1 // SPDX-License-Identifier: GPL-2.0-only
2 /* Copyright (C) 2024 Marvell. */
3
4 #include <linux/interrupt.h>
5 #include <linux/io-64-nonatomic-lo-hi.h>
6 #include <linux/module.h>
7 #include <linux/iommu.h>
8 #include "octep_vdpa.h"
9
10 #define OCTEP_VDPA_DRIVER_NAME "octep_vdpa"
11
12 struct octep_pf {
13 u8 __iomem *base[PCI_STD_NUM_BARS];
14 struct pci_dev *pdev;
15 struct resource res;
16 u64 vf_base;
17 int enabled_vfs;
18 u32 vf_stride;
19 u16 vf_devid;
20 };
21
22 struct octep_vdpa {
23 struct vdpa_device vdpa;
24 struct octep_hw *oct_hw;
25 struct pci_dev *pdev;
26 };
27
28 struct octep_vdpa_mgmt_dev {
29 struct vdpa_mgmt_dev mdev;
30 struct octep_hw oct_hw;
31 struct pci_dev *pdev;
32 /* Work entry to handle device setup */
33 struct work_struct setup_task;
34 /* Device status */
35 atomic_t status;
36 };
37
vdpa_to_octep_hw(struct vdpa_device * vdpa_dev)38 static struct octep_hw *vdpa_to_octep_hw(struct vdpa_device *vdpa_dev)
39 {
40 struct octep_vdpa *oct_vdpa;
41
42 oct_vdpa = container_of(vdpa_dev, struct octep_vdpa, vdpa);
43
44 return oct_vdpa->oct_hw;
45 }
46
octep_vdpa_intr_handler(int irq,void * data)47 static irqreturn_t octep_vdpa_intr_handler(int irq, void *data)
48 {
49 struct octep_hw *oct_hw = data;
50 int i;
51
52 for (i = 0; i < oct_hw->nr_vring; i++) {
53 if (oct_hw->vqs[i].cb.callback && ioread32(oct_hw->vqs[i].cb_notify_addr)) {
54 /* Acknowledge the per queue notification to the device */
55 iowrite32(0, oct_hw->vqs[i].cb_notify_addr);
56 oct_hw->vqs[i].cb.callback(oct_hw->vqs[i].cb.private);
57 }
58 }
59
60 return IRQ_HANDLED;
61 }
62
octep_free_irqs(struct octep_hw * oct_hw)63 static void octep_free_irqs(struct octep_hw *oct_hw)
64 {
65 struct pci_dev *pdev = oct_hw->pdev;
66
67 if (oct_hw->irq != -1) {
68 devm_free_irq(&pdev->dev, oct_hw->irq, oct_hw);
69 oct_hw->irq = -1;
70 }
71 pci_free_irq_vectors(pdev);
72 }
73
octep_request_irqs(struct octep_hw * oct_hw)74 static int octep_request_irqs(struct octep_hw *oct_hw)
75 {
76 struct pci_dev *pdev = oct_hw->pdev;
77 int ret, irq;
78
79 /* Currently HW device provisions one IRQ per VF, hence
80 * allocate one IRQ for all virtqueues call interface.
81 */
82 ret = pci_alloc_irq_vectors(pdev, 1, 1, PCI_IRQ_MSIX);
83 if (ret < 0) {
84 dev_err(&pdev->dev, "Failed to alloc msix vector");
85 return ret;
86 }
87
88 snprintf(oct_hw->vqs->msix_name, sizeof(oct_hw->vqs->msix_name),
89 OCTEP_VDPA_DRIVER_NAME "-vf-%d", pci_iov_vf_id(pdev));
90
91 irq = pci_irq_vector(pdev, 0);
92 ret = devm_request_irq(&pdev->dev, irq, octep_vdpa_intr_handler, 0,
93 oct_hw->vqs->msix_name, oct_hw);
94 if (ret) {
95 dev_err(&pdev->dev, "Failed to register interrupt handler\n");
96 goto free_irq_vec;
97 }
98 oct_hw->irq = irq;
99
100 return 0;
101
102 free_irq_vec:
103 pci_free_irq_vectors(pdev);
104 return ret;
105 }
106
octep_vdpa_get_device_features(struct vdpa_device * vdpa_dev)107 static u64 octep_vdpa_get_device_features(struct vdpa_device *vdpa_dev)
108 {
109 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
110
111 return oct_hw->features;
112 }
113
octep_vdpa_set_driver_features(struct vdpa_device * vdpa_dev,u64 features)114 static int octep_vdpa_set_driver_features(struct vdpa_device *vdpa_dev, u64 features)
115 {
116 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
117 int ret;
118
119 pr_debug("Driver Features: %llx\n", features);
120
121 ret = octep_verify_features(features);
122 if (ret) {
123 dev_warn(&oct_hw->pdev->dev,
124 "Must negotiate minimum features 0x%llx for this device",
125 BIT_ULL(VIRTIO_F_VERSION_1) | BIT_ULL(VIRTIO_F_NOTIFICATION_DATA) |
126 BIT_ULL(VIRTIO_F_RING_PACKED));
127 return ret;
128 }
129 octep_hw_set_drv_features(oct_hw, features);
130
131 return 0;
132 }
133
octep_vdpa_get_driver_features(struct vdpa_device * vdpa_dev)134 static u64 octep_vdpa_get_driver_features(struct vdpa_device *vdpa_dev)
135 {
136 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
137
138 return octep_hw_get_drv_features(oct_hw);
139 }
140
octep_vdpa_get_status(struct vdpa_device * vdpa_dev)141 static u8 octep_vdpa_get_status(struct vdpa_device *vdpa_dev)
142 {
143 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
144
145 return octep_hw_get_status(oct_hw);
146 }
147
octep_vdpa_set_status(struct vdpa_device * vdpa_dev,u8 status)148 static void octep_vdpa_set_status(struct vdpa_device *vdpa_dev, u8 status)
149 {
150 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
151 u8 status_old;
152
153 status_old = octep_hw_get_status(oct_hw);
154
155 if (status_old == status)
156 return;
157
158 if ((status & VIRTIO_CONFIG_S_DRIVER_OK) &&
159 !(status_old & VIRTIO_CONFIG_S_DRIVER_OK)) {
160 if (octep_request_irqs(oct_hw))
161 status = status_old | VIRTIO_CONFIG_S_FAILED;
162 }
163 octep_hw_set_status(oct_hw, status);
164 }
165
octep_vdpa_reset(struct vdpa_device * vdpa_dev)166 static int octep_vdpa_reset(struct vdpa_device *vdpa_dev)
167 {
168 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
169 u8 status = octep_hw_get_status(oct_hw);
170 u16 qid;
171
172 if (status == 0)
173 return 0;
174
175 for (qid = 0; qid < oct_hw->nr_vring; qid++) {
176 oct_hw->vqs[qid].cb.callback = NULL;
177 oct_hw->vqs[qid].cb.private = NULL;
178 oct_hw->config_cb.callback = NULL;
179 oct_hw->config_cb.private = NULL;
180 }
181 octep_hw_reset(oct_hw);
182
183 if (status & VIRTIO_CONFIG_S_DRIVER_OK)
184 octep_free_irqs(oct_hw);
185
186 return 0;
187 }
188
octep_vdpa_get_vq_num_max(struct vdpa_device * vdpa_dev)189 static u16 octep_vdpa_get_vq_num_max(struct vdpa_device *vdpa_dev)
190 {
191 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
192
193 return octep_get_vq_size(oct_hw);
194 }
195
octep_vdpa_get_vq_state(struct vdpa_device * vdpa_dev,u16 qid,struct vdpa_vq_state * state)196 static int octep_vdpa_get_vq_state(struct vdpa_device *vdpa_dev, u16 qid,
197 struct vdpa_vq_state *state)
198 {
199 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
200
201 return octep_get_vq_state(oct_hw, qid, state);
202 }
203
octep_vdpa_set_vq_state(struct vdpa_device * vdpa_dev,u16 qid,const struct vdpa_vq_state * state)204 static int octep_vdpa_set_vq_state(struct vdpa_device *vdpa_dev, u16 qid,
205 const struct vdpa_vq_state *state)
206 {
207 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
208
209 return octep_set_vq_state(oct_hw, qid, state);
210 }
211
octep_vdpa_set_vq_cb(struct vdpa_device * vdpa_dev,u16 qid,struct vdpa_callback * cb)212 static void octep_vdpa_set_vq_cb(struct vdpa_device *vdpa_dev, u16 qid, struct vdpa_callback *cb)
213 {
214 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
215
216 oct_hw->vqs[qid].cb = *cb;
217 }
218
octep_vdpa_set_vq_ready(struct vdpa_device * vdpa_dev,u16 qid,bool ready)219 static void octep_vdpa_set_vq_ready(struct vdpa_device *vdpa_dev, u16 qid, bool ready)
220 {
221 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
222
223 octep_set_vq_ready(oct_hw, qid, ready);
224 }
225
octep_vdpa_get_vq_ready(struct vdpa_device * vdpa_dev,u16 qid)226 static bool octep_vdpa_get_vq_ready(struct vdpa_device *vdpa_dev, u16 qid)
227 {
228 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
229
230 return octep_get_vq_ready(oct_hw, qid);
231 }
232
octep_vdpa_set_vq_num(struct vdpa_device * vdpa_dev,u16 qid,u32 num)233 static void octep_vdpa_set_vq_num(struct vdpa_device *vdpa_dev, u16 qid, u32 num)
234 {
235 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
236
237 octep_set_vq_num(oct_hw, qid, num);
238 }
239
octep_vdpa_set_vq_address(struct vdpa_device * vdpa_dev,u16 qid,u64 desc_area,u64 driver_area,u64 device_area)240 static int octep_vdpa_set_vq_address(struct vdpa_device *vdpa_dev, u16 qid, u64 desc_area,
241 u64 driver_area, u64 device_area)
242 {
243 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
244
245 pr_debug("qid[%d]: desc_area: %llx\n", qid, desc_area);
246 pr_debug("qid[%d]: driver_area: %llx\n", qid, driver_area);
247 pr_debug("qid[%d]: device_area: %llx\n\n", qid, device_area);
248
249 return octep_set_vq_address(oct_hw, qid, desc_area, driver_area, device_area);
250 }
251
octep_vdpa_kick_vq(struct vdpa_device * vdpa_dev,u16 qid)252 static void octep_vdpa_kick_vq(struct vdpa_device *vdpa_dev, u16 qid)
253 {
254 /* Not supported */
255 }
256
octep_vdpa_kick_vq_with_data(struct vdpa_device * vdpa_dev,u32 data)257 static void octep_vdpa_kick_vq_with_data(struct vdpa_device *vdpa_dev, u32 data)
258 {
259 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
260 u16 idx = data & 0xFFFF;
261
262 vp_iowrite32(data, oct_hw->vqs[idx].notify_addr);
263 }
264
octep_vdpa_get_generation(struct vdpa_device * vdpa_dev)265 static u32 octep_vdpa_get_generation(struct vdpa_device *vdpa_dev)
266 {
267 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
268
269 return vp_ioread8(&oct_hw->common_cfg->config_generation);
270 }
271
octep_vdpa_get_device_id(struct vdpa_device * vdpa_dev)272 static u32 octep_vdpa_get_device_id(struct vdpa_device *vdpa_dev)
273 {
274 return VIRTIO_ID_NET;
275 }
276
octep_vdpa_get_vendor_id(struct vdpa_device * vdpa_dev)277 static u32 octep_vdpa_get_vendor_id(struct vdpa_device *vdpa_dev)
278 {
279 return PCI_VENDOR_ID_CAVIUM;
280 }
281
octep_vdpa_get_vq_align(struct vdpa_device * vdpa_dev)282 static u32 octep_vdpa_get_vq_align(struct vdpa_device *vdpa_dev)
283 {
284 return PAGE_SIZE;
285 }
286
octep_vdpa_get_config_size(struct vdpa_device * vdpa_dev)287 static size_t octep_vdpa_get_config_size(struct vdpa_device *vdpa_dev)
288 {
289 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
290
291 return oct_hw->config_size;
292 }
293
octep_vdpa_get_config(struct vdpa_device * vdpa_dev,unsigned int offset,void * buf,unsigned int len)294 static void octep_vdpa_get_config(struct vdpa_device *vdpa_dev, unsigned int offset, void *buf,
295 unsigned int len)
296 {
297 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
298
299 octep_read_dev_config(oct_hw, offset, buf, len);
300 }
301
octep_vdpa_set_config(struct vdpa_device * vdpa_dev,unsigned int offset,const void * buf,unsigned int len)302 static void octep_vdpa_set_config(struct vdpa_device *vdpa_dev, unsigned int offset,
303 const void *buf, unsigned int len)
304 {
305 /* Not supported */
306 }
307
octep_vdpa_set_config_cb(struct vdpa_device * vdpa_dev,struct vdpa_callback * cb)308 static void octep_vdpa_set_config_cb(struct vdpa_device *vdpa_dev, struct vdpa_callback *cb)
309 {
310 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
311
312 oct_hw->config_cb.callback = cb->callback;
313 oct_hw->config_cb.private = cb->private;
314 }
315
octep_get_vq_notification(struct vdpa_device * vdpa_dev,u16 idx)316 static struct vdpa_notification_area octep_get_vq_notification(struct vdpa_device *vdpa_dev,
317 u16 idx)
318 {
319 struct octep_hw *oct_hw = vdpa_to_octep_hw(vdpa_dev);
320 struct vdpa_notification_area area;
321
322 area.addr = oct_hw->vqs[idx].notify_pa;
323 area.size = PAGE_SIZE;
324
325 return area;
326 }
327
328 static struct vdpa_config_ops octep_vdpa_ops = {
329 .get_device_features = octep_vdpa_get_device_features,
330 .set_driver_features = octep_vdpa_set_driver_features,
331 .get_driver_features = octep_vdpa_get_driver_features,
332 .get_status = octep_vdpa_get_status,
333 .set_status = octep_vdpa_set_status,
334 .reset = octep_vdpa_reset,
335 .get_vq_num_max = octep_vdpa_get_vq_num_max,
336 .get_vq_state = octep_vdpa_get_vq_state,
337 .set_vq_state = octep_vdpa_set_vq_state,
338 .set_vq_cb = octep_vdpa_set_vq_cb,
339 .set_vq_ready = octep_vdpa_set_vq_ready,
340 .get_vq_ready = octep_vdpa_get_vq_ready,
341 .set_vq_num = octep_vdpa_set_vq_num,
342 .set_vq_address = octep_vdpa_set_vq_address,
343 .get_vq_irq = NULL,
344 .kick_vq = octep_vdpa_kick_vq,
345 .kick_vq_with_data = octep_vdpa_kick_vq_with_data,
346 .get_generation = octep_vdpa_get_generation,
347 .get_device_id = octep_vdpa_get_device_id,
348 .get_vendor_id = octep_vdpa_get_vendor_id,
349 .get_vq_align = octep_vdpa_get_vq_align,
350 .get_config_size = octep_vdpa_get_config_size,
351 .get_config = octep_vdpa_get_config,
352 .set_config = octep_vdpa_set_config,
353 .set_config_cb = octep_vdpa_set_config_cb,
354 .get_vq_notification = octep_get_vq_notification,
355 };
356
octep_iomap_region(struct pci_dev * pdev,u8 __iomem ** tbl,u8 bar)357 static int octep_iomap_region(struct pci_dev *pdev, u8 __iomem **tbl, u8 bar)
358 {
359 int ret;
360
361 ret = pci_request_region(pdev, bar, OCTEP_VDPA_DRIVER_NAME);
362 if (ret) {
363 dev_err(&pdev->dev, "Failed to request BAR:%u region\n", bar);
364 return ret;
365 }
366
367 tbl[bar] = pci_iomap(pdev, bar, pci_resource_len(pdev, bar));
368 if (!tbl[bar]) {
369 dev_err(&pdev->dev, "Failed to iomap BAR:%u\n", bar);
370 pci_release_region(pdev, bar);
371 ret = -ENOMEM;
372 }
373
374 return ret;
375 }
376
octep_iounmap_region(struct pci_dev * pdev,u8 __iomem ** tbl,u8 bar)377 static void octep_iounmap_region(struct pci_dev *pdev, u8 __iomem **tbl, u8 bar)
378 {
379 pci_iounmap(pdev, tbl[bar]);
380 pci_release_region(pdev, bar);
381 }
382
octep_vdpa_pf_bar_shrink(struct octep_pf * octpf)383 static void octep_vdpa_pf_bar_shrink(struct octep_pf *octpf)
384 {
385 struct pci_dev *pf_dev = octpf->pdev;
386 struct resource *res = pf_dev->resource + PCI_STD_RESOURCES + 4;
387 struct pci_bus_region bus_region;
388
389 octpf->res.start = res->start;
390 octpf->res.end = res->end;
391 octpf->vf_base = res->start;
392
393 bus_region.start = res->start;
394 bus_region.end = res->start - 1;
395
396 pcibios_bus_to_resource(pf_dev->bus, res, &bus_region);
397 }
398
octep_vdpa_pf_bar_expand(struct octep_pf * octpf)399 static void octep_vdpa_pf_bar_expand(struct octep_pf *octpf)
400 {
401 struct pci_dev *pf_dev = octpf->pdev;
402 struct resource *res = pf_dev->resource + PCI_STD_RESOURCES + 4;
403 struct pci_bus_region bus_region;
404
405 bus_region.start = octpf->res.start;
406 bus_region.end = octpf->res.end;
407
408 pcibios_bus_to_resource(pf_dev->bus, res, &bus_region);
409 }
410
octep_vdpa_remove_pf(struct pci_dev * pdev)411 static void octep_vdpa_remove_pf(struct pci_dev *pdev)
412 {
413 struct octep_pf *octpf = pci_get_drvdata(pdev);
414
415 pci_disable_sriov(pdev);
416
417 if (octpf->base[OCTEP_HW_CAPS_BAR])
418 octep_iounmap_region(pdev, octpf->base, OCTEP_HW_CAPS_BAR);
419
420 if (octpf->base[OCTEP_HW_MBOX_BAR])
421 octep_iounmap_region(pdev, octpf->base, OCTEP_HW_MBOX_BAR);
422
423 octep_vdpa_pf_bar_expand(octpf);
424 }
425
octep_vdpa_vf_bar_shrink(struct pci_dev * pdev)426 static void octep_vdpa_vf_bar_shrink(struct pci_dev *pdev)
427 {
428 struct resource *vf_res = pdev->resource + PCI_STD_RESOURCES + 4;
429
430 memset(vf_res, 0, sizeof(*vf_res));
431 }
432
octep_vdpa_remove_vf(struct pci_dev * pdev)433 static void octep_vdpa_remove_vf(struct pci_dev *pdev)
434 {
435 struct octep_vdpa_mgmt_dev *mgmt_dev = pci_get_drvdata(pdev);
436 struct octep_hw *oct_hw;
437 int status;
438
439 oct_hw = &mgmt_dev->oct_hw;
440 status = atomic_read(&mgmt_dev->status);
441 atomic_set(&mgmt_dev->status, OCTEP_VDPA_DEV_STATUS_UNINIT);
442
443 cancel_work_sync(&mgmt_dev->setup_task);
444 if (status == OCTEP_VDPA_DEV_STATUS_READY)
445 vdpa_mgmtdev_unregister(&mgmt_dev->mdev);
446
447 if (oct_hw->base[OCTEP_HW_CAPS_BAR])
448 octep_iounmap_region(pdev, oct_hw->base, OCTEP_HW_CAPS_BAR);
449
450 if (oct_hw->base[OCTEP_HW_MBOX_BAR])
451 octep_iounmap_region(pdev, oct_hw->base, OCTEP_HW_MBOX_BAR);
452
453 octep_vdpa_vf_bar_shrink(pdev);
454 }
455
octep_vdpa_remove(struct pci_dev * pdev)456 static void octep_vdpa_remove(struct pci_dev *pdev)
457 {
458 if (pdev->is_virtfn)
459 octep_vdpa_remove_vf(pdev);
460 else
461 octep_vdpa_remove_pf(pdev);
462 }
463
octep_vdpa_dev_add(struct vdpa_mgmt_dev * mdev,const char * name,const struct vdpa_dev_set_config * config)464 static int octep_vdpa_dev_add(struct vdpa_mgmt_dev *mdev, const char *name,
465 const struct vdpa_dev_set_config *config)
466 {
467 struct octep_vdpa_mgmt_dev *mgmt_dev = container_of(mdev, struct octep_vdpa_mgmt_dev, mdev);
468 struct octep_hw *oct_hw = &mgmt_dev->oct_hw;
469 struct pci_dev *pdev = oct_hw->pdev;
470 struct vdpa_device *vdpa_dev;
471 struct octep_vdpa *oct_vdpa;
472 u64 device_features;
473 int ret;
474
475 oct_vdpa = vdpa_alloc_device(struct octep_vdpa, vdpa, &pdev->dev, &octep_vdpa_ops, 1, 1,
476 NULL, false);
477 if (IS_ERR(oct_vdpa)) {
478 dev_err(&pdev->dev, "Failed to allocate vDPA structure for octep vdpa device");
479 return PTR_ERR(oct_vdpa);
480 }
481
482 oct_vdpa->pdev = pdev;
483 oct_vdpa->vdpa.dma_dev = &pdev->dev;
484 oct_vdpa->vdpa.mdev = mdev;
485 oct_vdpa->oct_hw = oct_hw;
486 vdpa_dev = &oct_vdpa->vdpa;
487
488 device_features = oct_hw->features;
489 if (config->mask & BIT_ULL(VDPA_ATTR_DEV_FEATURES)) {
490 if (config->device_features & ~device_features) {
491 dev_err(&pdev->dev, "The provisioned features 0x%llx are not supported by this device with features 0x%llx\n",
492 config->device_features, device_features);
493 ret = -EINVAL;
494 goto vdpa_dev_put;
495 }
496 device_features &= config->device_features;
497 }
498
499 oct_hw->features = device_features;
500 dev_info(&pdev->dev, "Vdpa management device features : %llx\n", device_features);
501
502 ret = octep_verify_features(device_features);
503 if (ret) {
504 dev_warn(mdev->device,
505 "Must provision minimum features 0x%llx for this device",
506 BIT_ULL(VIRTIO_F_VERSION_1) | BIT_ULL(VIRTIO_F_ACCESS_PLATFORM) |
507 BIT_ULL(VIRTIO_F_NOTIFICATION_DATA) | BIT_ULL(VIRTIO_F_RING_PACKED));
508 goto vdpa_dev_put;
509 }
510 if (name)
511 ret = dev_set_name(&vdpa_dev->dev, "%s", name);
512 else
513 ret = dev_set_name(&vdpa_dev->dev, "vdpa%u", vdpa_dev->index);
514
515 ret = _vdpa_register_device(&oct_vdpa->vdpa, oct_hw->nr_vring);
516 if (ret) {
517 dev_err(&pdev->dev, "Failed to register to vDPA bus");
518 goto vdpa_dev_put;
519 }
520 return 0;
521
522 vdpa_dev_put:
523 put_device(&oct_vdpa->vdpa.dev);
524 return ret;
525 }
526
octep_vdpa_dev_del(struct vdpa_mgmt_dev * mdev,struct vdpa_device * vdpa_dev)527 static void octep_vdpa_dev_del(struct vdpa_mgmt_dev *mdev, struct vdpa_device *vdpa_dev)
528 {
529 _vdpa_unregister_device(vdpa_dev);
530 }
531
532 static const struct vdpa_mgmtdev_ops octep_vdpa_mgmt_dev_ops = {
533 .dev_add = octep_vdpa_dev_add,
534 .dev_del = octep_vdpa_dev_del
535 };
536
get_device_ready_status(u8 __iomem * addr)537 static bool get_device_ready_status(u8 __iomem *addr)
538 {
539 u64 signature = readq(addr + OCTEP_VF_MBOX_DATA(0));
540
541 if (signature == OCTEP_DEV_READY_SIGNATURE) {
542 writeq(0, addr + OCTEP_VF_MBOX_DATA(0));
543 return true;
544 }
545
546 return false;
547 }
548
549 static struct virtio_device_id id_table[] = {
550 { VIRTIO_ID_NET, VIRTIO_DEV_ANY_ID },
551 { 0 },
552 };
553
octep_vdpa_setup_task(struct work_struct * work)554 static void octep_vdpa_setup_task(struct work_struct *work)
555 {
556 struct octep_vdpa_mgmt_dev *mgmt_dev = container_of(work, struct octep_vdpa_mgmt_dev,
557 setup_task);
558 struct pci_dev *pdev = mgmt_dev->pdev;
559 struct device *dev = &pdev->dev;
560 struct octep_hw *oct_hw;
561 unsigned long timeout;
562 int ret;
563
564 oct_hw = &mgmt_dev->oct_hw;
565
566 atomic_set(&mgmt_dev->status, OCTEP_VDPA_DEV_STATUS_WAIT_FOR_BAR_INIT);
567
568 /* Wait for a maximum of 5 sec */
569 timeout = jiffies + msecs_to_jiffies(5000);
570 while (!time_after(jiffies, timeout)) {
571 if (get_device_ready_status(oct_hw->base[OCTEP_HW_MBOX_BAR])) {
572 atomic_set(&mgmt_dev->status, OCTEP_VDPA_DEV_STATUS_INIT);
573 break;
574 }
575
576 if (atomic_read(&mgmt_dev->status) >= OCTEP_VDPA_DEV_STATUS_READY) {
577 dev_info(dev, "Stopping vDPA setup task.\n");
578 return;
579 }
580
581 usleep_range(1000, 1500);
582 }
583
584 if (atomic_read(&mgmt_dev->status) != OCTEP_VDPA_DEV_STATUS_INIT) {
585 dev_err(dev, "BAR initialization is timed out\n");
586 return;
587 }
588
589 ret = octep_iomap_region(pdev, oct_hw->base, OCTEP_HW_CAPS_BAR);
590 if (ret)
591 return;
592
593 ret = octep_hw_caps_read(oct_hw, pdev);
594 if (ret < 0)
595 goto unmap_region;
596
597 mgmt_dev->mdev.ops = &octep_vdpa_mgmt_dev_ops;
598 mgmt_dev->mdev.id_table = id_table;
599 mgmt_dev->mdev.max_supported_vqs = oct_hw->nr_vring;
600 mgmt_dev->mdev.supported_features = oct_hw->features;
601 mgmt_dev->mdev.config_attr_mask = (1 << VDPA_ATTR_DEV_FEATURES);
602 mgmt_dev->mdev.device = dev;
603
604 ret = vdpa_mgmtdev_register(&mgmt_dev->mdev);
605 if (ret) {
606 dev_err(dev, "Failed to register vdpa management interface\n");
607 goto unmap_region;
608 }
609
610 atomic_set(&mgmt_dev->status, OCTEP_VDPA_DEV_STATUS_READY);
611
612 return;
613
614 unmap_region:
615 octep_iounmap_region(pdev, oct_hw->base, OCTEP_HW_CAPS_BAR);
616 oct_hw->base[OCTEP_HW_CAPS_BAR] = NULL;
617 }
618
octep_vdpa_probe_vf(struct pci_dev * pdev)619 static int octep_vdpa_probe_vf(struct pci_dev *pdev)
620 {
621 struct octep_vdpa_mgmt_dev *mgmt_dev;
622 struct device *dev = &pdev->dev;
623 int ret;
624
625 ret = pcim_enable_device(pdev);
626 if (ret) {
627 dev_err(dev, "Failed to enable device\n");
628 return ret;
629 }
630
631 ret = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(64));
632 if (ret) {
633 dev_err(dev, "No usable DMA configuration\n");
634 return ret;
635 }
636 pci_set_master(pdev);
637
638 mgmt_dev = devm_kzalloc(dev, sizeof(struct octep_vdpa_mgmt_dev), GFP_KERNEL);
639 if (!mgmt_dev)
640 return -ENOMEM;
641
642 ret = octep_iomap_region(pdev, mgmt_dev->oct_hw.base, OCTEP_HW_MBOX_BAR);
643 if (ret)
644 return ret;
645
646 mgmt_dev->pdev = pdev;
647 pci_set_drvdata(pdev, mgmt_dev);
648
649 atomic_set(&mgmt_dev->status, OCTEP_VDPA_DEV_STATUS_ALLOC);
650 INIT_WORK(&mgmt_dev->setup_task, octep_vdpa_setup_task);
651 schedule_work(&mgmt_dev->setup_task);
652 dev_info(&pdev->dev, "octep vdpa mgmt device setup task is queued\n");
653
654 return 0;
655 }
656
octep_vdpa_assign_barspace(struct pci_dev * vf_dev,struct pci_dev * pf_dev,u8 idx)657 static void octep_vdpa_assign_barspace(struct pci_dev *vf_dev, struct pci_dev *pf_dev, u8 idx)
658 {
659 struct resource *vf_res = vf_dev->resource + PCI_STD_RESOURCES + 4;
660 struct resource *pf_res = pf_dev->resource + PCI_STD_RESOURCES + 4;
661 struct octep_pf *pf = pci_get_drvdata(pf_dev);
662 struct pci_bus_region bus_region;
663
664 vf_res->name = pci_name(vf_dev);
665 vf_res->flags = pf_res->flags;
666 vf_res->parent = (pf_dev->resource + PCI_STD_RESOURCES)->parent;
667
668 bus_region.start = pf->vf_base + idx * pf->vf_stride;
669 bus_region.end = bus_region.start + pf->vf_stride - 1;
670 pcibios_bus_to_resource(vf_dev->bus, vf_res, &bus_region);
671 }
672
octep_sriov_enable(struct pci_dev * pdev,int num_vfs)673 static int octep_sriov_enable(struct pci_dev *pdev, int num_vfs)
674 {
675 struct octep_pf *pf = pci_get_drvdata(pdev);
676 u8 __iomem *addr = pf->base[OCTEP_HW_MBOX_BAR];
677 struct pci_dev *vf_pdev = NULL;
678 bool done = false;
679 int index = 0;
680 int ret, i;
681
682 ret = pci_enable_sriov(pdev, num_vfs);
683 if (ret)
684 return ret;
685
686 pf->enabled_vfs = num_vfs;
687
688 while ((vf_pdev = pci_get_device(PCI_VENDOR_ID_CAVIUM, PCI_ANY_ID, vf_pdev))) {
689 if (vf_pdev->device != pf->vf_devid)
690 continue;
691
692 octep_vdpa_assign_barspace(vf_pdev, pdev, index);
693 if (++index == num_vfs) {
694 done = true;
695 break;
696 }
697 }
698
699 if (done) {
700 for (i = 0; i < pf->enabled_vfs; i++)
701 writeq(OCTEP_DEV_READY_SIGNATURE, addr + OCTEP_PF_MBOX_DATA(i));
702 }
703
704 return num_vfs;
705 }
706
octep_sriov_disable(struct pci_dev * pdev)707 static int octep_sriov_disable(struct pci_dev *pdev)
708 {
709 struct octep_pf *pf = pci_get_drvdata(pdev);
710
711 if (!pci_num_vf(pdev))
712 return 0;
713
714 pci_disable_sriov(pdev);
715 pf->enabled_vfs = 0;
716
717 return 0;
718 }
719
octep_vdpa_sriov_configure(struct pci_dev * pdev,int num_vfs)720 static int octep_vdpa_sriov_configure(struct pci_dev *pdev, int num_vfs)
721 {
722 if (num_vfs > 0)
723 return octep_sriov_enable(pdev, num_vfs);
724 else
725 return octep_sriov_disable(pdev);
726 }
727
octep_get_vf_devid(struct pci_dev * pdev)728 static u16 octep_get_vf_devid(struct pci_dev *pdev)
729 {
730 u16 did;
731
732 switch (pdev->device) {
733 case OCTEP_VDPA_DEVID_CN106K_PF:
734 did = OCTEP_VDPA_DEVID_CN106K_VF;
735 break;
736 case OCTEP_VDPA_DEVID_CN105K_PF:
737 did = OCTEP_VDPA_DEVID_CN105K_VF;
738 break;
739 case OCTEP_VDPA_DEVID_CN103K_PF:
740 did = OCTEP_VDPA_DEVID_CN103K_VF;
741 break;
742 default:
743 did = 0xFFFF;
744 break;
745 }
746
747 return did;
748 }
749
octep_vdpa_pf_setup(struct octep_pf * octpf)750 static int octep_vdpa_pf_setup(struct octep_pf *octpf)
751 {
752 u8 __iomem *addr = octpf->base[OCTEP_HW_MBOX_BAR];
753 struct pci_dev *pdev = octpf->pdev;
754 int totalvfs;
755 size_t len;
756 u64 val;
757
758 totalvfs = pci_sriov_get_totalvfs(pdev);
759 if (unlikely(!totalvfs)) {
760 dev_info(&pdev->dev, "Total VFs are %d in PF sriov configuration\n", totalvfs);
761 return 0;
762 }
763
764 addr = octpf->base[OCTEP_HW_MBOX_BAR];
765 val = readq(addr + OCTEP_EPF_RINFO(0));
766 if (val == 0) {
767 dev_err(&pdev->dev, "Invalid device configuration\n");
768 return -EINVAL;
769 }
770
771 if (OCTEP_EPF_RINFO_RPVF(val) != BIT_ULL(0)) {
772 val &= ~GENMASK_ULL(35, 32);
773 val |= BIT_ULL(32);
774 writeq(val, addr + OCTEP_EPF_RINFO(0));
775 }
776
777 len = pci_resource_len(pdev, OCTEP_HW_CAPS_BAR);
778
779 octpf->vf_stride = len / totalvfs;
780 octpf->vf_devid = octep_get_vf_devid(pdev);
781
782 octep_vdpa_pf_bar_shrink(octpf);
783
784 return 0;
785 }
786
octep_vdpa_probe_pf(struct pci_dev * pdev)787 static int octep_vdpa_probe_pf(struct pci_dev *pdev)
788 {
789 struct device *dev = &pdev->dev;
790 struct octep_pf *octpf;
791 int ret;
792
793 ret = pcim_enable_device(pdev);
794 if (ret) {
795 dev_err(dev, "Failed to enable device\n");
796 return ret;
797 }
798
799 ret = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(64));
800 if (ret) {
801 dev_err(dev, "No usable DMA configuration\n");
802 return ret;
803 }
804 octpf = devm_kzalloc(dev, sizeof(*octpf), GFP_KERNEL);
805 if (!octpf)
806 return -ENOMEM;
807
808 ret = octep_iomap_region(pdev, octpf->base, OCTEP_HW_MBOX_BAR);
809 if (ret)
810 return ret;
811
812 pci_set_master(pdev);
813 pci_set_drvdata(pdev, octpf);
814 octpf->pdev = pdev;
815
816 ret = octep_vdpa_pf_setup(octpf);
817 if (ret)
818 goto unmap_region;
819
820 return 0;
821
822 unmap_region:
823 octep_iounmap_region(pdev, octpf->base, OCTEP_HW_MBOX_BAR);
824 return ret;
825 }
826
octep_vdpa_probe(struct pci_dev * pdev,const struct pci_device_id * id)827 static int octep_vdpa_probe(struct pci_dev *pdev, const struct pci_device_id *id)
828 {
829 if (pdev->is_virtfn)
830 return octep_vdpa_probe_vf(pdev);
831 else
832 return octep_vdpa_probe_pf(pdev);
833 }
834
835 static struct pci_device_id octep_pci_vdpa_map[] = {
836 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN106K_PF) },
837 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN106K_VF) },
838 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN105K_PF) },
839 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN105K_VF) },
840 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN103K_PF) },
841 { PCI_DEVICE(PCI_VENDOR_ID_CAVIUM, OCTEP_VDPA_DEVID_CN103K_VF) },
842 { 0 },
843 };
844
845 static struct pci_driver octep_pci_vdpa = {
846 .name = OCTEP_VDPA_DRIVER_NAME,
847 .id_table = octep_pci_vdpa_map,
848 .probe = octep_vdpa_probe,
849 .remove = octep_vdpa_remove,
850 .sriov_configure = octep_vdpa_sriov_configure
851 };
852
853 module_pci_driver(octep_pci_vdpa);
854
855 MODULE_AUTHOR("Marvell");
856 MODULE_DESCRIPTION("Marvell Octeon PCIe endpoint vDPA driver");
857 MODULE_LICENSE("GPL");
858