287		config_vector = 1;
288	else if (vf->msix_vector_status == MSIX_VECTOR_DEV_SHARED)
289		/* re-use the vqs vector */
290		return 0;
291	else
292		return -EINVAL;
293
294	snprintf(vf->config_msix_name, 256, "ifcvf[%s]-config\n",
295		 pci_name(pdev));
296	vf->config_irq = pci_irq_vector(pdev, config_vector);
297	ret = devm_request_irq(&pdev->dev, vf->config_irq,
298			       ifcvf_config_changed, 0,
299			       vf->config_msix_name, vf);
300	if (ret) {
301		IFCVF_ERR(pdev, "Failed to request config irq\n");
302		goto err;
303	}
304
305	ret = ifcvf_set_config_vector(vf, config_vector);
306	if (ret == VIRTIO_MSI_NO_VECTOR) {
307		IFCVF_ERR(pdev, "No msix vector for device config\n");
308		goto err;
309	}
310
311	return 0;
312err:
313	ifcvf_free_irq(vf);
314
315	return -EFAULT;
316}
317
318static int ifcvf_request_irq(struct ifcvf_hw *vf)
319{
320	int nvectors, ret, max_intr;
321
322	nvectors = ifcvf_alloc_vectors(vf);
323	if (nvectors <= 0)
324		return -EFAULT;
325
326	vf->msix_vector_status = MSIX_VECTOR_PER_VQ_AND_CONFIG;
327	max_intr = vf->nr_vring + 1;
328	if (nvectors < max_intr)
329		vf->msix_vector_status = MSIX_VECTOR_SHARED_VQ_AND_CONFIG;
330
331	if (nvectors == 1) {
332		vf->msix_vector_status = MSIX_VECTOR_DEV_SHARED;
333		ret = ifcvf_request_dev_irq(vf);
334
335		return ret;
336	}
337
338	ret = ifcvf_request_vq_irq(vf);
339	if (ret)
340		return ret;
341
342	ret = ifcvf_request_config_irq(vf);
343
344	if (ret)
345		return ret;
346
347	vf->num_msix_vectors = nvectors;
348
349	return 0;
350}
351
352static struct ifcvf_adapter *vdpa_to_adapter(struct vdpa_device *vdpa_dev)
353{
354	return container_of(vdpa_dev, struct ifcvf_adapter, vdpa);
355}
356
357static struct ifcvf_hw *vdpa_to_vf(struct vdpa_device *vdpa_dev)
358{
359	struct ifcvf_adapter *adapter = vdpa_to_adapter(vdpa_dev);
360
361	return adapter->vf;
362}
363
364static u64 ifcvf_vdpa_get_device_features(struct vdpa_device *vdpa_dev)
365{
366	struct ifcvf_adapter *adapter = vdpa_to_adapter(vdpa_dev);
367	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
368	struct pci_dev *pdev = adapter->pdev;
369	u32 type = vf->dev_type;
370	u64 features;
371
372	if (type == VIRTIO_ID_NET || type == VIRTIO_ID_BLOCK)
373		features = ifcvf_get_dev_features(vf);
374	else {
375		features = 0;
376		IFCVF_ERR(pdev, "VIRTIO ID %u not supported\n", vf->dev_type);
377	}
378
379	return features;
380}
381
382static int ifcvf_vdpa_set_driver_features(struct vdpa_device *vdpa_dev, u64 features)
383{
384	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
385	int ret;
386
387	ret = ifcvf_verify_min_features(vf, features);
388	if (ret)
389		return ret;
390
391	ifcvf_set_driver_features(vf, features);
392
393	return 0;
394}
395
396static u64 ifcvf_vdpa_get_driver_features(struct vdpa_device *vdpa_dev)
397{
398	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
399	u64 features;
400
401	features = ifcvf_get_driver_features(vf);
402
403	return features;
404}
405
406static u8 ifcvf_vdpa_get_status(struct vdpa_device *vdpa_dev)
407{
408	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
409
410	return ifcvf_get_status(vf);
411}
412
413static void ifcvf_vdpa_set_status(struct vdpa_device *vdpa_dev, u8 status)
414{
415	struct ifcvf_hw *vf;
416	u8 status_old;
417	int ret;
418
419	vf  = vdpa_to_vf(vdpa_dev);
420	status_old = ifcvf_get_status(vf);
421
422	if (status_old == status)
423		return;
424
425	if ((status & VIRTIO_CONFIG_S_DRIVER_OK) &&
426	    !(status_old & VIRTIO_CONFIG_S_DRIVER_OK)) {
427		ret = ifcvf_request_irq(vf);
428		if (ret) {
429			IFCVF_ERR(vf->pdev, "failed to request irq with error %d\n", ret);
430			return;
431		}
432	}
433
434	ifcvf_set_status(vf, status);
435}
436
437static int ifcvf_vdpa_reset(struct vdpa_device *vdpa_dev)
438{
439	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
440	u8 status = ifcvf_get_status(vf);
441
442	ifcvf_stop(vf);
443
444	if (status & VIRTIO_CONFIG_S_DRIVER_OK)
445		ifcvf_free_irq(vf);
446
447	ifcvf_reset(vf);
448
449	return 0;
450}
451
452static u16 ifcvf_vdpa_get_vq_num_max(struct vdpa_device *vdpa_dev)
453{
454	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
455
456	return ifcvf_get_max_vq_size(vf);
457}
458
459static int ifcvf_vdpa_get_vq_state(struct vdpa_device *vdpa_dev, u16 qid,
460				   struct vdpa_vq_state *state)
461{
462	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
463
464	state->split.avail_index = ifcvf_get_vq_state(vf, qid);
465	return 0;
466}
467
468static int ifcvf_vdpa_set_vq_state(struct vdpa_device *vdpa_dev, u16 qid,
469				   const struct vdpa_vq_state *state)
470{
471	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
472
473	return ifcvf_set_vq_state(vf, qid, state->split.avail_index);
474}
475
476static void ifcvf_vdpa_set_vq_cb(struct vdpa_device *vdpa_dev, u16 qid,
477				 struct vdpa_callback *cb)
478{
479	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
480
481	vf->vring[qid].cb = *cb;
482}
483
484static void ifcvf_vdpa_set_vq_ready(struct vdpa_device *vdpa_dev,
485				    u16 qid, bool ready)
486{
487	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
488
489	ifcvf_set_vq_ready(vf, qid, ready);
490}
491
492static bool ifcvf_vdpa_get_vq_ready(struct vdpa_device *vdpa_dev, u16 qid)
493{
494	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
495
496	return ifcvf_get_vq_ready(vf, qid);
497}
498
499static void ifcvf_vdpa_set_vq_num(struct vdpa_device *vdpa_dev, u16 qid,
500				  u32 num)
501{
502	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
503
504	ifcvf_set_vq_num(vf, qid, num);
505}
506
507static int ifcvf_vdpa_set_vq_address(struct vdpa_device *vdpa_dev, u16 qid,
508				     u64 desc_area, u64 driver_area,
509				     u64 device_area)
510{
511	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
512
513	return ifcvf_set_vq_address(vf, qid, desc_area, driver_area, device_area);
514}
515
516static void ifcvf_vdpa_kick_vq(struct vdpa_device *vdpa_dev, u16 qid)
517{
518	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
519
520	ifcvf_notify_queue(vf, qid);
521}
522
523static u32 ifcvf_vdpa_get_generation(struct vdpa_device *vdpa_dev)
524{
525	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
526
527	return vp_ioread8(&vf->common_cfg->config_generation);
528}
529
530static u32 ifcvf_vdpa_get_device_id(struct vdpa_device *vdpa_dev)
531{
532	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
533
534	return vf->dev_type;
535}
536
537static u32 ifcvf_vdpa_get_vendor_id(struct vdpa_device *vdpa_dev)
538{
539	struct ifcvf_adapter *adapter = vdpa_to_adapter(vdpa_dev);
540	struct pci_dev *pdev = adapter->pdev;
541
542	return pdev->subsystem_vendor;
543}
544
545static u32 ifcvf_vdpa_get_vq_align(struct vdpa_device *vdpa_dev)
546{
547	return IFCVF_QUEUE_ALIGNMENT;
548}
549
550static size_t ifcvf_vdpa_get_config_size(struct vdpa_device *vdpa_dev)
551{
552	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
553
554	return  vf->config_size;
555}
556
557static u32 ifcvf_vdpa_get_vq_group(struct vdpa_device *vdpa, u16 idx)
558{
559	return 0;
560}
561
562static void ifcvf_vdpa_get_config(struct vdpa_device *vdpa_dev,
563				  unsigned int offset,
564				  void *buf, unsigned int len)
565{
566	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
567
568	ifcvf_read_dev_config(vf, offset, buf, len);
569}
570
571static void ifcvf_vdpa_set_config(struct vdpa_device *vdpa_dev,
572				  unsigned int offset, const void *buf,
573				  unsigned int len)
574{
575	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
576
577	ifcvf_write_dev_config(vf, offset, buf, len);
578}
579
580static void ifcvf_vdpa_set_config_cb(struct vdpa_device *vdpa_dev,
581				     struct vdpa_callback *cb)
582{
583	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
584
585	vf->config_cb.callback = cb->callback;
586	vf->config_cb.private = cb->private;
587}
588
589static int ifcvf_vdpa_get_vq_irq(struct vdpa_device *vdpa_dev,
590				 u16 qid)
591{
592	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
593
594	if (vf->vqs_reused_irq < 0)
595		return vf->vring[qid].irq;
596	else
597		return -EINVAL;
598}
599
600static struct vdpa_notification_area ifcvf_get_vq_notification(struct vdpa_device *vdpa_dev,
601							       u16 idx)
602{
603	struct ifcvf_hw *vf = vdpa_to_vf(vdpa_dev);
604	struct vdpa_notification_area area;
605
606	area.addr = vf->vring[idx].notify_pa;
607	if (!vf->notify_off_multiplier)
608		area.size = PAGE_SIZE;
609	else
610		area.size = vf->notify_off_multiplier;
611
612	return area;
613}
614
615/*
616 * IFCVF currently doesn't have on-chip IOMMU, so not
617 * implemented set_map()/dma_map()/dma_unmap()
618 */
619static const struct vdpa_config_ops ifc_vdpa_ops = {
620	.get_device_features = ifcvf_vdpa_get_device_features,
621	.set_driver_features = ifcvf_vdpa_set_driver_features,
622	.get_driver_features = ifcvf_vdpa_get_driver_features,
623	.get_status	= ifcvf_vdpa_get_status,
624	.set_status	= ifcvf_vdpa_set_status,
625	.reset		= ifcvf_vdpa_reset,
626	.get_vq_num_max	= ifcvf_vdpa_get_vq_num_max,
627	.get_vq_state	= ifcvf_vdpa_get_vq_state,
628	.set_vq_state	= ifcvf_vdpa_set_vq_state,
629	.set_vq_cb	= ifcvf_vdpa_set_vq_cb,
630	.set_vq_ready	= ifcvf_vdpa_set_vq_ready,
631	.get_vq_ready	= ifcvf_vdpa_get_vq_ready,
632	.set_vq_num	= ifcvf_vdpa_set_vq_num,
633	.set_vq_address	= ifcvf_vdpa_set_vq_address,
634	.get_vq_irq	= ifcvf_vdpa_get_vq_irq,
635	.kick_vq	= ifcvf_vdpa_kick_vq,
636	.get_generation	= ifcvf_vdpa_get_generation,
637	.get_device_id	= ifcvf_vdpa_get_device_id,
638	.get_vendor_id	= ifcvf_vdpa_get_vendor_id,
639	.get_vq_align	= ifcvf_vdpa_get_vq_align,
640	.get_vq_group	= ifcvf_vdpa_get_vq_group,
641	.get_config_size	= ifcvf_vdpa_get_config_size,
642	.get_config	= ifcvf_vdpa_get_config,
643	.set_config	= ifcvf_vdpa_set_config,
644	.set_config_cb  = ifcvf_vdpa_set_config_cb,
645	.get_vq_notification = ifcvf_get_vq_notification,
646};
647
648static struct virtio_device_id id_table_net[] = {
649	{VIRTIO_ID_NET, VIRTIO_DEV_ANY_ID},
650	{0},
651};
652
653static struct virtio_device_id id_table_blk[] = {
654	{VIRTIO_ID_BLOCK, VIRTIO_DEV_ANY_ID},
655	{0},
656};
657
658static u32 get_dev_type(struct pci_dev *pdev)
659{
660	u32 dev_type;
661
662	/* This drirver drives both modern virtio devices and transitional
663	 * devices in modern mode.
664	 * vDPA requires feature bit VIRTIO_F_ACCESS_PLATFORM,
665	 * so legacy devices and transitional devices in legacy
666	 * mode will not work for vDPA, this driver will not
667	 * drive devices with legacy interface.
668	 */
669
670	if (pdev->device < 0x1040)
671		dev_type =  pdev->subsystem_device;
672	else
673		dev_type =  pdev->device - 0x1040;
674
675	return dev_type;
676}
677
678static int ifcvf_vdpa_dev_add(struct vdpa_mgmt_dev *mdev, const char *name,
679			      const struct vdpa_dev_set_config *config)
680{
681	struct ifcvf_vdpa_mgmt_dev *ifcvf_mgmt_dev;
682	struct ifcvf_adapter *adapter;
683	struct vdpa_device *vdpa_dev;
684	struct pci_dev *pdev;
685	struct ifcvf_hw *vf;
686	u64 device_features;
687	int ret;
688
689	ifcvf_mgmt_dev = container_of(mdev, struct ifcvf_vdpa_mgmt_dev, mdev);
690	vf = &ifcvf_mgmt_dev->vf;
691	pdev = vf->pdev;
692	adapter = vdpa_alloc_device(struct ifcvf_adapter, vdpa,
693				    &pdev->dev, &ifc_vdpa_ops, 1, 1, NULL, false);
694	if (IS_ERR(adapter)) {
695		IFCVF_ERR(pdev, "Failed to allocate vDPA structure");
696		return PTR_ERR(adapter);
697	}
698
699	ifcvf_mgmt_dev->adapter = adapter;
700	adapter->pdev = pdev;
701	adapter->vdpa.dma_dev = &pdev->dev;
702	adapter->vdpa.mdev = mdev;
703	adapter->vf = vf;
704	vdpa_dev = &adapter->vdpa;
705
706	device_features = vf->hw_features;
707	if (config->mask & BIT_ULL(VDPA_ATTR_DEV_FEATURES)) {
708		if (config->device_features & ~device_features) {
709			IFCVF_ERR(pdev, "The provisioned features 0x%llx are not supported by this device with features 0x%llx\n",
710				  config->device_features, device_features);
711			return -EINVAL;
712		}
713		device_features &= config->device_features;
714	}
715	vf->dev_features = device_features;
716
717	if (name)
718		ret = dev_set_name(&vdpa_dev->dev, "%s", name);
719	else
720		ret = dev_set_name(&vdpa_dev->dev, "vdpa%u", vdpa_dev->index);
721
722	ret = _vdpa_register_device(&adapter->vdpa, vf->nr_vring);
723	if (ret) {
724		put_device(&adapter->vdpa.dev);
725		IFCVF_ERR(pdev, "Failed to register to vDPA bus");
726		return ret;
727	}
728
729	return 0;
730}
731
732static void ifcvf_vdpa_dev_del(struct vdpa_mgmt_dev *mdev, struct vdpa_device *dev)
733{
734	struct ifcvf_vdpa_mgmt_dev *ifcvf_mgmt_dev;
735
736	ifcvf_mgmt_dev = container_of(mdev, struct ifcvf_vdpa_mgmt_dev, mdev);
737	_vdpa_unregister_device(dev);
738	ifcvf_mgmt_dev->adapter = NULL;
739}
740
741static const struct vdpa_mgmtdev_ops ifcvf_vdpa_mgmt_dev_ops = {
742	.dev_add = ifcvf_vdpa_dev_add,
743	.dev_del = ifcvf_vdpa_dev_del
744};
745
746static int ifcvf_probe(struct pci_dev *pdev, const struct pci_device_id *id)
747{
748	struct ifcvf_vdpa_mgmt_dev *ifcvf_mgmt_dev;
749	struct device *dev = &pdev->dev;
750	struct ifcvf_hw *vf;
751	u32 dev_type;
752	int ret, i;
753
754	ret = pcim_enable_device(pdev);
755	if (ret) {
756		IFCVF_ERR(pdev, "Failed to enable device\n");
757		return ret;
758	}
759	ret = pcim_iomap_regions(pdev, BIT(0) | BIT(2) | BIT(4),
760				 IFCVF_DRIVER_NAME);
761	if (ret) {
762		IFCVF_ERR(pdev, "Failed to request MMIO region\n");
763		return ret;
764	}
765
766	ret = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(64));
767	if (ret) {
768		IFCVF_ERR(pdev, "No usable DMA configuration\n");
769		return ret;
770	}
771
772	ret = devm_add_action_or_reset(dev, ifcvf_free_irq_vectors, pdev);
773	if (ret) {
774		IFCVF_ERR(pdev,
775			  "Failed for adding devres for freeing irq vectors\n");
776		return ret;
777	}
778
779	pci_set_master(pdev);
780	ifcvf_mgmt_dev = kzalloc(sizeof(struct ifcvf_vdpa_mgmt_dev), GFP_KERNEL);
781	if (!ifcvf_mgmt_dev) {
782		IFCVF_ERR(pdev, "Failed to alloc memory for the vDPA management device\n");
783		return -ENOMEM;
784	}
785
786	vf = &ifcvf_mgmt_dev->vf;
787	vf->dev_type = get_dev_type(pdev);
788	vf->base = pcim_iomap_table(pdev);
789	vf->pdev = pdev;
790
791	ret = ifcvf_init_hw(vf, pdev);
792	if (ret) {
793		IFCVF_ERR(pdev, "Failed to init IFCVF hw\n");
794		goto err;
795	}
796
797	for (i = 0; i < vf->nr_vring; i++)
798		vf->vring[i].irq = -EINVAL;
799
800	vf->hw_features = ifcvf_get_hw_features(vf);
801	vf->config_size = ifcvf_get_config_size(vf);
802
803	dev_type = get_dev_type(pdev);
804	switch (dev_type) {
805	case VIRTIO_ID_NET:
806		ifcvf_mgmt_dev->mdev.id_table = id_table_net;
807		break;
808	case VIRTIO_ID_BLOCK:
809		ifcvf_mgmt_dev->mdev.id_table = id_table_blk;
810		break;
811	default:
812		IFCVF_ERR(pdev, "VIRTIO ID %u not supported\n", dev_type);
813		ret = -EOPNOTSUPP;
814		goto err;
815	}
816
817	ifcvf_mgmt_dev->mdev.ops = &ifcvf_vdpa_mgmt_dev_ops;
818	ifcvf_mgmt_dev->mdev.device = dev;
819	ifcvf_mgmt_dev->mdev.max_supported_vqs = vf->nr_vring;
820	ifcvf_mgmt_dev->mdev.supported_features = vf->hw_features;
821	ifcvf_mgmt_dev->mdev.config_attr_mask = (1 << VDPA_ATTR_DEV_FEATURES);
822
823	ret = vdpa_mgmtdev_register(&ifcvf_mgmt_dev->mdev);
824	if (ret) {
825		IFCVF_ERR(pdev,
826			  "Failed to initialize the management interfaces\n");
827		goto err;
828	}
829
830	pci_set_drvdata(pdev, ifcvf_mgmt_dev);
831
832	return 0;
833
834err:
835	kfree(ifcvf_mgmt_dev->vf.vring);
836	kfree(ifcvf_mgmt_dev);
837	return ret;
838}
839
840static void ifcvf_remove(struct pci_dev *pdev)
841{
842	struct ifcvf_vdpa_mgmt_dev *ifcvf_mgmt_dev;
843
844	ifcvf_mgmt_dev = pci_get_drvdata(pdev);
845	vdpa_mgmtdev_unregister(&ifcvf_mgmt_dev->mdev);
846	kfree(ifcvf_mgmt_dev->vf.vring);
847	kfree(ifcvf_mgmt_dev);
848}
849
850static struct pci_device_id ifcvf_pci_ids[] = {
851	/* N3000 network device */
852	{ PCI_DEVICE_SUB(PCI_VENDOR_ID_REDHAT_QUMRANET,
853			 N3000_DEVICE_ID,
854			 PCI_VENDOR_ID_INTEL,
855			 N3000_SUBSYS_DEVICE_ID) },
856	/* C5000X-PL network device
857	 * F2000X-PL network device
858	 */
859	{ PCI_DEVICE_SUB(PCI_VENDOR_ID_REDHAT_QUMRANET,
860			 VIRTIO_TRANS_ID_NET,
861			 PCI_VENDOR_ID_INTEL,
862			 VIRTIO_ID_NET) },
863	/* C5000X-PL block device */
864	{ PCI_DEVICE_SUB(PCI_VENDOR_ID_REDHAT_QUMRANET,
865			 VIRTIO_TRANS_ID_BLOCK,
866			 PCI_VENDOR_ID_INTEL,
867			 VIRTIO_ID_BLOCK) },
868
869	{ 0 },
870};
871MODULE_DEVICE_TABLE(pci, ifcvf_pci_ids);
872
873static struct pci_driver ifcvf_driver = {
874	.name     = IFCVF_DRIVER_NAME,
875	.id_table = ifcvf_pci_ids,
876	.probe    = ifcvf_probe,
877	.remove   = ifcvf_remove,
878};
879
880module_pci_driver(ifcvf_driver);
881
882MODULE_LICENSE("GPL v2");
883